WO2020085691A1 - Mobile live-fire apparatus - Google Patents

Mobile live-fire apparatus Download PDF

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Publication number
WO2020085691A1
WO2020085691A1 PCT/KR2019/013267 KR2019013267W WO2020085691A1 WO 2020085691 A1 WO2020085691 A1 WO 2020085691A1 KR 2019013267 W KR2019013267 W KR 2019013267W WO 2020085691 A1 WO2020085691 A1 WO 2020085691A1
Authority
WO
WIPO (PCT)
Prior art keywords
unit
intake
bullet
mobile
container
Prior art date
Application number
PCT/KR2019/013267
Other languages
French (fr)
Korean (ko)
Inventor
김휘중
강민아
김선구
김선재
Original Assignee
주식회사 에아가이아
김휘중
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1020180127118A external-priority patent/KR101961686B1/en
Priority claimed from KR1020190021995A external-priority patent/KR102022642B1/en
Application filed by 주식회사 에아가이아, 김휘중 filed Critical 주식회사 에아가이아
Publication of WO2020085691A1 publication Critical patent/WO2020085691A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41HARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
    • F41H5/00Armour; Armour plates
    • F41H5/02Plate construction
    • F41H5/04Plate construction composed of more than one layer
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J11/00Target ranges
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J13/00Bullet catchers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J13/00Bullet catchers
    • F41J13/02Bullet catchers combined with targets
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J5/00Target indicating systems; Target-hit or score detecting systems
    • F41J5/04Electric hit-indicating systems; Detecting hits by actuation of electric contacts or switches
    • F41J5/052Targets comprising a plurality of electric contacts, each corresponding to a discrete target section and being actuated by the movement thereof
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J5/00Target indicating systems; Target-hit or score detecting systems
    • F41J5/04Electric hit-indicating systems; Detecting hits by actuation of electric contacts or switches
    • F41J5/056Switch actuation by hit-generated mechanical vibration of the target body, e.g. using shock or vibration transducers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J5/00Target indicating systems; Target-hit or score detecting systems
    • F41J5/14Apparatus for signalling hits or scores to the shooter, e.g. manually operated, or for communication between target and shooter; Apparatus for recording hits or scores
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41JTARGETS; TARGET RANGES; BULLET CATCHERS
    • F41J5/00Target indicating systems; Target-hit or score detecting systems
    • F41J5/18Targets having hit-indicating means actuated or moved mechanically when the target has been hit, e.g. discs or flags

