会议论文详细信息
4th International Conference on Mechanical Engineering Research
Increasing FSW join strength by optimizing feed rate, rotating speed and pin angle
Darmadi, Djarot B.^1 ; Purnowidodo, Anindito^1 ; Siswanto, Eko^1
Mechanical Engineering Department, Brawijaya University, Malang, Indonesia^1
关键词: Base metals;    Experimental methods;    Flowability;    Friction stir welding(FSW);    Intensive mixing;    Mechanical bonding;    Nugget zone;    Rotating speed;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/257/1/012005/pdf
DOI  :  10.1088/1757-899X/257/1/012005
来源: IOP
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【 摘 要 】

Principally the join in Friction Stir Welding (FSW) is formed due to mechanical bonding. At least there are two factors determines the quality of this join, first is the temperature in the area around the interface and secondly the intense of mixing forces in nugget zone to create the mechanical bonding. The adequate temperature creates good flowability of the nugget zone and an intensive mixing force produces homogeneous strong bonding. Based on those two factors in this research the effects of feed rate, rotating speed and pin angle of the FSW process to the tensile strength of resulted join are studied. The true experimental method was used. Feed rate was varied at 24, 42, 55 and 74 mm/minutes and from the experimental results, it can be concluded that the higher feed rate decreases the tensile strength of weld join and it is believed due to the lower heat embedded in the material. Inversely, the higher rotating speed increases the join's tensile strength as a result of higher heat embedded in base metal and higher mixing force in the nugget zone. The rotating speed were 1842, 2257 and 2904 RPMs. The pin angle determines the direction of mixing force. With variation of pin angle: 0°, 4°, 8° and 12° the higher pin angle generally increases the tensile strength because of more intensive mixing force. For 12° pin angle the lower tensile strength is found since the force tends to push out the nugget area from the joint gap.

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