CN115059817A - Medical gas connecting mechanism - Google Patents

Medical gas connecting mechanism Download PDF

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Publication number
CN115059817A
CN115059817A CN202210759425.5A CN202210759425A CN115059817A CN 115059817 A CN115059817 A CN 115059817A CN 202210759425 A CN202210759425 A CN 202210759425A CN 115059817 A CN115059817 A CN 115059817A
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CN
China
Prior art keywords
gas
sealing
medical gas
air inlet
medical
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Legal status (The legal status 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 status listed.)
Pending
Application number
CN202210759425.5A
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Chinese (zh)
Inventor
李红强
黎群华
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Maquet Suzhou Co Ltd
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Maquet Suzhou Co Ltd
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Filing date
Publication date
Application filed by Maquet Suzhou Co Ltd filed Critical Maquet Suzhou Co Ltd
Priority to CN202210759425.5A priority Critical patent/CN115059817A/en
Publication of CN115059817A publication Critical patent/CN115059817A/en
Pending legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L29/00Joints with fluid cut-off means
    • F16L29/02Joints with fluid cut-off means with a cut-off device in one of the two pipe ends, the cut-off device being automatically opened when the coupling is applied
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F17STORING OR DISTRIBUTING GASES OR LIQUIDS
    • F17DPIPE-LINE SYSTEMS; PIPE-LINES
    • F17D3/00Arrangements for supervising or controlling working operations
    • F17D3/01Arrangements for supervising or controlling working operations for controlling, signalling, or supervising the conveyance of a product
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F17STORING OR DISTRIBUTING GASES OR LIQUIDS
    • F17DPIPE-LINE SYSTEMS; PIPE-LINES
    • F17D5/00Protection or supervision of installations
    • F17D5/005Protection or supervision of installations of gas pipelines, e.g. alarm

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Infusion, Injection, And Reservoir Apparatuses (AREA)

Abstract

The invention discloses a medical gas connecting mechanism, which comprises a valve seat, a gas inlet end connected with medical gas and a gas outlet end connected with a gas inlet interface of medical equipment, wherein the valve seat is provided with a gas passage; the sealing assembly is arranged in the air channel and comprises a first sealing part and a second sealing part; the first sealing part is selectively connected with an air inlet interface or a connecting component; the second sealing part is selectively separated from or connected with the connecting component; when the first sealing part is connected with the air inlet interface and the second sealing part is separated from the connecting assembly, the air passage is dredged; when the first sealing part or the second sealing part is connected with the connecting component, the air channel is blocked. The invention can automatically seal the air passage when the medical gas connecting mechanism is not used, thereby improving the sealing property.

