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Nonlinear Lamb wave for the evaluation of creep damage in modified 9Cr-1Mo steel

机译:非线性兰姆波用于评估9Cr-1Mo改性钢的蠕变损伤

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摘要

Higher harmonic generation using nonlinear ultrasonic is known to be very sensitive to microstructural degradation. This technique relies on nonlinear stress-strain relation i.e. nonlinear Hooke's law. The quantitative measurement to characterize the materials degradation is done by the nonlinear ultrasonic parameter, beta. The objective of this work is to use nonlinear ultrasonic using Lamb wave to evaluate creep damage in modified 9Cr-1Mo steel. Relative change in beta was seen to be dependent on the higher order elastic constants that evolve with microstructure as creep progresses as well as sub-structural changes. The extent of damage in the material due to creep exposure was evaluated by Kernel Average Misorientation (KAM) from EBSD and co-related with nonlinear acoustic parameter.
机译:已知使用非线性超声产生高次谐波对微结构退化非常敏感。该技术依赖于非线性应力-应变关系,即非线性胡克定律。表征材料降解的定量测量是通过非线性超声参数beta进行的。这项工作的目的是使用使用兰姆波的非线性超声来评估改性9Cr-1Mo钢的蠕变损伤。可以看到,β的相对变化取决于随着蠕变的进行而随着微观结构的演变以及亚结构变化的高阶弹性常数。通过蠕变暴露对材料造成的破坏程度通过来自EBSD的内核平均错误取向(KAM)进行评估,并与非线性声学参数关联。

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