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Investigation on mechanical behavior and material characteristics of various weight composition of SiCp reinforced aluminium metal matrix composite

机译:SICP增强铝金属基质复合材料各种重量组成的力学行为及材料特性研究

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摘要

Aluminium - silicon carbide (Al - SiC) metal matrix composite is produced with following wt % of SiC reinforcement (4%, 8% & 12%) using stir casting method. Mechanical testing such as micro hardness, tensile testing and bend testing were performed. Characterizations, namely micro structure, X-ray diffraction (XRD) analysis, inductive coupled plasma - optical emission spectroscopy (ICP-OES) and scanning electron microscopy (SEM) analysis, were carried out on Al - SiC composites. The presence of SiC on Al - SiC composite is confirmed through XRD technique and microstructure. The percentage of SiC was confirmed through ICP-OES technique. Increase in weight percentage of SiC tends to increase micro hardness, ultimate strength & yield strength but it reduces the bend strength and elongation (%) of the material. SEM factrography of tensile tested fractured samples of Al - 8% SiC & Al - 12% SiC showed fine dimples on fractured surface & coarse dimples fractured surface respectively. This showed significant fracture differences between Al - 8% SiC & Al - 12% SiC. From the above experiment, Al - 8% SiC had good micro hardness, ultimate strength & yield strength without significant loss in elongation (%) & bend strength.
机译:铝 - 碳化硅(Al-SiC)金属基质复合材料采用搅拌铸造法以下列SiC增强(4%,8%和12%)的WT%生产。进行机械测试,如微硬度,拉伸试验和弯曲测试。表征,即微结构,X射线衍射(XRD)分析,电感耦合等离子体 - 光发射光谱(ICP-OES)和扫描电子显微镜(SEM)分析在Al - SiC复合材料上进行。通过XRD技术和微观结构确认Al - SiC复合材料上的SiC的存在。通过ICP-OES技术证实了SIC的百分比。 SiC的重量百分比增加趋于增加微硬度,极限强度和屈服强度,但它降低了材料的弯曲强度和伸长率(%)。 SEM的Al - 8%SiC&Al - 12%SiC的拉伸测试裂缝样品分别在裂缝表面和粗凹槽上显示出细小的细小。这在Al-8%SiC&Al - 12%SiC之间显示出显着的裂缝差异。从上述实验中,Al - 8%SiC具有良好的微型硬度,极限强度和屈服强度,而无需伸长率(%)和弯曲强度的显着损失。

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