Quality detection device for rubber product gloves
By installing a slope and locking module at the water outlet of the water injection pipe, the rubber glove quality inspection device solves the problems of inconvenience and damage caused by the small opening diameter of the rubber gloves, and realizes convenient and safe sealing inspection.
Patent Information
- Application Number
- CN202520684980.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-11
AI Technical Summary
When inspecting the quality of rubber gloves, the user needs to open the opening of the rubber gloves to fit the diameter of the water injection device. This is especially troublesome and can easily damage the rubber gloves when the opening diameter is small.
A water injection pipe was designed with a slope at the outlet end, equipped with a locking module and a drive mechanism. The slope expands the opening and the locking module limits the opening, avoiding the direct opening of the rubber glove and enabling convenient sealing detection.
It simplifies the operation process of rubber gloves, avoids damage from openings, improves testing efficiency and safety, and is suitable for simultaneous testing of multiple gloves.
Smart Images

Figure CN223910412U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to quality detection device technical field, concretely relates to a rubber product glove quality detection device. BACKGROUND
[0002] Rubber gloves are a common industrial glove, usually made of natural rubber (latex) or synthetic rubber, rubber gloves are widely used in medical care, chemical industry, laboratory, clean health, food processing and other industries. In the medical field, they are used for infection control and personal protection of medical staff, to protect the hands from pathogens and chemical agents.
[0003] When the quality of rubber gloves is detected, it is generally necessary to test its sealing performance. Sealing performance test generally improves the water injection device to inject water or air into the inside of the rubber gloves for sampling, and then observes whether the rubber glove surface is water or air to judge the sealing performance of the rubber glove. The current water injection device is generally a through pipe structure. When in use, the user puts one end of the rubber glove on one end of the water injection device, and then pours water from the other end of the water injection device. The water will flow into the rubber glove through the water injection device, thereby completing the water injection of the rubber glove. This way needs the user to push the opening of the rubber glove to adapt to the diameter of the water injection device when operating. In the case that the opening diameter of the rubber glove is small, this operation method will be more troublesome, and will also cause damage to the opening of the rubber glove. Therefore, a new rubber product glove quality detection device is needed to solve the above problems. SUMMARY
[0004] The utility model aims at: in order to solve the quality of rubber gloves is detected, needs the user to push the opening of the rubber glove to adapt to the diameter of the water injection device, in the case that the opening diameter of the rubber glove is small, this operation method will be more troublesome.
[0005] The utility model discloses the following technical scheme in order to realize the above-mentioned purpose:
[0006] A rubber product glove quality detection device, comprising: a water injection pipe, the water outlet end of the water injection pipe is provided with a slope, the surface of the water injection pipe is provided with a locking module, and the locking module is used to limit the position of the rubber glove to the water outlet end of the water injection pipe.
[0007] Further, the water injection pipe comprises a transparent pipe, a carrying ring is slidably inserted into the surface of the transparent pipe, the slope is opened at the end of the transparent pipe, and an injection unit is further included, which is used to inject liquid or gas into the inside of the transparent pipe.
[0008] Further, the filling unit comprises an air valve threaded into the surface of the transparent tube, and a valve core is threaded into one end of the air valve.
[0009] Further, the filling unit comprises a water valve threaded into the surface of the transparent tube, and a water pipe joint is threaded into one end of the water valve.
[0010] Further, the locking module comprises a sleeve ring slidingly sleeved with the surface of the slope, two locking rings are arranged in the inner ring of the sleeve ring, two guide protrusions are fixedly arranged on the surface of each locking ring, a plurality of guide protrusions slidingly penetrate the inner wall of the sleeve ring, a driving mechanism and a force applying mechanism are further arranged, the driving mechanism is used for driving one of the locking rings to move in the diameter direction of the sleeve ring, and the force applying mechanism is used for controlling the other locking ring to move in the diameter direction of the sleeve ring and applying a force to keep the position.
[0011] Further, the driving mechanism comprises a driving threaded rod rotatingly threaded into the surface of one of the locking rings, the surface of the driving threaded rod is threaded into the surface of the sleeve ring, and a torsion column is fixedly arranged at one end of the driving threaded rod.
