总结了纤维增强树脂基复合材料湿热条件下的吸湿行为及影响吸湿的因素; 综述了湿热老化对复合材料耐热性能和力学性能的影响, 分析了其作用机理。多数树脂基复合材料吸湿的初期阶段符合费克定律, 吸湿会造成树脂基体的塑化、水解, 产生裂纹以及纤维/树脂基体界面破坏, 从而降低材料的性能。最后对纤维增强树脂基复合材料湿热老化研究提出了几点建议。
所属栏目
综述国防科技工业环境试验与观测重点项目(H092013A003)
收稿日期
2013/6/272014/4/24
作者单位
谢可勇:中国兵器工业集团第五三研究所, 济南 250031
李晖:中国兵器工业集团第五三研究所, 济南 250031
孙岩:中国兵器工业集团第五三研究所, 济南 250031
王登霞:中国兵器工业集团第五三研究所, 济南 250031
李倩倩:中国兵器工业集团第五三研究所, 济南 250031
备注
谢可勇(1976-), 男, 山东茌平人, 副研究员, 硕士。
引用该论文:
XIE Ke-yong,LI Hui,SUN Yan,WANG Deng-xia,LI Qian-qian.Effect of Hygrothermal Aging on Behaviors of Fiber Reinforced Resin Composites and Its Mechanism[J].Materials for mechancial engineering,2014,38(8):1~5
谢可勇,李晖,孙岩,王登霞,李倩倩.湿热老化对纤维增强树脂基复合材料性能的影响及其机理[J].机械工程材料,2014,38(8):1~5
被引情况:
【1】
张浩宇,何宇廷,冯 宇,谭翔飞,邵 青,尹 翔, "碳纤维增强环氧树脂复合材料加筋板的压缩屈曲特性",机械工程材料
39, 59-62(2015)
参考文献
【1】
BARJASTEH E, NUTT S R. Moisture absorption of unidirectional hybrid composites[J].Composites Part A: Applied Science and Manufacturing, 2012,43(1): 158-164.
【2】
RATH H K, SAHU S K. Static behavior of woven fiber-laminated composites in hygrothermal environment[J].Journal of Reinforced Plastics and Composites, 2011,30(21): 1771-1781.
【3】
BOUKHOULDA F B, GUILLAUMAT L, LATAILLADE J L, et al. Aging-impact coupling based analysis upon glass/polyester composite material in hygrothermal environment[J].Materials & Design, 2011,32(7): 4080-4087.
【4】
RMVGK R, SRIHARI S. Hygrothermal characterization and diffusion studies on glass epoxy composites[J].Journal of Reinforced Plastics & Composites, 1999,18(10): 942-953.
【5】
ZHONG Y, ZHOU J. Study of thermal and hygrothermal behaviors of glass/vinyl ester composites[J].Journal of Reinforced Plastics & Composites,1999,18(17): 1619-1629.
【6】
CAUICH-CUPUL J I, PREZ-PACHECO E, VALADEZ-GONZLEZ A, et al. Effect of moisture absorption on the micromechanical behavior of carbon fiber/epoxy matrix composites[J].Journal of Materials Science,2011,46(20): 6664-6672.
【7】
KRISHNAR, REVATHI A, SRIHARI S. Post-curing effects on hygrothermal behavior of RT-cured glass/epoxy composites[J].Journal of Reinforced Plastics and Composites,2010,29(3): 325-330.
【8】
YU Yun-hua, PENG Li, GANG Sui. Effects of hygrothermal aging on the thermal-mechanical properties of vinylester resin and its pultruded carbon fiber composites[J].Polymer Composites,2009,30(10): 1458-1464.
【9】
BOUCHAM B, CHATEAUNEUF A, ADDA BEDIA E A. An uncertainty method for moisture concentration assessment in composite material plates T300/5208 under hygrothermal conditions effects[J].Turkish Journal of Engineering and Environmental Sciences,2008,32(5): 253-263.
