A medical rubber glove corrosion resistance testing device
By designing a medical rubber glove corrosion resistance testing device with a liquid storage component, a testing mechanism, and a rinsing mechanism, the problems of cumbersome testing process and glove folding were solved, achieving stable and accurate corrosion resistance testing and cleaning, and improving testing efficiency.
Patent Information
- Application Number
- CN202211343096.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-31
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2042-10-31
AI Technical Summary
Existing medical rubber glove corrosion resistance testing devices have problems such as cumbersome testing process and easy glove folding, which affects the test results.
A device comprising a liquid storage component, a detection mechanism, and a rinsing mechanism was designed. Through an inflation and automatic flipping mechanism, the device achieves stable fixation and inflation detection of medical rubber gloves, and cleans the residual corrosive solution on the surface of the gloves through the rinsing mechanism.
This improves the stability and accuracy of the test, avoids harm to the human body from glove folding and corrosive solution residue, and increases the testing efficiency.
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Figure CN116046651B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of rubber product detection, in particular to a medical rubber glove corrosion resistance testing device. BACKGROUND
[0002] In the process of operation or other treatment, medical staff need to wear professional medical rubber gloves on their hands to prevent bacterial infection of patients and prevent cross infection. In the daily work of medical staff, they often come into contact with some corrosive reagents, at which time medical rubber gloves are needed to protect the hands of medical staff. Medical rubber gloves must have certain corrosion resistance, so after the production of medical rubber gloves, the corrosion resistance of medical rubber gloves needs to be detected to ensure the safety of medical rubber gloves.
[0003] The existing medical rubber glove corrosion resistance detection generally directly hangs or wears medical rubber gloves on a hand mold for detection. Wearing on the hand mold is too cumbersome, and directly hanging for detection may cause the gloves to fold during detection, affecting the test results.
[0004] Therefore, a medical rubber glove corrosion resistance testing device capable of inflating and expanding medical rubber gloves for testing is developed. SUMMARY
[0005] In order to overcome the shortcomings of the existing device, wearing on the hand mold is too cumbersome, and directly hanging for detection may cause the gloves to fold during detection, affecting the test results, a medical rubber glove corrosion resistance testing device capable of inflating and expanding medical rubber gloves for testing is provided.
[0006] The technical scheme is as follows: a medical rubber glove corrosion resistance testing device, comprising a liquid storage member, a lifting foot, a liquid discharge valve, a detection mechanism and a flushing mechanism, the left and right sides of the liquid storage member are connected with lifting feet, the right side of the liquid storage member is connected with a liquid discharge valve, the liquid storage member is provided with a detection mechanism for inflating and expanding detection of medical rubber gloves, and the detection mechanism is provided with a flushing mechanism for cleaning the medical rubber gloves after detection.
[0007] As preferred, the detection mechanism comprises a first mounting frame, a mounting piece, a placing piece, a first spring, a sliding block, a torsion spring, a connecting air pipe and a quick connector, the first mounting frame is connected between the upper sides of the left and right two parts of the liquid storage piece, the left and right two parts of the first mounting frame are slidingly connected with the sliding blocks, the first springs are connected between the sliding blocks and the liquid storage piece, the mounting piece is rotatably connected between the sides of the sliding blocks close to each other, the torsion springs are connected between the left and right sides of the mounting piece and the sliding blocks, the mounting piece is connected with a plurality of placing pieces at the front side, the connecting air pipe is connected between the rear side of the mounting piece and the right side of the liquid storage piece, the connecting organ is communicated with the air outlet on the mounting piece, and the quick connector is connected with the right end of the connecting air pipe.
[0008] As preferred, the flushing mechanism comprises a water pipe connector, a water injection pipe, a water storage tank, a first pressure opening valve, a connecting water pipe, a water jet head and a second pressure opening valve, the water storage tank is connected at the middle position of the top of the first mounting frame, the water injection pipe is connected between the right side of the water storage tank and the right side of the liquid storage piece, the water pipe connector is connected with the right part of the water injection pipe, the first pressure opening valve is connected with the right part of the water injection pipe, the connecting water pipe is connected with the front part of the first mounting frame, the plurality of water jet heads are connected with the lower side of the front part of the connecting water pipe, and the second pressure opening valve is connected with the rear part of the connecting water pipe.
