Tool plate for speed chain production line

By incorporating buffer components and rolling friction guide bearings into the tooling plate, the problem of collision damage to the tooling plate during transportation is solved, thereby enhancing the impact resistance of the tooling plate and the long service life of the guide bearings, and improving the reliability of transportation and the stability of processing.

CN223813009UActive Publication Date: 2026-01-20杨洪强
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520354460.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-01-20
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

In existing double-speed chain conveyor lines, the tooling plates are damaged by collisions between the front and rear tooling plates during the conveying process, which affects the service life and makes the guide bearings prone to damage.

Method used

A buffer is installed on the tooling plate to prevent direct contact and collision between the front and rear tooling plates, and rolling friction is used at the guide bearing to reduce wear. At the same time, a positioning structure and buffer block are set on the tooling plate body to ensure accurate directional movement and stopping.

Benefits of technology

It effectively prevents collisions between tooling plates and damage to guide bearings, improves conveying reliability, reduces operating costs, extends the life of guide bearings, and ensures stable processing of workpieces.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223813009U_ABST
    Figure CN223813009U_ABST
Patent Text Reader

Abstract

The utility model discloses a tooling plate for a speed chain production line, which comprises a tooling plate body supported on a speed chain conveyor; buffering pieces are arranged on the tool plate bodies, the buffering pieces protrude out of the side faces of the tool plate bodies outwards, and the buffering pieces are used for preventing the two tool plate bodies which are adjacent front and back from making contact and colliding. The tool plate is novel in structure and high in practicability, in the conveying process, two tool plate bodies which are adjacent front and back can be prevented from colliding due to direct contact, and meanwhile guide bearings of the two tool plate bodies which are adjacent front and back are prevented from being damaged due to collision.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of speed chain, especially relates to a tooling plate for speed chain production line. BACKGROUND

[0002] The speed chain assembly line can be used for material conveying in assembly and processing production lines, and the conveying principle is to use the speed increasing function of the speed chain to make the tooling plate supporting goods run fast, stop at the corresponding operation position through the stopper, or complete the accumulation, movement, indexing and line changing functions through the corresponding instructions.

[0003] The tooling plate of the existing speed chain assembly line has the following defects in the conveying process: when the front tooling plate is stopped by the stopper, the rear tooling plates will collide with each other and be continuously squeezed, which will cause damage and affect the service life of the tooling plate.

[0004] The existing patent document (publication number: CN214268995U) discloses a tooling plate for test line or packaging line, which also has the above technical problems. SUMMARY

[0005] The utility model aims at solving the above technical problems in the prior art, and provides a tooling plate for speed chain production line, which has novel structure and high practicability, can prevent the direct contact between the front and rear tooling plate bodies and the collision between the guide bearings of the front and rear tooling plate bodies during the conveying process.

[0006] In order to solve the above technical problems, the utility model adopts the following technical scheme:

[0007] A tooling plate for speed chain production line, comprising: a tooling plate body supported on a speed chain conveyor; characterized in that: a buffer is arranged on the tooling plate body, the buffer protrudes outward from the side surface of the tooling plate body, and the buffer is used for preventing the contact and collision between the front and rear tooling plate bodies. The tooling plate has novel structure and high practicability, can prevent the direct contact between the front and rear tooling plate bodies and the collision between the guide bearings of the front and rear tooling plate bodies during the conveying process.

[0008] Further, the buffer comprises a mounting part and a collision part, the collision part is arranged on the mounting part, and the mounting part is arranged on the tooling plate body. The buffer has simple structure, high impact resistance, low use cost and high practicability.

[0009] Further, the tooling plate body moves directionally on the speed chain conveyor through a guide part, so that the tooling plate body can not deviate when moving with the speed chain conveyor, and the reliability of conveying is improved.

[0010] Further, the guide piece adopts a guide bearing, the guide bearing is in contact with a guide groove on the multiple-speed chain conveyor, and rolling friction exists between the guide bearing and the guide groove, so that the friction is small, the guide bearing is slowly worn, and the service life of the guide bearing is prolonged.

[0011] Further, a recess for accommodating the guide bearing is arranged at the bottom corner of the tool plate body, which can ensure that the tool plate body is in full contact with the chain of the multiple-speed chain conveyor, thereby ensuring smooth conveying, and on the other hand, the working surface height of the tool plate body is not increased, so that the lifting height of the pneumatic lifting stopper does not need to be increased, and the use requirement of the pneumatic lifting stopper is reduced.

