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Effects of Filler Compositions on Mechanical and Physical Properties of the Dissimilar Resistance Spot Welded between Aluminium Alloy and Carbon Steel

机译:填料组合物对铝合金和碳钢焊接焊接焊焊的机械和物理性质的影响

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The resistance spot weld (RSW) of dissimilar materials betweeen steel and aluminium is generally more complex than that of similar materials due to the extreme differences in the mechanical, physical and chemical properties of the base metals. This study proposed the use of filler material to connect the differences of their properties. Al-Alloy 5083 with thickness of 4 mm and 1.2 mm thick carbon steel SS400 were joined in lap joint types using RSW with the filler materials. The filler materials were a mixture of steel and aluminium in which weight composition variations (Fe:Al) were 90:10; 70:30; 30:70 and 90:10 in percent. The physical properties were examined based on the microstructure using optical microscope while the mechanical properties were measured with respect to the strength and hardness using Universal Testing Machine and Vickers Microhardness respectively. Results showed that weld metals with filler composition of 70:30% had highest shear-strength. The microstructure examinations showed that Microstructure of base metal and HAZ carbon steel was ferrite and perlite while that of weld metal was bainite. There were no significant differences in the microstructures and the hardness of weld metal, HAZ, and the base metal of aluminium alloy-5083 due to nonheat-treatable material.
机译:由于基础金属的机械,物理和化学性质的极端差异,钢和铝之间的不同材料的电阻点焊(RSW)通常比相似材料的电阻点焊(RSW)通常更复杂。本研究提出使用填料材料来连接其性质的差异。厚度为4mm和1.2mm厚的碳钢SS400的Al合金5083使用RSW与填料材料连接在LAP关节类型中。填料材料是钢和铝的混合物,其中重量成分变化(Fe:Al)为90:10; 70:30; 30:70和90:10百分比。使用光学显微镜基于微观结构检查物理性质,同时使用通用试验机和维氏微型性的强度和硬度测量机械性能。结果表明,填料组合物为70:30%的焊料金属具有最高的剪切强度。微观结构检查表明,基础金属和HAZ碳钢的微观结构是铁氧体和珍珠岩,而焊接金属是贝氏体的。由于非热处理材料,焊接金属,HAZ和铝合金-5083的基础金属的微观结构和硬度没有显着差异。

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