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Stamping Failure Analysis of Advanced High Strength Steel Sheet Based on Non-uniform Local Deformation through Thickness

机译:基于非均匀局部变形的先进高强度钢板冲压故障分析

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The phenomenon "Shear fracture" is often observed in the stretch-bending process of stamping over small radius with advanced high strength steels (AHSS). It occurs parallel to and near the die radius in the stretch-bending test. Since traditional Forming Limit Diagram (FLD) is unable to describe this type of failure, experimental and simulation works were constructed in this paper to investigate and predict the shear fracture. Fracture experiments were carried out through a stretch-bending test system, and failure mode was observed. There is no obviously thinning at the shear fracture surface. Further research shows that the initial crack of shear fracture occurs at the outer layer of specimen at die radius position. Finite element (FE) models were built for stretch-bending test with 3D element. The non-uniform local deformation through thickness corresponding to bending position was obtained and analyzed. Cockcroft & Latham fracture criterion is used. The outer layer of specimen at bending position reaches the critical fracture state firstly, which agrees well with experiments. Different fracture criteria are also compared and selected to determine this fracture. Results show that based on the non-uniform local deformation, the initial crack location of shear fracture at small radius can be effectively predicted by fracture criteria related to the maximum principle stress.
机译:在用先进的高强度钢(AHSS)上,通常在冲压的拉伸弯曲过程中观察到现象“剪切断裂”。它在拉伸弯曲试验中平行于管芯半径和靠近管芯半径。由于传统的成型限制图(FLD)无法描述这种类型的故障,因此在本文中构建了实验和仿真工程,以研究和预测剪切骨折。通过拉伸弯曲试验系统进行裂缝实验,并且观察失效模式。剪切断裂表面没有明显变薄。进一步的研究表明,剪切断裂的初始裂缝发生在模具半径位置的样本外层处。有限元(FE)模型用于3D元件的拉伸弯曲试验。获得并分析通过对应于弯曲位置的厚度的不均匀局部变形。使用Cockcroft和Latham骨折标准。弯曲位置的样本的外层首先达到临界骨折状态,这与实验一致。还比较不同的骨折标准并选择以确定这种骨折。结果表明,基于不均匀的局部变形,可以通过与最大原理应力相关的裂缝标准有效地预测剪切断裂的初始裂缝位置。

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