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Friction Welding of Aluminum Alloy Pipe to S25C Carbon Steel Pipe

机译:铝合金管与S25C碳钢管的摩擦焊接

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Friction welding of various aluminum alloy pipes to S25C carbon steel pipe was conducted. The welded joints were offered to tensile test for examining the weldability of aluminum alloy and steel. In the case of A1050/S25C, A6061/S25C and A6063/S25C, the good welded joints were obtained under the constant welding condition, the maximum joint efficiencies of these joints were about 80.4 percent, 66.8 percent and 68.4 percent respectively, and the strong adhesive trace of aluminum was observed on the tensile fractured surface of S25C. In the case of aluminum alloys, rich in malleability, such as A5056, A6061 and A6063, the joint strength increased with an increase of burn-off speed. On the other hand, in the case of hard aluminum alloys having poor malleability such as A2011, A2017, A2024 and A7075, the joint strength decreased with an increase of burn-off speed. In case of A5052/S25C and A5056/S25C, if the optimum welding condition is selected, perhaps the good welded joint will be obtained.
机译:进行了各种铝合金管与S25C碳钢管的摩擦焊接。焊接接头经过拉伸测试,以检验铝合金和钢的可焊性。在A1050 / S25C,A6061 / S25C和A6063 / S25C的情况下,在恒定的焊接条件下可获得良好的焊接接头,这些接头的最大接头效率分别约为80.4%,66.8%和68.4%,并且坚固在S25C的拉伸断裂表面上观察到铝的粘合痕迹。对于具有高延展性的铝合金(例如A5056,A6061和A6063),接合强度随燃尽速度的增加而增加。另一方面,在A2011,A2017,A2024,A7075等延展性差的硬质铝合金的情况下,接合强​​度随着烧成速度的增加而降低。对于A5052 / S25C和A5056 / S25C,如果选择最佳焊接条件,则可能会获得良好的焊接接头。

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