Reusable medical instrument disinfection equipment
By designing a multi-used medical device disinfection device including a container box, drain plate, closure cover and one-way parts, the up and down movement and water pressure of the one-way parts are used to solve the problem of insufficient cleaning in the prior art, and a variety of efficient disinfection methods are realized, and the disinfection effect is improved.
Patent Information
- Application Number
- CN202510541181.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-04-28
AI Technical Summary
During the disinfection process of existing reusable medical devices, especially when cleaning manually and mechanically, there is a problem that the cleaning is not comprehensive enough, resulting in poor disinfection effect.
A multi-purpose medical device disinfection equipment is designed, including accommodating boxes, drainage plates, closure covers, one-way parts and flow guide tubes. Through the up and down movement of the one-way parts and water pressure, multi-directional cleaning and disinfection of medical devices are achieved, including high-temperature, high-pressure disinfection, disinfectant disinfection and hot water disinfection.
The comprehensive cleaning and disinfection of reused medical devices has been achieved, the disinfection efficiency has been improved, and the disinfection effect has been ensured.
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Figure CN120267860A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical device disinfection, and particularly to a disinfection device for reusable medical devices. Background Art
[0002] Reusable medical devices refer to medical devices designed to be reused among different patients, and must undergo appropriate decontamination and other treatment processes before reuse. After each use, reusable devices need to be cleaned, disinfected, and then sterilized. The preferred method for cleaning and disinfection is to use a fully automatic cleaning and disinfection machine for moist heat disinfection.
[0003] Existing disinfection methods for reusable medical devices include classification: classified according to the material, use, and degree of contamination of medical devices. Cleaning: including manual cleaning and mechanical cleaning. Manual cleaning is suitable for precision and complex devices, while mechanical cleaning is suitable for most conventional devices. Disinfection: Select a suitable disinfection method according to the classification of medical devices. Drying: The disinfected devices should be fully dried to avoid the growth of microorganisms caused by residual moisture. Packaging and storage: The disinfected devices should be properly packaged and stored in a clean and dry environment. In actual use, during the disinfection process, the medical devices are directly placed in the cleaning basket and cleaned through the cleaning device. The medical devices remain stationary in the cleaning basket sprayed with disinfectant water, making it difficult to clean the dirt or impurities adhering to some medical devices, and the cleaning is not comprehensive enough, resulting in poor disinfection effect and thus reducing the cleaning efficiency. Summary of the Invention
[0004] In this part, as well as in the abstract and title of the present application, some simplifications or omissions may be made to avoid obscuring the purpose of this part, the abstract, and the title, and such simplifications or omissions shall not be used to limit the scope of the present invention.
[0005] In view of the problems existing in the above or the prior art, the present invention is proposed.
[0006] To solve the above technical problems, the present invention provides the following technical solution: A disinfection device for reusable medical devices, which includes a cleaning component, including a receiving box, a discharge plate slidably connected to the receiving box, a closing cover rotatably provided on the end face of the receiving box, a one-way member provided inside the receiving box, a guide pipe connected to the outer wall of the receiving box, and both ends of the guide pipe are located on both sides of the one-way member respectively;
[0007] A detection component, a sliding pipe is provided on the outer wall of the receiving box, a piston rod is provided inside the sliding pipe, one end of the piston rod is connected to a first delivery pipe, a first elastic member is provided inside the piston rod, a ball head is provided at one end of the first elastic member, a rotating rod is provided inside the receiving box, and the rotating rod is communicated with the inside of the sliding pipe.
[0008] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: a battery receiving groove is provided on the outer wall of the receiving box.
[0009] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: a second conveying pipe is externally connected to the closing cover, and the second conveying pipe communicates with the inside of the receiving box;
[0010] Two closing covers are provided, and a fixing plate is provided between the two closing covers. A threaded rod is provided inside the receiving box, and the threaded rod is respectively connected to the fixing plate and the bottom end of the receiving box.
[0011] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: the threaded rod is screwed to the one-way member.
[0012] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: the one-way member includes a limiting plate, a plurality of flow holes are provided through the limiting plate, a flow regulating plate is fixedly provided inside the flow holes, and an interchange groove is provided through the flow regulating plate;
[0013] A flow limiting plate is slidably provided inside the flow holes, a positioning hole is provided through the flow limiting plate, and a positioning block adapted to the positioning hole is provided on the outer wall of the flow regulating plate.