Description

Medical gas connecting mechanism
Technical Field
The invention relates to a medical gas connecting mechanism.
Background
Currently, in the medical field, a large number of medical gas connection mechanisms are often installed on walls of wards and operating rooms, and are connected with medical instruments to supply medical gas needed by the medical instruments. The medical gas comprises oxygen, laughing gas, anesthetic waste gas and the like, wherein some gases are combustion-supporting gases, and some gases have anesthetic action; and therefore have high requirements in terms of leakage prevention.
The existing connecting structure basically adopts a sealing gasket or a sealing ring to realize the sealing of the medical gas connecting mechanism, but when one end of the medical gas connecting mechanism is not connected with a gas pump or medical equipment and the like, the gas channel is communicated with the outside, so that the leakage of medical gas is easily caused.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a medical gas connecting mechanism, which enables a gas channel to be automatically sealed when the medical gas connecting mechanism is not used through a double-sealing structure.
The invention is realized by the following technical scheme:
a medical gas connecting mechanism comprises a valve seat, a gas inlet end connected with medical gas and a gas outlet end connected with a gas inlet interface of medical equipment, wherein the valve seat is provided with a gas passage; the sealing assembly is arranged in the air channel and comprises a first sealing part and a second sealing part; the first sealing part is selectively connected with an air inlet interface or a connecting component; the second sealing part is selectively separated from or connected with the connecting component; when the first sealing part is connected with the air inlet interface and the second sealing part is separated from the connecting assembly, the air passage is dredged; when the first sealing part or the second sealing part is connected with the connecting component, the air passage is blocked.
Further, the first sealing part comprises an air inlet column and a spring elastically connected with the air inlet column; the air inlet column is selectively connected with an air inlet interface or a connecting component.
Furthermore, one end of the spring is elastically connected with the air inlet column, and the other end of the spring is abutted to the second sealing element.
Further, the first sealing portion further comprises a first sealing ring, and the first sealing ring is sleeved on the air inlet interface and connected with the connecting assembly.
Further, the second sealing part includes a stopper connected to the coupling assembly and an inner spring elastically connected to the stopper, and the stopper is selectively separated from or connected to the coupling assembly.
Further, the second sealing portion still includes the valve block, coupling assembling and with spring coupling are worn to locate by the one end of valve block, the other end is connected with the dog.
Furthermore, one end of the inner spring is connected with the valve seat, and the other end of the inner spring is elastically connected with the stop block.
Further, it still includes the valve body, the second sealing still includes the sealing member, the connecting assembling is located to the sealing member cover and with the inner wall butt of valve body.
Furthermore, the second sealing portion further comprises a clamp spring, and the clamp spring is connected with the sealing element.
Further, coupling assembling includes the metal air inlet, the metal air inlet includes terminal surface and step face, first sealing member is connected with the step face, the second sealing member is connected with the terminal surface.
Compared with the prior art, the invention has the advantages that:
1. can realize the in-process at the interface plug that admits air through first sealing, the shutoff or mediation can be realized automatically to the air flue, avoids gaseous in-process at the plug interface that admits air to leak, improves the leakproofness of device, and easy operation is convenient.
2. By arranging the second sealing part, when the medical gas connecting mechanism is communicated or disconnected with medical gas, the gas passage can also be automatically plugged or dredged, so that gas and medical gas are prevented from being leaked in the connecting process, and the sealing performance of the device is further improved.
3. Through the cooperation that sets up first sealing and second sealing for when arbitrary one end of medical gas coupling mechanism is in the unconnected state, the air flue all is in the shutoff state, prevents that medical gas coupling mechanism from leaking in the air flue when unused state, improves the leakproofness of device.
4. Through setting up first sealing washer and sealing member, improve the leakproofness of medical gas coupling mechanism and disk seat and medical gas coupling mechanism and the junction of admitting air the interface.
