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Interfacial Characteristics of WC Particles Reinforced Hadfield Steel Matrix Composites

机译:WC颗粒增强哈德菲尔德钢基复合材料的界面特性

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In order to improve the wear resistant properties, WC ceramic particles were used to reinforce Hadfield steel. WCp/Hadfield steel composites were fabricated by optimized solid state sintering process of powder metallurgy. Interface structure, constituent phase and the forming mechanism of the composites were investigated systematically. The results show that the WCp/Hadfield steel composites have uniformly distributed particles and well bonded interface between WC particles and Hadfield steel. In the WCp/Hadfield steel composites, the interface between WC particles and Hadfield steel matrix is of shell shape, in which W, Fe and Mn elements diffuse between the two phases. The interface is of metallurgical bond, in which a new phase, namely Fe_3 W_3C is formed. The micro-hardness of the interface layer is between those of WC and the steel matrix, which can provide a guarantee for the property transition between WC particles and Hadfield steel matrix. The diffusion reaction mechanism of the interface was also systematically studied.
机译:为了改善耐磨性能,WC陶瓷颗粒用于增强哈德菲尔德(Hadfield)钢。通过优化的粉末冶金固态烧结工艺制备了WCp / Hadfield钢复合材料。系统地研究了复合材料的界面结构,组成相和形成机理。结果表明,WCp / Hadfield钢复合材料具有均匀分布的颗粒并且在WC颗粒与Hadfield钢之间具有良好的粘结界面。在WCp / Hadfield钢复合材料中,WC颗粒与Hadfield钢基体之间的界面呈壳形,其中W,Fe和Mn元素在两相之间扩散。该界面是冶金结合的,其中形成新相,即Fe_3 W_3C。界面层的显微硬度介于WC和钢基体之间,可以为WC颗粒与Hadfield钢基体之间的性能过渡提供保证。还对界面的扩散反应机理进行了系统的研究。

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