Cupping body disinfection device for traditional Chinese medicine nursing
Through the multi-layer disinfection structure combined with the design of ultraviolet, steam and plasma generators, the problem of disinfection dead corners of traditional disinfection devices is solved, and a comprehensive and multi-level disinfection effect is achieved, the risk of cross-infection is reduced, and the safe use of cupping bodies is ensured.
Patent Information
- Application Number
- CN202510277290.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-07-22
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional disinfection devices rely solely on simple ultraviolet disinfection, which is prone to disinfection dead corners, leading to bacterial residues, increasing the risk of cross-infection and reducing the overall disinfection effect.
A multi-layer disinfection structure is adopted, combined with preliminary disinfection of ultraviolet lamps, deep disinfection of steam generated by heating boxes and secondary disinfection of plasma generators in the storage chamber to ensure the sterile environment of the tank during storage.
Achieve all-round and multi-level disinfection, reduce the risk of cross-infection, ensure the safety and disinfection effect of the tank during use, and avoid secondary pollution.
Smart Images

Figure CN120346350A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of disinfection devices, and more specifically, particularly relates to a disinfection device for cupping jars used in traditional Chinese medicine nursing. Background Art
[0002] Cupping is a unique traditional therapy in traditional Chinese medicine nursing. By adsorbing the cupping jar at a specific part and using the powerful suction force formed by negative pressure to stimulate the flow of meridian qi and blood, it can effectively disperse the cold and damp pathogens in the body and improve the condition of qi and blood stasis. Among them, the cupping jar is a reusable traditional Chinese medicine nursing instrument that directly contacts the patient's skin. After cupping, it is extremely easy to be contaminated with dandruff, grease, and possibly existing pathogens. Therefore, it is necessary to thoroughly clean the cupping jar. First, use a special cleaning agent to remove the surface dirt. After the cleaning is completed, in order to avoid cross-infection caused by residual germs, the cupping jar needs to be disinfected. In order to ensure the comprehensiveness of the cupping jar disinfection, a disinfection device is often required.
[0003] The disinfection device is a cleaning guarantee device for cupping jars, which can ensure the hygienic safety of the cupping jars and eliminate the risk of cross-infection. However, traditional disinfection devices usually only have simple ultraviolet disinfection. Ultraviolet disinfection is prone to have disinfection dead corners, which may cause some germs to remain. When the cupping jars are reused, the risk of cross-infection is increased. Moreover, the disinfection is not thorough, which also reduces the overall disinfection effect of the device and affects the use of the entire device. Summary of the Invention
[0004] In order to solve the above technical problems, the present invention provides a disinfection device for cupping jars used in traditional Chinese medicine nursing, so as to solve the technical problems in the prior art that traditional disinfection devices only rely on simple ultraviolet disinfection, are prone to have disinfection dead corners and pathogenic bacteria residues, increase the risk of cross-infection, and reduce the overall disinfection effect.
[0005] The purpose and efficacy of a disinfection device for cupping jars used in traditional Chinese medicine nursing of the present invention are achieved by the following specific technical means: A disinfection device for cupping jars used in traditional Chinese medicine nursing, comprising a main body plate, multiple jar bodies, and ultraviolet lamps. Above the main body plate, there are a main body box and two placement boxes, which are interconnected and separated by electric lifting doors provided on both sides of the main body box, forming a disinfection chamber, a placement chamber, and a storage chamber. The disinfection chamber is located between the placement chamber and the storage chamber. Multiple first sliding rails and clamping components are provided on the main body plate. The clamping components are slidably connected to the multiple first sliding rails and are located in one of the chambers. The multiple jar bodies are respectively clamped on the clamping components. The ultraviolet lamps are located in the disinfection chamber and are installed on the main body box, with the light irradiation direction facing downwards. On one side of the main body plate, there is an installation plate, and a disinfection component is provided on the installation plate. The disinfection component is connected to the disinfection chamber through a conduit. A plasma generator is provided in the storage chamber and is installed in one of the placement boxes. A controller is also provided on the main body box.
[0006] According to a preferred embodiment, the clamping component includes a clamping frame and a clamping cross bar. Multiple first electric sliders slidably connected to the first sliding rails are provided at the bottom of the clamping frame. Studs are provided at both ends of the clamping cross bar, and bearings are provided on the clamping frame. The studs are inserted into the bearings, and the clamping cross bar is rotatably connected to the clamping frame. Clamping frames are provided on both sides of the clamping frame and are detachably connected to the clamping cross bar. Multiple first clamping rings and multiple second clamping rings are provided on the clamping frames. The first clamping rings are located below the second clamping rings, forming a double-layer structure. The jar body is inserted into the first clamping rings and the second clamping rings. Multiple limit blocks are provided at the bottom of the first clamping rings, and rubber spacer strips are provided on the limit blocks. The jar body is clamped between the multiple limit blocks and contacts the rubber spacer strips, and a gap is formed between the jar body and the first clamping rings.
[0007] According to a preferred embodiment, the clamping component further includes multiple first clamping brackets and multiple clamping valves. The multiple first clamping brackets are symmetrically distributed and are slidably connected to the clamping frames. Multiple rubber protrusions are provided in the second clamping rings and on the first clamping brackets. The rubber protrusions contact the jar body, and a gap is formed between the jar body and the first clamping brackets and the second clamping rings through the rubber protrusions. The first clamping brackets abut against the jar body. The clamping valves are located at one end of the clamping frames and are rotatably connected to the clamping frames. A clamping rack is provided at one end of the first clamping brackets, and a clamping gear is provided on the clamping valves. The clamping gear meshes with the clamping rack.
[0008] According to a preferred embodiment, the clamping assembly further includes multiple groups of first clamping brackets, multiple groups of second clamping brackets, and multiple groups of clamping valves. The multiple groups of first clamping brackets are symmetrically distributed and are slidably connected to the clamping frame; multiple groups of connection blocks are arranged on the clamping crossbar, and connection grooves are formed in the connection blocks. Multiple groups of connection bottom frames are arranged on one side of the second clamping bracket, and the connection bottom frames are inserted into the connection grooves. Spring members are arranged in the connection grooves, and the spring members are located between the connection bottom frames and the connection block brackets. The tank body is clamped between the first clamping bracket and the second clamping bracket; multiple groups of rubber protrusions are arranged on the inner side of the second clamping ring, on the first clamping frame, and on the second clamping bracket, and the rubber protrusions are in contact with the tank body. A gap is formed between the tank body and the first clamping bracket, the second clamping ring, and the second clamping bracket through the rubber protrusions; the clamping valve is located at one end of the clamping frame and is rotatably connected to the clamping frame; a clamping rack is arranged at one end of the first clamping bracket, a clamping gear is arranged on the clamping valve, and the clamping gear meshes with the clamping rack.