[0014] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: a first sliding groove is provided on the inner wall of the flow holes, and a first sliding block capable of sliding along the inner wall of the first sliding groove is provided on the outer wall of the flow limiting plate.
[0015] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: partition plates are provided at both ends of the discharge plate.
[0016] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: two sliding pipes are provided.
[0017] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: an avoidance groove for fixedly installing the first elastic member is provided on the inner wall of the piston rod, and the other end of the first elastic member is fixedly connected to the outer wall of the ball head.
[0018] As a preferred embodiment of the disinfection device for reusable medical devices of the present invention, wherein: the rotating rod is of a sleeve structure, and the inside and outside of the rotating rod are communicated through a needle hole.
[0019] Advantages of the present invention: By the up and down movement of the one-way member and in cooperation with the water pressure, the reusable medical devices are rinsed, and various reusable medical devices can be disinfected, including high-temperature, high-pressure disinfection, disinfectant liquid disinfection, hot water disinfection, etc. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings. Among them:
[0021] Figure 1 is the overall three-dimensional view of the disinfection device for reusable medical devices.
[0022] Figure 2
[0020] is the top view of the disinfection device for reusable medical devices.
[0023] Figure 3 is Figure 2 the schematic diagram of the A-A cross-section in
[0024] Figure 4 is Figure 2 the schematic diagram of the B-B cross-section in
[0025] Figure 5 Figure 5 is the internal structure of the accommodation box of the disinfection device for reusable medical devices.
[0026] Figure 6 Figure 6 is the schematic diagram of the structure of the one-way part of the disinfection device for reusable medical devices.
[0027] Figure 7 is Figure 3 the enlarged schematic diagram of the structure of area C in
[0028] Figure 8 is Figure 6 the enlarged schematic diagram of the structure of area D in DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] In order to make the above objects, features, and advantages of the present invention more obvious and understandable, the following will describe the specific embodiments of the present invention in detail with reference to the drawings of the specification.
[0030] Embodiment 1
[0031] Referring to Figures 1 - 5 , this is the first embodiment of the present invention. This embodiment provides a disinfection device for reusable medical devices, which includes a cleaning component 100, including an accommodation box 101, a discharge plate 102 slidably connected to the accommodation box 101, a closing cover 103 rotatably provided on the end face of the accommodation box 101, a one-way part 104 provided inside the accommodation box 101, and a diversion pipe 105 connected to the outer wall of the accommodation box 101, and both ends of the diversion pipe 105 are respectively located on the upper and lower sides of the one-way part 104;
[0032] Detection component 200, on the outer wall of the accommodation box 101, there is a sliding pipe 201, a piston rod 202 arranged inside the sliding pipe 201, one end of the piston rod 202 is connected with a first delivery pipe 203, inside the piston rod 202, there is a first elastic member 204, at one end of the first elastic member 204, there is a ball head 205, inside the accommodation box 101, there is a rotating rod 206, and the rotating rod 206 communicates with the inside of the sliding pipe 201.
