盛美萍,王敏庆,孙进才.噪声与振动控制技术基础[M]. 北京: 科学出版社, 200l. SHENG M P, WANG M Q, SUN J C. Fundamental Technology of Control of Sound and Vibration [M]. Beijing: Science Press,2001.
[2]
WANG Xiang, LIU Han-xing, OUYANG Shi-xi. Damping properties of flexible epoxy resin[J].Journal of Wu Han University of Technology, 2008, 23(3): 411-414.
[3]
王志远,杨留栓.泡沫金属基高阻尼复合材料的研究进展[J].材料开发与应用, 2004,19(3):38-40. WANG Z Y, YANG L S. Progress of high damping foam metal matrix composite[J]. Development and Application of Materials, 2004, 19(3): 38-40.
[4]
方前锋,朱震刚,葛庭燧.高阻尼材料的阻尼机理及性能评估[J]. 物理, 2000,29(9): 541-545. FANG Q F, ZHU Z G, GE T S. Characterization and mechanism of high damping materials[J]. Physics, 2000, 29(9): 541-545.
[5]
张忠明,刘宏昭,王锦程, 等.材料阻尼及阻尼材料的研究进展[J]. 功能材料,2001, 32(3): 227-23. ZHANG Z M,LIU H Z, WANG J C. Damping of materials and progress in the damping materials[J]. Journal of Functional Materials, 2001, 32(3): 227-23.
[6]
吕丽,白书欣,张虹, 等.纤维增强聚合物阻尼预测模型的研究进展[J]. 材料导报, 2005, 19(12): 35-38. LU L,BAI S X,ZHANG H et al. The review of analytical model for predicting the damping of fiber-reinforced polymer composite[J]. Materials Review, 2005, 19(12): 35-38.
[7]
BARRETT D J. Damped composite structures [J]. Composite Structure, 1991, 18(3): 283-294.
[8]
BIGGERSTAFF J M, KOSMATKA J B. Shear measurements of viscoelastic damping materials embedded in composite plates[A]. Smart Structures and Materials 1999: Passive Damping and Isolation[C]. Newport Beach: Proceedings of the SPIE, 1999. 82-93.
[9]
ROBINSON M J, KOSMATKA J E. Embed ding viscoelastic damping materials in low-cost VARTM composite structures[A]. Smart Structures and Materials 2005: Damping and Isolation[C]. Bellingham: Proceedings of the SPIE, 2005. 349-360.
[10]
MANTENA P R, GIBSON R F. Dynamic mechanical properties of hybrid polyethylene/graphite composites[J]. Advanced Materials: Looking Ahead to the 21st Century, 1990.370-382.
[11]
SARGIANIS J, SUHR J. Core material effect on wave number and vibrational damping characteristics in carbon fiber sandwich composites[J]. Composites Science and Technology, 2012, 72(13): 1493-1499.
[12]
TOSHIO T. Smart CFRP materials for application in low-vibration structures[A]. The International Conference on Composite Interfaces[C]. Tokyo: Interface 21, 2012. 1-4.
[13]
PAN Li-jian, ZHANG Bo-ming, DAI Fu-hong. Multi-objective optimization of co-cured composite laminates with embedded viscoelastic damping layer[J]. Journal of Materials Science & Technology, 2009, 25(5): 708-712.
[14]
吕丽,白书欣,张虹, 等. 玻璃纤维芯-铅网增强橡胶复合材料动态性能[J]. 复合材料学报,2006,23(6):37-48. LU L,BAI S X, ZHANG H et al. Dynamic properties of glass-fiber-cored lead-net reinforced rubber composite[J]. Acta Materiae Composite Sinica, 2006,23(6):37-48.
[15]
余启勇,马玉瑗,郭万涛, 等. 结构阻尼复合材料及其研究进展[J]. 材料工程,2007, (1): 253-261. YU Q Y,MA Y P,GUO W T. Structural damping composite and its research progress[J]. Journal of Material Engineering, 2007,(1): 253-261.
