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Modelling of the Forming Limit Band - A new Method to Increase the Robustness in the Simulation of Sheet Metal Forming Processes

机译:成形极限带建模-一种提高钣金成形过程仿真鲁棒性的新方法

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摘要

Forming Limit Curves are valid for one particular material alloy, temper and gauge combination. However material properties vary from batch to batch due to variation in the production process. For there a single Forming Limit Curve can not be an exact description of the forming limit. Several researchers have proposed a more general concept, namely the Forming Limit Band (FLB) as a region covering the entire dispersion of the Forming Limit Curves. A Forming Limit Band can successfully be predicted using the normal statistical distribution found in different production lots, of the yield stresses. Until now, the study of the dispersion was only experimental. Using the FORM-CERT software the influence of the different material parameters on the FLC has been studied. Using the normal distribution of mechanical properties the plus and minus 3-Sigma limits are used to determine the Upper- and the Lower FLC. The region between these two curves represents the Forming Limit Band. The paper presents for the first time the numeric modelling of the FLB concept. This method is illustrated on the AA 6111-T43 aluminum alloy.
机译:成形极限曲线对一种特定的材料合金,回火和量规组合有效。但是,由于生产过程的不同,批次之间的材料特性也会有所不同。因此,单个成形极限曲线不能完全描述成形极限。一些研究人员提出了一个更笼统的概念,即成形极限带(FLB)作为覆盖成形极限曲线整个离散范围的区域。使用屈服应力在不同生产批次中发现的正态统计分布,可以成功地预测成形极限带。到目前为止,对分散体的研究仅是实验性的。使用FORM-CERT软件,研究了不同材料参数对FLC的影响。使用机械特性的正态分布,可以使用正负3-Sigma极限来确定上限和下限FLC。这两条曲线之间的区域代表成形极限带。本文首次提出了FLB概念的数值建模。在AA 6111-T43铝合金上对此方法进行了说明。

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