Effect of TiC-Cr3C2 Particles Content on Abrasive Wear Resistance of Co-Base Overlay Weld Alloy.

M. Nishida, T. Araki, H. Fujita
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引用次数: 7

Abstract

This study was concerned with the production of carbide dispersion type composite materials by plasma transfer arc welding. The composite materials were produced by introducing different amounts of Cr-carbide and/or Ti-carbide powders in Co-base alloy (Stellite 6). To assess the resistance to wear of the composite materials, rubber wheel abrasion test was performed on surface of the composite materials.The composite materials were consisted of Co-alloy matrix and non-fused carbide. The average hardness of matrix was increased from HV450 to HV850 according to Cr-carbide content of the composite material.Weight loss of composite materials by wear were decreased from 850 mg to 50 mg according to volume fraction of non-fused carbide particles. Especially when mean free path between carbide particles was smaller than size silica sand (wear material), abrasive wear resistance of composite materials was rapidly improved.
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TiC-Cr3C2颗粒含量对共基堆焊合金磨料耐磨性的影响
研究了用等离子转移弧焊法制备碳化物分散型复合材料。在钴基合金(Stellite 6)中加入不同量的cr -碳化和/或ti -碳化粉末制备复合材料。为评估复合材料的耐磨性,在复合材料表面进行了橡胶轮磨损试验。复合材料由钴合金基体和未熔合硬质合金组成。随着复合材料中碳化物含量的增加,基体的平均硬度由HV450提高到HV850。根据未熔合碳化物颗粒的体积分数,复合材料的磨损失重从850 mg降低到50 mg。特别是当碳化物颗粒之间的平均自由程小于粒径的硅砂(磨损材料)时,复合材料的磨料耐磨性得到了迅速提高。
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Effects of Alloying Elements on the Toughness and Microstructure of HIGH CURRENT DENSITY GAS SHIELDED ARC PROCESS Weld Metals Study on Glass-metal Bonding by Anodic Bonding. Effect of TiC-Cr3C2 Particles Content on Abrasive Wear Resistance of Co-Base Overlay Weld Alloy. Impact Property at Cryogenic Temperature of Candidate Materials for Fusion Reactor and Their Electron Beam Welded Joint Influence of Delta-ferrite on Sensitization of the Austenitic Stainless Steel Weld Metal
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