[0033] Among them, the accommodation box 101 is a box structure with an internal cavity and an open upper part; the discharge plate 102 slides along the inner bottom surface of the accommodation box 101, and the discharge plate 102 can be pulled out of the accommodation box 101; the advantage of such a design is that after the reusable medical device is placed inside the accommodation box 101 and processed, by pulling out the discharge plate 102, an opening can be opened below the accommodation box 101 to drain the liquid inside the accommodation box 101. At the same time, a filter screen is arranged on the surface of the discharge plate 102, which can be used to attach some impurities to the surface of the filter screen. A closing cover 103 is rotatably installed at the opening on the accommodation box 101, and a sealing treatment is performed between the closing cover 103 and the accommodation box 101, for example, a sealing strip is installed at the contact between the closing cover 103 and the accommodation box 101; the advantage of such a design is that the closing cover 103 can be rotated to open or close the accommodation box 101, and at the same time, the sealing performance of the accommodation box 101 can also be ensured. A one-way member 104 is installed inside the accommodation box 101, and the main function of the one-way member 104 is to make the liquid flow inside the accommodation box 101 unidirectional, that is, the liquid inside the accommodation box 101 can only move upward or only move downward; this one-way member 104 can rely on installing a one-way valve on the board to achieve the function of the one-way member 104; at the same time, in order to enable the inside of the accommodation box 101 to circulate, both ends of the diversion pipe 105 are connected to the inside of the accommodation box 101, and both ends of the diversion pipe 105 are located on the upper and lower sides of the one-way member 104; the advantage of such a design is that when the inside of the accommodation box 101 needs to be cleaned and disinfected with liquid, the one-way member 104 can be moved up and down, so that the liquid inside the accommodation box 101 can circulate; for example, when the one-way circulation is downward, when the reusable medical device is placed on the upper surface of the one-way member 104 and the one-way member 104 starts to move downward, the one-way member 104 cannot allow the liquid to pass through, so the liquid can only flow from the lower end of the diversion pipe 105 to the upper end. Since the passing space of the diversion pipe 105 is small and it is squeezed by the one-way member 104, the liquid at the upper end of the diversion pipe 105 will spray out. Here, as Figure 4As shown, the upper port of the diversion pipe 105 can be aligned with the one-way member 104. When the one-way member 104 starts to move downward, the diversion pipe 105 starts to sweep the surface of the one-way member 104. In this way, the surface of the reusable medical device on the upper surface of the one-way member 104 can be cleaned to prevent impurities from adhering to the surface of the reusable medical device. Subsequently, when the one-way member 104 moves upward, the liquid starts to move downward through the one-way member 104. The advantage of this design is that when the liquid moves downward, a drainage is formed. By using the effect of the drainage, a pulling force is formed, which can drain the impurities washed up to the lower part of the one-way member 104.
[0034] Further, a sliding pipe 201 is fixed to the outer wall of the accommodation box 101. At the same time, the piston rod 202 is slidably installed in the sliding pipe 201. Here, a sealing treatment is performed between the piston rod 202 and the inner wall of the sliding pipe 201. The upper end of the piston rod 202 is connected to a first delivery pipe 203 and communicates with the inside of the sliding pipe 201, that is, the first delivery pipe 203 communicates with the sliding channel 201 through the piston rod 202. The first delivery pipe 203 is provided with a valve that can close or open the first delivery pipe 203. At the same time, a first elastic member 204 is fixedly installed on the inner wall of the bottom end of the piston rod 202. The first elastic member 204 is a compression spring. A ball head 205 is fixedly connected to the lower end of the first elastic member 204. Here, the radius of the ball head 205 is larger than the radius of the piston rod 202, so the ball head 205 will not be pulled into the piston rod 202 by the first elastic member 204. At the same time, the surface of the ball head 205 can be fitted to the inner wall of the piston rod 202 to form a blocking effect. It should be noted here that the first elastic member 204 is in a stretched state. The rotating rod 206 is rotatably installed on the inner wall of the accommodation box 101, and one end of the rotating rod 206 extends into the sliding channel 201. The rotating rod 206 is a pipe structure with open ends at both ends. The advantage of this design is that when the valve of the first delivery pipe 203 is opened, the liquid is delivered into the sliding pipe 201 through the first delivery pipe 203. When encountering the ball head 205, due to the liquid pressure, the ball head 205 will be pushed open, and then the liquid starts to enter the sliding channel 201. Due to space limitations, the liquid starts to enter the rotating rod 206 and then sprays out from the other end to clean the bottom inside the accommodation box 101.
[0035] As Figure 4 shown, the bottom of the accommodation box 101 slopes downward from the middle to both sides with a level difference of h. In this way, the liquid after cleaning can flow along the slope to both ends.
[0036] In summary, when disinfecting reusable medical devices, open the sealing cover 103, place the reusable medical device on the upper surface of the one-way member 104, then transport the disinfectant liquid into the interior of the receiving box 101 through the first delivery pipe 203. Subsequently, close the first delivery pipe 203, and then start moving the one-way member 104 downward. Subsequently, the disinfectant liquid flows upward from the lower end of the diversion pipe 105, and then start cleaning the reusable medical device on the surface of the one-way member 104. Subsequently, the one-way member 104 moves upward, and the disinfectant starts to spray downward from the one-way member 104 to form a flow channel, draining the impurities on the surface of the reusable medical device to below the one-way member 104.