[0009] According to the disinfection device for a cupping tank body used in traditional Chinese medicine nursing as claimed in the claim or, characterized in that: a connection sleeve is arranged on one of the studs on the clamping crossbar, a connection plate is arranged on the main body plate, a connection frame and a motor are arranged in the disinfection cavity, the connection frame is installed on the connection plate, the motor is slidably connected to the connection frame through a second slide rail and a second electric slider, a connection clamping block is arranged at the end of the motor shaft, and the connection clamping block can be clamped in the connection sleeve; a visual recognition module is arranged on the motor, and an identification plate that can be recognized by the visual recognition module is arranged on one side of the connection sleeve; a swing frame is arranged on the other stud and rotates together with the clamping crossbar. A magnet block is arranged at one end of the swing frame, the magnet block is arc-shaped, a magnet seat is arranged corresponding to the magnet block on the clamping frame, the bottom of the magnet seat is arc-shaped, and the radian is the same as that of the magnet block. The magnet block is in contact with the magnet seat, and multiple groups of weight blocks are arranged at the bottom of the first clamping bracket.
[0010] According to a preferred embodiment, the disinfection component includes an assembly plate, multiple heating boxes and steam boxes. The assembly plate is installed on the mounting plate. An assembly rack is provided on the assembly plate. Multiple heating boxes and the steam box are all clamped on the assembly rack. The three are arranged vertically, and the steam box is located below the heating box. A heating cavity and a heat preservation cavity are provided in the heating box. The heating cavity and the heat preservation cavity are separated from each other. A heating type evaporator is provided in the heating cavity. Multiple heating boxes and the steam box are connected by connecting pipes. The heating cavity communicates with the steam box. Solenoid valves are respectively provided on the connecting pipes between multiple heating boxes and the steam box. Multiple heating boxes and the steam box are also connected by air guide pipes. The heat preservation cavity communicates with the steam box through the air guide pipe. A protective cover is provided at the top of the assembly rack. The protective cover is set in a funnel shape and is arranged upside down.
[0011] According to a preferred embodiment, the disinfection component further includes a connecting piece and a distribution sleeve, both of which are installed on the assembly plate. A distribution rack and an electric cylinder are provided in the distribution sleeve. The electric cylinder is located at the bottom of the distribution rack and is connected to the distribution sleeve. The distribution rack is connected to the shaft end of the electric cylinder. Three distribution blocks are provided on the distribution rack. An air inlet pipe is provided on the distribution block. A connection hole is provided on the connecting piece. Multiple heating boxes are communicated with the connection hole through air pipes, and multiple air extraction pumps are provided on the air pipes. A clamping groove is provided on the connecting piece. The three air inlet pipes are all clamped in the clamping groove and one end is in contact with the connecting piece. One of the air inlet pipes is butted against the connection hole.
[0012] According to a preferred embodiment, a distribution part is provided on the assembly plate. Multiple distribution pipes are provided on the distribution part. Multiple first air outlet pipes and multiple sealing columns are provided on one of the distribution blocks. Multiple second air outlet pipes and multiple sealing columns are provided on another distribution block. Multiple first air outlet pipes and multiple second air outlet pipes are provided on the last distribution block. One of the distribution blocks communicates with the distribution pipes through multiple second air outlet pipes. Multiple air blowing pipes are provided in the disinfection cavity. Multiple air blowing pipes are respectively installed on the main body plate and the main body box. Air outlet holes are provided on the air outlet pipes. The blowing directions of multiple air blowing pipes all face the tank body. Two of the distribution pipes are respectively connected to multiple air blowing pipes through distribution ducts. A disinfection box is provided on one side of one of the placement boxes. The other two distribution pipes are respectively communicated with the disinfection box through the distribution ducts. Multiple placement grids are provided in the disinfection box.
[0013] According to a preferred embodiment, a collection box is provided above the main body plate. Only a through groove is opened on the main body plate and the main body box. The collection box is inserted into the through groove and is located in the disinfection cavity. A plurality of magnetic attraction strips are arranged on the top of the main body plate. Magnetic attraction blocks are correspondingly arranged at the bottom of the collection box for the magnetic attraction strips. The magnetic attraction blocks are in contact with the magnetic attraction strips. The collection box is located below the first slide rail. A plurality of diversion rib strips are arranged in the main body box. The diversion rib strips extend from the top of the main body box to contact the top of the collection box.
[0014] According to a preferred embodiment, an installation through groove is opened on the top of the main body box. An installation clamping plate is arranged in the installation through groove. The installation clamping plate is rotatably connected to the main body box. A plurality of installation buckles are arranged at the bottom of the installation clamping plate. The ultraviolet lamp is clamped between the plurality of installation buckles and is detachably connected to the installation clamping plate. A plurality of locking sleeves are arranged on the top of the main body box. The plurality of locking sleeves are located on both sides of the installation through groove. A spring and a slidable locking block are arranged in the locking sleeve. The spring is located between the locking block and the locking sleeve. The locking block is located on the top of the installation clamping plate and is in contact with the installation clamping plate. A pressing plate is arranged on the locking block.
[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The present disinfection device adopts a multi-layer disinfection structure. The ultraviolet lamp can perform preliminary disinfection on the surface of the tank body. The heating box in the disinfection component generates steam, and the steam disinfection is used to further kill germs. The plasma generator in the storage cavity can perform secondary disinfection on the tank body temporarily stored after disinfection, realizing all-round and multi-level disinfection and reducing the risk of cross-infection. The two placement boxes have clear division of labor. The placement cavity is convenient for the operator to place the tank body to be disinfected into the device, and the storage cavity is used to safely store the disinfected tank body. A plasma generator is arranged in the storage cavity. The plasma generator can effectively ensure a sterile environment in the storage cavity. It uses highly active particles generated by the plasma to destroy its cell structure and biomolecules, thereby killing the germs that may remain. Even during the storage process, if potential microorganisms enter, the plasma generator can quickly play a role and perform all-round disinfection to avoid secondary pollution and ensure that the tank body can be safely used at any time, providing a reliable guarantee for the subsequent traditional Chinese medicine cupping nursing work.
[0016] 2. The first electric slider at the bottom of the clamping frame is matched with the first slide rail and can move back and forth between the disinfection chamber, the placement chamber and the storage chamber; the studs at both ends of the clamping cross bar are connected to the clamping frame through bearings and can rotate. After the clamping assembly drives the tank body into the disinfection chamber, the visual recognition module detects the recognition block, and the motor moves closer in the direction of the clamping assembly through the cooperation of the second electric slider and the second slide rail until the connecting block on the motor is clamped in the connecting sleeve. By rotating the motor, the clamping cross bar and the tank body fixed thereon can be driven to rotate, so that the tank body can receive the action of the disinfection medium in all directions and at multiple angles during the disinfection process, effectively killing the germs that may remain in various parts of the tank body, improving the disinfection effect, and ensuring the safety of the cupping tank body during subsequent use. The first clamping ring and the second clamping ring on the clamping frame form a double-layer structure. Cooperating with the limit block and the rubber spacer strip, they can not only firmly clamp the tank body, but also form a gap between the tank body and the first clamping ring, which is beneficial to the full-contact of disinfection media such as steam, improving the disinfection effect, and the rubber spacer strip can prevent the tank body from being worn.