Definitions

  • the present invention relates to a mobile shotgun shooting equipment, and more specifically, it can be installed and used immediately by any user or any place the operator wants to install, and does not require a separate ventilation and electrical installation process in the field.
  • it is possible to minimize the impact of heavy metal harmful substances generated in the shooting range due to the use of live ammunition to the trainee or manager, and it is possible to easily recover the warhead close to the original shape and prevent environmental pollution, which can promote recycling and prevention of environmental pollution. It is about a mobile live-fired shooting equipment.
  • indoor shooting ranges cause heavy noise and dust when the warheads fired from firearms such as pistols and rifles collide with the iron plate of the parchment paper or the wall and facilities near the parchment paper. Therefore, various problems such as polluting indoor air were raised.
  • waste tires or tire chips are placed behind the target to absorb the impact of the warhead, but due to collision with the warhead, heavy metal components such as lead and cadmium contained in the waste tires are scattered in the air as dust.
  • there was a disadvantage that the indoor air pollution was further increased, and eventually there was a problem that the operation of the indoor shooting range of the military units and the police was stopped.
  • the present invention for solving the above-described conventional problems, can be installed in any place that the user wants or any place where the operator wants to install, can be used immediately without the process of ventilation and electrical facilities to improve economic efficiency
  • the aim is to provide a portable, live-fired shooting equipment.
  • the present invention can prevent or minimize heavy metal harmful substances generated in the shooting range due to the use of live ammunition to the trainer or manager, and can recover warheads that are close to the circle to prevent warhead recycling and environmental pollution.
  • Another object is to provide a mobile live shooting equipment capable of improving the recovery workability and facility operability by facilitating a warhead recovery operation.
  • a container-type body in which an entrance door is formed on one side;
  • a ventilation unit configured in the container-type body to intake, purify and ventilate internal air;
  • a control panel for controlling the ventilation unit;
  • a ballistic warhead recovery unit provided on a target paper side of the container-type body to recover a ballistic warhead;
  • a self-powered power supply unit for supplying power to the power-requiring equipment including the ventilation unit and the control panel.
  • the body is formed with an opening on one surface;
  • a target unit provided on a rear side of the opening of the body;
  • An hit detection unit for detecting whether the target unit is hit;
  • a wireless communication module for wirelessly transmitting a signal detected by the hit detection unit to the outside;
  • the projectile bullet warhead recovery unit for recovering a projectile warhead; is provided.
  • the present invention can be installed in any place required by the user or any place the operator wants to install, and can be used immediately without the facility process of ventilation and electrical facilities, thereby improving installation performance, economic efficiency, and versatility.
  • the present invention is to remove the heavy metal harmful substances caused by the use of real ammunition at the live shooting range so that the trainee or manager can be prevented from being contaminated with heavy metal harmful substances so as not to harm the health of the trainee or manager It works.
  • the present invention not only prevents heavy metal harmful substances such as lead and copper from being scattered by collecting the warhead, which is a major cause of heavy metal damage, without damage, but also heavy metal components such as lead contained in the warhead are air And prevents environmental pollution by blocking the problem of contaminating air, soil, and water by accumulating in the soil.
  • the present invention can improve recovery workability and facility operability by facilitating a warhead recovery operation.
  • the present invention can not only be configured as a basic shooting range, but also can be configured as a zero-point shooting range when combined by connecting a plurality, so that the versatility can be further expanded.
  • the present invention can improve the operability and management efficiency by easily grasping and monitoring whether or not the number of hits or the number of hits is performed through a wireless communication at a control location or a shooter side.
  • FIG. 1 is an external view of a mobile live ammunition shooting equipment according to an embodiment of the present invention
  • Figure 2 is an internal configuration of a part of the mobile ammunition shooting equipment in accordance with an embodiment of the present invention
  • Figure 3 is a schematic view as viewed from the side of the configuration of the mobile ammunition shooting equipment according to an embodiment of the present invention
  • Figure 4 is a cross-sectional wall structure of the body included in the mobile ammunition shooting equipment according to an embodiment of the present invention
  • Figure 5 is a case where the wall of the body included in the mobile ammunition shooting equipment according to an embodiment of the present invention is composed of a sound-absorbing structure, partially enlarged view of the buffer plate,
  • Figure 6 is a schematic view of a mobile live ammunition shooting equipment according to an embodiment of the present invention as viewed from a plane,
  • Figure 7 is a side view of the ammunition warhead recovery unit included in the mobile ammunition shooting equipment according to an embodiment of the present invention.
  • Figure 8 is a front view of the ammunition warhead recovery unit included in the mobile ammunition shooting equipment according to an embodiment of the present invention.
  • Figure 9 is a perspective view of the mobile ammunition shooting equipment according to another embodiment of the present invention as viewed from the front,
  • Figure 10 is an internal configuration of a mobile shotgun shooting equipment according to another embodiment of the present invention.
  • Figure 11 is a side view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to another embodiment of the present invention.
  • Figure 12 is a front view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to another embodiment of the present invention.
  • FIG. 13 is an exemplary view showing a vehicle equipped with a mobile bullet shooting device according to an embodiment of the present invention.
  • ... unit ... unit
  • ... module a unit that processes at least one function or operation, which is hardware or software or hardware and It can be implemented with a combination of software.
  • Figure 1 is an external view of a mobile ammunition shooting equipment according to an embodiment of the present invention
  • Figure 2 is an internal configuration diagram partially cut off a mobile ammunition shooting equipment according to an embodiment of the present invention
  • Figure 3 is an embodiment of the present invention
  • Figure 4 is a schematic view of the configuration of a mobile shotgun shooting equipment according to an example
  • Figure 4 is a cross-sectional wall structure of the body included in the mobile shotgun shooting equipment according to an embodiment of the present invention
  • Figure 5 is according to an embodiment of the present invention
  • FIG. 6 is a schematic view of the mobile ammunition shooting equipment according to an embodiment of the present invention in a plan view
  • FIG. 7 Is a side view of the ammunition warhead recovery unit included in the mobile ammunition shooting equipment according to an embodiment of the present invention
  • Figure 8 is included in the mobile ammunition shooting equipment according to an embodiment of the present invention Is a front view
  • Fig. 13 of the live ammunition warhead recovery unit is an example representation of a vehicle equipped with a removable ammunition firing device according to one embodiment of the present invention.
  • a container-type body 100 is formed of a door that can be opened or closed at one end, or the entrance door 110 is formed; It is configured in the container-type body 100, the ventilation unit (ventilation means) for intake purification and ventilation of the internal air; A control panel for controlling the ventilation unit; A ballistic warhead recovery unit 300 which is provided on the target paper side of the container-type body 100 and recovers a projectile warhead; And a power supply unit for supplying power to the power-requiring equipment including a ventilation unit and a control panel.
  • the ventilation unit ventilation means for intake purification and ventilation of the internal air
  • a control panel for controlling the ventilation unit
  • a ballistic warhead recovery unit 300 which is provided on the target paper side of the container-type body 100 and recovers a projectile warhead
  • a power supply unit for supplying power to the power-requiring equipment including a ventilation unit and a control panel.
  • the container-type body 100 is accommodated in at least one of the upper surface, the side surface, and the bottom surface, and some components constituting the ventilating unit, which will be described later, are accommodated, and the receiving housing 120 is configured to be detachable.
  • the housing 120 shows a case in which the container-type body 100 is configured at an upper portion and a side portion, and may include a mesh-shaped vent surface.
  • the container-type body 100 is preferably configured to include a wall that can minimize damage to warheads such as bulletproof and dobitan on its inner wall.
  • the wall of the container-type body 100 is provided on the inside of the steel outer plate 101 and the steel outer plate 101 of the container-type body, as shown in Figure 4, a known plate that can prevent bullet penetration Bulletproof plate 102 of a predetermined thickness (for example, 65 mm) made of a material, and provided to be spaced apart from the bulletproof plate 102, a buffer plate 103 for primarily cushioning the impact of a warhead such as dobitan, And a rubber particle filling layer 104 having a predetermined particle diameter (for example, 2 to 5 mm) for secondary cushioning of impact of a warhead such as dobitan filled in a space between the bulletproof plate 102 and the buffer plate 103 It includes.
  • Bulletproof plate 102 of a predetermined thickness (for example, 65 mm) made of a material, and provided to be spaced apart from the bulletproof plate 102
  • a buffer plate 103 for primarily cushioning the impact of a warhead such as dobitan
  • a rubber particle filling layer 104 having
  • the buffer plate 103 may be formed of a rubber plate or a compressed rubber plate of a predetermined thickness, and the buffer plate 103 is preferably made of a flame retardant element (flame retardant) such as boron, chlorine, bromine, and phosphorus.
  • flame retardant such as boron, chlorine, bromine, and phosphorus.
  • the wall forming the container body 100 is made of a rubber plate having an innermost flame retardant element, and thus has a flame retardant function while having cushioning and bulletproof properties, and friction heat or other impacts due to the impact of a misfired warhead It is possible to prevent a fire from being caused by a fire.
  • the buffer plate 103 constituting the inner wall of the container-like body 100 may be provided with a non-woven fabric in a flat (total area) inside or partially in the rubber plate.
  • the non-woven fabric may be formed of a wave shape, and may be formed of a plurality of wave-shaped non-woven fabrics at intervals.
  • the buffer plate 103 is provided with a corrugated non-woven fabric inside, thereby minimizing or preventing damage to the container-type body 100 itself and surrounding facilities when misfired missiles or dobitans are generated.
  • the buffer plate 103 may be formed of a sound absorbing structure having an egg plate shape as shown in FIG. 5.
  • the buffer plate 103 has an egg plate shape, that is, the grooves 103a are regularly arranged at predetermined intervals, and the protrusions 103b are formed between the grooves 103a and the grooves 103a, and the protrusions 103b )
  • Recess groove 103a may be formed on the back surface, and between the recess 103a and the recess 103a formed on the rear surface of the protrusion, that is, the rear surface of the recess 103a may have a protrusion 103b.
  • the buffer plate 103 provided on the inner wall or the inner wall of the container-type body 100 has the above-mentioned egg plate shape, thereby canceling the shooting noise due to its shape, thereby absorbing noise.
  • the sound absorbing structure may be formed of a buffer plate 103 made of a different material, such as a foam, rather than a rubber plate, and may be formed by containing a flame retardant element (flame retardant) such as boron, chlorine, bromine, and phosphorus.
  • a flame retardant element flame retardant
  • an end-side wall of the container-type body 100 can be opened and closed by rotating around both sides or one end around the central portion. It can be made of, or can be made to be removable.
  • the recovery and replacement of related components can be easily performed.
  • the walls at both ends of the container-type body 100 may be detachable, and in this case, the container-type body 100 may be continuously connected and fixed to form a shooting range for zero-point shooting.
  • the ventilating unit is a total exhaust intake unit (first intake unit) 210 and a container-type body ( Target land intake unit (second intake unit) 220, which is installed on the bottom of the target paper or bullet paper (B) (hereinafter referred to as "target paper") directly below or in front of the other end of the 100, and the firing position A side intake unit (third intake unit) 230 installed on the bottom of both sides between the (F) and the target land (B), and a ceiling intake unit installed on the upper part between the firing position (F) and the target land (B) (4th intake unit) 240, an intake driving unit that drives to intake air from the above intake units 210 to 240, and for purifying and discharging the air intake through the intake driving unit to the outside Purification unit, and a ring configured to supply outside air to the inside of the container-type body 100 It includes a base unit.
  • the total smoke intake unit (first intake unit) 210 is installed at the bottom of the firing range (F) in front of the firing position of the indoor live shooting range, and the smoke is contained in the fire extinguisher (firearm) when fired. It is made to intake exhaust gas.
  • the total smoke intake unit (first intake unit) 210 is installed across the floor parallel to the firing position, and is composed of an intake module having one or more intake pipes with an intake port formed on the upper side, one or both ends of which It is made to be connected to the cavity intake duct 251 of the intake mechanism described later.
  • the intake module of the total smoke intake unit (first intake unit) 210 may be formed such that the intake port is covered with a nonwoven fabric or a mesh network or an opening direction is formed in a lateral direction in order to prevent the intake port from being occluded due to foreign matter.
  • the target paper intake unit (second intake unit) 220 is installed at the bottom of the target paper, which is the other end side of the container-like body 100, directly below or in front of the target paper, or at the bottom directly below the warhead recovery unit 300. It is made to inhale the air containing the harmful substances generated while the warhead of the fired bullets hit the target land (B) or the warhead recovery unit 300.
  • the target paper intake unit (second intake unit) 220 is installed across the floor directly below or directly below the front of the target paper B, or directly below the warhead recovery unit 300 (in the drawing, the target paper B ) Is shown as an example that is installed directly below, consists of an intake module having one or more intake pipes with an intake port formed on the upper side, and one or both ends thereof are provided in a common intake duct 251 of the intake mechanism described below. It is connected.
  • the intake module of the target paper intake unit (second intake unit) 220 may also be formed such that the intake port is covered with a nonwoven fabric or a mesh network or an opening direction is formed laterally to prevent clogging due to foreign matter.
  • the side intake unit (third intake unit) 230 is a gas containing harmful substances generated by a live ammunition fire in the space between the firing position (F) and the target site (B), the bottom due to its weight It sinks to the side, and at this time, it is made to inhale air convecting from the bottom side of the space between the firing position (F) and the target site (B).
  • the side intake unit (third intake unit) 230 is composed of a plurality of intake vents installed on the bottom side of the space between the firing position (F) and the target site (B), and a branch pipe communicating with the plurality of intake vents , The branch pipe is connected to the common intake duct 251 of the intake mechanism described later.
  • the intake port of the side intake unit (third intake unit) 230 may be formed to be covered with a non-woven fabric or a mesh net or to form an opening in a downward direction to prevent foreign matter or the like from entering.
  • the front surface of the side intake unit (third intake unit) 230 is configured not to protrude from the side wall forming the side of the container body 100.
  • the components constituting the side intake unit (third intake unit) 230 may be configured to be accommodated in the housing 120 formed on the side of the container-like body 100 as shown in FIG. 1.
  • the ceiling intake unit (fourth intake unit) 240 which is installed on the upper portion between the firing position F and the target land B, is fired in the space between the firing position F and the target land B of the shooting range. It is made to inhale floating gas from the ceiling while containing harmful substances generated by shooting.
  • the ceiling intake unit (fourth intake unit) 240 is composed of one or more intake vents installed in the ceiling portion of the space between the firing position (F) and the target area (B) of the indoor shooting range, such a ceiling intake unit (fourth The intake port of the intake unit 240 is connected to the common intake duct 251 of the intake mechanism described below.
  • the intake vents of the ceiling intake unit (fourth intake unit) 240 may be formed by being covered with a mesh net.
  • a shielding plate 241 may be further configured on the front side of the ceiling intake unit (fourth intake unit) 240 to prevent damage to the intake vents of the ceiling intake unit due to misfired shots.
  • the intake mechanism is on the path of the end of the cavity intake duct 251 and the cavity intake duct 251 to which each of the above-described intake units (first to fourth intake units) 210 to 240 are respectively connected. It is installed and driven to intake and exhaust air, and includes an intake fan 252 provided in a housing 120 provided on an upper portion of the container body 100.
  • the intake mechanism unit further includes a sub intake fan 253 for intake of air from each of the intake fans 252 connected to each intake unit (first to fourth intake units) 210 to 240. You can. In the drawing, only the sub intake fan 253 for the side intake unit 240 is illustrated.
  • a purifying unit for purifying air exhausted through the intake driving unit and discharging it to the outside is installed in an exhaust line of the intake fan 252 and explosive components and dusts generated by bullet shooting at an indoor live shooting range. It may be configured as a cleaning dust collecting device 261 configured to purify the contaminated air and exhaust it to the outside.
  • the cleaning dust collecting device 261 may be formed of a wet scrubber, and may be configured to be accommodated in a housing 120 configured on an upper side of the container-type body 100.
  • water used as cleaning water is introduced into the cleaning dust collecting device 261, and the water discharged from the cleaning dust collecting device 261 contains contaminants such as chemical components and dust. It can be configured to drain to the outside after purifying the wastewater.
  • the ventilation unit configured to supply outside air to the inside of the indoor shooting range includes one or more ceiling outside air supply ports (first outside air supply ports) 271 that guide to supply outside air from the ceiling of the indoor shooting range and the indoor shooting range.
  • One or more lateral air supply ports (second air supply ports) 272 that guide the air supply from the side, and configured at a rear side of the firing position F, the first air intake unit 210 being blown air ) Is connected to the firing position air supply port (third air supply port) 273, which is configured to face the side, and the ceiling air supply port 271 and the lateral air supply port 272 and the firing position air supply port 273
  • the ceiling outside air supply port (the first outside air supply port) 271 is preferably installed at the firing position F and / or the upper side of the target location or the warhead recovery unit 300 to guide the air to the firing position F side. It is preferable to include a ceiling outside air supply port.
  • the drawing shows a case where the ceiling outside air supply port (first outside air supply port) 271 is installed at the upper side of the firing position F.
  • the side air supply port (second air supply port) 272 preferably includes a plurality of intake vents installed on the bottom side of the space between the firing position (F) and the target land (B) of the indoor shooting range.
  • firing position outside air supply port (273) is located at the rear side of the head of the shooter and is installed to face the first intake unit (210) side. It is possible to more reliably block what affects the shooter.
  • control panel for controlling the intake driving unit and the purification unit is provided on / off operation of the entire facility system, and is provided on one side of the indoor shooting range to control and control the intake fans 252, 253 and the blowing fan (not shown). It is configured on one side of the inner space of the container-type body 100, including the operation switch.
  • control panel may be configured to include a circuit module programmed to automatically operate the intake fans 252 and 253 and a blower fan (not shown) at regular intervals.
  • present invention may be configured to further include an air detection sensor to drive the intake fan and the blower fan by a drive control signal based on the detection value of the air detection sensor.
  • the present invention purifies the indoor air in the indoor shooting range through each intake unit and the purification unit as described above, and also supplies purified air and / or fresh outside air into the indoor shooting range to prevent air pollution in the indoor shooting range and clean indoor It is possible to maintain the air environment.
  • the live ammunition warhead recovery unit 300 removably covers the lattice-shaped frame 310 and the outer periphery of the lattice-shaped frame 310 and is stretchable so that the warheads of the live ammunition are buffered and pass through. It comprises a front buffer member 320 made of a material, a filler 330 of a stretchable material filled in the front buffer member 320, and a support frame 340 for supporting the lattice-shaped frame 310, the present invention
  • the live ammunition warhead recovery unit 300 may further include a draw-out guide unit that can be easily withdrawn and drawn out from the container-type body 100 to the outside.
  • the lattice-shaped frame 310 may be formed in a square frame shape, and may be configured in the form of a cube or a cube in which the front side and the rear side are inclined in the direction of the firing shot to one side as shown in FIG. 7.
  • the front buffer member 320 may be configured in the same manner as the buffer plate described above.
  • the front buffer member 320 may be made of a rubber plate or a compressed rubber plate of a predetermined thickness, and the buffer plate 103 is preferably made of a flame retardant element (flame retardant) such as boron, chlorine, bromine, phosphorus, etc. .
  • the front shock absorbing member 320 is made of a rubber plate containing a flame retardant element, and thus can have a flame retardant function while having a cushioning property, thereby preventing fire from being caused by frictional heat due to the impact of the warhead or other fire sources. .
  • the filler 330 may be made of rubber particles having a predetermined particle diameter (for example, 2 to 5 mm).
  • guide rail 281 is configured on the bottom surface of the container-type body 100 of the lower part of the warhead recovery unit 300, and the guide is configured on the lower part of the warhead recovery unit 300 It may be configured to include a roller member 282 that moves rolling along the rail 281.
  • the guide rail 281 and the roller member 282 may be configured in reverse. That is, the guide rail 281 may be configured on the lower surface of the live ammunition warhead recovery unit 300, and the roller member 282 may be configured on the container-type body 100.
  • the power supply unit may include a wind power generation facility other than a photovoltaic power generation panel as a new and renewable energy device.
  • a self-generation facility such as a photovoltaic power generation panel is configured, and may be configured to receive power through an ordinary power grid.
  • Figure 9 is a perspective view of a mobile live ammunition shooting equipment according to another embodiment of the present invention
  • Figure 10 is an internal configuration of a mobile shotgun shooting equipment according to another embodiment of the present invention
  • Figure 11 is another embodiment of the present invention
  • Figure 12 is a front view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to another embodiment of the present invention.
  • the body 100 of the enclosure type formed with an opening 108 on one surface;
  • the target unit 800 is provided on the rear side of the opening of the body 100;
  • a hit detection unit 900 for detecting whether the target unit 800 is hit or not;
  • a wireless communication module 700 for wirelessly transmitting a signal detected by the hit detection unit 900 to an external control center or shooter side;
  • And is provided at the rear of the target unit 800, a bullet warhead recovery unit 500 for recovering a bullet warhead.
  • the body-shaped body 100 has an opening 108 of a predetermined size on one surface, as illustrated in the drawing, and is formed of a box body having an internal space of a predetermined size.
  • the inner space of the body-shaped body 100 is made so that the target unit 800 is positioned at the rear of the opening 108 and has a size capable of providing a bullet warhead recovery unit 500 at the rear.
  • the body-shaped body 100 is provided with moving means such as moving wheels at four places or two places at the front end or rear end, and is further lifted by a crane or a forklift, etc.
  • moving means such as moving wheels at four places or two places at the front end or rear end, and is further lifted by a crane or a forklift, etc.
  • a moving ring may be provided on one side so as to make it possible.
  • the body 100 has one end side wall thereof, specifically, an end side wall (wall opposite the opening 108) on which the warhead recovery unit 500 is located, on both sides around the center, or It can be made of an openable opening and closing structure by rotating about one end, or can be made detachable.
  • This consists of an opening and closing structure in which one side wall of the body-shaped body 100 is openable, and after pulling out the live cartridge warhead recovery unit 500 along the draw-out guide unit to be described in detail below in the open state, the warhead from the outside It is possible to easily perform the recovery and replacement of the related components.
  • the target unit 800 may be formed in a panel shape in which a typical target shape or target shape is displayed.
  • the target unit 800 may be formed of a human-shaped target as illustrated in the drawing, but may be configured as a rotating target plate capable of rotating one end in an axis.
  • the upper end is configured to rotate in an axis in consideration of the shape of a bullet warhead unit (one embodiment) described later.
  • the hit detection unit 900 may be configured to detect whether the rotation target plate is rotated and to detect the number of rotations.
  • the hit detection unit 900 may be configured to detect whether or not a rotation is performed through an encoder and a decoder provided on a rotation axis of the rotation target plate, count the number of rotations, and transmit the result to the wireless communication module 700.
  • an optical sensor module is configured on the inner wall surface of the body 100 where the rotation target plate is located, configured to detect whether the rotation target plate is rotated, count the number of rotations, and transmit it to the wireless communication module 700. It can be configured as a detection module.
  • the target unit 800 may be formed of a target paper provided on the front surface of the live ammunition warhead recovery unit 500.
  • the hit detection unit 900 is configured as an optical sensor module on the inner wall surface of the body 100 in consideration of the hit range of the warhead entering the target area, detects whether the warhead entering the hit range passes, and detects the number of passes It can be configured to count and transmit to the wireless communication module 700.
  • the target unit 800 may be configured as a hologram-type target that allows the target hologram to be formed in the opening 108 of the body 100, in which case the hit detection unit 900 is a hologram-type target Consists of an optical sensor module on the inner wall surface of the body 100 in consideration of the accuracy range of a warhead passing through, detects whether a warhead entering the accuracy range is passed, counts the number of passes, and transmits it to the wireless communication module 700 Can be configured to.
  • the wireless communication module 700 transmits the signal detected by the hit detection unit 900 to an external fire control station and / or a display device provided on the fire side using a wireless communication method so that it can be displayed. If it does, it is not particularly limited, and since a known configuration or technology can be employed, detailed description thereof will be omitted.
  • the present invention includes a battery device for supplying power to components that require power supply, such as the target unit 800, the hit detection unit 900, and the wireless communication module 700.
  • the battery device may be configured as a replaceable battery method, or may be configured as a storage battery method.
  • a storage battery type it can be provided by providing power to the body 100 after being stored by a photovoltaic facility installed on one side of a shooting range (for example, the roof of a central control center) during non-training.
  • a live cartridge warhead recovery unit 500 provided at the rear of the target unit 800 for recovering a live cartridge warhead.
  • the live ammunition warhead recovery unit 500 includes a lattice-shaped frame 510 and a front shock absorbing member 520 made of a stretchable material that detachably covers the outer periphery of the lattice-shaped frame 510 and is capable of passing while the warheads of the bullet are fully buffered ), A filler 530 made of a stretchable material filled in the front buffer member 520, and a support frame 540 supporting the grid-shaped frame 510.
  • the lattice-shaped frame 510 may be formed in a square frame shape, and may be configured in the form of a cubical cube or a cube in which the front and rear sides are inclined in the direction of firing at one side as shown in FIGS. 11 and 12. have.
  • the front buffer member 520 may be formed of a rubber plate or a compressed rubber plate having a predetermined thickness, and the front buffer member 520 is preferably made of a flame retardant element (flame retardant) such as boron, chlorine, bromine, and phosphorus.
  • the front shock absorbing member 520 is made of a rubber plate containing a flame retardant element, and thus can have a flame retardant function while having cushioning properties, thereby preventing fire from being caused by frictional heat due to the impact of the warhead or other fire sources. .
  • the filler 530 may be made of rubber particles having a predetermined particle diameter (for example, 2 to 5 mm).
  • it may further include a draw-out guide unit that can easily withdraw and withdraw the bullet warhead recovery unit 500 from the container-type body 100 to the outside.
  • the lead-in / out guide unit is, for example, a guide rail 551 formed on the bottom surface of the body 100 of the lower body of the warhead recovery unit 500, and a guide configured under the warhead recovery unit 500. It may be configured to include a roller member 552 for rolling along the rail 551.
  • the guide rail 551 and the roller member 552 may be configured in reverse. That is, the guide rail 551 may be configured on the lower surface of the live ammunition warhead recovery unit 500, and the roller member 552 may be configured on the container-type body 100.
  • the mobile ammunition shooting equipment opens and closes the opening means 600 to open the opening 108 of the body 100 when not in use, and to close the opening 108 when not in use. It may further include.
  • the opening and closing means may be formed, for example, in the form of a cover. Further, as another example, the opening / closing means is configured to be rolled when used, and is configured to be rolled to an upper portion or a lower portion of the opening 108 of the body-shaped body 100, and when unused, it is opened and fixed to the other end to be closed. Can be configured.
  • the mobile combat shooting equipment of the outdoor battle shooting range and the zero point shooting range according to the present invention as described above, it can be easily installed and used anywhere in the location and distance that the administrator or operator wants to install, especially immediate and precautionary measures It is suitable for use as a battle range, and it has the advantage of improving operability and management efficiency because it can easily identify and monitor whether or not hits or hits are made through the wireless communication from the control location or the shooting side.
  • the present invention can be used regardless of the weather, can minimize the effect of heavy metal harmful substances generated in the shooting range due to the use of live ammunition, recycling and environment by easily recovering the warhead close to the circle There is an advantage to provide an environmentally friendly target device capable of preventing contamination.
  • the present invention can be used in a live shooting range.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)

Abstract

An aspect of the present invention provides a mobile live-fire apparatus comprising: a container type body having a door formed through one side thereof; a ventilation unit formed in the container type body so as to suction and purify indoor air and ventilate the inside of the body; a control panel for controlling the ventilation unit; a live ammunition bullet collecting unit disposed in a shooting target side of the container type body to collect a live ammunition bullet; and a self-generated power supply unit for supplying power to a device requiring power, the device including the ventilation unit and the control panel.

