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Real-time vibration-aging vibration level testing system and automatic adjustment method

A vibration aging and real-time testing technology, applied in the field of vibration aging vibration level real-time testing system, can solve the problems of small natural frequency value, poor resonance effect, small vibration level, etc., to eliminate residual stress, reduce workload, and improve work efficiency. The effect of efficiency

Active Publication Date: 2014-05-07
ZHEJIANG UNIV
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AI Technical Summary

Problems solved by technology

It is found from the above technical literature that the natural frequency value of the component will become smaller during the vibration aging treatment process, so that the difference between the excitation frequency value and the actual natural frequency value of the component will become larger and larger, and the resonance effect will become worse and worse, resulting in the effect on the component. The vibration level is getting smaller and smaller, which reduces the effect of eliminating residual stress

Method used

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  • Real-time vibration-aging vibration level testing system and automatic adjustment method

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Embodiment Construction

[0032] With reference to accompanying drawing, further illustrate the present invention:

[0033] The real-time test system for vibration time-effect and vibration level includes a processor, a signal generator, a driver, a vibrator 1, an acceleration sensor 2, a charge amplifier, an oscilloscope, and a support device 4; the component 3 is fixedly connected to the vibrator 1; the processor controls the signal The generator outputs a sinusoidal excitation signal whose amplitude and frequency are independent and continuously adjustable; the sinusoidal excitation signal of the signal generator is input into the driver, and the output signal of the driver drives the vibrator 1 to vibrate;

[0034] The acceleration sensor 2 is installed on the component 3, the acceleration sensor 2 is connected to the input channel of the charge amplifier, the output channel of the charge amplifier is connected to the oscilloscope, and the oscilloscope is connected to the processor;

[0035] The pr...

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PUM

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Abstract

The invention relates to a real-time vibration-aging vibration level testing system. The real-time vibration-aging vibration level testing system comprises a processor, a signal generator, a driver, a vibration exciter, an acceleration sensor, a charge amplifier, an oscilloscope and a support device, wherein a member is fixedly connected with the vibration exciter; the processor controls the signal generator to output sinusoidal excitation signals, of which the amplitude and frequency are independent and are continuously adjustable; the processor comprises a voltage waveform reading module, a voltage identification module, a vibration level detection module and a critical threshold setting module. An automatic vibration level adjustment method comprises the steps that the member is fixedly connected with the vibration exciter; the vibration level detection module is subjected to parameter value setting; the voltage waveform reading module acquires a voltage waveform displayed by the oscilloscope; the voltage identification module acquires voltage peaks; the processor determines first excitation frequency of vibration aging; the processor determines second excitation frequency of vibration aging and enables the vibration exciter to carry out vibration aging treatment on the member at the second excitation frequency. The system and the method have the advantages that the vibration level can be accurately tested in real time, and the vibration level can be adjusted automatically.

Description

technical field [0001] The invention relates to a real-time testing system and an automatic adjustment method for vibration time-effect and vibration level. technical background [0002] Vibration aging technology is a commonly used residual stress control method in the field of mechanical engineering. It applies a mechanical vibration load to the component. When the sum of the residual stress inside the component and the additional vibration stress exceeds the local yield limit of the material, the material will undergo local plasticity. Deformation, so that the residual stress inside the material can be relaxed and reduced. The closer the excitation frequency is to the natural frequency of the component, the greater the additional dynamic stress acting on the component, that is, the greater the vibration level acting on the component, which is more conducive to eliminating the residual stress of the component. [0003] In the document "Vibration Aging Process and Effect E...

Claims

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Application Information

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IPC IPC(8): C21D10/00
Inventor 何闻潘龙顾邦平庹青林杨争雄郝凌凌
Owner ZHEJIANG UNIV
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