[0012] Further, the tool plate body is provided with a positioning structure corresponding to the pneumatic lifting stopper of the multiple-speed chain conveyor, and when the positioning structure is in contact with the pneumatic lifting stopper, the tool plate body is stopped, so that the workpiece can be machined.

[0013] Further, the positioning structure is a positioning groove formed by inwardly recessing the side surface of the tool plate body. The structure is simple, positioning is accurate, and stopping is reliable.

[0014] Further, a buffer block is arranged in the positioning groove, and the buffer block corresponds to the pneumatic lifting stopper of the multiple-speed chain conveyor. The buffer block plays a buffering role, reduces the collision of the pneumatic lifting stopper on the tool plate body, and prevents the workpiece clamped on the tool clamp from loosening.

[0015] Further, the buffer block is fixedly connected with the tool plate body through bolts, and the fixing is reliable, the disassembly and assembly are convenient, the buffer block can be used at any time, the damaged buffer block can be replaced, and the use is flexible and convenient.

[0016] Further, the tool plate body is provided with a mounting hole for mounting the tool clamp, so that the tool clamp can be quickly positioned on the tool plate body, the installation difficulty is reduced, and the installation is simple and convenient.

[0017] The utility model discloses the following beneficial effects are obtained by adopting the above technical scheme:

[0018] 1. In the conveying process, the buffer of the front and rear two tool plate bodies collides, which can prevent the front and rear two tool plate bodies from directly contacting and colliding, and prevent the guide bearings of the front and rear two tool plate bodies from colliding and being damaged; the buffer has simple structure, is resistant to impact, has low use cost, can be separated into two parts, and the damaged part can be replaced individually, so that the utility is strong.

[0019] 2. The tool plate body moves directionally on the multiple-speed chain conveyor through the guide piece, which can prevent the tool plate body from deviating when moving with the multiple-speed chain conveyor, and improve the reliability of conveying.

[0020] 3. When the tooling plate body reaches the machining position, the pneumatic jacking stopper is jacked upward to touch the buffer block, the tooling plate body is stopped, the workpiece is machined, the buffer block has the buffering effect, the pneumatic jacking stopper collides with the tooling plate body, and the workpiece held on the tooling fixture is prevented from loosening. BRIEF DESCRIPTION OF DRAWINGS

[0021] The utility model will be further described below in combination with the drawings:

[0022] Figure 1 It is a structural schematic view of a tooling plate for a multiple-speed chain production line;

[0023] Figure 2 It is Figure 1 a top view;

[0024] Figure 3 It is Figure 1 a bottom view;

[0025] Figure 4 It is Figure 1 a front view;

[0026] Figure 5 It is a structural schematic view of a positioning groove in the utility model;

[0027] Figure 6 It is a layout schematic view of the utility model on a multiple-speed chain conveyor.

[0028] In the drawing: 1-tooling plate body; 2-multiple-speed chain conveyor; 3-mounting hole; 4-guide bearing; 5-guide groove; 6-lack groove; 7-positioning groove; 8-buffer block; 9-pneumatic jacking stopper; 10-buffer; 11-mounting part; 12-collision part. DETAILED DESCRIPTION

[0029] As Figures 1 to 6 shown, it is a tooling plate for a multiple-speed chain production line, comprising: a tooling plate body 1, the shape of the tooling plate body 1 is rectangular, the size is 400mm*400mm*15mm, the tooling plate body 1 is made of aluminum material, and the strength is reliable. The tooling plate body 1 can be supported on a multiple-speed chain conveyor 2, and under the driving of the multiple-speed chain conveyor 2, the tooling plate body 1 moves along the conveying direction of the multiple-speed chain conveyor 2.

[0030] The tooling plate body 1 is provided with mounting holes 3 for cooperating with the installation of a tooling fixture, so that the tooling fixture can be quickly positioned on the tooling plate body 1, and the installation difficulty is reduced, which is simple and convenient.

[0031] The tool plate body 1 moves on the multiple-speed chain conveyor 2 through a guide, which prevents the tool plate body 1 from deviating when moving with the multiple-speed chain conveyor 2, and improves the reliability of the conveying.

[0032] The guide can be a guide bearing 4, and the multiple-speed chain conveyor 2 is provided with a guide groove 5 corresponding to the guide bearing 4. During conveying, the guide bearing 4 is in contact with the groove surface of the guide groove 5, and the guide bearing 4 and the guide groove 5 are in rolling friction, which is small in friction force and slow in wear of the guide bearing 4, thereby prolonging the service life of the guide bearing 4.

