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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Formability and performance of 6K21-T4 aluminum automobile panels in VPF under variable blank holder force
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Formability and performance of 6K21-T4 aluminum automobile panels in VPF under variable blank holder force

机译:6K21-T4铝制汽车面板在VPF下可变空白支架力下的成形性和性能

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摘要

Since sheet aluminum is of low room temperature formability, defects such as excessive thinning, wrinkling, and fracture may easily occur in pressure forming processes. The main purpose of this paper is to research the formability and performance of aluminum hoods in viscous pressure forming (VPF) under an appropriate control of blank holder force (BHF). A new strategy was proposed to determine the reasonable BHF loading condition. Constant and variable BHF were applied to a hood through a proposed design of multipoint BHF loading system. Hood forming experiments under three typical BHF loading schemes were conducted. Research results showed that when a higher initial constant BHF was followed by a gradual decrease in force, the maximum local thinning of the formed hood was 23.3%. When a lower initial constant BHF was followed by a gradual increase in force (the proposed scheme based on the new strategy), the thinning was 18.5%. The thickness strain, microhardness, and microstructure at typical positions of the formed hood under the proposed BHF loading scheme were also investigated. Research results demonstrated that the proposed strategy is an effective method to determine an appropriate BHF loading scheme to improve the panel's formability and obtain a high-quality thin-walled aluminum hood in VPF.
机译:由于片材铝的温度成形性低,因此在压力形成过程中可能很容易出现诸如过度稀疏,皱折和骨折的缺陷。本文的主要目的是在适当控制空白保持力(BHF)下的粘性压力成形(VPF)中的铝烟罩的成形性和性能研究。提出了一种新的策略来确定合理的BHF负载条件。通过提出的多点BHF装载系统设计恒定和可变的BHF对罩。在三种典型的BHF装载方案下形成罩形成实验。研究结果表明,当较高的初始恒定的BHF之后,随后逐渐减小力,所形成的罩的最大局部稀疏为23.3%。当较低的初始常数BHF之后,随后逐渐增加力(基于新策略的提出方案),细化为18.5%。还研究了在所提出的BHF装载方案下所形成的罩的典型位置处的厚度应变,显微硬度和微观结构。研究结果表明,拟议的策略是确定适当的BHF装载方案,以改善面板的成形性,并在VPF中获得高质量的薄壁铝罩。

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