Description

이동식 실탄 사격 장비Mobile live fire shooting equipment
본 발명은 이동식 실탄 사격 장비에 관한 것으로, 더욱 상세하게는 수요자가 요구하는 어떠한 장소 또는 운영자가 설치하고자 하는 장소 어디든지 이동 설치하여 바로 이용할 수 있고, 현장에서 별도의 환기 및 전기 시설 과정이 필요하지 않으며, 실탄 사용으로 인하여 사격장 내에서 발생하는 중금속 유해물질이 훈련자나 관리자에게 영향을 미치는 것을 최소화할 수 있으며, 원형에 가까운 탄두를 용이하게 회수하여 재활용과 환경오염 방지를 도모할 수 있는 환경오염 방지를 위한 이동식 실탄 사격 장비에 관한 것이다.The present invention relates to a mobile shotgun shooting equipment, and more specifically, it can be installed and used immediately by any user or any place the operator wants to install, and does not require a separate ventilation and electrical installation process in the field. In addition, it is possible to minimize the impact of heavy metal harmful substances generated in the shooting range due to the use of live ammunition to the trainee or manager, and it is possible to easily recover the warhead close to the original shape and prevent environmental pollution, which can promote recycling and prevention of environmental pollution. It is about a mobile live-fired shooting equipment.
업무의 특성상 소총, 권총 등과 같은 총기를 취급하는 군부대나 경찰 등에서는 유사시 필요한 사격능력을 배양하고 전투력을 유지하기 위하여 이들 개인화기의 사격훈련을 꾸준히 실시해 오고 있다. 이들 개인화기를 이용한 사격훈련은 실내 또는 야외의 영점사격장과 실거리 사격장에서 주로 실시되고 있는데, 이러한 실탄사격장에서 발사된 탄두에 포함된 중금속이 주변 환경을 심각하게 오염시키는 등의 문제가 있어서 탄두의 처리에 상당한 어려움을 겪고 있었다.Due to the nature of the work, military units and police that handle guns such as rifles, pistols, etc. have been conducting shooting training of these personalized weapons in order to cultivate necessary shooting abilities and maintain combat power. Shooting drills using these personalized weapons are mainly conducted at indoor or outdoor zero-range and range-range ranges, and heavy metals contained in warheads fired from these ranges have problems such as seriously contaminating the surrounding environment. It was going through quite a bit.
군부대의 경우에는 M16, K1 등의 소총으로 사격할 경우 주로 실내 실탄사격장을 이용하는데, 대한민국 육군에만도 약 240여 개의 실내 실탄사격장이 설치되어 있다.In the case of military units, when shooting with rifles such as M16, K1, etc., mainly indoor shooting ranges are used, but only about 240 indoor shooting ranges are installed in the ROK Army alone.
그러나 종래 실내사격장의 경우, 현장에서 설비를 시설하는데 어려움이 있을 뿐만 아니라, 한 번 시설하게 되면 한 장소에서 폐쇄될 때 유지되어야만 하는 문제점이 있다.However, in the case of a conventional indoor shooting range, it is not only difficult to install a facility in the field, but once installed, there is a problem that must be maintained when it is closed in one place.
특히, 실탄사격장의 시설 이후, 사격장에서 발생하는 소음과 탄두에서 비산되어 발생하는 납 등 중금속 성분들의 오염으로 인한 사격장 인근 주민들의 민원제기와 환경보호단체들의 문제 제기로 인해 대부분의 실내실탄 사격장들이 폐쇄되어서 제대로 운영되지 못하고 있는 실정이다.In particular, after the installation of the live shooting range, most of the indoor shooting ranges were closed due to complaints from residents near the shooting range due to contamination of heavy metal components such as lead and fumes from the warhead and environmental protection groups. It is not operating properly.
또한, 실내 실탄사격장은 권총, 소총 등의 총기에서 발사된 탄두가 피탄지의 철판이나 피탄지 부근의 벽면과 시설물에 부딪혀 큰 소음과 분진 등을 발생하고, 특히 충격으로 으깨진 탄두에서 중금속 성분이 비산하여 실내 공기를 오염시키는 등의 각종 문제가 제기되었다. 그리고 실내 사격장의 경우에는 탄두의 충격을 흡수하기 위해 폐타이어나 타이어 칩을 표적지 뒤에 두기도 하지만, 탄두와의 충돌로 폐타이어에 포함된 납, 카드뮴 등의 중금속 성분이 분진으로 공기 중에 비산되게 되므로 오히려 실내공기 오염을 더 높이는 단점이 있었으며, 결국 군부대 및 경찰의 실내 실탄사격장 운영이 중단되는 지경에까지 이르게 되는 문제점이 있다.In addition, indoor shooting ranges cause heavy noise and dust when the warheads fired from firearms such as pistols and rifles collide with the iron plate of the parchment paper or the wall and facilities near the parchment paper. Therefore, various problems such as polluting indoor air were raised. In the case of indoor shooting ranges, waste tires or tire chips are placed behind the target to absorb the impact of the warhead, but due to collision with the warhead, heavy metal components such as lead and cadmium contained in the waste tires are scattered in the air as dust. On the contrary, there was a disadvantage that the indoor air pollution was further increased, and eventually there was a problem that the operation of the indoor shooting range of the military units and the police was stopped.
이에 따라 설비 시설이 용이하고, 탄두 파쇄로 인한 중금속 오염으로 인한 환경오염을 방지할 수 있으며, 탄두를 손상없이 수집할 수 있는 실탄사격장에 대한 연구와 개발이 필요한 실정이다.Accordingly, it is necessary to conduct research and development of a live-fire range capable of easily installing facilities, preventing environmental pollution due to heavy metal contamination caused by crushing warheads, and collecting warheads without damage.
따라서, 상기한 종래의 문제점을 해결하기 위한 본 발명은, 수요자가 요구하는 어떠한 장소 또는 운영자가 설치하고자 하는 장소 어디든지 이동 설치하고, 환기 및 전기 시설의 시설 과정 없이 바로 이용할 수 있어 경제성을 향상시킬 수 있는 이동식 실탄 사격 장비를 제공하는데 그 목적이 있다.Therefore, the present invention for solving the above-described conventional problems, can be installed in any place that the user wants or any place where the operator wants to install, can be used immediately without the process of ventilation and electrical facilities to improve economic efficiency The aim is to provide a portable, live-fired shooting equipment.
또한, 본 발명은 실탄 사용으로 인하여 사격장 내에서 발생하는 중금속 유해물질이 훈련자나 관리자에게 영향을 미치는 것을 방지하거나 최소화할 수 있고, 원형에 가까운 탄두를 회수할 수 있어 탄두의 재활용 및 환경오염 방지를 도모할 수 있으며, 탄두 회수 작업을 용이하게 하여 회수 작업성과 설비 운용성을 향상시킬 수 있는 이동 실탄 사격 장비를 제공하는데 다른 목적이 있다.In addition, the present invention can prevent or minimize heavy metal harmful substances generated in the shooting range due to the use of live ammunition to the trainer or manager, and can recover warheads that are close to the circle to prevent warhead recycling and environmental pollution. Another object is to provide a mobile live shooting equipment capable of improving the recovery workability and facility operability by facilitating a warhead recovery operation.
본 발명의 해결과제는 이상에서 언급한 것들에 한정되지 않으며, 언급되지 아니한 다른 해결과제들은 아래의 기재로부터 당업자에게 명확하게 이해될 수 있을 것이다.The problems of the present invention are not limited to those mentioned above, and other problems not mentioned will be clearly understood by those skilled in the art from the following description.
본 발명의 일 관점에 따르면, 일측에 출입 도어가 형성되는 컨테이너형 바디; 상기 컨테이너형 바디에 구성되어 내부 공기를 흡기 정화하고 환기시키기 위한 벤틸레이션 유닛(ventilation means); 상기 벤틸레이션 유닛을 제어하기 위한 제어반; 상기 컨테이너형 바디의 표적지 측에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛; 및 상기 벤틸레이션 유닛과 제어반을 포함한 전력 필요 장비로 전력을 공급하기 위한 자가발전 방식의 전력 공급 유닛;을 포함하는 이동식 실탄 사격 장비가 제공된다.According to an aspect of the present invention, a container-type body in which an entrance door is formed on one side; A ventilation unit configured in the container-type body to intake, purify and ventilate internal air; A control panel for controlling the ventilation unit; A ballistic warhead recovery unit provided on a target paper side of the container-type body to recover a ballistic warhead; And a self-powered power supply unit for supplying power to the power-requiring equipment including the ventilation unit and the control panel.
본 발명의 다른 관점에 따르면, 일면에 개구부를 갖고 형성되는 바디; 상기 바디의 개구부의 후방 측에 구비되는 타겟 유닛; 상기 타겟 유닛의 명중 여부를 검출하기 위한 명중 검출 유닛; 상기 명중 검출 유닛에 의해 검출된 신호를 외부로 무선 송신하기 위한 무선 통신 모듈; 및 상기 타겟 유닛의 후방에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛;을 포함하는 이동식 실탄 사격 장비가 제공된다.According to another aspect of the invention, the body is formed with an opening on one surface; A target unit provided on a rear side of the opening of the body; An hit detection unit for detecting whether the target unit is hit; A wireless communication module for wirelessly transmitting a signal detected by the hit detection unit to the outside; And it is provided at the rear of the target unit, the projectile bullet warhead recovery unit for recovering a projectile warhead; is provided.
본 발명에 따른 이동식 실탄 사격 장비에 의하면 다음과 같은 효과를 제공한다.According to the mobile ammunition shooting equipment according to the present invention provides the following effects.
첫째, 본 발명은 수요자가 요구하는 어떠한 장소 또는 운영자가 설치하고자 하는 장소 어디든지 이동 설치하고, 환기 및 전기 시설의 시설 과정 없이 바로 이용할 수 있어 설치성과 경제성 및 범용성을 향상시킬 수 있다.First, the present invention can be installed in any place required by the user or any place the operator wants to install, and can be used immediately without the facility process of ventilation and electrical facilities, thereby improving installation performance, economic efficiency, and versatility.
둘째, 본 발명은 실탄사격장에서 실탄의 사용으로 인해 발생하는 중금속 유해물질을 신속히 제거하여 훈련자나 관리자가 중금속 유해물질로 오염되는 것을 방지할 수 있도록 하여 훈련자나 관리자의 건강에 해를 끼치지 않도록 하는 효과가 있다.Second, the present invention is to remove the heavy metal harmful substances caused by the use of real ammunition at the live shooting range so that the trainee or manager can be prevented from being contaminated with heavy metal harmful substances so as not to harm the health of the trainee or manager It works.
셋째, 본 발명은 중금속 발생의 주요 원인인 탄두를 손상없이 포집하도록 함으로써 탄두에 포함된 납, 구리 등의 중금속 유해물질들이 비산되는 것을 방지할 뿐만 아니라, 탄두에 포함된 납 등의 중금속 성분들이 공기와 토양 속으로 그대로 축적되어 공기, 토양 및 수질을 오염시키는 문제를 차단하여 환경오염을 방지할 수 있다.Third, the present invention not only prevents heavy metal harmful substances such as lead and copper from being scattered by collecting the warhead, which is a major cause of heavy metal damage, without damage, but also heavy metal components such as lead contained in the warhead are air And prevents environmental pollution by blocking the problem of contaminating air, soil, and water by accumulating in the soil.
넷째, 본 발명은 원형에 가까운 탄두를 회수할 수 있어 탄두의 재활용 및 환경오염 방지를 도모할 수 있다.Fourth, according to the present invention, it is possible to recover warheads that are close to the original shape, thereby promoting recycling and prevention of environmental pollution.
다섯째, 본 발명은 탄두 회수 작업을 용이하게 하여 회수 작업성과 설비 운용성을 향상시킬 수 있다.Fifth, the present invention can improve recovery workability and facility operability by facilitating a warhead recovery operation.
여섯째, 본 발명은 기본형 사격장으로 구성할 수 있을 뿐만 아니라, 복수 연결하여 결합시킬 경우 영점 사격장으로도 구성할 수 있어 범용성을 더욱 확장할 수 있다.Sixth, the present invention can not only be configured as a basic shooting range, but also can be configured as a zero-point shooting range when combined by connecting a plurality, so that the versatility can be further expanded.
일곱째, 본 발명은 무선 통신을 통해 명중 여부나 명중 횟수를 통제 장소나 사격자 측에서 용이하게 파악하고 모니터링 할 수 있어 운용성과 관리 효율성을 향상시킬 수 있다.Seventh, the present invention can improve the operability and management efficiency by easily grasping and monitoring whether or not the number of hits or the number of hits is performed through a wireless communication at a control location or a shooter side.
본 발명의 효과는 이상에서 언급된 것들에 한정되지 않으며, 언급되지 아니한 다른 해결과제들은 아래의 기재로부터 당업자에게 명확하게 이해되어질 수 있을 것이다.The effects of the present invention are not limited to those mentioned above, and other solutions not mentioned will be clearly understood by those skilled in the art from the following description.
도 1은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비의 외형도, 1 is an external view of a mobile live ammunition shooting equipment according to an embodiment of the present invention,
도 2는 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 일부 절개한 내부 구성도,Figure 2 is an internal configuration of a part of the mobile ammunition shooting equipment in accordance with an embodiment of the present invention,
도 3은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비의 구성을 측면에서 바라본 개략도,Figure 3 is a schematic view as viewed from the side of the configuration of the mobile ammunition shooting equipment according to an embodiment of the present invention,
도 4는 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 바디의 벽체 구조 단면도,Figure 4 is a cross-sectional wall structure of the body included in the mobile ammunition shooting equipment according to an embodiment of the present invention,
도 5는 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 바디의 벽체가 흡음 가능한 구조로 구성되는 경우로, 완충 플레이트의 일부 확대도,Figure 5 is a case where the wall of the body included in the mobile ammunition shooting equipment according to an embodiment of the present invention is composed of a sound-absorbing structure, partially enlarged view of the buffer plate,
도 6은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 평면에서 바라본 개략도,Figure 6 is a schematic view of a mobile live ammunition shooting equipment according to an embodiment of the present invention as viewed from a plane,
도 7은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 실탄 탄두 회수 유닛의 측면도,Figure 7 is a side view of the ammunition warhead recovery unit included in the mobile ammunition shooting equipment according to an embodiment of the present invention,
도 8은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 실탄 탄두 회수 유닛의 정면도,Figure 8 is a front view of the ammunition warhead recovery unit included in the mobile ammunition shooting equipment according to an embodiment of the present invention,
도 9는 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비를 정면에서 바라본 사시도,Figure 9 is a perspective view of the mobile ammunition shooting equipment according to another embodiment of the present invention as viewed from the front,
도 10은 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비의 내부 구성도,Figure 10 is an internal configuration of a mobile shotgun shooting equipment according to another embodiment of the present invention,
도 11은 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비를 구성하는 실탄 탄두 회수 유닛의 측면도,Figure 11 is a side view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to another embodiment of the present invention,
도 12는 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비를 구성하는 실탄 탄두 회수 유닛의 정면도, 및Figure 12 is a front view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to another embodiment of the present invention, and
도 13은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 탑재한 차량을 표현한 예시도이다.13 is an exemplary view showing a vehicle equipped with a mobile bullet shooting device according to an embodiment of the present invention.
본 발명의 추가적인 목적들, 특징들 및 장점들은 다음의 상세한 설명 및 첨부도면으로부터 보다 명료하게 이해될 수 있다. Additional objects, features and advantages of the invention may be more clearly understood from the following detailed description and accompanying drawings.
본 발명의 상세한 설명에 앞서, 본 발명은 다양한 변경을 도모할 수 있고, 여러 가지 실시 예를 가질 수 있는바, 아래에서 설명되고 도면에 도시된 예시들은 본 발명을 특정한 실시 형태에 대해 한정하려는 것이 아니며, 본 발명의 사상 및 기술 범위에 포함되는 모든 변경, 균등물 내지 대체물을 포함하는 것으로 이해되어야 한다.Prior to the detailed description of the present invention, the present invention is capable of various changes, and may have various embodiments. The examples described below and illustrated in the drawings are intended to limit the present invention to specific embodiments. No, it should be understood to include all modifications, equivalents, and substitutes included in the spirit and scope of the present invention.
어떤 구성요소가 다른 구성요소에 "연결되어" 있다거나 "접속되어" 있다고 언급된 때에는, 그 다른 구성요소에 직접적으로 연결되어 있거나 또는 접속되어 있을 수도 있지만, 중간에 다른 구성요소가 존재할 수도 있다고 이해되어야 할 것이다. 반면에, 어떤 구성요소가 다른 구성요소에 "직접 연결되어" 있다거나 "직접 접속되어" 있다고 언급된 때에는, 중간에 다른 구성요소가 존재하지 않는 것으로 이해되어야 할 것이다.When an element is said to be "connected" or "connected" to another component, it is understood that other components may be directly connected to or connected to the other component, but other components may exist in the middle. It should be. On the other hand, when a component is said to be "directly connected" or "directly connected" to another component, it should be understood that no other component exists in the middle.
