Study of Ultimate Tensile Strength of Borosilicate Reinforced Metal Matrix Composite

A. Biswas, Abhijit Bhowmik, D. Dey, Akshar S. Vasekar
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Abstract

Application of composite materials are increasing remarkably because of its much advantage compared to base matrix alloys properties like reduced weight, increasing strength, increasing wear resistance capacity etc. Reinforcement particles play a very important role for preparing metal matrix composite and ultimately improve its properties. In the present experiment, Al6063 designated aluminium alloy is used as matrix material and borosilicate glass powder is used as reinforcement. Specimens are prepared by stir casting method. Borosilicate glass is collected from scientific laboratory scrap to support disposal as well as recycle of the waste glass materials. In order to reduce the experimental run, the design of experiment is incorporated as per Taguchi’s L9 orthogonal array. It is observed that glass reinforcement in Al6063 aluminium alloy is compatible to form metal matrix composite. Secondly, ultimate tensile strength of the composite increases in selected combination of grain size and weight ratio of the borosilicate glass powder to the metal matrix.
硼硅酸盐增强金属基复合材料极限抗拉强度研究
与基基合金相比,复合材料具有减轻重量、提高强度、提高耐磨性等诸多优点,其应用日益广泛。增强颗粒在制备金属基复合材料并最终改善其性能方面起着非常重要的作用。本实验采用Al6063指定铝合金作为基体材料,硼硅酸盐玻璃粉作为增强材料。采用搅拌铸造法制备试样。硼硅酸盐玻璃是从科学实验室废料中收集的,以支持废弃玻璃材料的处理和回收。为了减少实验运行,实验设计采用田口L9正交阵。结果表明,Al6063铝合金中的玻璃增强与金属基复合材料的形成是相容的。其次,选择硼硅玻璃粉末与金属基体的粒度和重量比组合,可以提高复合材料的极限抗拉强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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