CN109646810B - Included angle automatic rod feeding and fixed-point combustion device for carbon light therapeutic apparatus - Google Patents

Included angle automatic rod feeding and fixed-point combustion device for carbon light therapeutic apparatus Download PDF

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Publication number
CN109646810B
CN109646810B CN201910075512.7A CN201910075512A CN109646810B CN 109646810 B CN109646810 B CN 109646810B CN 201910075512 A CN201910075512 A CN 201910075512A CN 109646810 B CN109646810 B CN 109646810B
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gear
carbon
carbon rod
clamp
mounting plate
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CN109646810A (en
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朱蓝玉
杨帆
孙玉
施传华
张淞展
孟皓
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Jilin Fengrui Medical Devices Co ltd
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Jilin Fengrui Medical Devices Co ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Pathology (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Radiology & Medical Imaging (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Radiation-Therapy Devices (AREA)

Abstract

An included angle automatic rod feeding and fixed-point combustion device for a carbon phototreatment instrument belongs to the technical field of carbon rod feeding devices of carbon phototreatment instruments and comprises a carbon rod clamp, a rack bearing plate, a rack, a guide rail sliding block, a motor mounting plate, a gear I, a gear II, a gear III, a gear IV, a gear V, a gear VI, a driving motor, a controller, a reflecting cover and a clamp angle adjusting block. The invention provides an included angle automatic rod feeding and fixed-point combustion device which replaces a manual conveying mechanism, the device not only can complete automatic feeding of a carbon rod, but also can enable the carbon rod to burn stably and continuously according to the real-time condition of burning of the carbon rod, and simultaneously ensures that the ignition point of the carbon rod is always stable at the same position and unchanged, thereby ensuring the constancy of temperature and achieving high-efficiency treatment effect. The invention does not need frequent manual adjustment, and solves the problems of unstable combustion of the carbon rod, poor treatment effect, unfixed ignition point, large temperature change and the like.

