Assembly line carrier

By designing a carrier structure with multi-layered open cavities and oblique cut connections, the problem of existing carriers being unable to adapt to the transportation of various types of product components was solved, achieving stable transportation and efficient operation of fragmented products.

CN223950085UActive Publication Date: 2026-02-27飞跃时代(浙江)科技有限公司
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520515179.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-27
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

Existing vehicles have complex structures, making them difficult to adapt to the transportation of various product components, and are also cumbersome to operate.

Method used

A conveyor belt carrier comprising a carrier body and a walking structure was designed. The carrier body has multiple cavities with open openings, which facilitates the classification and storage of product components. Stable connection is achieved through oblique cuts and connecting rod structures. The walking structure adopts a hook-type or roller structure to move along the guide rail.

Benefits of technology

It enables the stable transport of fragmented product components, reduces the time operators spend searching for them, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223950085U_ABST
    Figure CN223950085U_ABST
Patent Text Reader

Abstract

The utility model discloses an assembly line carrier, which is applied to an assembly line, is used for carrying and conveying product components and solves the problem of conveying fragmentary product components on the assembly line, and adopts the technical scheme that the assembly line carrier comprises a carrier body and a walking structure, and is characterized in that the walking structure is arranged on the carrier body; a containing cavity used for containing product components is formed in the carrier body, and the upper end of the containing cavity is open. The carrier bodies are divided into at least two layers, and the different layers of carrier bodies are vertically separated and connected together; a bracket is arranged on the walking structure, and the carrier body is placed on the bracket.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a flow line, in particular to a load specific for carrying the component of the product prepared by the flow line. BACKGROUND

[0002] The flow line is used for preparing the product with multiple processing procedures, and the product component is carried and transported by the carrier during preparation, the carrier carries the component to move on the flow line, thereby sequentially completing the preparation of each procedure of the product. According to the different properties of the product component, the required carrier structure is generally different, for example, some components of footwear products are relatively small and scattered, and the hardness is relatively large, and it is not too suitable to realize transportation by clamping.

[0003] Chinese patent document (publication number: CN 217996558U) discloses a production line material hanging basket device, relating to material storage device technical field, including top frame, sliding seat and guide rail, sliding seat slidingly installed on the outside of guide rail, guide rail is arranged along the production line, that is, the sliding seat can move along the flow line as needed, the bottom plate is connected below the top frame through the basket frame, the top frame, the bottom plate and the basket frame form a hanging basket structure and are used for storing product assembly materials, two groups of hanging plates are arranged on the top of the top frame, and the two groups of hanging plates move towards each other, two hanging plates are fixedly connected with clamping columns at the top, and the positions of the two clamping columns are opposite. The utility model discloses that the two clamping columns are respectively clamped into the two hanging ears from the opposite direction by controlling the opposite movement of the two hanging plates, and the stability of the position of the two hanging plates is ensured by the elastic connection of the first elastic element, that is, the stability of the connection between the hanging basket structure and the sliding seat can be improved, so that the hanging basket structure is more convenient to install and disassemble, and is more stable during use.

[0004] Although the hanging basket type carrier can realize the loading of scattered product components, its structure is relatively complex and cannot adapt to the carrying and transportation of various product components. It is relatively troublesome for the operator to find the target product component at the work station of the flow line. UTILITY MODEL CONTENTS

[0005] The technical problem to be solved by the utility model is to provide a flow line carrier which is suitable for transporting scattered product components.

[0006] To solve the technical problem, the technical scheme of the utility model is as follows: a flow line carrier, including a load specific and a walking structure, characterized in that the load specific has a cavity for accommodating product components, and the cavity is open at the upper end; the load specific is at least two layers, and the different layers of the load specific are connected together in a top-down manner; the walking structure is provided with a bracket, and the load specific is placed on the bracket.

[0007] The walking structure can be a hook structure, a sliding block structure or a roller structure, which is in contact with the guide rail in the flow line and moves along the guide rail under the action of the driving mechanism. When carrying the product components, the product components are directly scattered in the cavities of the carriers. Due to the existence of multiple layers of carriers, the product components can be roughly classified and stored in the carriers of different layers. The carriers are generally naturally placed on the bracket, and generally do not need to be fixed by using other connecting structures.

