Cutting piece hanging carrier

By designing a split-structure cutting piece attachment carrier, the clamp can be separated from the main body. By using spring or motor-driven clamps and identification plates, the problem of insufficient clamping capacity of existing carriers is solved, and stable clamping and efficient circulation of cutting pieces are achieved, which meets the automation needs of large factories.

CN224159910UActive Publication Date: 2026-04-24INA INTELLIGENT TECH (ZHEJIANG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
INA INTELLIGENT TECH (ZHEJIANG) CO LTD
Filing Date
2025-05-26
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing fabrication carriers are insufficient in terms of clamping capacity and applicability, and are particularly unsuitable for the high-efficiency, high-volume flow and storage needs of large factories.

Method used

A split-structure fabric piece attaching carrier was designed, in which the clamp and the main body are separable. The clamp is equipped with a hook and a clamping port, and clamping is achieved by using a spring or motor-driven clamping seat. Combined with a sign and ball bearing structure, the clamping stability and automated loading efficiency are improved.

Benefits of technology

It achieves stable clamping and efficient transfer of cut pieces, adapts to the needs of centralized cutting, transfer and storage of large batches of cut pieces, improves the automation level and work efficiency of the factory, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cutting piece hanging carrier which is used for hanging and carrying cutting pieces and solves the problems that an existing carrier for carrying the cutting pieces is inconvenient to clamp the cutting pieces and small in carrying capacity, the adopted technical scheme is that the cutting piece hanging carrier comprises a body and a clamp, the body comprises a hanging part and an advancing part which are connected, and the clamp is arranged on the hanging part. The cutting piece hanging device is characterized in that the body and the clamp are of a split structure, a plurality of hanging positions are arranged on the hanging portion, hanging heads and clamping openings are arranged on the clamp, the hanging heads are used for being detachably hung on the hanging positions, and the clamping openings are used for clamping cutting pieces.
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Description

Technical Field

[0001] This utility model relates to a carrier, and more particularly to a carrier for attaching and transporting cut pieces by clamping. Background Technology

[0002] For large-scale sewing factories, to improve production efficiency, an intensive production model is generally adopted. This typically requires dividing the factory interior into functional zones for centralized, single-processing in each zone. Therefore, a cutting zone needs to be set up within the factory to centrally cut and shape the fabric pieces. Simultaneously, the processed fabric pieces need to be stored in similar, zoned areas to ensure a continuous supply of fabric pieces to the sewing zones. During the movement of fabric pieces, transport tools are usually used. Existing transport tools for fabric pieces are generally rake-type transport tools used in ordinary garment systems. When transporting fabric pieces, fabric pieces from several garments are typically clamped onto one transport tool. Then, under the command of a central controller, the transport tool with the fabric pieces is conveyed to the corresponding processing station to complete each sewing step of the fabric piece. This type of carrier is equipped with multiple finger clamps. Each finger clamp can generally only clamp a few pieces of fabric stacked together, and the clamping range is small. It is not very suitable for clamping stacks of relatively stiff cut pieces. Therefore, it is also not very suitable for the large-scale transfer and transportation of cut pieces in large factories. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a cut piece hanging carrier, which can effectively realize the loading and clamping of cut pieces and is suitable for the large-scale hanging and transportation of cut pieces.

[0004] To solve the aforementioned technical problem, the present invention provides the following technical solution: a fabric piece attaching carrier, comprising a body and a clamp, wherein the body comprises an attaching part and a traveling part connected to each other, characterized in that the body and the clamp are separate structures, the attaching part is provided with a plurality of attaching positions, and the clamp is provided with an attaching head and a clamping opening, the attaching head being used to detachably attach to the attaching position, and the clamping opening being used to clamp the fabric piece.

[0005] The traveling part is typically a roller, but can also be a hook. It is attached to the conveyor rail in the conveyor line and slides or rolls forward on the rail under the push of a flexible drive mechanism. The clamp and the main body are separate structures. When clamping the cut pieces, the clamp generally needs to be removed from the main body, and then reattached after clamping. The clamp has a clamping structure with a clamping jaw. The clamping structure can use a spring as the clamping force, or it can use a stud and nut combination to clamp or release the cut pieces.

[0006] Furthermore, the mounting portion includes a mounting plate with several mounting interfaces. The side edge of the mounting plate has several notches corresponding to the positions of the mounting interfaces, which communicate with the mounting interfaces. The mounting interfaces form the mounting positions, and the notches allow the mounting connector to enter and exit the interfaces. This facilitates loading or unloading between the clamp and the body. Corresponding to the notches and mounting interfaces, a reduced-diameter structure is formed on the mounting connector to allow for proper mating between the mounting connector and the notches and mounting interfaces.

