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Development of Hybrid Composite Material of Palm Kernel Shell (PKS) and Periwinkle Shell (PS) Particles in Pure Aluminium Matrix

机译:纯铝基复合材料掌核壳和长春花壳杂化复合材料的开发

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摘要

Lightweight engineering materials that are strong, durable, wear and corrosion resistant are required nowadays in the field of engineering, especially in the automobile industry. This study was to develop a hybrid composite material of palm kernel shell (PKS) and periwinkle shell (PS) particles as reinforcements in pure aluminium matrix. The central composite design (CCD) of the response surface methodology (RSM) was used to carry out the design of experiment (DoE). Stir casting method was used to fabricate the specimens. The DoE gave 20 runs (experimental samples) which were replicated three times each, bringing the total number of runs to 60 for each of the six responses considered, and 360 specimens were fabricated in all. Three experimental values were obtained for each of the 120 runs for the wear rate, creep rate, density, tensile strength, hardness and melting temperature. The average values were determined and recorded. Control specimens with 100 wt. % pure aluminium matrix, 0 wt. % of PKS and PS reinforcement particles were prepared. The results showed that the reinforcement particles had significant improvement on mechanical properties of the pure aluminium.
机译:如今,在工程领域,特别是在汽车工业中,需要坚固,耐用,耐磨和耐腐蚀的轻质工程材料。本研究旨在开发一种棕榈仁壳(PKS)和长春花壳(PS)颗粒的混杂复合材料,作为纯铝基体中的增强材料。采用响应面方法(RSM)的中央复合设计(CCD)进行实验设计(DoE)。使用搅拌铸造法制造样品。能源部给出了20个运行(实验样品),每个运行重复了3次,从而使所考虑的六个响应中的每个响应的运行总数达到60,共制作了360个样本。对于120个运行中的每个运行,获得了三个实验值,分别是磨损率,蠕变率,密度,拉伸强度,硬度和熔化温度。确定平均值并记录。 100 wt。 %纯铝基质,0 wt。制备%的PKS和PS增强颗粒。结果表明,增强颗粒对纯铝的力学性能有显着改善。

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