Effect of heat treatment on hardness and wear resistance of high carbon-high chromium steel (fmu-11)

A. Darvishi, Aria Daneshmayeh, A. Salehi, M. Ahmadi, A. Soleymani
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引用次数: 3

Abstract

In the present study, microstructure, hardness, and abrasion resistance of a heat-treated high carbon-high chromium steel (FMU-11) used in the cement mills were investigated. To investigate the best heat-treating cycle for the FMU-11 steel, three sets of samples were heat treated. The first set was tempered two times, the second set was re-hardened, and the third set was cryogenically heat treated. These samples were then compared with the conventionally heat-treated samples. The samples' microstructure was studied using an optical microscope, where traditional black and white etching, as well as color etching, were used. Scanning electron microscopy (SEM) was applied for higher magnification studies and in-depth analysis of the chemical composition. The mechanical properties were investigated by measuring the hardness and the wear resistance for the samples heat-treated in different cycles. The results showed that the cryogenic treatment and double-tempered samples had the highest hardness and wear resistance. In addition, the results showed that the re-hardening operation caused the carbides to be finely separated and evenly distributed in the steel matrix. The wear test results illustrated that the wear mechanism could be the delamination wear and the abrasive wear combined.
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热处理对高碳高铬钢(fmu-11)硬度和耐磨性的影响
本文研究了一种用于水泥厂的热处理高碳高铬钢(FMU-11)的显微组织、硬度和耐磨性。为探讨FMU-11钢的最佳热处理周期,对三组试样进行了热处理。第一组经过两次回火,第二组再次硬化,第三组进行低温热处理。然后将这些样品与常规热处理样品进行比较。使用光学显微镜研究了样品的微观结构,其中使用了传统的黑白蚀刻和彩色蚀刻。应用扫描电子显微镜(SEM)进行高倍放大研究和深入分析化学成分。通过测定不同热处理周期试样的硬度和耐磨性,研究了其力学性能。结果表明,深冷处理和双回火处理的样品具有最高的硬度和耐磨性。结果表明,再硬化处理使碳化物在钢基体中分散均匀。磨损试验结果表明,磨损机制可能是脱层磨损和磨粒磨损的结合。
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