Vlach Jarmil, Doubrava Radek, Růžek Roman, Raška Jan, Horňas Jan, Kadlec Martin
VZLU-Czech Aerospace Research Centre, 19900 Prague, Czech Republic.
Polymers (Basel). 2022 Aug 9;14(16):3243. doi: 10.3390/polym14163243.
The relationship between deformation and stress is crucial for any elasto-plastic body. This paper deals with the experimental identification of the basic parameters of the composite laminate model in relation to the finite element model. Standardized tensile, impact, and post-impact tests on a carbon fiber-reinforced epoxy laminate were used. The method by which the elasticity and failure parameters were obtained from the initial components is described. In the article, the modes of initiation and complete failure of samples in tensile tests, which are compared with the simulation, are presented. Furthermore, the article deals with the issue of the generation and detection of damage by low-speed impact, which can be caused by contact with moving objects, due to improper handling or maintenance. The results of impact analysis simulations are shown in the context of strain-field distribution changes obtained with the help of digital image correlation. The results showed high agreement between the calculations and the experiments. Based on this agreement, simulations of impact damage for various energies were performed. These simulations were used to determine the approximate sizes of the affected zones in relation to the impact energy. The results are finally discussed in the context of the possible use of structural health monitoring based on strain modifications.
对于任何弹塑性体而言,变形与应力之间的关系都至关重要。本文探讨了复合层合板模型基本参数相对于有限元模型的实验识别。对碳纤维增强环氧树脂层合板进行了标准化拉伸、冲击及冲击后试验。描述了从初始部件获取弹性和失效参数的方法。文章展示了拉伸试验中样品起始和完全失效的模式,并与模拟结果进行了比较。此外,文章还探讨了由低速冲击导致的损伤产生与检测问题,这种冲击可能由与移动物体接触、操作不当或维护不善引起。借助数字图像相关技术获得的应变场分布变化,展示了冲击分析模拟的结果。结果表明计算结果与实验结果高度吻合。基于这一吻合度,对不同能量的冲击损伤进行了模拟。这些模拟用于确定受影响区域相对于冲击能量的大致尺寸。最后,结合基于应变变化的结构健康监测的可能应用对结果进行了讨论。