【10】
ASTM D5229/D5229M-92 Standard test method for moisture absorption properties and equilibrium conditioning of polymer matrix composite materials[S].
【11】
吕新颖,江龙,闫亮.碳纤维复合材料湿热性能研究进展[J].玻璃钢/复合材料,2009(3): 76-80.
玻璃钢/复合材料|2009||3|76-80
【12】
陈辉,贾丽霞.CEg基体及其纤维缠绕复合材料耐热性能研究[J].纤维复合材料,2007(1): 39- 40.
纤维复合材料|2007||1|39-40
【13】
赵鹏.纤维增强树脂基复合材料湿热老化性能研究[D].南京: 南京航空航天大学,2009.
【14】
AKBAR S, ZHANG T. Moisture diffusion in carbon/epoxy composite and the effect of cyclic hygrothermal fluctuations: characterization by dynamic mechanical analysis(DMA)and interlaminar shear strength (ILSS)[J].The Journal of Adhesion,2008,84(7/9): 585-600.
【15】
YOUSSEF Z, JACQUEMIN F, GLOAGUEN D, et al. A multi-scale analysis of composite structures: application to the design of accelerated hygrothermal cycles[J].Composite Structures, 2008,82(2): 302-309.
【16】
SHARMA N, KUMAR M S, RAY B C. Study of the effect of hygrothermal ageing on glass/epoxy micro-composites by FTIR-imaging and alternating DSC techniques[J].Journal of Reinforced Plastics & Composites,2008,27(15): 1625-1634.
【17】
陈伟明, 王成忠, 周同悦,等. T800碳纤维复合材料界面吸湿性能分析[J].玻璃钢/复合材料,2006(5): 23-27.
玻璃钢/复合材料|2006||5|23-27
【18】
BAO Li-Long, YEE A F. Moister absorption and hygrothermal aging in a bismaleimide rein[J].Polymer,2001,42: 7327-7333.
【19】
WAN Y Z, WANG Y L. Moister absorption behavior of C3D/ EP composite and effect of external stress[J].Material Science and Engineering: A,2002,326: 324-329.
【20】
SHEN C H. Moisture absorption and desorption of composite materials [J].Composite Materials,1976,10 (1): 2-20.
【21】
吕小军,张琦,马兆庆,等.湿热老化对碳纤维/环氧树脂基复合材料力学性能影响研究[J].材料工程,2005(11): 50-53.
材料工程|2005||11|50-53
【22】
JANA R N, BHUNIA H. Hygrothermal degradation of the composite laminates from woven carbon/SC-15 epoxy resin and woven glass/SC-15 epoxy resin[J].Polymer Composites,2008,29(6): 664-669.
【23】
DU Ling, JANA S C. Hygrothermal effects on properties of highly conductive epoxy/graphite composites for applications as bipolar plates [J].Journal of Power Sources,2008,182(1): 223-229.
【24】
NACERI A. Moisture absorption and mechanical and acoustic responses in shear of a glass fiber fabric/epoxy resin composite[J].Mechanics of Composite Materials,2007,43(5): 403-408.
【25】
王红霞,万怡灶,王玉林.玻璃纤维增强光固化树脂基复合材料吸湿性能的研究[J].玻璃钢/复合材料,2005(1): 33-36.
玻璃钢/复合材料|2005||1|33-36
【26】
乌云其其格.3233树脂及其碳布复合材料的性能研究[J].纤维复合材料,2004, 21(4): 6-8.
纤维复合材料|2004|21|4|6-8
【27】
惠雪梅,王晓洁,尤丽虹.CE/EP/CF 复合材料的湿热性能研究[J].工程塑料应用,2006,34(5): 49-51.
工程塑料应用|2006|34|5|49-51
【28】
李敏,张宝艳.5428/T700 复合材料的耐湿热性能[J].纤维复合材料,2006,23(1): 3-4.
纤维复合材料|2006|23|1|3-4
【29】
封彤波,肇研,罗云烽,等.循环湿热环境下碳纤维复合材料的界面性能[J].北京航空航天大学学报,2010,36(12): 1427-1431.
