基于聚合物纳米复合材料拉伸性能的可靠性研究

S. Mandal, D. Roy, N. Prasad, Xunli Zhang
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引用次数: 0

摘要

基于高性能热塑性聚合物的聚合物复合材料具有许多优点,并用于各种应用,即轴承,制动器,离合器,齿轮,办公室自动化机械,滚轮和密封件,坦克履带垫,传动带以及许多其他[1-5]。优异的热机械性能使聚醚酮(PEEK)成为在高温化学环境下应用的有前途的候选者[6-10]。聚醚酮(PEK)也是半结晶聚合物,玻璃化转变温度为155℃,熔点为365℃[11]。聚醚砜(PES)是一种具有高Tg的无定形聚合物,可归类为热稳定聚合物。在PES的其他有趣的性能中,有良好的水解和热氧化稳定性,高刚性和抗蠕变。PES的高Tg表明该聚合物是开发PEEK基共混物的合适候选者[12,13]。不同的研究者对PEEK基复合材料进行了不同的研究[14-16]。然而,仍有大量的领域有待深入和详细的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability Studies Based on the Tensile Properties of the Polymer Nanocomposites
Polymer composites based on the high-performance thermoplastic polymers have many advantages and used for the various applications viz. bearings, brakes, clutches, gears, automation machinery in office, rollers and seals, pads of tank track, transmission belts along with many others [1-5]. The combination of superior thermo-mechanical properties causes poly (ether ketone) (PEEK) as a promising candidate for applications under chemical environment at high temperatures [6-10]. Poly (ether ketone) (PEK) is also semi crystalline polymer with glass transition temperature of 155 °C and melting point of 365 °C [11]. Poly (ether sulphone) (PES) is an amorphous polymer with a high Tg and can be classified as a thermally stable polymer. Among other interesting properties of PES, are good hydrolytic and thermo-oxidative stability, high rigidity and creep resistance. The high Tg of PES suggests the polymer as a suitable candidate for developing PEEK based blends [12,13]. Various studies have been carried out by different researchers on PEEK based composites [14-16]. However enormous scopes are still left to study in depth and details.
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