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Effect of microstructure on dynamic shear localisation in Alloy 718

机译:微观结构对718合金动态剪切局部化的影响

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摘要

The effect of microstructure on the strain localisation behaviour during dynamic shear deformation of Ni-Fe-base superalloy Alloy 718 was investigated by a combination of experiments and numerical simulations of Split-Hopkinson tests of specimens with top-hat geometry. The results show that strain localisation is promoted by small grain size and precipitation hardening, whereas large grains and solution annealing largely supressed the formation of shear bands. In addition, a smaller fillet radius facilitated the initiation of shear bands. Finite element simulations were able to reproduce the most important features of both global load-displacement histories, and presence of shear localisation. In particular, detailed simulations of the local deformation during localisation showed that temperatures exceeding 750 degrees C (locally above 1000 degrees C) and strain rates in the order of 2.10(5) s(-1) were reached in the band. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过结合实验和带顶帽几何形状的试样的斯普利特-霍普金森试验的数值模拟,研究了Ni-Fe基高温合金718在动态剪切变形过程中的微观结构对应变局部化行为的影响。结果表明,小晶粒尺寸和沉淀硬化促进了应变局部化,而大晶粒和固溶退火大大抑制了剪切带的形成。另外,较小的圆角半径有利于剪切带的产生。有限元模拟能够重现整体荷载-位移历史和剪切局部化的最重要特征。特别是,对局部化过程中局部变形的详细模拟显示,在该带中达到了超过750摄氏度(局部高于1000摄氏度)的温度和大约2.10(5)s(-1)的应变速率。 (C)2017 Elsevier Ltd.保留所有权利。

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