Wu Jun, Gong Xiaoyan, Xue He, Wang Rongxin, Wang Zheng
School of Mechanical Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
Materials (Basel). 2024 Sep 6;17(17):4406. doi: 10.3390/ma17174406.
This study employs a hybrid numerical-experimental calibration method based on phenomena to determine the fracture parameters of the Modified Mohr-Coulomb (MMC) model. Using a self-developed VUMAT subroutine and the element deletion technique, the fracture process of a wide plate pipeline is thoroughly analyzed. This study investigates the impact of various crack shapes on the fracture response under tensile loading and the influence of surface crack size on the initiation location of a wide plate. These results demonstrate the calibrated MMC fracture model's accurate prediction of the toughness fracture behavior of X80 pipeline steel. Under equal area conditions of the dangerous section, circular cracks exhibit lower bearing capacity compared to elliptical cracks. Elliptical cracks predominantly propagate in the thickness direction, whereas circular cracks show nearly uniform growth in all directions. Furthermore, when the crack depth is less than half of the wall thickness, the damage accumulation value at the midpoint of the crack front is maximized; conversely, when the crack front is closer to the internal measurement point of the wide plate, the damage accumulation value is maximized.
本研究采用基于现象的混合数值-实验校准方法来确定修正莫尔-库仑(MMC)模型的断裂参数。利用自行开发的VUMAT子程序和单元删除技术,对宽板管道的断裂过程进行了深入分析。本研究考察了各种裂纹形状对拉伸载荷下断裂响应的影响以及表面裂纹尺寸对宽板起始位置的影响。这些结果表明,校准后的MMC断裂模型能够准确预测X80管道钢的韧性断裂行为。在危险截面等面积条件下,圆形裂纹的承载能力低于椭圆形裂纹。椭圆形裂纹主要沿厚度方向扩展,而圆形裂纹在各个方向上的扩展几乎均匀。此外,当裂纹深度小于壁厚的一半时,裂纹前沿中点处的损伤累积值最大;相反,当裂纹前沿更靠近宽板内部测量点时,损伤累积值最大。