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Experimental investigation of sheet metal formability under various strain rates

机译:各种应变率下金属板材成形性的实验研究

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摘要

Formability of sheet metals is often assessed by means of forming limit diagrams (FLD). In this paper, performing three different series of experiments, the effect of forming velocity on FLDs is investigated experimentally for Al 6061-T6 and AISI 1045 sheets. In addition to determining the conventional FLDs at quasi-static condition (ε≤ 0.01/s), FLDs were acquired in the case of forming by low impact (ε≤ 50/s) as well as explosive free-forming (ε≤ 1000/s). Samples were deformed in different strain states, thereby generating data for both sides of the FLD. Numerical simulating of stand-off explosive forming tests, the dies and specimens were designed accurately. The Johnson-Cook constitutive model for metal sheets and the Jones-Wilkins-Lee (JWL)model for the explosive charge were used. In order to optimize the sheet and explosive mesh size, a sensitivity analysis was carried out by using the response surface method. The results show that while a substantial improvement in high strain rate formability of the aluminium sheet can be obtained, this improvement is not considerable for the steel sheets. Also, under the effect of contact pressure between tool and sheet, the formability increases for both steel and aluminium sheets on impact. [PUBLICATION ABSTRACT]
机译:钣金的可成型性通常通过成形极限图(FLD)进行评估。在本文中,通过执行三个不同系列的实验,通过实验研究了Al 6061-T6和AISI 1045板材形成速度对FLD的影响。除了在准静态条件下确定常规FLD(ε≤0.01 / s)以外,还通过低冲击成形(ε≤50 / s)和爆炸性自由成形(ε≤1000 / s)来获取FLD。 s)。样品在不同的应变状态下变形,从而生成FLD两侧的数据。数值模拟了对开式炸药成形试验,对模具和试样进行了精确设计。使用金属薄板的Johnson-Cook本构模型和爆炸装药的Jones-Wilkins-Lee(JWL)模型。为了优化片材和炸药网的尺寸,使用响应面法进行了敏感性分析。结果表明,虽然可以获得铝板的高应变速率可成形性的显着改善,但是这种改善对于钢板而言并不重要。而且,在工具和薄板之间的接触压力的作用下,钢板和铝板在撞击时的可成形性均增加。 [出版物摘要]

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