High-frequency brake test platform control system

A braking experiment and high-frequency technology, which is applied in the testing of mechanical components, testing of machine/structural components, force/torque/power measuring instruments, etc., can solve the problems of poor heat resistance, small output force, piezoelectric ceramic gauge coefficient, etc. Low-level problems to achieve the effect of ensuring quality and eliminating waste

Inactive Publication Date: 2013-04-17
ZHEJIANG UNIV
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  • Abstract
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AI Technical Summary

Problems solved by technology

[0004] At present, there have been experiments in the world using piezoelectric ceramic materials to build high-frequency braking test benches; however, piezoelectric ceramic materials have low strain coefficient, small output force, small electromechanical coupling coefficient, and poor heat resistance. , which has great limitations in application to high-frequency braking
At present, there is no precedent for applying giant magnetostrictive materials to braking systems, and there is no related control system that provides control support for high-frequency braking test benches based on giant magnetostrictive materials.

Method used

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  • High-frequency brake test platform control system

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Embodiment approach

[0010] exist figure 1 The control system of the high-frequency braking test bench includes the high-frequency braking test bench controller, computer, data acquisition card, frequency converter, geared motor, electromagnetic clutch, brake disc, contact sensor, pulse coder, drive, servo Motor, ball screw slide, limiter, relay, coolant pump, coolant station, liquid level sensor, solenoid valve, PWM fan, non-contact current sensor, temperature sensor, signal generator, linear power amplifier, digital oscilloscope , excitation coil, giant magnetostrictive driver, pressure sensor, displacement sensor, overcurrent indicator light, overtemperature indicator light, contact indicator light, coolant on / off indicator light, hand pulse generator, high frequency braking experiment The controller is connected with the PWM fan, electromagnetic valve, electromagnetic clutch, manual pulse generator, coolant on and off indicator light, contact indicator light, over-temperature indicator light, ...

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Abstract

The invention relates to a brake test platform control system and particularly relates to a high-frequency brake test platform control system based on a magnetostrictive material. A control system of a precise numerically-controlled conical roller bearing inner ring convexity form grinder is characterized by comprising a high-frequency brake test platform controller, a computer, a data acquisition card, a frequency converter, a deceleration motor, an electromagnetic clutch, a brake disc, a contact sensor, a pulse encoder, a driver, a servomotor, a ball screw sliding table, a retainer, a relay, a coolant pump, a coolant station, a liquid level sensor, an electromagnetic valve, a PWM (Pulse-Width Modulation) fan, a non-contact current sensor, a temperature sensor, a signal generator, a linear power amplifier, a digital oscilloscope, an exciting coil, a magnetostriction driver, a pressure sensor, a displacement sensor and the like. The system can be used for realizing the magnetostrictive material performance test and high-frequency brake test control, and has the characteristics of good adjustability, high safety and the like.

Description

technical field [0001] The invention relates to a control system of a test bench, in particular to a control system of a high-frequency braking test bench. Background technique [0002] With the advancement of science, high-speed machining, as an advanced mechanical manufacturing method, has attracted widespread attention and developed rapidly in developed countries. For high-speed machining, fast positioning is a very important technology. With the improvement of processing speed and precision, the positioning accuracy of the system also needs to be improved accordingly. At the same time, in order to improve work efficiency, the positioning system is also required to respond quickly, accelerate and brake quickly so as to achieve rapid positioning. However, conventional braking technology is difficult to achieve high-speed and high-precision positioning requirements, so it is urgent to explore the high-frequency braking mechanism and develop a high-frequency braking test b...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M13/00G01L5/28
Inventor 刘宇澄洪灵徐爱群贾相武宋小文王耘胡树根
Owner ZHEJIANG UNIV
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