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The effects of surface-layer grain size and texture on deformation-induced surface roughening in polycrystalline titanium hardened by ultrasonic impact treatment

机译:超声波冲击处理表面层晶粒尺寸和质地对多晶钛的变形诱导表面粗糙化的影响

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The ultrasonic impact treatment (UIT) of titanium specimens leads to the grain refinement and formation of a strong basal texture in the surface layer, affecting the mechanical properties of the UIT titanium parts. In this paper, we aim at investigating numerically the effects which the UIT-modified microstructure has on the micro-and mesoscale deformation behavior of titanium specimens subjected to uniaxial tension. For this purpose, three-dimensional polycrystalline models taking an explicit account of the grain morphology and crystallographic orientations of the base material and UIT modified surface layer are generated by the method of step-by-step packing and implemented in the finite-element calculations. The constitutive models describing the nonlinear behavior of individual grains are implemented in terms of anisotropic elasticity and crystal plasticity theories. The boundary value problem is solved within a dynamic approach using the ABAQUS/Explicit package. This study allows distinguishing between the grain size and texture effects and drawing conclusions on their roles in the stress-strain evolution, plastic strain localization and deformation-induced surface roughening in UIT titanium specimens under loading.
机译:钛试样的超声波撞击处理(UIT)导致晶粒细化和形成表面层的强基底纹理的形成,影响了UIT钛部件的机械性能。在本文中,我们的目的是在数值上调查UIT改性微观结构对经受单轴张力进行钛标本的微型和Mescle变形行为的影响。为此目的,通过逐步填充的方法产生三维多晶模型和基材和UIT改性表面层的晶粒形态和晶体取向的晶体取向,并在有限元计算中实现。描述各种颗粒的非线性行为的本构模型在各向异性弹性和晶体塑性理论方面实现。使用ABAQUS / Explicit包在动态方法中解决了边值问题。该研究允许区分晶粒尺寸和纹理效应以及载荷下紫外钛样品中的应力 - 应变进化,塑性应变定位和变形诱导的表面粗糙化作用的作用。

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