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Estimation of Single-Crystal Elastic Constants of Polycrystalline Materials from Back-Scattered Grain Noise

机译:从背部散射晶噪声估计多晶体材料的单晶弹性常数

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Single-crystal elastic stiffness constants are important input parameters for many calculations in material science. There are well established methods to measure these constants using single-crystal specimens, but such specimens are not always readily available. The ultrasonic properties of metal polycrystals, such as velocity, attenuation, and backscattered grain noise characteristics, depend in part on the single-crystal elastic constants. In this work we consider the estimation of elastic constants from UT measurements and grain-sizing data. We confine ourselves to a class of particularly simple polycrystalline microstructures, found in some jet-engine Nickel alloys, which are single-phase, cubic, equiaxed, and untextured. In past work we described a method to estimate the single-crystal elastic constants from measured ultrasonic velocity and attenuation data accompanied by metallographic analysis of grain size. However, that methodology assumes that all attenuation is due to grain scattering, and thus is not valid if appreciable absorption is present. In this work we describe an alternative approach which uses backscattered grain noise data in place of attenuation data. Efforts to validate the method using a pure copper specimen are discussed, and new results for two jet-engine Nickel alloys are presented.
机译:单晶弹性刚度常数是物质科学中许多计算的重要输入参数。使用单晶样品测量这些常数的良好方法,但这种样品并不总是可用的。金属多晶的超声特性,例如速度,衰减和背散粒噪声特性,部分取决于单晶弹性常数。在这项工作中,我们考虑来自UT测量和晶粒尺寸数据的弹性常数估计。我们仅限于一类特别简单的多晶显微结构的,在一些喷气发动机镍合金,其是单相的,立方的,等轴的,无纹理的和发现。在过去的工作中,我们描述了一种估计来自测量的超声波速度和衰减数据的单晶弹性常数,伴随着晶粒尺寸的金相分析。然而,该方法假设所有衰减都是由于谷物散射,因此如果存在明显的吸收,则无效。在这项工作中,我们描述了一种替代方法,该方法使用反向散射的谷物噪声数据代替衰减数据。讨论了验证使用纯铜样本的方法的努力,并提出了两个喷射发动机镍合金的新结果。

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