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1.
不同填料对PTFE复合材料硬度的影响   总被引:1,自引:0,他引:1  
使用超细及纳米SiO2颗粒和Al2O3颗粒填充改性聚四氟乙烯(PTFE)塑料,测量其硬度(HB),并使用扫描电镜对其表面形貌进行了分析。结果表明,SiO2纳米粒子填充较SiO2微米粒子填充的PTFE复合材料的硬度高34%~60%。Al2O3纳米粒子填充较Al2O3微米粒子填充的PTFE复合材料的硬度高。用溶胶凝胶法制得的纳米SiO2/PTFE复合材料比用机械混合法制备的高。  相似文献   

2.
采用模压成型的方法制备了纳米氮化硅(Si3N4)与二硫化钼(MoS2)、玻璃纤维(GF)、纳米三氧化二铝(Al2O3)混合填充的聚四氟乙烯(PTFE)复合材料,研究了PTFE复合材料的力学性能和摩擦学性能。采用扫描电子显微镜(SEM)观察分析了拉伸断面形貌及增强机理。结果表明:Si3N4及其混杂填料均使复合材料表面硬度增大;PTFE/Si3N4/Al2O3纳米复合材料具有较好的拉伸性能;混杂填料均可以显著改善PTFE复合材料的耐磨性能,其中5 %的Si3N4与10 %的Al2O3混杂填充复合材料的耐磨性最好,填料对复合材料摩擦因数影响不大。SEM分析表明,纳米Si3N4、Al2O3与PTFE基体界面结合较好。  相似文献   

3.
不同纳米材料填充聚四氟乙烯复合材料的力学性能   总被引:11,自引:4,他引:7  
对四种不同纳米材料SiO2、TiO2、Al2O3、ZrO2填充PTFE复合材料进行了拉伸和硬度试验。结果表明,纳米Al2O3填充PTFE有比较好的力学性能,当Al2O3的质量分数为10%时,其综合性能最佳。纳米SiO2填充后,PTFE的脆性及硬度显著增大。  相似文献   

4.
采用真空辅助喷涂的方法分别制备了含有碳纳米管(CNTs)质量分数1%和3%的CNTs/玻纤(GF)复合材料,采用真空辅助树脂传递模塑(VARTM)方法制备了CNTs/GF/树脂(EP)三元复合材料,并对复合材料的力学性能、耐固体粒子侵蚀磨损性能进行了研究。结果表明:加入质量分数1%,3%CNTs使复合材料的拉伸强度达到79.0,78.0 MPa,相对于纯EP增加了31.7%,30.0%,相对于GF/EP(FRP)复合材料降低了24.1%,25.0%;三元复合材料的弯曲强度达到173.3MPa,160.1 MPa,相对于纯EP增加了72.4%,51.3%,相对于FRP复合材料降低了6.9%,15.7%;耐固体颗粒侵蚀性能(质量损失率)相对于FRP复合材料提高了84.5%,81.1%。  相似文献   

5.
合成了含氟分子链接枝改性纳米氧化铝(Al2O3),用接枝改性纳米Al2O3填充聚四氟乙烯(PTFE),采用模压成型法制备了不同接枝改性纳米Al2O3含量的PTFE/纳米Al2O3复合材料;在摩擦磨损试验机上考察了接枝改性纳米Al2O3对PTFE/纳米Al2O3复合材料摩擦学性能的影响,利用扫描电子显微镜对复合材料的磨损表面进行了微观分析。结果表明,接枝改性纳米Al2O3填充PTFE复合材料在保持PTFE低摩擦系数的同时,提高了其耐磨损性能。  相似文献   

6.
研究了纳米二氧化硅(SiO2)的含量对双马来酰亚胺(BMI)/环氧树脂(EP)/2,2′二烯丙基双酚A(DBA)/纳米SiO2复合材料的耐热性能、力学性能和吸水性能的影响。结果表明,当纳米SiO2的含量为2.0 %(质量分数,下同)时,BMI/EP/DBA/纳米SiO2复合材料具有较高的强度和良好的韧性,其拉伸强度、弯曲强度和缺口冲击强度比BMI/EP/DBA复合材料分别提高了22.8 %、39.0 %和37.8 %;同时,纳米SiO2含量为 2.0 %时,BMI/EP/DBA/纳米SiO2复合材料具有优异的耐热性,其玻璃化转变温度、初始热分解温度和最大热分解温度分别为204、 410、451 ℃。  相似文献   

7.
聚合物/无机纳米粒子复合材料的研究进展   总被引:3,自引:0,他引:3  
综述了无机纳米氧化物(如SiO2、TiO2、Al2O3)、纳米硅化物(如SiC、Si3N4)和纳米CaCO3作为填充材料对聚合物材料物理、化学、热学、光学、力学及摩擦学性能的改善作用,在聚合物中加入纳米粒子是制备高性能复合材料的重要手段之一。  相似文献   

