Leakage detection device for medical rubber gloves

By designing a medical rubber glove leakage detection device, including a fluid filling device, a mounting device and a bearing groove, the existing problem of low detection efficiency is solved, fast and accurate leakage detection is achieved, and detection efficiency and environmental cleanliness are improved.

CN120141740APending Publication Date: 2025-06-13JINAN ENG VOCATIONAL & TECH COLLEGE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510340962.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

Existing medical rubber gloves have low leakage detection efficiency, resulting in waste of human resources and high complexity of testing equipment.

Method used

Design a medical rubber glove leakage detection device, including a liquid filling device, a mounting device and a receiving groove. The liquid filling device quickly identifies the glove leakage point by detecting the liquid through infusion. The mounting device simplifies the glove attachment process, and the bearing groove effectively collects and judges the leakage liquid.

Benefits of technology

It improves detection efficiency, reduces artificial errors and equipment complexity, maintains the tidyness of the detection environment, and accurately judges the leakage position and degree of gloves.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120141740A_ABST
    Figure CN120141740A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of medical instrument detection, in particular to a medical rubber glove leakage detection device. The device comprises a liquid filling device used for filling detection liquid into the medical rubber gloves, a hanging device installed at the bottom of the liquid filling device and used for hanging the medical rubber gloves, and a receiving groove installed under the liquid filling device and used for receiving the detection liquid flowing down when leakage of the medical rubber gloves is detected. The liquid filling device can rapidly fill detection liquid into the glove, the detection speed is increased, leakage points of the glove can be recognized in a short time through direct liquid injection, the glove can be easily hung and fixed below the liquid filling device through the design of the hanging device, and the operation process is simplified.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of medical device detection, and in particular to a leakage detection device for medical rubber gloves. Background Art

[0002] Since the integrity of medical rubber gloves directly affects the protection effect in medical operations, most of the existing technologies adopt physical detection methods to quickly and accurately detect the quality of gloves. The detection means mainly include airtightness detection technology, which inflates or evacuates the inner cavity of the glove and measures the change of the inner cavity pressure to determine whether there is leakage. If the glove is damaged, the pressure will change abnormally. The liquid penetration detection technology immerses the inside or outside of the glove in a liquid and determines whether there is water leakage by observing whether the liquid penetrates through the glove. It also includes electrical detection technology and optical detection technology.

[0003] In the leakage detection of gloves by the liquid penetration detection technology, due to the large number of inspections in the type inspection according to the national standard, and the inspection water is generally water added with color, the current inspection equipment generally has low inspection efficiency. Facing the large number of type inspections, it causes serious waste of human resources. The general glove connection method of the current inspection equipment is the old method such as tying with rubber bands, which is extremely inconvenient and has extremely low efficiency. Summary of the Invention

[0004] In order to solve the problem of low efficiency in the leakage detection of medical rubber gloves, the present invention provides a leakage detection device for medical rubber gloves.

[0005] The leakage detection device for medical rubber gloves provided by the present invention adopts the following technical solutions:

[0006] A leakage detection device for medical rubber gloves, comprising:

[0007] A liquid filling device for filling a detection liquid into the medical rubber glove;

[0008] A hanging device, which is installed at the bottom of the liquid filling device and is used for hanging the medical rubber glove;

[0009] A receiving groove, which is installed directly below the liquid filling device and is used for receiving the detection liquid flowing down when detecting the leakage of the medical rubber glove.

[0010] The liquid filling device can quickly fill the inside of the glove with the test liquid, accelerating the detection speed. Through the direct injection of the liquid, leakage points of the glove can be identified within a short time. The design of the hanging device enables the glove to be easily hung and fixed below the liquid filling device, simplifying the operation process and reducing human error. The operator can quickly replace the glove for batch detection. The receiving tank is directly located under the liquid filling device and can effectively collect the leaked test liquid, thereby accurately judging the leakage position and degree. By observing the liquid accumulation in the receiving tank, problem gloves can be quickly identified. The use of the receiving tank prevents the overflow of the test liquid and ground pollution, keeping the detection environment clean.