Description

Included angle automatic rod feeding and fixed-point combustion device for carbon light therapeutic apparatus
Technical Field
The invention belongs to the technical field of carbon rod feeding devices of carbon phototreatment apparatuses, and particularly relates to an included angle automatic rod feeding and fixed-point combustion device for a carbon phototreatment apparatus.
Background
At present, the carbon light therapeutic apparatus is manually adjusted to feed or automatically fed in the use process, and the ignition point of the carbon light therapeutic apparatus is continuously changed and cannot play a role of constant temperature, so that the therapeutic effect is affected. When the carbon rod burns for a period of time, certain loss exists, if the carbon rod is not timely moved, the carbon rod burns and is extinguished, so that when the carbon rod burns and is lost, the carbon rod running mechanism is continuously regulated, and the carbon rod is ensured to continuously burn.
There is a need in the art for a new solution to this problem.
Disclosure of Invention
The technical problems to be solved by the invention are as follows: the included angle automatic rod feeding and fixed-point combustion device for the carbon light therapeutic instrument is used for solving the technical problem that the conventional carbon light therapeutic instrument cannot keep constant temperature due to unfixed ignition point.
An included angle automatic rod feeding and fixed-point combustion device for a carbon phototherapy instrument comprises a carbon rod clamp, a rack bearing plate, a rack, a guide rail sliding block, a motor mounting plate, a gear I, a gear II, a gear III, a gear IV, a gear V, a gear VI, a driving motor, a controller, a reflecting cover and a clamp angle adjusting block,
the upper part of the motor mounting plate is fixedly provided with two guide rail sliding blocks, the upper part of the motor mounting plate is respectively connected with a gear I, a gear II, a gear III, a gear IV and a gear V through bearings, the gear I, the gear II, the gear III, the gear IV and the gear V are all positioned between the two guide rail sliding blocks, and the lower part of the motor mounting plate is fixedly provided with a driving motor;
the two guide rail sliding blocks are symmetrically arranged along the central line of the upper surface of the motor mounting plate, the included angle between the extension lines of the two guide rail sliding blocks is an acute angle, and the upper parts of the guide rail sliding blocks are both in sliding connection with the lower part of the rack bearing plate; the lower parts of the rack bearing plates are fixedly connected with racks on the opposite sides of the two rack bearing plates, and the upper parts of the rack bearing plates are fixedly connected with the clamp cushion blocks; the upper part of the clamp cushion block is fixedly connected with the lower part of the carbon rod clamp through a support column, and clamp angle adjusting blocks are arranged on two sides of the clamp cushion block; the carbon rod clamping end of the carbon rod clamp penetrates through the shell of the reflector and is positioned in the reflector; the controller is respectively connected with the carbon rod clamp and the driving motor;
the rotating shaft of the driving motor passes through the motor mounting plate and is fixedly connected with the gear VI; the gear VI is respectively connected with the gear I, the gear II and the gear III in a meshed manner; the gear I and the gear II are respectively connected with the same rack in a meshed manner, and the gear I is connected with the gear IV in a meshed manner; the gear III is in meshed connection with the gear V; the gear IV and the gear V are respectively connected with the other rack in a meshed manner.
Limit switch I and limit switch II are arranged at two ends of one side upper portion of the motor mounting plate respectively.
The lower four corners of the motor mounting plate are provided with fixing columns.
One side of the rack bearing plate is fixedly provided with a switch baffle, and the switch baffle is positioned between the limit switch I and the limit switch II.
The lower part of the driving motor is provided with a pressing strip, and two ends of the pressing strip are fixedly connected with the motor mounting plate.
The controller is provided with a power switch, a power indicator lamp and a control operation panel.
Through the design scheme, the invention has the following beneficial effects:
the invention provides an included angle automatic rod feeding and fixed-point combustion device which replaces a manual conveying mechanism, the device not only can complete automatic feeding of a carbon rod, but also can enable the carbon rod to burn stably and continuously according to the real-time condition of burning of the carbon rod, and simultaneously ensures that the ignition point of the carbon rod is always stable at the same position and unchanged, thereby ensuring the constancy of temperature and achieving high-efficiency treatment effect. The invention does not need frequent manual adjustment, and solves the problems of unstable combustion of the carbon rod, poor treatment effect, unfixed ignition point, large temperature change and the like.
Drawings
The invention is further described with reference to the drawings and detailed description which follow:
FIG. 1 is a schematic diagram of an automatic rod feeding and fixed-point combustion device for an included angle of a carbon phototherapy instrument.
FIG. 2 is a schematic diagram of the connection structure of the carbon rod clamp and the rack carrier plate in the automatic rod feeding and fixed-point combustion device for the included angle of the carbon phototherapy instrument.
FIG. 3 is a schematic diagram showing the rear view of the motor mounting plate in the automatic bar feeding and fixed-point combustion device for the included angle of the carbon phototherapy apparatus according to the present invention.
FIG. 4 is a graph showing the effect of the invention applied to the automatic rod feeding and fixed-point combustion device for the included angle of the carbon phototherapy instrument.
In the drawing, a 1-carbon rod clamp, a 2-rack bearing plate, a 3-rack, a 4-guide rail slide block, a 5-motor mounting plate, a 6-gear I, a 7-gear II, a 8-gear III, a 9-gear IV, a 10-gear V, a 11-gear VI, a 12-driving motor, a 13-controller, a 14-reflecting shade, a 15-clamp angle adjusting block, a 16-strut, a 17-clamp cushion block, a 18-limit switch I, a 19-limit switch II, a 20-fixed column, a 21-switch baffle and a 22-layering are shown.