[16]
杨加明, 张义长, 吴丽娟.多层黏弹性复合材料结构阻尼性能优化设计[J].航空学报,2011, 32(2): 265-269. YANG J M, ZHANG Y C,WU L J. Damping optimization of composite structures with multi-interleaved viscoelastic layers [J]. Acta Aeronautica et Astronautica Sinica, 2011,32(2): 265-269.
[17]
杨加明,钟小丹,赵艳影.复合材料夹杂双层黏弹性材料的应变能和阻尼性能分析[J]. 工程力学, 2010, (3): 133-138. YANG J M, ZHONG X D, ZHAO Y Y. Strain energy and damping analysis of composite laminates with two interleaved viscoelastic layers[J]. Engineering Mechanics, 2010, (3): 133-138.
[18]
杨雪,王源升,朱金华, 等.多层阻尼复合结构阻尼性能[J]. 复合材料学报, 2005, 6(3): 175-181. YANG X, WANG Y S, ZHU J H. Damping properties of the composite structures with multilayered damping materials[J]. Acta Materiae Composite Sinica, 2005, 6(3): 175-181.
[19]
范永忠,孙康,吴人洁.环氧树脂混杂复合材料的阻尼性能研究[J].功能材料,2000, 31(增刊1):94-98. FAN Y Z,SUN K,WU R J. Investigation on the damping properties of hybrid fibers reinforced epoxy resin composite materials[J].Functional Materials, 2000, 31(Suppl 1) : 94-98.
[20]
吴医博,郭万涛,冀冰.一种适用于内嵌阻尼层夹芯复合材料真空辅助成型方法[P]. 中国专利: ZL 201110040105.6, 2011-02-18. WU Y B, GUO W T, JI B. A vacuum assisted resin transfer molding suitable for Sandwich composites inserted with damping layer[P]. Chinese patent, ZL 201110040105.6, 2011-02-18.
[21]
郭万涛, 冀冰, 吴医博.一种结构性高阻尼纤维增强复合材料[P]. 中国专利: ZL 200910172342.0, 2009-09-22. GUO W T, JI B,WU Y B. A structural fiber reinforced composites with high damping properties[P]. Chinese Patent, ZL 200910172342.0, 2009-09-22.
[22]
梁森, 米鹏.嵌入式共固化复合层合材料结构的制作工艺[P]. 中国专利: ZL 20101017721278.8 2010-05-10. LIANG S, MI P. The making craft of embedded co-cured composites with laminated structure[P]. Chinese Patent, ZL20101017721278.8, 2010-05-10.
[23]
益小苏, 刘燕峰, 马宏毅, 等. 一种植物纤维叠层混杂功能性复合材料层合板的制备方法[P]. 中国专利: ZL 201210054309.X,2012-03-02. YI X S, LIU Y F, MA H Y. A kind of preparation methods of plant fiber laminated hybrid functional laminated composites[P]. Chinese Patent:ZL 201210054309.X, 2012-03-02.
[24]
韩俐伟.三元互穿聚合物网络材料阻尼性能研究[J]. 化工新型材料, 2004, 32(8): 22-24. HAN L W. Study on damping nature of ternary IPN[J]. New Chemical Materials, 2004, 32(8): 22-24.
[25]
秦川丽,蔡俊,唐冬雁,等. PU/VER IPN 材料阻尼性能的研究[J]. 材料工程, 2003, (7): 36-40. QIN C L, CAI J, TANG D Y, et al. Study on damping properties of PU/VER IPN[J]. Journal of Materials Engineering, 2003, (7): 36-40.
[26]
王珍, 陈祥宝, 王景鹤. 氢化丁腈橡胶/聚甲基丙烯酸酯互穿聚合物网络研究[J].材料工程, 2009, (12): 1-5. WANG Z, CHEN X B, WANG J H. Interpenetrating polymer networks based on hydrogenated nitrile rubber and polymethacrylate[J]. Journal of Materials Engineering, 2009, (12): 1-5.
[27]
SUHR J, KORATKAR N A, YE D X, et al. Damping properties of epoxy films with nanoscale fillers[J]. Journal of Intelligent Material Systems and Structures, 2006, 17(3): 255-260.
