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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Finite element analysis of plastic deformation of CP-Ti by multi-pass equal channel angular extrusion at medium hot-working temperature
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Finite element analysis of plastic deformation of CP-Ti by multi-pass equal channel angular extrusion at medium hot-working temperature

机译:中等热加工温度下多道等通道角挤压对CP-Ti塑性变形的有限元分析

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摘要

The plastic deformation of commercially pure (CP) titanium by multi-pass equal channel angular extrusion (ECAE), at medium hot-working temperature, was simulated using finite element method. The effect of ECAE deformation was to uniformly deform the middle billet by simple shear and to induce a side shift of un-deformed and un-moved billet-ends so as to preserve its original shape during deformation. Unlike the single ECAE pass, where the corner gap is important, it was the repetitive billet-end side-shift of less-deformed billet-ends which are responsible for the development of the non-uniformly deformed zone in the multi-pass ECAE processing via route A. The deformation zone was however little affected in the multi-pass EACE processing via route C, because of the alternate sense of billet-end side-shift. The simulation well predicted the inclination angles of elongated-grain in the multi-pass ECAE deformation.
机译:使用有限元方法模拟了在中等热加工温度下,多道次等通道角挤压(ECAE)对商业纯(CP)钛的塑性变形。 ECAE变形的作用是通过简单剪切使中间坯料均匀变形,并引起未变形和未移动的坯料端部发生侧移,从而在变形过程中保持其原始形状。与单个ECAE通道不同,在拐角间隙很重要的地方,是变形较少的钢坯末端的重复钢坯末端侧移,这导致在多通道ECAE加工中形成非均匀变形区然而,由于钢坯端侧移的交替感,在通过路线C的多道次EACE处理中,变形区几乎没有受到影响。仿真很好地预测了多道ECAE变形中拉长晶粒的倾斜角。

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