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Retained Austenite Phase in (26.5Cr, 2.6C) White Cast Iron Studied by Means of CEMS and Eddy Current

机译:通过CEMS和涡流研究的(26.5%Cr,2.6%C)白色铸铁保留奥氏体相

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摘要

High chrome white irons are specifically employed in the mining industry for their resistance to wear. More cost-effective materials are constantly being sought, due to the high wear rate of the drilling components, which is a high cost area for this industry. Optimum resistance to wear is often not the main criterion of material selection but parameters such as ease of fabrication; availability and low initial cost have also to be accounted for. A correctly heat-treated high chrome white iron of a right chemical composition presents the best hardness and toughness combination. A (26.5 wt.% Cr, 2.6 wt.% C) white iron has been produced by casting and heat-treating. As the retained austenite phase has the ability to harden, the control of its content may result in tuning the applications of this material. Various heat-treatments were given to the above-mentioned material to achieve a spread of austenite values. The retained austenite phase amount was measured by means of X-ray diffraction (XRD), Conversion Electron Moessbauer spectroscopy (CEMS) and Eddy current techniques. A linear correlation between results from Eddy Current and CEMS, Eddy-current and XRD, and between those from CEMS and XRD was observed. As the nominal abundance values were "technique dependent", their conversion will be discussed. The present study results in the calibration of the Eddy current apparatus and suggests its application in the casting industry during mass production for the retained austenite content determination in high chrome white iron castings.
机译:高铬白色铁磁在采矿业专门用于其耐磨性。由于钻井部件的高磨损率,不断寻求更具成本效益的材料,这是该行业的高成本区域。最佳耐磨性恒定不是材料选择的主要标准,而是易于制造的参数;可用性和低初始成本也会被占。右化学成分的正确热处理的高铬白铁具有最佳的硬度和韧性组合。 A(26.5重量%Cr,2.6重量%C)白色铁已通过铸造和热处理产生。随着保留的奥氏体相具有硬化的能力,对其含量的控制可能导致调整该材料的应用。向上述材料提供各种热处理,以实现奥氏体值的扩散。通过X射线衍射(XRD),转化电子Moessbauer光谱(CEM)和涡流技术来测量保留的奥氏体相量。观察到来自涡流和CEM,涡流和XRD的结果与CEMS和XRD之间的线性相关性。随着标称丰富值的“技术依赖”,将讨论它们的转换。本研究导致涡流设备的校准,并在高铬白色铁铸件中批量生产期间施加铸造工业中的应用。

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