[28]
王国杰, 孙宇, 曹春平, 等. 黄麻纤维增强聚氨酯复合材料的拉伸性能研究[J]. 塑料工业, 2012 (8): 21-25. WANG G J, SUN Y, CAO C P, et al. Research on tensile performance of Jute fiber reinforced composites[J]. China Plastics Industry, 2012, (8): 21-25.
[29]
JAMES J S, KIM H I, ANDRES E, et al. Sound and vibration damping characteristics in natural material based sandwich composites[J]. Composite Structures, 2013, 96: 538-544.
[30]
XU M, FUTABA D N, YAMADA T, et al. Carbon nanotubes with temperature-invariant viscoelasticity from -196 to 1000℃[J]. Science, 2010, 330(6009):1364-1368.
[31]
SHAN C, ZHAO W, LU X L, et al. Three-dimensional nitrogen-doped multiwall carbon nanotube sponges with tunable properties[J].Nano Letters, 2013, 13(11): 5514-5520.
[32]
PATHAK S, LIM E J, ABADI P, et al Higher recovery and better energy dissipation at faster stain rates in carbon nanotube bundles an in-situ study[J].ACS Nano, 2012, (3): 2189-2197.
[33]
HEHR A, SCHULZ M, SHANOV V, et al. Passive damping of carbon nanotube thread[J]. Journal of Intelligent Material Systems Structures, 2013, 25: 713-719.
[34]
CHUN K, KIM S, SHI M, et al. Hybrid carbon nanotube yarn artificial muscle inspired by spider dragline silk[J]. Nature Communications, 2014, (5), 3322.
[35]
ZENG Y, CI L J, BRENT J C, et al. Design and reinforcement vertically aligned carbon nanotube-based sandwich composites[J]. ACS Nano, 2010, (4): 6798-6804.
[36]
LIN R M, LU C. Modeling of interfacial friction damping of carbon nanotube-based nano-composites[J]. Mechanical Systems and Signal Processing, 2010, 24(8): 2996-3012.
[37]
FALVO M R, TAYLOR R M, HELSER A, et al. Nanometre-scale rolling and sliding of carbon nanotubes[J]. Nature, 1999, 397: 236-238.
[38]
曾尤, 王函. 纳米炭/环氧树脂复合材料黏弹阻尼性能[J]. 科学通报, 2014, 59(33): 3232-3239. ZENG Y, WANG H. Viscoelastic damping of nano-carbon/epoxy composites[J]. Chinese Science Bulletin, 2014, 59(33): 3232-3239.
[39]
SU Y, WEI H, GAO R, et al. Exceptional negative thermal expansion and viscoelastic properties of graphene oxide paper[J]. Carbon, 2012, 50(8):2804-2809.
[40]
KORATKAR N. Graphene in composite materials: synthesis, characterization and applications[M]. Lancaster: DEStech Press, 2013.
[41]
石敏先,黄志雄,杨国瑞. PANI-PMN/环氧树脂复合材料的制备[J]. 合成树脂及塑料, 2009, 26(2):31. SHI M X, HUANG Z X,YANG G R. Preparation of PANI-PMN/epoxy resin composites [J].China Synthetic Resin and Plastic, 2009, 26(2): 31.
[42]
程细才. P V D F 复合材料的性能及其制备[J]. 中国陶瓷, 2013, 49(8): 1-5. CHENG X C. Properties and preparation of PVDF composite material[J]. China Ceramics, 2013, 49(8): 1-5.
[43]
吴燕杰,刘军,孟献丰, 等. PZT压电陶瓷纤维的制备及性能研究[J]. 稀有金属材料与工程, 2008, 37(1): 580-583. WU Y J,LIU J,MENG X F,et al. Fabrication and performance of PZT piezoceramic fibers[J]. Rare Metal Materials and Engineering, 2008, 37(1): 580-583.
[44]
郭艳宏,赵小平,陈蓉蓉, 等. 有机小分子DZ改性HTPB型聚氨酯阻尼材料[J].材料导报, 2009, 23(增刊1): 5-10. GUO Y H,ZHAO X P,CHEN R R. Study on modification by DZ on polyether type polyurethane damping material[J]. Materials Review, 2009, 23(Suppl 1): 5-10.