[0017] 3. On the assembly rack of the disinfection component, the heating box and the steam box are arranged vertically. The heating chamber and the heat preservation chamber in the heating box are separated. The heating evaporator generates heat, and the steam box generates steam through the connecting pipe and the air guide pipe. The solenoid valve controls the steam flow. The generated high-temperature steam enters the steam box, and the steam in the steam box enters the heat preservation chamber, which can play a certain role in heat preservation and auxiliary heating of the heating box. On the one hand, the steam in the heat preservation chamber can effectively reduce the heat dissipation of the heating box, keep the heating box at an efficient working temperature, and reduce energy consumption. On the other hand, when the power of the heating evaporator is briefly insufficient, the heat carried by the steam in the heat preservation chamber can be supplemented in reverse for auxiliary heating to ensure the continuous generation of steam and stable temperature, improving the stability and persistence of steam generation, allowing high-temperature steam to be continuously supplied to the disinfection chamber, providing a more lasting and efficient disinfection environment for the cupping tank body, comprehensively ensuring the disinfection effect, and improving the overall performance of the device. The distribution rack in the distribution sleeve works in cooperation with the electric cylinder, and three modes can be switched through the distribution block, the air inlet pipe, etc., so as to reasonably distribute the steam to the blowing pipe and the disinfection box, realize efficient disinfection operation, and optimize the disinfection process. Description of the Drawings
[0018] Figure 1 is the structural schematic diagram of the assembled invention; Figure 2 is the structural schematic diagram of the disassembled invention; Figure 3 is the structural schematic diagram of the disassembled clamping assembly in the first embodiment of the invention; Figure 4 is the structural schematic diagram of the disassembled clamping assembly in the second embodiment of the invention; Figure 5 is the structural schematic diagram of the clamping frame; Figure 6 It is a schematic structural diagram of a clamping valve; Figure 7 It is a schematic structural diagram of the disinfection component of the present invention; Figure 8 It is a schematic structural diagram after the disinfection component is disassembled; Figure 9 It is a schematic structural diagram after the distribution sleeve is disassembled; Figure 10 It is a schematic structural diagram of the main body box; Figure 11 It is Figure 2 A partial enlarged view of area a in Figure 12 It is Figure 2 A partial enlarged view of area b in Figure 13 It is a principle block diagram of the controller.
[0019] In the figure, the corresponding relationship between the component names and the attached drawing reference numerals is as follows: 11. Main body plate; 12. Mounting plate; 13. Connecting plate; 14. Connecting frame; 15. Motor; 16. Connecting block; 17. Visual recognition module; 201. Tank body; 202. Ultraviolet lamp; 203. Main body box; 204. Placing box; 205. Plasma generator; 206. Blowing pipe; 207. Disinfection box; 208. Collection box; 209. Flow guiding rib; 210. Installation through groove; 301. First slide rail; 302. Clamping frame; 303. Clamping cross bar; 304. Stud; 305. Clamping frame; 306. First clamping ring; 307. Second clamping ring; 308. Limiting block; 309. Rubber spacer; 310. First clamping bracket; 311. Clamping valve; 312. Rubber protrusion; 313. Clamping rack; 314. Clamping gear; 315. Second clamping bracket; 316. Connecting block; 317. Connecting groove; 318. Connecting bottom frame; 319. Spring member; 320. Connecting sleeve; 321. Identification plate; 322. Rocking frame; 323. Magnet block; 324. Magnet seat; 401. Assembly plate; 402. Heating box; 403. Steam box; 404. Assembly rack; 405. Heating type evaporator; 406. Protective cover; 407. Connecting member; 408. Distribution sleeve; 409. Distribution rack; 410. Electric cylinder; 411. Distribution block; 412. Inlet pipe; 413. Card slot; 414. Distribution member; 415. Distribution pipe; 416. First outlet pipe; 417. Sealing column; 418. Second outlet pipe; 51. Installation card plate; 52. Installation buckle; 53. Locking sleeve; 54. Locking block; 55. Pressing plate. Detailed implementation manners
[0020] The following further describes in detail the embodiments of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the technical solutions of the present invention, but cannot be used to limit the protection scope of the present invention.
[0021] Embodiment 1: Such as Figures 1 to 13As shown in the figure, the present invention provides a disinfection device for cupping jars used in traditional Chinese medicine nursing, which includes a main body plate 11. The main body plate 11 plays a basic supporting role, and there are multiple groups of jar bodies 201 on it. These jar bodies 201 are the objects to be disinfected. It also includes an ultraviolet lamp 202, which undertakes the task of preliminary disinfection in the whole disinfection process. Above the main body plate 11, there are a main body box 203 and two placement boxes 204. The main body box 203 and the two placement boxes 204 are interconnected. Electrically operated lifting doors are provided on both sides of the main body box 203. These electrically operated lifting doors can separate the space, thus forming a disinfection chamber, a placement chamber, and a storage chamber. At the same time, it does not prevent the clamping assembly from moving back and forth between the three. Among them, the disinfection chamber is located between the placement chamber and the storage chamber. The placement chamber is mainly used for operators to place the jar bodies 201 to be disinfected, and the storage chamber is used to store the disinfected jar bodies 201, with clear division of labor. There are multiple groups of first slide rails 301 on the main body plate 11, and the clamping assembly is matched with them. The clamping assembly can be slidably connected to the multiple groups of first slide rails 301 and can be located in one of the chambers. Multiple groups of jar bodies 201 are respectively clamped on the clamping assembly, so as to ensure the relative fixation of the position of the jar bodies 201 in the device, facilitating subsequent disinfection operations. The ultraviolet lamp 202 is installed on the main body box 203, and its light irradiation direction is downward, which can carry out preliminary disinfection work on the surface of the jar bodies 201 in the disinfection chamber and kill a part of the germs. On one side of the main body plate 11, there is an installation plate 12, and a disinfection component is arranged on the installation plate 12. The disinfection component is connected to the disinfection chamber through a conduit. When the disinfection component works, it can transport the generated disinfection medium, such as high-temperature steam, etc., to the disinfection chamber to further disinfect the jar bodies 201. In the storage chamber, a plasma generator 205 is provided. The plasma generator 205 is installed in one of the placement boxes 204. The plasma generator 205 can play a role in the storage chamber. Even if the jar bodies 201 have been disinfected, during the storage period, if potential microorganisms enter the storage chamber, the plasma generated by the plasma generator 205 can kill them, ensuring a sterile storage environment, and further ensuring that the jar bodies 201 can be safely used for traditional Chinese medicine cupping nursing work at any time. The plasma generator 205 can adopt the TECH-LAB PGS-100 plasma generator. A controller is also provided on the main body box 203, which can control the operation of the entire device, such as controlling the opening and closing of the electrically operated lifting doors, the working time and intensity of the disinfection component, etc., so that the disinfection device can operate orderly. The controller can adopt the Kunlun Tongtai TPC7062Ti controller.