Drawings
FIG. 1 is a schematic view of a medical gas connection according to a preferred embodiment of the present invention;
FIG. 2 is a plan sectional view of the medical gas connection mechanism of FIG. 1 in a state of being connected to the gas inlet port;
FIG. 3 is a plan cross-sectional view of the medical gas connection mechanism of FIG. 1;
FIG. 4 is a schematic view of a portion of the gas connecting mechanism of FIG. 1;
FIG. 5 is another schematic structural view of a portion of the medical gas connection mechanism of FIG. 1;
FIG. 6 is a sectional plan view of a portion of the gas connection mechanism and the inlet port of the medical device of FIG. 1 in a fixed state;
FIG. 7 is a sectional plan view of a portion of the gas connection mechanism and the gas inlet interface of the medical device of FIG. 6 in a separated state
FIG. 8 is an enlarged view of circle A in FIG. 2
FIG. 9 is an enlarged view of circle B in FIG. 3
Fig. 10 is a schematic view of another portion of the medical gas connection of fig. 1.
Detailed Description
The following detailed description of the present invention, taken in conjunction with the preferred embodiments and the accompanying drawings, further illustrates the present invention without limitation. In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicate orientations or positional relationships based on the orientation or positional relationships shown in the drawings. Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means at least two, e.g., two, three, etc., unless specifically limited otherwise. The embodiments described below with reference to the drawings are illustrative and intended to be illustrative of the invention and are not to be construed as limiting the invention.
As shown in fig. 1 to 3, a medical gas connection 1 according to a preferred embodiment of the present invention. The medical gas supply device comprises an air inlet port 18 connected with medical gas and an air outlet port 19 connected with an air inlet interface 2 of the medical equipment, the medical gas is transmitted from the air inlet port 18 to the air outlet port 19, and meanwhile, the medical gas is supplied to the medical equipment through the air inlet interface 2 connected with the air outlet port 19; wherein, the air inlet interface 2 is a secondary connector for gas connection (which is prior art and is not described herein), and the air inlet interface 2 is detachably mounted on a main body of the medical device (not shown). Specifically, the inlet port 18 of the medical gas connection mechanism 1 is connected to a gas pump or a gas cylinder (not shown) for containing medical gas. The medical gas connecting mechanism 1 comprises a connecting component 11 connected with the gas inlet interface 2, a sealing component 12, an adjusting component 13, a pressure gauge 14, a valve seat 15, a threaded sleeve 16, a sealing sleeve 17, a fixing sleeve 18, a first screw 19 and a first fastening threaded sleeve 20. The valve seat 15 is provided with a gas passage 10 through which gas flows and a first step surface 152. The fixing sleeve 18 is fixedly connected with the panel of the medical tower crane or the box body of the bridge tower through the first screw 19 and the first fastening thread sleeve 20, and the fixing sleeve 18 is sleeved on the valve seat 15 and abuts against the first step surface 152. The air inlet port 2 is provided with a groove 21 which is matched with the connecting component 11.
With further reference to fig. 4 to 7, the connecting assembly 11 is fixedly connected to the valve seat 15 and includes a movable portion 110, a fixed portion 111, an air inlet portion 112 connected to the air inlet port 2, an elastic member 113, a second screw 114, a second screw fastening sleeve 115, and a cover plate 116. The cover plate 116 has one end connected to the valve seat 15 and the other end connected to the air inlet 112. The first screw 114 is sequentially inserted through the air inlet 112, the cover plate 116 and the fixing sleeve 18 and is fixedly connected with the first fastening threaded sleeve 115, so that the connecting assembly 11 is fixedly mounted on the fixing sleeve 18. The air inlet port 2 is movably arranged through the air inlet part 112. The air inlet part 112 is communicated with the air passage 10 and comprises an air inlet part 1121 movably connected with the fixing part 111 and a metal air inlet part 1122 abutted with the sealing assembly 12, and the air inlet part 1121 is fixedly connected with the metal air inlet part 1122; the air inlet 2 is sequentially disposed through the air inlet 1121 and the metal air inlet 1122. The air inlet part 1121 is provided with a connecting groove 1124 adapted to the fixing part 111, and further, the connecting groove 1124 is a rectangular groove with a length direction perpendicular to the axial direction of the air inlet part 1121; the connecting groove 1124 may be formed in other shapes as desired. The metal inlet 1122 is provided with a second step surface 1123, and the seal assembly 12 abuts the second step surface 1123. The