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Preparation and Properties of Modified Silicon-containing Arylacetylene Resin with Bispropargyl Ether

机译:双炔丙基醚改性的含硅芳乙炔树脂的制备及性能

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摘要

A novel silicon-containing arylacetylene resin (MSAR) modified by dipropargyl ether of bisphenol A (DPBPA) and dipropargyl ether of perfluorobisphenol A (DPPFBPA) was prepared separately. The curing behaviors of modified resins, DPBPA/MSAR and DPPFBPA/MSAR, were characterized with differential scanning calorimeter (DSC). The kinetic parameters of modified resins were obtained by the Kissinger and Ozawa methods. The results of dynamic mechanical analysis (DMA) revealed that the glass transition temperature (T_g) of the cured DPBPA/MSAR reached 486 °C. According to the thermogravimetric analysis (TGA), the decomposition temperature (T_(d5)) of the cured resins and char yield (Y_c, 800 °C) decreased as the dipropargyl ether loadings increased, especially in air. With the same weight loading, thermal stability of DPBPA/MSAR was better than that of DPPFBPA/MSAR. The carbon fiber (T300) reinforced composites exhibited excellent flexural properties at room temperature with a high property retention at 300 °C.
机译:分别制备了由双酚A的双炔丙基醚(DPBPA)和全氟双酚A的双炔丙基醚(DPPFBPA)改性的新型含硅芳基乙炔树脂(MSAR)。用差示扫描量热仪(DSC)表征了改性树脂DPBPA / MSAR和DPPFBPA / MSAR的固化行为。改性树脂的动力学参数通过Kissinger和Ozawa方法获得。动态力学分析(DMA)的结果表明,固化的DPBPA / MSAR的玻璃化转变温度(T_g)达到486℃。根据热重分析(TGA),固化树脂的分解温度(T_(d5))和炭产率(Y_c,800°C)随着二炔丙基醚含量的增加而降低,尤其是在空气中。在相同的重量载荷下,DPBPA / MSAR的热稳定性优于DPPFBPA / MSAR。碳纤维(T300)增强的复合材料在室温下表现出出色的弯曲性能,并在300°C下具有较高的性能保持率。

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