The Study of Male-Female Chamfer Angle Effect on Aluminum 6061 Forging at Rotary Friction Welding Process

A. Azmi, Yohanes Yohanes, Ridwan Abdurrahman
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Abstract

This research aims to investigate male-female chamfer angle effect on forging pressure, specimen length and the maximum tensile strength in splicing 6061 aluminum material, which used the rotary friction welding process. This research employed the analytical method to determine the timing of forging pressure as an initial reference to conduct the experimental study for the specimens test. The specimens were tested by varying the male-female chamfer angle, namely 0°, 15°, 30°, 45°, 60°. The results test were obtained the longest application of forging pressure at the male-female chamfer angle of 60° and the fastest application of forging pressure at the male-female chamfer angle of 15°. The change in length of the specimen during the welding process for each variation of the male-female chamfer angle varies due to the friction time different. The largest change in length was at the male-female chamfer angle of 15° and the smallest change in length at the male-female chamfer angle of 60°. The maximum tensile strength was obtained at the variation of male-female chamfer angle of 60° with a value of 226.47 MPa.
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旋转摩擦焊中铝6061锻件公母倒角影响的研究
研究了6061铝合金旋转摩擦焊接工艺中倒角对锻造压力、试样长度和最大抗拉强度的影响。本研究采用解析法确定锻压时机,作为试样试验的初始参考进行试验研究。通过改变雌雄倒角0°、15°、30°、45°、60°进行测试。试验结果表明,在雌雄倒角为60°时锻造压力施加时间最长,雌雄倒角为15°时锻造压力施加速度最快。在焊接过程中,由于摩擦时间的不同,各角的变化对试样长度的影响也不同。雄雌倒角15°时长度变化最大,雄雌倒角60°时长度变化最小。抗拉强度在雌雄倒角变化为60°时达到最大值,为226.47 MPa。
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