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Formability Characteristics of AA5083 Sheets Under Hot Forming Conditions

机译:热成形条件下AA5083纸张的可成形性特性

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The production of aluminum alloy components through sheet forming processes conducted at elevated temperatures is gaining more and more interest as it gives raise to the possibility of a significant enhancement of the metal formability characteristics, compared to room temperature forming. Aluminum alloy AA5083 blanks, which present a limited formability at room temperature, are usually formed through superplastic forming at elevated temperature: however, this processing route is too slow to be applicable for large batch production, typical for instance of the automotive industry. The paper is aimed at exploring the formability characteristics of the AA5083 when deformed at elevated temperature, but in a range of strain rates higher than those usually applicable in superplastic forming. To this aim, uni-axial tensile tests were carried out, in order to record the material formability characteristics as a function of temperature and strain rate, and to correlate them with the developed microstructural features. It is shown that it is possible to work at higher strain rates, still preserving a significant formability, even without using a conventional fine grained superplastic alloy.
机译:与室温成形相比,通过在升高的温度下进行的铝合金成分通过在升高的温度下进行的铝合金成分产生越来越感兴趣,与室温成形相比,其赋予金属成形性特性显着提高的可能性。铝合金AA5083坯料在室温下呈现有限的成形性,通常通过高温下的超塑性形成形成:然而,这种加工路线太慢适用于大量批量生产,例如汽车行业。本文旨在在高温下变形时探索AA5083的可成形性特征,但在高于通常适用于超塑性成型的应变率范围内。为此目的,进行单轴拉伸试验,以便以温度和应变率的函数记录材料可成形性特征,并将它们与发育的微观结构特征相关联。结果表明,即使不使用常规的细粒化超塑性合金,也可以以更高的应变速率工作,仍然保持显着的可成形性。

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