近年来,中国正在自主研发大型商用飞机,先进复合材料以其密度小、比强度/比模量高、耐高温性能好、耐疲劳性能优越等独特优点具有极大的应用潜力。对先进复合材料在飞机上应用及其发展历程进行了全面系统的回顾与总结,指出了复合材料在应用中存在的、急需解决的问题,并全面详细地介绍了飞机用复合材料的新进展,指出了未来复合材料可能的发展趋势,以供参考。
Large commercial aircraft is being researched independently in China recently.Advanced composite has great potential applications because of its low density,high specific strength/specific modulus,good high-tempera-ture resistance and excellent fatigue properties.Advanced composite materials′application and development history are described systematically.Problems which need to be solved urgently in application are depicted.New progress of com-posite materials for aircraft is introduced subsequently.Finally the future development trends of composite material are showed for reference.
参考文献
[1] | 杜善义.先进复合材料与航空航天[J].复合材料学报,2007(01):1-12. |
[2] | 陈绍杰.我国先进复合材料产事业发展[J].玻璃钢,2014(1):13. |
[3] | 沈军,谢怀勤.航空用复合材料的研究与应用进展[J].玻璃钢/复合材料,2006(05):48-54. |
[4] | 王德堂,冯军.大型飞机复合材料主结构的设计与发展[J].航空制造技术,2011(13):68-70. |
[5] | Kensche C W .Testing and certification of sailplane struc-tures[J].J Automobile Eng,1986,200(4):287. |
[6] | Hartsmith L.Design and development of the first Lear Fan all-composite aircraft[J].McDonnell Douglas Paper,1989(8184):7. |
[7] | Kassapoglou C.Design and analysis of composite structures:With applications to aerospace structures[M].New York:John Wiley and Sons,Inc,2013 |
[8] | 吴承思,张振龙.我国民用客机复合材料国产化问题的探讨[J].纤维复合材料,2012(02):30-33. |
[9] | 梁旺胜,张凌虎,李翔.全复合材料通用飞机结构形式和设计概述[J].科技视界,2014(15):71-72. |
[10] | 周雷敏,孙沛.波音787客机的复合材料国际化制造[J].高科技纤维与应用,2013(02):57-61. |
[11] | 刘东辉.复合材料低成本化进展与分析[J].纤维复合材料,2012(02):41-44. |
[12] | 陈绍杰.大型飞机与复合材料[J].航空制造技术,2008(15):32-37. |
[13] | 陈绍杰.先进复合材料的近期发展趋势[J].材料工程,2004(09):9-13,18. |
[14] | 张佐光,李敏,陈绍杰.飞机结构用先进复合材料的应用与发展[C].第十四届全国复合材料学术会议论文集(上),2006:28-34. |
[15] | 张博明,李嘉,李煦.混杂纤维复合材料最优纤维混杂比例及其应用研究进展[J].材料工程,2014(7):107-112. |
[16] | 丁玲,孙辉,贾宏光,杨洪波.应用遗传算法优化设计机翼复合材料蜂窝夹层结构蒙皮[J].光学精密工程,2014(12):3272-3279. |
[17] | Latha P S;Rao M V;Kumar V K.Evaluation of mechani-cal and tribological properties of bamboo-glass hybrid fiber reinforced polymer composite[J].J Ind Text |
[18] | Dicker M P;Duckworth P F;Baker A B .Green compo-sites:A review of material attributes and complementary applications[J].Composites Part A:Appl Sci Manuf,2014,56:280. |
[19] | Yan L;Chouw N;Jayaraman K .Flax fibre and its compo-sites-A review[J].COMPOSITES PART B-ENGINEERING,2014,56:296. |
[20] | Huang Y;Ouyang Q;Zhang D .Carbon materials rein-forced aluminum composites:A review[J].Acta Metall Sinica:English Lett,2014,27(5):775. |
[21] | Gu D;Wang H;Dai D .Rapid fabrication of Al-based bulk-form nanocomposites with novel reinforcement and enhanced performance by selective laser melting[J].Scripta Materialia,2015,96:25. |
[22] | John S. F. Barrett;Ahmed A. Abdala;Friedrich Srienc .Poly(hydroxyalkanoate) Elastomers and Their Graphene Nanocomposites[J].Macromolecules,2014(12):3926-3941. |
[23] | 潘浩,范根莲,谭占秋,李志强,张荻.纳米Al2O3增强铝基复合材料的制备技术和发展方向[J].材料导报,2015(01):36-42. |
[24] | 燕绍九,杨程,洪起虎,陈军洲,刘大博,戴圣龙.石墨烯增强铝基纳米复合材料的研究[J].材料工程,2014(04):1-6. |
[25] | 中国航空工业发展研究中心.生物启发的更强航空航天复合材料[J].玻璃钢/复合材料,2014(5):116. |
[26] | 马保全,周正干.航空航天复合材料结构非接触无损检测技术的进展及发展趋势[J].航空学报,2014(7):1787-1803. |
[27] | 周正干,孙广开,马保全,李洋.先进复合材料超声无损检测新技术的应用[J].科技导报,2014(09):15-20. |
[28] | 波音开展复合材料防雷用多孔金属裂纹研究[J].玻璃钢/复合材料,2014(2):92. |
[29] | 空客工作组规划复合材料回收策略[J].玻璃钢/复合材料,2014(5):117. |
[30] | 王子熙.美国能量优化飞机设计方法与关键技术[J].航空科学技术,2014(05):7-12. |
[31] | 田英超,曲文卿,张智勇,张雷,庄鸿寿.碳纤维复合材料与金属的钎焊试验研究[J].航空制造技术,2011(09):82-84. |
[32] | 李珂.AGATE计划与美国通用航空复合材料[J].高科技纤维与应用,2013(02):62-64. |
[33] | Braga D F;Tavares S;Da Silva L F .Advanced design for lightweight structures:Review and prospects[J].Progress in Aerospace Sciences,2014,69:29. |
[34] | 高琳.智能复合材料在航空、航天领域的研究应用[J].纤维复合材料,2014(01):22-25. |
[35] | 2014-201 9 全球航空航天复合材料工业趋势和预测分析[J].高科技纤维及应用,2014,39(1):18. |
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