[0007] Furthermore, the mounting plate is connected to the lower end of the U-shaped connecting frame. By providing the connecting frame, a stable connection to the mounting plate can be easily achieved.

[0008] Furthermore, several identification plates are installed on the connecting frame corresponding to the positions of the hanging interfaces. The identification plates serve an identification function, indicating that the corresponding clamps should be hung at the corresponding identification plate positions, facilitating automated loading of the clamps and effectively improving work efficiency.

[0009] Furthermore, the outer circumferential surface of the hook connector is provided with an annular hook groove. A connecting rod is connected to the lower end of the hook connector, and a fixed block is connected to the lower end of the connecting rod. A movable block is movably connected to the upper side of the fixed block on the connecting rod. The clamp is formed between the fixed block and the movable block. Through the cooperation of the hook groove and the hook interface, the positional stability of the clamp on the body is good, and the clamp is not easy to detach from the hook interface.

[0010] Furthermore, flared clamps are provided on the facing end faces of the fixed block and the moving block, with the larger ends of the clamps on the fixed block and the moving block facing each other, and the clamping opening is formed between the clamps. By setting the clamps, the clamping stability of the cut piece can be effectively improved, thus ensuring the stability of the cut piece on the carrier.

[0011] Furthermore, a plurality of ball bearings are movably provided on the upper bottom surface of the hanging groove, with the ball bearings protruding downward toward the lower side of the upper bottom surface. The ball bearings effectively accommodate the smooth sliding of the hanging joint on the support, facilitating the transfer of the empty clamp and the empty body to the cutting machine via the conveyor line.

[0012] Compared with existing technologies, this utility model has the following advantages: The carrier features a separate structure for the clamp and the main body. The clamp can be detached from the main body. When clamping cut pieces, the clamp can be separated from the main body, facilitating the clamping of cut pieces, especially stacked pieces. This makes operation convenient and suitable for the transportation and circulation requirements of large batches of cut pieces. It effectively meets the requirements of large sewing factories for centralized cutting, transfer, and storage of cut pieces, significantly improving work efficiency, reducing costs, and facilitating automation within the factory. Because the clamp can be detached from the main body, the clamp can be configured with complex mechanical structures, ensuring sufficient clamping force on the cut pieces. This allows it to clamp cut pieces with relatively high hardness, expanding the carrier's applicability. Attached Figure Description

[0013] Figure 1 This is the front view of the vehicle.

[0014] Figure 2 This is a side view of the vehicle.

[0015] Figure 3 This is an enlarged structural diagram of the fixture.

[0016] In the diagram: 1. Connecting frame; 2. Traveling part; 21. Connecting seat; 22. Traveling wheel; 3. Sign; 4. Hanging plate; 5. Clamp; 51. Hanging connector; 52. Hanging groove; 53. Connecting rod; 54. Moving block; 55. Clamping seat; 56. Fixed block. Detailed Implementation

[0017] Referring to the accompanying drawings, this fabric piece attaching carrier is used to clamp and attach fabric pieces, and to allow the fabric pieces to move between different functional areas. The structure includes a main body and a clamp 5. The main body includes a connecting attachment part and a traveling part 2. As shown in the figure, the traveling part 2 is located on the upper side of the main body. There are two sets of traveling parts 2, separated by a straight line. The traveling part 2 has a U-shaped connecting seat 21, on which two traveling wheels 22 are rotatably mounted. The carrier runs on a conveyor line with a conveyor rail, which is generally made of aluminum profile. The conveyor rail is embedded in the connecting seat 21. The traveling wheels 22 are vertically mounted, with their outer circumferences supported on the conveyor rail. The entire carrier moves by the rolling of the traveling wheels 22 on the conveyor rail.

[0018] The main body and clamp 5 are separate structures. The clamp 5 can be connected to the main body or detached from it. The clamp 5 is equipped with a hook connector 51 and a clamping slot. One main body corresponds to multiple clamps 5. The hook connector has several hooking positions. Under normal circumstances, the hook connector 51 on one clamp 5 is hooked to one hooking position. The clamping slot is used to clamp the cut pieces. Usually, the clamping slot is used to clamp stacked cut pieces.