[0009] As preferred, it further comprises a fixing mechanism for clamping and fixing the medical rubber gloves, the fixing mechanism comprises a fixing frame, a second mounting frame, a second spring, a rotating piece and an opening rotating block, the second mounting frame is connected with the front side of the left and right two parts of the mounting piece by bolts, the two fixing frames are slidingly connected between the second mounting frames, the two second springs are connected between the upper fixing frame and the lower fixing frame, the rotating piece is rotatably connected with the front side of the middle position of the mounting piece, and the opening rotating block is connected with the rotating piece.
[0010] As preferred, it further comprises a turnover mechanism for automatically testing the medical rubber gloves, the turnover mechanism comprises a pneumatic cylinder, a pressing block, a pushing block and a turnover piece, the pneumatic cylinder is connected with the left and right sides of the liquid storage piece by bolts, the pressing block is connected with the telescopic rod of the pneumatic cylinder, the turnover piece is connected with the left and right sides of the mounting piece, and the pushing block is connected with the right pressing block.
[0011] As preferred, it further comprises a receiving mechanism for collecting the waste water after flushing, the receiving mechanism comprises a receiving groove frame, a drain pipe and a drain connector, the receiving groove frame is connected with the upper side of the front part of the liquid storage piece, the drain pipe is connected with the bottom of the receiving groove frame, and the drain connector is connected with the bottom end of the drain pipe.
[0012] As preferred, it further comprises a heating mechanism for heating the corrosion solution, the heating mechanism comprises a heating pipe and a fixing piece, the fixing piece is connected with the left and right sides of the inner bottom of the liquid storage piece, and the heating pipe is connected between the fixing pieces.
[0013] Preferably, the front of the mounting component is spherical, which can support the medical rubber glove and facilitate airflow.
[0014] Preferably, the contact points between the fixing bracket and the mounting component are designed with a semi-circular arc shape, which facilitates the fitting and closure of the fixing brackets to form a circular closed loop, thereby enhancing the fixing effect on the medical rubber glove.
[0015] Preferably, the lower part of the push block is designed with a slope to facilitate the squeezing and opening of the first pressure-opening valve.
[0016] The beneficial effects of the present invention are as follows: 1. The present invention connects the gas supply device with the quick connector, so that the airflow can enter the housing through the connecting air tube, thereby quickly inflating the medical rubber glove, which facilitates the medical rubber glove to enter the liquid storage housing and come into contact with the corrosive solution for testing, and avoids the medical rubber glove from folding, which would affect the test results.
[0017] 2. This invention connects the water supply device to the water injection pipe via a water pipe connector, allowing clean water to enter the water storage tank. As the medical rubber glove test is completed, the mounting component moves upward to reset, opening the second pressure valve to allow water to flow into the spray head for spraying, thereby rinsing the surface of the tested medical rubber glove and preventing corrosive solutions from adhering to the surface of the medical rubber glove, thus preventing the corrosive solutions from causing harm to the human body.
[0018] 3. The present invention clamps and fixes the medical rubber gloves placed on the mounting piece by the cooperation between the fixing frames, thereby improving the placement stability of the medical rubber gloves and avoiding accidental drop of the medical rubber gloves during the testing process, which would cause product loss.
[0019] 4. This invention uses a cylinder telescopic rod to drive the pressure block and the push block to move, so that the medical rubber glove can move downward automatically for testing. At the same time, it can also activate the first pressure-opening valve to guide water into the storage tank for placement, eliminating the need for operators to manually push the installation parts. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0021] Figure 2 This is a partial cross-sectional three-dimensional structural schematic diagram of the present invention.
[0022] Figure 3 This is a schematic diagram of the first three-dimensional structure of the testing mechanism of the present invention.
[0023] Figure 4 This is an enlarged three-dimensional structural diagram of point A in the present invention.
[0024] Figure 5This is a schematic diagram of the second three-dimensional structure of the detection mechanism of the present invention.
[0025] Figure 6 This is a partial three-dimensional structural diagram of the detection mechanism of the present invention.
[0026] Figure 7 This is a three-dimensional structural diagram of the rinsing mechanism of the present invention.
