POLYMERS AND POLYMER MATRIX COMPOSITES |
|
|
|
|
|
Research Progress of Void Characterization and Filling-induced Void Prediction of RTM-prepared Composites |
XIAO Changwei, LI Wenxiao*
|
School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai 200092, China |
|
|
Abstract The manufacturing defects of composites can seriously affect the mechanical properties of composites. By exploring the formation law of manufacturing defects, the formation of defects can be effectively reduced, then the mechanical properties of products can be improved. Due to the high formation probability in various processes, especially in the resin transfer molding (RTM) process, voids have been the most studied manufacturing defects. This paper briefly introduces the characteristics of void formed in the RTM process and research progress of techniques for void characterization such as online monitoring method, density method, ultrasonic method, microscope method and micro-CT method, then the void formation mechanism of RTM process is elaborated. The research progress of void formation process based on numerical simulation is summarized. Finally, the challenges and outlook of the numerical simulation on the void formation of the RTM process are outlined.
|
Published:
Online: 2022-12-09
|
|
Fund:Aeronautical Science Foundation of China(2015ZF38007)and the Fundamental Research Funds for the Central Universities(22120180133). |
|
|
1 Yang H, Liu X Y, Shi J W, et al. Chinese Journal of Applied Mechanics, 2020, 37(3), 1191 (in Chinese). 杨慧, 刘兴宇, 史俊伟, 等. 应用力学学报, 2020, 37(3), 1191. 2 Barari B, Simacek P, Yarlagadda S, et al. International Journal of Material Forming, 2019, 13(1), 143. 3 Hu W, Grunenfelder L K, Centea T, et al. Journal of Composite Materials, 2018, 52(21), 2847. 4 Zhang D, Heider D, Gillespie J W. Journal of Thermoplastic Composite Materials, 2015, 30(8), 1103. 5 Netzel C, Hoffmann D, Battley M, et al. Composites Part A: Applied Science and Manufacturing, 2021, 151, 106636. 6 Matsuzaki R, Seto D, Todoroki A, et al. Advanced Composite Materials, 2013, 23(2), 99. 7 Matsuzaki R, Naito M, Seto D, et al. Express Polymer Letters, 2016, 10(10), 860. 8 Zhao C, Yang B, Wang S, et al. Applied Composite Materials, 2019, 26(4), 1121. 9 Lystrup C, George A, Zobell B, et al. Journal of Composite Materials, 2020, 55(6), 775. 10 Wen Q H, Meng J Y, Gong C. Fiber Resinforced Plastics/Composites, 2016(7), 32 (in Chinese). 文琼华, 孟江燕, 龚楚. 玻璃钢 /复合材料, 2016(7), 32. 11 Amirkhosravi M, Pishvar M, Hamidi Y K, et al. In:Proceedings of the 35th International Conference of the Polymer Processing Society (Pps-35). DOI:org/10. 1063/1. 5142947. 12 Xiao P, Liu W P, Liu K. Aeronautical Manufacturing Technology, 2016(4), 48 (in Chinese). 肖鹏, 刘卫平, 刘奎. 航空制造技术, 2016(4), 48. 13 Neuenschwander J, Furrer R, Roemmeler A. Polymer Testing, 2016, 56, 379. 14 Hudson T B, Hou T H, Grimsley B W, et al. Structural Health Monitoring, 2016, 16(2), 164. 15 Pelivanov I, O'donnell M. Composites Part A: Applied Science and Manufacturing, 2015, 79, 43. 16 Bodaghi M, Cristóvão C, Gomes R, et al. Composites Part A: Applied Science and Manufacturing, 2016, 82, 88. 17 Hamidi Y K, Aktas L, Altan M C. Composites Science and Technology, 2005, 65(7-8), 1306. 