[1] HE Lin. Development of Submarine Acoustic Stealth Technology[J]. Ship Sci Technol,2006,28(2):9-17(in Chinese).何琳. 潜艇声隐身技术进展[J]. 舰船科学技术,2006,28:9-17.[2] SHI Zhigang. Application Analysis of Underwater Acoustic Polyurethane Materials[J]. Acoustics and Electronics Eng,2011,4:1-4(in Chinese).时志刚. 聚氨酯水下声学材料应用分析[J]. 声学与电子工程,2011,4:1-4.[3] WANG Youqiang,LI Hongqi. Characteristics and Outline of the Water-Lubricated Thordon Bearing[J]. Lubrication Eng,2003,(1):101-104(in Chinese).王优强,李鸿琦. 水润滑赛龙轴承及其润滑性能综述[J]. 润滑与密封,2003,(1):101-104.[4] LI Fang,SHUAI Changgeng,HE Li,et al. Polyurethane Composites for Water-lubricated Bearings Application[J]. Chinese J Appl Chem,2012,29(1):14-17(in Chinese).李方,帅长庚, 何琳,等. 可用作水润滑轴承的聚氨酯复合材料的制备[J]. 应用化学,2012,29(1):14-17.[5] LIU jia,XUN Yan,WANG Jie,et al. Advanced Polyurethane Elastomer of Low Creep and Fatique Resistance CPUIA Conference[C]. Shenzhen,2012:350-353(in Chinese).刘佳,郇彦,王杰,等. PPDI型微孔聚氨酯材料的合成与性能表征[C]//中国聚氨酯工业协会第十六次年会暨国际聚氨酯技术研讨会论文集. 深圳:[出版者不详],2012.[6] Tien Y I,Wei K H. Hydrogen Bonding and Mechanical Properties in Segmented Montmorillonite/polyurethane Nanocomposites of Different Hard Segment Ratios[J]. Polymer,2001,42:3213-3221.[7] LI Limin,LI Wengang,HUANG Xiang′an. The Studies of the Effect of Heat History on the Properties and Micro-phase Separation of the Thermoplastic Polyurethane[J]. Polyurethane Ind,2004,19(1):9-11(in Chinese).李立民,李文刚,黄象安. 热处理对热塑性聚氨酯性能及微相分离影响的研究[J]. 聚氨酯工业,2004,19(1):9-11.[8] WU Hengliang,XIE Hua,CHE Zhendong. Study on Polyurethane Isolators Subjected to High Loading[J]. Noise Vib Control,2012,32(1):167-169(in Chinese).吴恒亮,谢华,车振东. 大载荷聚氨酯隔振器的分析[J]. 噪声与振动控制,2012,32(1):167-169.[9] ZHAO Chuanqi,HE Lin,SHUAI Changgeng,et al. Experimental Study on the Performance of Polyurethane Isolators[J]. Ship Ocean Eng,2006,38(4):111-113(in Chinese).赵传奇,何琳,帅长庚,等. 聚氨酯隔振器性能试验研究[J]. 船海工程,2006,38(4):111-113.[10] SHU Lihong,HE Lin. Mechanical Model for Creep Performance Testing and Analysis of Polyurethane Isolator[J]. Noise Vib Control,2012,32(2):147-150(in Chinese).束立红,何琳. 聚氨酯隔振器蠕变特性力学模型试验研究[J]. 噪声与振动控制,2012,32(2):147-150.[11] Gaymans R J. Segmented Copolymers with Monodisperse Crystallizable Hard Segments: Novel Semi-crystalline Materials[J]. Prog Polym Sci,2011,36(6):713-748.[12] Kojio K,Furukawa M,Nonaka Y,et al. Control of Mechanical Properties of Thermoplastic Polyurethane Elastomers by Restriction of Crystallization of Soft Segment[J]. Materials,2010,3(12):5097-5110.[13] Sheth J P, Unal S ,Yilgor E,et al. A Comparative Study of the Structure-property Behavior of Highly Branched Segmented Poly(urethane urea) Copolymers and Their Linear Analogs[J]. Polymer,2005,46(23):10180-10190.[14] ZHU Shijian,LOU Jingjun,HE Qiwei,et al. Vibration Theory and Vibration Isolation[M]. Beijing:National Defence Industry Press,2006:148-187(in Chinese).朱石坚,楼京俊,何其伟,等. 振动理论与隔振技术[M]. 北京:国防工业出版社,2006:148-187.[15] Lin S P,Hart J L. Composites of UHMWPE Fiber Reinforeed PU/epoxy Grafted Interpenetrating Polymer Networks[J]. Eur Polym J,2007,43:996-1008.[16] WANG Jianhua,LUO Chenlei,YANG Wei,et al. Advance in the Resaerch of Polyurethane Damping Materials[J]. Eng Plast Appl,2002,30(10):51-53(in Chinese).王建华,罗陈雷,杨伟,等. 聚氨酯阻尼材料研究进展[J]. 工程塑料应用,2002,30(10):51-53. [17] QU Jiale,WANG Quanjie,WANG Shanshan,et al. Waterborne Polyurethane Modified by Nano-SiO2[J]. Leather Chem,2013,30(1):1-7(in Chinese).曲家乐,王全杰,王闪闪,等. 纳米二氧化硅改性水性聚氨酯[J]. 皮革与化工,2013,30(1):1-7.[18] HUANG Weibo,YANG Yurun,LIU Donghui. Study on the Structure and Vibration Damping Properties of Polymer Based Polyurethane Material[J]. Polym Mater Sci Eng,1995,11(2):102-105(in Chinese).黄微波,杨宇涧,刘东晖. 聚醚氨酯结构与阻尼性能研究[J]. 