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Experimental and Numerical Investigation on Strengthening Behavior of 7075 Aluminum Alloy Sheets in Hot Forming-Quenching Integrated Process

机译:7075铝合金板在热成型淬火综合工艺中加强行为的实验性和数值研究

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摘要

7xxx-Series aluminum alloys have a wide application prospect in the automotive industry due to its higher strength than other series of aluminum alloy. However, little literature has been reported on the formability and strengthening behavior of 7xxx-series aluminum alloys for the structural components of body in white (BIW). In this paper, the formability and strengthening behavior of 7075-T6 were investigated systematically under hot forming-quenching (HFQ) integrated process. First, compound dies with rod-heated blank holder and water-cooled lower punch and upper die were set up for experiment. For low adhesion friction and high cooling rate, the optimum blanking temperature was determined as 400 degrees C. Second, forming state, thickness distribution, and temperature field were investigated through experiment and finite element simulations. A-pillar reinforcement panel was successfully manufactured based on the simulation results. The simulation data showed that the maximum thinning rate of the whole part is about 14.25%, and the maximum thickening rate is about 1.95%. Third, the formability and quench sensitivity of u7075-T6 were achieved through time-temperature-transformation (TTT) curves and continuous cooling precipitation (CCP) diagrams combined with the thermo-mechanical coupling simulation. Finally, the strengthening was measured by testing the tensile strength and Vickers hardness at different positions of formed parts after artificial aging process. The testing result showed that the strength of the formed parts after artificial aging at 120 degrees C for 24 h were 162.7-172.2 HV and 505-528 MPa, respectively.
机译:7xxx系列铝合金在汽车工业中具有广泛的应用前景,由于其比其他铝合金系列更高的强度。然而,据报道,在白色(BIW)的结构部件的7xxx系列铝合金的可成形性和强化行为的情况下报道了很少的文献。在本文中,在热成型淬火(HFQ)综合过程下系统地研究了7075-T6的可成形性和强化行为。首先,设立具有棒状坯料的化合物模具和水冷的下冲孔和上模进行实验。为了低粘合摩擦和高冷却速率,通过实验和有限元模拟确定最佳消隐温度为400℃。第二,形成状态,厚度分布和温度场。 A柱加固面板基于仿真结果成功制造。模拟数据显示,整个部分的最大稀释率约为14.25%,最大增稠速率约为1.95%。第三,通过时间温度变换(TTT)曲线和连续冷却沉淀(CCP)图来实现U7075-T6的可成形性和淬火敏感性,与热机械耦合模拟相结合。最后,通过在人工老化过程之后测试形成零件的不同位置的拉伸强度和维氏硬度来测量强化。检测结果表明,在120℃下24小时的人工老化后形成的成形部分的强度分别为162.7-172.2HV和505-528MPa。

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