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Modelling of the Mechanical Behaviour of Ultra-Fine Grained Titanium Alloys at High Strain Rates

机译:高应变速率下超细晶粒钛合金力学行为的建模

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摘要

Results of numerical simulations of the mechanical behaviour of coarse grained and UFG titanium alloys under quasi-static uniaxial compression and plane shock wave loading are presented in this paper. Constitutive equations predict the strain hardening behaviour, the strain rate sensitivity of the flow stress and the temperature softening of titanium alloys with a range of grain sizes from 20 µm to 100 nm. Characteristics of the mechanical behaviour of UFG a and a+ß titanium alloys in wide range of strain rates are discussed.
机译:本文给出了粗晶粒和UFG钛合金在准静态单轴压缩和平面冲击波载荷下的力学行为的数值模拟结果。本构方程可预测晶粒尺寸为20 µm至100 nm的钛合金的应变硬化行为,流动应力的应变率敏感性和温度软化。讨论了UFG a和a +ß钛合金在宽应变率范围内的力学行为特征。

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