[0011] Furthermore, the liquid filling device includes a liquid storage cylinder and a liquid filling cylinder. The liquid storage cylinder and the liquid filling cylinder are vertically suspended. The liquid filling cylinder is arranged below the liquid storage cylinder and receives the test liquid from the liquid storage cylinder.

[0012] Since the liquid storage cylinder is located above the liquid filling cylinder, taking advantage of the natural flow characteristic of gravity, the test liquid can smoothly flow from the liquid storage cylinder into the liquid filling cylinder. This design reduces the need for additional pumping equipment, lowering energy consumption and equipment complexity. By setting a control valve between the liquid storage cylinder and the liquid filling cylinder, the operator can precisely adjust the speed and amount of the liquid flowing into the liquid filling cylinder, thereby better controlling the entire liquid filling process and adapting to different detection requirements.

[0013] Furthermore, the liquid storage cylinders are arranged in rows at intervals horizontally. Each liquid storage cylinder is connected with a liquid replenishing pipe and a liquid infusion pipe. The liquid replenishing pipes connected to the rows of liquid storage cylinders are centrally connected in series in the same pipeline, and a liquid replenishing valve is arranged on the series pipeline between the liquid replenishing pipes of adjacent liquid storage cylinders. The liquid storage cylinder is connected to the liquid filling cylinder through the liquid infusion pipe, and a liquid infusion valve is arranged on the liquid infusion pipe. The top of the liquid storage cylinder is connected with an overflow pipe. The liquid storage cylinder is installed and fixed through a mounting plate. Mounting holes are opened at the bottom of the mounting plate, and the liquid replenishing pipe and the liquid infusion pipe pass through the mounting holes.

[0014] By centrally connecting the liquid replenishing pipes of the rows of liquid storage cylinders in series in the same pipeline and setting a liquid replenishing valve between adjacent liquid storage cylinders, centralized liquid replenishing management of multiple liquid storage cylinders can be achieved. This centralized management method simplifies the operation process, improves the liquid replenishing efficiency, and reduces operation complexity. The settings of the liquid replenishing valve and the liquid infusion valve allow independent fluid control of each liquid storage cylinder. The operator can open or close the liquid supply of a specific liquid storage cylinder as needed, flexibly adjusting the liquid flow to meet different detection requirements. The top of the liquid storage cylinder is connected with an overflow pipe, which can effectively prevent overflow caused by excessive liquid. This design not only protects the equipment and the cleanliness of the working environment but also ensures the safety of the operation.

[0015] Furthermore, the liquid filling cylinder is divided into two sections and is spliced ​​with each other through a connecting shaft sleeve. The liquid filling cylinders are arranged in rows at intervals and correspond to the liquid storage cylinders one by one. The liquid filling cylinders are slidably installed on the mounting cross frame through a sliding block. The sliding block is T-shaped and is slidably engaged in the sliding groove of the mounting cross frame. The liquid filling cylinder is fixed on the sliding block through a mounting hoop.

[0016] The filling cylinder is divided into two sections and connected by a connecting sleeve. This modular design makes the assembly and disassembly of the filling cylinder more convenient. The operator can replace or adjust the length and configuration of the filling cylinder as needed, which improves the adaptability and flexibility of the system. The filling cylinder is installed on the mounting cross frame through a sliding block. This design allows the filling cylinder to slide on the cross frame to adjust its position, and it is set one-to-one with the liquid storage cylinder.

[0017] Furthermore, the hanging device includes a hanging hoop and a locking ring, the hanging hoop is sleeved on the bottom of the liquid filling cylinder, and the locking ring is arranged around the outer edge of the hanging hoop.

[0018] The hanging hoop is sleeved on the bottom of the liquid filling cylinder, which can firmly fix the liquid filling cylinder on the hanging device to prevent the liquid filling cylinder from loosening or shifting due to vibration or external force. The locking ring further strengthens the fixing effect and is arranged around the outer edge of the hanging hoop to facilitate the hanging of the detection gloves.

[0019] Furthermore, a drain plate is movably installed in the receiving groove, and the receiving groove is swingably installed by means of installation rollers.