[45]
刘昕晖, 陈塑寰. 聚苯胺体系电流变流体的阻尼机理及阻尼模型研究[J]. 固体力学学报, 2001, (1): 12-25. LIU X H, CHEN S H. Research for the damping and damping model polyaniline electro-rheological fluid[J]. Acta Mechanica Solida Sinica, 2001,(1): 12-25.
[46]
丁新波,张慧萍,晏雄. 杂化材料中有机小分子形态对阻尼性能影响[J]. 材料工程, 2008, (4): 23-27. DING X B, ZHANG H P, YAN X. Effect of the state of organic small molecule in hybrid materials on damping properties[J]. Journal of Materials Engineering, 2008,(4): 23-27.
[47]
DUENAS T A, CARMAN G P. Large magnetostrictive response of Terfenol-D resin composites [J]. Journal of Applied Physics, 2000, 87(9): 4696-4701.
[48]
SURESH S. Graded materials for resistance to contact deformation and damage[J]. Science, 2001, 292(5526): 2447-2451.
[49]
沈衡,朱唐,梁飞跃, 等. 从低维到高维的仿生材料制备及其应用进展[J].中国材料进展, 2014, 33(4): 201-211. SHEN H, ZHU T, LIANG F Y, et al. Progress in the preparation and application of bio-inspired materials from low to high dimensional structure[J]. Material China, 2014, 33(4): 201-211.
[50]
THIELEN M, SPECK T, SEIDEL R. Viscoelasticity and compaction behavior of the foam-like pomelo peel [J]. Journal of Materials Science, 2013, 48(9): 3469-3478.
[51]
苏航. 玻璃空心微珠/Al 多孔材料压缩及阻尼性能研究[D]. 哈尔滨:哈尔滨工业大学, 2013. SU H. Compression and damping properties of glass cenosphere/AL syntactic foams[D]. Harbin: Harbin Institute of Technology, 2013.
[52]
金明江,赵玉涛, 程晓农, 等.玻璃纤维/PC树脂/LY12铝合金叠层复合材料界面处理及其性能[J]. 机械工程材料, 2006, 30(5): 51-55. JIN M J,ZHAO Y T,CHEGN X N. Interfacial-treatment and properties of fiber glass/PC resin/LY12 Al alloy laminated composites[J]. Materials for Mechanical Engineering, 2006, 30(5): 51-55.
[53]
金明江,赵玉涛,戴起勋, 等.泡沫铝/PC树脂/铝合金叠层复合材料的制备与性能研究[J]. 材料科学与工程学报, 2005, 23(4): 585-588. JIN M J,ZHAO Y T, DAI Q X,et al. Study on fabrication and properties of Al foams/PC resin/Al alloy laminated composites[J]. Journal of Materials Science and Engineering, 2005, 23(4): 585-588.
[54]
王翔,刘韩星,欧阳世翕, 等.环氧树脂弹性体的制备及性能研究[J]. 武汉理工大学学报,2008, 27(3): 56-58. WANG X, LIU H X, OUYANG S X. Research on preparation and characterizing of epoxy elastomer[J]. Journal of Wuhan University of Technology, 2008, 27(3): 56-58.
[55]
ELASSER M S, DIMONIE V L, SPERLING L H. Morphology design and characterization of IPN-containing structured latex particles for damping applications[J]. Colloids and Surface A: Physiochemical and Engineering Aspects, 1999, 153(1-3): 241-253.
[56]
李法华.功能性橡胶材料及制品[M]. 北京: 化学工业出版社, 2003. 41-46. LI F H. Functional Rubber Materials and Product[M]. Beijing: Chemical Industry Press, 2003. 41-46.
[57]
李明俊, 徐泳文,万诗贵. 各向异性层合阻尼结构理论及其阻尼特性分析[J].南昌航空工业学院学报,2001,15(3) : 1-4. LI M J, XU Y W, WAN S G. A structural theory and its damping analysis of laminated isotropic damped plates[J]. Journal of Nanchang Institute of Aeronautical Technology, 2001, 15(3): 1-4.
