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A clamping device for installing linear motor magnets

A linear motor and magnet technology, applied in the direction of chuck, manipulator, program-controlled manipulator, etc., can solve the problems of troublesome installation, positioning deviation, etc., and achieve the effect of simple installation, easy manufacturing, and easy popularization and application.

Active Publication Date: 2022-08-02
深圳市锐健电子有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In order to overcome the existing disadvantages that the magnets of linear motors are installed manually by hand, the mutual repulsion or attraction between the magnets will easily lead to positioning deviation, requiring staff to continuously adjust the position of the magnets, and the disadvantage of troublesome installation. The technical problem to be solved by the present invention is to provide a clamping device for installing linear motor magnets with precise positioning, no need for staff to continuously adjust the position of the magnet, and simple installation

Method used

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  • A clamping device for installing linear motor magnets
  • A clamping device for installing linear motor magnets
  • A clamping device for installing linear motor magnets

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] A gripping device for mounting linear motor magnets, such as Figure 1-3 As shown, it includes a large connecting block 1, a large rotating shaft 2, a large arc-shaped frame 3, a worktable 4, a large rectangular plate 5, a large lifting rod 6, a large arc-shaped extrusion plate 7, and a large arc-shaped leaf spring 8 , large bearing 9, first large U-shaped plate 10, second large U-shaped plate 11, extrusion device 12, first limit plate 13, first connecting rod 14, first arc splint 15, first small rotation The shaft 16, the first spring 17, the second limit plate 18, the second connecting rod 19, the second arc-shaped splint 20, the second small rotating shaft 21 and the second spring 22, the middle of the large connecting block 1 is embedded with a large Rotating shaft 2, two sides of the large connecting block 1 are symmetrically provided with a large arc-shaped frame 3, the middle of the large arc-shaped frame 3 is provided with a large rectangular slot 301 running th...

Embodiment 2

[0020] A gripping device for mounting linear motor magnets, such as Figure 1-3As shown, it includes a large connecting block 1, a large rotating shaft 2, a large arc-shaped frame 3, a worktable 4, a large rectangular plate 5, a large lifting rod 6, a large arc-shaped extrusion plate 7, and a large arc-shaped leaf spring 8 , large bearing 9, first large U-shaped plate 10, second large U-shaped plate 11, extrusion device 12, first limit plate 13, first connecting rod 14, first arc splint 15, first small rotation The shaft 16, the first spring 17, the second limit plate 18, the second connecting rod 19, the second arc-shaped splint 20, the second small rotating shaft 21 and the second spring 22, the middle of the large connecting block 1 is embedded with a large Rotating shaft 2, two sides of the large connecting block 1 are symmetrically provided with a large arc-shaped frame 3, the middle of the large arc-shaped frame 3 is provided with a large rectangular slot 301 running thr...

Embodiment 3

[0023] A gripping device for mounting linear motor magnets such as Figure 1-4As shown, it includes a large connecting block 1, a large rotating shaft 2, a large arc-shaped frame 3, a worktable 4, a large rectangular plate 5, a large lifting rod 6, a large arc-shaped extrusion plate 7, and a large arc-shaped leaf spring 8 , large bearing 9, first large U-shaped plate 10, second large U-shaped plate 11, extrusion device 12, first limit plate 13, first connecting rod 14, first arc splint 15, first small rotation The shaft 16, the first spring 17, the second limit plate 18, the second connecting rod 19, the second arc-shaped splint 20, the second small rotating shaft 21 and the second spring 22, the middle of the large connecting block 1 is embedded with a large Rotating shaft 2, two sides of the large connecting block 1 are symmetrically provided with a large arc-shaped frame 3, the middle of the large arc-shaped frame 3 is provided with a large rectangular slot 301 running thro...

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PUM

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Abstract

The invention relates to a clamping device, in particular to a clamping device used for installing a linear motor magnet. The technical problem to be solved is to provide a clamping device for installing the magnet of the linear motor with precise positioning, without the need for staff to constantly adjust the position of the magnet, and with simple installation. Provided is such a clamping device for installing a linear motor magnet, including a large connecting block, a large rotating shaft, etc.; a large rotating shaft is embedded in the middle of the large connecting block, and two sides of the large connecting block are symmetrically arranged with Large curved rack. In the present invention, the upper end of the large arc-shaped frame is provided with a large lifting hole extending downward, the large lifting hole is located directly above the large rectangular groove, the lower end of the large arc-shaped frame is fixed with a worktable, and the left side of the top of the worktable is fixed There is a left groove running through the upper and lower sides. The large rectangular plate is located in the large rectangular groove and slides with it. The top of the large rectangular plate is fixed with a large lifting rod. The large lifting rod is slidably located in the large lifting hole. high.

Description

technical field [0001] The invention relates to a clamping device, in particular to a clamping device used for installing a linear motor magnet. Background technique [0002] A linear motor is a transmission device that directly converts electrical energy into linear motion mechanical energy without any intermediate conversion mechanism. It can be regarded as a rotating motor that is cut radially and developed into a plane. During the manufacturing process, magnets of different polarities need to be installed on the substrate at intervals. The existing magnets of the linear motor are manually installed by hand, and the mutual repulsion or attraction between the magnets can easily lead to deviations in positioning. The staff constantly adjusts the position of the magnets, which is troublesome to install, causing hidden dangers to the quality and application of the linear motor. SUMMARY OF THE INVENTION [0003] In the present invention, in order to overcome the existing ma...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B25J9/00B25J15/00B25J15/02
CPCB25J9/00B25J15/0253B25J15/0095
Inventor 陈聪
Owner 深圳市锐健电子有限公司
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