[0020] The drain plate is movably installed in the receiving groove, so that it can move freely or adjust the angle, so as to more efficiently guide the excess liquid to flow into the bottom of the receiving groove. The receiving groove is swing-installed by the mounting roller, so that it can achieve a certain range of swing adjustment around the mounting roller axis. The coordinated design of the drain plate and the receiving groove can quickly guide and remove excess liquid.

[0021] Furthermore, the drain plate is provided with a drain hole, the drain plate is placed and clamped on the placement block, telescopic plates are telescopically arranged on both sides of the drain plate, the drain plate and the telescopic plates are elastically connected to each other through a telescopic rod, a handle is arranged on the telescopic plate, and a water pipe is connected to the bottom of the receiving groove.

[0022] The drain holes on the drain plate can quickly guide excess liquid into the receiving groove through the holes, thereby effectively preventing liquid retention. The drain plate is elastically connected to the telescopic plate through the telescopic rod, so that the entire drain plate system can be easily installed in the receiving groove and stuck on the placement block. The handle design on the telescopic plate facilitates the operator to quickly install or remove the drain plate. The combined design of the drain hole and the water pipe ensures that the liquid can be drained quickly and effectively, reducing the residual liquid inside the equipment.

[0023] Further, the receiving groove is fixedly connected to the mounting roller through a mounting locking block, and both ends of the mounting roller are elastically mounted on the mounting seat through springs.

[0024] The fixed connection between the receiving groove and the mounting roller through the mounting locking block ensures that the receiving groove can firmly maintain its position during operation, preventing displacement or shaking due to liquid impact or external forces. The fixing function of the locking block enhances the connection strength between the receiving groove and the mounting roller, improving the stability of the overall structure of the receiving groove. The elastic mounting of both ends of the mounting roller on the mounting seat through springs enables the receiving groove to perform elastic adjustment within a certain range.

[0025] Further, a storage tank is installed below the receiving groove. The receiving groove is connected to the storage tank through a water diversion pipe, and a drain pipe is connected to the bottom of the storage tank.

[0026] The setting of the storage tank provides a centralized liquid collection point for the system, allowing a relatively large amount of liquid to be stored and avoiding frequent discharge. The drain pipe connected to the bottom of the storage tank enables the liquid to be conveniently discharged into a designated drainage system or container.

[0027] Further, the liquid filling device and the receiving groove are respectively installed on the mounting bracket through mounting plates, mounting cross frames and mounting rollers. Moving wheels are provided at the bottom of the mounting bracket.

[0028] The modular design of the mounting plates and mounting cross frames makes the disassembly and assembly of each part of the equipment simpler. When it is necessary to clean or repair the liquid filling device or the receiving groove, the operator can quickly disassemble and reinstall them. The setting of the moving wheels enables the equipment to be conveniently moved to the cleaning area, avoiding the inconvenience of cleaning caused by the heavy weight of the equipment or its fixed position.

[0029] In summary, the present invention has the following beneficial technical effects:

[0030] 1. The liquid filling device can quickly fill the test liquid into the glove interior, accelerating the detection speed. Through the direct injection of the liquid, the leakage points of the glove can be identified in a short time. The design of the hanging device enables the glove to be easily hung and fixed below the liquid filling device, simplifying the operation process and reducing human errors. The operator can quickly replace the glove for batch detection. The receiving groove is directly located below the liquid filling device and can effectively collect the leaked test liquid, thereby accurately judging the leakage position and degree. By observing the liquid accumulation in the receiving groove, the problematic gloves can be quickly identified. The use of the receiving groove prevents the overflow of the test liquid and ground pollution, keeping the detection environment clean.

[0031] 2. Since the liquid storage cylinder is located above the liquid filling cylinder, taking advantage of the natural flow characteristics of gravity, the detection liquid can smoothly flow from the liquid storage cylinder into the liquid filling cylinder. This design reduces the need for additional pumping equipment, lowers energy consumption and equipment complexity. By setting a control valve between the liquid storage cylinder and the liquid filling cylinder, the operator can precisely adjust the speed and amount of liquid flowing into the liquid filling cylinder, thereby better controlling the entire liquid filling process and adapting to different detection requirements.

