Research on Forming Manufacturing Technology and Equipment of Composite Preforms

被引:0
|
作者
Shan Z. [1 ]
Liu Y. [2 ]
Fan C. [1 ]
Wang J. [1 ]
机构
[1] College of Mechanical & Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing
[2] Department of Mechanical Engineering, Tsinghua University, Beijing
关键词
3D preform; Composite; Digital manufacturing; Forming and manufacturing;
D O I
10.3969/j.issn.1004-132X.2021.23.001
中图分类号
学科分类号
摘要
The revolutionary history of composite preforms forming technique was summarized from the standpoints of manufacturing technology and equipment development. The technical characteristics of the composite preform forming manufacturing technology were analyzed. The status of typical technology and equipment of composite preform forming manufacturing at home and abroad as well as existing challenges and gaps were listed. Finally, the future development directions and trends of composite preform forming technique were discussed prospectively. The development of digital precision forming manufacturing technology and equipment for high-performance composite components may promote the technical progresses of composites in China better, and achieve more extensive promotions and applications. © 2021, China Mechanical Engineering Magazine Office. All right reserved.
引用
收藏
页码:2774 / 2784and2831
相关论文
共 61 条
  • [31] LIU Jian, HUANG Gu, Research on the 3-D Weaving Technique on Multi-rapier Loom, Shanghai Textile ence & Technology, 33, 2, pp. 8-10, (2005)
  • [32] YANG Jiancheng, Carbon Fiber Multilayer Angle Interlock Weaving Equipment and Technology, Textile Machinery, 4, pp. 88-89, (2014)
  • [33] POTLURI P., Braiding, Wiley Encyclopedia of Composites, pp. 138-152, (2012)
  • [34] BILISKIK K., Three-dimensional Braiding for Composites:a Review[J], Textile Research Journal, 83, 13, pp. 1414-1436, (2013)
  • [35] TOLOSANA N, LOMOV S V, MIRAVETE A., Development of a Geometrical Model for a 3D Braiding Unit Cell Based on Braiding Machine Emulation, Finite Element Modelling of Textiles and Textile Composites, pp. 26-28, (2007)
  • [36] BYUN J H, CHOU T W., Process-microstructure Relationships of 2-Step and 4-Step Braided Composites, Composites Science and Technology, 56, 3, pp. 235-251, (1996)
  • [37] POTLURI P, RAWAL A, RIVALDI M, Et al., Geometrical Modelling and Control of a Triaxial Braiding Machine for Producing 3D Preforms[J], Composites, Part A:Applied Science and Manufacturing, 34, 6, pp. 481-492, (2003)
  • [38] BYUN J H, WHITNEY T J, DU G W, Et al., Analytical Characterization of Two-step Braided Composites, Journal of Composite Materials, 25, 12, pp. 1599-1618, (1991)
  • [39] SONTAG T, YANG H, GRIES T, Et al., Recent Advances in 3D Braiding Technology, Advances in 3D Textiles, pp. 153-181, (2015)
  • [40] PAZMINO J, CARVELLI V, LOMOV S V, Et al., Mechanical Properties of a 3D Braided Carbon/Epoxy Composite, Proceedings of the 20th AIMETA Congress of Theoretical and Applied Mechanics, (2011)