[0012] Further, the force applying mechanism comprises a force applying rod fixedly arranged on the surface of the other locking ring, the surface of the force applying rod is slidingly threaded into the surface of the sleeve ring, a spring is slidingly sleeved with the surface of the force applying rod, and two ends of the spring are fixedly arranged on the surface of the sleeve ring and the force applying rod respectively.
[0013] Further, a support is further arranged, and the surface of the top cross bar of the support is slidingly hooked with a plurality of hooks adapted to the carrying ring.
[0014] The utility model discloses the following beneficial effects:
[0015] The utility model discloses a water injection pipe with a slope surface at one end, which makes it unnecessary for a user to stretch and enlarge the opening of the rubber glove before putting it on the water injection pipe when the opening of the rubber glove is sleeved with the surface of the slope, and the user only needs to put one end of the rubber glove on the slope, pull the opening to slide on the surface of the slope, and gradually enlarge the opening. This method is not only convenient but also can control the stretching degree of the opening according to the diameter of the opening of the rubber glove. Finally, the locking module is used to limit the rubber glove on the surface of the water injection pipe, which can facilitate operation and avoid damaging the opening of the rubber glove.
[0016] The utility model discloses, through setting up a support that can be placed on the desktop, make at use, the user can carry ring of multiple water injection pipe surfaces be hooked in the surface of hook head, such setting, not only can be several water injection pipe overhead, also realized the detection of multiple rubber gloves simultaneously. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the three-dimensional structure schematic diagram of quality detection device of the utility model;
[0018] Figure 2 It is the front view of quality detection device of the utility model;
[0019] Figure 3 It is the half cutaway view of part structure of quality detection device of the utility model;
[0020] Figure 4 It is the half cutaway view of part structure of quality detection device of the utility model another angle.
[0021] Reference Signs: 1, water injection pipe;11, transparent pipe;12, carrying ring;13, filling unit;131, gas valve;132, valve core;2, slope;3, locking module;31, sleeve ring;32, locking ring;33, guide protrusion;34, driving mechanism;341, driving screw rod;342, torsion column;35, force applying mechanism;351, force applying rod;352, spring;4, support;5, hook head. DETAILED DESCRIPTION
[0022] In order to make the purpose, technical scheme and advantage of the utility model embodiment more clear, below will combine the drawings in the utility model embodiment, the technical scheme in the utility model embodiment is clearly, completely described.
[0023] The rubber product glove quality detection device provided in the embodiment mainly aims at solving the problem that the user needs to open the opening of the rubber glove to adapt to the diameter of the water injection device when detecting the quality of the rubber glove, and the opening diameter of the rubber glove is relatively small, and the operation mode is relatively troublesome, and provides the following technical scheme, which will be described in detail below. Figures 1-4
[0024] A kind of rubber product glove quality detection device, including: the water outlet of water injection pipe 1 is provided with slope 2, the surface of water injection pipe 1 is provided with locking module 3, when using, user will be gradually enlarged after the opening end of rubber glove is set on the slope 2 of water injection pipe 1 (compared with prior art, this way does not need to be enlarged finally again set on the surface of water injection pipe 1 at opening), finally, the position of rubber glove opening end is limited in the water outlet of water injection pipe 1 by locking module 3, it can be injected into water or air in the inside of water injection pipe 1 to rubber glove quality detection operation.The main components of water injection pipe 1 are: transparent tube 11 with carrying ring 12 is slidably inserted on the surface, and the slope 2 is opened in the end of transparent tube 11, when using, user can inject liquid or gas into transparent tube 11 by filling unit 13, the main components of locking module 3 are: sleeve ring 31 is slidably connected on the surface of slope 2, and the inner ring of sleeve ring 31 is provided with two locking rings 32, the surface of two locking rings 32 is fixedly installed with two guide protrusions 33, and the inner wall of sleeve ring 31 is slidably penetrated by several guide protrusions 33, when using, one of the locking rings 32 can be controlled to move along the diameter of sleeve ring 31 by driving mechanism 34, so that the surface of the locking ring 32 is attached to the surface of rubber glove and transparent tube 11, the limiting of rubber glove on the surface of transparent tube 11 is realized by extrusion, and the other locking ring 32 is also attached to the surface of rubber glove and transparent tube 11 under the action of force applying mechanism 35, to strengthen the limiting effect of glove, it should be noted that several guide protrusions 33 will slide on the inner wall of sleeve ring 31 during the movement of two locking rings 32, to ensure the stability of locking ring 32 movement.
