Conveying system carrier
Through the specific load and limit structure made of flexible materials, the problem of large space occupation during no-load is solved, and efficient storage and stable transportation of vehicles are achieved on the production line.
Patent Information
- Application Number
- CN202421771299.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-07-25
AI Technical Summary
The existing conveyor system vehicles occupy a large amount of space when they are no load, which affects the space utilization and efficiency of the production line.
The load-bearing frame is made of flexible materials, and the coupling frame shrinks under gravity to reduce the space occupancy of the empty vehicle, combining the limit structure and spring support to maintain stability.
Effectively reduce the space occupation of empty vehicles, improve the space utilization and production efficiency of the production line, and save labor.
Smart Images

Figure CN223291657U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a carrier, in particular to a carrier used in a conveying system for realizing material conveying. Background Art
[0002] Production lines for garments, shoes, and hats require carriers to transport materials along the line, delivering them to various workstations for the production of each step. Existing cavity-type carriers are often made of rigid materials, providing a stable cavity for storing materials. While these carriers facilitate material access, stacking empty carriers requires significant space, creating significant pressure.
[0003] A Chinese patent document (publication number: CN219030735U) discloses a two-wheeled vehicle and a hanging conveying system, wherein the two-wheeled vehicle includes a running mechanism, a hanger, and a drawbar assembly. The drawbar assembly includes a drawbar, a rotational positioning seat, a rotational positioning head, a spring, and a limit pin. The upper end of the drawbar is connected to the running mechanism, and the lower end passes through the rotational positioning seat and the rotational positioning head in sequence, and is connected to the rotational positioning head via a limit pin. The rotational positioning seat rotates and cooperates with the joint formed at the top of the hanger and the rotational positioning head to reduce hanger rotation. The spring is sleeved on the middle and lower portion of the drawbar, with its ends respectively resting on a protrusion on the drawbar surface and the upper end of the joint to reduce vertical swing of the hanger. A triangular plate is provided on the middle and lower portion of the drawbar, which cooperates with the joint to laterally position and reduce lateral swing of the hanger. When the two-wheeled vehicle of this utility model moves, the drawbar assembly can significantly reduce the swing and rotation of the hanger, thereby ensuring the stability of the two-wheeled vehicle during movement.
[0004] The space occupied by this type of carrier in various working conditions during the application process remains basically unchanged. Therefore, a larger space is required to accommodate the accumulation of carriers, which will affect the space utilization of the production line. Utility Model Content
[0005] The technical problem to be solved by the present invention is to provide a conveying system carrier, which occupies a small space during the process, especially when empty, and a special empty carrier storage station can be set up on the production line, which is conducive to improving the production efficiency of the production line.
[0006] In order to solve the technical problems, the technical solution of the present invention is: a conveying system carrier, comprising a hanging part and a carrier body, a walking part is provided at the upper end of the hanging part, and a cavity for containing goods is formed in the carrier body, and it is characterized in that a connecting frame is provided at the mouth of the cavity, the connecting frame extends along the mouth of the cavity, the cutting body is suspended on the connecting frame, one end of the connecting frame is movably connected to the lower end of the hanging part, and the other end of the connecting frame is a free end; the carrier body is made of flexible material.
[0007] The coupling frame is typically made of metal, which has a certain weight and hardness. When the container is empty, the walls of the container itself do not provide outward support. Under the action of the coupling frame's gravity, the carrier body will shrink, greatly reducing the space occupied by the carrier.
[0008] Furthermore, there are two cavities in the carrier body, which are separated by a spacer. A ring buckle is provided at the upper side edge of the spacer, and the ring buckle is sleeved on the connecting frame; a ring buckle is also provided at the upper side edge of the side wall opposite to the cavity and the spacer, and the ring buckle is also sleeved on the connecting frame.
[0009] Furthermore, a shoulder is connected to the lower end of the hanging portion, and the shoulder is in a strip shape. The connecting frame is hinged to the back side of the shoulder, and the width of the connecting frame is smaller than the length of the shoulder.
[0010] Furthermore, a mounting seat is connected to the back of the shoulder support, and a through hole is provided on the mounting seat, and the connecting frame is connected to the through hole.
[0011] Furthermore, the front of the shoulder support is connected to a connecting seat, the lower end of the hanging part is gap-inserted into the connecting seat, a limiting piece is provided on the lower end of the hanging part, and a limiting structure is provided in the connecting seat, which is used to limit the rotation of the hanging part within a range of 90 degrees through the cooperation of the limiting structure and the limiting piece.
[0012] Furthermore, the limiting member is cylindrical, and concave-convex structures for matching are provided on the facing end surfaces of the limiting member and the limiting structure, and the end surfaces of these concave-convex structures are spiral surfaces.