[0032] 3. By centrally connecting the replenishing pipes of a row of liquid storage cylinders in series on the same pipeline and setting a replenishing valve between adjacent liquid storage cylinders, centralized replenishing management of multiple liquid storage cylinders can be achieved. This centralized management method simplifies the operation process, improves the replenishing efficiency, and reduces operation complexity. The setting of the replenishing valve and the infusion valve allows independent fluid control of each liquid storage cylinder. The operator can open or close the liquid supply of a specific liquid storage cylinder as needed, and flexibly adjust the liquid flow to meet different detection requirements. An overflow pipe is connected to the top of the liquid storage cylinder, which can effectively prevent overflow caused by excessive liquid. This design not only protects the cleanliness of the equipment and the working environment but also ensures the safety of the operation.

[0033] 4. The liquid filling cylinder is divided into two sections and spliced through a connecting bushing. This modular design makes the assembly and disassembly of the liquid filling cylinder more convenient. The operator can replace or adjust the length and configuration of the liquid filling cylinder as needed, improving the adaptability and flexibility of the system. The liquid filling cylinder is installed on the installation cross-frame through a sliding block. This design allows the liquid filling cylinder to slide and adjust its position on the cross-frame, corresponding to the liquid storage cylinder one by one.

[0034] 5. The hanging hoop is sleeved on the bottom of the liquid filling cylinder, which can firmly fix the liquid filling cylinder on the hanging device, preventing the liquid filling cylinder from loosening or shifting due to vibration or external force. The locking ring further strengthens the fixing effect. By arranging around the outer edge of the hanging hoop, it is convenient to hang the detection gloves.

[0035] 6. The water draining plate is movably installed in the receiving groove, enabling it to move freely or adjust the angle, so as to more efficiently guide the excess liquid to flow into the bottom of the receiving groove. The receiving groove is swing-mounted through an installation roller, enabling it to swing and adjust within a certain range around the installation roller shaft. The cooperative design of the water draining plate and the receiving groove can quickly divert and remove the excess liquid.

[0036] 7. The water draining holes opened on the water draining plate can quickly guide the excess liquid to flow through the holes into the receiving groove, thereby effectively preventing liquid retention. The water draining plate is elastically connected to the telescopic plate through a telescopic rod, making the entire water draining plate system easy to install into the receiving groove and clamp on the placing block. The handle design on the telescopic plate facilitates the operator to quickly install or disassemble the water draining plate. The combined design of the water draining holes and the water guiding pipe ensures that the liquid can be quickly and effectively discharged, reducing the liquid residue inside the equipment.

[0037] 8. The receiving groove is connected and fixed to the mounting roller through the installation locking block, ensuring that the receiving groove can stably maintain its position during operation, avoiding displacement or shaking caused by liquid impact or external forces. The fixing effect of the locking block enhances the connection strength between the receiving groove and the mounting roller, improving the stability of the overall structure of the receiving groove. Both ends of the mounting roller are elastically mounted on the mounting seat through springs, enabling the receiving groove to perform elastic adjustment within a certain range.

[0038] 9. The setting of the storage tank provides a centralized liquid collection point for the system, allowing a relatively large amount of liquid to be stored and avoiding frequent discharge. The drain pipe connected to the bottom of the storage tank enables the liquid to be conveniently discharged to a designated drainage system or container.

[0039] 10. The modular design of the mounting plate and the mounting cross-frame makes the disassembly and assembly of each part of the equipment simpler. When it is necessary to clean or repair the liquid filling device or the receiving groove, the operator can quickly disassemble and reinstall it. The setting of the moving wheels enables the equipment to be conveniently moved to the cleaning area, avoiding the inconvenience of cleaning caused by the heavy weight of the equipment or the fixed position. Brief Description of the Drawings

[0040] Figure 1 is a schematic structural diagram of the present invention;

[0041] Figure 2 is Figure 1 a second perspective schematic diagram of

[0042] Figure 3 is Figure 1 a third perspective schematic diagram of

[0043] Description of the Reference Numerals in the Drawings:

