首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Improving the properties of AA7075 resistance spot-welded joints by chemical oxide removal and post weld heat treating
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Improving the properties of AA7075 resistance spot-welded joints by chemical oxide removal and post weld heat treating

机译:通过化学氧化物去除和后焊接热处理改善AA7075电阻点焊接头的性能

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摘要

The aluminium alloy studied in this paper is the heat treatable AA7075 which has zinc as the main alloying element. 7xxx aluminium alloys have the best strength performance among all commercial series and AA7075 has tensile strength above 500 MPa. The outstanding strength properties open the possibility to use this alloy in automotive industry as a possible alternative material for car body elements instead of steel. However, their limited formability properties mean obstacle when a complicated shape car body panel is formed, since the elongation is limited only between 5 and 11%. In order to successfully form these sheets into the demanded geometry, hot forming should be used, and thus the body panels should be formed when the AA7075 is in a solution heat treated condition, such as using the HFQ (R) process. Then, after assembling the body elements, when resistance spot welding is among the most common joining methods, the AA7075 body parts should get the artificial ageing. It means that welding is followed by artificial ageing as a kind of post weld heat treating which can partially compensate the softening of this alloy during welding. Softening is considered among the most challenging weldability issues similarly to the high melting point oxide layer at the surface which also reduces the load bearing capacity of RSW joints. During the performed experimental program, three routes were investigated. The RSW experiments are performed on 1-mm-thick AA7075 sheets. The spot-welded joints were examined by macroscopic testing, tensile shear and hardness tests.
机译:本文研究的铝合金是热处理AA7075,其具有锌作为主要合金元素。 7xxx铝合金在所有商业系列中具有最佳的强度性能,AA7075具有高于500MPa的拉伸强度。出色的实力属性开辟了在汽车行业中使用这种合金的可能性作为汽车身体元件而不是钢的可能的替代材料。然而,它们的有限成形性质是在形成复杂的形状车体板时的障碍物,因为伸长率仅受到5至11%之间。为了成功地形成所需的几何形状,应使用热成型,因此当AA7075处于溶液热处理条件下,例如使用HFQ(R)工艺时,应形成主体板。然后,在组装体元件之后,当电阻点焊是最常见的连接方法之一时,AA7075身体部位应得到人工老化。这意味着焊接之后是人造老化作为一种​​焊接焊接热处理,其可以在焊接过程中部分地补偿该合金的软化。与表面上的高熔点氧化物层类似,在最具挑战性的可焊性问题中考虑软化,这也降低了RSW接头的承载能力。在执行的实验计划期间,调查了三条路线。 RSW实验是在1毫米厚的AA7075板上进行的。通过宏观测试,拉伸剪切和硬度测试检查点焊接头。

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