movable portion 110 is connected to the fixed portion 111 and slidably connected to the air inlet portion 112 to drive the fixed portion 111 to move. The movable portion 110 is provided with a slope 1103 and a return slope 1104 and includes a front cover 1101 and a connector 1102; the front cover 1101 is fixedly connected with the connector 1102, and the front cover 1101 and the connector 1102 are movably connected with the air inlet 112 respectively. Specifically, the front cover 1101 and the connection member 1102 are slidably connected to the air inlet 1121 respectively. The front cover 1101 is provided with a slope 1103. The connection member 1102 is provided with a reset slope 1104 and connected with the elastic member 113. The fixing member 111 is selectively connected to the inclined surface 1103 or the reset inclined surface 1104 and movably connected to the air inlet portion 112, and is selectively coupled to or separated from the air inlet port 2. Specifically, the fixing member 111 is installed between the front cover 1101 and the connection member 1102 and is inserted into a connection groove 1124 of the air inlet portion 112, so that the fixing member 111 can move along the connection groove 1124 in a direction perpendicular to the axis of the air inlet port 2. Further, the fixing pieces 111 are provided with a pair and the pair of fixing pieces 111 are symmetrically distributed on two sides of the air inlet interface 2; the fixing member 111 is a long cylindrical pin. When the front cover 1101 is pressed (as indicated by an arrow D), the inclined surface 1103 of the front cover 1101 abuts against the fixing member 111 and drives the fixing member 111 to move, and the fixing member 111 moves along the connecting groove 1124 in a direction away from the air inlet 2 to separate from the air inlet 2; meanwhile, the connection member 1102 fixedly coupled with the front cover 1101 moves together with the front cover 1101 and presses the elastic member 113. When the front cover 1101 is released, the elastic member 113 rebounds and drives the connecting member 1102 to move, the reset inclined plane 1104 of the connecting member 1102 abuts against the fixed member 111 and drives the fixed member 111 to move, and the fixed member 111 moves along the connecting groove 1124 in a direction close to the air inlet port 2, so that the fixed member 111 is coupled to the air inlet port 2. By arranging the connecting assembly 11, the medical gas connecting mechanism 1 and the gas inlet interface 2 can be quickly disassembled and assembled, and the operation is convenient; the movable part 110 and the elastic part 113 form an elastic pressing structure, so that the fixing part 111 can automatically reset, the improper installation of the air inlet interface 2 and the medical gas connecting mechanism 1 caused by the misoperation of personnel is avoided, the connecting component 11 is convenient to operate, and the structure is simple; through the cooperation of inclined plane 1103, reset inclined plane 1104 and connecting groove 1124, make mounting 111 remove along connecting groove 1124, and through the shape that changes connecting groove 1124, can realize mounting 111 along different orbit motion, satisfy the use under the multiple scene.
With further reference to fig. 8 and 9, the seal assembly 12 is disposed within the airway 10 and includes a first seal 121 and a second seal 122. The first sealing part 121 is selectively connected with the air inlet interface 2 or the connecting assembly 11; the second sealing portion 122 is selectively separated from or connected to the connecting member 11; when the first sealing part 121 is connected with the air inlet interface 2 and the second sealing part 122 is separated from the connecting assembly 11, the air passage 10 is dredged; when the first sealing portion 121 or the second sealing portion 122 is connected to the connection assembly 11, the air passage 10 is sealed. Specifically, the first seal portion 121 abuts against the second stepped surface 1123 of the metal intake 1122. The first seal portion 121 includes an intake column 1211 that abuts against a second step surface 1123 of the metal intake member 1122, a spring 1212, and a first seal ring 1213. The first sealing ring 1213 is sleeved on the air inlet 2 and connected to the metal air inlet 1122 to prevent air from leaking from the connection gap between the air inlet 2 and the metal air inlet 1122, so as to improve the sealing performance of the device. One end of the spring 1212 is connected to the intake cylinder 1211, and the other end is connected to the second sealing portion 122. When the fixing piece 111 is separated from the air inlet interface 2, the spring 1212 applies elastic force to the air inlet cylinder 1211 to make the air inlet cylinder 1211 abut against the second step surface 1123 of the metal air inlet 1122 so as to seal the air passage 10; therefore, when the air inlet connector 2 is removed, the air inlet column 1211 automatically blocks the air passage 10 by the action of the spring 1212, so that the air is prevented from