[0008] Further, the carriers are respectively formed with inclined notches at one side, so that the side wall of the carrier is lower outside and higher inside at the position of the inclined notch. This makes the structure of the carrier similar to a dustpan, and the product components are generally taken and placed from the position of the inclined notch on the carrier, which is convenient for taking and placing the product components.

[0009] Further, the projection area of the carriers is large at the top and small at the bottom, and the inclined notches of the carriers of different layers are staggered in the horizontal direction. The arrangement of these carriers is reasonable, and it is very convenient and fast to take and place the product components.

[0010] Further, the adjacent two layers of carriers are connected by vertically arranged connecting rods. The connecting rods are generally several, and the connection between the carriers of different layers is realized by the connecting rods. The structure is simple and convenient to assemble, the view in the cavity is wide, and it is convenient to find the target product component in the carrier.

[0011] Further, an outward flange is integrally formed at the outer edge of the upper part of the carrier, the flange extends along the entire upper part of the carrier, and the end of the connecting rod is connected at the position of the flange. By forming the flange, the strength of the carrier is good, and the connection between the connecting rod and the carrier is also convenient.

[0012] Further, a sleeve extending downward is integrally formed between the flange and the outer side of the carrier, and the two ends of the connecting rod are respectively inserted into the sleeves of the adjacent two layers of carriers. This facilitates the connection between the connecting rod and the carrier, and several layers of carriers can be easily connected together.

[0013] Further, the bracket is formed by connecting several strip-shaped bodies together, and the two ends of the strip-shaped body are respectively arc-shaped curved upward to adapt to the bottom end of the bottom layer of carriers. The structure of such a bracket is simple and light, and can provide stable support for the carriers.

[0014] Further, a plurality of partitions are provided on the bottom surface of the cavity of the carrier, and the partitions are arranged in intersection to form a plurality of separated storage spaces in the carrier. By forming a plurality of storage spaces in the cavity, the carrying of scattered materials can be well adapted.

[0015] Compared with the prior art, the utility model has the beneficial effects that: the carrier body is formed with a containing cavity, can adapt to carry some scattered product components, will not cause the damage of product components in the carrying process, thereby facilitates the operation of the footwear product assembly line. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is the stereogram of the carrier body.

[0017] Figure 2 is the structural view of the carrier body and the walking structure combined together.

[0018] In the drawing: 1, carrier body; 2, connecting rod; 3, sleeve; 4, flanging; 5, bevel cutout; 6, containing cavity; 7, walking frame; 8, roller; 9, bracket. PREFERRED EMBODIMENT

[0019] Combining with the drawings, the assembly line is used to prepare product components into finished products, the structure includes closed loop main rail, flexible driving mechanism and main rail parallel arrangement, driving mechanism adapts to the setting of main rail, driving mechanism is spaced apart and is provided with several protruding driving parts, driving part is used to push the carrier to go forward on the main rail. A plurality of workstations are provided on the main rail, and the workstations protrude to the outside of the main rail, and the workstations are formed with stations at the positions of the workstations, and the stations are provided with processing machines. The operator sits at the station, and the corresponding process of the product is completed by using the processing machine.

[0020] The carrier is needed on the assembly line to realize the carrying and conveying of product components, and the structure of the carrier includes a carrier body 1 and a walking structure.