[0044] 1. Liquid filling device, 11. Liquid storage cylinder, 111. Liquid replenishing pipe, 112. Liquid replenishing valve, 113. Liquid infusion pipe, 114. Liquid infusion valve, 115. Overflow pipe, 116. Mounting plate, 117. Mounting hole, 12. Liquid filling cylinder, 121. Mounting cross-frame, 122. Slide groove, 123. Slide block, 124. Mounting hoop, 125. Connecting bushing, 2. Hanging device, 21. Hanging hoop, 22. Locking ring, 3. Receiving groove, 31. Drainage plate, 311. Drainage hole, 312. Telescopic plate, 313. Telescopic rod, 314. Handle, 315. Placing block, 316. Water guiding pipe, 32. Mounting roller, 321. Installation locking block, 322. Mounting seat, 323. Spring, 4. Storage tank, 41. Drain pipe, 5. Mounting bracket, 51. Moving wheel. Detailed Embodiment

[0045] Next, it will be combined with the attached Figures 1-3, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0046] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0047] Embodiment 1:

[0048] The embodiment of the present invention discloses a leakage detection device for medical rubber gloves. Refer to Figure 1 , including:

[0049] A liquid filling device 1 for filling a detection liquid into the medical rubber glove;

[0050] A hanging device 2, which is installed at the bottom of the liquid filling device 1 and is used for hanging the medical rubber glove;

[0051] A receiving groove 3, which is installed directly below the liquid filling device 1 and is used for receiving the detection liquid flowing down when detecting the leakage of the medical rubber glove.

[0052] Ensure that the liquid filling device 1, the hanging device 2 and the receiving groove 3 are all correctly installed and stable. Check the liquid storage part of the liquid filling device to confirm whether the detection liquid is ready in sufficient quantity and the liquid meets the detection requirements. Check the hanging device 2 to ensure that it is firmly fixed and can stably hang the medical rubber glove. Confirm that the storage tank or drainage channel below the receiving groove 3 is connected to collect the liquid that may flow down during the detection process.

[0053] Hang the medical rubber gloves to be detected one by one on the hanging device 2, ensure that the opening part of the glove fits tightly with the hanging device to prevent the detection liquid from overflowing from the joint during the filling process. Adjust the angle of the nozzle or filling pipe of the liquid filling device 1 to align it with the glove opening on the hanging device. Set the liquid filling volume and speed of the liquid filling device according to the detection requirements to ensure the detection accuracy. Ensure that the receiving groove 3 is directly below the liquid filling device and check whether its drainage channel is unobstructed to facilitate the collection of the leaked liquid during the detection process.

[0054] Select a suitable detection liquid according to the detection standard, start the liquid filling device 1, and fill the glove with the detection liquid according to the set parameters. During the filling process, observe whether there is any leakage of the liquid from the glove surface.

[0055] The receiving tank 3 collects the leaked detection liquid. If there is no liquid leakage on the glove surface and no liquid is collected in the receiving tank 3, the glove is determined to be qualified. If liquid leakage is observed on the glove surface or liquid is collected in the receiving tank 3, the glove is determined to be unqualified. For the qualified gloves, conduct subsequent packaging or use. For the unqualified gloves, record their batch numbers or marking information and discard or further analyze them according to the quality control procedures.

[0056] Example 2:

[0057] Based on Example 1, add:

[0058] Refer to Figures 1-3 , the liquid filling device 1 includes a liquid storage cylinder 11 and a liquid filling cylinder 12. The liquid storage cylinder 11 and the liquid filling cylinder 12 are vertically suspended. The liquid filling cylinder 12 is arranged below the liquid storage cylinder 11 and receives the detection liquid from the liquid storage cylinder 11.

[0059] Refer to Figures 1-3 , the liquid storage cylinders 11 are arranged in rows at intervals horizontally. Each liquid storage cylinder 11 is connected with a liquid replenishing pipe 111 and an infusion pipe 113. The liquid replenishing pipes 111 connected to the rows of liquid storage cylinders 11 are centrally connected in series in the same pipeline, and a liquid replenishing valve 112 is arranged on the series pipeline between the liquid replenishing pipes 111 of adjacent liquid storage cylinders 11. The liquid storage cylinder 11 is connected to the liquid filling cylinder 12 through the infusion pipe 113, and an infusion valve 114 is arranged on the infusion pipe 113. An overflow pipe 115 is connected to the top of the liquid storage cylinder 11. The liquid storage cylinder 11 is installed and fixed through a mounting plate 116. Mounting holes 117 are opened at the bottom of the mounting plate 116, and the liquid replenishing pipe 111 and the infusion pipe 113 pass through the mounting holes 117.