[0037] Embodiment 2
[0038] Refer to Figures 1 - 6 , which is the second embodiment of the present invention. The difference from the first embodiment is that a battery receiving groove 101a is provided on the outer wall of the receiving box 101.
[0039] Among them, a battery receiving groove 101a is provided on the lower surface of the receiving box 101. At the same time, a storage battery is installed inside the battery receiving groove 101a, and then a heating plate is installed inside the receiving box 101, with the storage battery providing power. The advantage of such a design is that it can solve the problem of some reusable medical devices that cannot be disinfected with liquid.
[0040] For example, when some reusable medical devices that cannot be disinfected with liquid are placed inside the receiving box 101, then close the sealing cover 103; heat the interior through the heating plate, and then the internal air is heated and expands; the internal hydraulic pressure starts to increase and is transmitted to the sliding channel 201 through the rotating rod 206; as the internal pressure increases, start pushing the piston rod 202 upward. When the thrust of the internal pressure on the piston rod 202 is the same as the friction between the piston rod 202 and the inner wall of the sliding pipe 201, the upward movement distance of the piston rod 202 will also be fixed. Some marks can be engraved on the outer surface of the piston rod 202 to roughly express the data of the internal pressure and temperature, so as to ensure that the internal temperature and pressure are within a certain range value and solve the problem that some reusable medical devices cannot be disinfected with liquid.
[0041] Embodiment 3
[0042] Refer to Figures 1 - 8 , which is the third embodiment of the present invention. The difference from the previous two embodiments is that a second delivery pipe 103a is externally connected to the sealing cover 103, and the second delivery pipe 103a communicates with the interior of the receiving box 101;
[0043] There are two sealing covers 103, and a fixing plate 101b is provided between the two sealing covers 103. A threaded rod 106 is provided inside the receiving box 101, and the threaded rod 106 is respectively connected to the fixing plate 101b and the bottom end of the receiving box 101.
[0044] Among them, the upper surface of the closed cover 103 is connected with a second conveying pipe 103a, and the second conveying pipe 103a passes through the closed cover 103 and is connected to the inside of the accommodating box 101; the closed cover 103 is rotatably arranged on the upper surface of the accommodating box 101, and there are two closed covers 103; there is a fixing plate 101b between the two closed covers 103, thus solving the problem of the upper opening of the accommodating box 101; the advantage of arranging the fixing plate 101b is that one end of each of the two ends of the threaded rod 106 is rotatably installed on the fixing plate 101b, and the other end is rotatably installed on the bottom of the accommodating box 101; the up and down movement of the one-way member 104 is controlled by rotating the threaded rod 106.
[0045] Preferably, the threaded rod 106 is screwed to the one-way member 104.
[0046] The driving of the threaded rod 106 can be externally connected to a motor; the threaded rod 106 and the one-way member 104 are connected by threads. The advantage of this is that the rotation of the threaded rod 106 can drive the one-way member 104 to slide along the inner wall of the accommodating box 101.
[0047] Preferably, the one-way member 104 includes a limiting plate 104a, and a plurality of flow holes 104a-1 are provided through the limiting plate 104a. A flow regulating plate 104b is fixedly provided inside the flow holes 104a-1, and an exchange groove 104b-1 is provided through the flow regulating plate 104b;
[0048] A flow limiting plate 104c is slidably arranged inside the flow holes 104a-1. A positioning hole 104c-1 is provided through the flow limiting plate 104c, and a positioning block 104b-2 adapted to the positioning hole 104c-1 is provided on the outer wall of the flow regulating plate 104b.