Detailed Description
As shown in the figure, the automatic rod feeding and fixed-point combustion device for the included angle of the carbon light therapeutic instrument consists of a carbon rod clamp 1, a rack bearing plate 2, a rack 3, a guide rail sliding block 4, a motor mounting plate 5, a gear I6, a gear II 7, a gear III 8, a gear IV 9, a gear V10, a gear VI 11, a driving motor 12, a controller 13, a reflecting cover 14, a clamp angle adjusting block 15 and the like. Firstly, a driving motor 12 and a guide rail sliding block 4 are arranged on a motor mounting plate 5; mounting a gear VI 11 on the shaft of a driving motor 12; the rack 3 is arranged on the guide rail slide block 4 through the rack bearing plate 2, and is meshed with the gear; the carbon rod clamp 1 is connected with a clamp cushion block 17 through a strut 16 and is arranged on the rack bearing plate 2 and then is arranged on the guide rail slide block 4; two clamp angle adjusting blocks 15 are installed on the rack bearing plate 2. The driving motor 12 is powered by a control circuit, and the control circuit provides the voltage required by the driving motor 12 according to the burning condition of the carbon rod in real time according to the sampling signal, so that the driving motor 12 can forward and backward rotate to drive the carbon rod to feed and backward, the burning speed and the propelling speed of the carbon rod are kept consistent, and the fixed-point continuous and stable burning of the carbon rod is achieved. One end of the carbon rod clamping rod of the carbon rod clamp 1 extends into the reflecting shade 14.
In fig. 2, a drive motor 12 is mounted on a motor mounting plate 5; the gear I6, the gear II 7, the gear III 8, the gear IV 9 and the gear V10 are respectively arranged on the motor mounting plate 5 through a bearing; the gear VI 11 is arranged on the rotating shaft of the driving motor 12; simultaneously, a gear VI 11 is respectively meshed with a gear I6, a gear II 7 and a gear III 8, the gear I6 is meshed with a gear IV 9, and the gear III 8 is meshed with a gear V10; the rack 3 is arranged on the rack bearing plate 2, the rack bearing plate 2 is arranged on the guide rail sliding block 4, and meanwhile, one rack 3 is respectively meshed with the gear II 7 and the gear I6; the other rack 3 is meshed with a gear V10 and a gear IV 9 respectively; the carbon rod clamp 1 is arranged on a clamp cushion block 17 through a strut 16, and the clamp cushion block 17 is arranged on the rack bearing plate 2; the limit switch II 19 and the limit switch I18 are respectively arranged at the front end and the rear end of one side of the motor mounting plate 5; the switch baffle 21 and the clamp angle adjusting block 15 are respectively installed on the rack bearing plate 2. The switch baffle piece 21 is used for sensing the limit switch I18 and the limit switch II 19, so that the limit switch I18 and the limit switch II 19 act, and the operation of the driving motor 12 is controlled. The clamp angle adjusting blocks 15 are positioned on two sides of the clamp cushion block 17 and are used for adjusting and fixing the position of the clamp cushion block 17, so that the aim of adjusting the angle of the carbon rod clamp 1 is fulfilled.
The driving motor 12 is mounted on the motor mounting plate 5; the batten 22 is fixed on the motor mounting plate 5 for reinforcing the driving motor 12.
Examples:
in the implementation process, after the feeding system is assembled, the whole system is fixed in a square box and assembled with other auxiliary accessories and a power circuit to complete the whole carbon phototherapy instrument as shown in fig. 4.
When the power supply is turned on, the driving motor 12 is electrified to rotate to drive the gear VI 11 to rotate, and the rack 3 is driven by the gear combination. Thereby enabling the carbon rod jig 1 to continuously run for combustion. When the carbon rod is burnt, the limit switch II 19 acts to stop the combustion of the carbon rod and reverse the driving motor 12 to retract, so that the carbon rod clamp 1 is separated, and a new carbon rod can be replaced. When the carbon rod clamp is retracted and separated by a certain angle (the position of the carbon rod can be replaced), the limit switch I18 acts, the motor stops rotating, the carbon rod can be replaced at the moment, and the circuit is started to continue burning.
The control circuit of the controller 13 in this embodiment mainly has a power supply device capable of providing power for the carbon rod, and the power supply device includes an electronic triggering component, and an electronic voltage transformation component and an electronic rectifying component controlled by the triggering component and capable of outputting continuous low-voltage direct current for the carbon rod.
The rectifying component is composed of a half-control bridge rectifying circuit composed of a silicon controlled element main part, the input end of the bridge rectifying circuit is connected with a step-down transformer, and a reactance filtering part is arranged between the output end of the bridge rectifying circuit and a carbon rod.
And two ends of the silicon controlled element are connected with a resistance-capacitance type commutation protection circuit in parallel. The trigger component can be connected with the AC power supply by a step-down transformer and a voltage stabilizing tube, and the component can generate oscillation pulse, and the output end of the trigger component is connected with the gate electrode of the silicon controlled element forming the bridge rectifier circuit.
The oscillation pulse generating component can be composed of a relaxation oscillator circuit composed of a resistor, a capacitor and a single crystal transistor or an integrated module for generating oscillation pulses.
The controller 13 may be provided in a housing on the visible surface of which a power switch, a power indicator and a control operation panel connected to a circuit are mounted.
Because the invention adopts the special triggering component to trigger the rectifying component formed by the silicon controlled rectifier, the load, namely the carbon rod, can obtain a continuous and stable power supply, and the carbon rod can emit stable carbon light, and the carbon light can not cause any injury to human body; in addition, the main focus is to trigger the carbon rod by a low-voltage direct current power supply, so that the carbon rod can emit strong illuminance and carbon particles suitable for the needs of human bodies, and the carbon rod plays a role in photo-induced restoration so as to treat various diseases related to the carbon rod.

