Glove gas detection device
By designing an automated device for feeding, unfolding, gas detection, and dispensing gloves, the problem of manual operation required by traditional glove gas detection devices has been solved, realizing a highly efficient and automated gas detection production line operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-25
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional glove air detection devices require manual operation, which is labor-intensive and has low air detection efficiency.
An automated device was designed, comprising components for glove feeding, opening, air detection, and dispensing. The device uses a chain and motor to drive the mounting base to move cyclically, thereby achieving automated glove gripping, air detection, and sorting.
It reduced the labor intensity of workers, improved the efficiency of gas detection, and enabled automated production line operation for gloves.
Smart Images

Figure CN224072724U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to glove production equipment, specifically to a glove air detection device. Background Technology
[0002] Gloves are common personal protective equipment used in our daily lives and production processes. One type of glove has particularly high requirements for airtightness. After production, gloves need to be inspected using an air testing device to remove defective products and ensure a high yield rate. Traditional air testing devices have the following drawbacks: 1. They typically require manual placement and removal of gloves, resulting in high labor intensity and being time-consuming and labor-intensive for workers; 2. Air testing devices are generally fixed in place, requiring workers to wait for the test to complete before removing the gloves and putting on new ones. For example, traditional air testing devices typically take about 10 seconds to complete the test, leading to low overall efficiency. Utility Model Content
[0003] In view of the deficiencies in the prior art, the technical problem to be solved by this utility model is to provide a glove gas detection device for solving the above-mentioned problems.
[0004] Therefore, this utility model is implemented using the following solution:
[0005] A glove air detection device is characterized in that it includes a glove feeding component, a glove spreading component, and an air detection component. The air detection component is mounted on a mounting base, and multiple mounting bases are arranged in a cyclical manner along a certain trajectory. Corresponding to the movement path of the mounting base, a defective glove rejection component and a good glove delivery component are also provided.
[0006] It also includes a slide rail arranged in a ring, and a slide block that cooperates with the slide rail is provided on the mounting base. The mounting base is connected to a chain, the chain passes around a sprocket, and the sprocket is connected to the output end of the first motor.
[0007] The glove feeding assembly includes a rotating base, on which a first movable frame and a second movable frame are provided, and each of the first movable frame and the second movable frame is provided with a first clamping claw.
[0008] The structure of the good glove delivery component is the same as that of the glove infeed component.
[0009] The waste sleeve removal assembly includes a rotating frame, on which a second clamping claw is provided.
[0010] The aforementioned technical solution provides a glove air detection device that automates glove loading and unloading by setting up a glove feeding component, and automates glove rejection and unloading by setting up a defective glove rejection component and a good glove delivery component. This replaces the traditional manual glove loading and unloading method, greatly reducing the labor intensity of workers. In addition, by installing the air detection components on a set of mounting bases and controlling the cyclical movement of the mounting bases, the air detection components can be moved to the glove loading station, defective glove rejection station, and glove unloading station. The air detection operation is completed during the movement of the air detection components, which can effectively increase the air detection efficiency per unit time. Attached Figure Description
[0011] The present invention includes the following figures:
[0012] Figure 1 This is a schematic diagram of the structure of this utility model;
[0013] Figure 2 This is a schematic diagram of the mounting base of this utility model;
[0014] Figure 3 This is a schematic diagram of the structure of the gas detection component of this utility model. Detailed Implementation
[0015] As shown in the figure, a glove air inspection device disclosed by the utility model is characterized in that it includes a glove feeding component, a glove stretching component 4 and an air inspection component 7. The air inspection component 7 is arranged on a mounting base 5. A plurality of mounting bases 5 are arranged in a row and move in a circular motion along a certain track. A waste glove removing component and a qualified glove sending component are also arranged corresponding to the moving path of the mounting base 5. The glove stretching component 4 adopts movable stretching claws. By controlling the stretching claws approaching each other to extend into the opening of the glove, and then controlling the stretching claws to move away from each other, the stretching of the glove is realized. Moreover, the overall structure of the stretching claws is arranged to be liftable, which is convenient for it to put the stretched glove on the air inspection component. The air inspection component 7 includes an inflation head 14. The glove can be put on the inflation head 14. A positioning and pressing component 15 is arranged corresponding to the inflation head 14. The positioning and pressing component 15 is connected to a pressing driving component. The positioning and pressing component 15 can tightly press the opening end of the glove on the inflation head 14 in a sealed manner. An air outlet is arranged on the inflation head 14 to inflate the put-on glove. The air outlet is communicated with a first air chamber in the inflation head 14. The inflation head 14 has an air inlet 16 and a return air port 17 communicated with the first air chamber. A on-off valve is arranged corresponding to the air inlet 16. The on-off valve can adopt a solenoid valve structure. A pressure sensor is arranged corresponding to the return air port 17. The pressure sensor can feedback the air pressure at the return air port 17 to the controller. The controller analyzes the air tightness of the glove according to the air pressure information feedback at a certain time. The air inlet is connected to an air pump through a trachea. The pressing driving component includes a first cylinder 19. The piston rod of the first cylinder 19 is connected to a lifting frame 18. The positioning and pressing component 15 is arranged on the lifting frame 18. By putting the glove to be detected on the inflation head 14, then controlling the positioning and pressing component 15 to act, pressing the opening end of the glove on the inflation head 14 and realizing the sealing of the glove, then filling a certain amount of gas into the inflation head 14 through the air inlet 16 and filling it into the glove from the air outlet to make the glove expand, then controlling the on-off valve to close and keeping the glove in an inflated state for a certain period of time, such as 10 seconds. During this process, the pressure sensor at the return air port 17 will continuously feedback the detected air pressure magnitude to the controller. The controller will analyze whether there is a pressure difference between the air pressures feedback at the front and back time points of the return air port 17 during this process. If there is no pressure difference, it means that the glove does not leak air and belongs to a qualified product. If there is a pressure difference, it means that the glove has a leakage problem and belongs to an unqualified product.