본 명세서에서 사용한 용어는 단지 특정한 실시 예를 설명하기 위해 사용된 것으로, 본 발명을 한정하려는 의도는 아니다. 단수의 표현은 문맥상 명백하게 다르게 뜻하지 않는 한, 복수의 표현을 포함한다. 본 명세서에서, "포함하다" 또는 "가지다" 등의 용어는 명세서상에 기재된 특징, 숫자, 단계, 동작, 구성요소, 부품 또는 이들을 조합한 것이 존재함을 지정하려는 것이지, 하나 또는 그 이상의 다른 특징들이나 숫자, 단계, 동작, 구성요소, 부품 또는 이들을 조합한 것들의 존재 또는 부가 가능성을 미리 배제하지 않는 것으로 이해되어야 한다.The terms used in this specification are only used to describe specific embodiments, and are not intended to limit the present invention. Singular expressions include plural expressions unless the context clearly indicates otherwise. In this specification, terms such as “include” or “have” are intended to indicate that a feature, number, step, operation, component, part, or combination thereof described in the specification exists, and that one or more other features are present. It should be understood that the existence or addition possibilities of fields or numbers, steps, operations, components, parts or combinations thereof are not excluded in advance.
또한, 명세서에 기재된 "...부", "...유닛", "...모듈" 등의 용어는 적어도 하나의 기능이나 동작을 처리하는 단위를 의미하며, 이는 하드웨어나 소프트웨어 또는 하드웨어 및 소프트웨어의 결합으로 구현될 수 있다.In addition, terms such as "... unit", "... unit", "... module" described in the specification mean a unit that processes at least one function or operation, which is hardware or software or hardware and It can be implemented with a combination of software.
또한, 첨부 도면을 참조하여 설명함에 있어, 도면 부호에 관계없이 동일한 구성 요소는 동일한 참조부호를 부여하고 이에 대한 중복되는 설명은 생략하기로 한다. 본 발명을 설명함에 있어서 관련된 공지 기술에 대한 구체적인 설명이 본 발명의 요지를 불필요하게 흐릴 수 있다고 판단되는 경우 그 상세한 설명을 생략한다.In addition, in the description with reference to the accompanying drawings, the same reference numerals are assigned to the same components regardless of reference numerals, and redundant descriptions thereof will be omitted. In the description of the present invention, when it is determined that detailed descriptions of related known technologies may unnecessarily obscure the subject matter of the present invention, detailed descriptions thereof will be omitted.
이하, 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 첨부 도면을 참조하여 상세히 설명한다. Hereinafter, with reference to the accompanying drawings, mobile ammunition shooting equipment according to an embodiment of the present invention will be described in detail.
도 1은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비의 외형도, 도 2는 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 일부 절개한 내부 구성도, 도 3은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비의 구성을 측면에서 바라본 개략도, 도 4는 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 바디의 벽체 구조 단면도, 도 5는 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 바디의 벽체가 흡음 가능한 구조로 구성되는 경우로, 완충 플레이트의 일부 확대도, 도 6은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 평면에서 바라본 개략도, 도 7은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 실탄 탄두 회수 유닛의 측면도, 도 8은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비에 포함되는 실탄 탄두 회수 유닛의 정면도, 및 도 13은 본 발명의 일실시예에 따른 이동식 실탄 사격 장비를 탑재한 차량을 표현한 예시도이다.Figure 1 is an external view of a mobile ammunition shooting equipment according to an embodiment of the present invention, Figure 2 is an internal configuration diagram partially cut off a mobile ammunition shooting equipment according to an embodiment of the present invention, Figure 3 is an embodiment of the present invention Figure 4 is a schematic view of the configuration of a mobile shotgun shooting equipment according to an example, Figure 4 is a cross-sectional wall structure of the body included in the mobile shotgun shooting equipment according to an embodiment of the present invention, Figure 5 is according to an embodiment of the present invention When the wall of the body included in the mobile ammunition shooting equipment is configured with a sound-absorbing structure, a partially enlarged view of the buffer plate, FIG. 6 is a schematic view of the mobile ammunition shooting equipment according to an embodiment of the present invention in a plan view, FIG. 7 Is a side view of the ammunition warhead recovery unit included in the mobile ammunition shooting equipment according to an embodiment of the present invention, Figure 8 is included in the mobile ammunition shooting equipment according to an embodiment of the present invention Is a front view, and Fig. 13 of the live ammunition warhead recovery unit is an example representation of a vehicle equipped with a removable ammunition firing device according to one embodiment of the present invention.
본 발명의 일실시예에 따른 이동식 실탄 사격 장비는, 도 1 내지 도 8에 나타낸 바와 같이, 일측 단부에 개폐 가능한 도어가 구성되거나, 출입 도어(110)가 형성되는 컨테이너형 바디(100); 컨테이너형 바디(100)에 구성되어 내부 공기를 흡기 정화하고 환기시키기 위한 벤틸레이션 유닛(ventilation means); 상기 벤틸레이션 유닛을 제어하기 위한 제어반; 컨테이너형 바디(100)의 표적지 측에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛(300); 및 벤틸레이션 유닛과 제어반을 포함한 전력 필요 장비로 전력을 공급하기 위한 전력 공급 유닛;을 포함한다.Mobile ammunition shooting equipment according to an embodiment of the present invention, as shown in Figures 1 to 8, a container-type body 100 is formed of a door that can be opened or closed at one end, or the entrance door 110 is formed; It is configured in the container-type body 100, the ventilation unit (ventilation means) for intake purification and ventilation of the internal air; A control panel for controlling the ventilation unit; A ballistic warhead recovery unit 300 which is provided on the target paper side of the container-type body 100 and recovers a projectile warhead; And a power supply unit for supplying power to the power-requiring equipment including a ventilation unit and a control panel.
컨테이너형 바디(100)는 상면과 측면 및 바닥면 중 적어도 하나에는 후술하는 벤틸레이션 유닛을 구성하는 일부 구성요소들이 수용되며, 탈착가능하게 구성되는 수용 하우징(120)이 구비된다. 도 1에서 수용 하우징(120)은 컨테이너형 바디(100)의 상부와 측부에 구성되는 경우를 나타내고 있으며, 메쉬형 환풍면을 포함하여 구성될 수 있다.The container-type body 100 is accommodated in at least one of the upper surface, the side surface, and the bottom surface, and some components constituting the ventilating unit, which will be described later, are accommodated, and the receiving housing 120 is configured to be detachable. In FIG. 1, the housing 120 shows a case in which the container-type body 100 is configured at an upper portion and a side portion, and may include a mesh-shaped vent surface.
또한, 컨테이너형 바디(100)는 그 내벽에 방탄 및 도비탄과 같은 탄두의 손상을 최소화할 수 있는 벽체를 포함하여 구성되는 것이 바람직하다.In addition, the container-type body 100 is preferably configured to include a wall that can minimize damage to warheads such as bulletproof and dobitan on its inner wall.
예를 들면, 컨테이너형 바디(100)의 벽체는 도 4에 나타낸 바와 같이 컨테이너형 바디의 철재 외판(101)과, 철재 외판(101) 내측에 구비되고, 실탄 관통을 방지할 수 있는 공지의 방판 재질로 이루어지는 소정 두께(예를 들면, 65mm)의 방탄 플레이트(102)와, 방탄 플레이트(102)와 이격되게 구비되어 도비탄과 같은 탄두의 충격을 1차적으로 완충시키기 위한 완충 플레이트(103), 및 방탄 플레이트(102)와 완충 플레이트(103) 사이의 이격 공간에 채워져 도비탄과 같은 탄두의 충격을 2차 완충시키기 위한 소정 입경(예를 들면, 2 ~ 5mm)의 고무입자 충전층(104)을 포함한다.For example, the wall of the container-type body 100 is provided on the inside of the steel outer plate 101 and the steel outer plate 101 of the container-type body, as shown in Figure 4, a known plate that can prevent bullet penetration Bulletproof plate 102 of a predetermined thickness (for example, 65 mm) made of a material, and provided to be spaced apart from the bulletproof plate 102, a buffer plate 103 for primarily cushioning the impact of a warhead such as dobitan, And a rubber particle filling layer 104 having a predetermined particle diameter (for example, 2 to 5 mm) for secondary cushioning of impact of a warhead such as dobitan filled in a space between the bulletproof plate 102 and the buffer plate 103 It includes.
완충 플레이트(103)는 소정 두께의 고무판 또는 압축 고무판으로 이루어질 수 있으며, 이러한 완충 플레이트(103)는 붕소, 염소, 브롬, 인 등의 난연성 원소(난연재)가 함유되어 이루어지는 것이 바람직하다.The buffer plate 103 may be formed of a rubber plate or a compressed rubber plate of a predetermined thickness, and the buffer plate 103 is preferably made of a flame retardant element (flame retardant) such as boron, chlorine, bromine, and phosphorus.
이와 같이 컨테이너형 바디(100)를 이루는 벽체는 최내측이 난연성 원소가 포함되는 고무판으로 이루어짐으로써, 완충성과 방탄성을 가지면서 난연 기능을 가질 수 있게 되어 잘못 발사되는 탄두의 충격에 따른 마찰열이나 다른 화재 원인에 의한 화재 발생을 방지할 수 있게 된다.As described above, the wall forming the container body 100 is made of a rubber plate having an innermost flame retardant element, and thus has a flame retardant function while having cushioning and bulletproof properties, and friction heat or other impacts due to the impact of a misfired warhead It is possible to prevent a fire from being caused by a fire.
또한, 컨테이너형 바디(100)의 내측 벽체를 구성하는 완충 플레이트(103)는 그 고무판 전체 또는 부분적으로는 내부에 평면적으로(전체 면적으로) 부직포가 구비될 수 있다. 상기 부직포는 파형으로 이루어지며, 파형 부직포가 간격을 갖고 복수 개 구비되는 것으로 이루어질 수 있다.In addition, the buffer plate 103 constituting the inner wall of the container-like body 100 may be provided with a non-woven fabric in a flat (total area) inside or partially in the rubber plate. The non-woven fabric may be formed of a wave shape, and may be formed of a plurality of wave-shaped non-woven fabrics at intervals.
이와 같이 완충 플레이트(103)는 내부에 파형의 부직포가 구비됨으로써 오발사되는 실탄이나 도비탄의 발생 시 컨테이너형 바디(100) 자체 및 주변 시설물의 파손을 최소화하거나 방지할 수 있게 된다.As described above, the buffer plate 103 is provided with a corrugated non-woven fabric inside, thereby minimizing or preventing damage to the container-type body 100 itself and surrounding facilities when misfired missiles or dobitans are generated.
또한, 완충 플레이트(103)는 도 5에 나타낸 바와 같이 계란판 형상을 갖는 흡음 구조체로 이루어질 수 있다.In addition, the buffer plate 103 may be formed of a sound absorbing structure having an egg plate shape as shown in FIG. 5.
구체적으로, 완충 플레이트(103)는 계란판 형상, 즉 요홈(103a)이 소정의 간격으로 규칙적으로 배열되고, 요홈(103a)과 요홈(103a) 사이에 돌출부(103b)가 형성되며, 돌출부(103b) 배면으로는 다시 요홈(103a)이 형성되고, 돌출부 배면에 형성된 요홈(103a)과 요홈(103a) 사이 즉, 요홈(103a)의 배면으로는 돌출부(103b)가 형성된 형상으로 이루어질 수 있다.Specifically, the buffer plate 103 has an egg plate shape, that is, the grooves 103a are regularly arranged at predetermined intervals, and the protrusions 103b are formed between the grooves 103a and the grooves 103a, and the protrusions 103b ) Recess groove 103a may be formed on the back surface, and between the recess 103a and the recess 103a formed on the rear surface of the protrusion, that is, the rear surface of the recess 103a may have a protrusion 103b.
이에 따라 컨테이너형 바디(100)의 내측 벽체 또는 내측 벽체에 구비되는 완충 플레이트(103)는 상기한 계란판 형상을 가짐으로써 그 형상으로 인해 사격 소음을 상쇄 완화시켜 소음을 흡음하게 된다.Accordingly, the buffer plate 103 provided on the inner wall or the inner wall of the container-type body 100 has the above-mentioned egg plate shape, thereby canceling the shooting noise due to its shape, thereby absorbing noise.
이러한 흡음 구조체는 완충 플레이트(103)가 고무판이 아닌 발포체 등 다른 재질로 이루어질 수 있으며, 붕소, 염소, 브롬, 인 등의 난연성 원소(난연재)가 함유되어 형성될 수 있다.The sound absorbing structure may be formed of a buffer plate 103 made of a different material, such as a foam, rather than a rubber plate, and may be formed by containing a flame retardant element (flame retardant) such as boron, chlorine, bromine, and phosphorus.
계속해서, 컨테이너형 바디(100)의 단부 측 일면 벽, 구체적으로는 탄두 회수 유닛(300)이 위치되는 단부 측의 벽은 중앙부를 중심으로 양측으로, 또는 일단부를 중심으로 회전하여 개방가능한 개폐 구조로 이루어지거나, 탈락가능하게 이루어질 수 있다.Subsequently, an end-side wall of the container-type body 100, specifically, an end-side wall on which the warhead recovery unit 300 is located, can be opened and closed by rotating around both sides or one end around the central portion. It can be made of, or can be made to be removable.
이는 컨테이너형 바디(100)의 일면 벽이 개방가능한 개폐 구조로 이루어져, 개방된 상태에서 아래에서 자세히 설명될 인입출 가이드유닛을 따라 실탄 탄두 회수 유닛(300)을 외부로 꺼낸 후, 외부에서 탄두의 회수 및 관련 구성들의 교체를 용이하게 실시할 수 있게 된다.This is made of an open and close structure that can be opened and closed on one side of the container-type body 100, and after the take-out warhead recovery unit 300 is taken out along the draw-out guide unit, which will be described in detail below in the opened state, the warhead is externally exposed. The recovery and replacement of related components can be easily performed.
또한, 컨테이너형 바디(100)의 양단부 측 벽이 탈락가능하게 이루어질 수 있는데, 이 경우 컨테이너형 바디(100)를 연속하여 연결 고정하여 영점 사격을 위한 사격장으로 구성할 수 있다. In addition, the walls at both ends of the container-type body 100 may be detachable, and in this case, the container-type body 100 may be continuously connected and fixed to form a shooting range for zero-point shooting.
다음으로, 상기 벤틸레이션 유닛은 컨테이너형 바디(100)의 일단부 측인 발사위치(F) 전방의 직하방 바닥에 설치되는 총연배기 흡기유닛(제1 흡기 유닛)(210)과, 컨테이너형 바디(100)의 타단부 측인 표적지 또는 피탄지(B)(이하, "표적지"로 통칭함)의 직하방 또는 전방 직하방의 바닥에 설치되는 표적지 흡기유닛(제2 흡기 유닛)(220)과, 발사위치(F)와 표적지(B)) 사이의 양측면 바닥부에 설치되는 측면 흡기유닛(제3 흡기 유닛)(230)과, 발사위치(F)와 표적지(B) 사이의 상부에 설치되는 천장 흡기유닛(제4 흡기 유닛)(240)과, 상기한 흡기유닛(210 내지 240)들로부터 공기를 흡기하도록 구동하는 흡기구동유닛과, 상기 흡기구동유닛을 통해 흡기되는 공기를 정화시켜 외부로 배출시키기 위한 정화유닛, 및 컨테이너형 바디(100)의 내측으로 외기를 공급하도록 구성되는 환기유닛을 포함한다.Next, the ventilating unit is a total exhaust intake unit (first intake unit) 210 and a container-type body ( Target land intake unit (second intake unit) 220, which is installed on the bottom of the target paper or bullet paper (B) (hereinafter referred to as "target paper") directly below or in front of the other end of the 100, and the firing position A side intake unit (third intake unit) 230 installed on the bottom of both sides between the (F) and the target land (B), and a ceiling intake unit installed on the upper part between the firing position (F) and the target land (B) (4th intake unit) 240, an intake driving unit that drives to intake air from the above intake units 210 to 240, and for purifying and discharging the air intake through the intake driving unit to the outside Purification unit, and a ring configured to supply outside air to the inside of the container-type body 100 It includes a base unit.
총연배기 흡기유닛(제1 흡기유닛)(210)은 실내 실탄사격장의 발사위치(F) 전방의 직하방 바닥부에 설치되어 사격시 소화기(총기)에서 발사되는 시점에 발생되는 유해물질 함유의 총연 배기가스를 흡기하도록 이루어진다.The total smoke intake unit (first intake unit) 210 is installed at the bottom of the firing range (F) in front of the firing position of the indoor live shooting range, and the smoke is contained in the fire extinguisher (firearm) when fired. It is made to intake exhaust gas.
이러한 총연배기 흡기유닛(제1 흡기유닛)(210)은 발사위치에 대하여 평행하게 바닥을 가로질러 설치되고, 상측에 흡기구가 형성된 하나 이상의 흡기관을 갖는 흡기모듈로 구성되며, 그 일단 또는 양단이 후술하는 흡기구동유닛의 공동 흡기덕트(251)에 연결되어 이루어진다.The total smoke intake unit (first intake unit) 210 is installed across the floor parallel to the firing position, and is composed of an intake module having one or more intake pipes with an intake port formed on the upper side, one or both ends of which It is made to be connected to the cavity intake duct 251 of the intake mechanism described later.
여기서, 총연배기 흡기유닛(제1 흡기유닛)(210)의 흡기모듈은 흡기구가 이물질 등으로 인해 폐색되는 것을 방지하기 위하여 부직포나 메쉬망으로 커버되거나 개구 방향이 측방향으로 형성되도록 이루어질 수 있다.Here, the intake module of the total smoke intake unit (first intake unit) 210 may be formed such that the intake port is covered with a nonwoven fabric or a mesh network or an opening direction is formed in a lateral direction in order to prevent the intake port from being occluded due to foreign matter.
다음으로, 표적지 흡기유닛(제2 흡기 유닛)(220)은 컨테이너형 바디(100)의 타단부 측인 표적지의 직하방 이나 그의 전방 직하방 또는 탄두 회수 유닛(300)의 전방 직하방 바닥부에 설치되어 발사된 실탄의 탄두가 표적지(B)나 탄두 회수 유닛(300)에 부딪히면서 발생하는 유해물 함유의 공기를 흡기하도록 이루어진다.Next, the target paper intake unit (second intake unit) 220 is installed at the bottom of the target paper, which is the other end side of the container-like body 100, directly below or in front of the target paper, or at the bottom directly below the warhead recovery unit 300. It is made to inhale the air containing the harmful substances generated while the warhead of the fired bullets hit the target land (B) or the warhead recovery unit 300.