Claims (3)

1. An included angle automatic rod feeding and fixed-point combustion device for a carbon phototherapy instrument is characterized in that: comprises a carbon rod clamp (1), a rack bearing plate (2), a rack (3), a guide rail sliding block (4), a motor mounting plate (5), a gear I (6), a gear II (7), a gear III (8), a gear IV (9), a gear V (10), a gear VI (11), a driving motor (12), a controller (13), a reflecting cover (14) and a clamp angle adjusting block (15),
the upper part of the motor mounting plate (5) is fixedly provided with two guide rail sliding blocks (4), the upper part of the motor mounting plate (5) is respectively connected with a gear I (6), a gear II (7), a gear III (8), a gear IV (9) and a gear V (10) through bearings, the gear I (6), the gear II (7), the gear III (8), the gear IV (9) and the gear V (10) are all positioned between the two guide rail sliding blocks (4), and the lower part of the motor mounting plate (5) is fixedly provided with a driving motor (12);
the two guide rail sliding blocks (4) are symmetrically arranged along the central line of the upper surface of the motor mounting plate (5), the included angle between the extension lines of the two guide rail sliding blocks (4) is an acute angle, and the upper parts of the guide rail sliding blocks (4) are both in sliding connection with the lower part of the rack bearing plate (2); the lower parts of the rack bearing plates (2) are fixedly connected with racks (3) on one sides of the two rack bearing plates (2) opposite to each other, and the upper parts of the rack bearing plates (2) are fixedly connected with a clamp cushion block (17); the upper part of the clamp cushion block (17) is fixedly connected with the lower part of the carbon rod clamp (1) through a support column (16), and clamp angle adjusting blocks (15) are arranged on two sides of the clamp cushion block (17); the carbon rod clamping end of the carbon rod clamp (1) penetrates through the shell of the reflecting shade (14) and is positioned in the reflecting shade (14); the controller (13) is respectively connected with the carbon rod clamp (1) and the driving motor (12);
the rotating shaft of the driving motor (12) passes through the motor mounting plate (5) and is fixedly connected with the gear VI (11); the gear VI (11) is respectively connected with the gear I (6), the gear II (7) and the gear III (8) in a meshed manner; the gear I (6) and the gear II (7) are respectively connected with the same rack (3) in a meshed manner, and the gear I (6) is connected with the gear IV (9) in a meshed manner; the gear III (8) is in meshed connection with the gear V (10); the gear IV (9) and the gear V (10) are respectively connected with the other rack (3) in a meshed manner;
limit switches I (18) and II (19) are respectively arranged at two ends of the upper part of one side of the motor mounting plate (5);
the four corners of the lower part of the motor mounting plate (5) are provided with fixing columns (20);
one side of the rack bearing plate (2) is fixedly provided with a switch baffle (21), and the switch baffle (21) is positioned between the limit switch I (18) and the limit switch II (19).
2. The automatic rod feeding and fixed-point combustion device for the included angle of the carbon phototherapy instrument according to claim 1, which is characterized in that: the lower part of the driving motor (12) is provided with a pressing strip (22), and two ends of the pressing strip (22) are fixedly connected with the motor mounting plate (5).
3. The automatic rod feeding and fixed-point combustion device for the included angle of the carbon phototherapy instrument according to claim 1, which is characterized in that: the controller (13) is provided with a power switch, a power indicator light and a control operation panel.
CN201910075512.7A 2019-01-25 2019-01-25 Included angle automatic rod feeding and fixed-point combustion device for carbon light therapeutic apparatus Active CN109646810B (en)