[0022] As Figure 2 , Figure 3As shown, the clamping assembly includes a clamping frame 302 and a clamping cross bar 303. The bottom of the clamping frame 302 is equipped with multiple groups of first electric sliders, and the first electric sliders can be slidably connected with the first slide rail 301. Therefore, the clamping frame 302 can move on the first slide rail 301, which is convenient for switching the tank body 201 back and forth between the placement chamber and the disinfection chamber and the storage chamber, meeting the position conversion requirements in the disinfection process. Studs 304 are provided at both ends of the clamping cross bar 303, and bearings are provided at corresponding positions on the clamping frame 302. The studs 304 are inserted into the bearings, which enables the clamping cross bar 303 to be rotatably connected with the clamping frame 302, so that the clamping cross bar 303 can rotate within a certain range. When the tank body 201 is fixed on the clamping assembly, it can rotate with the clamping cross bar 303. A clamping frame 305 is provided on both sides of the clamping frame 302, and the clamping frame 305 is detachably connected to the clamping cross bar 303. Such a connection form facilitates replacement or repair of the clamping frame 305 when necessary. The clamping frame 305 is provided with multiple groups of first clamping rings 306 and multiple groups of second clamping rings 307, wherein the first clamping ring 306 is located below the second clamping ring 307, and the two form a double-layer structure, which improves the fixing ability of the tank body 201. When the tank body 201 is inserted into the first clamping ring 306 and the second clamping ring 307, the upper second clamping ring 307 applies a clamping force from the middle and upper part of the tank body, and the lower first clamping ring 306 provides support and fixation from near the bottom of the tank body. The simultaneous action from different heights avoids the tank body from shaking and displacement during the disinfection process, which affects the disinfection effect. Whether the clamping assembly drives the tank to move, or the tank is exposed to disinfection media such as steam and ultraviolet rays, the double-layer structure can firmly hold the tank body 201, ensuring the smooth progress of the disinfection process, so that each surface of the tank can be fully and stably disinfected, laying the foundation for the safe use of the tank in subsequent Chinese medicine cupping. A plurality of groups of limit blocks 308 are arranged at the bottom of the first clamping ring 306, and a rubber spacer 309 is installed on each limit block 308. The tank body 201 is clamped between the plurality of groups of limit blocks 308 and contacts the rubber spacer 309. At the same time, a certain gap is formed between the tank body 201 and the first clamping ring 306. The presence of the rubber spacer 309 can, on the one hand, prevent the tank body 201 from being scratched during the clamping process. On the other hand, the gap between the tank body 201 and the first clamping ring 306 is conducive to the disinfection medium, such as steam, to more comprehensively contact the surface of the tank body 201, thereby improving the disinfection effect. Moreover, when the steam is cooled on the tank surface to form water droplets, the gap also facilitates these steam droplets to drip downward, avoiding residual water, ensuring the cleanliness and dryness of the tank body, and further ensuring the effectiveness of the disinfection work.
[0023] like Figure 2 , Figure 3 , Figure 5 ,Figure 6 , Figure 11 As shown, the clamping assembly further includes multiple groups of first clamping brackets 310 and multiple groups of clamping valves 311. The multiple groups of first clamping brackets 310 are symmetrically distributed. They can be slidably connected to the clamping frame 305 and are provided with a limiting structure, enabling the first clamping brackets 310 to move on the clamping frame 305 so as to be adjusted to a suitable position according to the actual size and placement of the tank body 201. Multiple groups of rubber protrusions 312 are provided inside the second clamping ring 307 and on the first clamping brackets 310. The rubber protrusions 312 are in direct contact with the tank body 201. Due to the existence of the rubber protrusions 312, a gap is formed between the tank body 201, the first clamping brackets 310, and the second clamping ring 307. The function of the rubber protrusions 312 is the same as that of the rubber spacer 309. On the one hand, it can prevent the tank body 201 from being scratched during the clamping process. On the other hand, the gap between the tank body 201 and the first clamping ring 306 is conducive to the disinfection medium, such as steam, etc., to more comprehensively contact the surface of the tank body 201, improving the disinfection effect. Moreover, when the steam forms water droplets when encountering cold on the tank surface, this gap also facilitates the downward dripping of these steam water droplets, avoiding water accumulation and residue, ensuring the cleanliness and dryness of the tank, and further guaranteeing the effectiveness of the disinfection work. The clamping valve 311 is located at one end of the clamping frame 305 and is rotatably connected to the clamping frame 305. One end of the first clamping bracket 310 is provided with a clamping rack 313, and a clamping gear 314 is correspondingly provided on the clamping valve 311. The clamping gear 314 meshes with the clamping rack 313. When it is necessary to adjust the position of the first clamping bracket 310, rotate the clamping valve 311 to drive the clamping gear 314 to rotate. Due to the meshing relationship between the gear and the rack, the clamping rack 313 will drive the first clamping bracket 310 to slide on the clamping frame 305, thereby realizing flexible and effective clamping of tank bodies 201 of different sizes, ensuring that the tank always maintains a stable state during the disinfection process and meeting diverse disinfection requirements. At the same time, a clamping bolt is provided on the clamping valve 311, and this design further enhances the stability of the clamping assembly for clamping the tank body 201. When the clamping assembly is adjusted to the clamping state of the tank body 201, just pass one end of the clamping bolt through the clamping valve 311 and firmly lock it on the clamping frame 305, which can effectively prevent the clamping valve 311 from rotating randomly. In this way, the clamping gear 314 connected to the clamping valve 311 cannot rotate either, and thus the position of the first clamping bracket 310 can be firmly locked, ensuring that the tank can be stably clamped throughout the disinfection process.