leaking from the air passage 10 when the air inlet connector 2 is removed, and the sealing performance of the whole device is improved. The second sealing assembly 122 is disposed through the connecting assembly 11 and includes an inner spring 1221, a stopper 1222, a valve plate 1223, a sealing member 1224, and a clamp spring 1225. The stop 1222 is connected to the metal air inlet 1122 and abuts the inner spring 1221. Specifically, the valve plate 1223 is inserted through the metal air inlet 1122 and the end 1226 thereof abuts against the end face 1125 of the metal air inlet 1122. One end of the stopper 1222 abuts against the valve sheet 1223, and the other end abuts against the inner spring 1221; the inner spring 1221 applies an elastic force to the stopper 1222 to make the stopper 1222 closely abut against the valve sheet 1223 to improve the airtightness of the apparatus. Preferably, the sealing member 1224 covers the metal air inlet 1122 and abuts against the inner wall 151 of the valve seat 15 to improve the air tightness of the connection of the metal air inlet 1122 with the valve seat 15; a snap spring 1225 is coupled to the seal 1224 to secure the seal 1224 against rotation of the seal 1224. When the medical gas connecting mechanism 1 is not communicated with the medical gas, the stop 1222 is abutted with the valve plate 1223 under the action of the inner spring 1221, so that the air channel 10 is blocked; after the medical gas connecting mechanism 1 is communicated with medical gas, the pressure in the air passage 10 is increased, the stop 1222 is pushed open, and the air passage 10 is dredged. When the inlet port 18 of the medical gas connection mechanism 1 is communicated with medical gas and the outlet port 19 is connected with the inlet interface 2, the airway 10 is unblocked, and the medical gas flows through the sealing assembly 12 from the inlet port 18 (as shown by an arrow W) and then flows out from the outlet port 19. When the inlet port 18 of the medical gas connection mechanism 1 is disconnected from the medical gas, the stopper 1222 of the second sealing portion 122 abuts against the valve sheet 1223, and the airway 10 is blocked. When the air outlet port 19 of the medical gas connection mechanism 1 is disconnected from the air inlet port 2, the air inlet column 1211 of the first sealing component 121 abuts against the metal air inlet 1122 of the connection component 11, and the air passage 10 is blocked. Therefore, when the air inlet port 18 and the air outlet port 19 of the medical gas connecting mechanism 1 are both in a communicated state, the air passage 10 is in a dredging state; when any one end of the air inlet port 18 and the air outlet port 19 of the medical gas connecting mechanism 1 is not in a connected state, the air channel 10 is blocked. Can realize through first sealing 121 at the in-process of interface 2 plug that admits air, the shutoff or the mediation can be realized automatically to air flue 10, avoids gaseous in-process of interface 2 that admits air at the plug to leak, improves the leakproofness of device, and easy operation is convenient. By arranging the second sealing part 122, when the medical gas connecting mechanism 1 is communicated or disconnected with medical gas, the air passage 10 can also be automatically plugged or dredged, so that leakage in the process of connecting the gas and the medical gas is avoided, and the sealing performance of the device is further improved. By arranging the first sealing part 121 and the second sealing part 122, when any end of the medical gas connecting mechanism 1 is in an unconnected state, the gas channel 10 is in a blocking state, so that gas is prevented from leaking from the gas channel 10 when the medical gas connecting mechanism 1 is in an unused state, and the sealing performance of the device is improved.
With further reference to fig. 10, the adjustment assembly 13 includes an inner sleeve 131, an adjustment portion 132, a seal 133, a second seal 134, a third seal 135, and a retaining block 136. The inner sleeve 131 penetrates through the valve seat 15 and is provided with a channel 1311 communicated with the air passage 10; the medical gas is communicated with the gas inlet port 2 via a passage 1311. The adjusting part 132 is connected with the inner sleeve 131; specifically, the adjusting part 132 is movably disposed through the inner sleeve 131 and partially seals the channel 1311, and the sealed range of the channel 1311 can be adjusted by adjusting the matching distance between the adjusting part 132 and the inner sleeve 131. Therefore, an operator can change the requirements of different scenes by only adjusting the matching distance between the adjusting part 132 and the inner sleeve 131, and the device is convenient to operate and simple in structure. Specifically, the fixing block 136 is fixedly connected to the valve seat 15. The inner sleeve 131 is fixedly connected with the fixed block 136 to fix the adjusting assembly 13 and the valve body 15; a sealing gasket 133 is arranged between the bottom end of the inner sleeve 131 and the