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Process optimization and thermo-piasticity analysis of laser welding-MIG for 6063 aluminum alloy

机译:6063铝合金激光焊接 - MIG的工艺优化和热助态性分析

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The process of laser-MIG welding for 6063 aluminum alloy was optimized by the first regression orthogonal design method. Gleeble-1500 thermal simulator was used to check the thermo-piasticity. The brittleness temperature range of 6063 aluminum alloy was 470-620 °C. On the basis of process optimization parameters, the welding currents: 150A, 180A and 210A, were selected for experiments. The types and causes of hot cracks were researched by means of SEM and EDS. The results show, with increasing the heat input, the welding thermo-piasticity decreases first and then increases. The crack is transformed from the liquefied crack to crystalline crack in the weld metal area. When the welding current is 180A, that is, the heat input is 3.0KJ/cm, the welding joint can obtain the best weld penetration. Its thermal plasticity is the smallest and the welding thermal crack is crystalline crack.
机译:通过第一回归正交设计方法优化了6063铝合金激光焊接的方法。 GLEEBLE-1500热模拟器用于检查热型姿势。 6063铝合金的脆性温度范围为470-620℃。在过程优化参数的基础上,选择焊接电流:150A,180A和210A进行实验。通过SEM和EDS研究了热裂纹的类型和原因。结果表明,随着热量输入的增加,焊接热型态度首先降低,然后增加。裂缝从液化裂缝转变为焊接金属区域中的晶体裂缝。当焊接电流为180A时,即热输入为3.0kJ / cm时,焊接接头可以获得最佳的焊接穿透。其热塑性最小,焊接热裂纹是晶体裂缝。

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