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Prediction of Forming Limit in Hydro-Mechanical Deep Drawing of Steel Sheets Using Ductile Fracture Criterion

机译:基于延性断裂准则的钢板水力机械深冲成形极限预测

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摘要

It has been observed that the forming limit curve at fracture (FLCF) of steel sheets with a relatively higher ductility limit have linear shapes, similar to those of a bulk forming process. In contrast, the FLCF of sheets with a relatively lower ductility limit have rather complex shapes approaching the forming limit curve at neck (FLCN) towards the equi-biaxial strain paths. In this study, the FLCFs of steel sheets were measured and compared with the fracture strains predicted from specific ductile fracture criteria, including a criterion suggested by the authors, which can accurately describe FLCFs with both linear and complex shapes. To predict the forming limit for hydro-mechanical deep drawing of steel sheets, the ductile fracture criteria were integrated into a finite element simulation. The simulation results based on the criterion suggested by authors accurately predicted the experimental fracture limits of steel sheets for the hydro-mechanical deep drawing process.
机译:已经观察到,具有相对较高的延展性极限的钢板的断裂时的成形极限曲线(FLCF)具有线性形状,类似于块状成形工艺。相反,具有相对较低的延展性极限的片材的FLCF具有相当复杂的形状,其朝向等双轴应变路径接近颈部的成形极限曲线(FLCN)。在这项研究中,对钢板的FLCF进行了测量,并将其与根据特定延性断裂准则(包括作者建议的准则)预测的断裂应变进行比较,该准则可以准确地描述具有线性和复杂形状的FLCF。为了预测钢板的水力机械深冲成形极限,将韧性断裂准则集成到有限元模拟中。基于作者提出的标准的模拟结果准确地预测了液压机械深冲过程中钢板的实验断裂极限。

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