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Research on the Compound Process of Hot Stamping and Heat Treatment for Duralumin Alloy Fairing with Large Aspect Ratio: Experiment and modeling

机译:大长径比硬铝合金整流罩热冲压与热处理复合工艺研究:实验与建模

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The compound process of hot stamping and solution quenching heat treatment (HFQ?) was utilized to fabricate hard aluminium fairing of high aspect ratio. A simulation model was established by MSC.Marc to optimize the shape and size of the blamk as well as the effects of process parameters, namely, initial temperature, stamping speed, blank holder force (BHF), on extreme final temperature and thickness distribution of formed component were investigated. The reliability of finite element simulation was proved by the hot stamping experiments with self-designed moulds under the optimize process parameters achieved by simulation results. The results indicated that the optimized blank is well deformed without flange wrinkle and broken round; the maximum cooling rate in quenching can inhibite the precipitation when the initial temperature ranges from 350 to 450℃; BHF effects dominated on thickness distribution and 10KN is the most reasonable value under the studied condition while the optimum stamping speed is 100mm?s~(-1). Compared with the thickness of the stamping trials and numerical simulation, the deviation is less than 3.6%. Furthermore, The desired mechanical property is achieved without significant inhomogeneity.
机译:利用热冲压和溶液淬火热处理(HFQ 2)的复合工艺来制造高纵横比的硬铝整流罩。 MSC.Marc建立了一个仿真模型,以优化坯料的形状和尺寸以及工艺参数(即初始温度,冲压速度,坯料夹持力(BHF))对最终坯料极限温度和厚度分布的影响。研究了形成的组件。在仿真结果达到最佳工艺参数的前提下,通过自行设计的模具进行热冲压实验,证明了有限元仿真的可靠性。结果表明,优化后的毛坯变形良好,无凸缘折皱和折断。当初始温度为350〜450℃时,最大的淬火冷却速率可以抑制析出。在研究条件下,BHF对厚度分布的影响最为明显,而10KN是最合理的值,而最佳冲压速度为100mm?s〜(-1)。与冲压试验的厚度和数值模拟相比,偏差小于3.6%。此外,在没有明显不均匀性的情况下实现了所需的机械性能。

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