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1.
固体润滑剂对碳纤维增强尼龙复合材料摩擦学性能的影响   总被引:3,自引:0,他引:3  
分别制备了PTFE/碳纤维、MoS2/碳纤维混杂增强的尼龙66复合材料,用MM-2000型摩擦磨损试验机评价其摩擦磨损性能,用SEM和XPS分析了磨损表面。结果表明:PTFE/碳纤维混杂增强可以明显改善尼龙复合材料摩擦学性能;MoS2/碳纤维混杂增强没有改善复合材料的摩擦学性能;MoS2在摩擦过程中氧化生成的MoO3充当了摩擦副之间的磨粒,其磨损机理推测为粘着和磨粒磨损的综合作用。  相似文献   

2.
研究碳纤维/聚四氟乙烯(CF/PTFE)、玻璃纤维/聚四氟乙烯(GF/PTFE)复合材料与氮化硅陶瓷配副在海水环境下的摩擦学性能与润滑机制,分析滑动速度对摩擦副海水润滑性能的影响规律。结果表明:在海水润滑条件下,随着滑动速度的增加,PTFE、CF/PTFE、GF/PTFE材料与Si3N4陶瓷配副时的摩擦学性能均有明显改善,摩擦因数与磨损率均呈显著降低的趋势,其中CF/PTFE复合材料表现出更为优异的摩擦学性能,在1 000 r/min滑动速度下摩擦因数低至0.026。磨损表面表征结果表明,在海水润滑条件下,PTFE基复合材料在摩擦过程中由于摩擦化学反应生成了润滑膜,可为摩擦副提供良好的润滑和减磨作用,从而减少摩擦磨损行为的发生。  相似文献   

3.
填料种类对聚苯酯基复合材料摩擦学性能的影响   总被引:1,自引:0,他引:1  
在聚苯酯(Ekonol)中分别添加不同种类的填料,制备出一系列性能不同的Ekonol基复合材料,研究了填料的形态、性质对Ekonol复合材料摩擦磨损性能的影响,分析了磨损面、对磨面转移膜形貌,并探讨了摩擦磨损机制。结果表明,在填料的填充量相同时,层状固体润滑剂聚四氟乙烯(PTFE),由于从本质上改善了非熔融Ekonol的内部粘结,且协助形成较为连续、平滑的转移膜,对Ekonol摩擦学性能的改善最为明显;其次为纤维状填料。相比于尺寸细微的六钛酸钾晶须,粗大的玻璃纤维(GF)或碳纤维(CF)之间相互交错,对Ekonol起到了较好的承载骨架作用,更为有效提高Ekonol的摩擦学性能。GF比CF与Ekonol之间的亲和性较好,对应于GF/Ekonol复合材料的摩擦学性能优于CF/Ekonol复合材料;纳米颗粒填料对Ekonol有着弥散增强作用,但对Ekonol摩擦学性能的改善效果最差。  相似文献   

4.
短玻璃纤维和石墨填充PTFE的摩擦磨损特性研究   总被引:3,自引:2,他引:3  
利用自主研制的往复式摩擦试验机对短玻璃纤维(SGF)及石墨填充聚四氟乙烯(PTFE)复合材料的摩擦磨损特性进行了研究,探讨了共混材料对PTFE摩擦学性能的影响。利用扫描电子显微镜对材料的磨损表面进行了观察和分析。研究结果表明,短玻璃纤维有效提高了PTFE的承载能力,石墨的加入起到了减小摩擦的作用,在较高载荷下,短玻璃纤维和石墨填充的PTFE复合材料表现出优异的抗磨性能。  相似文献   

5.
为改善广泛应用于船舶苛刻环境无油/脂润滑摩擦配副材料的摩擦学性能,将聚四氟乙烯(PTFE)按不同质量分数与钢背超高分子量聚乙烯纤维织物复合材料结合,研究它与45钢盘在变转速环环端面干摩擦状态下的摩擦学特性。对试验过程中摩擦因数及磨损量进行测量,利用表面轮廓仪、扫描电子显微镜与超景深显微镜对复合材料及对磨件磨损表面形貌进行了观察与分析。结果表明:所有填充PTFE的复合材料摩擦学性能均表现优异,随着PTFE含量的增加,复合材料摩擦性能变差,其中1 %(质量分数) PTFE填充复合材料综合摩擦性能最好,在试验工况下主要发生磨粒磨损,PTFE填充量较高的复合材料在高速下由于团聚及摩擦热量积聚主要经历黏着磨损与疲劳磨损。  相似文献   

