综述了芳纶复合材料摩擦磨损性能的研究进展,介绍了纤维增强、颗粒填充及高聚物共混改性芳纶复合材料的摩擦磨损性能,对比分析了干摩擦、水润滑、油润滑等不同润滑条件对芳纶复合材料摩擦磨损性能的影响,经过改性使芳纶复合材料的摩擦磨损综合性能得到改善。简述了芳纶复合材料在航空航天、汽车工业和防护装备等其他领域的应用。最后,展望了芳纶复合材料在未来的研究方向。
This paper briefly reviewed the research progress on the friction and wear properties of aramid composites,and introduced the friction and wear properties of fiber-reinforced,particle-filled and polymer blend-modified aramid composites.The effects of different lubrication conditions,such as dry friction,water lubrication and oil lubrication,on the friction and wear properties of aramid composites were comparatively analyzed,and the friction and wear properties of aramid composites were improved after modification.Additionally,the applications of aramid composites in aerospace,automotive industries,protective equipment and other fields were briefly discussed.Finally,prospects for future research directions of aramid composites were proposed.
[1] Li X,Dong C,Li J,et al.Molecular dynamics simulation of aging properties in polymer materials:a review[J].Polymer Bulletin,2024,82:1723-1753.
[2] Liu Y,Lu S,Luo J,et al.Research progress of antistatic-reinforced polymer materials:a review[J].Polymers for Advanced Technologies,2023,34(4):1393-1404.
[3] Gao Z,Chen Y,Wang Z,et al.Study on the failure effect of aramid reinforced concrete slab under localized blast loading[J].Structures,2024,63:106292.
[4] Naya F,Molina-Aldareguía J M,Lopes C S,et al.Interface characterization in fiber-reinforced polymer-matrix composites[J].Jom,2017,69:13-21.
[5] Hegde S,Shenoy B S,Chethan K N.Review on carbon fiber reinforced polymer (CFRP) and their mechanical performance[J].Materials Today:Proceedings,2019,19:658-662.
[6] Liu X,Kong W,Song S,et al.Impact properties and damage assessment of unidirectional aramid/carbon fiber hybrid reinforced polymer composites[J].Thin-Walled Structures,2025,209:112898.
[7] Sun W,Gu Y,Yang Z,et al.Enhanced tribological performance of hybrid polytetrafluoroethylene/Kevlar fabric composite filled with milled pitch-based carbon fibers[J].Journal of Applied Polymer Science,2018,135(19):46269.
[8] Khafidh M,Schipper D J,Masen M A,et al.Friction and wear mechanism of short-cut aramid fiber and silica reinforced elastomers[J].Wear,2019,428:481-487.
[9] Bang S G,Yeom D J,Jeong Y J,et al.Effect of aramid fiber on the properties of glass fiber-reinforced composite for cryogenic applications[J].Applied Composite Materials,2022,29(4):1431-1448.
[10] Guo F,Zhang Z Z,Liu W,et al.Influence of solid lubricant reinforcement on wear behavior of Kevlar fabric composites[J].Journal of Applied Polymer Science,2008,110(3):1771-1777.
[11] Tang G,Huang W,Chang D,et al.The friction and wear of aramid fiber-reinforced polyamide 6 composites filled with nano-MoS2[J].Polymer-Plastics Technology and Engineering,2011,50(15):1537-1540.
[12] Song J,Zhao G,Ding Q,et al.Reciprocating friction and wear of polyimide composites filled with solid lubricants[J].Journal of Polymer Engineering,2018,38(4):363-370.
[13] Yan X,Yang X,Qi X,et al.Tribological properties of PAO40@SiO2/PTFE/aramid fabric composites subjected to heavy-loading conditions[J].Tribology International,2022,166:107336.
[14] 李杉杉,尚诗杰,王娜娜,等.对位芳纶纤维界面改性技术研究进展[J].复合材料学报,2025,42(3):1192-1206.
[15] Tanaka K,Uchiyama Y,Toyooka S.The mechanism of wear of polytetrafluoroethylene[J].Wear,1973,23(2):153-172.
[16] Wang J,Huang X,Wang W,et al.Effects of PTFE coating modification on tribological properties of PTFE/aramid self-lubricating fabric composite[J].Materials Research Express,2022,9(5):055302.
[17] Liu Y,Xu N,Wang Y,et al.Preparation and tribological properties of hybrid PTFE/Kevlar fabric self-lubricating composites[J].Surface and Coatings Technology,2019,361:196-205.
[18] Altin Karataş M.Investigation of friction performance and surface integrity of aramid fiber-reinforced polymer matrix composite[J].Polymer Composites,2021,42(12):6349-6361.