[0027] Figure 8 This is a three-dimensional structural diagram of the fixing mechanism of the present invention.
[0028] Figure 9 This is a partial three-dimensional structural diagram of the fixing mechanism of the present invention.
[0029] Figure 10 This is a schematic diagram of the first three-dimensional structure of the flipping mechanism of the present invention.
[0030] Figure 11 This is a schematic diagram of a second three-dimensional structure of the flipping mechanism of the present invention.
[0031] Figure 12 This is a three-dimensional structural diagram of the receiving mechanism of the present invention.
[0032] Figure 13 This is a three-dimensional structural diagram of the heating mechanism of the present invention.
[0033] Explanation of reference numerals in the attached drawings: 1_liquid storage component, 2_lifting foot, 3_drain valve, 4_detection mechanism, 41_first mounting bracket, 42_mounting component, 43_placement component, 44_first spring, 45_slider, 46_torsion spring, 47_connecting air pipe, 48_quick connector, 5_flushing mechanism, 51_water pipe connector, 52_water injection pipe, 521_water storage tank, 53_first pressure-opening valve, 54_connecting water pipe, 55_spray 56_Second pressure-opening valve, 6_Fixing mechanism, 61_Fixing bracket, 62_Second mounting bracket, 63_Second spring, 64_Rotating component, 65_Opening rotating block, 7_Tilting mechanism, 71_Cylinder, 72_Pressure block, 73_Pushing block, 74_Tilting component, 8_Receiving mechanism, 81_Receiving slot frame, 82_Drain pipe, 83_Drain connector, 9_Heating mechanism, 91_Heating pipe, 92_Fixing component. Detailed Implementation
[0034] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0035] A corrosion resistance testing device for medical rubber gloves, such as Figure 1 and Figure 2As shown, the device includes a liquid storage unit 1, lifting feet 2, a drain valve 3, a detection mechanism 4, and a rinsing mechanism 5. Lifting feet 2 are connected to the lower sides of both the left and right sides of the liquid storage unit 1. The lifting feet 2 can raise the height of the liquid storage unit 1 from the ground to prevent the bottom of the liquid storage unit 1 from directly contacting the ground and causing the corrosive solution to leak out. A drain valve 3 is connected to the front right side of the liquid storage unit 1. The drain valve 3 can drain the corrosive solution in the liquid storage unit 1. The liquid storage unit 1 is equipped with a detection mechanism 4 for testing the inflation and expansion of medical rubber gloves. The detection mechanism 4 is equipped with a rinsing mechanism 5 for cleaning the medical rubber gloves after testing.
[0036] Medical rubber gloves come into contact with many corrosive reagents during daily use. Therefore, these gloves need to be corrosion-resistant to prevent damage to the wearer's hands. This device can be used to test the corrosion resistance of medical rubber gloves after production. First, a corrosive solution is added to the reservoir 1. Then, the medical rubber gloves are placed on the testing mechanism 4. The testing mechanism 4 then inflates the gloves, causing them to expand. The gloves are then immersed in the reservoir 1 for corrosion testing. After the test, the gloves are removed and rinsed using the rinsing mechanism 5. Finally, the corrosive solution in the reservoir 1 is drained through the drain valve 3. In summary, the inflating of the medical rubber gloves by the testing mechanism 4 facilitates corrosion testing in the reservoir 1. The rinsing mechanism 5 cleans the gloves after testing to prevent residual corrosive solution from adhering to them.