6.
钛酸钾晶须增强聚四氟乙烯复合材料摩擦磨损机制的研究   总被引:3,自引:2,他引:1  
研究了钛酸钾晶须(PTW)对聚四氟乙烯(PTFE)复合材料力学及摩擦学性能的影响,并与碳纤维(CF)和玻璃纤维(GF)的填充效果进行了比较.结果表明:加入PTW后,PTFE的硬度、冲击强度、拉伸强度、弯曲强度、压缩强度及耐磨性能比纯PTFE的分别约提高了10%、30%、20%、15%、20%和300倍;PTW/PTFE的耐磨性能要优于GF/PTFE及CF/PTFE.SEM研究表明: PTW/PTFE的内部结构比GF/PTFE及CF/PTFE的均匀致密,具有显微增强效果;PTW/PTFE的磨损面比GF/PTFE及CF/PTFE的要平整,其转移膜也较GF/PTFE及CF/PTFE的更为均匀、连续、致密.  相似文献   

7.
石墨及纤维填充聚四氟乙烯复合材料的摩擦学研究   总被引:1,自引:0,他引:1  
研究了在碳纤维(CF)和玻璃纤维(GF)混杂纤维改性PTFE复合材料中添加石墨(Gr)的力学性能和摩擦磨损性能,探讨纤维及石墨的润滑协同效应.结果表明,纤维填料的加入使得复合材料的拉伸强度和伸长率有所降低,但大大提高了复合材料的硬度,石墨的加入能够降低摩擦因数,提高耐磨损性能.14? 9%GF 2%Gr复合材料具有较好的摩擦磨损性能,磨损表面(SEM)形貌较光滑,改变了纯PTFE的磨损机制,高载荷下耐磨损性能更突出.3种填料在PTFE基体中起到了很好的协同作用,综合性能较优异,具有一定的应用价值.  相似文献   

8.
采用共混-冷压-烧结-整形的工艺制备有机物填充聚四氟乙烯(PTFE)复合材料,考察相同含量的不同有机填料对PTFE复合材料力学性能和摩擦学性能的影响。结果发现,加入有机填料后,复合材料的拉伸强度降低,但硬度和压缩强度均提高;有机填料有效地改善了PTFE复合材料的摩擦学性能,其中,质量分数15%聚苯酯填充的PTFE复合材料减摩效果最好,质量分数15%聚酰亚胺填充的PTFE复合材料的耐磨损性能最优。相比之下,质量分数15%芳纶填充的PTFE复合材料摩擦磨损性能及力学性能最好,其耐磨损性能较纯PTFE提高了近400倍,而摩擦因数仅为纯PTFE的84%。其原因在于芳纶的加入有效地改变了摩擦机制,能形成均匀连续的转移膜,进而降低了磨损。  相似文献   

9.
聚苯酯填充聚四氟乙烯复合材料摩擦学行为研究   总被引:7,自引:3,他引:7  
采用聚苯酯(Ekonol)、Ekonol/PAB纤维增强聚四氟乙烯(PTFE)制备利用转移膜润滑的摩擦副材料,并研究了两组材料在于摩擦条件下与9Cr18轴承钢对摩时的摩擦学性能;运用扫描电镜分析了两组材料磨损表面形貌和磨损机理。结果表明:随着Ekonol含量的增大,Ekonol填充PTFE复合材料的摩擦因数逐渐增大,当Ekonol质量分数超过25%时摩擦因数略有下降,磨损方式由以犁削磨损为主转变为以疲劳磨损为主;而Ekonol/PAB纤维填充门FE复合材料的摩擦因数,随Ekonol含量的增大而增大,磨损方式由以粘着磨损为主转变为以疲劳磨损为主。Ekonol/PAB纤维填充PTFE复合材料的摩擦学性能优于Ekonol填充PTFE复合材料。  相似文献   

10.
采用注塑成型法制备纳米Si3N4和玻璃纤维混杂填充PA6尼龙复合材料,对PA6复合材料的力学性能和摩擦学性能进行了实验研究.采用扫描电子显微镜观察分析磨损表面形貌及磨损机制.结果表明:纳米Si3N4和玻璃纤维混杂填料能使PA6复合材料的拉伸强度和表面硬度增大.纳米Si3N4和玻璃纤维混杂可以显著改善尼龙复合材料的摩擦学性能,以3% Si3N4的耐磨减摩性最好.  相似文献   

11.
S. Bahadur  V. K. Polineni 《Wear》1996,200(1-2):95-104
The effect of glass fabric reinforcement on the friction and wear behavior of nylon was investigated for varying fabric proportions. The effect of the addition of particulate CuO filler, and the filler and PTFE to the glass fabric-reinforced composites on the tribological properties of the composites was also studied. The composites with different proportions of fiber, filler and PTFE were compression molded and tested for friction and wear in a pin-on-disk configuration. It was found that the proportion of glass fabric for optimum wear resistance was about 20% by volume. The addition of CuO filler did not contribute to improvement in the wear resistance of the fabric-reinforced composites because a good transfer film did not develop in the presence of fibers and the composites became fragile. PTFE was very effective in reducing the wear of filled and fabric-reinforced composites. The friction and wear behavior of these composites has been interpreted in terms of their ability to form transfer film on the steel counterface and the changes occurring on the pin surface. The composition for maximum wear resistance was 25 vol.% CuO-11.3 vol.% glass fabric-10 vol.% PTFE-nylon.  相似文献   