北京航空航天大学学报|2010|36|12|1427-1431
【30】
WAN Y Z, WANG Y L, HUANG Y. Hygrothermal aging behavior of VARTMed three dimensional braided carbon epoxy composites under external stresses[J].Composites Part A,2005,36(8): 1102-1109.
【31】
BIRO D A, PLEIZER G, DESLANDES Y. Application of the microbond technique: effects of hydrothermal exposure on carbon fiber/epoxy interfaces[J].Composites Science and Technology,1993,46(3): 293-301.
【32】
ZHOU J, LUCAS J P. The effects of a water environment on anomalous absorption behavior in graphite/epoxy composites[J].Composites Science and Technology,1995,53(1): 57-64.
【33】
YU Y H, YANG X P, WANG L L. Hygrothermal aging on pultruded carbon fiber/vinyl ester resin composite for sucker rod application[J].Journal of Reinforced Plastics & Composites,2006,25(2): 149-160.
【34】
PAPANICOLAOU G C, KOSMIDOU T V, VATALIS A S, et al. Water absorption mechanism and some anomalous effects on the mechanical and viscoelastic behavior of an epoxy system[J].Journal of Applied Polymer Science,2006,99(4): 1328-1339.
【35】
王晓洁,梁国正,张炜,等.湿热老化对高性能复合材料性能的影响[J].固体火箭技术,2006,29(4): 30-34.
固体火箭技术|2006|29|4|30-34
【36】
张晖,阳建红,李海斌,等.湿热老化环境对环氧树脂性能影响研究[J].兵器材料科学与工程,2010,33(3): 41-43.
兵器材料科学与工程|2010|33|3|41-43
【37】
詹茂盛,李小换,许文等.热氧、湿热和热水老化对T300 /BHEP复合材料玻璃化转变温度的影响[J].宇航材料工艺,2011(3): 56-60.
宇航材料工艺|2011||3|56-60
【38】
黄丽,王琛.氰酸酯改性环氧树脂基体及其复合材料的吸湿性能研究[C]// 2006年中国科协年会论文集. [出版地不详]: [出版者不详], 2006: 66-69.
【39】
包建文,陈祥宝.5248/T300复合材料湿热性能研究[J].宇航材料工艺,2000(4): 37-40.
宇航材料工艺|2000||4|37-40
【40】
ZHANG M, MASON S E. The effects of contamination on the mechanical properties of carbon fiber reinforced epoxy composite materials[J].Journal of Composite Materials,1999,33(14): 1363-1374.
【41】
COLLINS J A, HARVEY R J, DALZAIED A W. The use of elevated temperature in the structural testing of FRP components for simulating the effects of hot and wet environmental exposure[J].Composites Part A,1993,24(8): 625-634.
【42】
CHOU I, KIMPARA I, KAFEYAMA k, et al. Effect of moisture absorption on mode I and mode II interlaminar fracture toughness of CFRP laminates[J].Journal of Japan Society for Composite Materials,1993,19(2): 46-54.
【43】
张艳萍.碳纤维环氧树脂复合材料的失效行为与机理研究[D].北京: 北京化工大学,2007.
【44】
钟翔屿,崔郁,陈敬哲.CF3052/5284RTM 复合材料湿热性能[J].宇航材料工艺,2010(4): 84-87.
宇航材料工艺|2010||4|84-87
【45】
MAYER R M, HANCOX N L. Design data for reinforced plastics—a guide for engineers and designer[M].London: Chapman & Hall,1994.
【46】
SCOLA D A. A study to determine the mechanism of S-glass/epoxy resin composite degradation due to moist and solvent environments[C]//30th Anniversary Technical Conference of SPI. New York: Reinforced Plastic/Composites Institute,1975.
【47】
余剑英,周祖福,晏石林.GMT-PP 复合材料的界面状态与湿热稳定性关系[J].武汉工业大学学报,2000,22(3): 13-16.
武汉工业大学学报|2000|22|3|13-16