[0037] like Figures 1-6As shown, the detection mechanism 4 includes a first mounting bracket 41, a mounting component 42, a placement component 43, a first spring 44, a slider 45, a torsion spring 46, a connecting air pipe 47, and a quick connector 48. The first mounting bracket 41 is connected between the upper sides of the left and right sides of the liquid storage component 1. Sliding sliders 45 are slidably connected to the left and right sides of the first mounting bracket 41. A first spring 44 is connected between each slider 45 and the liquid storage component 1. The top end of each first spring 44 is connected to the slider 45, and the bottom end of each first spring 44 is connected to the liquid storage component 1. Each first spring 44 is wound around the liquid storage component 1. The mounting component 42 is rotatably connected between the sides of the sliders 45 that are close to each other. Torsion springs 46 are connected between the left and right sides of the mounting component 42 and the sliders 45. All 46 are wound around the mounting part 42. The ends of the torsion springs 46 that are close to each other are connected to the slider 45, and the ends of the torsion springs 46 that are far from each other are connected to the mounting part 42. There are a number of six placement parts 43 connected to the front side of the mounting part 42 for placing medical rubber gloves. The placement parts 43 have air outlets to facilitate airflow. The front side of the placement parts 43 is spherical to support the medical rubber gloves and facilitate airflow. A connecting air tube 47 is connected between the rear side of the mounting part 42 and the right side of the liquid storage part 1. The connecting organ is connected to the air outlet on the mounting part 42. A quick connector 48 is connected to the right end of the connecting air tube 47 to facilitate quick connection of the connecting air tube 47 to an external gas supply device.
[0038] When conducting corrosion resistance testing on medical rubber gloves, the gloves are first placed on the mounting piece 43. Due to the gloves' inherent elasticity, they conform to the mounting piece 43, improving stability. Then, the connecting air tube 47 is connected to the gas supply device via the quick connector 48, allowing airflow into the tube 47 and then into the mounting piece 43, inflating the gloves. The mounting piece 42 is then rotated, causing the mounting piece 43 to rotate downwards. The torsion springs 46 deform under pressure, causing the inflated gloves to flip downwards. The mounting piece 42 is then pressed down, causing the sliders 45 to slide downwards, compressing the first spring 44. As the mounting piece 42 continues to move downwards, the inflated gloves come into contact with the corrosive solution in the reservoir 1, thus immersing the gloves in the solution for corrosion resistance testing. After the corrosion resistance test is completed, the pressure on the mounting part 42 is stopped, causing the sliders 45 to slide upward and reset under the action of the first spring 44. This causes the mounting part 42 to move upward and reset. Then, the mounting part 42 is released, causing it to rotate upward and reset under the action of the torsion spring 46. The mounting part 42 will drive the placement part 43 to rotate upward and reset, thereby causing the inflated medical rubber glove to flip upward and reset. Then, the gas supply device is controlled to evacuate the gas inside the inflated medical rubber glove and restore it to its original state. After restoration, the medical rubber glove is removed. Finally, the gas supply device is disconnected from the quick connector 48. In summary, by connecting the gas supply device to the quick connector 48, the airflow can enter the placement part 43 through the connecting air tube 47, thereby quickly inflating the medical rubber glove. This facilitates the medical rubber glove to enter the liquid storage part 1 and come into contact with the corrosive solution for testing, avoiding the medical rubber glove from folding and affecting the test results.
[0039] like Figure 1 , Figure 2 and Figure 7As shown, the flushing mechanism 5 includes a water pipe connector 51, a water injection pipe 52, a water storage tank 521, a first pressure-opening valve 53, a connecting water pipe 54, a spray head 55, and a second pressure-opening valve 56. The water storage tank 521 is connected to the top center of the first mounting bracket 41. The water storage tank 521 is used to store clean water. A water injection pipe 52 is connected between the right side of the water storage tank 521 and the right side of the liquid storage component 1. The water pipe connector 51 is connected to the front end of the right side of the water injection pipe 52, allowing operators to quickly connect the water supply equipment to the water injection pipe 52. The first pressure-opening valve 56 is connected to the right side of the water injection pipe 52. Valve 53 is used to control the water flow into the water storage tank 521 through the water injection pipe 52. A connecting water pipe 54 is connected to the upper front of the first mounting bracket 41. The connecting water pipe 54 is connected to and communicates with the water storage tank 521. A number of spray heads 55 are connected to the lower front of the connecting water pipe 54. There are six spray heads 55 in total, which are used to spray water to rinse the tested medical rubber gloves. A second pressure-opening valve 56 is connected to the rear of the connecting water pipe 54. The second pressure-opening valve 56 can be opened by the pressure of the mounting part 42, so that water flows from the water storage tank 521 into the connecting water pipe 54.