[0033] The bottom corner of the tool plate body 1 is provided with a missing groove 6 for accommodating the guide bearing 4, which can ensure that the tool plate body 1 is in full contact with the chain of the multiple-speed chain conveyor 2, thereby ensuring smooth conveying, and will not increase the working surface height of the tool plate body 1, thereby not needing to increase the lifting height of the pneumatic lifting stopper, and further reducing the use requirements of the pneumatic lifting stopper.

[0034] The tool plate body 1 is provided with a positioning structure, which is a positioning groove 7 formed by inwardly recessing the side surface of the tool plate body 1, and a buffer block 8 is arranged in the positioning groove 7, and the buffer block 8 corresponds to a pneumatic lifting stopper 9 of the multiple-speed chain conveyor 2.

[0035] When the tool plate body 1 reaches the machining position, the pneumatic lifting stopper 9 is lifted upward and touches the buffer block 8, thereby stopping the tool plate body 1, facilitating machining operation of the workpiece, and the buffer block 8 plays a buffering role, reducing the collision of the pneumatic lifting stopper 9 on the tool plate body 1, thereby preventing the workpiece clamped on the tool clamp from loosening, and the structure is simple, positioning is accurate, and stopping is reliable.

[0036] The buffer block 8 can be made of rubber material, and the buffering is reliable. The buffer block 8 is fixedly connected to the tool plate body 1 through bolts, and is fixed reliably, convenient to disassemble and assemble, and can be replaced when damaged, which is flexible and convenient.

[0037] The side surface of the tool plate body 1 is provided with a buffer 10, which includes a mounting part 11 and a collision part 12. The collision part 12 can be made of rubber material, and the collision part 12 is fixed on the mounting part 11 through bolts. The mounting part 11 is fixed on the tool plate body 1 through bolts. The buffer 10 has a simple structure, is resistant to impact, has low use cost, can be disassembled into two parts, facilitates replacement of damaged parts, and has high practicability.

[0038] The collision part 12 protrudes outwardly from the side surface of the tool plate body 1. During conveying, the collision parts 12 of two adjacent tool plate bodies 1 collide with each other, which prevents the two adjacent tool plate bodies 1 from directly contacting and colliding with each other, and prevents the guide bearings 4 of the two adjacent tool plate bodies 1 from colliding and being damaged.

[0039] The above are only specific embodiments of the present application, but the technical features of the present application are not limited thereto. Any simple change, equivalent replacement or modification made on the basis of the present application to solve the basically same technical problem and achieve the basically same technical effect shall be covered in the protection scope of the present application.

Claims

1. A tool plate for a multiple-speed chain production line, comprising: a tool plate body supported on a multiple-speed chain conveyor; characterized in that: a buffer member is provided on the tool plate body, the buffer member protruding outward from the side of the tool plate body, and the buffer member is used to prevent contact and collision between two adjacent tool plate bodies.

2. A tooling plate for a power chain production line according to claim 1, wherein: The buffer member comprises a mounting portion and a collision portion, and the collision portion is arranged on the mounting portion, and the mounting portion is arranged on the tool plate body.

3. The tooling plate for a power chain production line of claim 1, wherein: The tool plate body moves directionally on the multiple-speed chain conveyor through a guide member.

4. The tooling plate for a power chain production line of claim 3, wherein: The guide member is a guide bearing which is in contact with a guide groove on the multiple-speed chain conveyor.

5. A tooling plate for a power chain production line according to claim 3, wherein: A missing groove for accommodating the guide member is arranged at the bottom corner of the tool plate body.

6. The tooling plate for a power and free conveyor line of claim 1, wherein: A positioning structure corresponding to the pneumatic lifting stopper of the multiple-speed chain conveyor is arranged on the tool plate body.

7. A tooling plate for a power chain production line according to claim 6, wherein: The positioning structure is a positioning groove formed by inwardly recessing the side of the tool plate body.

8. A tooling plate for a power chain production line according to claim 7, wherein: A buffer block is arranged in the positioning groove, and the buffer block corresponds to the pneumatic lifting stopper of the multiple-speed chain conveyor.

9. A tooling plate for a power chain production line according to claim 8, wherein: The buffer block is fixedly connected to the tool plate body by bolts.

10. The tooling plate for a power and free conveyor line of claim 1, wherein: Mounting holes for mounting tool clamps are arranged on the tool plate body.

Citation Information

Patent Citations

  • Tool plate for computer test line or packaging line

    CN214268995U