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Wear behaviour of hardfacing ultra carbide steel grades

机译:硬粘贴超碳化物钢等级的磨损行为

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摘要

In the cement industry, hardfacing is one of the most effective coating procedures. It enhances mechanical properties, thus improving abrasive wear resistance. In this study, Cr(3)C(2)was employed as reinforcement for carbon steel. Mechanical testing and surface characterisation techniques were used to study the carbide in terms of its size, shape, and matrix orientation. The abrasion resistance of Cr3C2, ultra carbide, and tungsten carbide samples were studied using a standard dry sand/rubber wheel test. The results showed that the formation of M6C decreases ductility, whereas the presence of Mo2C and Cr improve ductility and wear resistance. The presence of M(7)C(3)carbides and the formation of complicated carbides (Mo2C) in the matrix led to enhanced bending properties. The measured wear resistance of hardfacing steel was seven times higher than that of alloyed and tempered steels commonly used in the cement industry.
机译:在水泥工业中,堆焊是最有效的涂层程序之一。它增强了机械性能,从而提高了耐磨性。在本研究中,Cr(3)C(2)被用作碳钢的增强体。机械测试和表面表征技术被用来研究碳化物的大小、形状和基体取向。采用标准干砂/橡胶轮试验研究了Cr3C2、超碳化物和碳化钨试样的耐磨性。结果表明,M6C的形成降低了塑性,而Mo2C和Cr的存在提高了塑性和耐磨性。M(7)C(3)碳化物的存在和基体中复杂碳化物(Mo2C)的形成导致弯曲性能增强。耐磨堆焊钢的耐磨性是水泥行业常用的合金钢和回火钢的七倍。

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