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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis, mechanical properties and chemical/solvent resistance of crosslinked poly(aryl-ether-ether-ketones) at high temperatures
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Synthesis, mechanical properties and chemical/solvent resistance of crosslinked poly(aryl-ether-ether-ketones) at high temperatures

机译:高温下交联聚(芳基醚醚醚酮)的合成,力学性能和耐化学/溶剂性

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摘要

A synthetic two-stage procedure was developed for the synthesis of moderately crosslinked polymers based on poly(aryl-ether-ether-ketone) (PEEK). Rigid crosslinks based on aromatic imines were synthetically introduced into PEEK polymer matrix resulting in PEEK materials with various degrees of crosslinking. Two specific crosslinked PEEK polymers (5% and 10% of ketone groups crosslinked) were characterized and studied in detail. Thermomechanical properties, as well as chemical/solvent resistance of these materials at high temperatures (175-280 degrees C) were investigated and compared to the original PEEK material (Victrex 151G). The introduction of rigid crosslinks was shown to disrupt crystallinity of PEEK very efficiently. Because tensile properties of PEEK depend on its crystallinity, we observed a decrease in properties such as Young's modulus and the ultimate elongation, the extent of which depended on the degree of crosslinking. We also observed an improvement in the elastomeric properties of the crosslinked materials, such as decrease in initial permanent set during high temperature cyclic tensile testing. Mechanical creep behavior at high temperature also improved for crosslinked polymers vs the original commercial Victrex 151G in terms of a reduced irreversible creep component. All crosslinked materials showed excellent resistance to hot oily, acidic and basic environments, as well as excellent thermal stability. Overall, we were able to synthesize "softer" materials that are more rubbery at high temperature than commercial thermoplastic Victrex 151G; these elastomer-like materials showed promising mechanical properties for high temperature applications in hot/corrosive environments.
机译:开发了一种合成的两阶段程序,用于合成基于聚(芳基醚醚醚酮)(PEEK)的中度交联聚合物。将基于芳族亚胺的刚性交联合成引入PEEK聚合物基质中,从而得到具有不同交联度的PEEK材料。对两种特定的交联PEEK聚合物(5%和10%的酮基交联)进行了表征和详细研究。研究了这些材料在高温(175-280摄氏度)下的热机械性能以及耐化学性/耐溶剂性,并将其与原始的PEEK材料(Victrex 151G)进行了比较。结果表明,刚性交联的引入非常有效地破坏了PEEK的结晶度。由于PEEK的拉伸性能取决于其结晶度,因此我们观察到诸如杨氏模量和极限伸长率等性能的下降,其程度取决于交联度。我们还观察到了交联材料的弹性性能的改善,例如高温循环拉伸试验中初始永久变形的降低。与原始的商用Victrex 151G相比,交联聚合物在高温下的机械蠕变行为也得到了改善,因为它减少了不可逆蠕变成分。所有交联材料均显示出对热油性,酸性和碱性环境的出色抵抗力,以及出色的热稳定性。总的来说,我们能够合成比商业热塑性热塑性塑料Victrex 151G在高温下更具橡胶感的“软”材料。这些类弹性体材料在热/腐蚀性环境中的高温应用中显示出良好的机械性能。

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