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A fluid-structure interaction approach to investigate the quenching characteristics of a steel tube with temperature dependent properties

机译:流固耦合方法研究具有温度依赖性的钢管的淬火特性

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Quenching is commonly used for improving material properties of steel tubes because of their numerous applications. However, quenching generates some residual stress and deformation in the material due to rapid temperature fluctuations. The properties of the steel are strong functions of these variable temperatures and therefore, the estimated stress and deformation by constant property or static quenching analysis are not very realistic. This study describes the first extensive study of the quenching process of a steel tube including temperature dependent properties by three liquid quenchants using the dynamic fluid-structure interaction quench model. The cooling characteristics of the three liquid quenchants are compared to each other along with the transient temperature distributions in the steel tube. The time-varying nodal, axial, and radial residual stress and deformation of the tube are studied. It is found that, the effectiveness of quenching does not depend only on a particular quenchant, but also on the temperature-varying properties of the steel and the uniformity of the cooling which ultimately determine the criteria for selecting a suitable quenchant for a specific purpose.
机译:由于钢管的众多应用,淬火通常用于改善钢管的材料性能。但是,由于温度的快速波动,淬火会在材料中产生一些残余应力和变形。钢的性能是这些可变温度的强大函数,因此,通过恒定性能或静态淬火分析估算的应力和变形不是很现实。这项研究描述了使用动态流固耦合淬火模型对三种液体淬火剂对钢管淬火过程的首次广泛研究,包括温度依赖性。将三种液体淬火剂的冷却特性以及钢管中的瞬态温度分布进行了比较。研究了随时间变化的节点残余应力,轴向残余应力和径向残余应力以及管的变形。已经发现,淬火的有效性不仅取决于特定的淬火剂,而且还取决于钢的温度变化特性和冷却的均匀性,这最终决定了为特定目的选择合适的淬火剂的标准。

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