首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Role of homogeneous distribution of SiC reinforcement on the characteristics of stir casted Al-SiC composites
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Role of homogeneous distribution of SiC reinforcement on the characteristics of stir casted Al-SiC composites

机译:SIC加固均匀分布对搅拌型铝合金复合材料特性的作用

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Stir casting process is very popular for the fabrication of particle reinforced metal matrix composites. However, achieving a homogenous distribution of the reinforcement particles is very challenging, which directly affect the final mechanical performances. In this research, a detailed investigation was conducted to obtain a superior synthesis of Al-SiC composite materials and to detect the effect of SiC particles distribution on the mechanical characteristic of the stir casted Al matrix composites using glycerol-water based model. The glycerol-water based model study displays the impacts of viscosity of Al melt (1.04-1.24 mPa.s), impeller position (10-50%), stirring speed (100-300 rpm) and blade angle (0-90 degrees) on the vortex height, dispersion time, settling time and clustering of particles. The results of the experiments using glycerol-water based model, 45 degrees blade angles, impeller position of 40% from the base, stirring speed of 250 rpm showed the best uniform distribution of reinforcement particles. Confirmation experiments were carried out by fabricating Al-SiC PRMMC based on three different viscosities (1.04, 1.13, and 1.24 mPa.s) of Al melt and considering other parameters as constant. Fabricated Al-SiC samples were analysed by Scanning Electron Microscope (SEM) and mechanical testing such as tensile, hardness and wear tests. Based on the confirmation results, the viscosity of 1.13 mPa.s for Al melt (at 750 degrees C) resulted in uniform distribution of SiC particles, which enhanced the tensile strength by 4%, wear resistance by 21%, and led to a uniform hardness value of 47 VHN throughout the composites. (C) 2021 Elsevier B.V. All rights reserved.
机译:搅拌铸造法是制备颗粒增强金属基复合材料的常用方法。然而,实现增强颗粒的均匀分布非常具有挑战性,这直接影响最终的机械性能。在这项研究中,我们进行了详细的研究,以获得优质的Al-SiC复合材料合成,并使用甘油-水基模型检测SiC颗粒分布对搅拌铸造Al基复合材料力学特性的影响。甘油-水基模型研究显示了铝熔体粘度(1.04-1.24 mPa.s)、叶轮位置(10-50%)、搅拌速度(100-300 rpm)和叶片角度(0-90度)对漩涡高度、分散时间、沉降时间和颗粒聚集的影响。实验结果采用甘油水基模型,叶片角度45度,叶轮位置距底座40%,搅拌速度250转/分,强化颗粒分布最均匀。基于铝熔体的三种不同粘度(1.04、1.13和1.24MPa.s),并考虑其他参数为常数,通过制备Al-SiC PRMMC进行了验证实验。通过扫描电子显微镜(SEM)和拉伸、硬度和磨损等力学测试对制备的Al-SiC样品进行了分析。根据确认结果,粘度为1.13 mPa。对于铝熔体(750°C)而言,s导致SiC颗粒均匀分布,从而将拉伸强度提高4%,耐磨性提高21%,并使整个复合材料的硬度值均匀达到47 VHN。(c)2021爱思唯尔B.V.保留所有权利。

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