不同摩擦条件对PEEK、CF/PEEK复合材料摩擦学性能及其抗静电性能的影响

逄显娟1,2, 岳世伟1,2, 黄素玲1,2, 谢金梦1,2, 王帅2, 宋晨飞2, 岳赟2, 李栋1

化工新型材料 ›› 2022, Vol. 50 ›› Issue (11) : 109 -115.

PDF
化工新型材料 ›› 2022, Vol. 50 ›› Issue (11) : 109-115. DOI: 10.19817/j.cnki.issn1006-3536.2022.11.022
新材料与新技术

不同摩擦条件对PEEK、CF/PEEK复合材料摩擦学性能及其抗静电性能的影响

    逄显娟1,2, 岳世伟1,2, 黄素玲1,2, 谢金梦1,2, 王帅2, 宋晨飞2, 岳赟2, 李栋1
作者信息 +

The effects of different friction conditions on the tribological and antistatic properties of PEEK and CF/PEEK composites

  • Pang Xianjuan1,2, Yue Shiwei1,2, Huang Suling1,2, Xie Jinmeng1,2, Wang Shuai2, Song Chenfei2, Yue Yun2, Li Dong1
Author information +
文章历史 +
PDF

摘要

采用快速热压烧结法制备了聚醚醚酮(PEEK)及碳纤维改性聚醚醚酮(CF/PEEK)复合材料。利用多功能摩擦磨损试验机UMT-2对所制备的纯PEEK及CF/PEEK复合材料进行摩擦性能表征,系统研究载荷和速度对PEEK及其复合材料摩擦学性能、磨损机理及抗静电性能的影响。利用三维形貌仪、扫描电子显微镜、静电测试仪等手段对材料磨损表面及摩擦静电进行分析和表征。结果表明:随着载荷的增加,PEEK和CF/PEEK达到稳定阶段的平均摩擦系数先降低后增加;PEEK和CF/PEEK复合材料表面磨损率逐渐增大,施加载荷为100N和125N时,纯PEEK材料表面磨损失效,磨损机制以粘着磨损为主向疲劳磨损为主转变。随着速度的增加,PEEK平均摩擦系数先增加后降低,CF/PEEK平均摩擦系数先略微降低后逐渐增加;PEEK和CF/PEEK复合材料表面磨损率先降低后增加;在低速条件下,磨损机理以磨粒磨损为主,高速条件下,磨粒磨损和粘着磨损共同存在。PEEK和CF/PEEK复合材料表面摩擦静电分别随着载荷、速度的增加而逐渐增加。

Abstract

Polyether ether ketone (PEEK) and carbon fiber (CF/PEEK) composites were prepared by hot pressing sintering method.The friction properties of PEEK and CF/PEEK were characterized by multifunctional friction and wear testing machine UMT-2.The effects of load and velocity on the tribological properties,wear mechanism and the antistatic properties of the composites were systematically studied.The surface morphology and antistatic properties of the composites were measured by 3D morphometer,scanning electron microscope and friction electrostatic tester.The results showed that,with the increase of load,the average friction coefficient of PEEK and CF/PEEK at the stable stage first decreased and then increased.Meanwhile,the wear rate of PEEK and CF/PEEK increased as the load increased.When the load went up to 100N and 125N,the wear failure occurred on pure PEEK.The dominant wear mechanism changed from adhesive wear to fatigue wear.With the velocity increasing,the average friction coefficient of PEEK first increased and then decreased,and that of CF/PEEK first decreased slightly and then increase gradually.However,the wear rate of PEEK and CF/PEEK first decreased and then increased as the velocity increased.At low speed,the wear mechanism was mainly abrasive wear,while abrasive wear and adhesive wear coexisted at high speed.The surface tribostatic electricity of PEEK and CF/PEEK composites increased gradually with increasing of load and speed,respectively.