[0049] Among them, as Figure 5, the limiting plate 104a is a rectangular plate, and a plurality of flow-through holes 104a-1 are arranged in an array and penetrate through the limiting plate 104a; at a position of the flow-through holes 104a-1 close to the bottom of the accommodating box 101, a flow-regulating plate 104b is fixedly installed, and there is an interchange groove 104b-1 at the center of the flow-regulating plate 104b; a plurality of positioning blocks 104b-2 are arranged on the upper surface of the flow-regulating plate 104b; a current-limiting plate 104c is arranged above the flow-regulating plate 104b, and at the same time, the current-limiting plate 104c is provided with positioning holes 104c-1 that can cooperate with the positioning blocks 104b-2. The advantage of this design is that when the one-way member 104 moves downward, the liquid pushes the current-limiting plate 104c upward through the interchange groove 104b-1 of the flow-regulating plate 104b; the current-limiting plate 104c is separated from the flow-regulating plate 104b, and the positioning holes 104c-1 are separated from the positioning blocks 104b-2, and the liquid flows upward through the positioning holes 104c-1; at the same time, because the aperture of the positioning holes 104c-1 is small, the liquid will also flow from the lower end to the upper end of the diversion pipe 105 to clean the upper surface of the reusable medical device; realizing the cleaning of the upper and lower surfaces of the reusable medical device.
[0050] Preferably, the inner wall of the flow-through hole 104a-1 is provided with a first sliding groove 104a-2, and the outer wall of the current-limiting plate 104c is provided with a first sliding block 104c-2 that can slide along the inner wall of the first sliding groove 104a-2.
[0051] A first sliding groove 104a-2 is provided on the inner wall of the flow-through hole 104a-1. By restricting the height of the first sliding groove 104a-2, the moving distance of the current-limiting plate 104c up and down is restricted. At the same time, it is prevented that the current-limiting plate 104c cannot be docked after being separated from the flow-regulating plate 104b.
[0052] Further, partition plates 102a are provided at both ends of the discharge plate 102.
[0053] Both ends of the discharge plate 102 are warped with partition plates 102a. The advantage of this design is that a level difference is formed between the partition plates 102a and the discharge plate 102. When the partition plate 102a is pulled out of the accommodating box 101, the discharge plate 102 cannot block the accommodating box 101. At the same time, the discharge plate 102 does not need to be pulled out of the accommodating box 101. At this time, the internal liquid flows out along the discharge plate 102. If there are impurities, the impurities flow along the discharge plate 102 and can be collected by the filter screen on the surface of the discharge plate 102. When the internal liquid has flowed out, the discharge plate 102 can be pulled out to clean the surface of the discharge plate 102.
[0054] In summary, when disinfecting reusable medical devices, the accommodation box 101 can be used to pre-treat, disinfect, dry and other steps for reusable medical devices. Place the reusable medical device on the upper surface of the one-way member 104, then open the second conveying pipe 103a, input the pre-treatment liquid into the accommodation box 101, and then rotate the threaded rod 106 to move the one-way member 104 up and down reciprocally, so as to clean the surface of the reusable medical device; then open the discharge plate 102 to discharge the pre-treatment liquid; then the required disinfectant water can be added through the first conveying pipe 203. At the same time, it can also be used for hot water disinfection. The liquid is conveyed into the accommodation box 101 through the first conveying pipe 203, and the heating plate in the accommodation box 101 is heated. Then the one-way member 104 moves up and down, which can stir the water in the accommodation box 101, making the internal water heat up faster; after disinfection, the water or disinfectant water is discharged, and then the inside is heated to dry the reusable medical devices inside.
[0055] Example 4
[0056] Refer to Figures 1 - 8 , which is the fourth embodiment of the present invention. The difference from the first three embodiments is that two sliding pipes 201 are provided.
[0057] Among them, two sliding pipes 201 are symmetrically arranged. The advantage of this design is that the two sliding pipes 201 can improve the sliding stability of the piston rod 202.
[0058] Preferably, an avoidance groove 202a for fixedly installing the first elastic member 204 is provided on the inner wall of the piston rod 202, and the other end of the first elastic member 204 is fixedly connected to the outer wall of the ball head 205.
[0059] Among them, the inner diameter of the avoidance groove 202a is larger than the inner diameter of the piston rod 202. The first elastic member 204 is fixedly connected to the bottom of the avoidance groove 202a, and the other end of the first elastic member 204 is fixedly connected to the outer wall of the ball head 205.
[0060] The rotating rod 206 is of a sleeve structure, and the inside and outside of the rotating rod 206 are communicated through a pinhole 206a.
