Bidirectional assembly equipment for ultra-long-distance conveying of dual-mode glove chains

By designing a bidirectional assembly equipment for dual-mode glove chains for ultra-long-distance transport, and employing sprocket drive and automated assembly mechanisms, the problem of manual labor dependence in glove chain production has been solved, achieving automated assembly, reducing the labor intensity of workers, and improving production efficiency.

CN224026417UActive Publication Date: 2026-03-24HANGZHOU SHIELD CHAIN
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In the current technology, the production of glove chains still relies on manual labor, resulting in high labor intensity for workers and making it difficult to achieve automated assembly.

Method used

A bidirectional assembly device for dual-mode gloves using a chain for ultra-long-distance transport was designed. It employs first and second sprocket drives, combined with intermittent drive wheels and an assembly mechanism, including a rotary cylinder, a telescopic cylinder, and a rotary motor. The automated assembly of the hand mold is achieved through an electric lifting rod and a limit plate.

Benefits of technology

It enables automated assembly of glove chains, reduces the labor intensity of workers, is suitable for assembling glove chains over ultra-long distances, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses bi-directional assembly equipment for ultra-long-distance conveying of a dual-mode glove chain, which comprises a working table, and a first bracket group, a second bracket group and a third bracket group which are fixedly mounted, the first chain wheel is rotationally connected to the first bracket group; the second chain wheel is rotationally connected to the second bracket group; the glove chain is meshed with the first chain wheel and the second chain wheel; assembling mechanisms are mounted on the working table on the two sides of the glove chain; compared with the prior art, the glove chain transmission device has the advantages that the structure is simple, intermittent transmission is arranged, driving without rotation of the driving motor can be achieved, automatic assembly is achieved by being matched with an assembly mechanism, and the glove chain transmission device can be suitable for ultra-long-distance glove chains due to the arrangement of the third chain wheel.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a chain, especially a bidirectional assembly equipment for long-distance conveying double-mold glove chain. BACKGROUND

[0002] Glove chains are used for manufacturing disposable gloves. At present, disposable gloves are widely used in many fields, such as medical instrument manufacturing, food processing industry, etc. The demand for disposable gloves is increasing linearly, and the demand for glove chains is also increasing. At present, the production of glove chains in the industry still needs to rely on manual work, which is labor-intensive. Therefore, it is very important to obtain a bidirectional assembly equipment for long-distance conveying double-mold glove chain that can realize automatic assembly of hand molds. SUMMARY

[0003] To solve the above technical problems, the purpose of the utility model is to provide a bidirectional assembly equipment for long-distance conveying double-mold glove chain, which comprises:

[0004] A workbench is fixedly installed with a first support group and a second support group.

[0005] A first sprocket is rotatably connected to the first support group, and a second sprocket is rotatably connected to the second support group.

[0006] A glove chain is engaged with the first sprocket and the second sprocket.

[0007] An intermittent drive wheel is fixed on the first sprocket or the second sprocket. The equipment further comprises a drive motor fixed on the workbench. The output shaft of the drive motor is fixed with a drive gear engaged with the intermittent drive wheel.

[0008] An assembly mechanism is installed on the workbench on both sides of the glove chain.

[0009] The assembly mechanism comprises a rotating air cylinder installed on the workbench. A telescopic air cylinder is fixed on the rotating air cylinder. A rotary motor is fixed on the output end of the telescopic air cylinder. A grabbing air cylinder is fixed on the output shaft of the rotary motor. The straight line where the output shaft of the rotary motor is located is collinear with the straight line where the axis of the mold fixing column fixed on both sides of the glove chain is located.

[0010] The equipment further comprises at least one third support group fixedly installed on the workbench and located between the first support group and the second support group. A third sprocket engaged with the glove chain is rotatably connected to the third support group. The third support group comprises two opposite third support bodies. Third shafts are fixed on both sides of the third sprocket. Third perforations are formed in the third support bodies and matched with the third shafts.

[0011] Through the technical scheme, the glove chain is driven by the first sprocket and the second sprocket, and the single-section transmission of the glove chain is realized by the intermittent driving wheel, and the intermittent time is provided for the assembling mechanism to perform the assembling work, and at least one third sprocket is added to the utility model, so that the glove chain with the super-long distance can be matched with the hand mold assembling, and the chain falling in the middle part is supported.

[0012] The first sprocket is fixed with a first rotating shaft on both sides, the first frame body is provided with a first perforation matched with the first rotating shaft, the second sprocket is fixed with a second rotating shaft on both sides, and the second frame body is provided with a second perforation matched with the second rotating shaft.

[0013] The intermittent driving wheel is fixed on the first rotating shaft or the second rotating shaft, and the intermittent driving wheel is located on the outside of the first frame body or the second frame body.

[0014] The rotating air cylinder and the workbench surface are fixedly connected with an electric lifting rod, the hand mold can be taken from above the placing groove through the electric lifting rod, and the hand mold is at least partially taken out from one side of the placing groove, so that the hand mold is clamped.

