MICROSTRUCTURE IMAGING USING FREQUENCY SPECTRUM SPATIALLY RESOLVED ACOUSTIC SPECTROSCOPY (F‐SRAS)
MICROSTRUCTURE IMAGING USING FREQUENCY SPECTRUM SPATIALLY RESOLVED ACOUSTIC SPECTROSCOPY (F‐SRAS)
复制标题
使用频谱空间分辨声波谱 (F-SRAS) 进行显微结构成像
DOI:
10.1063/1.3362405
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发表时间:
2010
期刊:
影响因子:
--
通讯作者:
M. Somekh
中科院分区:
文献类型:
--
作者:
S. Sharples;Wenqi Li;M. Clark;M. Somekh
Material microstructure can have a profound effect on the mechanical properties of a component, such as strength and resistance to creep and fatigue. SRAS—spatially resolved acoustic spectroscopy—is a laser ultrasonic technique which can image microstructure using highly localized surface acoustic wave (SAW) velocity as a contrast mechanism, as this is sensitive to crystallographic orientation. The technique is noncontact, nondestructive, rapid, can be used on large components, and is highly tolerant of acoustic aberrations. Previously, the SRAS technique has been demonstrated using a fixed frequency excitation laser and a variable grating period (к‐vector) to determine the most efficiently generated SAWs, and hence the velocity. Here, we demonstrate an implementation which uses a fixed grating period with a broadband laser excitation source. The velocity is determined by analyzing the measured frequency spectrum. Experimental results using this “frequency spectrum SRAS” (f‐SRAS) method are presented. Ima...