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Fabrication and Analysis of the Wear Properties of Hot-Pressed Al-Si/SiCp + Al-Si-Cu-Mg Metal Matrix Composite

机译:热压Al-Si / SiCp + Al-Si-Cu-Mg金属基复合材料的磨损性能分析

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摘要

The aim of this study was to characterize microstructures and mechanical properties of aluminum metal matrix composites (MMC's) prepared by powder metallurgy method. Consolidation of mixed powder with gas atomized Al-Si/SiCp powder and Al-14Si-2.5Cu-0.5Mg powder by hot pressing was classified according to sintering temperature and sintering time. Sintering condition was optimized using tensile properties of sintered specimens. Ultimate tensile strength of the optimized sintered specimen was 228 MPa with an elongation of 5.3% in longitudinal direction. In addition, wear properties and behaviors of the sintered aluminum-based MMC's were analyzed in accordance with vertical load and linear speed. As the linear speed and vertical load of the wear increased, change of the wear behavior occurred in order of oxidation of Al-Si matrix, formation of C-rich layer, Fe-alloying to matrix, and melting of the specimen
机译:这项研究的目的是表征通过粉末冶金法制备的铝金属基复合材料(MMC)的组织和力学性能。根据烧结温度和烧结时间,将混合粉末与气雾化Al-Si / SiCp粉末和Al-14Si-2.5Cu-0.5Mg粉末的固结进行分类。利用烧结样品的拉伸性能优化了烧结条件。优化的烧结样品的极限抗拉强度为228 MPa,纵向伸长率为5.3%。此外,根据垂直载荷和线速度分析了铝基烧结MMC的磨损性能和行为。随着磨损的线速度和垂直载荷的增加,磨损行为发生变化,依次发生Al-Si基体的氧化,富C层的形成,Fe与基体的合金化以及试样的熔化

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