valve seat 15, specifically, one end of the sealing gasket 133 is abutted against the bottom end of the inner sleeve 131, and the other end is abutted against the inner wall 151 of the valve seat 15, so as to improve the sealing property of the connection between the inner sleeve 131 and the valve seat 15. The adjustment portion 132 includes a ventilation rod 1321 and a tightening head 1322. The tightening head 1322 is fixedly disposed through the vent rod 1321 and includes a head 1323 and a rod 1324. The parallel both sides face of axis of head 1323 and coupling assembling 1 is the cambered surface of indent, and the fillet is all carried out on each side of head 1323 to comfort level when improving the user and gripping. Preferably, the head 1323 is configured in other shapes to allow connection to other devices to allow for automatic control of the head 1323. The stem 1324 is integrally formed with the head 1324 and is fixedly attached to the vent rod 1311. A second sealing ring 134 is disposed between the ventilation bar 1321 and the inner sleeve 131 to improve the sealing property of the connection between the two, and specifically, the second sealing ring 134 is sleeved on the tightening head 1322 and abuts against the ventilation bar 1321. The vent rod 1321 penetrates through the inner sleeve 131 and partially seals the passage 1311; the user can control the range of the vent lever 1321 for blocking the channel 1311 by pressing or pulling up the tightening head 1322; when the user presses the tightening head 1322, the passage area for gas circulation becomes smaller, the gas pressure increases, and the flow rate becomes smaller as the ventilation range of the passage 1311 becomes smaller; when the user pulls up the tightening head 1322, the passage area for gas to flow through becomes large, the gas pressure decreases, and the flow rate becomes large as the ventilation range of the passage 1311 becomes large. . Preferably, a third sealing ring 135 is provided between the inner sleeve 131 and the valve seat 15 to improve the sealing property of the connection therebetween, and the third sealing ring 135 is fitted to the vent rod 1321 and abuts against the valve seat 15.
The pressure gauge 14 is fixedly connected with the valve seat 15 and is arranged at an air inlet port 18 of the medical gas connecting mechanism 1 to monitor the gas pressure in real time; the sensing end 141 of the pressure gauge 14 is disposed within the air path 10. Through the cooperation of manometer 14 and adjusting part 13, the user can be according to the needs regulation gas pressure of oneself, and can simply audio-visually observe the real-time change of pressure to realize more accurate regulated pressure.
A threaded sleeve 16 and a gland 17 are mounted on an inlet port 18 of the medical gas connection 1. The threaded sleeve 16 is connected to a corresponding gas pump or cylinder (not shown) containing a medical gas. The sealing sleeve 17 is arranged at the air inlet port 18 of the medical gas connecting mechanism 1 and sleeved on the valve seat 15 to improve the sealing performance of the medical gas connecting mechanism 1 when being connected with medical gas.
When the medical gas connecting mechanism is used, the gas inlet port 18 of the medical gas connecting mechanism 1 is communicated with medical gas, the gas pressure in the gas channel 10 of the medical gas connecting mechanism 1 is increased, and the stop block 1222 is pushed open; the outlet port 19 of the medical gas connection mechanism 1 is connected to the inlet port 2, and the inlet port 2 pushes the inlet stem 1211 to move and separate from the second step surface 1123 of the metal inlet 1122. At this time, the airway 10 is opened and medical gas flows into the inlet port 2. When the pressure or the flow of the gas needs to be adjusted, the tightening head 1322 is pressed or pulled up to control the area of the channel for the gas to circulate, and when the area of the channel for the gas to circulate becomes smaller, the pressure of the gas is increased, and the flow becomes smaller; when the area of the channel for gas circulation is increased, the gas pressure is reduced, and the flow is increased; and the gas pressure can be monitored in real time by the pressure gauge 14. Therefore, the medical gas connecting mechanism 1 and the gas inlet interface 2 can be quickly disassembled and assembled by arranging the connecting assembly 11, and the operation is convenient; the movable part 110 and the elastic part 113 form an elastic pressing structure, so that the fixing part 111 can automatically reset, the situation that the sealing performance is insufficient due to improper resetting position during operation of personnel is avoided, and the structure is simple; the first sealing part 121 can be used for automatically plugging or dredging the air passage 10 in the process of plugging and unplugging the air inlet interface 2, so that the air is prevented from leaking in the process of plugging and unplugging the air inlet interface 2, the sealing performance of the device is improved, and the operation is simple and convenient; by arranging the second sealing part 122, when the medical gas connecting mechanism 1 is connected with or disconnected from medical gas, the gas passage 10 can also be automatically plugged or dredged, so that gas is prevented from leaking from the gas passage 10, and the sealing performance of the device is further improved. Through setting up adjusting part 13, realize can adjusting the pressure and the flow of gas with the mode of pressing and pulling up tightening head 1322, the simple operation, simple structure is reliable. By providing the pressure gauge 14, the gas pressure can be monitored in real time. By providing a plurality of sealing members, the sealing performance of the entire device is improved.