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Influence of Heat Treatment and Composition Variations on Microstructure, Hardness, and Wear Resistance of C 18000 Copper Alloy

机译:热处理和组成变化对C 18000铜合金微观结构,硬度和耐磨性的影响

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The hardness and wear behavior properties of two C 18000 copper alloys with variations in Ni, Si, and Cr concentrations, both within the range of C18000 chemical analysis standard, were studied after the alloy samples had been prepared by melting and casting in sand molds and then heat-treated in solution using two-stage aging for different heating time periods. The results obtained from sample sets of the aforementioned two alloys,C0andC1, show that the alloyC1, with slightly higher Si and Ni and lower Cr concentrations than the alloyC0, produced significantly higher hardness values and wear resistance than the alloyC0. Optical and electron microscopy microstructure studies of representative samples revealed a copper matrix containing nickel and silicon in solution and precipitates of chromium and nickel silicides. By studying the wear surfaces and debris of the former samples with electron microscopy, different types of wear mechanisms including adhesive, abrasive, oxidation, and repeated-cycle deformation were found. The wear behavior was expressed as mass weight loss, which correspondingly shows a typical inverse relationship with the hardness values for both theC0andC1alloy groups.
机译:在通过在砂模制备和铸造的金属样品制备之后,研究了在C18000化学分析标准的范围内,在C18000化学分析标准范围内进行了两种C 18000铜合金的硬度和磨损行为特性。然后使用两级老化的溶液在溶液中进行热处理,用于不同的加热时间。从上述两种合金的样品组中获得的结果,C0ARDC1,表明,来自Si和Ni的Si和Ni略高于略高的Si和Ni和较低的Cr浓度,产生显着更高的硬度值和耐磨性,而不是合金属。代表性样品的光学和电子显微镜显微结构研究显示含有镍和硅和硅化物的沉淀物中的铜基质和硅。通过使用电子显微镜研究以前样品的磨损表面和碎屑,发现了不同类型的磨损机构,包括粘合剂,磨料,氧化和重复循环变形。磨损行为表示为质量重量损失,这相应地显示出与THEC0Adc1Alloy基团的硬度值的典型反相关系。

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