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CN201910075512.7A CN109646810B (en) 2019-01-25 2019-01-25 Included angle automatic rod feeding and fixed-point combustion device for carbon light therapeutic apparatus

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Application Number Priority Date Filing Date Title
CN201910075512.7A CN109646810B (en) 2019-01-25 2019-01-25 Included angle automatic rod feeding and fixed-point combustion device for carbon light therapeutic apparatus

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CN109646810B true CN109646810B (en) 2024-03-15

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0596017A (en) * 1990-10-29 1993-04-20 Yuriko Koyari Carbon lamp treating device
KR200226628Y1 (en) * 2000-12-26 2001-06-15 심용섭 An apparatus for feeding automatically a carbon-rod in a carbon right emitting machine
CN2572997Y (en) * 2002-10-14 2003-09-17 孙广胜 Adjustable optical head for carbon opto-physiotherapy apparatus
KR20170115341A (en) * 2016-04-07 2017-10-17 경기과학기술대학교 산학협력단 Carbon lamp for therapy with elecrode-clearance adjustable unit
CN108310666A (en) * 2017-12-26 2018-07-24 宁波中哲医疗科技有限公司 A kind of carbon-point feeding clip mechanism
CN208003270U (en) * 2017-10-25 2018-10-26 浙江星河机器人有限公司 A kind of multi-angle radiotherapy apparatus
CN209679323U (en) * 2019-01-25 2019-11-26 吉林省丰瑞医疗器械有限公司 Angle for light therapeutic equipment using carbon rod send stick and fixed point burner automatically

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0596017A (en) * 1990-10-29 1993-04-20 Yuriko Koyari Carbon lamp treating device
KR200226628Y1 (en) * 2000-12-26 2001-06-15 심용섭 An apparatus for feeding automatically a carbon-rod in a carbon right emitting machine
CN2572997Y (en) * 2002-10-14 2003-09-17 孙广胜 Adjustable optical head for carbon opto-physiotherapy apparatus
KR20170115341A (en) * 2016-04-07 2017-10-17 경기과학기술대학교 산학협력단 Carbon lamp for therapy with elecrode-clearance adjustable unit
CN208003270U (en) * 2017-10-25 2018-10-26 浙江星河机器人有限公司 A kind of multi-angle radiotherapy apparatus
CN108310666A (en) * 2017-12-26 2018-07-24 宁波中哲医疗科技有限公司 A kind of carbon-point feeding clip mechanism
CN209679323U (en) * 2019-01-25 2019-11-26 吉林省丰瑞医疗器械有限公司 Angle for light therapeutic equipment using carbon rod send stick and fixed point burner automatically

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