[0040] After the corrosion resistance test of the medical rubber gloves is completed, in order to prevent the corrosive solution adhering to the medical rubber gloves from causing harm to the human body when the gloves are removed, the medical rubber gloves need to be rinsed. First, the water supply equipment is connected to the water injection pipe 52 through the water pipe connector 51. Then, the first pressure-opening valve 53 is pressed, allowing water to flow through the water injection pipe 52 into the water storage tank 521. After the medical rubber glove test is completed, the mounting part 42 moves upward to reset, and the mounting part 42 will squeeze and trigger the second pressure-opening valve 56, thereby preventing the second pressure-opening valve 56 from blocking the connecting water pipe 54. At this time, the clean water in the water storage tank 521 will enter the spray head 55 through the connecting water pipe 54 and spray through the spray head 55. 5. Spray water to rinse the medical rubber gloves on the mounting part 43, removing any corrosive solution residue adhering to the surface of the medical rubber gloves after testing. After rinsing, close the first pressure-opening valve 53 and disconnect the water supply equipment from the water pipe connector 51. In summary, the water supply equipment is connected to the water injection pipe 52 through the water pipe connector 51, allowing clean water to enter the water storage tank 521. As the medical rubber glove test is completed, the mounting part 42 moves upward to reset, opening the second pressure-opening valve 56 to allow water to flow into the spray head 55 for spraying, thereby rinsing the surface of the tested medical rubber gloves and preventing corrosive solution from adhering to the surface of the medical rubber gloves, thus preventing the corrosive solution from causing harm to the human body.
[0041] like Figure 1 , Figure 2 , Figure 8 and Figure 9As shown, it also includes a fixing mechanism 6, which includes a fixing frame 61, a second mounting frame 62, a second spring 63, a rotating component 64, and an opening rotating block 65. The left and right front sides of the mounting component 42 are each bolted to a second mounting frame 62. Two fixing frames 61 are slidably connected between the second mounting frames 62. Each fixing frame 61 can clamp and fix the glove placed on the mounting component 43. The contact points between the fixing frames 61 and the mounting component 43 are all semi-circular arc-shaped, facilitating the closing of the fixing frames 61 to form... The circular closed loop enhances the fixation effect on the medical rubber glove. Two second springs 63 are connected between the upper and lower fixing frames 61. The top of the second springs 63 is connected to the upper fixing frame 61, and the bottom of the second springs 63 is connected to the lower fixing frame 61. A rotating component 64 is rotatably connected to the front of the middle position of the mounting component 42. Each rotating component 64 is connected to an opening rotating block 65. The opening rotating block 65 can push the fixing frame 61, so that the fixing frame 61 slides open to the side away from each other.
[0042] When testing the placement of medical rubber gloves, the first step is to rotate the rotating component 64 clockwise, causing the opening rotating block 65 to rotate clockwise. This clockwise rotation of the opening rotating block 65 pushes the fixing frames 61 to slide and open to opposite sides, stretching the second springs 63. The medical rubber glove is then placed on the placement component 43. The rotating component 64 is then rotated clockwise again, causing the opening rotating block 65 to continue rotating clockwise. At this point, the opening rotating block 65 no longer pushes or supports the fixing frames 61. The fixing frames 61 slide back to their original positions under the action of the second springs 63, clamping and securing the medical rubber glove on the placement component 43. This prevents the medical rubber glove from falling off during testing. In summary, the cooperation between the fixing frames 61 clamps and secures the medical rubber glove on the placement component 43, improving the stability of the medical rubber glove and preventing accidental drop during testing, thus avoiding product loss.
[0043] like Figure 1 , Figure 2 , Figure 10 and Figure 11 As shown, it also includes a flipping mechanism 7, which includes a cylinder 71, a pressure block 72, a push block 73, and a flipping component 74. The left and right sides of the liquid storage component 1 are connected to the cylinder 71 by bolts. The pressure block 72 is connected to the telescopic rod of the cylinder 71. The left and right sides of the mounting component 42 are connected to the flipping component 74. The pressure block 72 can push the flipping component 74, so that the flipping component 74 is engaged with the pressure block 72. The right pressure block 72 is connected to the push block 73. The push block 73 can press and start the first pressure-opening valve 53. The lower part of the push block 73 is designed with a slope to facilitate the squeezing and opening of the first pressure-opening valve 53.
