Thin-walled structure part vibration test device and method based on piezoelectric ceramic vibration exciter

A technology driven by thin-walled structural parts and piezoelectric ceramics. It is applied in the testing of machines/structural components, vibration testing, and measuring devices. Control and limit the application of piezoelectric ceramic vibrator, etc., to achieve the effect of eliminating influencing factors

Active Publication Date: 2014-01-22
NORTHEASTERN UNIV
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  • Abstract
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  • Claims
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Problems solved by technology

[0005] However, the piezoelectric ceramic excitation system used in the existing vibration test is usually an open-loop system, that is, the high-voltage excitation signal loaded on the piezoelectric ceramic is difficult to be collected by the data acquisition analyzer. Vibration force and excitation frequency cannot b...

Method used

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  • Thin-walled structure part vibration test device and method based on piezoelectric ceramic vibration exciter
  • Thin-walled structure part vibration test device and method based on piezoelectric ceramic vibration exciter
  • Thin-walled structure part vibration test device and method based on piezoelectric ceramic vibration exciter

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Embodiment Construction

[0076] An embodiment of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0077] Such as figure 1 As shown, the vibration test device for thin-walled structural parts based on the piezoelectric ceramic vibrator in this embodiment includes: a signal generator, a piezoelectric ceramic drive power supply, a piezoelectric ceramic vibrator, a feedback attenuator, and a laser vibrometer , data acquisition analyzer and host computer;

[0078] The output end of the signal generator is connected to the input end of the piezoelectric ceramic drive power supply, and the output end of the piezoelectric ceramic drive power supply is connected to the electrodes at both ends of the piezoelectric ceramic exciter. The piezoelectric ceramic exciter is arranged on a thin-walled structural part to be tested. On the surface, the output end of the piezoelectric ceramic exciter is connected to the input end of the feedback attenuator, the outpu...

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PUM

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Abstract

The invention belongs to the technical field of vibration test, in particular to a thin-walled structure part vibration test device and a method based on a piezoelectric ceramic vibration exciter. The device comprises a signal generator, a piezoelectric ceramic drive power supply, a piezoelectric ceramic vibration exciter, a feedback attenuator, a laser vibration meter, a data acquisition analyzer and an upper computer. The method comprises the steps of performing modality test on a thin-walled structure part, determining a linear relationship between excitation voltage and critical excitation frequency of the signal generator and calibrating an excitation force of the piezoelectric ceramic vibration exciter based on a cantilever theory. According to the device and the method, an excitation signal can be effectively acquired; the magnitude of the excitation force when the piezoelectric ceramic vibration exciter excites the structure part is defined; the stable designated excitation force and the linear excitation signal of the excitation frequency can be generated; influencing factors of non-linear piezoelectric ceramic excitation are effectively eliminated; the piezoelectric ceramic vibration exciter is adopted to realize high-frequency vibration excitation; additional mass is low; and the device is convenient to use.

Description

technical field [0001] The invention belongs to the technical field of vibration testing, in particular to a vibration testing device and method for a thin-walled structural part based on a piezoelectric ceramic vibrator. Background technique [0002] There are a large number of thin-walled structural parts in engineering equipment, such as various shell parts, sleeve parts, ring parts, disc parts, flat parts, etc. These thin-walled structural parts often induce high-cycle fatigue and fail under high-frequency excitation environments. In order to understand the vibration failure mechanism of these thin-walled structural parts and to control them better, it is urgent to accurately measure the modal performance and vibration response behavior of these thin-walled structural parts. [0003] Compared with ordinary structural systems, the natural frequencies of the above-mentioned thin-walled structural parts are usually higher. If more modal orders are considered, a larger freq...

Claims

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Application Information

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IPC IPC(8): G01M7/02G01H9/00
Inventor 孙伟韩清凯李晖罗忠翟敬宇王娇
Owner NORTHEASTERN UNIV
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