Abrasion Resistance of Nickel- and Iron-base Hardfacings

Tadeusz Hejwowski, D. Łukasik
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Abstract

The present study is directed to the problem of hardfacing and restoration of worn industrial equipment. Wear tests were carried out using especially built rig which reproduces working conditions of machinery applied in cement plants. The results of tribological tests on 20 Fe-and Ni-base hardfacings are presented. The effect of hardfacing hardness and chemical composition was evaluated. It was found in SEM examinations that matrix was removed from the zone adjacent to carbides which made them liable to cracking and digging out. The mechanism of matrix removal depended on its hardness and include microcutting and low cycle fatigue. Ni-based hardfacings outper-formed Fe-based coatings. The abrasion resistance of the best Ni-base coating, the Stelcar 6 was 38.7 times higher than that of S235JR steel. Eutectics in Ni-base coatings disturb motion of abrasive grains and force them to rotate instead of sliding over hardfacing surface. Ni-based coatings can be considered in hardfacing or reclamation of numerous industrial components applied in cement plants.
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镍基和铁基硬质合金的耐磨性
本研究针对的是磨损工业设备的硬面处理和修复问题。磨损试验是使用专门建造的钻机进行的,该钻机再现了水泥厂机械的工作条件。对 20 种铁基和镍基硬质堆焊材料的摩擦学测试结果进行了介绍。对硬面硬度和化学成分的影响进行了评估。通过扫描电子显微镜(SEM)检查发现,碳化物邻近区域的基体被剥离,使其容易开裂和脱落。基体去除的机理取决于其硬度,包括微切削和低循环疲劳。镍基硬质涂层优于铁基涂层。最佳镍基涂层 Stelcar 6 的耐磨性是 S235JR 钢的 38.7 倍。镍基涂层中的共晶干扰了磨粒的运动,迫使它们旋转,而不是在硬涂层表面滑动。镍基涂层可用于水泥厂众多工业部件的硬面堆焊或再生。
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