The Effects of Reinforcement with TaC on the Microstructure and Wear Properties of Lamellar Graphite Cast Irons

R. Yakut, Ömer Çi̇ftçi̇
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引用次数: 1

Abstract

Lamellar graphite cast irons are prevalently used in several industrial applications, especially the automotive industry, due to their high compressive strength, high thermal conductivity, high castability, vibration damping ability, good mechanical strength, friction and wear resistance, better machinability than other cast irons, and good mold filling. In this study, changes in the wear volumes, wear rates, wear track profiles, and friction coefficients of lamellar graphite cast irons in which Tantalum Carbide (TaC) was added at different reinforcement ratios (A (0.025 wt.%), B (0.155 wt.%), C (0.285 wt.%), and K (unreinforced, 0 wt.%)) were investigated. Additionally, by examining the wear surfaces of the samples using a scanning electron microscope (SEM), their wear mechanisms were determined. As a result of the analyses, it was determined that different reinforcement ratios did not have a noticeable effect on wear track profiles under a load of 1 N. On the other hand, different reinforcement ratios showed an effect on wear track profiles under loads of 3 N and 5 N. The most perceptible wear track profile was formed in Sample C under 5 N. It was observed that increased load values resulted in increased wear volumes, but the increases in the wear rates of the samples were not significant, and the numerical values were close to each other. The highest wear volumes were determined in the reinforced C sample and the unreinforced K sample under 5 N load. As the magnitude of the load that was applied increased, the friction coefficients of Samples B and C decreased, but the friction coefficients of Samples K and A increased.
TaC增强对层状石墨铸铁组织和磨损性能的影响
由于片状石墨铸铁具有高抗压强度、高导热性、高浇注性、阻尼振动能力、良好的机械强度、摩擦和耐磨性、比其他铸铁更好的可加工性和良好的模具填充性等优点,在几种工业应用中,特别是汽车工业中得到了广泛的应用。在本研究中,研究了碳化钽(TaC)在不同增强率(A (0.025 wt.%)、B (0.155 wt.%)、C (0.285 wt.%)和K(未增强,0 wt.%)下对层状石墨铸铁的磨损体积、磨损率、磨损轨迹分布和摩擦系数的变化。此外,通过扫描电子显微镜(SEM)检查样品的磨损表面,确定其磨损机理。分析结果表明,在1 N荷载作用下,不同补强率对磨损轨迹轮廓的影响不明显,而在3 N和5 N荷载作用下,不同补强率对磨损轨迹轮廓的影响明显。在5 N荷载作用下,试样C形成了最明显的磨损轨迹轮廓。但试样的磨损率增加不显著,且数值接近。在5n载荷作用下,增强C试样和未增强K试样的磨损量最大。随着加载强度的增大,试样B和试样C的摩擦系数减小,而试样K和试样A的摩擦系数增大。
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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