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Aromatic Hyperbranched Polyester/RTM6 Epoxy Resin for EXTREME Dynamic Loading Aeronautical Applications

机译:用于极端动态装载航空应用的芳族超支化聚酯/ RTM6环氧树脂

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摘要

The effects of the addition of an aromatic hyperbranched polyester (AHBP) on thermal, mechanical, and fracture toughness properties of a thermosetting resin system were investigated. AHBP filler, synthesized by using a bulk poly-condensation reaction, reveals a glassy state at room temperature. Indeed, according to differential scanning calorimetry measurements, the glass transition temperature (Tg) of AHBP is 95 °C. Three different adduct weight percentages were employed to manufacture the AHBP/epoxy samples, respectively, 0.1, 1, and 5 wt%. Dynamical Mechanical Analysis tests revealed that the addition of AHBP induces a negligible variation in terms of conservative modulus, whereas a slight Tg reduction of about 4 °C was observed at 5 wt% of filler content. Fracture toughness results showed an improvement of both critical stress intensity factor (+18%) and critical strain energy release rate (+83%) by adding 5 wt% of AHBP compared to the neat epoxy matrix. Static and dynamic compression tests covering strain rates ranging from 0.0008 to 1000 s−1 revealed a pronounced strain rate sensitivity for all AHBP/epoxy systems. The AHBP composites all showed an increase of the true peak yield compressive strength with the best improvement associated with the sample with 0.1 wt% of AHBP.
机译:研究了加入芳香族超支化聚酯(AHBP)对热固性树脂体系的热,机械和断裂性能的影响。通过使用散装聚缩合反应合成的AHBP填料,在室温下揭示了玻璃状状态。实际上,根据差示扫描量热法测量,AHBP的玻璃化转变温度(TG)为95℃。使用三种不同的加合物重量百分比制备AHBP /环氧样品,分别为0.1,1和5wt%。动态机械分析试验显示,AHBP的添加在保守模量方面引起可忽略的变化,而在5wt%的填料含量下观察到约4℃的轻微Tg减少。与纯环氧基质相比,通过加入5wt%的AHBP,裂缝韧性结果表明临界应力强度因子(+ 18%)和临界应变能量释放率(+ 83%)的改善。覆盖0.0008至1000S-1的应变率的静态和动态压缩试验显示了所有AHBP /环氧系统的明显应变速率敏感性。 AHBP复合材料均显示出真正的峰值产量抗压强度的增加,与样品相关的最佳改善,0.1wt%的AHBP。

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