Böhm Robert, Hornig Andreas, Weber Tony, Grüber Bernd, Gude Maik
Faculty of Engineering, Leipzig University of Applied Sciences, Karl-Liebknecht-Straße 134, D-04277 Leipzig, Germany.
Institute of Lightweight Engineering and Polymer Technology (ILK), Technische Universität Dresden, 01307 Dresden, Germany.
Materials (Basel). 2020 Aug 12;13(16):3554. doi: 10.3390/ma13163554.
The impact behavior of carbon fiber epoxy bumper brackets reinforced with 2D biaxial and 2D triaxial braids was experimentally and numerically analyzed. For this purpose, a phenomenological damage model was modified and implemented as a user material in ABAQUS. It was hypothesized that all input parameters could be determined from a suitable high-speed test program. Therefore, novel impact test device was designed, developed and integrated into a drop tower. Drop tower tests with different impactor masses and impact velocities at different bumper bracket configurations were conducted to compare the numerically predicted deformation and damage behavior with experimental evidence. Good correlations between simulations and tests were found, both for the global structural deformation, including fracture, and local damage entities in the impact zone. It was proven that the developed phenomenological damage models can be fully applied for present-day industrial problems.
对采用二维双轴和二维三轴编织增强的碳纤维环氧树脂保险杠支架的冲击行为进行了实验和数值分析。为此,对一个唯象损伤模型进行了修改,并作为用户材料在ABAQUS中实现。假设所有输入参数都可以从合适的高速测试程序中确定。因此,设计、开发了一种新型冲击测试装置,并将其集成到落塔中。在不同保险杠支架配置下,使用不同冲击器质量和冲击速度进行落塔试验,以将数值预测的变形和损伤行为与实验结果进行比较。在包括断裂在内的整体结构变形以及冲击区域的局部损伤实体方面,模拟与试验之间都发现了良好的相关性。结果证明,所开发的唯象损伤模型可以完全应用于当今的工业问题。