[0024] One set of studs 304 on the clamping cross bar 303 is configured with a connecting sleeve 320. A connecting plate 13 is provided on the main body plate 11, and a connecting frame 14 and a motor 15 are provided in the disinfection chamber. The connecting frame 14 is installed on the connecting plate 13, providing a support point for the motor 15. The motor 15 forms a slidable connection relationship with the connecting frame 14 through a second slide rail and a second electric slider, enabling the motor 15 to move on the connecting frame 14. A connecting chuck 16 is provided at the shaft end of the motor 15, and the connecting chuck 16 can be clamped in the connecting sleeve 320. When the clamping assembly drives the tank body 201 to move into the disinfection chamber, the motor 15 starts to move. When it moves to a suitable position and the connecting chuck 16 is inserted into the connecting sleeve 320, the motor 15 can drive the clamping cross bar 303 to rotate. A visual recognition module 17 is provided on the motor 15, and an identification plate 321 is provided on one side of the connecting sleeve 320. The identification plate 321 can be recognized by the visual recognition module 17. When the clamping assembly brings the tank body 201 into the disinfection chamber, the visual recognition module 17 starts to work, recognizes the identification plate 321, thereby determining the relative position between the motor 15 and the clamping cross bar 303, ensuring that the connecting chuck 16 can accurately be inserted into the connecting sleeve 320. The visual recognition module 17 can adopt a Keyence CV-X200 visual sensor. While the motor 15 drives the clamping cross bar 303 to rotate, it also drives the tank body 201 to rotate together, which can more effectively make the disinfection medium cover the surface of the tank body in all directions. Whether it is ultraviolet irradiation or high-temperature steam fumigation, the rotation of the tank body can avoid the occurrence of disinfection dead angles. The steam can be evenly attached, and the ultraviolet can irradiate without omission, greatly improving the disinfection effect, ensuring that the germs in all parts of the tank body can be fully killed, and providing a strong guarantee for the safe use of traditional Chinese medicine cupping. On the other set of studs 304, a swing frame 322 is provided, and the swing frame 322 will rotate together with the clamping cross bar 303. One end of the swing frame 322 is provided with a magnet block 323, and the magnet block 323 is arranged in an arc shape. A magnet seat 324 is provided at the position of the clamping frame 302 corresponding to the magnet block 323. The bottom of the magnet seat 324 is also arranged in an arc shape, and the radian is the same as that of the magnet block 323, so that the magnet block 323 and the magnet seat 324 can come into good contact; when the clamping cross bar 303 is in a static state, the magnet block 323 and the magnet seat 324 are in close contact, and the two attract each other by their own magnetism. This attracting effect generates a stable force, effectively preventing the swing frame 322 from shaking randomly. Since the swing frame 322 is connected to the clamping cross bar 303, its stability is enhanced, and thus the entire clamping assembly is more stable when at rest. When the tank body 201 is placed on the clamping assembly, this stabilizing effect can prevent the tank body from being displaced due to external slight vibration or careless operation, ensuring that the tank body always remains in a suitable position, creating favorable conditions for subsequent disinfection.Meanwhile, the attraction between the two is less than the rotational force of the motor 15, enabling the motor 15 to smoothly drive the clamping crossbar 303 to rotate together; and relevant adsorption structures are provided in the two placement boxes 204. When the clamping assembly moves into the placement cavity or storage cavity, it can effectively ensure the stability of the clamping assembly. When placing the tank body 201, the clamping assembly will not rotate randomly; at the bottom of the first clamping bracket 310, multiple sets of weight blocks are provided, which increase the stability of the first clamping bracket 310. When the clamping crossbar 303 rotates, the swing frame 322 rotates accordingly, and the magnet block 323 interacts with the magnet seat 324. Cooperating with the weight blocks, the first clamping bracket 310 can maintain a more stable state when clamping the tank body 201, ensuring that the tank body does not shake during the disinfection process and enabling the disinfection work to proceed smoothly.
[0025] As Figure 2 , Figures 7 to 9 shown, the disinfection assembly includes an assembly plate 401, multiple heating boxes 402, and a steam box 403. The assembly plate 401 is installed on the mounting plate 12 and serves to carry and fix other components. An assembly frame 404 is provided on the assembly plate 401, and multiple heating boxes 402 and the steam box 403 are both clamped on the assembly frame 404. The three are arranged vertically, and the steam box 403 is located below the heating boxes 402. A heating cavity and a heat preservation cavity are provided inside the heating box 402, and these two chambers are separated from each other. Inside the heating cavity, there is a heating evaporator 405. After the heating evaporator 405 starts to work, it can generate heat. The heating evaporator 405 can adopt the Danfoss MCH10 heating evaporator. Multiple heating boxes 402 and the steam box 403 are connected by a connecting pipe, and the heating cavity is in communication with the steam box 403. In this way, the high-temperature steam generated in the heating cavity can enter the steam box 403 through the connecting pipe. Moreover, solenoid valves are respectively provided on the connecting pipes between multiple heating boxes 402 and the steam box 403. The solenoid valves can control the flow of steam and adjust the amount of steam entering the steam box 403 according to the actual disinfection requirements. At the same time, multiple heating boxes 402 and the steam box 403 are also connected by a gas guide pipe, and the heat preservation cavity is in communication with the steam box 403 through the gas guide pipe. Part of the steam in the steam box 403 can enter the heat preservation cavity through the gas guide pipe, playing a certain role in heat preservation and auxiliary heating for the heating box 402. When the heating evaporator 405 has insufficient power briefly, the heat carried by the steam in the heat preservation cavity can be replenished in reverse to ensure continuous steam generation and stable temperature. A protective cover 406 is provided at the top of the assembly frame 404. The protective cover 406 is in a funnel shape and is set upside down. This structure can prevent the steam from escaping upward, concentrate the steam downward, enable more steam to effectively enter the steam box 403 and subsequent disinfection processes, improve the utilization rate of the steam, ensure that the disinfection assembly plays a better role, and provide sufficient high-temperature steam for the disinfection of the cupping tank body.
[0026] The disinfection assembly also includes a connector 407 and a distribution sleeve 408, both of which are mounted on the assembly plate 401. A distribution rack 409 and an electric cylinder 410 are arranged inside the distribution sleeve 408. The electric cylinder 410 is located at the bottom of the distribution rack 409 and is connected to the distribution sleeve 408 to provide power support for the distribution rack 409. The distribution rack 409 is connected to the shaft end of the electric cylinder 410. When the electric cylinder 410 is started, it can push the distribution rack 409 to move in the distribution sleeve 408. Three groups of distribution blocks 411 are arranged on the distribution rack 409, and each distribution block 411 is installed with an air intake pipe 412. A connection hole is opened on the connector 407, and multiple groups of heating boxes 402 are connected to this connection hole through a vent pipe. In order to allow steam to flow smoothly from the heating box 402 to the connector 407, multiple groups of vacuum pumps are also arranged on the vent pipe. When the vacuum pump is working, it can generate suction, which causes the steam in the heating box 402 to flow to the connecting hole of the connector 407 through the vent pipe. In addition, the connector 407 is provided with a slot 413, and the three groups of air inlet pipes 412 are all stuck in the slot 413, and one end is in contact with the connector 407. Among the three groups of air inlet pipes 412, one group is docked with the connecting hole. When the steam reaches the connecting hole of the connector 407 from the heating box 402 through the vent pipe, it will enter the distribution block 411 through the docking air inlet pipe 412. When the electric cylinder 410 pushes the distribution rack 409 to move, it can change the position of the distribution block 411 and the air inlet pipe 412, thereby realizing different steam distribution modes. For example, by adjusting the position, steam can enter the distribution block 411 from different air inlet pipes 412, and then the steam can be reasonably distributed to the subsequent disinfection links to meet different disinfection needs and ensure that the steam can participate in the disinfection of the cupping jar body.
