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Comparison of Ultrasonic Pole Figures Based upon Ultrasonic Nondestructive Evaluation Method with Pole Figures Based upon Finite Element Polycrystal Model

机译:基于有限元多晶模型的极图超声无损评价超声波极图比较

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摘要

The ultrasonic wave velocities in a polycrystalline aggregate are sensitively influenced by texture change due to plastic deformation, and their relationship was systematically analyzed by Sayers [J. Phys. D: Appl. Phys. 15 (1982)]. According to Sayers’s proposed model, it is possible to construct ultrasonic pole figures via the crystallite orientation distribution function (CODF), whish can be derived by using ultrasonic wave velocity changes. In the previous paper, the theoretical modeling to simulate ultrasonic wave velocities propagating in solid materials under plastic deformation has been proposed by the authors and proved to be in good agreement with experimental results. In the present paper, the proposed theoretical modeling is applied to construct the ultrasonic pole figures based upon Sayers’s model under various loading conditions of uniaxial tension, pure torsion, equi-biaxial tension compression, biaxial compression and biaxial tension, respectively. To examine the accuracy and reliability of the ultrasonic pole figures simulated by the proposed theoretical modeling, the ultrasonic pole figures are compared with those analyzed by the finite element polycrystal model (FEPM). The results show a remarkable qualitative similarity among the two methods.
机译:多晶聚集体中的超声波速度受塑性变形引起的纹理变化的敏感影响,并且它们之间的关系已由Sayers进行了系统地分析[J.物理D:应用物理15(1982)]。根据Sayers提出的模型,可以通过微晶取向分布函数(CODF)构造超声极图,而可以通过使用超声波速度变化来推导。在先前的论文中,作者提出了模拟超声波在塑性变形下在固体材料中传播的速度的理论模型,并证明与实验结果吻合良好。在本文中,所提出的理论模型被用来基于Sayers模型在分别单轴拉伸,纯扭转,等双轴拉伸压缩,双轴压缩和双轴拉伸的各种载荷条件下构造超声极图。为了检查所提出的理论模型模拟的超声极图的准确性和可靠性,将超声极图与有限元多晶模型(FEPM)分析的超声极图进行了比较。结果表明这两种方法在质量上有显着相似性。

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