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承受低速冲击和各种预加载的厚混合复合材料层合板的非线性动力学

Nonlinear Dynamics of Thick Hybrid Composite Laminates Subjected to Low-Velocity Impact and Various Preloading.

作者信息

Tian Aiqin, Li Chong, Ma Long, Chen Xiuhua

机构信息

School of Aeronautics and Astronautics, Shanghai Jiao Tong University, Shanghai 200240, China.

National Engineering Research Center for High-Speed EMU, CRRC Qingdao Sifang Co., Ltd., Qingdao 266111, China.

出版信息

Materials (Basel). 2025 May 16;18(10):2331. doi: 10.3390/ma18102331.

Abstract

The composite primary structures of railway vehicles endure not only mechanical loads including tension, compression, bending, and torsion, but also external impacts, such as by the crushed stone in ballast. In the present study, the low-velocity impact response of preloaded hybrid composite laminates with different thicknesses is examined using a finite element method based on a progressive damage model. The hybrid plate consists of carbon fiber-reinforced unidirectional and woven prepregs. The progressive damage model, based on the 3D Hashin model, is validated by experiments on hybrid laminate, and further compared with the post-impact appearance obtained from CT scans. Preloading, considered to be tensile, compressive, or shear, corresponds to different positions in a bending beam with flanges and a web. Finally, the effects of impact energy, preloading, thickness, and impact angle on the dynamic response are analyzed, with an emphasis on new results and failure mechanism analysis comparing the influence of preloads under a given impact energy and different thicknesses.

摘要

铁路车辆的复合主结构不仅承受包括拉伸、压缩、弯曲和扭转在内的机械载荷,还承受外部冲击,例如来自道砟中碎石的冲击。在本研究中,基于渐进损伤模型,采用有限元方法研究了不同厚度的预加载混合复合材料层合板的低速冲击响应。混合板由碳纤维增强单向和编织预浸料组成。基于三维Hashin模型的渐进损伤模型通过混合层合板的实验进行了验证,并进一步与CT扫描获得的冲击后外观进行了比较。预加载被认为是拉伸、压缩或剪切,对应于带翼缘和腹板的弯曲梁中的不同位置。最后,分析了冲击能量、预加载、厚度和冲击角度对动态响应的影响,重点是新结果和失效机理分析,比较了在给定冲击能量和不同厚度下预加载的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/592e/12113442/32ab7067271a/materials-18-02331-g001.jpg

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