Study on shear stress measurement with LCR wave from surface based on LFMCW

Takamatsu(2008)

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摘要
The critically refracted longitudinal (LCR) wave, which is a bulk longitudinal mode that travels within an effective depth underneath the surface, suits to be used to detect both surface stress and body stress. Strain inside the object would change the propagation velocity of the LCR wave in the direction of the stress field. But in fact the alteration of the travel time of LCR wave is so negligible that it's difficult to measure. Usually, the pulse wave is used to drive LCR wave, which may lead two difficulties. One is how to guarantee the power of the transmitting waves, the other is how to separate the LCR wave from the receiving waves which contains many other common-frequency waves. In this paper, a special way for driving the LCR wave which is called linear frequency modulated continuous wave (LFMCW) is discussed, which could overcome the problems mentioned above. And a method for the shear stress measurement with LCR wave based on LFMCW is also introduced. The simulation of the system turns out that the method could provide high accurate for the measurement of shear stress with LCR wave.
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关键词
nondestructive testing,elastic waves,shear strength,stress measurement,linear frequency modulated continuous wave,structural engineering,engineering structure analysis,shear stress measurement,LCR wave propagation,ultrasonic applications,ultrasonic propagation,critically refracted longitudinal wave
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