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Effect of hybrid reinforcement at stirred zone of dissimilar aluminium alloys during friction stir welding

机译:搅拌搅拌型搅拌型搅拌型混合铝合金搅拌区杂交增强物的影响

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摘要

The main objective of this work is to modify the mechanical as well as surface properties of weld nugget by the reinforcement of hybrid ceramic particles (alumina and silicon carbide). This is accomplished by combining friction stir welding (FSW) and friction stir processing (FSP) on dissimilar AA6101-T6 and AA1350 aluminium alloys. For this purpose, various levels of mixing proportions of Al2O3 & SiC particles are used with constant groove depth and width i.e. constant groove dimension. To evaluate the quality of joints, tensile, bending, micro-hardness, wear and microstructural studies are carried out. Among these, reinforcement of 100% alumina particles exhibits better mechanical and wear properties. On the other hand, reinforcement of 100% silicon carbide particles produces poor mechanical and wear properties. And also increment in percentage of reinforcement of alumina particles improves the mechanical and wear properties of weld nugget, when compared to increment in percentage of reinforcement of silicon carbide particles.
机译:这项工作的主要目的是通过杂化陶瓷颗粒(氧化铝和碳化硅)的增强来改变机械以及焊缝的表面性质。这是通过将摩擦搅拌焊接(FSW)和摩擦搅拌加工(FSP)与不同的AA6101-T6和AA1350铝合金相结合来实现的。为此目的,Al 2 O 3&SiC颗粒的各种混合比例与恒定的槽深和宽度。恒定的槽尺寸。为了评估关节的质量,进行拉伸,弯曲,微硬度,磨损和微观结构研究。其中,100%氧化铝颗粒的增强表现出更好的机械和磨损性能。另一方面,100%碳化硅颗粒的增强产生了差的机械和磨损性能。与氧化铝颗粒的增强百分比增加,施加焊扣的机械和磨损性能,与碳化硅颗粒的加固百分比增量相比。

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