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首页> 外文期刊>Chinese science bulletin >Influence of reaction stresses induced by dislocation slips on the orientation evolution in bcc metals
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Influence of reaction stresses induced by dislocation slips on the orientation evolution in bcc metals

机译:位错滑移引起的反应应力对bcc金属取向演变的影响

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摘要

A plastic deformation model for bcc metals is proposed in consideration of reaction stresses. The shear strains and the corresponding reaction stresses induced by the activation of dislocations are calculated in the model, which will influence the following dislocation activation. The rolling texture in bcc metals is simulated up to 80% reduction, while the ratio of critical resolved shear stresses between the dislocations slipping on the {110} and {112} planes is chosen as 0.95. The corresponding calculation is also conducted with the activation of second dislocation, if the difference between the orientation factor of the two dislocations with maximal orientation factors is lower than 5%. It is shown that the simulated texture is closer to that of the 80% rolled interstitial free steels than other modeling. It is believed that the new model can give more attention to both of the strain and stress continuities during the plastic deformation of polycrystalline metals, and therefore approaches closer to the real deformation process in bcc metals.
机译:考虑到反应应力,提出了密件抄送金属的塑性变形模型。在模型中计算了由位错激活引起的剪切应变和相应的反应应力,这将影响随后的位错激活。模拟了bcc金属中的轧制织构,减少了80%,而在{110}和{112}面上滑动的位错之间的临界分辨剪切应力之比被选择为0.95。如果具有最大取向因子的两个位错的取向因子之间的差异小于5%,则在激活第二个位错时也进行相应的计算。结果表明,与其他模型相比,模拟织构更接近80%轧制间隙自由钢的织构。可以相信,新模型可以更加关注多晶金属塑性变形过程中的应变和应力连续性,因此更接近于密实密实金属中的真实变形过程。

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