[0027] The distribution part 414 is arranged on the assembly plate 401. The distribution part 414 plays a role in reasonably distributing the steam. Multiple groups of distribution pipes 415 are arranged on the distribution part 414, and these distribution pipes 415 are the channels for steam transportation. The three groups of distribution blocks 411 have different configurations. Multiple groups of first air outlet pipes 416 and multiple groups of sealing columns 417 are arranged on one group of distribution blocks 411, and the sealing columns 417 can prevent steam leakage; multiple groups of second air outlet pipes 418 and multiple groups of sealing columns 417 are arranged on another group of distribution blocks 411; multiple groups of first air outlet pipes 416 and multiple groups of second air outlet pipes 418 are arranged on the last group of distribution blocks 411 at the same time. One group of distribution blocks 411 communicates with the distribution pipes 415 through multiple groups of second air outlet pipes 418, so that steam can enter the distribution pipes 415 from the distribution blocks 411. Multiple groups of air blowing pipes 206 are arranged in the disinfection cavity, and these air blowing pipes 206 are respectively installed on the main body plate 11 and the main body box 203. Air outlet holes are formed in the air outlet pipes, and the blowing directions of the multiple groups of air blowing pipes 206 all face the tank body 201. Two of the distribution pipes 415 are respectively connected with the multiple groups of air blowing pipes 206 through distribution ducts. When the steam enters the air blowing pipes 206 through the distribution pipes 415 and the distribution ducts, it will be blown out from the air outlet holes to perform steam disinfection on the tank body 201, and the steam can contact the tank body 201 in all directions to effectively kill germs. A disinfection box 207 is arranged on one side of one of the placement boxes 204, and the other two distribution pipes 415 are respectively communicated with the disinfection box 207 through distribution ducts. Multiple placement grids are arranged in the disinfection box 207, which can be used to place some small objects related to cupping, such as clips for cupping. When the steam enters the disinfection box 207 through the distribution pipes 415 and the distribution ducts, it can disinfect the items placed in the placement grids, realizing the synchronous disinfection of multiple items, improving the disinfection efficiency, providing convenience for traditional Chinese medicine nursing work, and ensuring that all kinds of items used in the cupping process can be effectively disinfected. Among them, multiple groups of first air outlet pipes 416 communicate with the air blowing pipes 206 in the disinfection cavity through the distribution pipes 415 and the distribution ducts; and multiple groups of second air outlet pipes 418 communicate with the disinfection box 207 through the distribution pipes 415 and the distribution ducts. Air extraction pumps are arranged on the distribution ducts for smoothly extracting the steam in the distribution blocks 411 to the corresponding positions. Through the operation of the air extraction pumps, it can ensure that the steam efficiently enters the air blowing pipes 206 and the disinfection box 207. The air blowing pipes 206 can perform steam disinfection on the tank body 201, and the disinfection box 207 can disinfect the related small objects to ensure the smooth progress of the entire disinfection process.
[0028] Such as Figure 2 , Figure 10 , Figure 12As shown in the figure, a collection box 208 is provided above the main body board 11. Through slots are provided on the main body board 11 and the main body box 203. The collection box 208 passes through this through slot and is located in the disinfection chamber. There are multiple groups of magnetic attraction strips on the top of the main body board 11, and magnetic attraction blocks are provided at the bottom of the collection box 208 corresponding to these magnetic attraction strips. When the magnetic attraction blocks come into contact with the magnetic attraction strips, the collection box 208 can be fixed on the main body board 11. The collection box 208 is located below the first slide rail 301. Multiple groups of flow guiding rib strips 209 are provided in the main body box 203. These flow guiding rib strips 209 extend from the top of the main body box 203 downwards until they come into contact with the top of the collection box 208. During the disinfection process, the water droplets formed when the steam cools down will flow down along the flow guiding rib strips 209 and finally fall into the collection box 208, so that the wastewater generated by disinfection can be effectively collected and the cleanliness of the disinfection chamber can be maintained.
[0029] An installation through slot 210 is provided at the top of the main body box 203, and an installation clamping plate 51 is provided in the installation through slot 210. The installation clamping plate 51 is rotatably connected to the main body box 203, which enables the installation clamping plate 51 to rotate flexibly. There are multiple groups of installation buckles 52 at the bottom of the installation clamping plate 51, and the ultraviolet lamp 202 is clamped between these installation buckles 52, realizing the detachable connection with the installation clamping plate 51. If the ultraviolet lamp 202 fails or needs to be replaced, it can be simply taken out from the installation buckles 52, and the operation is relatively convenient. Multiple groups of locking sleeves 53 are also provided at the top of the main body box 203, and these locking sleeves 53 are located on both sides of the installation through slot 210. There is a spring and a slidable locking block 54 in the locking sleeve 53, and the spring is located between the locking block 54 and the locking sleeve 53. The locking block 54 is located at the top of the installation clamping plate 51 and contacts the installation clamping plate 51. When the installation clamping plate 51 rotates to the appropriate position, the elastic force of the spring will push the locking block 54 to firmly press against the installation clamping plate 51, thereby fixing the installation clamping plate 51. A pressing plate 55 is provided on the locking block 54. When it is necessary to open the installation clamping plate 51, press the pressing plate 55 to compress the spring, so that the locking block 54 leaves the installation clamping plate 51, and the installation clamping plate 51 can be rotated and opened, facilitating operations such as maintenance of the ultraviolet lamp 202. This not only ensures the stability of the installation of the ultraviolet lamp 202 but also facilitates subsequent maintenance and replacement.
[0030] Embodiment 2: Based on a disinfection device for cupping jars used in traditional Chinese medicine nursing provided in Embodiment 1 of the present application, Embodiment 2 of the present application proposes a disinfection device for cupping jars used in traditional Chinese medicine nursing. Embodiment 2 is merely a preferred manner of Embodiment 1, and the implementation of Embodiment 2 will not affect the independent implementation of Embodiment 1. The following will further describe Embodiment 2 of the present invention.
