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Retained free energy as a driving force for phase transformation during rapid solidification of stainless steel alloys in microgravity

机译:保留的自由能作为微重力下不锈钢合金快速凝固过程中相变的驱动力

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摘要

Ternary Fe-Cr-Ni stainless steel alloys often exhibit a multi-step transformation known as double recalescence where primary ferrite converts to austenite during rapid solidification processes such as casting and welding. In addition to the volume free energy associated with undercooling between the phases, the free energy driving the transformation comes from two additional sources that are retained within the metastable solid—one from the primary phase undercooling and one from melt shear. A new physical model is proposed based on accumulation of defects, such as dislocations or tilt boundaries, and lattice strain. A dimensionless analysis technique shows that the free energy associated with metastable solidification is conserved and the contribution from melt shear can be predicted based on a modification of the Read-Shockley dislocation energy equation. With these additional terms the incubation time between nucleation events becomes inversely proportional to the total free energy squared for bulk diffusion and cubed for grain boundary diffusion mechanisms. In the case of the ferrous alloys studied, the grain boundary mechanism provides a better fit and when the model is applied the delay time behavior collapses to a single master-curve for the entire alloy family.
机译:三元Fe-Cr-Ni不锈钢合金通常表现出多步转变,称为二次重结晶,其中初级铁素体在快速凝固过程中(例如铸造和焊接)转变为奥氏体。除了与相之间过冷相关的体积自由能以外,驱动相变的自由能还来自保留在亚稳固体中的两个其他来源-一个来自初级相过冷,另一个来自熔体剪切。基于缺陷的积累,例如位错或倾斜边界以及晶格应变,提出了一种新的物理模型。无量纲分析技术表明,与亚稳态凝固相关的自由能得以保留,并且基于Read-Shockley位错能量方程的修正可以预测熔体剪切的贡献。使用这些附加项,成核事件之间的温育时间与总自由能成反比,总自由能与体积扩散的平方成正比,对于晶界扩散机制的立方成立方。对于所研究的黑色金属合金,晶界机制提供了更好的拟合度,当应用该模型时,整个合金族的延迟时间行为会塌陷到单个主曲线上。

著录项

  • 期刊名称 NPJ Microgravity
  • 作者

    Douglas M. Matson;

  • 作者单位
  • 年(卷),期 2018(4),-1
  • 年度 2018
  • 页码 22
  • 总页数 6
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 12:26:27

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