[0019] The diagram shows that the mounting part includes a mounting plate 4 with several through-holes on it. Several notches are provided on the side edge of the mounting plate 4 corresponding to the positions of the mounting holes, communicating with the mounting holes to form the mounting positions. The notches allow the mounting connector 51 to enter and exit the mounting holes. Alternatively, the mounting positions can be formed by hooks, with the mounting connector 51 having a mounting structure compatible with the hooks. The main body also includes a connecting frame 1, which is U-shaped. The aforementioned traveling part 2 is located at the upper end of the connecting frame 1, and the mounting plate 4 is connected to the lower end of the U-shaped connecting frame 1 by welding or bolting. Several identification plates 3 are provided on the connecting frame 1 corresponding to the positions of the mounting holes, with one identification plate 3 facing one mounting hole. The identification plates 3 are marked with Arabic numerals.

[0020] The hook connector 51 is cylindrical, and an annular hook groove 52 is provided on the outer circumferential surface of the hook connector 51, extending along the entire outer circumferential surface of the hook connector 51. A connecting rod 53 is connected to the lower end of the hook connector 51, and the connecting rod 53 is vertically arranged. A fixed block 56 is connected to the lower end of the connecting rod 53, and a movable block 54 is movably connected to the upper side of the fixed block 56 on the connecting rod 53. The clamping opening is formed between the fixed block 56 and the movable block 54. A spring can be provided between the movable block 54 and the connecting rod 53. The elastic force of the spring can make the movable block 54 elastically press against the fixed block 56, thereby clamping the cut piece in the clamping opening. Alternatively, a motor screw mechanism can be provided in the movable block 54, and a battery can be installed in the movable block 54 to drive the motor to rotate, thereby moving the movable block 54 relative to the fixed block 56, realizing the clamping and releasing of the cut piece.

[0021] To improve the stability of clamping the cut pieces, flared clamps 55 are provided on the facing end faces of the fixed block 56 and the moving block 54, with the clamps 55 protruding to the outer side of the corresponding end faces. The larger ends of the clamps 55 on the fixed block 56 and the moving block 54 face each other, and the clamping opening is formed between the clamps 55. When clamping the cut pieces, the larger ends of the clamps 55 abut against the surface of the cut pieces.

[0022] The cross-section of the hanging groove 52 can be inverted L-shaped; the figure shows that the cross-section of the hanging groove 52 is C-shaped. An installation cavity is provided within the hanging connector 51, and the upper bottom surface of the hanging groove 52 covers the installation cavity. Several through holes are provided on the upper bottom surface of the hanging groove 52. The number of ball bearings in the installation cavity is the same as the number of through holes. The diameter of the through holes is smaller than the diameter of the ball bearings, and the ball bearings protrude downwards from the through holes onto the lower side of the upper bottom surface. When the clamp 5 is attached as an independent structure to the conveyor rail of the conveyor line, the ball bearings roll in contact with the support surface on the conveyor rail, enabling the clamp 5 to move smoothly on the conveyor rail.

Claims

1. A fabric piece attaching carrier, comprising a body and a clamp, the body including an attachment part and a traveling part connected to each other, characterized in that, The main body and the clamp are separate structures. The hooking part has several hooking positions, and the clamp has hooking heads and clamping openings. The hooking heads are used to detachably hook onto the hooking positions, and the clamping openings are used to clamp the cut pieces.

2. The cut piece attaching carrier according to claim 1, characterized in that, The mounting part includes a mounting plate with several mounting interfaces. The side edge of the mounting plate has several notches corresponding to the positions of the mounting interfaces. The notches communicate with the mounting interfaces, and the mounting interfaces form the mounting positions. The notches allow the mounting head to enter and exit the mounting interfaces.

3. The cut piece attaching carrier according to claim 2, characterized in that, The mounting plate is connected to the lower end of the U-shaped connecting frame.

4. The cut piece attaching carrier according to claim 3, characterized in that, Several identification plates are provided on the connecting frame corresponding to the positions of the hanging interfaces.

5. The cut piece attaching carrier according to any one of claims 1 to 4, characterized in that, The outer circumferential surface of the hook joint is provided with an annular hanging groove. A connecting rod is connected to the lower end of the hook joint, and a fixed block is connected to the lower end of the connecting rod. A movable block is movably connected to the upper side of the fixed block on the connecting rod. The clamp is formed between the fixed block and the movable block.

6. The cut piece attaching carrier according to claim 5, characterized in that, A trumpet-shaped clamp is provided on the opposite end faces of the fixed block and the moving block. The large ends of the clamps on the fixed block and the moving block face each other, and the clamping opening is formed between the clamps.

7. The cut piece attaching carrier according to claim 5, characterized in that, A plurality of ball bearings are movably disposed on the upper bottom surface of the hanging groove, and the ball bearings protrude toward the lower side of the upper bottom surface.