12.
In this article, we studied and explored the impact of viscoelasticity on the friction and wear behavior of pure polytetrafluoroethylene (PTFE), carbon–graphite PTFE composite, and glass fiber–MoS2 PTFE composite. Tests were carried out using a specific reciprocating tribometer for valve seal application. The worn surfaces of the PTFE composites and the transfer films formed on the counterface were examined with a scanning electron microscope (SEM). Experimental results revealed that the addition of filler materials was effective in reducing the wear volume in all composites studied. In addition, the friction coefficient and wear resistance showed high sensitivity to the viscoelastic behavior of the PTFE seal. SEM investigation showed that the incorporation of particulate fillers into the PTFE matrix could dramatically reduce and stabilize the transfer films to the counterface, so they largely decreased the wear of the PTFE composites.  相似文献   

13.
玻璃微珠填充改性含油铸型尼龙的摩擦学和热性能   总被引:1,自引:0,他引:1  
以玻璃微珠为填料制备了玻璃微珠填充改性含油铸型尼龙复合材料,研究了复合材料的摩擦争性能和热性能。结果表明:加入玻璃微珠的复合材料的摩擦因数降低,耐磨性提高,其磨损行为主要是粘着磨损和磨粒磨损;该复合材料的热变形温度有所降低,但线膨胀系数减小。  相似文献   

14.
以无碱玻璃纤维布作为基材,以浸渍有聚四氟乙烯的棉纤维布为表层,以环氧树脂为黏合剂,经热压制备聚四氟乙烯纤维基层压材料;采用 MRH-03型高速环-块摩擦磨损试验机研究其在空气、纯水、海水介质中的摩擦学行为,利用扫描电镜观察并分析磨损表面的形貌及摩擦形式。结果表明,与基底材料相比,增加聚四氟乙烯棉纤维布后,材料的摩擦性能有明显的改善;加入水作为润滑介质后,由于水膜边界润滑的作用,特别是由于海水作为润滑介质时摩擦产生的淤泥状的 Mg (OH)2和 CaCO3的自润滑作用,摩擦因数和磨损率进一步减小。  相似文献   

15.
The friction and wear properties of polytetrafluoroethylene (PTFE) and its composites with fillers such as bronze, glass fiber, carbon fiber, carbon, graphite, and polymer were studied at ambient temperature and high temperature. The wear resistance and hardness were enhanced by the fillers. Results showed that the wear resistance of all composites was much higher than that of pure PTFE. Pure PTFE has the lowest friction coefficient at ambient temperature (temperature: 23 ± 2°C, humidity: 50 ± 10%) but highest friction coefficient at high temperature (above 100°C). The PTFE composite filled with bronze showed the best wear resistance at ambient temperature but the poorest wear resistance at high temperature. The carbon-graphite- or polymer-filled PTFE composite showed a lower friction coefficient and moderate wear resistance at both ambient and high temperature.  相似文献   

16.
纤维增强树脂基摩阻材料的摩擦学研究进展   总被引:1,自引:0,他引:1  
综述了纤维增强树脂基摩阻材料的研究和发展,主要分析了树脂基体、增强纤维和填料以及温度和PV值对摩阻材料摩擦学性能的影响及作用机理,简述了摩阻材料磨损机理的研究现状和主要磨损类型。并提出了今后研究摩阻材料应重视的问题。  相似文献   

17.
填料对聚四氟乙烯工程塑料改性的影响   总被引:22,自引:2,他引:22  
研究了MoS2、PbS、石墨、玻璃纤维、碳纤维等填料对聚四氟乙烯(PTFE)工程塑料抗磨损、摩察系数、表面硬度、耐冲击强度等性能的影响。结果表明:填料可将PTFE的磨损量降低2个数量级,石墨和适量硬质填料的协同作用对PTFE的改性效果比较理想,既降低了PTFE的磨损量,增大了表面硬度,又提高了耐冲击强度。对其作用机理进行了分析和探讨,为材料的性能优化提供理论依据。  相似文献   

18.
Atomic force microscopy and friction force microscopy have been used to conduct microfriction studies on short carbon fiber reinforced PEEK/PTFE composite blends. The relative micro-scale coefficients of friction of different filler particles (PTFE, CF in normal and anti-plane orientation, and graphite) have been compared with the matrix PEEK. The order of the nanoscopic coefficients of friction was: carbon fiber in normal orientation>carbon fiber in plane orientation>PEEK matrix>graphite flake>carbon fiber in parallel orientation>PTFE particle. Additional microhardness studies resulted in qualitative hardness comparisons of the various phases. Their order of the form: carbon fibers PEEK and graphite>PTFE also reflects the contribution of the various phases to the wear resistance of the composite blend. The latter can be estimated from the AFM-topography traces of the polished composite surfaces.  相似文献   

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