이러한 표적지 흡기유닛(제2 흡기 유닛)(220)은 표적지(B)의 직하방이나 그의 전방 직하방 또는 탄두 회수 유닛(300)의 전방 직하방에서 바닥을 가로질러 설치되고(도면에서는 표적지(B)의 직하방에 설치되는 것을 예시로 하여 도시됨), 상측에 흡기구가 형성된 하나 이상의 흡기관을 갖는 흡기모듈로 구성되며, 그 일단 또는 양단이 후술하는 흡기구동유닛의 공동 흡기덕트(251)에 연결되어 이루어진다.The target paper intake unit (second intake unit) 220 is installed across the floor directly below or directly below the front of the target paper B, or directly below the warhead recovery unit 300 (in the drawing, the target paper B ) Is shown as an example that is installed directly below, consists of an intake module having one or more intake pipes with an intake port formed on the upper side, and one or both ends thereof are provided in a common intake duct 251 of the intake mechanism described below. It is connected.
여기서, 표적지 흡기유닛(제2 흡기 유닛)(220)의 흡기모듈 또한 흡기구가 이물질 등으로 인해 폐색되는 것을 방지하기 위하여 부직포나 메쉬망으로 커버되거나 개구 방향이 측방향으로 형성되도록 이루어질 수 있다.Here, the intake module of the target paper intake unit (second intake unit) 220 may also be formed such that the intake port is covered with a nonwoven fabric or a mesh network or an opening direction is formed laterally to prevent clogging due to foreign matter.
계속해서, 측면 흡기유닛(제3 흡기 유닛)(230)은 발사위치(F)와 표적지(B) 사이의 공간에서 실탄 사격에 의해 발생되는 유해물질을 함유한 가스는 상대적으로 그의 무게로 인해 바닥 측으로 가라앉는데, 이때 발사위치(F)와 표적지(B) 사이의 공간의 바닥 측에서 대류하는 공기를 바닥측 측면에서 흡기하도록 이루어진다.Subsequently, the side intake unit (third intake unit) 230 is a gas containing harmful substances generated by a live ammunition fire in the space between the firing position (F) and the target site (B), the bottom due to its weight It sinks to the side, and at this time, it is made to inhale air convecting from the bottom side of the space between the firing position (F) and the target site (B).
이러한 측면 흡기유닛(제3 흡기 유닛)(230)은 발사위치(F)와 표적지(B) 사이 공간의 바닥측 측면에 설치되는 복수의 흡기구, 및 상기 복수의 흡기구와 연통되는 분지관으로 구성되며, 상기 분지관은 후술하는 흡기구동유닛의 공동 흡기덕트(251)에 연결되어 이루어진다. 이러한 측면 흡기유닛(제3 흡기 유닛)(230)의 흡기구는 이물질 등이 유입되는 것을 방지하기 위하여 부직포나 메쉬망으로 커버되거나 개구 방향이 하방향으로 형성되도록 이루어질 수 있다.The side intake unit (third intake unit) 230 is composed of a plurality of intake vents installed on the bottom side of the space between the firing position (F) and the target site (B), and a branch pipe communicating with the plurality of intake vents , The branch pipe is connected to the common intake duct 251 of the intake mechanism described later. The intake port of the side intake unit (third intake unit) 230 may be formed to be covered with a non-woven fabric or a mesh net or to form an opening in a downward direction to prevent foreign matter or the like from entering.
또한, 측면 흡기유닛(제3 흡기 유닛)(230)의 전면은 컨테이너형 바디(100)의 측면을 이루는 측벽에서 돌출되지 않게 구성된다. 다시 말해서, 측면 흡기유닛(제3 흡기 유닛)(230)을 구성하는 구성요소들은 도 1에 나타낸 바와 같이 컨테이너형 바디(100)의 측면에 구성되는 하우징(120)에 수용되게 구성될 수 있다.In addition, the front surface of the side intake unit (third intake unit) 230 is configured not to protrude from the side wall forming the side of the container body 100. In other words, the components constituting the side intake unit (third intake unit) 230 may be configured to be accommodated in the housing 120 formed on the side of the container-like body 100 as shown in FIG. 1.
계속해서, 발사위치(F)와 표적지(B) 사이의 상부에 설치되는 천장 흡기유닛(제4 흡기 유닛)(240)은, 사격장의 발사위치(F)와 표적지(B) 사이의 공간에서 실탄 사격에 의해 발생되는 유해물질을 함유하면서 떠 있는 가스를 천장 측에서 흡기하도록 이루어진다.Subsequently, the ceiling intake unit (fourth intake unit) 240 which is installed on the upper portion between the firing position F and the target land B, is fired in the space between the firing position F and the target land B of the shooting range. It is made to inhale floating gas from the ceiling while containing harmful substances generated by shooting.
구체적으로, 천장 흡기유닛(제4 흡기 유닛)(240)은 실내 사격장의 발사위치(F)와 표적지(B) 사이 공간의 천장부에 설치되는 하나 이상의 흡기구로 구성되며, 이러한 천장 흡기유닛(제4 흡기 유닛)(240)의 흡기구는 후술하는 흡기구동유닛의 공동 흡기덕트(251)에 연결되어 이루어진다. 이러한 천장 흡기유닛(제4 흡기 유닛)(240)의 흡기구는 메쉬망으로 커버되어 이루어질 수 있다.Specifically, the ceiling intake unit (fourth intake unit) 240 is composed of one or more intake vents installed in the ceiling portion of the space between the firing position (F) and the target area (B) of the indoor shooting range, such a ceiling intake unit (fourth The intake port of the intake unit 240 is connected to the common intake duct 251 of the intake mechanism described below. The intake vents of the ceiling intake unit (fourth intake unit) 240 may be formed by being covered with a mesh net.
또한, 천장 흡기유닛(제4 흡기 유닛)(240)의 전방 측에는 잘못 발사된 실탄에 의해 천장 흡기유닛의 흡기구가 손상되는 것을 방지하기 위한 차폐판(241)이 더 구성될 수 있다.In addition, a shielding plate 241 may be further configured on the front side of the ceiling intake unit (fourth intake unit) 240 to prevent damage to the intake vents of the ceiling intake unit due to misfired shots.
다음으로, 상기 흡기구동유닛은 상기한 각 흡기유닛(제1 내지 제4 흡기유닛)(210 내지 240)이 각각 연결되는 공동 흡기덕트(251), 및 공동 흡기덕트(251)의 말단부 경로 상에 설치되어 공기를 흡기하여 배기하도록 구동되며, 컨테이너형 바디(100)의 상부에 구비되는 하우징(120)에 구비되는 흡기팬(252)을 포함한다.Next, the intake mechanism is on the path of the end of the cavity intake duct 251 and the cavity intake duct 251 to which each of the above-described intake units (first to fourth intake units) 210 to 240 are respectively connected. It is installed and driven to intake and exhaust air, and includes an intake fan 252 provided in a housing 120 provided on an upper portion of the container body 100.
여기서, 상기 흡기구동유닛은 흡기팬(252)을 보조하여 각 흡기유닛(제1 내지 제4 흡기유닛)(210 내지 240)에 각각 연결되어 그로부터 공기를 흡기하기 위한 서브 흡기팬(253)을 더 포함할 수 있다. 도면에서는 측면 흡기유닛(240)에 대한 서브 흡기팬(253)에 대해서만 도시하고 있다.Here, the intake mechanism unit further includes a sub intake fan 253 for intake of air from each of the intake fans 252 connected to each intake unit (first to fourth intake units) 210 to 240. You can. In the drawing, only the sub intake fan 253 for the side intake unit 240 is illustrated.
계속해서, 상기 흡기구동유닛을 통해 흡기되는 공기를 정화시켜 외부로 배출시키기 위한 정화유닛은, 흡기팬(252)의 배기 라인에 설치되어 실내 실탄사격장에서 총탄 사격에 의해 발생하는 화약성분들과 분진들로 오염된 공기를 정화하여 외부로 배기하도록 구성되는 세정 집진 장치(261)로 구성될 수 있다.Subsequently, a purifying unit for purifying air exhausted through the intake driving unit and discharging it to the outside is installed in an exhaust line of the intake fan 252 and explosive components and dusts generated by bullet shooting at an indoor live shooting range. It may be configured as a cleaning dust collecting device 261 configured to purify the contaminated air and exhaust it to the outside.
세정 집진 장치(261)는 습식 세정 집진 장치(wet scrubber)로 이루어질 수 있으며, 컨테이너형 바디(100)의 상부 측에 구성되는 하우징(120)에 수용되어 구성될 수 있다.The cleaning dust collecting device 261 may be formed of a wet scrubber, and may be configured to be accommodated in a housing 120 configured on an upper side of the container-type body 100.
여기서, 본 발명은 세정 집진 장치(261)로 세정수로 사용되는 물이 투입되며, 세정 집진 장치(261)에서 배출되는 물에는 화약성분과 분진 등의 오염물질들이 포함되어 있으므로 수처리 장치(262)에 의해 폐수를 정화처리한 후에 외부로 배수하도록 구성될 수 있다.Here, according to the present invention, water used as cleaning water is introduced into the cleaning dust collecting device 261, and the water discharged from the cleaning dust collecting device 261 contains contaminants such as chemical components and dust. It can be configured to drain to the outside after purifying the wastewater.
다음으로, 실내사격장 내측으로 외기를 공급하도록 구성되는 환기유닛은, 실내 실탄사격장의 천장으로부터 외기를 공급하도록 가이드하는 하나 이상의 천장 외기공급구(제1 외기 공급구)(271)와, 실내사격장의 측방에서 외기를 공급하도록 가이드하는 하나 이상의 측방 외기공급구(제2 외기 공급구)(272)와, 상기 발사위치(F)의 후방 측에 구성되되, 송풍되는 외기가 상기 제1 흡기유닛(210) 측을 지향하도록 구성되는 발사위치 외기공급구(제3 외기 공급구)(273), 및 천장 외기공급구(271)와 측방 외기공급구(272) 및 발사위치 외기공급구(273)에 연결되는 외기공급덕트 상에 구비되어 외기를 송풍하도록 구성되는 송풍팬(미도시)을 포함한다.Next, the ventilation unit configured to supply outside air to the inside of the indoor shooting range includes one or more ceiling outside air supply ports (first outside air supply ports) 271 that guide to supply outside air from the ceiling of the indoor shooting range and the indoor shooting range. One or more lateral air supply ports (second air supply ports) 272 that guide the air supply from the side, and configured at a rear side of the firing position F, the first air intake unit 210 being blown air ) Is connected to the firing position air supply port (third air supply port) 273, which is configured to face the side, and the ceiling air supply port 271 and the lateral air supply port 272 and the firing position air supply port 273 It includes a blower fan (not shown) provided on the outside air supply duct and configured to blow outside air.
천장 외기공급구(제1 외기공급구)(271)는 바람직하게 발사위치(F) 및/또는 표적지나 탄두 회수 유닛(300)의 상부 측에 설치되어 발사위치(F) 측으로 외기를 공급하도록 가이드하는 천장 외기공급구를 포함하는 것이 바람직하다. 도면에서는 천장 외기공급구(제1 외기공급구)(271)가 발사위치(F)의 상부 측에 설치되는 경우를 나타내고 있다.The ceiling outside air supply port (the first outside air supply port) 271 is preferably installed at the firing position F and / or the upper side of the target location or the warhead recovery unit 300 to guide the air to the firing position F side. It is preferable to include a ceiling outside air supply port. The drawing shows a case where the ceiling outside air supply port (first outside air supply port) 271 is installed at the upper side of the firing position F.
또한, 측방 외기공급구(제2 외기공급구)(272)는 실내 사격장의 발사위치(F)와 표적지(B) 사이 공간의 바닥측 측면에 설치되는 복수의 흡기구를 포함하는 것이 바람직하다.In addition, the side air supply port (second air supply port) 272 preferably includes a plurality of intake vents installed on the bottom side of the space between the firing position (F) and the target land (B) of the indoor shooting range.
그리고 상기 발사위치 외기공급구(273)는 사격자의 두부 후방 측에 위치되고 제1 흡기유닛(210) 측을 지향하도록 설치되어 실탄 사격에 의해 발생되는 유해물질을 포함하는 총연배기가스가 발사위치의 사격자에게 영향을 미치는 것을 보다 확실하게 차단할 수 있게 된다.And the firing position outside air supply port (273) is located at the rear side of the head of the shooter and is installed to face the first intake unit (210) side. It is possible to more reliably block what affects the shooter.
다음으로, 상기 흡기구동유닛 및 정화유닛을 제어하기 위한 제어반은, 전체 설비시스템의 온/오프 조작과, 실내 실탄사격장의 일측에 마련되어 흡기팬(252, 253)과 송풍팬(미도시)을 조작 제어하는 조작 스위치를 포함하여 컨테이너형 바디(100)의 내부 공간 일측에 구성된다.Next, the control panel for controlling the intake driving unit and the purification unit is provided on / off operation of the entire facility system, and is provided on one side of the indoor shooting range to control and control the intake fans 252, 253 and the blowing fan (not shown). It is configured on one side of the inner space of the container-type body 100, including the operation switch.
물론, 상기 제어반은 흡기팬(252, 253)과 송풍팬(미도시)을 일정 간격으로 자동 작동시키도록 프로그래밍된 회로모듈을 포함하여 구성될 수 있다. 또한, 본 발명은 공기검출센서를 더 포함하여 공기검출센서의 검출값에 근거한 구동제어신호에 의하여 흡기팬과 송풍팬을 구동시키도록 구성될 수도 있다.Of course, the control panel may be configured to include a circuit module programmed to automatically operate the intake fans 252 and 253 and a blower fan (not shown) at regular intervals. In addition, the present invention may be configured to further include an air detection sensor to drive the intake fan and the blower fan by a drive control signal based on the detection value of the air detection sensor.
본 발명은 상기와 같이 각각의 흡기유닛과 정화유닛을 통해 실내사격장 내의 실내 공기를 정화함과 함께 정화된 공기 및/또는 신선한 외부 공기를 실내 사격장 내로 급기해서 실내 사격장의 공기오염을 방지하고 깨끗한 실내 공기환경을 유지할 수 있게 된다.The present invention purifies the indoor air in the indoor shooting range through each intake unit and the purification unit as described above, and also supplies purified air and / or fresh outside air into the indoor shooting range to prevent air pollution in the indoor shooting range and clean indoor It is possible to maintain the air environment.
다음으로, 일 실시 예에 따른 실탄 탄두 회수 유닛(300)은 격자형 프레임(310)과, 격자형 프레임(310)의 외곽을 탈착가능하게 커버하고, 실탄의 탄두가 완충되면서 통과할 수 있는 신축성 재질로 이루어지는 전면 완충 부재(320)와, 전면 완충 부재(320) 내에 충전되는 신축성 재질의 충전재(330), 및 격자형 프레임(310)을 지지하는 지지 프레임(340)을 포함하며, 본 발명은 실탄 탄두 회수 유닛(300)을 컨테이너형 바디(100) 내에서 외부로 용이하게 인출 및 인입시킬 수 있는 인입출 가이드유닛을 더 포함할 수 있다.Next, the live ammunition warhead recovery unit 300 according to an embodiment removably covers the lattice-shaped frame 310 and the outer periphery of the lattice-shaped frame 310 and is stretchable so that the warheads of the live ammunition are buffered and pass through. It comprises a front buffer member 320 made of a material, a filler 330 of a stretchable material filled in the front buffer member 320, and a support frame 340 for supporting the lattice-shaped frame 310, the present invention The live ammunition warhead recovery unit 300 may further include a draw-out guide unit that can be easily withdrawn and drawn out from the container-type body 100 to the outside.
격자형 프레임(310)은 사각 틀 형태로 형성될 수 있고, 그 형상이 직육면체나 도 7에 나타낸 바와 같이 전방과 후방 측이 일측으로 실탄 발사 방향으로 경사지게 이루어지는 입방체의 형태로 구성될 수 있다.The lattice-shaped frame 310 may be formed in a square frame shape, and may be configured in the form of a cube or a cube in which the front side and the rear side are inclined in the direction of the firing shot to one side as shown in FIG. 7.
전면 완충 부재(320)는 앞서 설명한 완충 플레이트와 동일하게 구성될 수 있다.The front buffer member 320 may be configured in the same manner as the buffer plate described above.
구체적으로, 전면 완충 부재(320)는 소정 두께의 고무판 또는 압축 고무판으로 이루어질 수 있으며, 이러한 완충 플레이트(103)는 붕소, 염소, 브롬, 인 등의 난연성 원소(난연재)가 함유되어 이루어지는 것이 바람직하다. 이와 같은 전면 완충 부재(320)는 난연성 원소가 포함되는 고무판으로 이루어짐으로써 완충성을 가지면서 난연 기능을 가질 수 있게 되어 탄두의 충격에 따른 마찰열이나 다른 화재 원인에 의한 화재 발생을 방지할 수 있게 된다.Specifically, the front buffer member 320 may be made of a rubber plate or a compressed rubber plate of a predetermined thickness, and the buffer plate 103 is preferably made of a flame retardant element (flame retardant) such as boron, chlorine, bromine, phosphorus, etc. . The front shock absorbing member 320 is made of a rubber plate containing a flame retardant element, and thus can have a flame retardant function while having a cushioning property, thereby preventing fire from being caused by frictional heat due to the impact of the warhead or other fire sources. .
도 8에서 전면 측의 프레임(310)이 노출되는 것으로 나타내고 있으나, 상기한 전면 완충 부재(320)에 의해 커버된다.Although the frame 310 on the front side is shown in FIG. 8, it is covered by the front buffer member 320 described above.
또한, 충전재(330)는 소정 입경(예를 들면, 2 ~ 5mm)의 고무입자로 이루어질 수 있다.In addition, the filler 330 may be made of rubber particles having a predetermined particle diameter (for example, 2 to 5 mm).
그리고 상기 인입출 가이드유닛은 예를 들면, 탄두 회수 유닛(300)의 하부의 컨테이너형 바디(100) 바닥면에 구성되는 가이드 레일(281), 및 탄두 회수 유닛(300)의 하부에 구성되어 가이드 레일(281)을 따라 구름 이동하는 롤러부재(282)를 포함하여 구성될 수 있다.And the guide unit is drawn, for example, guide rail 281 is configured on the bottom surface of the container-type body 100 of the lower part of the warhead recovery unit 300, and the guide is configured on the lower part of the warhead recovery unit 300 It may be configured to include a roller member 282 that moves rolling along the rail 281.
물론, 가이드 레일(281)과 롤러부재(282)는 반대로 구성될 수도 있다. 즉, 가이드 레일(281)은 실탄 탄두 회수 유닛(300)의 하면에 구성되고, 롤러부재(282)는 컨테이너형 바디(100)에 구성될 수 있다.Of course, the guide rail 281 and the roller member 282 may be configured in reverse. That is, the guide rail 281 may be configured on the lower surface of the live ammunition warhead recovery unit 300, and the roller member 282 may be configured on the container-type body 100.
다음으로, 상기 벤틸레이션 유닛과 제어반을 포함한 전력 필요 장비로 전력을 공급하기 위한 전력 공급 유닛은, 컨테이너형 바디(100)의 외부에 구성되는 태양광 발전패널(400)을 포함하는 신재생에너지 발전장치로 구성될 수 있으며, 상기 신재생에너지 발전장치는 에너지저장시스템(ESS: Energy Storage System)를 포함하여 구성되는 것이 바람직하다. 여기에서, 상기 전력 공급 유닛은 신재생에너지장치로서 태양광 발전패널 이외 풍력발전설비도 포함할 수 있다.Next, the power supply unit for supplying power to the power-requiring equipment including the ventilation unit and the control panel, renewable energy generation including a solar power generation panel 400 that is configured outside the container-type body 100 It may be configured as a device, the renewable energy generating device is preferably configured to include an energy storage system (ESS: Energy Storage System). Here, the power supply unit may include a wind power generation facility other than a photovoltaic power generation panel as a new and renewable energy device.