[0060] Open the liquid replenishing valve 112, replenish the detection liquid to the liquid storage cylinder 11 through the liquid replenishing pipe 111, observe the liquid level to ensure that the liquid in the liquid storage cylinder 11 is sufficient but not excessive. Open the infusion valve 114 to make the detection liquid flow from the liquid storage cylinder 11 into the liquid filling cylinder 12 through the infusion pipe 113, ensure that the flow rate is properly controlled to avoid being too fast or too slow, which affects the detection efficiency. Observe the flow of the liquid from the liquid storage cylinder 11 to the liquid filling cylinder 12 to ensure that the pipeline is not blocked or leaking. Adjust the opening degree of the infusion valve 114 to control the liquid flow rate and liquid volume as needed.

[0061] Refer to Figures 1-3, the liquid filling cylinder 12 is divided into two sections and spliced with each other through a connecting bushing 125. The liquid filling cylinders 12 are arranged horizontally at intervals in rows and are arranged in one-to-one correspondence with the liquid storage cylinders 11. The liquid filling cylinders 12 are slidably installed on the installation cross frame 121 through sliding blocks 123. The sliding blocks 123 are T-shaped and are slidably clamped in the sliding grooves 122 of the installation cross frame 121. The liquid filling cylinders 12 are installed and fixed on the sliding blocks 123 through installation hoops 124.

[0062] Refer to Figures 1-3 , the hanging device 2 includes a hanging hoop 21 and a locking ring 22. The hanging hoop 21 is sleeved on the bottom of the liquid filling cylinder 12, and the locking rings 22 are arranged around the outer edge of the hanging hoop 21.

[0063] Embodiment 3:

[0064] Based on Embodiment 1, add:

[0065] Refer to Figures 1-3 , a water draining plate 31 is movably installed in the receiving groove 3, and the receiving groove 3 is swingably installed through an installation roller 32.

[0066] Refer to Figures 1-3 , water draining holes 311 are formed in the water draining plate 31. The water draining plate 31 is placed and clamped on a placing block 315. Telescopic plates 312 are telescopically arranged on both sides of the water draining plate 31. The water draining plate 31 and the telescopic plates 312 are elastically connected to each other through telescopic rods 313. A handle 314 is arranged on the telescopic plate 312. A water guiding pipe 316 is connected to the bottom of the receiving groove 3.

[0067] The placing block 315 includes two layers arranged up and down.

[0068] Hold the handle 314 and squeeze the telescopic plate 312 inward to reduce the overall width of the water draining plate 31. Then pass the water draining plate 31 through the upper placing block 315 and place it on the lower placing block 315. Then release the telescopic plate 312, and the telescopic rod 313 will spring the telescopic plate 312 back to be clamped and placed on the lower placing block 315.

[0069] Refer to Figures 1-3 , the receiving groove 3 is fixedly connected to the installation roller 32 through an installation locking block 321. Both ends of the installation roller 32 are elastically installed on an installation seat 322 through springs 323.

[0070] Refer to Figures 1-3 , a storage tank 4 is installed below the receiving groove 3. The receiving groove 3 is connected to the storage tank 4 through a water guiding pipe 316. A drain pipe 41 is connected to the bottom of the storage tank 4.

[0071] Refer to Figures 1-3, the liquid filling device 1 and the receiving tank 3 are respectively installed on the installation bracket 5 through the mounting plate 116, the mounting cross-frame 121 and the mounting roller 32, and the bottom of the installation bracket 5 is provided with moving wheels 51.

[0072] The above content is only an example and explanation of the structure of the present invention. Those skilled in the art of this technology can make various modifications or supplements to the described specific embodiments or use similar ways to replace them. As long as they do not deviate from the structure of the invention or exceed the scope defined by this claim book, they should all belong to the protection scope of the present invention.

