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Molecular Weight Effects on the Processing, Thermal, and Mechanical Properties of Oligomeric Bisphenol A Phthalonitrile Resins

机译:对寡聚醇的加工,热和力学性能的分子量影响酞氯腈树脂

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Oligomeric phthalonitrile (PN) resins are desirable materials for many high-temperature applications because they exhibit good structural performance over a large temperature range, have low thermal conductivity and water absorption, as well as excellent fire performance. However, integration of these materials into certain high temperature applications has been impeded because of their limited long term oxidative stability. This is due to the high stiffness of PN resins which makes them susceptible to microcracking at elevated operating temperatures. One strategy to prevent microcracking is to improve resin flexibility by increasing its molecular weight. Along these lines, a series of bisphenol A PN resins (BisA) were synthesized with varying molecular weights. The thermal and rheological properties of each resin were characterized in order to determine the optimum processing conditions for producing void free samples of the cured resins. These samples were then subjected to a series of measurements to probe molecular weight effects on the thermal and mechanical properties of the BisA resins. Long term oxidative studies were conducted by measuring the mass of these samples before and after heating at 300 °C for 1000 hours. Samples were also imaged to probe the presence of heating induced microcracking of BisA resins.
机译:低聚酞氯硝基腈(PN)树脂是许多高温应用的理想材料,因为它们在大温度范围内表现出良好的结构性能,具有低导热性和吸水性,以及优异的火力性能。然而,由于它们有限的长期氧化稳定性,已经阻碍了这些材料的整合到某些高温应用中。这是由于PN树脂的高刚度,这使得它们在升高的操作温度下易于微裂纹。一种防止微裂纹的一种策略是通过增加其分子量来改善树脂柔韧性。沿着这些线,通过不同的分子量合成一系列双酚A pN树脂(BISA)。表征各树脂的热性和流变性质,以确定用于产生固化树脂的无效样品的最佳加工条件。然后对这些样品进行一系列测量以探测对BISA树脂的热和力学性能的分子量影响。通过在300℃下加热1000小时之前和之后测量这些样品的质量来进行长期氧化研究。还对样品进行成像以探测加热诱导的BISA树脂的诱导的微ack。

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