[58]
FINEGAN I C,GIBSON R D F. Analytical modeling of damping at micromechanical level in polymer composites reinforced with coated fibers [J]. Composites Science and Technology, 2000, 60(7), 1077-1084.
[59]
HARGOU K, PINGKARAWAT K, MOURITZ A P, et al. Ultrasonic activation of mendable polymer for self-healing carbon-epoxy laminates[J]. Composites: Part B, 2013, 45(1): 1031-1039.
[60]
NI R G, ADAMS R D. The damping and dynamic modulus of symmetric laminated composite beams theoretical and experimental results[J]. Journal of Composite Materials, 1984, 18(2): 104-121.
[61]
SARAVANOS D A, CHAMISE C. Computational simulation of damping in composite structures[J]. Journal of Reinforced Plastics and Composites, 1991, 10(3): 256-278.
[62]
RIKARDS R, CHATE A, KORJAKIN A. Vibration and damping analysis of laminated composite plates by the finite element method[J]. Engineering Computations, 1995, 12(1): 61-74.
[63]
BERTHELOT J M. Damping analysis of laminated beams and plates using the ritz method[J]. Composite Structures, 2006, 74(2): 186-201.
[64]
林松, 徐超, 吴斌. 嵌入多层黏弹性胶膜复合材料阻尼工字梁的多目标设计优化[J]. 计算机辅助工程, 2010, 19(4): 44-49. LIN S,XU C,WU B. Multi-objective design optimization on composite damping 工-shaped beam with co-cured embedded viscoelastic layers[J]. Computer Aided Engineering, 2010, 19(4): 44-49.
[65]
张少辉,陈花玲.国外纤维增强树脂基复合材料阻尼研究综述[J]. 航空材料学报,2002, 22(1): 58-62.ZHANG S H, CHEN H L. Development of research on damping of fiber reinforced composite-a review[J]. Journal of Aeronautical Materials, 2002, 22(1): 58-62.
[66]
赵云峰,游少雄. 结构/阻尼一体化复合材料技术及其应用研究进展[J].材料工程,2012, (11): 86-91.ZHAO Y F,YOU S X. Review on the structure/damping co-cured composite materials and their applications[J]. Journal of Materials Engineering, 2012, (11): 86-91.
[67]
ZHANG S H,CHEN H L.A study on the damping characteristics of laminated composite with integral viscoelastic layers[J].Composite Structures, 2006, 74(1): 63-69.
[68]
SUZUKI K,KAGEYAMA K,KIMPARA I,et a1.Vibration and damping prediction of laminates with constrained viscoelastic layers- numerical analysis by a multilayer higher order deformable finite dement and experimental observations[J].Mechanics of Advanced Materials and Structures, 2003, 10(1): 43-75.
[69]
LIAO F S,SU A C,HSU T C. Vibration damping of interleaved carbon fiber epoxy composite beams[J].Journal of Composite Materials, 1994, 28(18): 1840-1854.
[70]
WANG H J,CHEN L W. Vibration and damping analysis of a three layered composite annular plate with a viscoelastic mid-layer[J]. Composite Structures, 2002, 58(4): 563-570.
[71]
BRONOWICKI A J, GTIRSEL Y. Dual stage passive vibration isolation for optical interferometer missions[A]. Interferometry in Space[C]. Waikoloa: Proceedings of the SPIE, 2003. 753-763.
[72]
王敬丰, 魏文文, 潘复生, 等.金属阻尼材料研究的新进展及发展方向[J]. 材料导报, 2009, 23(13):15-19. WANG J F, WEI W W, PAN F S. New development and prospect of research on metallic damping materials[J].Materials Review,2009,23(13):15-19.
[73]
任怀宇. 黏弹阻尼减振在导弹隔冲击结构中的应用[J].宇航学报, 2007, 28(6): 1494—1499. REN H Y. The application of viscoelastic damping vibration suppression for hock-isolation structure of multistage missile[J]. Journal of Astronautics, 2007, 28(6): 1494-1499.
[74]
潘利剑. 粘弹阻尼层共固化复合材料的性能研究与优化设计[D]. 哈尔滨:哈尔滨工业大学,2006. PAN Li-jian. Study of performance and optimum design of co-cured composite laminates with embedded viscoelastic layer[D]. Harbin: Harbin Institute of Technology, 2006.