[0031] As Figures 4 to 6As shown, the clamping assembly further includes multiple groups of first clamping brackets 310, multiple groups of second clamping brackets 315, and multiple groups of clamping valves 311. The multiple groups of first clamping brackets 310 are symmetrically distributed. They can be slidably connected to the clamping frame 305 and are provided with a limiting structure, enabling the first clamping brackets 310 to move on the clamping frame 305 so as to be adjusted to a suitable position according to the actual size and placement of the tank body 201. Multiple groups of connecting blocks 316 are provided on the clamping crossbar 303, and connecting grooves 317 are formed in the connecting blocks 316. Multiple groups of connecting bottom frames 318 are provided on one side of the second clamping bracket 315, and the connecting bottom frames 318 can be inserted into the connecting grooves 317. In the connecting groove 317, a spring member 319 is further provided, and the spring member 319 is located between the connecting bottom frame 318 and the connecting block 316. When the tank body 201 is placed between the first clamping bracket 310 and the second clamping bracket 315, the spring member 319 can provide a certain buffering and adjustment space, enabling the second clamping bracket 315 to make appropriate displacements according to the actual shape and placement of the tank body 201 and better fit the tank body. Multiple groups of rubber protrusions 312 are provided on the inner side of the second clamping ring 307, the first clamping frame 305, and the second clamping bracket 315, and the rubber protrusions 312 are in direct contact with the tank body 201. Due to the presence of the rubber protrusions 312, gaps are formed between the tank body 201 and the first clamping bracket 310 and the second clamping ring 307. The function of the rubber protrusions 312 is the same as that of the rubber spacer 309. On the one hand, it can prevent the tank body 201 from being scratched during the clamping process. On the other hand, the gap between the tank body 201 and the first clamping ring 306 is conducive to the disinfection medium, such as steam, etc., to more comprehensively contact the surface of the tank body 201, improving the disinfection effect. Moreover, when the steam forms water droplets when it meets cold on the tank surface, this gap also facilitates the downward dripping of these steam water droplets, avoiding water accumulation and residue, ensuring the cleanliness and dryness of the tank, and further guaranteeing the effectiveness of the disinfection work. The clamping valve 311 is located at one end of the clamping frame 305, and it is rotatably connected to the clamping frame 305. One end of the first clamping bracket 310 is provided with a clamping rack 313, and a clamping gear 314 is correspondingly provided on the clamping valve 311, and the clamping gear 314 meshes with the clamping rack 313. When it is necessary to adjust the position of the first clamping bracket 310, rotate the clamping valve 311 to drive the clamping gear 314 to rotate. Due to the meshing relationship between the gear and the rack, the clamping rack 313 will drive the first clamping bracket 310 to slide on the clamping frame 305, thereby realizing the flexible and effective clamping of tank bodies 201 of different sizes, ensuring that the tank body always maintains a stable state during the disinfection process and meeting diverse disinfection requirements. At the same time, a clamping bolt is provided on the clamping valve 311, further enhancing the stability of the clamping assembly for clamping the tank body 201.When the clamping assembly is adjusted to the clamping state of the tank body 201, just pass one end of the clamping bolt through the clamping valve 311 and firmly clamp it on the clamping frame 305, which can effectively prevent the clamping valve 311 from rotating randomly. In this way, the clamping gear 314 connected to the clamping valve 311 cannot rotate either, so that the position of the first clamping bracket 310 can be firmly locked, ensuring that the tank body can be stably clamped throughout the disinfection process.
[0032] The difference between the second embodiment and the first embodiment is that multiple groups of second clamping brackets 315 are added. Multiple groups of connecting blocks 316 are arranged on the clamping cross bar 303. Connecting grooves 317 are formed in the connecting blocks 316. Multiple groups of connecting bottom frames 318 are arranged on one side of the second clamping brackets 315. The connecting bottom frames 318 can be inserted into the connecting grooves 317. Spring members 319 are arranged in the connecting grooves 317. The spring members 319 are located between the connecting bottom frames 318 and the connecting blocks 316. Double-sided clamping can fit in all directions, enhancing the fixing stability and better fixing the tank body 201 to ensure that the tank body does not shake during disinfection. The remaining conditions are the same as those in the first embodiment, so this embodiment will not be described in detail.
[0033] The foregoing has shown and described the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-mentioned exemplary embodiments.
Claims
1. A disinfection device for cupping jars used in traditional Chinese medicine nursing, comprising a main body plate (11), multiple jar bodies (201), and ultraviolet lamps (202), characterized in that: Above the main board (11), there are a main box (203) and two groups of placement boxes (204). The three are interconnected and separated by electric lifting doors arranged on both sides of the main box (203), forming a disinfection chamber, a placement chamber, and a storage chamber. The disinfection chamber is located between the placement chamber and the storage chamber; on the main board (11), there are multiple groups of first slide rails (301) and clamping components. The clamping components are slidably connected to the multiple groups of first slide rails (301) and are located in one of the chambers. Multiple groups of the tank bodies (201) are respectively clamped on the clamping components; the ultraviolet lamp (202) is located in the disinfection chamber and is installed on the main box (203), with the light irradiation direction facing down; on one side of the main board (11), there is a mounting board (12). The mounting board (12) is provided with a disinfection component. The disinfection component is connected to the disinfection chamber through a conduit. A plasma generator (205) is arranged in the storage chamber and is installed in one of the placement boxes (204). The main box (203) is also provided with a controller.
2. The disinfection device for the cupping jar used in traditional Chinese medicine nursing according to claim 1, wherein: The clamping component includes a clamping frame (302) and a clamping cross bar (303). At the bottom of the clamping frame (302), there are multiple groups of first electric sliders slidably connected to the first slide rails (301). At both ends of the clamping cross bar (303), there are stud bolts (304). Bearings are arranged on the clamping frame (302). The stud bolts (304) are inserted into the bearings. The clamping cross bar (303) is rotatably connected to the clamping frame (302); on both sides of the clamping frame (302), there are clamping frames (305) detachably connected to the clamping cross bar (303). On the clamping frames (305), there are multiple groups of first clamping rings (306) and multiple groups of second clamping rings (307). The first clamping rings (306) are located below the second clamping rings (307), forming a double-layer structure. The tank body (201) is inserted into the first clamping rings (306) and the second clamping rings (307); at the bottom of the first clamping rings (306), there are multiple groups of limit blocks (308). Rubber spacer strips (309) are arranged on the limit blocks (308). The tank body (201) is clamped between the multiple groups of limit blocks (308) and contacts the rubber spacer strips (309). A gap is formed between the tank body (201) and the first clamping rings (306).
3. The disinfection device for the cupping jar used in traditional Chinese medicine nursing according to claim 2, wherein: The clamping assembly further includes multiple groups of first clamping brackets (310) and multiple groups of clamping valves (311). The multiple groups of first clamping brackets (310) are symmetrically distributed and are slidably connected to the clamping frame (305). Multiple groups of rubber protrusions (312) are provided both inside the second clamping ring (307) and on the first clamping brackets (310). The rubber protrusions (312) contact the tank body (201). A gap is formed between the tank body (201), the first clamping brackets (310), and the second clamping ring (307) through the rubber protrusions (312). The first clamping brackets (310) abut against the tank body (201). The clamping valves (311) are located at one end of the clamping frame (305) and are rotatably connected to the clamping frame (305). A clamping rack (313) is provided at one end of the first clamping bracket (310), and a clamping gear (314) is provided on the clamping valve (311). The clamping gear (314) meshes with the clamping rack (313).
4. A disinfection device for a cupping jar used in traditional Chinese medicine nursing according to claim 2, characterized in that: The clamping assembly further includes multiple groups of first clamping brackets (310), multiple groups of second clamping brackets (315), and multiple groups of clamping valves (311). The multiple groups of first clamping brackets (310) are symmetrically distributed and are slidably connected to the clamping frame (305). Multiple groups of connecting blocks (316) are provided on the clamping crossbar (303). Connecting grooves (317) are formed in the connecting blocks (316). Multiple groups of connecting bottom frames (318) are provided on one side of the second clamping brackets (315). The connecting bottom frames (318) are inserted into the connecting grooves (317). A spring member (319) is provided in the connecting grooves (317). The spring member (319) is located between the connecting bottom frames (318) and the connecting blocks (316). The tank body (201) is clamped between the first clamping brackets (310) and the second clamping brackets (315). Multiple groups of rubber protrusions (312) are provided both inside the second clamping ring (307), on the first clamping frame (305), and on the second clamping brackets (315). The rubber protrusions (312) contact the tank body (201). A gap is formed between the tank body (201), the first clamping brackets (310), the second clamping ring (307), and the second clamping brackets (315) through the rubber protrusions (312). The clamping valves (311) are located at one end of the clamping frame (305) and are rotatably connected to the clamping frame (305). A clamping rack (313) is provided at one end of the first clamping bracket (310), and a clamping gear (314) is provided on the clamping valve (311). The clamping gear (314) meshes with the clamping rack (313).
