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The Use of Stirring Methods for the Production of SiC-Reinforced Aluminum Matrix Composite and Validation Via Simulation Studies

机译:使用搅拌方法生产SiC增强铝基质复合材料和仿真研究验证

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摘要

The aim of this study was to investigate the effect of different stirring methods on the mechanical properties of aluminum matrix composites in association with applied and computer-aided simulations. Four kilograms of A356 aluminum alloy was used as the matrix material, and 1wt% silicon carbide (SiC) with an average particle size of 50-56m was used as the additive material. Mechanical, ultrasonic and hybrid (both mechanical and ultrasonic) stirring methods were applied. Mechanical properties were determined by uniaxial tensile testing, and the quality index (QI) was calculated. Compared to the reference sample, QI was increased nearly 34% by using hybrid stirring. In accordance with computational fluid dynamics results, the effectiveness of hybrid stirring was confirmed where SiC particle distribution and dispersion were found to be uniform (homogeneity as 75%). After these detailed investigations, it was found that the optimum properties were obtained by using the hybrid stirring method.
机译:该研究的目的是探讨不同搅拌方法对应用和计算机辅助模拟相关联的铝基复合材料的力学性能的影响。使用四千克A356铝合金作为基质材料,并且使用平均粒径为50-56m的1wt%碳化硅(SiC)作为添加剂材料。施加机械,超声波和杂交(机械和超声波)搅拌方法。通过单轴拉伸试验确定机械性能,并计算质量指数(QI)。与参考样品相比,通过使用杂化搅拌,QI增加了近34%。根据计算流体动力学结果,确认杂化搅拌的有效性,其中发现SiC颗粒分布和分散体是均匀的(均匀性为75%)。在这些详细的研究之后,发现通过使用杂化搅拌方法获得最佳性能。

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