본 발명은 태양광 발전패널와 같은 자가 발전 설비가 구성되는데, 통상의 전력망을 통해 전력을 공급받도록 구성될 수 있다.In the present invention, a self-generation facility such as a photovoltaic power generation panel is configured, and may be configured to receive power through an ordinary power grid.
도 9는 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비를 정면에서 바라본 사시도, 도 10은 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비의 내부 구성도, 도 11은 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비를 구성하는 실탄 탄두 회수 유닛의 측면도, 및 도 12는 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비를 구성하는 실탄 탄두 회수 유닛의 정면도이다.Figure 9 is a perspective view of a mobile live ammunition shooting equipment according to another embodiment of the present invention, Figure 10 is an internal configuration of a mobile shotgun shooting equipment according to another embodiment of the present invention, Figure 11 is another embodiment of the present invention A side view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to, and Figure 12 is a front view of a shotgun recovery unit constituting a mobile shotgun shooting equipment according to another embodiment of the present invention.
본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비는, 도 9 내지 도 12에 나타낸 바와 같이, 일면에 개구부(108)를 갖고 형성되는 함체형의 바디(100); 바디(100)의 개구부의 후방 측에 구비되는 타겟 유닛(800); 타겟 유닛(800)의 명중 여부를 검출하기 위한 명중 검출 유닛(900); 명중 검출 유닛(900)에 의해 검출된 신호를 외부의 관제소나 사격자 측으로 무선 송신하기 위한 무선 통신 모듈(700); 및 타겟 유닛(800)의 후방에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛(500);을 포함한다.Mobile ammunition shooting equipment according to another embodiment of the present invention, as shown in Figures 9 to 12, the body 100 of the enclosure type formed with an opening 108 on one surface; The target unit 800 is provided on the rear side of the opening of the body 100; A hit detection unit 900 for detecting whether the target unit 800 is hit or not; A wireless communication module 700 for wirelessly transmitting a signal detected by the hit detection unit 900 to an external control center or shooter side; And is provided at the rear of the target unit 800, a bullet warhead recovery unit 500 for recovering a bullet warhead.
함체형의 바디(100)는 도면에 예시한 바와 같이 일면에 소정 크기의 개구부(108)를 가지며, 소정 크기의 내부 공간을 갖는 박스체로 형성된다.The body-shaped body 100 has an opening 108 of a predetermined size on one surface, as illustrated in the drawing, and is formed of a box body having an internal space of a predetermined size.
함체형의 바디(100)의 내부 공간은 타겟 유닛(800)이 개구부(108)의 후방에 위치되고, 그 후방에 실탄 탄두 회수 유닛(500)이 구비될 수 있는 크기를 갖도록 이루어진다.The inner space of the body-shaped body 100 is made so that the target unit 800 is positioned at the rear of the opening 108 and has a size capable of providing a bullet warhead recovery unit 500 at the rear.
또한, 함체형의 바디(100)는 지상에서의 이동성을 확보하기 위하여 하면 4개소 또는 전방단이나 후방단의 2개소에 이동 바퀴와 같은 이동 수단이 구비되며, 또한 크레인이나 지게차 등으로 들어올려 이동시킬 수 있도록 일측에 이동 고리가 구비될 수 있다.Further, in order to secure mobility on the ground, the body-shaped body 100 is provided with moving means such as moving wheels at four places or two places at the front end or rear end, and is further lifted by a crane or a forklift, etc. A moving ring may be provided on one side so as to make it possible.
또한, 바디(100)는 그의 단부 측 일면 벽, 구체적으로는 탄두 회수 유닛(500)이 위치되는 단부 측의 벽(개구부(108)에 대향하는 측의 벽)이 중앙부를 중심으로 양측으로, 또는 일단부를 중심으로 회전하여 개방가능한 개폐 구조로 이루어지거나, 탈락가능하게 이루어질 수 있다.In addition, the body 100 has one end side wall thereof, specifically, an end side wall (wall opposite the opening 108) on which the warhead recovery unit 500 is located, on both sides around the center, or It can be made of an openable opening and closing structure by rotating about one end, or can be made detachable.
이는 함체형의 바디(100)의 일면 벽이 개방가능한 개폐 구조로 이루어져, 개방된 상태에서 아래에서 자세히 설명될 인입출 가이드유닛을 따라 실탄 탄두 회수 유닛(500)을 외부로 꺼낸 후, 외부에서 탄두의 회수 및 관련 구성들의 교체를 용이하게 실시할 수 있게 된다.This consists of an opening and closing structure in which one side wall of the body-shaped body 100 is openable, and after pulling out the live cartridge warhead recovery unit 500 along the draw-out guide unit to be described in detail below in the open state, the warhead from the outside It is possible to easily perform the recovery and replacement of the related components.
계속해서, 타겟 유닛(800) 및 이와 연계되는 명중 검출 유닛(900)에 대하여 설명한다.Next, the target unit 800 and the hit detection unit 900 associated with it will be described.
타겟 유닛(800)은 통상의 타겟 형상이나 타겟 형태가 표시되어 구비되는 패널 형태의 것으로 형성될 수 있다.The target unit 800 may be formed in a panel shape in which a typical target shape or target shape is displayed.
일 예로, 타겟 유닛(800)은 도면에 예시한 바와 같이 사람 형상의 타겟으로 형성되되 일단부를 축으로 회동할 수 있는 회동 타겟판으로 구성될 수 있다.As an example, the target unit 800 may be formed of a human-shaped target as illustrated in the drawing, but may be configured as a rotating target plate capable of rotating one end in an axis.
이러한 회동 타겟판으로 구성되는 경우, 후술하는 실탄 탄두 유닛(일 실시 예)의 형상을 고려하여 상단을 축으로 회동하게 구성되는 것이 바람직하다.When configured as such a rotation target plate, it is preferable that the upper end is configured to rotate in an axis in consideration of the shape of a bullet warhead unit (one embodiment) described later.
이와 같이 타겟 유닛(800)이 회동 타겟판으로 형성되는 경우, 명중 검출 유닛(900)은 회동 타겟판의 회동 여부를 검출하고 회동 횟수를 검출할 수 있도록 구성될 수 있다.In this way, when the target unit 800 is formed of a rotation target plate, the hit detection unit 900 may be configured to detect whether the rotation target plate is rotated and to detect the number of rotations.
예를 들면, 명중 검출 유닛(900)은 상기 회동 타겟판의 회전축에 구비되는 엔코더와 디코더를 통해 회동 여부를 검출하고 회동에 따른 횟수를 카운트하여 무선 통신 모듈(700)로 전달할 수 있도록 구성될 수 있다. 또한, 회동 타겟판이 위치되는 바디(100)의 내측 벽면에 광센서 모듈이 구성되어 회동 타겟판의 회동 여부를 검출하고, 회동에 따른 횟수를 카운트하여 무선 통신 모듈(700)로 전달할 수 있도록 구성되는 검출 모듈로 구성될 수 있다.For example, the hit detection unit 900 may be configured to detect whether or not a rotation is performed through an encoder and a decoder provided on a rotation axis of the rotation target plate, count the number of rotations, and transmit the result to the wireless communication module 700. have. In addition, an optical sensor module is configured on the inner wall surface of the body 100 where the rotation target plate is located, configured to detect whether the rotation target plate is rotated, count the number of rotations, and transmit it to the wireless communication module 700. It can be configured as a detection module.
또한, 다른 일 예로 타겟 유닛(800)은 실탄 탄두 회수 유닛(500)의 전면에 구비되는 표적지로 이루어질 수 있다. 이 경우, 명중 검출 유닛(900)은 표적지로 들어가는 탄두의 명중 범위를 고려하여 바디(100)의 내측 벽면에 광센서 모듈로 구성되어 명중 범위로 들어오는 탄두의 통과 여부를 검출하고, 통과되는 횟수를 카운트하여 무선 통신 모듈(700)로 전달할 수 있도록 구성될 수 있다.In addition, as another example, the target unit 800 may be formed of a target paper provided on the front surface of the live ammunition warhead recovery unit 500. In this case, the hit detection unit 900 is configured as an optical sensor module on the inner wall surface of the body 100 in consideration of the hit range of the warhead entering the target area, detects whether the warhead entering the hit range passes, and detects the number of passes It can be configured to count and transmit to the wireless communication module 700.
또한, 또 다른 일 예로, 타겟 유닛(800)은 바디(100)의 개구부(108)에 타겟 홀로그램이 형성되도록 하는 홀로그램형 타겟으로 구성될 수 있으며, 이 경우 명중 검출 유닛(900)은 홀로그램형 타겟을 통과하는 탄두의 명중 범위를 고려하여 바디(100)의 내측 벽면에 광센서 모듈로 구성되어 명중 범위로 들어오는 탄두의 통과 여부를 검출하고, 통과되는 횟수를 카운트하여 무선 통신 모듈(700)로 전달할 수 있도록 구성될 수 있다.In addition, as another example, the target unit 800 may be configured as a hologram-type target that allows the target hologram to be formed in the opening 108 of the body 100, in which case the hit detection unit 900 is a hologram-type target Consists of an optical sensor module on the inner wall surface of the body 100 in consideration of the accuracy range of a warhead passing through, detects whether a warhead entering the accuracy range is passed, counts the number of passes, and transmits it to the wireless communication module 700 Can be configured to.
계속해서, 무선 통신 모듈(700)은 명중 검출 유닛(900)에서 검출된 신호를 무선 통신 방식을 이용하여 외부의 사격 통제소 및/또는 사격자 측에 구비되는 디스플레이 장치 등으로 전송하여 표시될 수 있도록 하는 것이라면 특별히 한정되는 것은 아니며, 공지의 구성이나 기술을 채용할 수 있으므로 이에 대한 상세한 설명은 생략한다.Subsequently, the wireless communication module 700 transmits the signal detected by the hit detection unit 900 to an external fire control station and / or a display device provided on the fire side using a wireless communication method so that it can be displayed. If it does, it is not particularly limited, and since a known configuration or technology can be employed, detailed description thereof will be omitted.
여기서, 본 발명은 타겟 유닛(800), 명중 검출 유닛(900) 및 무선 통신 모듈(700)과 같이 전원 공급이 필요한 구성요소들에 전력을 공급하기 위한 배터리 장치를 포함한다.Here, the present invention includes a battery device for supplying power to components that require power supply, such as the target unit 800, the hit detection unit 900, and the wireless communication module 700.
이러한 배터리 장치는 교체형 배터리 방식으로 구성될 수 있으며, 축전지 방식으로 구성될 수 있다. 축전지 방식의 경우, 비 훈련시 사격장 일측(예를 들면, 중앙통제소의 지붕 등)에 설치되는 태양광발전설비에 의해 축전된 후 바디(100)에 비치하여 전력을 제공하도록 할 수 있다.The battery device may be configured as a replaceable battery method, or may be configured as a storage battery method. In the case of a storage battery type, it can be provided by providing power to the body 100 after being stored by a photovoltaic facility installed on one side of a shooting range (for example, the roof of a central control center) during non-training.
다음으로, 타겟 유닛(800)의 후방에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛(500)에 대하여 설명한다.Next, a description will be given of a live cartridge warhead recovery unit 500 provided at the rear of the target unit 800 for recovering a live cartridge warhead.
실탄 탄두 회수 유닛(500)은 격자형 프레임(510)과, 격자형 프레임(510)의 외곽을 탈착가능하게 커버하고, 실탄의 탄두가 완충되면서 통과할 수 있는 신축성 재질로 이루어지는 전면 완충 부재(520)와, 전면 완충 부재(520) 내에 충전되는 신축성 재질의 충전재(530), 및 격자형 프레임(510)을 지지하는 지지 프레임(540)을 포함한다.The live ammunition warhead recovery unit 500 includes a lattice-shaped frame 510 and a front shock absorbing member 520 made of a stretchable material that detachably covers the outer periphery of the lattice-shaped frame 510 and is capable of passing while the warheads of the bullet are fully buffered ), A filler 530 made of a stretchable material filled in the front buffer member 520, and a support frame 540 supporting the grid-shaped frame 510.
격자형 프레임(510)은 사각 틀 형태로 형성될 수 있고, 그 형상이 직육면체나 도 11 및 도 12에 나타낸 바와 같이 전방과 후방 측이 일측으로 실탄 발사 방향으로 경사지게 이루어지는 입방체의 형태로 구성될 수 있다.The lattice-shaped frame 510 may be formed in a square frame shape, and may be configured in the form of a cubical cube or a cube in which the front and rear sides are inclined in the direction of firing at one side as shown in FIGS. 11 and 12. have.
전면 완충 부재(520)는 소정 두께의 고무판 또는 압축 고무판으로 이루어질 수 있으며, 이러한 전면 완충 부재(520)는 붕소, 염소, 브롬, 인 등의 난연성 원소(난연재)가 함유되어 이루어지는 것이 바람직하다. 이와 같은 전면 완충 부재(520)는 난연성 원소가 포함되는 고무판으로 이루어짐으로써 완충성을 가지면서 난연 기능을 가질 수 있게 되어 탄두의 충격에 따른 마찰열이나 다른 화재 원인에 의한 화재 발생을 방지할 수 있게 된다.The front buffer member 520 may be formed of a rubber plate or a compressed rubber plate having a predetermined thickness, and the front buffer member 520 is preferably made of a flame retardant element (flame retardant) such as boron, chlorine, bromine, and phosphorus. The front shock absorbing member 520 is made of a rubber plate containing a flame retardant element, and thus can have a flame retardant function while having cushioning properties, thereby preventing fire from being caused by frictional heat due to the impact of the warhead or other fire sources. .
또한, 충전재(530)는 소정 입경(예를 들면, 2 ~ 5mm)의 고무입자로 이루어질 수 있다.In addition, the filler 530 may be made of rubber particles having a predetermined particle diameter (for example, 2 to 5 mm).
또한, 본 발명의 다른 실시예에 따르면 실탄 탄두 회수 유닛(500)을 컨테이너형 바디(100) 내에서 외부로 용이하게 인출 및 인입시킬 수 있는 인입출 가이드유닛을 더 포함할 수 있다.In addition, according to another embodiment of the present invention, it may further include a draw-out guide unit that can easily withdraw and withdraw the bullet warhead recovery unit 500 from the container-type body 100 to the outside.
인입출 가이드유닛은, 예를 들면, 탄두 회수 유닛(500)의 하부의 함체형의 바디(100) 바닥면에 구성되는 가이드 레일(551), 및 탄두 회수 유닛(500)의 하부에 구성되어 가이드 레일(551)을 따라 구름 이동하는 롤러부재(552)를 포함하여 구성될 수 있다.The lead-in / out guide unit is, for example, a guide rail 551 formed on the bottom surface of the body 100 of the lower body of the warhead recovery unit 500, and a guide configured under the warhead recovery unit 500. It may be configured to include a roller member 552 for rolling along the rail 551.
물론, 가이드 레일(551)과 롤러부재(552)는 반대로 구성될 수도 있다. 즉, 가이드 레일(551)은 실탄 탄두 회수 유닛(500)의 하면에 구성되고, 롤러부재(552)는 컨테이너형 바디(100)에 구성될 수 있다.Of course, the guide rail 551 and the roller member 552 may be configured in reverse. That is, the guide rail 551 may be configured on the lower surface of the live ammunition warhead recovery unit 500, and the roller member 552 may be configured on the container-type body 100.
한편, 본 발명의 다른 실시예에 따른 이동식 실탄 사격 장비는 사용 시 바디(100)의 개구부(108)를 개방하고, 사용하지 않을 시에는 개구부(108)를 폐쇄할 수 있는 개폐수단(600)을 더 포함할 수 있다.On the other hand, the mobile ammunition shooting equipment according to another embodiment of the present invention opens and closes the opening means 600 to open the opening 108 of the body 100 when not in use, and to close the opening 108 when not in use. It may further include.
상기 개폐수단은 예를 들면 일 예로 덮개 형태로 형성될 수 있다. 또한, 다른 일 예로 상기 개폐수단은 사용 시 롤링되어 함체형의 바디(100)의 개구부(108)의 상단부 또는 하단부에 롤링되어 구성되고, 비사용 시에는 펼쳐서 다른 단부에 고정되어 폐쇄하는 가림막 장치로 구성될 수 있다.The opening and closing means may be formed, for example, in the form of a cover. Further, as another example, the opening / closing means is configured to be rolled when used, and is configured to be rolled to an upper portion or a lower portion of the opening 108 of the body-shaped body 100, and when unused, it is opened and fixed to the other end to be closed. Can be configured.
이상에서 설명한 바와 같은 본 발명에 따른 야외 전투 사격장 및 영점사격장의 이동식 실탄 사격 장비에 의하면, 관리자나 운영자가 설치하고자 하는 위치 및 거리 어디든지 용이하게 이동 설치할 수 하여 사용할 수 있고, 특히 즉각 및 사항조치 전투 사격장으로 사용하는데 적합하며, 무선 통신을 통해 명중 여부나 명중 횟수를 통제 장소나 사격자 측에서 용이하게 파악하고 모니터링할 수 있어 운용성과 관리 효율성을 향상시킬 수 있는 이점이 있다.According to the mobile combat shooting equipment of the outdoor battle shooting range and the zero point shooting range according to the present invention as described above, it can be easily installed and used anywhere in the location and distance that the administrator or operator wants to install, especially immediate and precautionary measures It is suitable for use as a battle range, and it has the advantage of improving operability and management efficiency because it can easily identify and monitor whether or not hits or hits are made through the wireless communication from the control location or the shooting side.
또한, 본 발명은 넷째, 본 발명은 날씨에 상관없이 사용할 수 있고, 실탄 사용으로 인하여 사격장에서 발생하는 중금속 유해물질이 미치는 영향을 최소화할 수 있고, 원형에 가까운 탄두를 용이하게 회수하여 재활용과 환경 오염 방지를 도모할 수 있는 친환경적인 표적 장치를 제공할 수 있는 이점이 있다.In addition, the present invention, fourth, the present invention can be used regardless of the weather, can minimize the effect of heavy metal harmful substances generated in the shooting range due to the use of live ammunition, recycling and environment by easily recovering the warhead close to the circle There is an advantage to provide an environmentally friendly target device capable of preventing contamination.
본 발명은 실탄 사격장에 이용 가능하다.The present invention can be used in a live shooting range.