5. A disinfection device for a cupping jar used in traditional Chinese medicine nursing according to claim 3 or 4, characterized in that: One set of the studs (304) on the clamping cross bar (303) is provided with a connecting sleeve (320). A connecting plate (13) is provided on the main body plate (11). A connecting frame (14) and a motor (15) are arranged in the disinfection chamber. The connecting frame (14) is mounted on the connecting plate (13). The motor (15) is slidably connected to the connecting frame (14) through a second slide rail and a second electric slider. A connecting chuck (16) is provided at the shaft end of the motor (15), and the connecting chuck (16) can be clamped in the connecting sleeve (320). A visual recognition module (17) is provided on the motor (15). An identification plate (321) that can be recognized by the visual recognition module (17) is provided on one side of the connecting sleeve (320). Another set of the studs (304) is provided with a swing frame (322), which rotates together with the clamping cross bar (303). One end of the swing frame (322) is provided with a magnet block (323). The magnet block (323) is arc-shaped. A magnet seat (324) is provided on the clamping frame (302) corresponding to the magnet block (323). The bottom of the magnet seat (324) is arc-shaped, and the radian is the same as that of the magnet block (323). The magnet block (323) contacts the magnet seat (324). Multiple sets of weight blocks are provided at the bottom of the first clamping bracket (310).
6. The disinfection device for the cupping jar used in traditional Chinese medicine nursing according to claim 1, wherein: The disinfection assembly includes an assembly plate (401), multiple heating boxes (402) and a steam box (403). The assembly plate (401) is mounted on the mounting plate (12). An assembly frame (404) is provided on the assembly plate (401). Multiple heating boxes (402) and the steam box (403) are all clamped on the assembly frame (404). The three are arranged vertically, and the steam box (403) is located below the heating boxes (402). A heating chamber and a heat preservation chamber are provided in the heating box (402). The heating chamber and the heat preservation chamber are separated from each other. A heating type evaporator (405) is provided in the heating chamber. Multiple heating boxes (402) and the steam box (403) are connected through a connecting pipe. The heating chamber communicates with the steam box (403). Solenoid valves are respectively provided on the connecting pipes between multiple heating boxes (402) and the steam box (403). Multiple heating boxes (402) and the steam box (403) are also connected through a gas guide pipe. The heat preservation chamber communicates with the steam box (403) through the gas guide pipe. A protective cover (406) is provided at the top of the assembly frame (404). The protective cover (406) is funnel-shaped and is arranged in an inverted manner.
7. A disinfection device for a cupping jar used in traditional Chinese medicine nursing, characterized in that: The disinfection component further includes a connecting piece (407) and a distribution sleeve (408), both of which are installed on the assembly plate (401). A distribution rack (409) and an electric cylinder (410) are arranged inside the distribution sleeve (408). The electric cylinder (410) is located at the bottom of the distribution rack (409) and is connected to the distribution sleeve (408). The distribution rack (409) is connected to the shaft end of the electric cylinder (410); Three groups of distribution blocks (411) are arranged on the distribution rack (409). An air inlet pipe (412) is arranged on the distribution block (411). A connecting hole is formed in the connecting piece (407). Multiple groups of the heating boxes (402) are communicated with the connecting hole through a ventilation pipe, and multiple groups of air extraction pumps are arranged on the ventilation pipe; A clamping groove (413) is formed in the connecting piece (407). The three groups of air inlet pipes (412) are all clamped in the clamping groove (413) and one end thereof is in contact with the connecting piece (407). One group of the air inlet pipes (412) is docked with the connecting hole.
8. A disinfection device for a cupping jar used in traditional Chinese medicine nursing, characterized in that: A distribution part (414) is arranged on the assembly plate (401). Multiple groups of distribution pipes (415) are arranged on the distribution part (414). Multiple groups of first air outlet pipes (416) and multiple groups of sealing columns (417) are arranged on one group of the distribution blocks (411). Multiple groups of second air outlet pipes (418) and multiple groups of the sealing columns (417) are arranged on another group of the distribution blocks (411). Multiple groups of the first air outlet pipes (416) and multiple groups of the second air outlet pipes (418) are arranged on the last group of the distribution blocks (411). One group of the distribution blocks (411) is communicated with the distribution pipes (415) through multiple groups of the second air outlet pipes (418); Multiple groups of air blowing pipes (206) are arranged in the disinfection cavity. The multiple groups of air blowing pipes (206) are respectively installed on the main body plate (11) and the main body box (203). Air outlet holes are formed in the air outlet pipes. The blowing directions of the multiple groups of air blowing pipes (206) all face the tank body (201). Two groups of the distribution pipes (415) are respectively connected to the multiple groups of air blowing pipes (206) through distribution conduits; A disinfection box (207) is arranged on one side of one group of the placement boxes (204). The other two groups of the distribution pipes (415) are respectively communicated with the disinfection box (207) through the distribution conduits. Multiple groups of placement grids are arranged in the disinfection box (207).
9. A disinfection device for a cupping jar used in traditional Chinese medicine nursing, characterized in that: Above the main board (11), a collection box (208) is provided. Only a through slot is opened on the main board (11) and the main box (203). The collection box (208) is inserted into the through slot and is located in the disinfection chamber. Multiple magnetic attraction strips are arranged at the top of the main board (11), and magnetic attraction blocks are correspondingly arranged at the bottom of the collection box (208) for the magnetic attraction strips. The magnetic attraction blocks are in contact with the magnetic attraction strips. The collection box (208) is located below the first slide rail (301). Multiple flow guiding rib strips (209) are arranged in the main box (203), and the flow guiding rib strips (209) extend from the top of the main box (203) to contact the top of the collection box (208).
10. A disinfection device for a cupping jar used in traditional Chinese medicine nursing, characterized in that: An installation through slot (210) is opened at the top of the main box (203). An installation clamping plate (51) is arranged in the installation through slot (210). The installation clamping plate (51) is rotatably connected to the main box (203). Multiple installation buckles (52) are arranged at the bottom of the installation clamping plate (51). The ultraviolet lamp (202) is clamped between the multiple installation buckles (52) and is detachably connected to the installation clamping plate (51). Multiple locking sleeves (53) are arranged at the top of the main box (203). The multiple locking sleeves (53) are located on both sides of the installation through slot (210). A spring and a slidable locking block (54) are arranged in the locking sleeve (53). The spring is located between the locking block (54) and the locking sleeve (53). The locking block (54) is located at the top of the installation clamping plate (51), is in contact with the installation clamping plate (51), and a pressing plate (55) is arranged on the locking block (54).