[0025] As Figure 3 shown, in one embodiment, the filling unit 13 includes a gas valve 131 threadedly inserted on the surface of the transparent tube 11, and a valve core 132 is threadedly inserted at one end of the gas valve 131, when using, the user can pass the external gas source through the valve core 132 into the inside of the gas valve 131 and the transparent tube 11, so as to realize the function of gas supply to the inside of the transparent tube 11, so that when the user needs to detect the air tightness of the rubber glove, the above-mentioned way can be used for detection.
[0026] As Figure 3 shown, in another embodiment, the filling unit 13 can also include a water valve threadedly inserted on the surface of the transparent tube 11, and a water pipe connector is threadedly inserted at one end of the water valve, when the user needs to detect the water tightness of the rubber glove, the external water pipe can be connected to the water valve through the water pipe connector to supply water to the inside of the transparent tube 11, so as to realize the purpose of water tightness detection of the rubber glove.
[0027] AsFigure 4 As shown in some embodiments, wherein the main components of the driving mechanism 34 are: the torsion column 342, while the surface of one of the locking rings 32 is rotatably inserted with the driving threaded rod 341, the surface of which is threadedly inserted in the surface of the sleeve ring 31, in use, the user holds the torsion column 342 fixedly installed at one end of the driving threaded rod 341 and rotates, which can realize the rotation of the driving threaded rod 341, thereby realizing the driving of the locking ring 32 along the diameter of the sleeve ring 31.
[0028] As shown in some embodiments, wherein the main components of the driving mechanism 34 are: the torsion column 342, while the surface of one of the locking rings 32 is rotatably inserted with the driving threaded rod 341, the surface of which is threadedly inserted in the surface of the sleeve ring 31, in use, the user holds the torsion column 342 fixedly installed at one end of the driving threaded rod 341 and rotates, which can realize the rotation of the driving threaded rod 341, thereby realizing the driving of the locking ring 32 along the diameter of the sleeve ring 31. Figure 4 As shown in some embodiments, wherein the main components of the driving mechanism 34 are: the torsion column 342, while the surface of one of the locking rings 32 is rotatably inserted with the driving threaded rod 341, the surface of which is threadedly inserted in the surface of the sleeve ring 31, in use, the user holds the torsion column 342 fixedly installed at one end of the driving threaded rod 341 and rotates, which can realize the rotation of the driving threaded rod 341, thereby realizing the driving of the locking ring 32 along the diameter of the sleeve ring 31.
[0029] As shown in some embodiments, wherein the main components of the driving mechanism 34 are: the torsion column 342, while the surface of one of the locking rings 32 is rotatably inserted with the driving threaded rod 341, the surface of which is threadedly inserted in the surface of the sleeve ring 31, in use, the user holds the torsion column 342 fixedly installed at one end of the driving threaded rod 341 and rotates, which can realize the rotation of the driving threaded rod 341, thereby realizing the driving of the locking ring 32 along the diameter of the sleeve ring 31. Figure 1 As shown in some embodiments, further comprising a support 4 for the overhead water injection pipe 1, the support 4 being composed of a drainage groove at the bottom and vertical rods on both sides of the drainage groove, and a horizontal rod installed at the top of the two vertical rods, while the surface of the top horizontal rod of the support 4 is slidably hooked with a plurality of hooks 5 each adapted to the carrying ring 12, and the user can hang a plurality of transparent tubes 11 through the hooks 5, thereby realizing the testing of a plurality of rubber gloves.
