热固性环氧泡沫材料因具有优异的性能而在夹芯材料领域具有广泛应用,并成为新的研究热点.总结了近年来的新型制备技术、新型结构泡沫材料以及空心微球填充环氧合成泡沫的研究概况,详细概述了环氧泡沫材料的改性研究新进展,包括在泡沫基体中引入新基团/新组分、短切纤维增强、纳米材料改性、橡胶粒子改性等.
Thermoset epoxy foams, which have been a new research focus because of their excellent properties, are extensively applied in the field of sandwich materials. In this paper, new preparation methods and novel-structured foam of thermoset epoxy foam composites including syntactic foam in recent years are reviewed. Simultaneously, re-search progress in modified epoxy foam, such as introducing new chemical group/component in conventional foam, re-inforced with short fibers, modified by nano-materials and rubber particles, are summarized in details.
参考文献
[1] | Lee H;Neville K.Handbook of epoxy-resin[M].New York:McGraw-Hill,1982 |
[2] | 王贵军,樊洪斌,宋六九,谢军.玻璃微珠在复合材料中的应用[J].纤维复合材料,2001(03):11-12. |
[3] | Stefani PM.;Barchi AT.;Sabugal J.;Vazquez A. .Characterization of epoxy foams[J].Journal of Applied Polymer Science,2003(11):2992-2996. |
[4] | 张京珍.泡沫塑料成型加工[M].北京:化学工业出版社,2005:57. |
[5] | Ashida K.Handbook of plastic foams:Types,properties,manufacture and applications[M].Landrock A H (Ed).USA:Noyes Publications,1995:147. |
[6] | Mcelhanon JR.;Russick EM.;Wheeler DR.;Loy DA.;Aubert JH. .Removable foams based on an epoxy resin incorporating reversible Diels-Alder adducts[J].Journal of Applied Polymer Science,2002(7):1496-1502. |
[7] | 张晓艳,王景鹤,成晓阳.一种中密度硬质环氧泡沫塑料的制备及其性能研究[C].第十三届全国复合材料学术会议论文集,2004:1177-1184. |
[8] | Palumbo M;Tempesti E .On the nodular morphology and mechanical behavior of a syntactic foam cured in thermal and microwave fields[J].ACTA POLYMERICA,1998,49:482. |
[9] | Zhong Fachun;He Jiangping;Wang Xiaochuan .Microstructure and properties of epoxy foams prepared by microwave[J].Journal of Applied Polymer Science,2009,112:3543. |
[10] | Lim, KS;Barigou, M .Ultrasound-assisted generation of foam[J].Industrial & Engineering Chemistry Research,2005(9):3312-3320. |
[11] | FABRIZIO QUADRINI;ERICA ANNA SQUEO .Solid-State Foaming of Epoxy Resin[J].Journal of Cellular Plastics,2008(2):161-173. |
[12] | Erickson K L;Trujillo S M.Liquefaction and flow behavior of a thermally decomposing removable epoxy foam[A].新加坡,2004:217. |
[13] | 张晓艳,王景鹤,范召东.电器灌封用环氧泡沫塑料制备工艺研究[J].航空材料学报,2003(z1):186-189. |
[14] | Stefani PM;Cyras V;Barchi AT;Vazquez A .Mechanical properties and thermal stability of rice husk ash filled epoxy foams[J].Journal of Applied Polymer Science,2006(6):2957-2965. |
[15] | Kevin Casey;Philip E Weber.Expandable epoxy foam:A systematic approach to improve vehicle performance[A].Detroit,Michigan,USA,2004:1. |
[16] | NIKHIL GUPTA;RAHUL MAHARSIA .Enhancement of Energy Absorption in Syntactic Foams by Nanoclay Incorporation for Sandwich Core Applications[J].Applied composite materials,2005(3/4):247-261. |
[17] | Devi KA;John B;Nair CPR;Ninan KN .Syntactic foam composites of epoxy-allyl phenol-bismaleimide ternary blend - Processing and properties[J].Journal of Applied Polymer Science,2007(6):3715-3722. |
[18] | Gupta N;Woldesenbet E .Compression properties of syntactic foams:Effect of cenosphere radius ration and specimen aspect ratio[J].Compos Part A:Appl Sci Manuf,2004,35(01):103. |
[19] | Gupta N;Woldesenbet E .Microballoon wall thickness effects on properties of syntactic foams[J].Journal of Cellular Plastics,2004,40:461. |
[20] | Tien Chih Lin;Nikhil Gupta;Anton Talalayev .Thermoanalytical characterization of epoxy matrix-glass microballoon syntactic foams[J].Journal of Materials Science,2009(6):1520-1527. |
[21] | J.R.M. d' Almeida .An analysis of the effect of the diameters of glass microspheres on the mechanical behavior of glass-microsphere/epoxy-matrix composites[J].Composites science and technology,1999(14):2087-2091. |
[22] | Bunn P;Mottram J T .Manufacture and compression properties of syntactic foams[J].Compos,1993,24(07):565. |
[23] | NIKHIL GUPTA;EYASSU WOLDESENBET;KISHORE .Response of Syntactic Foam Core Sandwich Structured Composites to Three-Point Bending[J].Journal of Sandwich Structures and Materials,2002(3):249-272. |
[24] | Nikhil Gupta;Ruslan Nagorny .Tensile properties of glass microballoon-epoxy resin syntactic foams[J].Journal of Applied Polymer Science,2006,102:1254. |
[25] | Ho Sung Kim;Mohammad Azhar Khamis .Fracture and impact behaviours of hollow micro- sphere/epoxy resin composites[J].Composites, Part A. Applied science and manufacturing,2001(9):1311-1317. |
[26] | 韦璇;朱晓君.空心玻璃微珠填充环氧复合泡沫材料的制备及性能表征[J].功能材料,2007(A10):3846. |
[27] | Kochetkov V A;Maksimov R D .Water absorption and swelling of glass/epoxy syntactic foams[J].Mechan Compos Mater,1996,32(01):61. |