[0013] Furthermore, the connecting seat includes a conical cylinder and a plate-shaped base that are connected as one body, and the back seat is fixedly connected to the base from the back side of the shoulder by connecting screws.
[0014] Furthermore, a notch is formed at a middle position of one end of the connecting frame, and the connecting frame is inserted into the back seat.
[0015] Furthermore, a plurality of pockets are provided on the outer side of the carrier body.
[0016] Compared to the prior art, the present invention offers the following advantages: Because the carrier is made of cloth, which has relatively soft physical properties, the coupling frame is movably connected to the hook portion. Under the influence of its gravity, the coupling frame moves toward the hook portion, exerting pressure on the carrier, significantly compressing the carrier, thereby reducing the space occupied by an empty carrier. Because an empty carrier occupies less space, a dedicated empty carrier storage station can be set up on the production line as the starting point of the line. This eliminates the need for carriers to leave the line during production, effectively saving labor and ensuring production line efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a three-dimensional diagram of the carrier of the conveying system in one direction.
[0018] Figure 2 This is a three-dimensional diagram of the conveying system carrier from another direction.
[0019] Figure 3 This is a structural diagram of an explosion method of the carrier of this conveying system.
[0020] Figure 4 This is a structural diagram of another explosion method of the conveying system vehicle.
[0021] Figure 5 This is an enlarged structural diagram of the connecting seat.
[0022] In the figure, 1. roller; 2. hanging part; 3. spring; 4. connecting seat; 41. conical cylinder; 42. base; 43. spiral surface; 5. shoulder; 6. connecting frame; 7. carrier body; 71. buckle; 72. pocket; 73. cavity; 74. spacer; 8. limiter; 9. back seat; 10. mounting seat. DETAILED DESCRIPTION
[0023] In conjunction with the drawings in the specification, the conveying system carrier is applied to the conveying system of a production line to realize the loading and conveying of materials. The production line can be a shoe production line or a clothing production line.
[0024] This carrier includes a hooking portion 2 and a carrier body 7. The carrier body 7 is made of a flexible material such as cloth or a mesh bag, and is formed with a cavity 73 for holding items. Although the figure shows the specific shape of the carrier body 7, in actual use, it does not have a fixed shape, but rather varies with the amount of items carried. The hooking portion 2 is a rod-shaped body, with a running portion provided at its upper end. This running portion can be a roller 1 as shown in the figure, or it can be in the form of a hook. The carrier body 7 is suspended at the lower end of the hooking portion 2.
[0025] A coupling frame 6 is provided on the carrier body 7 at the mouth of the cavity 73. The carrier body 7 is suspended on the coupling frame 6. The coupling frame 6 is generally a stainless steel bar and extends along the mouth of the cavity 73. In other words, the coupling frame 6 can open the mouth of the cavity 73. One side of the coupling frame 6 is movably connected to the lower end of the hanging portion 2, and the coupling frame 6 rotates around the one side of the coupling frame 6 as an axis.
[0026] To ensure the overall symmetry of the carrier and to stabilize its position during travel, the carrier body 7 includes two cavities 73 of equal size separated by a spacer 74 located in the center of the carrier body 7. A buckle 71 is provided at the upper edge of the spacer 74. The buckle 71 is integrally connected to the spacer 74 and is formed by sewing the portion of the spacer 74 that extends outward. The buckle 71 is loosely sleeved on the connecting frame 6. A buckle 71 is also provided at the upper edge of the side wall of the cavity 73 opposite the spacer 74. The buckle 71 is made of the same material as the side wall and is integrally connected. The buckle 71 is also loosely sleeved on the connecting frame 6. Aside from the buckles 71 at the aforementioned locations, no other connection structures are provided on the carrier body 7 for connection to the connecting frame 6. In order to facilitate the transportation of some small auxiliary materials, a plurality of pockets 72 are provided on the outer surface of the carrier body 7. Some small auxiliary materials can be placed in these pockets 72, thereby making it convenient for the operator to quickly find and take the small auxiliary materials.
[0027] Because the hanging portion 2 is rod-shaped, a shoulder 5 is attached to the lower end of the hanging portion 2 to facilitate connection between the hanging portion 2 and the carrier body 7. The shoulder 5 is strip-shaped and has a certain width, similar to the shoulder of a conventional clothes hanger. One end of the connecting frame 6 is hingedly connected to the back of the shoulder 5. The width of the connecting frame 6 is smaller than the length of the shoulder 5, providing sufficient installation space for the shoulder 5 to facilitate connection. To facilitate connection, a mounting base 10 is connected to the back of the shoulder 5. The mounting base 10 has a through hole, into which the connecting frame 6 is inserted. The mounting base 10 is fixed to the back of the shoulder 5 via screws.