[75]
DING X B, ZHANG H P. Effects of small molecular additives on the damping performance of CPE/ZKF/EBP three-component hybrids[J]. Journal of Materials and Science, 2009, 44(10): 2683-2687.
[76]
YEH J Y. Vibration and damping analysis of orthotropic cylindrical shells with electro-rheological core layer[J]. Aerospace Science and Technology, 2011, 15(4): 293-303.
[77]
LIU Q X, DING X B, ZHANG H P, et al. Preparation of high-performance damping materials based on carboxylated nitrile rubber: combination of organic hybridization and fiber reinforcement[J]. Journal of Applied Polymer Science, 2009, 114(5): 2655-2661.
[78]
SHAN P H, RAY M C. Active control of laminated composite truncated conical shells using vertically and obliquely reinforced 1-3 piezoelectric composites[J]. European Journal of Mechanics A/Solids, 2012, (32): 1-12.
[79]
王娟娟, 冯拉俊, 晁小练, 等. CNT/PZT/RTV复合材料的相结构及阻尼吸声性能[J]. 材料科学与工程学报, 2014, 32(2): 200-206. WANG J J, FENG L J, CHAO X L. Phase structure, damping and absorption performances: CNT/PZT/RTV[J].Journal of Material Science and Engineering, 2014, 32(2): 200-206.
[80]
魏迪永. 高阻尼永磁磁性橡胶的研究[D]. 杭州: 浙江大学, 2013. WEI D Y. Permanent magnetic rubber with high damping capacity[D]. Hangzhou: Zhejiang University, 2013.
[81]
LAKES R S. High damping composite materials: effect of structural hierarchy[J]. Journal of Composite Materials, 2002, 36(3): 287-296.
[82]
MOREIRA R A S. Multilayer damping treatments: modeling and experimental assessment[J]. Journal of Sandwich Structure and Materials, 2009, (12): 181-198.
[83]
ZHAO J, HO K C, SHAMSUDDIN S R, et al. A comparative study of fiber/matrix interface in glass fibre reinforced polyvinylidene fluoride composites[J]. Colloids and Surfaces A: Physicochemical Engineering Aspects, 2012, 413: 58- 64.
[84]
ARMANDO P P, ANDRES A G, JOAQUIN M et al. Methodology for damping measurement of engineering materials: application to a structure under bending and torsion loading[J]. Journal of Vibration and Control, 2014, (7): 1-11.
[85]
REBILLAT M, BOUTILLON X. Measurement of relevant elastic and damping material properties in sandwich thick plates[J]. Journal of Sound and Vibration, 2011, 330(25): 6098-6121.
[86]
DIMITRIS I C, DIMITRIS S V, DIMITRIS A S. Prediction of material coupling effect on structural damping of composite beams and blades [J]. Composite Structures, 2012, 94(5): 1646-1655.
[87]
张少辉,陈花玲,梁天锡.纤维增强树脂基复合材料阻尼特性的数值模拟[J]. 航空材料学报,2004,24(3):10-14. ZHANG S H,CHEN H L,LIANG T X.Numerical simulation on the damping characteristic of fiber reinforced composite[J]. Journal of Aeronautical Materials, 2004, 24(3): 10-14.
[88]
ARAU'JO A L, MOTASOARES C M, MOTASOARES C A. Finite element model for hybrid active-passive damping analysis of anisotropic laminated sandwich structures[J]. Journal of Sandwich Structures and Materials, 2010, 12(4): 397-418.
[89]
ARAUJO A L,MARTINS P,MOTA SOARES C M,et al. Damping optimization of viscoelastic laminated sandwich composite structures[J]. Structural and Multidisciplinary Optimization, 2009, 39(6): 569-579.
[90]
潘利剑,张博明,戴福洪.黏弹阻尼层共固化复合材料不同温度下的阻尼性能[J]. 复合材料学报,2008,25(1):168-172. PAN L J,ZHANG B M,DAI F H. Damping properties of co-cured composites with interleaved viscoelastic damping layers at different temperatures [J]. Acta Materiae Composite Sinica,2008, 25(1): 168-172.
