碳化硅颗粒增强对搅拌铸造Al - 6061合金复合材料断裂韧性的影响

K. Umanath, S. Selvamani, K. Natarajan, K. Palanikumar
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引用次数: 10

摘要

本文介绍并讨论了25µm碳化硅细颗粒不连续增强Al6061合金的断裂行为。采用搅拌铸造法制备了颗粒体积分数分别为10%和15%的不连续增强铝(DRA)合金复合材料,并按ASTM标准制备了试样。对试样在不同固溶时间、时效时间和时效温度下进行热处理。用万能试验机测定了所有试样的室温断裂韧性(K1C)值。结果表明,当碳化硅颗粒的体积分数达到15%时,金属基体的K1C降低。采用田口法优化热处理条件,使复合材料的K1C达到最大值。在多个工艺参数中,时效温度对断裂韧性的提高贡献最大。10%和15%体积SiCp复合材料断口的扫描电子显微图显示出韧性撕裂脊和破碎的SiC颗粒,表明韧性和脆性断裂机制并存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of silicon carbide particulate reinforcement on the Fracture toughness of Al 6061 alloy composites produced by stir casting method
In this paper, the Fracture behavior of Al6061 alloy, discontinuously reinforced with fine particles(25µm) of silicon carbide are presented and discussed. The discontinuously reinforced aluminium (DRA) alloy composites with 10% and 15% volume fraction of particulates were produced by the stir casting method and using them test specimens were prepared as per ASTM standard. Heat treatment was done for the test specimens at different solutionising time, aging time and aging temperature. The room temperature Fracture toughness (K1C) values were found for all test specimens using universal testing machine. The results show that reinforcement of the metal matrix with silicon carbide particles up to a volume fraction of 15% decreases the K1C. The heat treatment conditions were optimized by Taguchi method for obtaining maximum value of K1C for the composites. Among the several process parameters, the aging temperature is found to contribute more to the increase in Fracture toughness. The scanning electron micrographs of the fracture surface of 10% and 15% vol. SiCp composites show the ductile tear ridges and cracked SiC particles indicating both ductile and brittle fracture mechanism.
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