[0061] Among them, the inside of the rotating rod 206 is communicated with the outside through the pinhole 206a; in this solution, both ends of the rotating rod 206 are rotatably connected to the inner wall of the accommodation box 101; the advantage of this design is that when the liquid is input into the rotating rod 206 through the first conveying pipe 203, the liquid is ejected outward through the pinhole 206a; the bottom end inside the accommodation box 101 and the lower surface of the one-way member 104 can be cleaned. Preferably, the pinhole 206a can be inclined outward. The advantage of this design is that when the liquid is ejected outward through the pinhole 206a, a thrust is formed on the rotating rod 206, which can make the rotating rod 206 rotate.
[0062] In summary, after the disinfection of the reusable medical device is completed, the rotating rod 206 can be used to clean the inner bottom surface of the accommodation box 101 and the lower surface of the one-way member 104.
[0063] The beneficial effects of the present invention are as follows: This disinfection device can disinfect a variety of reusable medical devices, including high-temperature, high-pressure disinfection, disinfection with disinfectant solution, hot water disinfection, and so on.
[0064] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.
Claims
1. A disinfection device for reusable medical devices, characterized in that: Comprising, a cleaning component (100), including a containing box (101), a discharge plate (102) slidably connected to the containing box (101), a closing cover (103) rotatably provided at the end face of the containing box (101), a one-way member (104) provided inside the containing box (101), a diversion pipe (105) connected to the outer wall of the containing box (101), and both ends of the diversion pipe (105) are respectively located on the upper and lower sides of the one-way member (104); a detection component (200), a sliding pipe (201) is provided on the outer wall of the containing box (101), a piston rod (202) is provided inside the sliding pipe (201), one end of the piston rod (202) is connected to a first delivery pipe (203), a first elastic member (204) is provided inside the piston rod (202), a ball head (205) is provided at one end of the first elastic member (204), a rotating rod (206) is provided inside the containing box (101), and the rotating rod (206) communicates with the inside of the sliding pipe (201).
2. The disinfection device for reusable medical devices according to claim 1, wherein: A battery accommodation groove (101a) is provided on the outer wall of the containing box (101).
3. The disinfection device for reusable medical devices according to claim 1 or 2, characterized in that: The closing cover (103) is externally connected with a second delivery pipe (103a), and the second delivery pipe (103a) communicates with the inside of the containing box (101); There are two closing covers (103), and a fixing plate (101b) is provided between the two closing covers (103). A threaded rod (106) is provided inside the containing box (101), and the threaded rod (106) is respectively connected to the fixing plate (101b) and the bottom end of the containing box (101).
4. The disinfection device for reusable medical devices according to claim 3, characterized in that: The threaded rod (106) is screwed to the one-way member (104).
5. The disinfection device for reusable medical devices according to claim 4, characterized in that: The one-way member (104) includes a limiting plate (104a), a plurality of flow holes (104a-1) are provided through the limiting plate (104a), a flow regulating plate (104b) is fixedly provided inside the flow holes (104a-1), and an interchange groove (104b-1) is provided through the flow regulating plate (104b); A flow limiting plate (104c) is slidably provided inside the flow holes (104a-1), a positioning hole (104c-1) is provided through the flow limiting plate (104c), and a positioning block (104b-2) adapted to the positioning hole (104c-1) is provided on the outer wall of the flow regulating plate (104b).
6. The disinfection device for reusable medical devices according to claim 5, wherein: A first sliding groove (104a-2) is provided on the inner wall of the flow holes (104a-1), and a first sliding block (104c-2) capable of sliding along the inner wall of the first sliding groove (104a-2) is provided on the outer wall of the flow limiting plate (104c).
7. The disinfection device for reusable medical devices according to claim 6, characterized in that: Partition plates (102a) are provided at both ends of the discharge plate (102).
8. The disinfection device for reusable medical devices according to claim 1 or 7, characterized in that: There are two sliding pipes (201).
9. The disinfection device for reusable medical devices according to claim 8, characterized in that: A relief groove (202a) for fixedly installing the first elastic member (204) is provided on the inner wall of the piston rod (202), and the other end of the first elastic member (204) is fixedly connected to the outer wall of the ball head (205).
10. The disinfection device for reusable medical devices according to claim 9, wherein: The rotating rod (206) is of a sleeve structure, and the inside and outside of the rotating rod (206) are communicated through a pinhole (206a).
Citation Information
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