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Influence of thermal residual stresses on the elastic phase-strain development in metal matrix composites

机译:残余热应力对金属基复合材料弹性相应变发展的影响

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The development of elastic lattice phase strains in a 15 vol.pct TiC particulate reinforced 2219-T6 Al composite was modeled as a function of tensile uniaxial loading by finite element method (FEM).In the relationship of applied stress vs.elastic lattice phase stran,the slopes vary with the applied load even before the macroscopic yielding.The slopes for the phase-strain perpendicular to loading follow nonmonotonic changes with loading,while,in the direction parallel to loading,the slopes change monotonically with the applied load.In this investigation,we have demonstrated via FEM that thermal residual stresses from thermal expansion mismatch between phases affect initiation of matrix plasticity.And the differences in the matrix plasticity initiation influence the internal stress distribution.The changes in the slope are dictated by the internal stress transfer between phases.FEM models with and without thermal history show significant differences in the response of elastic strain component,a mechanics equivalent of th lattice elastic strain.Agreement with experiment can only be obtained by including the thermal history.From a simple elasto-plastic spring model we are able to demonstrate that,with matrix plasticity propagating as predicted by FEM,the elastic strain component responds similarly to the more rigorous numerical predictions,suggesting that the morphology of elastic strain evolution is dictated by the development of matrix plasticity.
机译:通过有限元方法(FEM),模拟了15vol.pct TiC颗粒增强的2219-T6 Al复合材料中弹性晶格相应变的发展与拉伸单轴载荷的函数关系。 ,甚至在宏观屈服之前,斜率就随施加的载荷而变化。垂直于载荷的相应变的斜率随载荷随非单调变化,而在平行于载荷的方向上,斜率随施加的载荷而单调变化。通过有限元分析,我们已经证明了相之间的热膨胀失配引起的热残余应力会影响基体可塑性的产生。基体可塑性起始的差异会影响内部应力分布。斜率的变化取决于内部应力之间的传递具有和不具有热历史的FEM模型在弹性应变补偿的响应方面显示出显着差异因此,只有通过包含热历史才能获得与实验一致的结果。从简单的弹塑性弹簧模型中,我们能够证明,在有限元法所预测的基体塑性传播的情况下,应变分量对更严格的数值预测的响应相似,这表明弹性应变演化的形态是由基质可塑性的发展决定的。

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