8.
叶青萱 《粘接》2013,(11):68-76
近年UV固化水性聚氨酯(WPU)或聚氨酯丙烯酸酯(WPUA)纳米复合材料的特性受到众多研究者的关注,并进行了多项研究。采用的纳米材料包括SiO2、Al2O3、TiO2、ZnO、POSS、碳纳米管、碳纳米纤维等。重点综述了WPU和WPUA低聚物(预聚物)的制备、纳米材料的改性处理、WPU/纳米颗粒和WPUA/纳米颗粒杂化复合材料的制备以及所得制品的表征、性能等。  相似文献   

9.
采用模压成型法制备纳米Si3N4或SiC与纳米Al2O3混合填充的聚四氟乙烯(PTFE)复合材料,研究不同质量分数的纳米Si3N4或SiC与5%纳米Al2O3混合填充对PTFE复合材料力学与耐磨性能的影响,利用扫描电子显微镜(SEM)观察复合材料拉伸断面的微观结构,探讨其增强机理.结果表明:纳米SiN4或SiC与Al2O3混合填料均能使PTFE复合材料的硬度和耐磨性提高,且填充Si3N4/Al2O3的PTFE复合材料的硬度、拉伸性能、冲击强度和耐磨性均优于填充SiC/Al2O3的,其中5%Si3N4与Al2O3混合填充的PTFE复合材料有较好的综合性能.微观分析表明:Si3N4/Al2O3在PTFE基体中分散性较好,说明Si3N4与Al2O3具有较好的协同作用.  相似文献   

10.
采用MM-200型摩擦磨损试验机对在干摩擦条件下3种硅纳米材料(纳米SiC、SiO2及Si3N4)与玻璃纤维混杂填充聚酰胺6(PA6)复合材料与45#钢对磨时的摩擦磨损性能进行了研究,并采用扫描电子显微镜对复合材料的磨损表面进行了观察。结果表明,3种纳米硅材料都能减小复合材料的摩擦因数,其中以纳米SiO2与玻璃纤维混杂效果最佳,纳米SiC、SiO2及Si3N4的最佳含量分别为3 %、5 %和3 %。纳米SiO2和纳米Si3N4能够提高复合材料的耐磨性,而纳米SiC会导致复合材料的磨损量增大。  相似文献   

11.
The tribological properties of glass fiber reinforced polyamide 6 (GF/PA6, 15/85 by weight) and its composites filled with solid lubricants were investigated. The main purposes of this article were to study the hybrid effect of solid lubricants with glass fiber as well as the synergism of combined solid lubricants, the wear mechanisms were studied by SEM. The results showed that graphite impaired the tribological properties of GF/PA6, but the tribology behavior of graphite filled GF/PA6 composite could be significantly improved by polytetrafluroethylene (PTFE) or/and ultrahigh molecular weight polyethylene (UHMWPE), and the GF/PA6 composite filled with 5 wt % graphite, 5 wt % PTFE together with 5 wt % UHMWPE exhibited the lowest friction coefficient and wear rate, which was almost a reduction in friction coefficient by 37% and in wear rate by 34% contrast to GF/PA6. The effect of load was also studied, and the results showed that the friction coefficient was virtually not affected by load, while the wear rate all increased with increasing load. POLYM. COMPOS., 34:1783–1793, 2013. © 2013 Society of Plastics Engineers  相似文献   

12.
Carbon nanotubes/hydroxyapatite (CNTs/HA) composites with different CNTs contents were synthesized by in situ method and were characterized by XRD, TEM and Raman spectroscopy. Friction coefficients of the composites were tested using UMT-2 friction tester. Effect of various factors including CNTs content, testing time and applied load on friction coefficient was carried out. Results show that the CNTs/HA composites exhibited lower friction coefficient than pure HA and their friction coefficients decreased with increase of CNTs content from 0 to 20 wt.%. Addition of CNTs in composite is beneficial to increase wear resistance of the CNTs/HA composite and to decrease its friction coefficient.  相似文献   

13.
The wear rate and coefficient of friction for graphite flake (GF)‐filled polytetrafluoroethylene (PTFE) composites were evaluated on a pin‐on‐disk wear tester under dry conditions. Scanning electron microscopy showed significant reduction in the abrasive wear of the composites. The wear rates of 5 and 10 wt % GF composites were reduced by more than 22 and 245 times, respectively, at sliding speed of 1 m/s. With increasing sliding distance from 1 to 8 km, the wear rate of pure PTFE decreased by 1.4 times whereas that of composites, it decreased up to three times. The significant decreased in wear rate and coefficient of friction might be attributed to the formation of a thin and tenacious transfer film on the counter‐surface. © 2012 Wiley Periodicals, Inc. J. Appl. Polym. Sci., 2013  相似文献   

