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Thermal Viscoelastic Mechanical and Wear Behaviour of Nanoparticle Filled Polytetrafluoroethylene: A Comparison

机译:纳米粒子填充聚四氟乙烯的热粘弹性机械和磨损行为:比较

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摘要

In this research work, unfilled and mono-filled polytetrafluoroethylene (PTFE) materials were developed and characterised by physical, thermal, viscoelastic, mechanical, and wear analysis. The applied fillers were graphene, alumina (Al2O3), boehmite alumina (BA80), and hydrotalcite (MG70) in 0.25/1/4/8 and 16 wt % filler content. All samples were produced by room temperature pressing–free sintering method. All of the fillers were blended with PTFE by intensive dry mechanical stirring; the efficiency of the blending was analysed by Energy-dispersive X-ray spectroscopy (EDS) method. Compared to neat PTFE, graphene in 4/8/16 wt % improved the thermal conductivity by ~29%/~84%/~157%, respectively. All fillers increased the storage, shear and tensile modulus and decreased the ductility. PTFE with 4 wt % Al2O3 content reached the lowest wear rate; the reduction was more than two orders of magnitude compared to the neat PTFE.
机译:在本研究中,通过物理,热,粘弹性,机械和磨损分析开发并表征了未填充和单填充的聚四氟乙烯(PTFE)材料。在0.25 / 1/4/8和16wt%填料含量中,施用的填料是石墨烯,氧化铝(Al 2 O 3),Bohmite氧化铝(Ba80)和水滑石(Mg70)。所有样品通过室温无压烧结法生产。所有填料通过强化干机械搅拌与PTFE混合;通过能量分散X射线光谱(EDS)方法分析混合的效率。与整齐的PTFE相比,石墨烯在4/8/16wt%中分别提高了导热率〜29%/〜84%/〜157%。所有填充剂均增加储存,剪切和拉伸模量并降低延展性。 PTFE具有4wt%的Al2O3含量达到最低磨损率;与整齐的PTFE相比,减少超过两个数量级。

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