[0044] When testing the stabilized medical rubber glove, cylinder 71 can be activated directly, causing the telescopic rod of cylinder 71 to retract. This causes the pressure block 72 and the pushing block 73 to move downwards. When the pressure block 72 contacts the flipping component 74, it pushes the flipping component 74 to rotate downwards by ninety degrees. As the pressure block 72 continues to move downwards, it engages with the flipping component 74. With this engagement, the pressure block 72 drives the flipping component 74 downwards, causing the mounting component 42 to move downwards, thus moving the placement component 43 downwards. This achieves the effect of moving the medical rubber glove downwards for testing. Simultaneously, as the pressure block 72 on the right moves downwards, the pushing block 73 also moves downwards and contacts the first pressure-opening valve 53, thus enabling the... The first pressure-opening valve 53 is opened by the push block 73, which facilitates the flow of water through the water injection pipe 52 into the water storage tank 521. After the test is completed, the control cylinder 71 extends and resets, thereby causing the push block 73 to disengage from the first pressure-opening valve 53, and the water flow stops. At the same time, the pressure blocks 72 no longer push the flipping parts 74. After the pressure blocks 72 are fully reset, the flipping parts 74 disengage from the pressure blocks 72 and automatically flip and reset under the action of the torsion spring 46. In summary, by using the extension rod of the cylinder 71 to drive the pressure blocks 72 and the push block 73 to move, the medical rubber glove can automatically move downward for testing. At the same time, the first pressure-opening valve 53 can be activated to guide the water flow into the storage tank for placement, eliminating the need for the operator to manually push the installation parts 42.
[0045] like Figure 1 and Figure 12 As shown, it also includes a receiving mechanism 8, which includes a receiving tank frame 81, a drain pipe 82, and a drain connector 83. The receiving tank frame 81 is connected to the upper front side of the liquid storage component 1. The receiving tank frame 81 can collect the wastewater flowing down from the cleaning of medical rubber gloves. The drain pipe 82 is connected to the bottom of the receiving tank frame. The drain pipe 82 is used to drain the wastewater in the receiving tank frame 81. The drain connector 83 is connected to the bottom end of the drain pipe 82 to facilitate the connection of the drain pipe 82 to the wastewater treatment equipment.
[0046] First, connect the drain pipe 82 to the wastewater treatment equipment through the drain pipe 82 connector. Then, when the spray head 55 starts rinsing the tested medical rubber gloves, the wastewater flowing down from the rinse will enter the receiving tank 81 and then flow into the wastewater treatment equipment through the drain pipe 82. After the treatment is completed, disconnect the wastewater treatment equipment from the drain pipe 82 connector.
[0047] like Figure 2 and Figure 13As shown, it also includes a heating mechanism 9, which includes a heating tube 91 and a fixing member 92. Three fixing members 92 are connected to the bottom left and right sides of the liquid storage component 1. A heating tube 91 is connected between each fixing member 92. The heating tube 91 can heat the corrosive solution to enhance the corrosive effect of the corrosive solution.
[0048] Before conducting a corrosion test on medical rubber gloves, the heating element 91 can be activated to heat the corrosive solution, thereby increasing the corrosiveness of the solution and facilitating rapid testing of the medical rubber gloves, thus improving testing efficiency.
