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Strengthening behavior of Al-Cu-Mg alloy sheet in hot forming-quenching integrated process with cold-hot dies

机译:Al-Cu-Mg合金薄板在冷热模具热成型-淬火一体化过程中的强化行为

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摘要

The novel technology combining hot forming and quenching together has been developed to improve formability and avoid thermal distortion for heat-treatable aluminum alloy forming. In this paper, cold-hot composite dies are proposed to use in hot forming-quenching integrated process. Heated lower dies are used to avoid rapid temperature decrease of heated sheet. Water-cooled upper dies are then used to accomplish quenching and reduce thermal distortion. The effects of temperature of lower dies, quenching condition and precipitate distribution on strengthening behavior in this process were investigated systematically. The strengths were measured by Vickers hardness and uniaxial tensile tests. It was found that the upper cold dies could ensure effective quenching. Lower dies could be heated to avoid rapid temperature decrease of heated sheet resulting in good strength of parts. The corresponding hardness, yield and tensile strengths were 140.7 HV, 295.7 and 469.2 MPa, respectively. For comparison, the process with both hot dies at temperatures ranging from 100 to 350 ℃ was investigated. The temperature of both hot dies could only be improved to 250 ℃, otherwise the strength decreased. The strengthening phase was dispersed lath-shaped S phase with an average cross-section of approximately 50 × 100 nm, which was observed with TEM and SEM methods.
机译:已经开发了将热成型和淬火结合在一起的新技术,以提高可成型性并避免热变形铝合金成型的热变形。本文提出了冷热复合模具在热成型-淬火一体化工艺中的应用。加热的下模用于避免加热后的板材温度快速下降。然后使用水冷的上模完成淬火并减少热变形。系统研究了下模温度,淬火条件和析出物分布对强化过程的影响。强度通过维氏硬度和单轴拉伸试验测量。发现上冷模可以确保有效的淬火。下模可以被加热以避免加热的板的温度快速降低,从而导致零件的良好强度。相应的硬度,屈服强度和抗拉强度分别为140.7 HV,295.7和469.2 MPa。为了进行比较,研究了两种热模在100至350℃的温度范围内的过程。两个热模的温度只能提高到250℃,否则强度会降低。增强相是分散的板条状S相,其平均横截面约为50×100 nm,这是通过TEM和SEM方法观察到的。

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