18 Mehdikhani M, Nguyen N Q, Straumit I, et al. IOP Conference Series: Materials Science and Engineering, DOI:10. 1088/1757-899X/406/1/012010. 19 Fu Y, Yao X, Gao X. Composites Part A: Applied Science and Manufacturing, 2021, 147, 106450. 20 Tretiak I, Smith R A. Composites Part A: Applied Science and Manufacturing, 2019, 123, 10. 21 Wen Y, Zhang S, Zhang Y. IEEE Access, 2019, 7, 134330. 22 Pupin C, Ross A, Dubois C, et al. Composites Part A: Applied Science and Manufacturing, 2016, 94, 146. 23 Pupin C, Ross A, Dubois C, et al. Composites Part A: Applied Science and Manufacturing, 2017, 100, 294. 24 Hergan P, Fauster E, Perkonigg D, et al. Advanced Manufacturing: Polymer & Composites Science, 2020, 6(1), 29. 25 He P, Zhao W, Yang B, et al. Materials Research Express, DOI:org/10. 1088/2053-1591/ac1532. 26 Gebart B R. Journal of Composite Materials, 1992, 26(8), 1100. 27 Zhang Y W, Faghri A. Numerical Heat Transfer, Part A: Applications, 2001, 39(3), 227. 28 Young W B. Journal of Composite Materials, 1996, 30(11), 1191. 29 Foley M E, Gillespie J W. Journal of Composite Materials, 2005, 39(12), 1045. 30 Chang C Y, Shih M S. Journal of Reinforced Plastics and Composites, 2003, 22(16), 1437. 31 Shao X M. Acta Materiae Compositae Sinica, 2003, 20(3), 57 (in Chinese). 邵雪明. 复合材料学报, 2003, 20(3), 57. 32 Feng W, Wang J H, Meng Z H. Journal of Wuhan University of Technoloy, 2004, 26(11), 5 (in Chinese). 冯武, 王继辉, 孟志华. 武汉理工大学学报, 2004, 26(11), 5. 33 Hu J, Liu Y, Shao X. Composites Part A: Applied Science and Manufacturing, 2004, 35(5), 595. 34 Jin T G, Yang B, Li J. Acta Materiae Compositae Sinica, 2014, 31(3), 725 (in Chinese). 金天国, 杨波, 李建. 复合材料学报, 2014, 31(3), 725. 35 Devalve C, Pitchumani R. Composites Part A: Applied Science and Manufacturing, 2013, 51, 22. 36 Yang B, Bi F Y, Wang S L, et al. Express Polymer Letters, 2020, 14(1), 77. 37 Yang B. Research on numerical simulation and defect prediction for the filling progress of resin transfer molding. Ph. D. Thesis, Harbin Institute of Technology, China, 2015 (in Chinese). 杨波. 复合材料RTM工艺充模过程数值仿真与缺陷预测研究. 博士学位论文, 哈尔滨工业大学, 2015. 38 Yang B, Jin T G, Bi F Y, et al. Composites Part A: Applied Science and Manufacturing, 2015, 68, 10. 39 Ren J, Ouyang J, Jiang T. International Journal of Heat and Mass Transfer, 2015, 85, 543. 40 Lu G. SPH simulation for the injection molding flow of automotive fiber reinforced composites. Ph. D. Thesis, Hunan University. China, 2017 (in Chinese). 卢钢. 车用纤维增强复合材料注射成型充填过程的SPH模拟. 博士学位论文, 湖南大学, 2017. 41 Lu G, He L P, Chen D C, et al. Journal of Reinforced Plastics and Composites, 2017, 36(19), 1431. 42 Yashiro S, Sasaki H, Sakaida Y. Composites Part A: Applied Science and Manufacturing, 2012, 43(10), 1754. 43 Yashiro S, Okabe T, Matsushima K. Advanced Composite Materials, 2012, 20(6), 503. 44 Okabe T, Matsutani H, Honda T, et al. Composites Part A: Applied Science and Manufacturing, 2012, 43(10), 1765. 45 Yashiro S, Nakashima D, Oya Y, et al. Composites Part A: Applied Science and Manufacturing, 2019, 121, 283. |
[1] |
WANG Zhao, ZHANG Xinhu, WANG Zhaohao, WANG Guan, XI Yongbo, ZHENG Wei, DING Yang, ZHU Libing, DENG Yongjun, FU Xiangang, YUN Di, LIU Wenbo. Performance Analysis of UO2 Fuel Based on MOOSE Platform[J]. Materials Reports, 2022, 36(7): 21040019-7. |
|
|
|
|