[0049] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A corrosion resistance testing device for medical rubber gloves, comprising a liquid storage component (1), lifting feet (2), and a drain valve (3), wherein lifting feet (2) are connected to the lower sides of both the left and right sides of the liquid storage component (1), and a drain valve (3) is connected to the front right side of the liquid storage component (1), characterized in that: It also includes a testing mechanism (4) and a rinsing mechanism (5). The liquid storage device (1) is equipped with a testing mechanism (4) for testing the inflation and expansion of medical rubber gloves, and the testing mechanism (4) is equipped with a rinsing mechanism (5) for cleaning the medical rubber gloves after testing. The testing mechanism (4) includes a first mounting bracket (41), a mounting component (42), a placement component (43), a first spring (44), a slider (45), a torsion spring (46), a connecting air pipe (47), and a quick connector (48). The first mounting bracket (41) is connected between the upper sides of the left and right sides of the liquid storage component (1). The slider (45) is slidably connected to the left and right sides of the first mounting bracket (41). The first spring (44) is connected between the slider (45) and the liquid storage component (1). The mounting component (42) is rotatably connected between the sides of the slider (45) that are close to each other. The torsion spring (46) is connected between the left and right sides of the mounting component (42) and the slider (45). Multiple placement components (43) are connected to the front side of the mounting component (42). The connecting air pipe (47) is connected between the rear side of the mounting component (42) and the right side of the liquid storage component (1). The connecting organ is connected to the air outlet on the mounting component (42). The quick connector (48) is connected to the right end of the connecting air pipe (47). The flushing mechanism (5) includes a water pipe connector (51), a water injection pipe (52), a water storage tank (521), a first pressure-opening valve (53), a connecting water pipe (54), a spray nozzle (55), and a second pressure-opening valve (56). The water storage tank (521) is connected to the middle of the top of the first mounting bracket (41). The water injection pipe (52) is connected between the right side of the water storage tank (521) and the right side of the liquid storage component (1). The water pipe connector (51) is connected to the front end of the right side of the water injection pipe (52). The first pressure-opening valve (53) is connected to the right side of the water injection pipe (52). The connecting water pipe (54) is connected to the upper front side of the first mounting bracket (41). Multiple spray nozzles (55) are connected to the lower front side of the connecting water pipe (54). The second pressure-opening valve (56) is connected to the rear of the connecting water pipe (54).
2. The medical rubber glove corrosion resistance testing device according to claim 1, characterized in that: It also includes a fixing mechanism (6) for clamping and fixing medical rubber gloves. The fixing mechanism (6) includes a fixing frame (61), a second mounting frame (62), a second spring (63), a rotating part (64), and an opening rotating block (65). The front sides of the left and right sides of the mounting part (42) are connected to the second mounting frame (62) by bolts. The second mounting frame (62) is slidably connected to two fixing frames (61). The upper fixing frame (61) and the lower fixing frame (61) are connected to two second springs (63). The front side of the middle position of the mounting part (42) is rotatably connected to the rotating part (64). The opening rotating block (65) is connected to the rotating part (64).
3. The medical rubber glove corrosion resistance testing device according to claim 2, characterized in that: It also includes a flipping mechanism (7) for automatically testing medical rubber gloves. The flipping mechanism (7) includes a cylinder (71), a pressure block (72), a push block (73) and a flipping component (74). The liquid storage component (1) is bolted to both sides of the cylinder (71). The cylinder (71) is connected to the telescopic rod of the cylinder (71). The mounting component (42) is connected to both sides of the flipping component (74). The pressure block (72) on the right side is connected to the push block (73).
4. The medical rubber glove corrosion resistance testing device according to claim 3, characterized in that: It also includes a receiving mechanism (8) for collecting the wastewater after rinsing. The receiving mechanism (8) includes a receiving tank frame (81), a drain pipe (82) and a drain connector (83). The receiving tank frame (81) is connected to the upper front side of the liquid storage component (1). The drain pipe (82) is connected to the bottom of the receiving tank frame. The drain connector (83) is connected to the bottom end of the drain pipe (82).
5. The medical rubber glove corrosion resistance testing device according to claim 4, characterized in that: It also includes a heating mechanism (9) for heating the corrosive solution. The heating mechanism (9) includes a heating tube (91) and a fixing member (92). Three fixing members (92) are connected to the bottom left and right sides of the liquid storage member (1). The fixing members (92) are connected to each other by a heating tube (91).
6. The medical rubber glove corrosion resistance testing device according to claim 5, characterized in that: The front of the mounting piece (43) is spherical, which can support the medical rubber glove and facilitate airflow.
7. The medical rubber glove corrosion resistance testing device according to claim 6, characterized in that: The contact points between the fixing bracket (61) and the placement component (43) are both designed in a semi-circular arc shape, which facilitates the fitting and closure of the fixing brackets (61) to form a circular closed loop, thereby enhancing the fixing effect on the medical rubber glove.
8. The medical rubber glove corrosion resistance testing device according to claim 7, characterized in that: The lower part of the push block (73) is designed with a slope to facilitate the squeezing and opening of the first pressure valve (53).
Citation Information
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