[91]
PAN Li-jian, ZHANG Bo-ming. A new method for the determination of damping in co-cured composite laminates with embedded viscoelastic layer [J]. Journal of Sound and Vibration, 2009, 319(3-5): 822-831.
[92]
张少辉, 柴洪友, 马海全, 等.黏弹阻尼技术在航天器上的应用与展望[J]. 航天器工程,2011,20(1):120-128 ZHANG S H, CHAI H Y, MA H Q,et al. Progress and prospect on viscoelastic damping technology for spacecraft application [J].Space Craft Engineering, 2011, 20(1): 120-128.
[93]
陈健, 冯淑红, 柳征勇. 航天器系统级减振/隔振应用研究及其进展[J]. 强度与环境, 2013, 40(5): 37-42. CHEN J, FENG S H, LIU Z Y. Development of application for planet system-level vibration reduction [J]. Structure and Environment Engineering, 2013, 40(5): 37-42.
[94]
孙大刚, 李占龙, 韩斌慧,等. 基于共固化阻尼层结构的风力机叶片抑颤分析[J].振动与冲击, 2013, 32(19): 93-100. SUN D G, LI Z L, HAN B H. et al. Flutter-suppressing analysis of wind turbine blades on co-curing damping layer stucture[J].Journal of Vibration and Shock, 2013, 32(19): 93-100.
[95]
CHANDRA R,SINGH S P,GUPTA K.Damping studies in fiber-reinforced composites-a review[J].Composite Structures,1999, 46(1): 41-51.
[96]
任勇生,刘立厚.纤维增强复合材料结构阻尼研究进展[J]. 力学与实践, 2004, 26(1): 9-16.REN Y S,LIU L H. Advances in damping analysis and design of fiber reinforced composite material structures[J].Mechanics in Engineering, 2004, 26(1): 9-16.
[97]
李明俊, 刘桂武, 徐泳文, 等.黏接层对各向异性层合阻尼结构内耗特性的影响[J].复合材料学报,2005,22(4):96-99. LI M J, LIU G W, XU Y W, et al. Influences of bonding layer on the internal friction characteristics of isotropic laminated damped structures [J]. Acta Materiae Composite Sinica, 2005, 22(4): 96-99.
[98]
TREGO A, EASTMAN P. Flexural damping predictions of mechanical elements designed using stress coupled, co-cured damped fiber reinforced composites [J]. Journal of Advanced Materials, 1999, 31(1): 7-17.
[99]
BIGGERSTAFF J M, KOSMATKA J B. Damping performance of co-cured graphite/epoxy composite laminates with embedded damping materials[J]. Journal of Composites Materials, 1999, 33(15): 1457-1469.
[100]
潘利剑,张博明,戴福洪. 简谐激励下共固化复合材料黏弹阻尼结构的损耗因子研究[J].振动与冲击,2008,27(2): 57-60. PAN L J, ZHANG B M, DAI F H. Loss factor of viscoelastic damping composite material under harmonic excitation [J].Journal of Vibration and Shock, 2008, 27(2): 57-60.
[101]
张少辉, 陈花玲. 共固化复合材料黏弹阻尼结构的损耗因子研究[J].航空材料学报, 2005, 25(1): 53-57. ZHANG S H, CHEN H L. Damping analysis of co-cured composites interleaved viscoelastic layers[J]. Journal of Aeronautical Materials, 2005,25(1):53-57.
[102]
NAPOLITANO K L, GRIPPE W, KOSMATKA J B, et al. A comparison of two co-cured damped composite torsion shafts[J]. Composite Structures, 1998, 43(2): 115-125.
[103]
JASROBIN S G, RAMIN S, EBRAHIM E. Vibration analysis and design optimization of sandwich beams with constrained viscoelastic core layer[J]. Journal of Sandwich Structures and Materials, 15(2): 203-228.
[104]
RAY M C, KUMAR R S. Active constrained layer damping of smart laminated composite sandwich plates using 1-3 piezoelectric composites[J]. International Journal of Mechanical Materials Design, 2012, (8): 197-218.