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不同应力状态下热冲压硼钢的损伤演化:宏观/微观尺度实验与模拟

Damage Evolution of Hot Stamped Boron Steels Subjected to Various Stress States: Macro/Micro-Scale Experiments and Simulations.

作者信息

Zhang Hao, Liu Guoqiang, Guo Ning, Meng Xiangbin, Shi Yanbin, Su Hangqi, Liu Zhe, Tang Bingtao

机构信息

School of Mechanical & Automotive Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.

Shandong Institute of Mechanical Design and Research, Jinan 250103, China.

出版信息

Materials (Basel). 2022 Feb 25;15(5):1751. doi: 10.3390/ma15051751.

Abstract

Hot stamping components with tailored mechanical properties have excellent safety-related performance in the field of lightweight manufacturing. In this paper, the constitutive relation and damage evolution of bainite, martensite, and mixed bainite/martensite (B/M) phase were studied. Two-dimensional representative volume element (RVE) models were constructed according to microstructure characteristics. The constitutive relations of individual phases were defined based on the dislocation strengthening theory. Results showed that the damage initiation and evolution of martensite and bainite phases can well described by the Lou-Huh damage criterion (DF2015) determined by the hybrid experimental-numerical method. The calibrated damage parameters of each phase were applied to the numerical simulation, followed by the 2D RVE simulations of B/M phase under different stress states. To study the influence of martensite volume fraction (Vm) and distribution of damage evolution, the void nucleation and growth were evaluated by RVEs and verified by scanning electron microscope (SEM). Three types of void nucleation modes under different stress states were experimentally and numerically studied. The results showed that with the increase of Vm and varying martensite distribution, the nucleation location of voids move from bainite to martensite.

摘要

具有定制机械性能的热冲压部件在轻量化制造领域具有出色的安全相关性能。本文研究了贝氏体、马氏体以及贝氏体/马氏体混合(B/M)相的本构关系和损伤演化。根据微观结构特征构建了二维代表性体积单元(RVE)模型。基于位错强化理论定义了各相的本构关系。结果表明,马氏体和贝氏体相的损伤起始和演化可以通过混合实验-数值方法确定的娄-胡损伤准则(DF2015)很好地描述。将各相校准后的损伤参数应用于数值模拟,随后对不同应力状态下的B/M相进行二维RVE模拟。为研究马氏体体积分数(Vm)和损伤演化分布的影响,通过RVE评估了孔洞形核与生长,并通过扫描电子显微镜(SEM)进行了验证。对不同应力状态下的三种孔洞形核模式进行了实验和数值研究。结果表明,随着Vm的增加以及马氏体分布的变化,孔洞的形核位置从贝氏体转移至马氏体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0408/8911725/4747604fd4ab/materials-15-01751-g0A1.jpg

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