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Forming characteristics of artificial aging Al-Mg-Si-Cu sheet alloys

机译:人工老化Al-Mg-Si-Cu板合金的形成特征

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AA6111 is a commonly used aluminum alloy for body-in-white (BIW) components with good bake-hardening response, high strength and excellent formability. For industrial applications various process strategies are considered to reach strength of about 250 MPa in the final body part with that type of alloy. The purpose of this paper is to discuss recent process strategies of high-strength AA6111 sheets to evaluate the forming characteristics, precipitation kinetics dissolution and mechanical properties in the final condition. The forming behavior is investigated by four potential process chains after single-stage or multi-stage heat treatment including T4 (pre-aged at > 80 °C after quenching), T61 (T4 + artificial aged at 120-150 °C for 10-18 h), T6 (T4 + artificial aged at 180-220°C up to 12 h) and PFHT (T4 + post form heat treatment at 205°C for 30 min). The experimental input for characterization of the formability consists of tensile tests, bending tests and drawing tests. Differential Scanning Calorimetry (DSC) is used, to correlate the forming behavior with the precipitation distribution in the advanced stages of aging. The study shows that the forming behavior is strongly dependent on the condition the alloy.
机译:AA6111是适用于适用的铝合金(BIW)组件,具有良好的烘烤硬化响应,强度和优异的成形性。对于工业应用,各种工艺策略被认为是在最终体部中达到约250MPa的强度,具有这种类型的合金。本文的目的是讨论最近的高强度AA6111纸张的工艺策略,以评估最终条件下的成型特性,降水动力学溶解和机械性能。在单阶段或多级热处理后,在包括T4(淬火后在> 80℃下在> 80℃下预测),T61(T4 +人造为120-150℃,以120-150°C为10- 18h),T6(T4 +以180-220℃为180°C的人工,高达12小时)和PFHT(T4 +后形成205℃的热处理30分钟)。用于表征成形性的实验输入包括拉伸试验,弯曲试验和绘图测试。使用差分扫描量热法(DSC),以将成型行为与老化的高级阶段的降水分布相关联。研究表明,成形行为强烈依赖于合金的条件。

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