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Tribological Properties of PTFE Filled Plants-Derived Semi-Aromatic Polyamide (PA10T) and GF Reinforced PTFE/PA10T Composites

机译:PTFE填充植物衍生半芳族聚酰胺(PA10T)和GF增强PTFE / PA10T复合材料的摩擦学性质

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For the purpose of developing the new engineering materials such as structural materials and tribomaterials based on plants-derived polymers, the tribological properties of polytetrafluoroethylene (PTFE) filled plants-derived semi-aromatic polyamide 10T (PA10T) composites and glass fiber (GF) reinforced PTFE/PA10T composites were investigated. PA10T is a kind of polyphthalamide (PPA, semi-aromatic polyamide) and biomass polymer made from plants-derived decamethylenediamine and coal-derived terephthalic acid. PTFE/PA10T and GF/PA10T/PTFE composites were melt-mixed by a twin screw extruder and injection-molded. Their mechanical properties such as tensile, Izod impact, and tribological properties were evaluated. Tribological properties were measured by a ring-on-plate type sliding wear tester under dry condition. Tribological properties of PA10T such as frictional coefficient, specific wear rate and limiting pv value improved with the addition of PTFE, although the mechanical properties such as tensile strength and tensile modulus decreased with PTFE. On the other hand, the frictional coefficient and specific wear rate of GF/PA10T/PTFE composites were higher than those of PTFE/PA10T composites, however limiting pv value and mechanical properties improved significantly with the filling of GF. It follows from these results that it may be possible to develop the new tribomaterials based on plants-derived polymer composites with sufficient balances between mechanical and tribological properties.
机译:为开发新的工程材料,例如基于植物衍生的聚合物结构材料和tribomaterials的目的,聚四氟乙烯(PTFE)的摩擦性能填充植物衍生的半芳族聚酰胺10T(PA10T)复合材料和增强的玻璃纤维(GF) PTFE / PA10T复合材料进行了调查。 PA10T是一种聚(PPA,半芳族聚酰胺)和从植物衍生的十亚甲基二胺和煤衍生的对苯二酸制成的生物质的聚合物。 PTFE / PA10T和GF / PA10T / PTFE复合物是熔融混合的由双螺杆挤出机和注模。它们的机械性能如拉伸强度,Izod冲击和摩擦性能进行评价。摩擦学性能通过一个环上板型干式条件下滑动磨损试验机测定。 PA10T的摩擦学性质如摩擦系数,比磨损速率,并与加入PTFE提高极限PV值,虽然机械性能如拉伸强度和拉伸模量与PTFE降低。在另一方面,GF / PA10T / PTFE复合材料的摩擦系数和比磨损率明显低于PTFE / PA10T复合材料的高,但是限制PV值和机械性能与GF的填充显著改善。从这些结果得出,有可能开发一种基于与机械和摩擦学性能之间有足够结余的植物衍生的聚合物复合材料的新tribomaterials。

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