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A model for the effects of strain rate and temperature on the deformation behavior of ultrafine-grained metals

机译:应变率和温度对超细粒粒茂金属变形行为影响的模型

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A theoretical model is developed to account for the effects of strain rate and temperature on the deformation behavior of ultrafine-grained fcc Cu. Three mechanisms, including dislocation slip, grain boundary diffusion, and grain boundary sliding are considered to contribute to the deformation response simultaneously. Numerical simulations show that the strain rate sensitivity increases with decreasing grain size and strain rate, and that the flow stress and tensile ductility increase with either increasing strain rate or decreasing deformation temperature.
机译:制定了理论模型,以考虑应变率和温度对超细粒化FCC Cu的变形行为的影响。认为三种机制包括位错,晶界扩散和晶界滑动,同时促进变形响应。数值模拟表明,应变速率灵敏度随着粒度和应变率降低而增加,并且流量应力和拉伸延展性随着应变率的增加或降低变形温度而增加。

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