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CONTROLLING THE FORMABILITY AND STRENGTH OF Al-Mg-Si ALLOYS

机译:控制Al-Mg-Si合金的成形性和强度

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In the processing of 6000 series Al-Mg-Si sheet alloys for automobile applications a processing sequence of solution treatment, quench, hold at ambient, cold forming and paint baking at ~175°C applies. It has been demonstrated that raising the silicon content of a l%Mg alloy in the as quenched condition improves the strength without a significant change in uniform elongation. Holding for 14 days at ambient increases the strength irrespective of silicon content and maintains the ductility but reduces the work hardening coefficient. On ageing at 175°C for 30 mins (typical of a paint bake) after the 14 day hold, a reduction in strength can occur in high silicon alloys. This reduction has been interpreted as being caused by the dissolution of clusters of solute atoms.
机译:在用于汽车应用的6000系列Al-Mg-Si板合金的处理中,溶液处理,淬火,在〜175°C的环境,冷成型和涂料处的加工序列。已经证明,在淬火条件下提高L%Mg合金的硅含量改善了不具有均匀伸长率显着变化的强度。在环境温度下保持14天,不管硅含量如何增加强度,并保持延展性,但减少了工作硬化系数。在175℃下老化30分钟(典型的油漆烘烤)在14天保持后,在高硅合金中可以发生强度的降低。这种减少被解释为由溶质原子簇的溶解引起的。

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