Dynamic testing system for permanent-magnetic synchronous linear motor

A permanent magnet synchronous linear and linear motor technology, applied in the direction of motor generator testing, etc., can solve the problems of insecurity, slow speed, large space occupation, etc., and achieve the effect of simple operation, accurate test and small friction

Inactive Publication Date: 2014-12-10
JILIN HENGLONG HLDG GRP
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  • Abstract
  • Description
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  • Application Information

AI Technical Summary

Problems solved by technology

Some existing technologies for dynamic testing of permanent magnet synchronous linear motors use steel wire ropes and counterweights. The disadvantages are: one-way force, large space occupation, and un

Method used

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  • Dynamic testing system for permanent-magnetic synchronous linear motor
  • Dynamic testing system for permanent-magnetic synchronous linear motor

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Embodiment Construction

[0020] Such as figure 1 As shown, the permanent magnet synchronous linear motor dynamic test system is mainly composed of an operation console 1, a control cabinet 2, and a motor test platform 3. The operation console 1 is connected to the control cabinet 2 through a signal line; the control cabinet 2 The drive line is connected to the motor test platform 3 through the console 1; the motor test platform 3 is connected to the control cabinet 2 through the feedback signal line;

[0021] The motor test platform 3 also includes a U-shaped marble base 4, a linear motor secondary 5, a linear guide rail 6, a slider 7, a tested linear motor primary 8, an accompanying linear motor primary 9, a work surface 10, and an elastic connector 11 , push-pull force sensor 12, limit switch 13, anti-collision device 14, grating ruler 15, reading head 16, drag chain 17, described linear motor secondary 5 is fixed on the top of U-shaped marble base 4; The guide rail 6 is fixedly installed on the up...

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Abstract

The invention discloses a dynamic testing system for a permanent-magnetic synchronous linear motor and belongs to the technical field of motor testing. The dynamic testing system is main composed of an operating platform, a control cabinet and a motor testing platform, and the motor testing platform further comprises a U-shaped marble base, a primary linear motor, linear guide rails, sliders, a tested primary linear motor, a testing-accompanied primary linear motor, working tables, an elastic connector, a push-pull force sensor, limiting switches, anticollision devices, a grating ruler, a reading head and a drag chain. Due to a marble tabletop, influence, of vibration of the testing platform, on testing result can be reduced effectively; the sliders in a linear guide rail component are in rolling friction, friction coefficient of rolling friction is 1/50 that of sliding friction only, and friction force is small. Performance parameters line push force, current, speed, temperature rise and the like of the permanent-magnetic synchronous linear motor are tested by adopting two linear motors by means of opposite dragging, the dynamic testing system is simple and convenient to operate, can be used for testing motor performance when air gaps are different and can complete performance testing of linear motors different in specification.

Description

technical field [0001] The invention belongs to the technical field of motor testing, in particular to a dynamic testing system for a permanent magnet synchronous linear motor. technical background [0002] Comparative literature patent number: 200710144657.5 is a dynamic test bench for testing asynchronous induction linear motors. Due to the different types of motors, this dynamic test bench cannot be used for dynamic tests of permanent magnet synchronous linear motors. It needs to be developed according to the characteristics of permanent magnet synchronous linear motors and is suitable for permanent magnets. Synchronous linear motor dynamic test system. Some existing technologies for dynamic testing of permanent magnet synchronous linear motors use steel wire ropes to add counterweights. The disadvantages are: single-directional force, large space occupation, and unsafe factors. Others adopt the ball screw transmission mode. The disadvantages are: slow speed, limited by ...

Claims

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Application Information

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IPC IPC(8): G01R31/34
Inventor 陈明山高士红艾立华陶彦涛闫云祝杨树超
Owner JILIN HENGLONG HLDG GRP
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