Claims

1. A medical rubber glove leakage detection device, characterized in that: include: A liquid filling device (1) is used to fill the medical rubber gloves with a test liquid; A hanging device (2), the hanging device (2) is installed at the bottom of the liquid filling device (1) and is used to hang medical rubber gloves; The receiving groove (3) is installed directly below the liquid filling device (1) and is used to receive the detection liquid that flows down when the medical rubber gloves are leaking.

2. A medical rubber glove leakage detection device according to claim 1, characterized in that: The liquid filling device (1) comprises a liquid storage cylinder (11) and a liquid filling cylinder (12). The liquid storage cylinder (11) and the liquid filling cylinder (12) are vertically suspended. The liquid filling cylinder (12) is arranged below the liquid storage cylinder (11) and receives the detection liquid from the liquid storage cylinder (11).

3. A medical rubber glove leakage detection device according to claim 2, characterized in that: The liquid storage cylinders (11) are arranged in rows at intervals and in a transverse manner. Each liquid storage cylinder (11) is connected to a liquid infusion tube (111) and a liquid infusion tube (113). The liquid infusion tubes (111) connected to the liquid storage cylinders (11) in a row are concentrated in series in the same pipeline, and a liquid infusion valve (112) is provided on the series pipeline between the liquid infusion tubes (111) of adjacent liquid storage cylinders (11). The liquid storage cylinder (11) is connected to the liquid filling cylinder (12) through the liquid infusion tube (113). The liquid infusion tube (113) is provided with a liquid infusion valve (114). The top of the liquid storage cylinder (11) is connected to an overflow tube (115). The liquid storage cylinder (11) is fixedly mounted through a mounting plate (116). A mounting hole (117) is provided at the bottom of the mounting plate (116). The liquid infusion tube (111) and the liquid infusion tube (113) are arranged through the mounting hole (117).

4. A medical rubber glove leakage detection device according to claim 2, characterized in that: The liquid filling cylinder (12) is divided into two sections and connected to each other through a connecting shaft sleeve (125). The liquid filling cylinders (12) are arranged in a row at intervals and are arranged one by one with the liquid storage cylinders (11). The liquid filling cylinders (12) are slidably mounted on the mounting cross frame (121) through a sliding block (123). The sliding block (123) is T-shaped and is slidably engaged in a sliding groove (122) of the mounting cross frame (121). The liquid filling cylinder (12) is fixed on the sliding block (123) through a mounting hoop (124).

5. The medical rubber glove leakage detection device according to claim 2, characterized in that: The hanging device (2) comprises a hanging hoop (21) and a locking ring (22); the hanging hoop (21) is sleeved on the bottom of the liquid filling cylinder (12); and the locking ring (22) is arranged around the outer edge of the hanging hoop (21).

6. The medical rubber glove leakage detection device according to claim 1, characterized in that: A drain plate (31) is movably installed in the receiving groove (3), and the receiving groove (3) is swingably installed via an installation roller (32).

7. A medical rubber glove leakage detection device according to claim 6, characterized in that: The drain plate (31) is provided with a drain hole (311), the drain plate (31) is placed and clamped on a placement block (315), telescopic plates (312) are telescopically arranged on both sides of the drain plate (31), the drain plate (31) and the telescopic plate (312) are elastically connected to each other via a telescopic rod (313), a handle (314) is arranged on the telescopic plate (312), and a water guide pipe (316) is connected to the bottom of the receiving groove (3).

8. The medical rubber glove leakage detection device according to claim 6, characterized in that: The receiving groove (3) is connected and fixed to the mounting roller (32) via a mounting locking block (321), and both ends of the mounting roller (32) are elastically mounted on the mounting seat (322) via springs (323).

9. The medical rubber glove leakage detection device according to claim 6, characterized in that: A storage tank (4) is installed below the receiving tank (3); the receiving tank (3) is connected to the storage tank (4) via a water diversion pipe (316); and a drainage pipe (41) is connected to the bottom of the storage tank (4).

10. A medical rubber glove leakage detection device according to any one of claims 1 to 9, characterized in that: The liquid filling device (1) and the receiving groove (3) are respectively mounted on a mounting bracket (5) via a mounting plate (116), a mounting cross frame (121) and a mounting roller (32); a moving wheel (51) is provided at the bottom of the mounting bracket (5).