14.
采用MM-200型摩擦磨损试验机对干摩擦条件下纳米SiO2与玻璃纤维混杂填充聚酰胺6(PA6)复合材料与45#钢对摩时的摩擦磨损性能进行了研究。结果表明,纳米SiO2和玻璃纤维混杂可以显著改善PA6复合材料的摩擦磨损性能,以5 %的SiO2和20 %的玻璃纤维增强PA6的耐磨减摩性最好。扫描电镜分析表明,纯PA6的磨损以黏着和犁削为主。当载荷较低时,复合材料的磨损机制主要表现为不同程度的磨粒磨损,但当载荷较高时,复合材料的磨损机制主要表现为不同程度的疲劳磨损。  相似文献   

15.
以针状的硅灰石和鳞片石墨为填料,采用冷压—烧结工艺制备了不同填料含量的聚四氟乙烯(PTFE)复合材料,考察了复合材料的摩擦磨损性能,并利用扫描电子显微镜对磨痕和转移膜进行了分析。结果表明,单独填充硅灰石和石墨时,PTFE的磨损率都会随填料含量的增加而降低,硅灰石的作用要强于石墨;但硅灰石会使PTFE的摩擦因数明显增大,而石墨会使PTFE的摩擦因数降低;2种填料提升PTFE耐磨性的作用机理不同,硅灰石在摩擦过程中会在滑动界面区域上逐渐堆积,起到优先承担载荷的作用;而石墨在摩擦过程中会发生片层的滑移与剥离,有助于转移膜的形成;适量的硅灰石(含量为20 %,质量分数,下同)与石墨(含量为5 %或10 %)复合填充能产生协同效应,使PTFE的磨损率进一步降低,耐磨性比未填充的PTFE提高200倍。  相似文献   

16.
牛军锋 《塑料科技》2012,40(10):55-57
分别以玻璃纤维(GF)与碳纤维(CF)作为增强体制备了聚苯硫醚(PPS)纤维增强复合材料。研究了GF/PPS和CF/PPS复合材料的摩擦磨损性能,以及不同体积分数的纤维增强体、不同载荷与滑动速度对复合材料的摩擦磨损性能的影响。结果表明:GF与CF的引入有效地提高了复合材料的摩擦磨损性能;随纤维体积分数的增加复合材料的摩擦系数逐渐增加,随载荷的增加复合材料的摩擦系数逐渐降低,但磨损率增大。  相似文献   

17.
W.X Chen  L.Y Wang  Z.D Xu 《Carbon》2003,41(2):215-222
Ni-P-carbon nanotube (CNT) composite coating and carbon nanotube/copper matrix composites were prepared by electroless plating and powder metallurgy techniques, respectively. The effects of CNTs on the tribological properties of these composites were evaluated. The results demonstrated that the Ni-P-CNT electroless composite coating exhibited higher wear resistance and lower friction coefficient than Ni-P-SiC and Ni-P-graphite composite coatings. After annealing at 673 K for 2 h, the wear resistance of the Ni-P-CNT composite coating was improved. Carbon nanotube/copper matrix composites revealed a lower wear rate and friction coefficient compared with pure copper, and their wear rates and friction coefficients showed a decreasing trend with increasing volume fraction of CNTs within the range from 0 to 12 vol.% due to the effects of the reinforcement and reduced friction of CNTs. The favorable effects of CNTs on the tribological properties are attributed to improved mechanical properties and unique topological structure of the hollow nanotubes.  相似文献   

18.
分别研究了不同含量碳纤维(CF)、玻璃纤维(GF)填充聚四氟乙烯(PTFE)复合材料在硫酸溶液中和干摩擦条件下的摩擦学性能,同时考察了PTFE复合材料在酸中的腐蚀行为,探讨了相关机理。结果表明,在酸中GF能够提高PTFE的耐磨性,比CF在提高PTFE耐磨性方面具有更好的优势。就酸溶液中的耐磨性和耐腐蚀性而言,15 %(质量分数,下同)是填料的最佳含量,此时GF和CF填充的PTFE,耐磨性分别较纯PTFE提高了7.7和4.4倍;当填料的含量超过15 %时,复合材料的耐磨性和耐腐蚀性均下降,主要是由于此时犁削和磨粒磨损是PTFE复合材料的主要磨损机制。由于酸溶液的冷却和润滑作用,硫酸溶液中PTFE复合材料的摩擦因数大幅降低,但酸溶液抑制了对磨面上转移膜的形成。  相似文献   

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