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Dry reciprocating wear and frictional behaviour of B 4C reinforced functionally graded and homogenous aluminium matrix composites

机译:B 4 C加固功能梯度和均匀铝基复合材料

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A comparative study was drawn for evaluating mechanical and tribological properties between as-cast, heat treated (HT) Functionally Graded (FG) A359/10wt% B4C and homogenous A359/6wt% B4C composites (wt% equivalent to FGM outer zone, determined by chemical dissolution method) processed through horizontal centrifugal and gravity casting techniques respectively. Metallographic analysis confirmed decreasing gradation of reinforcement particles from outer to inner layers for as-cast FG composite, whereas even distribution of reinforcement was observed throughout for homogenous composite. Formation of fine alpha-spheroidized eutectic silicon was observed in HT composite. Comparative analysis carried out for mechanical properties of as-cast to HT composite confirmed an improvement of 37.9 % for outer layer of FG composite and 32.6 % for homogeneous composite in micro-hardness, while an improvement of 24.1 % for outer layer FG composite and 5.6 % for homogeneous composite was observed for tensile strength. Reciprocating wear analysis confirmed superior resistance to wear for outer zone of HT FG composite, with an increasing trend for wear rate and friction co-efficient under the effect of load and sliding distance. A decreasing trend was observed for wear rate and friction co-efficient as weight percentage of reinforcement increased. Worn morphological analysis confirmed predominant delamination wear mechanism for homogenous composites, whereas a combination of abrasive, adhesive and delamination wear was observed for FG composite.
机译:采取比较研究,用于评估铸造,热处理(HT)功能梯度(FG)A359 / 10wt%B4C和均匀A359 / 6wt%B4C复合材料(通过分别通过水平离心和重力铸造技术处理的化学溶解方法。金相分析证实了铸造FG复合材料外部到内层的增强颗粒的渐变减少,而甚至在整个均匀复合材料中观察到增强的分布。在HT复合材料中观察到细α-球化共晶硅的形成。对HT复合材料的机械性能进行的对比分析证实了FG复合材料外层的提高37.9%,微硬度均相复合材料的32.6%,外层FG复合材料的提高24.1%,5.6观察到均相复合材料的抗拉强度。往复磨损分析证实了HT FG复合材料外部区域的耐磨性耐磨损,磨损率和摩擦效率下降的趋势越来越高,负载和滑动距离。为磨损率和摩擦节能的重量百分比增加,观察到降低趋势。磨损的形态学分析证实了均匀复合材料的主要分层磨损机构,而FG复合材料观察到磨料,粘合剂和分层磨损的组合。

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