[0021] The carrier body 1 is generally molded from plastic, and has a cavity 6 for receiving product components. The cavity 6 is open at the top to facilitate the loading and unloading of the product components. To accommodate the small size of the product components, a plurality of partitions are provided on the bottom of the cavity 6. The partitions are arranged in intersecting relationship to form a plurality of separate storage spaces in the carrier body. The partitions are generally connected to the bottom of the cavity 6 by way of insertion. The carrier body 1 is formed by a bottom and a side wall which are connected together. The side walls of the different layers of the carrier body 1 are each formed with a bevel 5 at one end. The bevel 5 is formed by cutting away a portion of the side wall at the end of the carrier body 1, so that the side wall is lower on the outside and higher on the inside at the location of the bevel 5. As shown in the drawings, the carrier body 1 is two layers. In actual use, the carrier body 1 can be three or four layers. The different layers of the carrier body 1 are connected together in stacked relationship. The product components of the same type can be stored in each layer of the carrier body 1. The different layers of the carrier body 1 are different in size. The projection area of the carrier body 1 is smaller at the top and larger at the bottom. The bevels 5 of the different layers of the carrier body 1 are staggered in the horizontal direction. The loading and unloading of the product components is generally performed from the end of the carrier body 1 having the bevel 5.

[0022] Figure 2 As shown in the drawings, the walking structure includes a walking frame 7. Two sets of rollers 8 are rotatably mounted on the walking frame 7. The rollers 8 are used to rollingly travel on the main track. A bracket 9 is provided on the walking frame 7. The carrier body 1 is placed on the bracket 9. The bracket 9 is formed by a plurality of strip-shaped bodies which are connected together in cross relationship. The two ends of each strip-shaped body are arcuately bent upward. The side wall and the bottom of the carrier body 1 are arcuately connected together. After the carrier body is placed on the bracket 9, the arcuately bent ends of the strip-shaped bodies abut against the bottom end of the bottom layer of the carrier body 1.

[0023] The adjacent layers of the carrier body 1 are connected together by way of vertically arranged connecting rods 2. As shown in the drawings, four connecting rods 2 are provided for each two layers of the carrier body 1. The four connecting rods 2 are arranged in two rows on opposite sides of the carrier body 1. To facilitate the connection between the carrier bodies 1, an outwardly extending flange 4 is integrally formed on the outer edge of the top of the carrier body 1. The flange 4 extends along the entire top of the carrier body 1. The ends of the connecting rods 2 are connected to the flange 4. A sleeve 3 is integrally formed between the flange 4 and the outer side of the carrier body 1. The two ends of the connecting rod 2 are inserted into the sleeves 3 on the adjacent layers of the carrier body 1. An insertion hole is provided on the flange 4 of the bottom layer of the carrier body 1 at the location of the sleeve 3. The lower end of the connecting rod 2 is inserted into the corresponding sleeve 3 from the insertion hole.

Claims

1. A conveyor belt vehicle, comprising a vehicle body and a traveling structure, characterized in that, The carrier has a cavity for accommodating product components, with the upper end of the cavity open; the carrier has at least two layers, with different layers of carrier separated and connected together; the traveling structure is provided with a bracket, on which the carrier rests.

2. The assembly line carrier according to claim 1, characterized in that, The same side of the load body has oblique cuts formed at one end, so that the side wall at the oblique cut position of the load body is lower on the outside and higher on the inside.

3. The assembly line carrier according to claim 2, characterized in that, The projected area of ​​the load-bearing structures is smaller at the top and larger at the bottom, and the oblique cuts on different load-bearing structures are staggered from each other in the horizontal direction.

4. The assembly line carrier according to claim 1, 2, or 3, characterized in that, The adjacent load cells are connected by vertically installed connecting rods.

5. The assembly line carrier according to claim 4, characterized in that, An outward-facing flange is integrally formed at the outer edge of the upper opening of the carrier body, and the flange extends along the entire upper opening of the carrier body. The end of the connecting rod is connected to the flange position.

6. The assembly line carrier according to claim 5, characterized in that, A downwardly extending sleeve is integrally formed between the flange and the outer side of the load body, and the two ends of the connecting rod are respectively inserted into the sleeves on the two adjacent load bodies.

7. The assembly line carrier according to claim 1, 2, or 3, characterized in that, The bracket is formed by connecting several strips together, with both ends of the strips curved upwards to fit the bottom of the underlying load body.

8. The assembly line carrier according to claim 1, 2 or 3, characterized in that, The bottom surface of the container cavity is provided with several partitions, which are arranged in an intersecting manner to form several separated storage spaces within the container.

Citation Information

Patent Citations

  • Production line material hanging basket device

    CN217996558U