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Modification of bisphenol-A based bismaleimide resin (BPA-BMI) with an allyl-terminated hyperbranched polyimide (AT-PAEKI)

机译:用烯丙基封端的超支化聚酰亚胺(AT-PAEKI)改性双酚A基双马来酰亚胺树脂(BPA-BMI)

摘要

As a continuation of previous work involving synthesis of an allyl-functionalized hyperbranched polyimide, AT-PAEKI, we have studied the use of this reactive polymer as a modifier of bisphenol-A based bismaleimide resin (BPA-BMI). This was pursued in anticipation of improvements in processability as well as physical properties including glass transition temperature, elastic modulus, and fracture toughness. Apparent miscibility, indicated by optical clarity with a single Tg, was observed for compositions containing up to 16 wt% AT-PAEKI. Additionally, we observed complete suppression of monomer crystallization and a slight increase in the overall cure exotherm. By rheological characterization, blends containing 4 wt% AT-PAEKI were found to feature a dramatic (65-fold) reduction in the viscosity minimum during heating. Dynamic mechanical analysis (DMA) showed that the addition of 2, 4, 8 wt%. AT-PAEKI increases the cured modulus by approximately 10% from a base value of 3.4 GPa, while adding 16 wt% AT-PAEKI decreases the modulus slightly to 3.3 GPa. DMA also revealed that the cured glass transition temperature increases monotonically with the addition of AT-PAEKI. Fracture toughness was gauged using the single edge notched beam methodology to yield the critical stress intensity factor, KIC. Our results showed a modest toughening effect (from 0.48 to 0.55 MPa m1/2) upon the addition of AT-PAEKI. We conclude that AT-PAEKI may serve as an effective reactive processing aid with slight improvements in Tg, modulus, and fracture toughness.
机译:作为涉及烯丙基官能化的超支化聚酰亚胺AT-PAEKI合成的先前工作的延续,我们已经研究了将该反应性聚合物用作双酚A基双马来酰亚胺树脂(BPA-BMI)的改性剂的用途。期望在可加工性以及包括玻璃化转变温度,弹性模量和断裂韧性的物理性质方面的改进来追求这一点。对于包含至多16重量%的AT-PAEKI的组合物,观察到表观混溶性,其由单一Tg的光学透明度指示。此外,我们观察到单体结晶的完全抑制和总体固化放热的轻微增加。通过流变学特征,发现包含4重量%AT-PAEKI的共混物的特征在于加热期间最小粘度的显着降低(65倍)。动态力学分析(DMA)表明添加了2、4、8重量%。 AT-PAEKI将固化模量从3.4 GPa的基值提高了大约10%,而添加16 wt%AT-PAEKI则将模量略微降低到3.3 GPa。 DMA还显示,添加AT-PAEKI可使固化的玻璃化转变温度单调增加。使用单边切口梁方法对断裂韧性进行了测量,以得出临界应力强度因子KIC。我们的结果表明,在添加AT-PAEKI后,钢的增韧效果中等(从0.48到0.55 MPa m1 / 2)。我们得出的结论是,AT-PAEKI可以作为有效的反应性加工助剂,其Tg,模量和断裂韧性略有改善。

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