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Determination of grain-size distribution from ultrasonic attenuation: Transformation and inversion

机译:通过超声衰减确定粒度分布:转化和反演

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Although researchers often describe a particular medium with only a single grain size or an average grain size, distributions of grain sizes can have significant effects on the physical characteristics of the material. Ultrasonic attenuation due to energy scattered at the grain boundaries depends on the ultrasonic wavelength, the grain size, and certain material properties such as elastic constants. This paper examines the relationship between the wavelength dependency of ultrasonic attenuation and grain-size distributions. A transformation is developed which solves a general class of Fredholm equations of the first kind. The equation relating attenuation to grain-size distributions belongs to this class of equations. The transformation allows attenuation to be calculated by discrete convolution, and provides a method for estimating the grain-size distribution directly from attenuation measurements.
机译:尽管研究人员经常描述仅具有单个晶粒尺寸或平均晶粒尺寸的特定介质,但是晶粒尺寸的分布可能会对材料的物理特性产生重大影响。由散布在晶界的能量引起的超声衰减取决于超声波长,晶粒尺寸和某些材料特性,例如弹性常数。本文研究了超声波衰减的波长依赖性与晶粒尺寸分布之间的关系。开发了一种解决第一类弗雷德霍尔姆方程通用类的变换。将衰减与晶粒尺寸分布相关的方程式属于此类方程式。该变换允许通过离散卷积来计算衰减,并提供了一种直接从衰减测量结果估算晶粒尺寸分布的方法。

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