Claims (14)

  1. 일측에 출입 도어가 형성되는 컨테이너형 바디;A container-type body on which an entrance door is formed;
    상기 컨테이너형 바디에 구성되어 내부 공기를 흡기 정화하고 환기시키기 위한 벤틸레이션 유닛(ventilation means);A ventilation unit configured in the container-type body to intake, purify and ventilate internal air;
    상기 벤틸레이션 유닛을 제어하기 위한 제어반;A control panel for controlling the ventilation unit;
    상기 컨테이너형 바디의 표적지 측에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛; 및 A ballistic warhead recovery unit provided on a target paper side of the container-type body to recover a ballistic warhead; And
    상기 벤틸레이션 유닛과 제어반을 포함한 전력 필요 장비로 전력을 공급하기 위한 자가발전 방식의 전력 공급 유닛Self-powered power supply unit for supplying power to the power-requiring equipment including the ventilation unit and the control panel
    을 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment comprising a.
  2. 제1항에 있어서,According to claim 1,
    상기 실탄 탄두 회수 유닛이 구비되는 측의 컨테이너형 바디의 단부 면은 개방되거나 탈락가능하게 구성되는 도어가 구성되고,The end surface of the container-type body on the side where the live cartridge warhead recovery unit is provided has an door configured to be opened or detachable,
    상기 실탄 탄두 회수 유닛을 상기 컨테이너형 바디에서 인출 및 인입할 수 있도록 구성되는 인입출 가이드유닛Withdrawal guide unit configured to withdraw and withdraw the live ammunition warhead recovery unit from the container body
    을 더 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment further comprising a.
  3. 제2항에 있어서, 상기 인입출 가이드유닛은,According to claim 2, The guide unit for withdrawal,
    상기 컨테이너형 바디의 바닥면과 상기 실탄 탄두 회수 유닛의 바닥면 중 하나에 구성되는 가이드 레일; 및A guide rail configured on one of a bottom surface of the container-type body and a bottom surface of the bullet warhead recovery unit; And
    상기 컨테이너형 바디의 바닥면과 상기 실탄 탄두 회수 유닛의 바닥면 중 다른 하나에 구성되는 롤러부재A roller member formed on the other of the bottom surface of the container-type body and the bottom surface of the bullet warhead recovery unit
    를 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment comprising a.
  4. 제1항에 있어서,According to claim 1,
    상기 컨테이너형 바디는, 철재의 외판과, 상기 외판의 내측에 구비되는 소정 두께의 방탄 플레이트와, 상기 방탄 플레이트와 이격되게 구비되며 완충 재질로 이루어지는 완충 플레이트, 및 상기 방탄 플레이트와 완충 플레이트 사이의 이격 공간에 충전되는 완충 재질의 충전층을 포함하며,The container-type body, an outer plate of iron, a bullet-proof plate having a predetermined thickness provided inside the outer plate, a buffer plate made of a buffer material spaced apart from the bullet-proof plate, and a space between the bullet-proof plate and the buffer plate It includes a filling layer of a cushioning material filled in the space,
    상기 실탄 탄두 회수 유닛은, 격자형 프레임과, 상기 격자형 프레임의 외곽을 탈착가능하게 커버하고, 실탄 탄두가 완충되면서 통과할 수 있는 신축성 재질로 이루어지는 전면 완충 부재, 및 상기 전면 완충 부재로 둘러싸인 공간에 충전되는 신축성 재질의 충전재를 포함하는 The live ammunition warhead recovery unit includes a lattice-shaped frame, a front buffer member made of a stretchable material that detachably covers an outer periphery of the lattice-shaped frame, and is capable of passing while the bullet warhead is buffered, and a space surrounded by the front buffer member Containing a filler of a stretchable material that is filled in
    이동식 실탄 사격 장비.Mobile ammunition shooting equipment.
  5. 제4항에 있어서,According to claim 4,
    상기 완충 플레이트와 전면 완충 부재는 소정 두께의 난연재를 포함하는 고무판 또는 압축 고무판으로 이루어지며,The buffer plate and the front buffer member are made of a rubber plate or a compressed rubber plate comprising a flame retardant of a predetermined thickness,
    상기 충전층 및 충전재는 2 ~ 5mm의 고무입자로 이루어지는 것을 특징으로 하는The filling layer and the filling material is characterized by consisting of 2 ~ 5mm rubber particles
    이동식 실탄 사격 장비.Mobile ammunition shooting equipment.
  6. 제1항에 있어서,According to claim 1,
    상기 벤틸레이션 유닛은, 발사위치 전방의 직하방 바닥에 설치되는 제1 흡기 유닛과, 표적지의 직하방 또는 전방 직하방의 바닥에 설치되는 제2 흡기 유닛과, 발사위치와 표적지 사이의 양측면 바닥부에 설치되는 제3 흡기 유닛과, 발사위치와 표적지 사이의 상부에 설치되는 제4 흡기 유닛과, 상기 제1 내지 제3 흡기유닛으로부터 공기를 흡기하도록 구동하는 흡기구동유닛과, 상기 흡기구동유닛을 통해 흡기되는 공기를 정화시켜 외부로 배출시키기 위한 정화유닛, 및 상기 컨테이너형 바디의 내측으로 외기를 공급하도록 구성되는 환기유닛을 포함하며,The ventilating unit includes a first intake unit installed on the floor directly below the firing position, a second intake unit installed on the floor directly below or under the front of the target paper, and a bottom portion on both sides between the firing position and the target paper. A third intake unit is installed, a fourth intake unit installed at an upper portion between the firing position and the target site, an intake driving unit driving to intake air from the first to third intake units, and through the intake mechanism A purification unit for purifying the intake air and discharging it to the outside, and a ventilation unit configured to supply outside air to the inside of the container body,
    상기 환기유닛은, 상기 컨테이너형 바디의 천장으로부터 외기를 공급하도록 가이드하는 하나 이상의 제1 외기 공급구와, 상기 컨테이너형 바디의 측방에서 외기를 공급하도록 가이드하는 하나 이상의 제2 외기 공급구와, 발사위치의 후방 측에 구성되되 송풍되는 외기가 상기 제1 흡기유닛 측을 지향하도록 구성되는 제3 외기 공급구, 및 상기 제1 내지 제3 외기공급구에 연결되는 외기공급덕트에 구비되어 외기를 송풍하도록 구성되는 송풍팬을 포함하는 The ventilation unit includes at least one first outside air supply port for guiding air supply from the ceiling of the container-type body, and at least one second outside air supply port for guiding air supply from the side of the container-type body, and a firing position. A third outside air supply port configured on the rear side and configured to direct the outside air that is blown toward the first intake unit side, and the outside air supply duct connected to the first to third outside air supply ports are configured to blow outside air Included blower fan
    이동식 실탄 사격 장비.Mobile ammunition shooting equipment.
  7. 제1항에 있어서, 상기 전력 공급 유닛은,According to claim 1, The power supply unit,
    에너지저장장치를 포함하는 신재생에너지 발전장치를 포함하는Renewable energy generation device including an energy storage device comprising
    이동식 실탄 사격 장비.Mobile ammunition shooting equipment.
  8. 일면에 개구부를 갖고 형성되는 바디;A body formed with an opening on one surface;
    상기 바디의 개구부의 후방 측에 구비되는 타겟 유닛;A target unit provided on a rear side of the opening of the body;
    상기 타겟 유닛의 명중 여부를 검출하기 위한 명중 검출 유닛;An hit detection unit for detecting whether the target unit is hit;
    상기 명중 검출 유닛에 의해 검출된 신호를 외부로 무선 송신하기 위한 무선 통신 모듈; 및A wireless communication module for wirelessly transmitting a signal detected by the hit detection unit to the outside; And
    상기 타겟 유닛의 후방에 구비되어 실탄 탄두를 회수하기 위한 실탄 탄두 회수 유닛A projectile warhead recovery unit provided at the rear of the target unit to recover a projectile warhead.
    을 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment comprising a.
  9. 제8항에 있어서,The method of claim 8,
    상기 바디는 개구부와 대향하는 벽이 중앙부를 중심으로 양측으로 개방 또는 일단부를 중심으로 회전하여 개방가능한 개폐 구조로 이루어지거나, 탈락가능하게 이루어지는 것을 특징으로 하는The body is characterized in that the wall facing the opening is made of an open and close structure that can be opened or rotated around one end or open to both sides around the center, or is detachable.
    이동식 실탄 사격 장비.Mobile ammunition shooting equipment.
  10. 제8항에 있어서, 상기 바디의 벽체는The method of claim 8, wherein the wall of the body
    철재 외판;Iron shell;
    상기 철재 외판 내측에 구비되고, 방탄 재질로 이루어지는 소정 두께의 방탄 플레이트;A bullet-proof plate having a predetermined thickness made of a bullet-proof material, provided inside the steel outer plate;
    상기 방탄 플레이트와 이격되게 구비되는 완충 플레이트; 및A buffer plate spaced apart from the bulletproof plate; And
    상기 방탄 플레이트와 완충 플레이트 사이의 이격 공간에 채워지는 소정 입경의 고무입자 충전층Filling layer of rubber particles having a predetermined particle size, which is filled in a space between the bulletproof plate and the buffer plate
    을 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment comprising a.
  11. 제8항에 있어서,The method of claim 8,
    상기 타겟 유닛은 일단 변을 축으로 회동하는 구성되는 회동 타겟판으로 구성되며,The target unit is composed of a rotation target plate that is configured to rotate the side of the shaft once,
    상기 명중 검출 유닛은 상기 회동 타겟판의 회동을 검출하고, 회동 횟수를 카운트하여 상기 무선 통신 모듈로 전송하도록 구성되는 검출 모듈을 포함하는 The hit detection unit includes a detection module configured to detect the rotation of the rotation target plate, count the number of rotations, and transmit it to the wireless communication module.
    이동식 실탄 사격 장비.Mobile ammunition shooting equipment.
  12. 제8항에 있어서, 상기 실탄 탄두 회수 유닛은,10. The method of claim 8, The bullet projectile recovery unit,
    격자형 프레임;Lattice frame;
    상기 격자형 프레임의 외곽을 탈착가능하게 커버하고, 실탄 탄두가 완충되면서 통과할 수 있는 신축성 재질로 이루어지는 전면 완충 부재; 및A front shock absorbing member made of an elastic material capable of detachably covering the outer periphery of the lattice-shaped frame and passing through while the bullet warhead is buffered; And
    상기 전면 완충 부재로 둘러싸인 공간에 충전되는 신축성 재질의 충전재Filling material of elastic material filled in the space surrounded by the front buffer member
    를 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment comprising a.
  13. 제8항에 있어서,The method of claim 8,
    상기 실탄 탄두 회수 유닛을 상기 컨테이너형 바디에서 인출 및 인입할 수 있도록 구성되는 인입출 가이드유닛Withdrawal guide unit configured to withdraw and withdraw the live ammunition warhead recovery unit from the container body
    을 더 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment further comprising a.
  14. 제13항에 있어서, 상기 인입출 가이드유닛은,The guide unit of claim 13,
    상기 바디의 바닥면과 상기 실탄 탄두 회수 유닛의 바닥면 중 하나에 구성되는 가이드 레일; 및A guide rail configured on one of the bottom surface of the body and the bottom surface of the bullet warhead recovery unit; And
    상기 바디의 바닥면과 상기 실탄 탄두 회수 유닛의 바닥면 중 다른 하나에 구성되는 롤러부재A roller member formed on the other of the bottom surface of the body and the bottom surface of the bullet warhead recovery unit
    를 포함하는 이동식 실탄 사격 장비.Mobile bullet shooting equipment comprising a.
PCT/KR2019/013267 2018-10-24 2019-10-10 Mobile live-fire apparatus WO2020085691A1 (en)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR1020180127118A KR101961686B1 (en) 2018-10-24 2018-10-24 Mobile ammunition firing range of container type
KR10-2018-0127118 2018-10-24
KR1020190021995A KR102022642B1 (en) 2019-02-25 2019-02-25 Ammunition firing target equipment of mobile type
KR10-2019-0021995 2019-02-25