[28] | Wouterson E M;Boey F Y C;Hu X et al.Specific properties and fracture toughness of syntactic foam:Effect of foam microstructures[J].Composites Science and Technology,2005,65:1840. |
[29] | 黄文霖 .聚合物空心微球填充环氧轻质复合材料的制备与表征[D].浙江大学,2006. |
[30] | Carfagna C;Ambrogi V;Cicala G;Pollicino A;Recca A;Costa G .Reactive microspheres as active fillers for epoxy resins[J].Journal of Applied Polymer Science,2004(5):2031-2044. |
[31] | El-Hadek MA.;Tippur HV. .Dynamic fracture parameters and constraint effects in functionally graded syntactic epoxy foams[J].International Journal of Solids and Structures,2003(8):1885-1906. |
[32] | Kishore;Ravi Shankar;S. Sankaran .Gradient syntactic foams: Tensile strength, modulus and fractographic features[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2005(1/2):153-158. |
[33] | In Park et al.Mesocellular silica foam as an epoxy polymer reinforcing agent[J].Advanced Functional Materials,2007,17:2835. |
[34] | Kyoko Ishiguro;Takuya Karaki.Morphological and mechanical properties of epoxy foam reinforced composites[A].Boston,Massachusetts,USB,2005:324. |
[35] | 肖湘莲,黄鹏程.含酰亚胺基团环氧泡沫的制备及其性能[J].热固性树脂,2005(03):27-29,32. |
[36] | Zhang Y.;Hourston DJ. .Rigid interpenetrating polymer network foams prepared from a rosin-based polyurethane and an epoxy resin[J].Journal of Applied Polymer Science,1998(2):271-281. |
[37] | EMPA Duebendorf.Titular Professor ETH Zuerich.Short glass fiber reinforced epoxy foam[A].Zurich,Switzerland,2000:241. |
[38] | Karthikeyan C S;Sankaran S;Kishore .Influence of chopped strand fibres on the flexural behaviour of a syntactic foam core system[J].Polymer International,2000,49:158. |
[39] | Karthikeyan C S;Sankaran S et al.Processing and compressive strengths of syntactic foams with and without fibrous reinforcements[J].Journal of Applied Polymer Science,2001,81:405. |
[40] | Karthikeyan C S;Murphy C R L;Sankaran S et al.Characterization of reinforced syntactic foams using ultrasonic imaging technique[J].Bulletin of Materials Science,1999,22(04):811. |
[41] | Wouterson E M;Boey F Y C;Hu X et al.Effect of fiber reinforcement on the tensile,fracture and thermal properties of syntactic foam[J].Polymer,2007,48:3183. |
[42] | Wouterson E M;Boey F Y C;Wong S C et al.Nanotoughening versus micro-toughening of polymer syntactic foams[J].Composites Science and Technology,2007,67:2924. |
[43] | Bledzki AK.;Gassan J.;Kurek K. .The influence of micropores on the dynamic-mechanical properties on reinforced epoxy foams[J].Journal of Materials Science,1998(12):3207-3211. |
[44] | Alonso M V et al.Short-fiber-reinforced epoxy foams[J].Composites Part A:Applied Science and Manufacturing,2006,37:1952. |
[45] | Andrzej K.Bledzki;Wenyang Zhang .Dynamic mechanical properties of natural fiber-reinforced epoxy foams[J].Journal of Reinforced Plastics and Composites,2001(14):1263-1274. |
[46] | 管云林;邵蕾 .纤维素纤维增强聚氨酯/酚醛环氧树脂互穿网络硬质泡沫塑料的研究[J].中国塑料,1996,10(05):31. |
[47] | Stefani PM;Perez CJ;Alvarez VA;Vazquez A .Microcellulose fibers-filled epoxy foams[J].Journal of Applied Polymer Science,2008(2):1009-1013. |
[48] | 张万强,杨鸿昌,裴雨辰,赵英民.纳米SiO2改性环氧复合泡沫塑料研究[J].宇航材料工艺,2006(03):26-28. |
[49] | R. Maharsia;N. Gupta;H. D. Jerro .Investigation of flexural strength properties of rubber and nanoclay reinforced hybrid syntactic foams[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):249-258. |
[50] | EyassuWoldesenbet .Low velocity impact properties of nanoparticulate syntactic foams[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008(1/2):217-222. |
[51] | Rahul R. Maharsia;Harlan D. Jerro .Enhancing tensile strength and toughness in syntactic foams through nanoclay reinforcement[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2007(0):416-422. |
[52] | Azimi H R;Pearson R A;Hertzberg R W .Fatigue of hybrid epoxy composites:Epoxies containing rubber and hollow glass spheres[J].Polymer Engineering and Science,1996,36(18):2352. |
[53] | Gupta N et al.Enhancement of energy absorption characteristics of hollow glass particle filled composites by rubber addition[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2005,395:233. |
[54] | Guoqiang Li;Nji Jones .Development of rubberized syntactic foam[J].Composites, Part A. Applied science and manufacturing,2007(6):1483-1492. |
[55] | Guoqiang Li;Manu John .A crumb rubber modified syntactic foam[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008(1/2):390-399. |
[56] | 卢子兴,石上路,邹波,寇长河,张子龙,李鸿运.环氧树脂复合泡沫材料的压缩力学性能[J].复合材料学报,2005(04):17-22. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%