关键词

聚醚醚酮 / 碳纤维改性聚醚醚酮 / 摩擦 / 磨损 / 摩擦静电

Key words

PEEK / CF/PEEK / friction / wear / tribostatic electricity

引用本文

引用格式 ▾
不同摩擦条件对PEEK、CF/PEEK复合材料摩擦学性能及其抗静电性能的影响[J]. 化工新型材料, 2022, 50(11): 109-115 DOI:10.19817/j.cnki.issn1006-3536.2022.11.022

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Yan Ying,Mao Yu,Li Bo,et al.Machinability of the thermoplastic polymers:PEEK,PI,and PMMA[J].Polymers,2020,13(1):69.
[2] Zhang Lan,Lin Zhaohua,Zhou Qiang,et al.PEEK modified PLA shape memory blends:towards enhanced mechanical and deformation properties[J].Frontiers of Materials Science,2020,14(2):177-187.
[3] Hron R,Kadlec M,Ruzek R.Effect of the test procedure and thermoplastic composite resin type on the curved beam strength[J].Materials,2021,14(2):352.
[4] 张婷.高性能热塑性复合材料在大型客机结构件上的应用[J].航空制造技术,2013,56(15):32-35.
[5] 张欣悦,张德坤,陈凯,等.聚醚醚酮与髌骨软骨间的生物摩擦学特性[J].材料工程,2019,47(2):129-137.
[6] Ahmed S,Bhowmik S.Interpenetrating polymer network adhesive bonding of PEEK to titanium for aerospace application[J].Journal of Polymer Engineering,2018,39(1):1-9.
[7] 于婉琦,杨诗卉,张静洁.表面改性的碳纤维增强聚醚醚酮种植体的制备及其性能研究[J].现代口腔医学杂志,2020,34(4):219-223.
[8] 万磊,马越,张永乾,等.碳化硅陶瓷与聚醚醚酮复合材料的摩擦磨损特性研究[J].轴承,2020(20):22-26.
[9] 潘硕,郭晓恒.聚醚醚酮在口腔种植体及义齿修复领域的研究进展[J].世界最新医学信息文摘,2019,19(84):40-44.
[10] 高东强,张蕾,刘瑞娟,等.聚醚醚酮及其复合材料的生物摩擦学研究进展[J].工程塑料应用,2019,47(10):140-143.
[11] Wang A,Yan S,Lin B,et al.Aqueous lubrication and surface microstructures of engineering polymer materials (PEEK and PI) when sliding against Si3N4[J].Friction,2017,5(4):414-428.
[12] Abdul S M.Recent advances in UHMWPE/UHMWPE nanocomposite/UHMWPE hybrid nanocomposite polymer coatings for tribological applications:a comprehensive review[J].Polymers,2021,13(4):608.
[13] 李桂花,冶银平,马彦军,等.聚酰胺酰亚胺/聚四氟乙烯复合涂层的制备及其摩擦学性能和耐腐蚀性能[J].摩擦学学报,2021,41(4):455-466.
[14] 何国荣,袁军亚,李勇,等.二硫化钼/硫化锌纳米粉体的制备及其改性聚酰亚胺复合材料的摩擦学性能研究[J].摩擦学学报,2022,42(2):265-274.
[15] 王文东,何长昭,张超,等.高导热六方氮化硼/聚醚醚酮复合材料摩擦磨损性能研究[J].化工新型材料,2020,48(8):66-70.
[16] Guo L,Qi H,Zhang G,et al.Distinct tribological mechanisms of various oxide nanoparticles added in PEEK composite reinforced with carbon fibers[J].Composites Part A:Applied Science and Manufacturing,2017,97(3):19-30.
[17] Bijwe J,Sharma S,Sharma M,et al.Exploration of potential of solid lubricants and short fibers in Polyetherketone (PEEK) composites[J].Wear,2013,301(1):810-819.
[18] 邱超,马心旗,王亚震,等.薄层碳纤维增强树脂基复合材料研究与应用进展[J].航空制造技术,2021,64(14):22-31.
[19] Panda J N,Bijwe J,Pandey R K.Tribo-performance enhancement of PAEK composites using nano/micro-particles of metal chalcogenides[J].Composites Science and Technology,2018,167(18):7-23.

基金资助

国家自然科学基金(52105181);河南省自然科学基金项目(202300410141和222300420436);河南科技大学实验开发基金项目(SY2122030);河南省高校国家级大学生创新创业训练计划项目(202210464028)

AI Summary AI Mindmap
PDF

604

访问

0

被引

导航
相关文章

AI思维导图

/