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Characteristics of 100Cr6 bearing steel after thixoforming process performed with prototype device

机译:用原型装置进行触变成型后的100Cr6轴承钢的特性

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摘要

A device based on a high pressure die-casting(HPDC) machine was constructed, with a capacity to produce thixo-casts from steel. After inductive heating to the required semi-solid temperature range, the samples were transported in a protective argon atmosphere to a cylinder of modified HPDC and injected into a pre-heated die. Bearing steel 100Cr6 (after forging) was used as the feedstock material. The metallographic analysis of the steel showed a homogenous structure within a whole volume characterized by a grain size between 2 μm and 8 μm. Differential scanning calorimetry (DSC) analysis allowed to estimate the process temperature for thixoforming at 1 390 ℃ which was attributed to about 45% of a liquid phase. With such technological parameters after the semi-solid processing the mierostructure consisted of globular grains of size from 15 μm to 40 μm. The microstmcture of globules indicated predominant presence of martensite (about 76% volume fraction) with residual austenite between plates. X-ray analysis confirmed that the thixo-cast samples contain mainly martensite and residual austenite. The hardness of the initial forged sample was HRC 27 and after the thixoforming process it was HRC 60, which confirms the presence of martensite and carbides. The thixo-casts were subjected to low tempering, at temperature of 150 ℃ for a period of 2 h, in order to remove stresses created during the process of thixoforming and to increase plasticity. The hardness after tempering was HRC 62.3. Additionally, in order to identify phases present in the thixo-casts, transmission electron microscopy (TEM) was carried out.
机译:构造了一种基于高压压铸(HPDC)机的设备,该设备具有从钢生产触变铸件的能力。感应加热到所需的半固体温度范围后,将样品在保护性氩气气氛中运输到改性HPDC圆柱体中,并注入到预热模具中。轴承钢100Cr6(锻造后)用作原料。钢的金相分析表明,在整个体积内均质组织,其晶粒尺寸在2μm至8μm之间。差示扫描量热法(DSC)分析可以估算触变性在1 390℃下的加工温度,这归因于约45%的液相。在半固态加工之后,利用这样的技术参数,微观结构由尺寸为15μm至40μm的球状晶粒组成。小球的微观结构表明马氏体主要存在(约76%的体积分数),板间残留奥氏体。 X射线分析证实,触变铸造样品主要包含马氏体和残余奥氏体。最初锻造样品的硬度为HRC 27,触变性成型后的硬度为HRC 60,这证实了马氏体和碳化物的存在。为了消除触变成形过程中产生的应力并增加可塑性,对触变铸件在150℃的温度下进行2 h的低回火。回火后的硬度为HRC 62.3。另外,为了鉴定触变铸模中存在的相,进行了透射电子显微镜(TEM)。

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  • 来源
  • 会议地点 Beijing(CN);Beijing(CN)
  • 作者单位

    Institute of Metallurgy and Materials Science of the Polish Academy of Sciences,30-059 Kraków, 25 Reymonta St. Poland;

    Institute of Metallurgy and Materials Science of the Polish Academy of Sciences,30-059 Kraków, 25 Reymonta St. Poland;

    Institute of Metallurgy and Materials Science of the Polish Academy of Sciences,30-059 Kraków, 25 Reymonta St. Poland;

    Institute of Metallurgy and Materials Science of the Polish Academy of Sciences,30-059 Kraków, 25 Reymonta St. Poland;

    Faculty of Foundry Engineering, University of Science and Technology, 30-059 Kraków, 23 Reymonta St. Poland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种
  • 中图分类 金属复合材料;
  • 关键词

    SSM; semi-solid metal; thixoforming; 100Cr6 steel;

    机译:SSM;半固态金属;触变成形; 100Cr6钢;

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