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. A medical gas connecting mechanism comprises a valve seat (15), a gas inlet port (18) connected with medical gas and a gas outlet port (19) connected with a gas inlet interface (2) of medical equipment, wherein the valve seat (15) is provided with a gas channel (10), and the medical gas connecting mechanism (1) is characterized by further comprising a connecting assembly (11) and a sealing assembly (12) which are connected with the gas inlet interface (2); the sealing assembly (12) is arranged in the air channel (10) and comprises a first sealing part (121) and a second sealing part (122); the first sealing part (121) is selectively connected with the air inlet interface (2) or the connecting component (11); the second sealing part (122) is selectively separated from or connected with the connecting component (11); when the first sealing part (121) is connected with the air inlet interface (2) and the second sealing part (122) is separated from the connecting component (11), the air channel (10) is dredged; when the first sealing part (121) or the second sealing part (122) is connected with the connecting component (11), the air channel (10) is sealed.
2. Medical gas connection according to claim 1, characterized in that the first sealing part (121) comprises an inlet column (1211) and a spring (1212) resiliently connected to the inlet column (1211); the air inlet column (1211) can be selectively connected with the air inlet interface (2) or the connecting component (11).
3. Medical gas connection according to claim 1, wherein the spring (1212) is resiliently connected at one end to the gas inlet column (1211) and at the other end abuts against the second seal (122).
4. A medical gas connection according to claim 2, wherein the first sealing portion (121) further comprises a first sealing ring (1213), and the first sealing ring (1213) is sleeved on the gas inlet port (2) and connected to the connection assembly (11).
5. The medical gas connection according to claim 1, wherein the second sealing portion (122) comprises a stopper (1222) connected to the connection assembly (11) and an inner spring (1221) elastically connected to the stopper (1222), the stopper (1222) being selectively detachable from or attachable to the connection assembly (11).
6. The medical gas connection according to claim 2, wherein the second sealing portion (122) further comprises a valve plate (1223), one end of the valve plate (1223) is inserted into the connecting assembly (11) and connected to the spring (1212), and the other end is connected to the stopper (1222).
7. Medical gas connection according to claim 2, characterized in that the inner spring (1221) is connected with one end to the valve seat (15) and with the other end to the stop (1222) elastically.
8. The medical gas connection according to claim 1, further comprising a valve body (15), the second sealing portion (122) further comprising a seal (1224), the seal (1224) being sleeved to the connection assembly (11) and abutting against an inner wall (151) of the valve body (15).
9. The medical gas connection according to claim 6, wherein the second sealing portion (122) further comprises a snap spring (1225), the snap spring (1225) being connected to a seal (1224).
10. The medical gas connection according to claim 1, wherein the connection assembly (11) comprises a metal inlet (1122), the metal inlet (1122) comprising an end face (1125) and a step face (1123), the first seal (121) being connected to the step face (1123), the second seal (122) being connected to the end face (1125).
CN202210759425.5A 2022-06-29 2022-06-29 Medical gas connecting mechanism Pending CN115059817A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210759425.5A CN115059817A (en) 2022-06-29 2022-06-29 Medical gas connecting mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210759425.5A CN115059817A (en) 2022-06-29 2022-06-29 Medical gas connecting mechanism

Publications (1)

Publication Number Publication Date
CN115059817A true CN115059817A (en) 2022-09-16

Family

ID=83205080

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202210759425.5A Pending CN115059817A (en) 2022-06-29 2022-06-29 Medical gas connecting mechanism

Country Status (1)

Country Link
CN (1) CN115059817A (en)

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