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Distortion in quenching an AISI 4140 C-ring - Predictions and experiments

机译:AISI 4140 C环淬火时的变形-预测和实验

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摘要

Heat treatment processes are used to enhance the material properties of a wide range of mechanical steel components, according to their final application. Quenching is a common step in these heat treatments, involving the fast cooling of previously austenitized parts and leading to a phase transformation from austenite to hard martensite in the material. Quenching commonly causes a geometric distortion in the parts, associated with the thermal contraction and with the change in the mechanical and geometri cal properties of austenite and martensite. It is of importance to predict these distortions, so that one can design corrective post-heat treatment shape corrections or include them in the pre-heat treatment part dimensions, thus leading to a final part with adequate shape and dimensions. This study presents the results of a finite element (FE) simulation of the quenching of an AISI 4140 steel C-ring in oil, covering the analysis of the distortion caused by both thermal contraction and phase transformation. Furthermore, the distortion behavior during the cooling stage is analyzed, as well as the hardness and martensite vol ume fractions. Experiments were also conducted in order to obtain the geometric distortion, the micro structures and hardness of the C-rings. The FE modeling results are in good agreement with the experimental values and, to the knowledge of the authors, this is the first time that such an agreement has been obtained for the distortion caused by quenching of C-rings. The design of new products and quenching processes should consider the studied aspects, and may also be assisted by the methodology applied to this work.
机译:根据其最终应用,热处理工艺可用于增强各种机械钢部件的材料性能。淬火是这些热处理中的常见步骤,包括对先前奥氏体化零件的快速冷却,并导致材料中从奥氏体到硬马氏体的相变。淬火通常会导致零件的几何变形,这与热收缩以及奥氏体和马氏体的机械和几何尺寸特性有关。预测这些变形非常重要,以便可以设计出正确的热处理后形状校正或将其包括在热处理前零件尺寸中,从而得到具有足够形状和尺寸的最终零件。这项研究提出了油中AISI 4140钢制C形圈淬火的有限元(FE)模拟结果,涵盖了热收缩和相变引起的变形分析。此外,分析了冷却阶段的变形行为,以及硬度和马氏体体积分数。为了获得C形环的几何变形,微观结构和硬度,还进行了实验。 FE建模结果与实验值非常吻合,并且据作者所知,这是首次针对由C环淬火引起的变形获得这样的一致性。新产品的设计和淬火工艺应考虑所研究的方面,并且还可以通过应用于该工作的方法学来辅助。

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  • 来源
    《Materials & design》 |2012年第12期|p.55-61|共7页
  • 作者单位

    College of Engineering, The Ohio State University, 339 Baker Systems/1972 Neil Avenue, Columbus, Ohio 43210-1271, USA,Post-Graduation Program on Metallurgical and Mining Engineering, School of Engineering, Federal University of Minas Cerais, Av. Antonio Carlos 6627, Belo Horizonte 31270-901,Minas Cerais, Brazil;

    CNEN (Brazilian National Commission of Nuclear Energy), CDTN (Center for the Development of Nuclear Energy), Av. Antonio Carlos 6627, Belo Horizonte 31270-901,Minas Cerais, Brazil;

    College of Engineering, The Ohio State University, 339 Baker Systems/1972 Neil Avenue, Columbus, Ohio 43210-1271, USA;

    CNEN (Brazilian National Commission of Nuclear Energy), CDTN (Center for the Development of Nuclear Energy), Av. Antonio Carlos 6627, Belo Horizonte 31270-901,Minas Cerais, Brazil;

    Department of Mechanical Engineering, School of Engineering, Federal University of Minas Cerais, Av. Antonio Carlos 6627, Belo Horizonte 31270-901, Minas Gerais, Brazil;

    College of Engineering, The Ohio State University, 339 Baker Systems/1972 Neil Avenue, Columbus, Ohio 43210-1271, USA;

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