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Effect of Immersion Routes on the Quenching Distortion of a Long Steel Component Using a Finite Element Model

机译:浸入路径对长钢构件淬火变形的影响的有限元模型

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Distortion while quenching steel is a commonly found problem in industrial practice. This issue arises from the combined effect of thermal contraction and martensite transformation stresses. This problem may be exacerbated in components with long geometries. This work presents the results of a numerical and experimental investigation that assessed the effect of both the austenite grain size (AGS) of three sizes 8, 9 and 10 ASTM, and the immersion route on the distortion of a long component of SAE 5160 steel during oil quenching. The transformation kinetics were calculated using JMatPro and were validated by quench dilatometry. A three-dimensional finite element model was developed in Deform 3D. This model was then validated using thermocouple data. Results showed that the distortion was minimized when the long component was dipped sideways in the quenching medium instead of immersing the component from the distal ends when the AGS was 8 ASTM.
机译:钢淬火时的变形是工业实践中常见的问题。这个问题是由于热收缩和马氏体转变应力的共同作用引起的。在几何形状较长的组件中,此问题可能会加剧。这项工作提出了数值和实验研究的结果,评估了三种尺寸分别为8、9和10 ASTM的奥氏体晶粒尺寸(AGS)的影响,以及浸没路线对SAE 5160钢长形零件在变形过程中变形的影响。油淬火。使用JMatPro计算转化动力学,并通过猝灭膨胀法验证。在Deform 3D中开发了三维有限元模型。然后使用热电偶数据验证该模型。结果表明,当AGS为8 ASTM时,将长的组件侧向浸入淬火介质中,而不是将其从远端浸入,将变形最小化。

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