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The abrasive wear of plasma sprayed nanoscale tungsten carbide-cobalt (WC-Co).

机译:等离子喷涂纳米级碳化钨-钴(WC-Co)的磨料磨损。

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摘要

Thermal spray coatings composed of a variety of carbide sizes and cobalt contents were sprayed with a high energy plasma spray system. The size of the carbides used fell into three rough groupings, micrometer scale carbides (1–2 μm), submicrometer (700–300 nm), and nanoscale (≈100 nm). The feedstock powder was evaluated in terms of their size distribution, external morphology, internal morphology, and initial carbide size. Two different fixtures were used in spraying to evaluate the effect of cooling rate on the wear resistance of the coatings. The microstructures of the sprayed coatings were examined using optical metallography, SEM, FESEM, TEM, XRD and chemical analysis. The coatings were evaluated in low stress abrasive wear by the ASTM G-65 Dry Sand Rubber Wheel test. Furthermore, the porosity and hardness of the coatings were evaluated. The cobalt content was found to be the predominant influence on the wear rate of the coatings. The decrease in the carbide size was not found to effect the wear rate of the coatings. Coatings sprayed on the ‘hot’ fixture were found to have slightly improved wear resistance as compared to coatings sprayed on the ‘cold’ fixture. The wear rates of the coatings were found to be a function of the WC/Co volume ratio.
机译:用高能等离子喷涂系统喷涂由多种碳化物尺寸和钴含量组成的热喷涂涂层。所使用的碳化物的大小可分为三个粗略的组:微米级碳化物(1-2μm),亚微米级(700-300 nm)和纳米级(约100 nm)。根据原料粉末的尺寸分布,外部形态,内部形态和初始碳化物尺寸对其进行了评估。两种不同的固定装置用于喷涂,以评估冷却速度对涂层耐磨性的影响。使用光学金相,SEM,FESEM,TEM,XRD和化学分析检查喷涂涂层的微观结构。通过ASTM G-65干砂橡胶轮试验评估了涂层在低应力磨耗下的性能。此外,评估了涂层的孔隙率和硬度。发现钴含量是对涂层的磨损速率的主要影响。未发现碳化物尺寸的减小会影响涂层的磨损率。与喷涂在“冷”治具上的涂料相比,喷涂在“热”治具上的涂料的耐磨性略有提高。发现涂层的磨损率是WC / Co体积比的函数。

著录项

  • 作者

    Tewksbury, Graham Alfred.;

  • 作者单位

    OGI School of Science & Engineering.;

  • 授予单位 OGI School of Science & Engineering.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 196 p.
  • 总页数 196
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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