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Element diffusion model of bimetallic hot deformation in metallurgical bonding process

机译:冶金结合过程中双金属热变形的元素扩散模型

摘要

The effect of process parameters on the diffusion behavior of different elements in the metallurgical bonding process of bimetallic hot deformation is investigated. The diffusion distance of different elements increases with the effective strain, deformation and holding temperatures, deformation and holding times. On the other hand, it decreases with the increase of effective strain rate. In addition, an element diffusion model considering the influences of different processing parameters on element diffusion behavior is proposed to predict element concentration values near the metallurgical bonding interface. The proposed element diffusion model is based on the Fick's second law for unidirectional flow under non-steady state condition and is applied to the finite element simulation to investigate the diffusion behavior of different elements in metallurgical bonding process. The study shows that the modified model can predict the concentration profile and diffusion distance in the transition zone with a higher accuracy compared with the reference element diffusion model without considering the effects of effective strain and strain rate.
机译:研究了工艺参数对双金属热变形冶金结合过程中不同元素扩散行为的影响。不同元素的扩散距离随着有效应变,变形和保持温度,变形和保持时间而增加。另一方面,它随着有效应变率的增加而减小。此外,提出了考虑不同工艺参数对元素扩散行为影响的元素扩散模型,以预测冶金结合界面附近的元素浓度值。所提出的元素扩散模型基于非稳态条件下单向流动的Fick第二定律,并应用于有限元模拟,以研究冶金结合过程中不同元素的扩散行为。研究表明,与参考元素扩散模型相比,改进的模型可以更准确地预测过渡带中的浓度分布和扩散距离,而无需考虑有效应变和应变率的影响。

著录项

  • 作者

    Sun CY; Li L; Fu MW; Zhou QJ;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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