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Reinforcement strategies for producing functionally graded materials by friction stir processing in aluminium alloys

机译:通过铝合金搅拌摩擦加工生产功能梯度材料的增强策略

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The present work addresses the production of aluminium based FGM composites by friction based processes, namely FSP and a consumable tool approach. Several strategies were investigated, featuring the use of SiC and alumina reinforcements. These strategies were implemented and surfaces analyzed to evaluate the influence of deposition and processing on particle distribution and homogeneity. Three strategies were studied: a square shaped groove packed with reinforcement particles, the pre-deposition of a uniform layer of particles prior to FSP with a non consumable tool, and the last one consisted of a consumable rod in aluminium drilled with holes placed in different positions along a radial line filled with reinforcing particles. Coatings were examined by optical microscopy, scanning electron microscopy, as well as, hardness testing. The strategies investigated proved to be possible in the production of surface layers reinforced with hard materials by FSP in aluminium based alloys. While the pre-deposition of reinforcements directly on plate surface enables the simplest approach to produce composites by FSP, the packing of reinforcements in grooves can increase the composite layer thickness. The consumable rod approach allows depositing composite layers soundly bonded to the substrate while avoiding FSP tool wear.
机译:本工作致力于通过基于摩擦的工艺(即FSP和易耗工具方法)生产铝基FGM复合材料。研究了几种策略,以使用SiC和氧化铝增强材料为特征。实施了这些策略并分析了表面,以评估沉积和加工对颗粒分布和均匀性的影响。研究了三种策略:填充有增强颗粒的方形凹槽,在FSP之前使用非消耗性工具预先沉积均匀的颗粒层,最后一种是在铝制的消耗性杆上钻有不同位置的孔沿径向线填充增强颗粒的位置。通过光学显微镜,扫描电子显微镜以及硬度测试检查涂层。事实证明,所研究的策略可用于在铝基合金中通过FSP生产用硬质材料增强的表面层。直接在板表面上预先沉积增强材料可以通过FSP生产复合材料的最简单方法,而在沟槽中填充增强材料可以增加复合材料层的厚度。消耗杆法允许沉积牢固粘结到基材的复合层,同时避免FSP工具磨损。

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