Gong Yaohua, Huang Tao, Zhang Xun'an, Suo Yongyong, Jia Purong, Zhao Shuyi
School of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi'an 710129, China.
Department of System Engineering and Integration, AECC Commercial Aircraft Engine Co., LTD., Shanghai 201100, China.
Materials (Basel). 2021 Sep 13;14(18):5247. doi: 10.3390/ma14185247.
Voids are common defects in 3D woven composites because of the complicated manufacturing processes of the composites. In this study, a micro-meso multiscale analysis was conducted to evaluate the influence of voids on the mechanical properties of three-dimensional orthogonal woven composites. Statistical analysis was implemented to calculate the outputs of models under the different scales. A method is proposed to generate the reasonable mechanical properties of the microscale models considering randomly distributed voids and fiber filaments. The distributions of the generated properties agree well with the calculated results. These properties were utilized as inputs for the mesoscale models, in which void defects were also considered. The effects of these defects were calculated and investigated. The results indicate that tensile and shear strengths were more sensitive to the microscale voids, while the compressive strength was more influenced by mesoscale voids. The results of this study can provide a design basis for evaluating the quality of 3D woven composites with void defects.
由于三维编织复合材料的制造工艺复杂,孔隙是其常见的缺陷。在本研究中,进行了微观-细观多尺度分析,以评估孔隙对三维正交编织复合材料力学性能的影响。实施统计分析以计算不同尺度下模型的输出。提出了一种方法来生成考虑随机分布孔隙和纤维长丝的微观尺度模型的合理力学性能。生成性能的分布与计算结果吻合良好。这些性能被用作细观尺度模型的输入,其中也考虑了孔隙缺陷。计算并研究了这些缺陷的影响。结果表明,拉伸强度和剪切强度对微观尺度孔隙更敏感,而抗压强度受细观尺度孔隙的影响更大。本研究结果可为评估具有孔隙缺陷的三维编织复合材料的质量提供设计依据。