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Development of an in-plane biaxial test for forming limit curve (FLC) characterization of metallic sheets

机译:开发用于形成金属板极限曲线(FLC)表征的平面双轴测试

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摘要

The main objective of this work is to propose a new experimental device able to give for a single specimen a good prediction of rheological parameters and formability under static and dynamic conditions (for intermediate strain rates). In this paper, we focus on the characterization of sheet metal forming. The proposed device is a servo-hydraulic testing machine provided with four independent dynamic actuators allowing biaxial tensile tests on cruciform specimens. The formability is evaluated thanks to the classical forming limit diagram (FLD), and one of the difficulties of this study was the design of a dedicated specimen for which the necking phenomenon appears in its central zone. If necking is located in the central zone of the specimen, then the speed ratio between the two axes controls the strain path in this zone and a whole forming limit curve can be covered. Such a specimen is proposed through a numerical and experimental validation procedure. A rigorous procedure for the detection of numerical and experimental forming strains is also presented. Finally, an experimental forming limit curve is determined and validated for an aluminium alloy dedicated to the sheet forming processes (AA5086).
机译:这项工作的主要目的是提出一种新的实验设备,该设备能够在静态和动态条件下(对于中等应变率)为单个样品提供良好的流变参数和可成形性预测。在本文中,我们专注于钣金成形的表征。拟议中的设备是一种伺服液压测试机,配有四个独立的动态执行器,可以对十字形试样进行双轴拉伸测试。借助经典的成形极限图(FLD)对可成形性进行了评估,这项研究的困难之一是设计了专用试样,该试样的颈缩现象出现在其中心区域。如果缩颈位于样品的中心区域,则两个轴之间的速度比控制该区域的应变路径,并且可以覆盖整个成形极限曲线。通过数值和实验验证程序来提出这样的样本。还提出了一种用于检测数值和实验成型应变的严格程序。最后,确定并验证了专用于板材成形工艺的铝合金的实验成形极限曲线(AA5086)。

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