[0015] The workbench is fixed with a placing groove, a hand mold outlet is formed in one side of the placing groove, a plurality of hand molds are linearly stacked on the placing groove, a threaded groove is formed in the hand mold, and a matched thread is formed in the mold fixing column.

[0016] The utility model also can take out the hand mold from the bottom, so that the lowermost hand mold is taken out, and the upper hand mold falls, the hand mold outlet of the placing groove is fixedly connected with a limiting plate, so that the lowermost hand mold and the upper hand mold are prevented from rubbing and driving the upper hand mold to move out of the placing groove.

[0017] Compared with the prior art, the utility model has the following benefits: the utility model has the simple structure, sets up intermittent transmission, can realize the driving of the driving motor without stopping, and realizes the automatic assembling of the assembling mechanism, and the third sprocket can be applied to the glove chain with the super-long distance. ACCURACY OF DRAWINGS

[0018] Figure 1 It is a plan view of the utility model;

[0019] Figure 2 It is a plan view of the utility model during assembling;

[0020] Figure 3 It is a side view of the first sprocket, the second sprocket, the third sprocket and the glove chain matching structure of the utility model;

[0021] Figure 4 is a side view of one embodiment of the assembly mechanism of the utility model;

[0022] Figure 5 is a side view of another embodiment of the assembly mechanism of the utility model;

[0023] Figure 6 is a placement groove structure of the second embodiment of the utility model;

[0024] Figure 7 is a structural schematic view of the driving gear cooperating with the driving tooth of the utility model;

[0025] Reference signs:

[0026] 1 workbench surface; 2 glove chain;

[0027] 3 first support group; 4 first frame body; 5 first chain wheel;

[0028] 6 second support group; 7 second frame body; 8 second chain wheel;

[0029] 9 third support group; 10 third frame body; 11 third chain wheel;

[0030] 12 intermittent driving wheel; 13 driving motor; 14 output shaft of driving motor; 15 driving tooth;

[0031] 16 rotating air cylinder; 17 telescopic air cylinder; 18 rotating motor; 19 grabbing air cylinder; 20 electric lifting rod;

[0032] 21 placement groove; 22 hand mold; 23 hand mold outlet; 24 threaded groove; 25 limiting plate; 26 electric linear guide rail; 27 mold fixing column. DETAILED DESCRIPTION

[0033] In order to make the person skilled in the art better understand the utility model, so that the scope of protection of the utility model is more clearly limited, the utility model is described in detail below according to some specific embodiments of the utility model. It should be noted that the following is only some specific embodiments of the utility model concept and is only a part of the embodiments of the utility model, and the specific and direct description of the related structure is only for the convenience of understanding the utility model, and each specific feature does not of course, directly limit the implementation range of the utility model.

[0034] With reference to the drawings, the utility model adopts the following technical scheme, a kind of for long-distance conveying double mold glove chain bidirectional assembly equipment, including:

[0035] Workbench surface 1 is fixedly installed with first support group 3 and second support group 6;

[0036] The first sprocket 5 is rotationally connected to the first support group 3, and the second sprocket 8 is rotationally connected to the second support group 6.

[0037] The glove chain 2 of the existing structure is engaged with the first sprocket 5 and the second sprocket 8.

[0038] The intermittent driving wheel is fixed on the first sprocket 5 or the second sprocket 8, and the driving motor 13 is fixed on the workbench 1.

[0039] The assembly mechanism is installed on the workbench 1 on both sides of the glove chain 2.

[0040] The assembly mechanism comprises a rotary cylinder 16 installed on the workbench 1, a telescopic cylinder 17 fixed on the rotary cylinder 16, a rotary motor 18 fixed on an output end of the telescopic cylinder 17, a grabbing cylinder 19 fixed on an output shaft of the rotary motor 18, and the output shaft of the rotary motor 18 is collinear with an axis of the mold fixing column 27 fixed on both sides of the glove chain 2.

[0041] The third support group 9 is fixedly installed on the workbench 1 and located between the first support group 3 and the second support group 6, and the third sprocket 11 engaged with the glove chain 2 is rotationally connected to the third support group 9.

[0042] The intermittent transmission distance is matched with the interval between the two adjacent mold fixing columns 27.

[0043] The glove chain 2 is driven by the first sprocket 5 and the second sprocket 8, and the glove chain 2 is single-joint driven by the intermittent driving wheel.

[0044] The first support group 3 comprises two opposite first frame bodies 4, and the second support group 6 comprises two opposite second frame bodies 7.

[0045] The intermittent drive wheel is fixed on the first rotating shaft or the second rotating shaft, and is located outside the first frame body 4 or the second frame body 7.

