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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Wear Behavior, Microstructure, and Dimensional Stability of As-Cast Zinc-Aluminum/SIC (Metal Matrix Composites) Alloys
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Wear Behavior, Microstructure, and Dimensional Stability of As-Cast Zinc-Aluminum/SIC (Metal Matrix Composites) Alloys

机译:铸造锌铝/ SIC(金属基复合材料)合金的磨损行为,显微组织和尺寸稳定性

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摘要

The wear behaviors of five different zinc-aluminum (ZA)-based alloys containing silicon, copper, and 8 and 16 pet on volume of reinforcing silicon carbide (SiC) particles were analyzed. Hardness, dimensional stability, and wear tests were performed on these five alloy samples. Microstructural investigation and semiquantitative chemical analysis of the different alloying characteristics of the cast samples, the wear surface, and the wear debris were obtained by scanning electron microscopy (SEM), energy-dispersive X-ray analysis (EDXA), and X-ray diffraction (XRD). The addition of Si, Cu, and SiC has a significant effect on the solidification process and final morphology of the alloys. The five cast alloys tested showed dimensional stability for a period of 1000 hours at 165 deg C +- 2.5 deg C. The wear tests were performed using a pin-on-disc apparatus under dry and lubricated conditions. Loads of 29.43 N (3 kg), 49.05 N (5 kg), and 78.48 N (8 kg) and a velocity of 250 rpm (2 m/s) were used. The results indicate that the wear rate of ZA alloys is strongly dependent on test load in a nonlinear relationship and that the addition of SiC particles improved the wear properties of the matrix alloys. Under dry conditions, there was considerable loss of material, particularly in the nonreinforced alloys. In addition, the nonreinforced alloys presented substantial local plastic deformation and transfer of elements between the disc, the sample, and the debris. The amount of element transfer can be correlated with the elements presented. The proposed wear mechanisms are discussed.
机译:分析了五种不同的含硅,铜以及8和16 pet的锌铝(ZA)基合金在增强碳化硅(SiC)颗粒上的磨损行为。对这五个合金样品进行了硬度,尺寸稳定性和磨损测试。通过扫描电子显微镜(SEM),能量色散X射线分析(EDXA)和X射线衍射获得铸件样品,磨损表面和磨损碎片的不同合金化特征的显微组织研究和半定量化学分析(XRD)。 Si,Cu和SiC的添加对合金的凝固过程和最终形态具有重大影响。测试的五种铸造合金在165℃±2.5℃的条件下显示了1000个小时的尺寸稳定性。磨损试验是在干燥和润滑条件下使用销钉盘式设备进行的。使用的载荷为29.43 N(3千克),49.05 N(5千克)和78.48 N(8千克),速度为250 rpm(2 m / s)。结果表明,ZA合金的磨损率与试验载荷呈非线性关系,而SiC颗粒的添加改善了基体合金的磨损性能。在干燥条件下,材料会大量损失,特别是在非增强合金中。另外,非增强合金在圆盘,样品和碎屑之间表现出明显的局部塑性变形和元素转移。元素转移的数量可以与呈现的元素相关。讨论了建议的磨损机理。

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