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Effect of particle size on dry sliding wear behaviour of sillimanite reinforced aluminium matrix composites

机译:粒径对硅酸盐增强铝基复合材料干式滑动磨损行为的影响

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Present work describes the development of Al-Si/sillimanite reinforced composites via stir casting route. Sillimanite is abundant mineral available in coastal regions of India and has not been explored much as reinforced mineral for the development of composites. In the present work, dry sliding wear behaviour of LM30 aluminium alloy reinforced with sillimanite has been investigated. Composites reinforced with sillimanite in different weight percentage (3-18 wt percentage) and particle size range (fine: 1-20 mu m, medium: 32-50 mu m, and coarse: 75-106 mu m) were prepared. Microstructural studies revealed uniform distribution of sillimanite particles in the matrix of composites. Nanoindentation taken at different phases indicated good bonding between reinforced particles and matrix. Fine particles (1-20 mu m) reinforced composites containing 15 wt% sillimanite exhibited higher wear resistance which is 55% more compared to base LM30 alloy. Beyond this reinforcement level, wear resistance deteriorated because of agglomeration of the fine particles. Analysis of wear track and debris revealed that at low applied loads, abrasive wear was predominant whereas at higher applied loads, adhesive wear was dominating factor.
机译:目前的工作描述了通过搅拌铸造途径的铝酸钠/西吡米石增强复合材料的开发。 Sillimanite在印度沿海地区提供丰富的矿物质,并没有被探索为复合材料的增强矿物。在本作的工作中,研究了LM30铝合金用Sillimanite加固的干式滑动磨损行为。制备含有Sillimanite的复合材料,不同重量百分比(3-18重量%)和粒度范围(细粒度:1-20μm,培养基:32-50μm,粗糙:75-106μm)。微观结构研究揭示了复合材料基质中的Sillimanite颗粒均匀分布。在不同阶段采取的纳米茚定表明增强颗粒和基质之间的良好粘合。含有15wt%Sillimanite的细颗粒(1-20μm)增强复合材料表现出较高的耐磨性,与基础LM30合金相比,耐磨性较高。除了这种加强水平之外,由于细颗粒的附聚,耐磨性劣化。磨损轨道和碎屑的分析显示,在低施加的载荷时,磨料磨损是主要的,而在较高的施加载荷中,粘合剂磨损是主导因子。

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