论文标题

原位非线性雷利波技术以表征不锈钢316L的拉伸塑料变形

In situ nonlinear Rayleigh wave technique to characterize the tensile plastic deformation of stainless steel 316L

论文作者

Kim, Changgong, Matlack, Kathryn H.

论文摘要

声学非线性参数(beta)对脱位参数敏感,在塑性变形过程中会不断变化。结构/组件中基于脱位的损害是故障的根源。因此,Beta已被研究为用于非破坏性评估的度量。这项工作包括两个部分:用于非线性雷利波测量值的原位实验设置的开发,以及在不同初始塑性应变水平上对估计应力的依赖性的表征。首先,我们引入了一种实验设置和方法,用于可重复的原位非线性超声测量。提供了有关设计注意事项和测量方案的详细信息。在第二部分中,在一个增量单调拉伸测试期间原位测量了β。测得的β单型在塑性应变中会减小,但在弹性变形过程中对施加的应力相对不敏感。该结果突出了β的演变的三个方面,这些方面在先前的工作中尚未得到充分强调:β在弹性变形过程中对β对施加的应力的明显不敏感性,随着塑性变形和β的饱和度减少β。我们将降低β的趋势归因于在塑性变形过程中具有单子环长度的beta缩放,这取决于初始微观结构。 Beta在1.8%的饱和度与位错结构的平面向波过渡一致。这项工作中介绍的原位非线性超声实验方法非常重要,因为与单独的原位测量相比,原位结果可以为基于β和脱位的损伤演变提供更广泛的见解。

The acoustic nonlinearity parameter(beta) is sensitive to dislocation parameters, which continuously change during plastic deformation. Dislocation-based damage in structures/components is the source of the failure; thus, beta has been studied as a metric for non-destructive evaluation. This work consists of two parts: the development of an in situ experimental setup for nonlinear Rayleigh wave measurements, and characterization of the dependence of beta on applied stress at different levels of initial plastic strain. First, we introduce an experimental setup and methods for repeatable in situ nonlinear ultrasonic measurements. Details on design considerations and measurement schemes are provided. In the second part, beta was measured in situ during an incremental monotonic tensile test. The measured βmonotonically decreases with plastic strain, but it is relatively insensitive to the applied stress during elastic deformation. This result highlights three aspects of the evolution of beta, which have not been sufficiently emphasized in prior work: the apparent insensitivity of beta to the applied stress during elastic deformation, decreasing beta with plastic deformation, and the saturation of beta. We attribute the trend of decreasing beta to a scaling of beta with monopole loop length during plastic deformation, which depends on initial microstructure. The saturation of beta at 1.8% coincides with a planar-to-wavy transition of dislocation structures. The in situ nonlinear ultrasonic experimental method presented in this work is significant as the in situ results can provide broader insights on beta and dislocation-based damage evolution than ex situ measurements alone.

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