[1] 赵展, 李炜. 编织机及编织工艺的发展[J]. 玻璃钢/复合材料, 2014 (10): 90-95. [2] Goyal D, Tang X, Whitcomb J D, et al. Effect of various parameters on effective engineering properties of 2×2 braided composites[J]. Mechanics of Advanced Materials and Structures, 2005, 12(2): 113-128. [3] Ogale V, Alagirusamy R. Textile preforms for advanced composites[J]. Balance, 2004, 4(4): 2. [4] Brunnschweiler D. The structure and tensile properties of braids[J]. Journal of the Textile Institute Transactions, 1954, 45(1): 55-77. [5] Du G, Popper P, Chou T. Process model of circular braiding. American Society of Mechanical Engineers[J]. Materials Division (Publication) MD, 1990, 19: 119-33. [6] Du G, Popper P. Analysis of a circular braiding process for complex shapes[J]. Journal of the Textile Institute, 1994, 85(3): 316-337. [7] Kessels J F A, Akkerman R. Prediction of the yarn trajectories on complex braided preforms[J]. Composites Part A: Applied Science and Manufacturing, 2002, 33(8): 1073-1081. [8] Na W J, Ahn H C, Jeon S Y, et al. Prediction of the braid pattern on arbitrary-shaped mandrels using the minimum path condition[J]. Composites Science and Technology, 2014, 91: 30-37. [9] Guyader G, Gabor A, Hamelin P. Analysis of 2D and 3D circular braiding processes: Modeling the interaction between the process parameters and the pre-form architecture[J]. Mechanism and Machine Theory, 2013, 69(6):90-104. [10] Zhang Q, Beale D, Broughton R M. Analysis of Circular Braiding Process, Part 1: Theoretical Investigation of Kinematics of the Circular Braiding Process[J]. Journal of Manufacturing Science and Engineering, 1999, 121(3):345-350. [11] Liao T, Adanur S. 3D structural simulation of tubular braided fabrics for net-shape composites[J]. Textile Research Journal, 2000, 70(4): 297-303. [12] Nishimoto H, Nakai A, Ohtani A. Prediction Method for Temporal Change in Fiber Bundle Orientation on Cylindrical Braided Preforms[J]. Textile Research Journal, 2010, 80(9):814-821. [13] 李小刚. 编织复合材料成型工艺与性能研究[D]. 北京: 北京航空材料研究院, 2002. [14] 刘国华. 编织结构生物可降解神经再生导管的制造及性能研究[D]. 上海: 东华大学, 2006. [15] 李文超. 新型可降解输尿管支架管的成型及力学性能研究[D]. 上海: 东华大学, 2014. [16] 王晓明, 邹婷, 李超婧,等. 基于编织点起始位置及牵拉速度变化的编织角预测模型[J]. 纺织学报, 2015, 36(9):28-33. [17] Stüve J, Gries T. Advances in the simulation of the overbraiding process using FEM[J]. Composites-innovative materials for smarter solutions: SEICO, 2009(9): 618-625. [18] Ravenhorst J H V, Akkerman R. Circular braiding take-up speed generation using inverse kinematics[J]. Composites Part A: Applied Science and Manufacturing, 2014, 64: 147-158. [19] Potluri P, Manan A, Francke M, et al. Flexural and torsional behaviour of biaxial and triaxial braided composite structures[J]. Composite Structures, 2006, 75(1): 377-386. [20] Pickett A, Erber A, von Reden T, et al. Comparison of analytical and finite element simulation of 2D braiding[J]. Plastics, Rubber and Composites, 2009, 38(9-10): 387-395. [21] Hans T, Cichosz J, Brand M, et al. Finite element simulation of the braiding process for arbitrary mandrel shapes[J]. Composites Part A: Applied Science and Manufacturing, 2015, 77: 124-132. [22] Brunnschweiler D. Braids and braiding[J]. Journal