AA7075-T6 的热成型:优化加热时间以保持 T6 状态

Hervé Laurent
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摘要

摘要200°C 温成型是提高 AA7075-T6 成形性的一种有效方法。在 T6 条件下,这种铝合金的极限强度和屈服强度最高。因此,在成型工艺结束时保持这些优异的机械性能非常重要。在温度高于 450°C 的热成型工艺中,有必要添加涂料烘烤过程中获得的热恢复处理,以保持 T6 状态,这在时间和能源方面都是昂贵的。在温成型工艺中,可以通过控制加热时间来保持 T6 状态,从而避免析出变化。本研究的目的是找到最佳加热时间条件,以便在温成型多步骤过程中保持 T6 状态。使用 Gleeble 3500 型机器重现了不同的加热时间。在这些不同条件下测量了电导率和硬度,以便将 AA7075-T6 的析出物演变联系起来。此外,还进行了拉伸试验,以确定这些加热周期结束时的机械性能。小于 10 秒的保温时间可在 200◦C 温度下保持 T6 状态。最后测试了两个多步骤热成型装置(一个分两步成型的圆柱杯和一个 U 型槽部件),以验证这些最佳时间成型条件。
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Warm forming of AA7075-T6: optimizing the heating time to maintain T6 condition
Abstract. Warm forming at 200°C is an interesting way of improving the formability of AA7075-T6. The T6 condition offers the highest ultimate and yield strengths of this aluminium alloy. It is therefore important to maintain these excellent mechanical properties at the end of the forming process. With the hot forming process at temperature above 450°C, it is necessary to add a heat recovery treatment obtained during paint baking to keep this T6 state, which is costly in terms of time and energy. In warm forming process, it is possible to maintain the T6 condition by controlling the heating time to avoid precipitation changes. The objective of this study is to find these optimal heating time conditions to maintain the T6 state during warm forming multi-step process. Different heating times were reproduced using a Gleeble 3500 machine. Electrical conductivity and hardness were measured after these different conditions to make the link with the evolutions of precipitates of AA7075-T6. Tensile tests were also performed to characterize the mechanical behavior at the end of these heating cycles. A holding time of less than 10 seconds is determined to maintain the T6 state at 200◦C. Two multi-step warm forming devices (a cylindrical cup in two steps and a U-channel part) were finally tested to validate these optimal time forming conditions.
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