[0016] Furthermore, it further includes a circularly arranged slide rail 6. A slide seat cooperating with the slide rail 6 is arranged on the mounting base 5. The mounting base 5 is connected to a chain 12. The chain 12 bypasses a sprocket 11. The sprocket 11 is connected to the output end of a first motor. With the above structure, by controlling the first motor to start and driving through the sprocket and chain structure, the mounting base 5 can be driven to move along the slide rail 6, and then the air inspection component is driven to move to the glove putting-on station, the waste removing station and the glove taking station respectively to perform corresponding operations.
[0017] Furthermore, the glove feeding assembly includes a rotating base 3, on which a first movable frame 2 and a second movable frame 20 are mounted. Both the first movable frame 2 and the second movable frame 20 are equipped with first gripping claws 1. Using this structure, by controlling the rotation of the rotating base 3 and then controlling the movement of the movable frames, the first gripping claws 1 can grasp the glove and then feed it with its opening facing downwards to the glove opening assembly 4. In addition, in this embodiment, the structure of the good-quality glove dispensing assembly is the same as that of the glove feeding assembly.
[0018] Furthermore, the waste glove removal assembly includes a rotating frame 9, on which a second gripping claw 8 is provided. The rotating frame 9 is connected to the rotating part of a rotary cylinder, which can drive the rotating frame 9 to rotate, thereby moving the second gripping claw 8 to the waste removal station to grip the waste gloves. Then, the rotating frame 9 is controlled to reverse, moving the waste gloves to the waste collection point and releasing the second gripping claw 8.
[0019] The working principle of this utility model is as follows: The glove feeding component first clamps and transfers the glove, so that the glove is sent to the glove opening component 4 with the opening facing down. At this time, the glove opening component 4 opens the opening of the glove, and the first clamping claw 1 in the glove feeding component releases the glove. The opening claw of the glove opening component 4 descends as a whole, so that the glove is put on the air detection component 7 for air detection. After the glove is put on, the mounting base will drive the air detection component 7 to move cyclically to the subsequent work station, so that the mounting base completes the air detection operation during the movement. The empty air detection components can move one by one to the glove opening component 4 for glove putting, thereby greatly improving the air detection efficiency per unit time. If the glove is found to be leaking after the air detection, when the subsequent glove moves to the waste glove rejection component, the waste glove on the air detection component will be clamped and collected. If the glove is not leaking after the air detection, when the subsequent glove moves to the good glove delivery component, the glove on the air detection component 7 will be clamped and sent to the subsequent processing work station.
Claims
1. A glove gas detection device, characterized by: The glove feeding assembly, the glove opening assembly (4) and the air testing assembly (7) are arranged on the mounting base (5), the mounting base (5) is arranged in multiple and moves along a certain track in a circulating mode, the waste glove removing assembly and the good glove feeding assembly are arranged corresponding to the moving path of the mounting base (5).
2. A glove leak detection apparatus according to claim 1, wherein: The sliding rail (6) is arranged in a ring shape, the mounting base (5) is arranged with a sliding seat matched with the sliding rail (6), the mounting base (5) is connected with the chain (12), the chain (12) passes through the sprocket (11), and the sprocket (11) is connected with the output end of the first motor.
3. A glove leak detection apparatus according to claim 1, wherein: The glove feeding assembly comprises a rotating seat (3), the rotating seat (3) is arranged with a first moving frame (2) and a second moving frame (20), and the first moving frame (2) and the second moving frame (20) are arranged with first clamping claws (1).
4. A glove leak detection apparatus according to claim 1, wherein: The structure of the good glove feeding assembly is the same as that of the glove feeding assembly.
5. A glove leak detector according to claim 1, wherein: The waste glove removing assembly comprises a rotating frame (9), and the rotating frame (9) is arranged with second clamping claws (8).