[0030] The working process of the utility model is as follows:
[0031] Firstly, the user aligns the opening end of the rubber glove with the slope 2 and puts it on, then pulls the opening to slide on the surface of the slope 2, gradually enlarges the opening, and then introduces gas or liquid into the transparent tube 11 through the valve core 132 or the water pipe joint, which can realize the air tightness or water tightness detection of the glove.
[0032] Secondly, when the gloves after detection are needed to be taken off, especially after the water tightness detection, one of the locking rings 32 can be first released from the surface of the gloves by rotating the driving threaded rod 341, and then the gloves can be taken off by pinching the opening of the gloves with the palm and pulling the force applying rod 351 to further stretch the spring 352 and release the other locking ring 32 from the surface of the gloves. Compared with the prior art, the gloves are limited on the surface of the transparent tube 11 by the clamps (in this way, when the gloves are needed to be taken off, the opening of the gloves needs to be pinched first, and then the screws are loosened by using a screwdriver, and in this process, the user needs to prevent the gloves from being separated from the water inside under the gravity), and the gloves can be taken off without pinching the opening of the gloves in the process of rotating the driving threaded rod 341, which is more labor-saving and avoids the situation that the gloves suddenly slip off.
[0033] The above description of disclosed embodiments enables those skilled in the art to carry out or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A rubber article glove quality inspection apparatus characterized by comprising: Include: Water injection pipe (1), the water outlet end of the water injection pipe (1) is provided with a slope (2), the surface of the water injection pipe (1) is provided with a locking module (3), the locking module (3) is used to limit the position of rubber gloves to the water outlet end of the water injection pipe (1).
2. The rubber article glove quality detection device according to claim 1, wherein: The water injection pipe (1) comprises a transparent tube (11), the surface of the transparent tube (11) is slidingly inserted with a carrying ring (12), the slope (2) is opened at the end of the transparent tube (11), and a filling unit (13) is further included, the filling unit (13) is used to introduce liquid or gas into the inside of the transparent tube (11).
3. The rubber article glove quality detection device of claim 2, wherein: The filling unit (13) includes a gas valve (131) threaded into the surface of the transparent tube (11), one end of the gas valve (131) is threaded with a valve core (132).
4. The rubber article glove quality detection device of claim 2, wherein: The filling unit (13) includes a water valve threaded into the surface of the transparent tube (11), one end of the water valve is threaded with a water pipe joint.
5. The rubber article glove quality detection device of claim 1, wherein: The locking module (3) includes a sleeve ring (31) slidingly sleeved on the surface of the slope (2), the inner ring of the sleeve ring (31) is provided with two locking rings (32), the surfaces of the two locking rings (32) are fixedly installed with two guide protrusions (33), the guide protrusions (33) are slidingly penetrated into the inner wall of the sleeve ring (31), and a driving mechanism (34) and a force applying mechanism (35) are further included, the driving mechanism (34) is used to drive one of the locking rings (32) to move along the diameter of the sleeve ring (31), and the force applying mechanism (35) is used to control the other locking ring (32) to move along the diameter of the sleeve ring (31) and apply a force to keep it in place.
6. The rubber article glove quality detection device of claim 5, wherein: The driving mechanism (34) includes a driving screw rod (341) rotatingly inserted into the surface of one of the locking rings (32), the surface of the driving screw rod (341) is threaded into the surface of the sleeve ring (31), and one end of the driving screw rod (341) is fixedly installed with a torsion column (342).
7. The rubber article glove quality detection device of claim 5, wherein: The force applying mechanism (35) includes a force applying rod (351) fixedly installed on the surface of the other locking ring (32), the surface of the force applying rod (351) is slidingly inserted into the surface of the sleeve ring (31), the surface of the force applying rod (351) is slidingly sleeved with a spring (352), and the two ends of the spring (352) are fixedly installed on the surface of the sleeve ring (31) and the force applying rod (351) respectively.
8. The rubber article glove quality detection device of claim 2, wherein: Further including a support (4), the surface of the top cross bar of the support (4) is slidingly hooked with a plurality of hooks (5) adapted to the carrying ring (12).