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Mechanical and Tribological Characteristics of the AMC, Prepared by P/M Route along with Thermo-Mechanical Treatment

机译:通过P / M途径制备的AMC的机械和摩擦学特性以及热机械处理

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Thermo mechanical treatments have the ameliorated impacts on the mechanical and tribological properties of powder metallurgy components. In this investigation an aluminium matrix composite (AMC) {Al (92) + Mg (5) + Gr (1) + Ti (2)} has been prepared by following powder metallurgy technique, with double axial compaction and ulterior sintering. Secondary thermo-mechanical treatment i.e. hot extrusion through mathematical contoured cosine profiled die was considered. The die causes minimum velocity relative differences across the extrusion exit cross-section, which provides smooth material flow. Comparative result analysis for the mechanical and tribological characteristics of the specimen before and after extrusion was concentrated. Extrusion engenders significant amount of improvements of the properties those are attributed to excellent bond strength and uniform density distribution due to high compressive stress. Oxidative and delaminated wear mechanisms were found predominating type. To furnish the suitable explanation scanning electron microscopies have been performed for the wear surfaces.
机译:热机械处理对粉末冶金组分的机械和摩擦学性能进行了改进的影响。在该研究中,通过以下粉末冶金技术制备了铝基基复合物(AMC){Al(92)+ Mg(5)+ GR(1)+ Ti(2)},双轴压实和粗烧结。二次热机械处理即,考虑了通过数学轮廓余弦的热挤出。模具导致挤出出口横截面上的最小速度相对差异,其提供平滑的材料流。浓缩挤出前后标本的机械和摩擦学特性的比较结果分析。挤出者由于高压缩应力而归因于优异的粘合强度和均匀密度分布的性质的大量改进。发现氧化和分层磨损机制是占优势型。为了提供合适的解释,已经对磨损表面进行了扫描电子显微镜。

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