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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Kinetic equations for non-equilibrium grain boundary segregation induced by applied tensile stress
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Kinetic equations for non-equilibrium grain boundary segregation induced by applied tensile stress

机译:外加拉伸应力引起的非平衡晶界偏析的动力学方程

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摘要

Based on an earlier model, a set of kinetic equations is derived to formulate the process of non-equilibrium grain boundary segregation induced by a low tensile stress. These kinetic equations allow excellent simulation of the grain boundary segregation of phosphorus and sulphur observed in steels subjected to low tensile stresses. The simulation results justify both the earlier model and the present kinetic equations. They also show that an applied tensile stress can increase the diffusion rate of solute-vacancy complexes and decrease that of isolated solute atoms significantly, and can also bring forward the critical time of non-equilibrium segregation for phosphorus and delay that for sulphur.
机译:基于较早的模型,导出了一组动力学方程,以公式化由低拉伸应力引起的非平衡晶界偏析的过程。这些动力学方程式可以很好地模拟在低拉伸应力下在钢中观察到的磷和硫的晶界偏析。仿真结果证明了较早的模型和当前的动力学方程都是正确的。他们还表明,施加的拉应力可以提高溶质-空位络合物的扩散速率,并显着降低孤立的溶质原子的扩散速率,并且还可以提前导致磷非平衡偏析的临界时间,而硫则延迟。

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