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Microstructure of a laser-surface-melted SiC-particle-reinforced aluminum metal matrix composite

机译:激光表面熔化的SiC颗粒增强铝金属基复合材料的微观结构

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Abstract: A SiC particle reinforced aluminum matrix composite (SiCp/Al composite) is melted by a high power continuous wave CO$-2$/ laser. Microstructure of the laser melted SiCp/Al MMC is studied as functions of laser processing parameters. The silicon carbide particles are completely dissolved during laser surface melting and aluminum silicon carbide Al$- 4$/SiC$-4$/, aluminum carbide Al$-4$/C$-3$/, and primary silicon particles are produced in the laser melted surface. The size and volume fraction of the newly formed phases depend on the processing conditions. The relative volume fraction of Al$-4$/SiC$-4$/ to Al$-4$/C$-3$/ is strongly dependent on the laser linear energy density, a higher linear energy density leading to more Al$-4$/SiC$-4$/ formation. Result of anodic polarization corrosion test indicates that the corrosion resistance of the SiCp/Al MMC is not improved after laser surface melting.!5
机译:摘要:用高功率连续波CO $ -2 $ /激光熔化SiC颗粒增强铝基复合材料(SiCp / Al复合材料)。研究了激光熔化的SiCp / Al MMC的微观结构与激光加工参数的关系。碳化硅颗粒在激光表面熔化过程中被完全溶解,碳化铝Al $ -4 $ / SiC $ -4 $ /,碳化铝Al $ -4 $ / C $ -3 $ /和在激光熔化的表面。新形成的相的尺寸和体积分数取决于加工条件。 Al $ -4 $ / SiC $ -4 $ /相对于Al $ -4 $ / C $ -3 $ /的相对体积分数在很大程度上取决于激光线性能量密度,较高的线性能量密度导致更多的Al $ -4 $ / SiC $ -4 $ /形成。阳极极化腐蚀试验的结果表明,激光表面熔化后,SiCp / Al MMC的耐蚀性没有改善。!5

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