[0028] The hooking portion 2 and the carrier body 7 can have a certain angle of deflection, so that the relative position of the walking portion on the hooking portion 2 and the carrier body 7 can be adjusted. By changing the relative position of the two, the carrier can adapt to the different travel direction requirements on the production line. Therefore, a connecting seat 4 is connected to the front of the shoulder support 5, and the lower end of the hooking portion 2 is inserted into the connecting seat 4 with a gap. A limiter 8 is provided on the lower end of the hooking portion 2, and a limit structure is provided in the connecting seat 4. The limit structure and the limiter 8 cooperate to limit the rotation of the hooking portion 2 within a range of 90 degrees. As shown in the figure, the connecting seat 4 includes a conical cylinder 41 in the shape of a truncated cone and a plate-shaped base 42. The conical cylinder 41 and the base 42 are connected as a whole. A mounting pit is formed on the front of the shoulder support 5, and the base 42 is embedded in the mounting pit. A backrest 9 is provided on the back of the shoulder support 5. The backrest 9 corresponds to the position of the base 42. Connecting screws pass through the backrest 9 and the bottom wall of the installation pit and connect to the base 42, thereby achieving a secure connection between the hanging portion 2 and the shoulder support 5. The connecting frame 6 is not a completely closed-loop structure. A notch is provided at the middle of one end of the connecting frame 6, and one end of the connecting frame 6 is rotatably inserted into the backrest 9. The limiting member 8 can also be a rod, and the limiting structure can be a limiting groove for cooperating with the rod. The limiting rod is embedded in the limiting groove to achieve the relative position between the walking portion and the carrier body 7.
[0029] Figure 3 、 4 5 , the stopper 8 is cylindrical, with mating concave-convex structures provided on the facing end surfaces of the stopper 8 and the stopper structure. The end surfaces of these concave-convex structures are spiral surfaces 43. To improve the stability of the mating of these concave-convex structures, a spring 3 is sleeved on the upper side of the coupling seat 4 on the hanging portion 2. The lower end of the spring 3 contacts the coupling seat 4, causing the corresponding spiral surfaces 43 to fit together with a certain pressure.
Claims
1. A conveying system carrier, comprising a hooking portion and a carrier body, wherein the upper end of the hooking portion is provided with a walking portion, and a cavity for containing goods is formed in the carrier body, characterized in that: A connecting frame is provided at the mouth of the cavity, extending along the mouth of the cavity. The cutting body is hung on the connecting frame. One end of the connecting frame is movably connected to the lower end of the hanging part, and the other end of the connecting frame is a free end. The carrier body is made of flexible material.
2. The conveying system carrier according to claim 1, characterized in that: There are two cavities in the carrier body, which are separated by a spacer. A ring buckle is provided at the upper side edge of the spacer, and the ring buckle is sleeved on the connecting frame; a ring buckle is also provided at the upper side edge of the side wall opposite to the cavity and the spacer, and the ring buckle is also sleeved on the connecting frame.
3. The conveying system carrier according to claim 1 or 2, characterized in that: A shoulder is connected at the lower end of the hanging portion, and the shoulder is strip-shaped. The connecting frame is hinged on the back side of the shoulder, and the width of the connecting frame is smaller than the length of the shoulder.
4. The conveying system carrier according to claim 3, characterized in that: The back of the shoulder support is connected with a mounting seat, the mounting seat is provided with a through hole, and the connecting frame is connected in the through hole.
5. The conveying system carrier according to claim 3, characterized in that: The front of the shoulder support is connected to a connecting seat, and the lower end of the hanging part is gap-insulated in the connecting seat. A limiting piece is provided on the lower end of the hanging part, and a limiting structure is provided in the connecting seat. The limiting structure and the limiting piece cooperate to limit the rotation of the hanging part within a range of 90 degrees.
6. The conveying system carrier according to claim 5, characterized in that: The limiting member is cylindrical, and concave-convex structures for matching are provided on the facing end surfaces of the limiting member and the limiting structure, and the end surfaces of these concave-convex structures are spiral surfaces.
7. The conveying system carrier according to claim 5, characterized in that: The connecting seat comprises a conical cylinder and a plate-shaped base which are connected as one body, and the back seat is fixedly connected with the base from the back side of the shoulder through connecting screws.
8. The conveying system carrier according to claim 7, characterized in that: A notch is formed at the middle position of one end of the connecting frame, and the connecting frame is inserted into the back seat.
9. The conveying system carrier according to claim 1 or 2, characterized in that: A plurality of pockets are provided on the outer side of the carrier body.
Citation Information
Patent Citations
Double-wheel carrier and hanging conveying system
CN219030735U