Abrasive wear properties of metal matrix composites produced by hot isostatic pressing

Sanna Ala-Kleme, Päivi Kivikytö-Reponen, J. Liimatainen, J. Hellman, S. Hannula
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引用次数: 23

Abstract

Steel matrix composites are an attractive choice for paper, pulp and mineral crushing industries because of their wear resistant properties. In this paper the abrasive wear properties of the tool steel matrix composites are studied. The rubber wheel abrasion tests were carried out using six different composites. The tool steel Ralloy ® WR6 was used as matrix material in all composites. Typically there is about 20 vol% VC in the matrix before the addition of the particle reinforce- ments. Reinforcements were either cemented carbides (WC-Co), cast tungsten carbides (WC) or niobium carbides (NbC). All the composites were so-called double dispersion composites having two distinctive reinforcement types. Although the wear resistance of the composite materials has been found to increase with reinforcement additions in rock crushing environment with multimode wear conditions, the pure abrasion resistance of the composites, having up to 30% additional reinforcements, was found inferior to the matrix tool steel. Based on the observations it is suggested that in order to improve the abrasive wear resistance of the tool steels by adding hard particles, the matrix-particle interface s hould be strong enough to prevent the detachment of particles and the amount of particles should be high enough to compensate the accelerated wear of the matrix because of hard particle wear debris.
热等静压金属基复合材料的磨粒磨损性能
钢基复合材料因其耐磨性能而成为造纸、纸浆和矿物破碎行业的一个有吸引力的选择。研究了工具钢基复合材料的磨粒磨损性能。采用6种不同的复合材料对橡胶轮进行了磨损试验。所有复合材料均采用工具钢Ralloy®WR6作为基体材料。通常在加入颗粒增强剂之前,基体中VC含量约为20 vol%。增强剂有硬质合金(WC- co)、铸造碳化钨(WC)或碳化铌(NbC)。所有的复合材料都是所谓的双分散复合材料,具有两种不同的增强类型。在岩石破碎、多模态磨损条件下,复合材料的耐磨性随增强量的增加而提高,但当增强量增加30%时,其纯耐磨性不如基体工具钢。在此基础上提出,为了提高工具钢的磨料耐磨性,添加硬颗粒的基体-颗粒界面应足够强,以防止颗粒的脱落,并且颗粒的数量应足够高,以补偿硬颗粒磨损碎片对基体的加速磨损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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