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首页> 外文期刊>The Journal of the Acoustical Society of America >Ultrasonic attenuation of polycrystalline materials with a distribution of grain sizes
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Ultrasonic attenuation of polycrystalline materials with a distribution of grain sizes

机译:多晶材料具有晶粒尺寸分布的多晶材料衰减

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摘要

Elastic wave scattering at grain boundaries in polycrystalline media can be quantified to determine microstructural properties. The amplitude drop observed for coherent wave propagation (attenuation) as well as diffuse-field scattering events have been extensively studied. In all cases, the scattering shows a clear dependence on grain size, grain shape, and microstructural texture. Models used to quantify scattering experiments are often developed assuming dependence on a single spatial length scale, usually, mean grain diameter. However, several microscopy studies suggest that most metals have a log normal distribution of grain sizes. In this study, grain size distribution is discussed within the context of previous attenuation models valid for arbitrary crystallite symmetries. Results are presented for titanium using a range of distribution means and widths assuming equiaxed grains and no preferred crystallographic orientation. The longitudinal and shear attenuations are shown to vary with respect to the frequency dependence for varying distribution widths even when the volumetric mean grain size is held constant. Furthermore, the results suggest that grain size estimates based on attenuation can have large errors if the distribution is neglected. This work is anticipated to play an important role in microstructural characterization research associated with ultrasonic scattering. (C) 2017 Acoustical Society of America.
机译:可以量化多晶培养基中的晶界处的弹性波散射以确定微观结构性质。已经广泛研究了用于相干波传播(衰减)以及漫射场散射事件的幅度下降。在所有情况下,散射都显示出对晶粒尺寸,晶粒形状和微观结构纹理的明显依赖性。用于量化散射实验的模型通常是依赖于单个空间长度尺度的依赖性,通常是平均粒径。然而,若干显微镜研究表明,大多数金属具有晶粒尺寸的日志正态分布。在该研究中,在先前衰减模型的背景下讨论了晶粒尺寸分布,该衰减模型适用于任意晶体对称。使用一系列分配装置和宽度假设等轴的晶粒和优选的晶形取向来提出钛的结果。即使当体积均值晶粒尺寸保持恒定时,纵向和剪切衰减也会相对于变化分布宽度的频率依赖性变化。此外,结果表明,如果忽略分配,基于衰减的粒度估计可能具有大的误差。预计这项工作是在与超声波散射相关的微观结构表征研究中发挥重要作用。 (c)2017年声学社会。

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