首页> 外文期刊>International Journal of Mechanical Sciences >Damage prediction of hot stamped boron steel 22MnB5 with a microscopic motivated ductile fracture criterion: Experiment and simulation
【24h】

Damage prediction of hot stamped boron steel 22MnB5 with a microscopic motivated ductile fracture criterion: Experiment and simulation

机译:微观冲压硼钢22MnB5损坏预测与微观动机延性标准:实验与仿真

获取原文
获取原文并翻译 | 示例
           

摘要

With the increasing demand of the reduction of energy consumption and enhancement of automobile safety, the steels with ultra-high strength are widely utilized in automobile industry. Because of the high achievable strength, hot stamping process can be used to supply promising automobile components. The increasing use of high-strength steels leads to great challenges to model the fracture evolution because of their high strength and low ductility. The paper is concerned with plasticity and ductile fracture modelling of hot stamped boron steel 22MnB5, where martensite phase with high yield strength, work hardening and ductility are present during the quenching process. The Lou's ductile fracture criteria which involve void nucleation, growth and coalescence in metallic materials are theoretically reviewed and extended and implanted using users' subroutine VUMAT in ABAQUS/Explicit. Parameters of the selected fracture criterion are determined using calibration tests with various kinds of specimens. Dogbone-like uniaxial tensile specimens are tested to determine the deformation hardening parameters, and specimens with central hole, in-plane shear specimens and notched specimens, balanced biaxial tensile specimens are tested to identify the fracture behavior in various loading stresses. Digital Image Correlation (DIC) method is applied to monitor the surface pattern and record the strain evolution of the specimen surface during the experiment. Because of fully austenitized microstructure, the Mises isotropic yield function is adopted. The hybrid method is used to obtain the fracture strain in various stress directions and implemented to determine the material parameters of fracture model. The constructed ductile fracture surfaces calibrated with fracture strain using DIC calculation and hybrid method are compared in Lode parameter and triaxiality coordinate as well as the principal stress space, respectively. The comparison reveals that the fracture strain obtained by hybrid method is more reasonable. The determined ductile fracture criterion is applied to forecast the fracture onset for seven kinds of specimens and compared with the experiment data. The comparison indicates the simply extended Lou's criterion of ductile fracture can precisely describe the evolution of ductile fracture from uniaxial tensile to biaxial tensile stress state for hot stamped boron steel 22MnB5.
机译:随着越来越多的需求减少能耗和汽车安全的增强,具有超高强度的钢在汽车工业中广泛利用。由于可实现的力量很高,烫印过程可用于提供有充分的汽车部件。由于其高强度和低延展性,越来越多地利用高强度钢的使用导致骨折演变的巨大挑战。本文涉及热冲压硼钢22MNB5的可塑性和韧性裂缝建模,其中淬火过程中存在高屈服强度,工作硬化和延展性的马氏体相。理论上审查和植入了金属材料中涉及空白成核,生长和聚结的Lou的韧性骨折标准,并在Abaqus /明确的用户的子程序vumat进行了理解和延伸和植入和植入。使用具有各种样本的校准测试确定所选骨折标准的参数。测试狗耳状的单轴拉伸试样以确定变形硬化参数,以及具有中心孔,面内剪切样品和缺口样品的样品,经过测试平衡的双轴拉伸试样,以鉴定各种负载应力中的断裂行为。应用数字图像相关(DIC)方法以监测表面图案并记录试验期间样品表面的应变演变。由于完全奥氏体化的微观结构,采用了误法各向同性屈服函数。混合方法用于在各种应力​​方向上获得裂缝应变并实现以确定裂缝模型的材料参数。使用DIC计算和混合方法校准的构建的延展性裂缝表面分别使用DIC计算和杂合法校准,分别与三轴性坐标以及主应力空间进行比较。比较揭示了通过杂种方法获得的断裂应变更合理。确定的延性骨折标准应用于预测七种标本的裂缝发作,并与实验数据进行比较。比较表明,简单的扩展Lou的延展性骨折的标准可以精确地描述从单轴拉伸到脱钢硼钢22mnb5的双轴拉伸到双轴拉伸应力状态的延性骨折的演变。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号