of the Textile Institute Proceedings, 1953, 44(9): 666-686. [23] Brunnschweiler D. The structure and tensile properties of braids[J]. Journal of the Textile Institute Transactions, 1954, 45(1): 55-77. [24] Pollitt J. The geometry of cloth structure[J]. Journal of the Textile Institute proceedings, 1949, 40(1): 11-22. [25] Aggarwal A, Ramakrishna S, Ganesh V K. Predicting the In-plane Elastic Constants of Diamond Braided Composites[J]. Journal of Composite Materials, 2001, 35(8): 665-688. [26] Huang Z M, Ramakrishna S. Towards Automatic Designing of 2D Biaxial Woven and Braided Fabric Reinforced Composites[J]. Journal of Composite Materials, 2002, 36(13): 1541-1579. [27] 王立朋, 燕瑛. 编织复合材料弹性性能的细观分析及试验研究[J]. 复合材料学报, 2004, 21(4): 152-156. [28] Goyal D, Tang X, Whitcomb J D, et al. Effect of Various Parameters on Effective Engineering Properties of 2×2 Braided Composites[J]. Mechanics of Advanced Materials and Structures, 2005, 12(2): 113-128. [29] Tang X, Whitcomb J D, Kelkar A D, et al. Progressive failure analysis of 2×2 braided composites exhibiting multiscale hetero-geneity[J]. Composites Science and Technology, 2006, 66(14): 2580-2590. [30] Potluri P, Manan A. Mechanics of non-orthogonally interlaced textile composites[J]. Composites Part A: Applied Science and Manufacturing, 2007, 38(4):1216-1226. [31] 屈鹏. 二维二轴编织复合材料细观力学分析[D]. 济南: 山东大学, 2009. [32] 屈鹏. 纤维/树脂复合材料多尺度结构对力学性能的影响[D]. 济南: 山东大学, 2012. [33] 张超, 许希武. 二维二轴编织复合材料几何模型及弹性性能预测[J]. 复合材料学报, 2010, 27(5): 129-135. [34] 张超, 许希武, 郭树祥. 二维二轴1×1编织复合材料细观结构模型及力学性能有限元分析[J]. 复合材料学报, 2011, 28(6): 215-222. [35] 严雪. 二维三轴编织复合材料刚度和强度性能研究[D]. 南京: 南京航空航天大学, 2013. [36] Naik R A, Ifju P G, Masters J E, et al. Effect of Fiber Architecture Parameters on Deformation Fields and Elastic Moduli of 2-D Braided Composites[J]. Journal of Composite Materials, 1994, 28(7): 656-681. [37] Naik R A. Failure analysis of woven and braided fabric reinforced composites[J]. Journal of Composite Materials, 1995, 29(17): 2334-2363. [38] Byun J H. The analytical characterization of 2-D braided textile composites[J]. Composites Science and Technology, 2000, 60(5): 705-716. [39] Yan Y, Van Hoa S. Energy Model for Prediction of Mechanical Behavior of 2-D Triaxially Braided Composites, Part I: Model Devel-opment[J]. Journal of Composite Materials, 2002, 36(8): 963- 981. [40] Beard S J, Chang F K. Energy absorption of braided composite tubes[J]. International Journal of Crashworthiness, 2002, 7(2): 191-206. [41] Xiao X, Kia H G, Gong X J. Strength prediction of a triaxially braided composite[J]. Composites Part A: Applied Science and Manufacturing, 2011, 42(42): 1000-1006. [42] Gao Y T, Ko F K, Hu H. Integrated Design for Manufacturing of Braided Preforms for Advanced Composites Part I: 2D Braiding[J]. Applied Composite Materials, 2013, 20(6): 1065-1075. [43] 严雪, 许希武, 张超. 二维三轴编织复合材料的弹性性能分析[J]. 固体力学学报, 2013, 34(2): 140-151. [44] 张芳芳. 编织复合材料力学性能及热物理性能预报研究[D]. 秦皇岛: 燕山大学, 2014. [45] Kier Z T, Salvi A, Theis G, et al. Estimating mechanical properties of 2D triaxially braided textile composites based on microstructure properties[J]. Composites Part B: Engineering, 2015, 68: 288-299. |