[0046] The rotating cylinder 16 and the workbench 1 are fixedly connected with an electric lifting rod 20, the hand mold 22 can be taken from above the placing groove 21 through the electric lifting rod 20, that is, the hand mold 22 is at least partially taken out from one side of the placing groove 21, so as to be clamped. In this mode, the electric linear guide rail 26 is fixed on the workbench, and the sliding block of the electric linear guide rail 26 is fixedly connected with the electric lifting rod 20.

[0047] If the electric lifting rod 20 is not used, the rotating cylinder 16 can be fixed on the sliding block of the electric linear guide rail 26.

[0048] The workbench is fixed with the placing groove 21, one side of the placing groove 21 is provided with a hand mold outlet 23, a plurality of hand molds 22 are linearly stacked on the placing groove 21, the hand mold 22 is provided with a threaded groove 24, and the mold fixing column 27 is provided with a matching thread matched with the threaded groove.

[0049] The utility model also can take the hand mold 22 through the bottom, then the last hand mold 22 is taken out, the last hand mold 22 falls, and the limit plate 25 is fixedly connected at the hand mold outlet 23 of the placing groove 21, so as to prevent the last hand mold 22 and the last hand mold 22 from being rubbed and driving the last hand mold 22 to move transversely out of the placing groove 21.

[0050] The utility model realizes taking and installing hand mold through the assembly mechanism, the electric linear guide rail 26 is perpendicular to the conveying direction of the glove chain 2, the sliding block of the electric linear guide rail 26 moves, drives the hand mold 22 to move, so that the rotating motor 18 rotates and slightly realizes threaded feeding to the direction of the glove chain 2.

[0051] Compared with the prior art, the utility model has the following benefits: the utility model has the simple structure, sets up intermittent transmission, can realize the driving of the driving motor 13 without stopping rotating, realizes automatic assembly through the adaptive assembly mechanism, and the third sprocket 11 can be suitable for the glove chain 2 of super-long distance due to the setting.

[0052] The above description is not a limitation of the utility model, and the utility model is not limited to the above examples, and the changes, modifications, additions or replacements made by the technical personnel in the technical field within the essential range of the utility model should also belong to the protection range of the utility model.

Claims

1. A bidirectional assembly device for conveying dual-mode glove chains over ultra-long distances, characterized in that: include: The workbench (1) is fixedly equipped with a first support group (3) and a second support group (6); The first sprocket (5) is rotatably connected to the first support group (3), and the second sprocket (8) is rotatably connected to the second support group (6); The glove chain (2) meshes with the first sprocket (5) and the second sprocket (8); An intermittent drive wheel is fixed on the first sprocket (5) or the second sprocket (8), and a drive motor (13) is fixed on the worktable (1). The output shaft (14) of the drive motor is fixed with drive teeth (15) that mesh with the intermittent drive wheel. Assembly mechanisms are installed on the worktables (1) located on both sides of the glove chain (2); The assembly mechanism includes a rotary cylinder (16) mounted on the workbench (1), a telescopic cylinder (17) fixed on the rotary cylinder (16), a rotary motor (18) fixed at the output end of the telescopic cylinder (17), a gripping cylinder (19) fixed on the output shaft of the rotary motor (18), and the straight line of the output shaft of the rotary motor (18) is collinear with the straight line of the axis of the mold fixing column (27) fixed on both sides of the glove chain (2); It also includes at least one third support group (9) fixedly installed on the workbench (1) and located between the first support group (3) and the second support group (6), wherein a third sprocket (11) that meshes with the glove chain (2) is rotatably connected to the third support group (9).

2. The bidirectional assembly equipment for ultra-long-distance conveying of dual-mode glove chains according to claim 1, characterized in that: The first support group (3) includes two opposing first frames (4), and the second support group (6) includes two opposing second frames (7).

3. The bidirectional assembly equipment for ultra-long-distance conveying of dual-mode glove chains according to claim 2, characterized in that: The first sprocket (5) has a first rotating shaft fixed on both sides, and the first frame (4) has a first through hole that cooperates with the first rotating shaft. The second sprocket (8) has a second rotating shaft fixed on both sides, and the second frame (7) has a second through hole that cooperates with the second rotating shaft.

4. The bidirectional assembly equipment for ultra-long-distance conveying of dual-mode glove chains according to claim 3, characterized in that: The intermittent drive wheel is fixed on the first or second rotating shaft, and the intermittent drive wheel is located on the outside of the first frame (4) or the second frame (7).

5. The bidirectional assembly equipment for ultra-long-distance conveying of dual-mode glove chains according to claim 1, characterized in that: An electric lifting rod (20) is fixedly connected between the rotating cylinder (16) and the worktable (1).

6. The bidirectional assembly equipment for conveying dual-mode glove chains over ultra-long distances according to claim 1, characterized in that: The workbench is fixed with a placement groove (21), and a hand mold outlet (23) is provided on one side of the placement groove (21). Several hand molds (22) are linearly stacked on the placement groove (21). The hand molds (22) are provided with threaded grooves (24), and the mold fixing column (27) is provided with mating threads that are compatible with the threads.