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Characterization of the Interface Roughness of Coatings Based on Ultrasonic Reflection Coefficient Amplitude Spectrum

机译:基于超声反射系数幅度谱的涂层界面粗糙度的表征

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In order to nondestructively characterize the interface roughness of coatings effectively, the ultrasonic reflection coefficient amplitude spectrum (URCAS) involving interface roughness was derived based on the phase-screen approximation theory. The interface roughness was determined by a two-parameter inversion combined with a crosscorrelation algorithm For homogeneous coatings, the effects of ultrasonic wavelength λ, beam coverage, and shape variations of the coating on the roughness measurements were analyzed through numerical calculation. A series of simulations indicated that measurement errors were less than 10% when the relationship between interface roughness and wavelength satisfied Rq=l.5%λ~11%λ approximately. Ultrasonic experiments were carried out on standard roughness specimens utilizing water immersion, flat transducers. The roughness Rq of the standard roughness specimens were 8.5μm, 14.2μm, and 28.6μm measured by confocal laser scanning microscope (CLSM), respectively. Experimental results show that the roughness of standard roughness specimens obtained by the proposed ultrasonic measurement are in good agreement with the CLSM observations, and the relative errors are less than 8.5%.
机译:为了无损有效表征涂层的界面的粗糙度,涉及界面粗糙度的超声波反射系数幅度谱(URCAS)是基于相屏幕近似理论推导。界面粗糙度是由两参数反演互相关算法对于均匀的涂层组合确定的,超声波的波长λ,波束覆盖,并在粗糙度测量所述涂层的形状的变化的影响,通过数值计算进行了分析。一系列的模拟表明,测量误差均小于10%时的界面粗糙度和波长之间的关系满足的Rq = 1.5%λ〜11%λ约。超声实验是在利用水浸渍标准粗糙度的标本,平换能器中进行。标准粗糙度试样的粗糙度Rq为8.5μm,14.2μm,并通过共聚焦激光扫描显微镜(CLSM)测定分别28.6μm。实验结果表明,由所提出的超声波测量获得的标准粗糙度的样品的粗糙度都与CLSM观察一致,相对误差小于8.5%。

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