论文标题
机翼裂纹传播的数值建模会计破裂接触力学
Numerical modeling of wing crack propagation accounting for fracture contact mechanics
论文作者
论文摘要
由于剪切,机翼裂纹可能由于预先存在的裂缝而出现。该过程涉及现有断裂表面滑动的相互作用以及产生机翼裂纹的拉伸材料故障。这项工作设计了一个数值模型,以调查机翼在剪切过程下如何出现,传播和连接预先存在的裂缝。提出了基于线性弹性断裂力学的机翼裂纹传播的数学和数值模型,该模型也介绍了骨折接触力学。通过自适应重新抽签技术来确保计算效率。通过比较分析和实验结果来验证和验证数值模型。其他数值示例说明了用于复杂测试用例的方法的性能,其中翅膀裂纹为多个预先存在和相互作用的裂缝而发展。
As a consequence of shearing, wing cracks can emerge from pre-existing fractures. The process involves the interaction of sliding of the existing fracture surfaces and the tensile material failure that creates wing cracks. This work devises a numerical model to investigate how wing cracks emerge, propagate and connect pre-existing fractures under shear processes. A mathematical and numerical model for wing crack propagation based on linear elastic fracture mechanics that also accounts for fracture contact mechanics is presented. Computational efficiency is ensured by an adaptive remeshing technique. The numerical model is verified and validated through a comparison of the analytical and experimental results. Additional numerical examples illustrate the performance of the method for complex test cases where wing-cracks develop for multiple pre-existing and interacting fractures.