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WO2020085691A1 true WO2020085691A1 (en) 2020-04-30

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US11125539B2 (en) 2018-03-21 2021-09-21 Evolve Range Solutions, Inc. Ruggedized holder
USD963101S1 (en) * 2018-03-21 2022-09-06 Evolve Range Solutions, Inc. Target media holder

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JP3181248U (en) * 2012-11-14 2013-01-31 澄果實業有限公司 Moving target for toy gun shooting
WO2016059221A1 (en) * 2014-10-16 2016-04-21 Ingenieursbureau En Technische Handelsonderneming Autron B.V. Modular shooting range
KR101696233B1 (en) * 2015-10-16 2017-01-13 주식회사 에아가이아 bullet head recovery box which is stackable, and bullet head recovery system at indoor shooting ranges using the same bullet head recovery box for firing with live ammunition, for preventing the occurrence of the lead fume
KR20170023544A (en) * 2015-08-24 2017-03-06 (주)에프티에스 Protecting device of bullet
KR20170105268A (en) * 2016-03-09 2017-09-19 (주)에프티에스 Move easily removable scarlet bullet wall

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JP3181248U (en) * 2012-11-14 2013-01-31 澄果實業有限公司 Moving target for toy gun shooting
WO2016059221A1 (en) * 2014-10-16 2016-04-21 Ingenieursbureau En Technische Handelsonderneming Autron B.V. Modular shooting range
KR20170023544A (en) * 2015-08-24 2017-03-06 (주)에프티에스 Protecting device of bullet
KR101696233B1 (en) * 2015-10-16 2017-01-13 주식회사 에아가이아 bullet head recovery box which is stackable, and bullet head recovery system at indoor shooting ranges using the same bullet head recovery box for firing with live ammunition, for preventing the occurrence of the lead fume
KR20170105268A (en) * 2016-03-09 2017-09-19 (주)에프티에스 Move easily removable scarlet bullet wall

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US11125539B2 (en) 2018-03-21 2021-09-21 Evolve Range Solutions, Inc. Ruggedized holder
USD963101S1 (en) * 2018-03-21 2022-09-06 Evolve Range Solutions, Inc. Target media holder

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