[1] Karlsson K F, Astrom T. Manufacturing and applications of structural sandwich components. Composites Part A, 1997, 28A: 97-111.
[2] 吴志恩. 波音787复合材料构件生产. 航空制造技术, 2008, (15): 91-93.
[3] 李瑞淳. 蜂窝夹层结构复合材料设计及应用研究. 铁道机车车辆,2009,(29):3-6.
[4] 唐见茂. 航空航天材料发展现状及前景. 航天器环境工程, 2013, (3): 352-359.
[5] Okada R,Kortschot M T. The role of the resin fillet in the delamination of honeycomb sandwich structures. Composites Science and Technology, 2002, (62):1811-1819.
[6] Rion J, Leterrier Y, Manson J E. Prediction of the adhesive fillet size for skin to honeycomb core bonding in ultra-light sandwich structures. Composites Part A, 2008, (39):1574-1555.
[7] 米莹娟,王伟,张冬梅,等. 一种新型自粘接预浸料-Nomex蜂窝板面-芯结合强度关键影响因素试验研究. 复合材料学报,2013,30(4):156-157.
[8] 李河清,赵景利,张元明,等. 固化压力对夹层板结构力学性能的影响. 工程塑料应用,2002, (30):16-18.
[9] Grove S M, Popham E, Miles M E. An investigation of the skin/core bond in honeycomb sandwich structures using statistical experime-ntation techniques. Composites Part A, 2006, (37):804-812.
[10] 原崇新,李敏,顾轶卓,等. 蜂窝夹层结构真空袋共固化工艺过程实验研究. 复合材料学报,2008, (25):57-62.
[11] 郑义珠,顾轶卓,孙志杰,等. Nomex蜂窝夹层结构真空袋共固化过程蜂窝变形. 复合材料学报,2009, (26):29-35.
[12] Tavares S S, Caillet-Bois N, Michaud V. Vacuum-bag processing of sandwich structures: Role of honeycomb pressure level on skin-core adhesion and skin quality. Composites Science and Technology, 2010, (70):797-803.
[13] 张广成,赵景利. 蜂窝夹层结构复合材料的力学性能研究. 机械科学与技术,2003, (22):280-282.
[14] Boeing Material Specification, BMS4-17: Unidirectional and woven fiberglass faced aramid honeycomb core floor panel stock. BMS8-79: Glass fabric preimpregnated epoxy resin low temperature curing. BMS8-124: Nonmetallic honeycomb core.
[15] Boeing Specification Support Standard, BSS7230: Determination of flammability properties of aircraft materials. BSS7238: Test method for smoke generation by materials on combustion.
[16] 杨晓强,赵玉宇,吴健伟,等. 中温固化阻燃结构胶膜流变特性与蜂窝粘接性能. 化学与黏合,2012, (34):17-21.
[17] 王筠,左小彪,李杰,等. 阻燃环氧树脂复合材料烟密度影响因素. 宇航材料工艺,2012, (42): 73-75.
[18] 王伟, 左小彪,李杰, 等. 阻燃增韧环氧树脂及其复合材料性能研究. 宇航材料工艺, 2011, (1): 42-45.
[19] 左小彪,王伟,冯志海,等. 低烟低毒型阻燃酚醛复合材料的制备及性能表征. 高科技纤维与应用,2014, (39):25-31. |