[19] Bolvari A,Glenn S,Janssen R,et al.Wear and friction of aramid fiber and polytetrafluoroethylene filled composites[J].Wear,1997,203:697-702.
[20] Wu J,Cheng X H.Friction and wear properties of Kevlar pulp reinforced epoxy composites under dry sliding condition[J].Tribology Letters,2006,22:259-263.
[21] Manoharan S,Vijay R,Singaravelu D L,et al.Tribological characterization of recycled basalt-aramid fiber reinforced hybrid friction composites using grey-based Taguchi approach[J].Materials Research Express,2019,6(6):065301.
[22] Luo W,Ding Q,Li Y,et al.Effect of shape morphology on mechanical,rheological and tribological properties of polyoxymethylene/aramid composites[J].Polymer Science Series A,2015,57:209-220.
[23] Gordon D H,Kukureka S N.The wear and friction of polyamide 46 and polyamide 46/aramid-fibre composites in sliding-rolling contact[J].Wear,2009,267(1-4):669-678.
[24] 咸贵军,齐肖,郭瑞,等.荷载与湿热服役工况下碳纤维增强复合材料的摩擦学行为与磨损机制研究[J].复合材料学报,2024,DOI:10.13801/j.cnki.fhclxb.20241008.002.
[25] Gao C,Zhang G,Wang T,et al.Enhancing the tribological performance of PEEK exposed to water-lubrication by filling goethite (α-FeOOH) nanoparticles[J].RSC Advances,2016,6(56):51247-51256.
[26] Qi H,Hu C,Zhang G,et al.Comparative study of tribological properties of carbon fibers and aramid particles reinforced polyimide composites under dry and sea water lubricated conditions[J].Wear,2019,436:203001.
[27] Eslava-Hernández A,Rodríguez-González J A,Rubio-González C,et al.Effect of seawater aging on the erosive wear response of aramid fiber reinforced composites[J].Journal of Composite Materials,2024,58(9):1167-1178.
[28] 吴炬,程先华.干摩擦和水润滑条件下芳纶浆粕/环氧树脂复合材料摩擦磨损性能研究[J].摩擦学学报,2006(4):325-329.
[29] Riggs M R,Murthy N K,Berkebile S P.Scuffing resistance and starved lubrication behavior in helicopter gear contacts:dependence on material,surface finish,and novel lubricants[J].Tribology Transactions,2017,60(5):932-941.
[30] Zhao G,Ding Q,Wang Q.Comparative study on the tribological properties of the polyimide composites reinforced with different fibers[J].Polymer Composites,2016,37(8):2541-2548.
[31] Kim S J,Cho M H,Lim D S,et al.Synergistic effects of aramid pulp and potassium titanate whiskers in the automotive friction material[J].Wear,2001,251(1-12):1484-1491.
[32] Li W B,Huang J F,Fei J,et al.Effect of aramid pulp on improving mechanical and wet tribological properties of carbon fabric/phenolic composites[J].Tribology International,2016,104:237-246.
[33] 秦铭泽,张伟涛,姬晓晨,等.复合材料在我国航空航天与轨道交通领域中的应用研究[J].热加工工艺,2024,53(6):6-9.
[34] Bhat A,Budholiya S,Aravind Raj S,et al.Review on nanocomposites based on aerospace applications[J].Nanotechnology Reviews,2021,10(1):237-253.
[35] Kim G,He Y,Kulkarni S,et al.The influence of aircraft fluid ingression on tensile properties of aramid fiber composites[J].Advanced Composite Materials,2021,30(4):365-379.
[36] 袁锋,高敬民,宋志成,等.芳纶材料在汽车制品中的应用[J].汽车实用技术,2017(23):26-30,61.
[37] Cheng D,Wang X,Zhu J,et al.Friction and wear behavior of carbon fiber reinforced brake materials[J].Frontiers of Materials Science in China,2009,3:56-60.
[38] Cunniff P M.An analysis of the system effects in woven fabrics under ballistic impact[J].Textile Research Journal,1992,62(9):495-509.
[39] Stojanović D B,Obradović V,Bajić D,et al.A new generation of aramid fibers/poly (vinyl butyral) composites for ballistic protection:recent development and advances[J].Journal of Engineered Fibers and Fabrics,2024,19:15589250241309084.
[40] Cheeseman B A,Bogetti T A.Ballistic impact into fabric and compliant composite laminates[J].Composite Structures,2003,61(1-2):161-173.
基金资助
上海市经济和信息化委员会专项资金资助(CYLGG-2024-1-24)