高分子材料科学与工程,1995,11(2):102-105.[19] WANG Baozhu,HUANG Weibo,HUANG Baochen,et al. Damping Properties of Polyether-based Polyurethanes[J]. Synth Rubber Ind,2004,27(5):309-313(in Chinese).王宝柱,黄微波,黄宝琛,等. 聚醚型聚氨酯的阻尼性能[J]. 合成橡胶业,2004,27(5):309-313. [20] Klempner D C,Berkowski L, Frisch K C,et al. Energy Absorption of Interpenetrating Polymer Networks[J]. Rubber World,1985,192(6):16.[21] LI Hui,ZHANG Yongbing,MA Yupu. Recent Advance in Vibration Damping Property of Polyurethane Interpenetrating Polymer Networks[J]. Dev Appl Mater,2008,23(6):85-88(in Chinese).李辉,张用兵,马玉璞. 聚氨酯IPN阻尼性能研究进展[J]. 材料开发与应用,2008,23(6): 5-88.[22] YANG Yurun,HUANG Weibo,DING Defu. Recent Advances in Vibration Damping Properties of Polyurethane Interpenetrating Polymer Networks[J]. Polym Bull,2000,(1):53-60(in Chinese).杨宇润,黄微波,丁德富. 聚氨酯互穿聚合物网络阻尼性能研究进展[J]. 高分子通报,2000,(1):53-60.[23] QIN Chuanli,CAI Jun,ZHANG Jusheng,et al. Structure and Properties of Interpenetrating Polymer Networks Materials with Wide-temperature Range and Excellent Damping Properties[J]. China Synth Rubber Ind,2004,27(6):374-378(in Chinese). 秦川丽,蔡俊,张巨生,等. 宽温域高阻尼互穿聚合物网络材料的结构与性能[J]. 合成橡胶工业,2004,27(6):374-378.[24] ZHANG Lijun,ZHANG Yong,CHEN Zhanyou. Research Progress on Casting Polyurethane Damping Materials[J]. Chem Propelants Polym Mater,2010,8(5):24-31(in Chinese).张利军,张永,陈战有. 浇注型聚氨酯阻尼材料研究进展[J]. 化学推进剂 高分子材料,2010,8(5):24-31.[25] DING Zhenlin. Advance in the Research of Polyurethane Vibration Isolator[J]. Noise Vib Control,2011,31(4):152-154(in Chinese).丁振林. 聚氨酯隔振器研究的新进展[J]. 噪 声与振动控制,2011,31(4):152-154.[26] SHU Lihong,HE Lin,WANG Yufei. Nonlinear Mechanical Model and Character Research on Polyurethane Isolator[J]. J Vib Eng,2010,23(5):530-536(in Chinese)束立红,何琳,王宇飞. 聚氨酯隔振器非线性力学模型与特性研究[J]. 振动工程学报,2010,23(5):530-536.[27] XIE Hua,WU Hengliang,CHE Zhendong.Study on Vibration Isolation Performance of Polyurethane Elastomer[J]. Noise Vib Control,2012,(1):154-156(in Chinese).谢华,吴恒亮. 车振东. 聚氨酯弹性体隔振性能分析[J]. 噪声与振动控制,2012,(1):154-156.[28] YU Qiming. Anti Sonar Anechoic Tiles for Submarine:CN,200920161941.8[P],2009(in Chinese).余启明. 潜艇抗声纳消声瓦:中国,200920161941.8[P],2009.[29] Ramotowski T. Oceans 2003 MTS/IEEE Proceeding. Celebrating the Past-Teaming Toward the Future[C]. Sam Diego,California,2003:227-230.[30] LI Yongqing,ZHU Xi,SUN Weihong. Advance in Underwater Sound Absorption Polymer[J]. Ship Sci Technol,2012,34(5):7-12(in Chinese).李永清,朱锡,孙卫红. 高分子水声吸声材料的研究进展[J]. 舰船科学技术,2012,34(5):7-12.[31] DUAN Haitao,WANG Xuemei,WU Yimin. Present Research Status of Water Lubricated Bearings[J]. Lubric Eng,2012,37(9):109-116(in Chinese).段海涛,王学美,吴伊敏. 水润滑轴承研究进展[J]. 润滑与密封,2012,37(9):109-116.[32] Watanabe T. Water-lubricated-type Bearing Material for Sliding Bearings of Screw Shaft of Boats and Ship, Comprises Polyurethane Elastomer Consisting of Diisocyanate, and Polycarbonate Diol and Polyethylene Wax, in Weight Ratio of Preset Range:JPN,JP2013007006-A[P],2013-A43159.[33] Thomson G. A Sleeve Bearing for Mounting in Cylindrical Housing-is of Hard Elastomeric Polyurethane Machined to be Forced Interference Fit in Bore:US,US4319790-A[P],1982-02-13;CA1120982-A 1982-26183E[69].[34] Buskens P,Wouters M,Rentrop C,et al. A Brief Review of Environmentally Benign Antifouling and Foul-release Coatings for Marine Applications[J]. J Coat Technol Res,2013,10(1):29-36.[35] Lejars M,Margaillan A,Bressy C. Fouling Release Coatings A Nontoxic Alternative to Biocidal Antifouling Coatings[J]. Chem Rev,2012,112(8):4347-4390.[36] Rajan B,Stafslien S J,Webster D,et al. Polyurethanes with Amphiphilic Surfaces Made Using Telechelic Functional PDMS Having Orthogonal Acid Functional Groups[J]. Prog Org Coat,2012,75(1/2):38-48. |