[1] 郑俊, 周晚林, 姜鑫. 复合材料层压板损伤修复与评估[J]. 机械制造与自动化, 2018, 47(1): 84-87. [2] 袁俊俊, 李成, 铁瑛, 等. 复合材料胶接修补结构疲劳性能的数值和试验研究[J]. 玻璃钢/复合材料, 2018(5): 19-24. [3] OKAFOR A C, SINGH N, ENEMUOH U E, et al. Design, analysis and performance of adhesively bonded composite patch repair of cracked aluminum aircraft panels[J]. Composite Structures, 2005, 71(2): 258-270. [4] 杨冠侠, 杨涛, 杜宇. 三维编织复合材料胶接接头力学性能试验研究[J]. 玻璃钢/复合材料, 2018(2): 66-69, 27. [5] 熊玉成, 巴德玛, 李长青, 等. 表面处理对复合材料母板与维修补片粘接强度的影响[J]. 玻璃钢/复合材料, 2019(9): 100-104. [6] GONG X J, CHENG P C, AIVAZZADEH S, et al. Design and optimization of bonded patch repairs of laminated composite structures[J]. Composite Structures, 2015, 123: 292-300. [7] 赵立涛, 王志瑾. 复合材料胶接修补金属裂纹板的应力强度因子研究[J]. 飞机设计, 2011, 31(2): 67-70. [8] YALA A A, DEMOUCHE N, BEDDEK S, et al. Full analysis of all composite patch repairing design parameters[J]. Iranian Journal of Materials Science and Engineering, 2018, 15(4): 70-77. [9] ALBEDAH A, BOUIADJRA B B, MHAMDIA R, et al. Comparison between double and single sided bonded composite repair with circular shape[J]. Materials and Design, 2011, 32(2): 996-1000. [10] HULAGU B, ACAR V, AYDIN M R, et al. Experimental modal analysis of graphene nanoparticle-reinforced adhesively bonded double strap joints[J]. The Journal of Adhesion, 2020, 97(12): 1107-1135. [11] RAO Q, HUANG H X, OUYANG Z Y, et al. Synergy effects of multi-walled carbon nanotube and graphene nanoplate filled epoxy adhesive on the shear properties of unidirectional composite bonded joints[J]. Polymer Testing, 2020, 82: 106299. [12] WANG G F, ZHOU W, ZHANG Y J, et al. Flexural damage and failure behavior of glass fiber epoxy composites repaired by patch embedded with ZnO whiskers[J]. Journal of Adhesion Science and Technology, 2020, 34(14): 1526-1543. [13] 陈维业, 胡杰, 刘光辉, 等. 复合材料胶接修补界面损伤演化声发射监测[J]. 玻璃钢/复合材料, 2016(7): 9-13. [14] ZAROUCHAS D, HEMELRIJCK D V. Mechanical characterization and damage assessment of thick adhesives for wind turbine blades using acoustic emission and digital image correlation techniques[J]. Journal of Adhesion Science and Technology, 2014, 28(14-15): 1500-1516. [15] ANDREW J J, ARUMUGAM V, BULL D J, et al. Residual strength and damage characterization of repaired glass/epoxy composite laminates using A.E. and D.I.C[J]. Composite Structures, 2016, 152: 124-139. [16] 郎金燕, 鲁俊良, 杨靖雪, 等. 纳米纤维素杂化和复合材料研究进展[J]. 首都师范大学学报(自然科学版), 2021, 42(1): 89-96. [17] 杨陈, 林燕萍, 李永贵. 纳米纤维素材料研究进展[J]. 化工新型材料, 2020, 48(10): 232-235. [18] 滕方瑞, 王小峰, 蒋晶, 等. 碳纳米管/纤维素在不饱和聚酯树脂中的分散性及力学性能研究[J]. 中国塑料, 2021, 35(3): 30-37. [19] 卢琳娜, 李永贵, 卢麒麟. 纤维素纳米晶/环氧树脂复合材料的制备及性能研究[J]. 功能材料, 2020, 51(1): 1196- 1201. [20] MARTINEZ D G, STADING M, HERMANSSON A M. Viscoelasticity and microstructure of a hierarchical soft composite based on nano-cellulose and κ-carrageenan [J]. Rheologica Acta, 2013, 52(10-12): 823-831. [21] VERKER R, RIVKIN A, ZILBERMAN G, et al. Insertion of nano-crystalline cellulose into epoxy resin via resilin to construct a novel elastic adhesive[J]. Cellulose, 2014, 21(6): 4369-4379. [22] CHARLES A D M, RIDER A N. Triblock copolymer toughening of a carbon fibre-reinforced epoxy composite for bonded repair[J]. Polymers, 2018, 10(8): 888. |