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首页> 外文期刊>Journal of Applied Polymer Science >Thermal and dynamic mechanical properties of organic-inorganic hybrid composites of itaconate-containing poly(butylene succinate) and methacrylate-substituted polysilsesquioxane
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Thermal and dynamic mechanical properties of organic-inorganic hybrid composites of itaconate-containing poly(butylene succinate) and methacrylate-substituted polysilsesquioxane

机译:含衣康酸酯的聚丁二酸琥珀酸酯和甲基丙烯酸酯取代的聚倍半硅氧烷的有机-无机杂化复合材料的热力学和动态力学性能

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Itaconate-unit-containing poly(butylene succinate) (PBSI) was synthesized by the reaction of 1,4-butanediol, succinic acid, and itaconic acid in a molar ratio of 2.0 : 1.0 : 1.0, and the obtained PBSI was reacted with methacryl-group-substituted polysilsesquioxane (ME-PSQ) in the presence of benzoyl peroxide (BPO) at 130 degrees C to produce PBSI/ME-PSQ hybrid composites. The thermal and dynamic mechanical properties of the PBSI/ ME-PSQ hybrid composites were investigated in comparison with those of PBSI cured at 130 degrees C in the presence of BPO. As a result, the hybrid composites showed a much higher thermal degradation temperature and storage modulus in the rubbery state than the cured PBSI (C-PBSI). The thermal degradation temperature and storage modulus of the hybrid composites increased with increasing ME-PSQ content. The glass-transition temperature, measured by dynamic mechanical analysis of the hybrid composites, somewhat increased with increasing ME-PSQ content. However, the glass-transition temperatures of all the hybrid composites were lower than that of C-PBSI. Although the IR absorption peak related to C=C groups was not detected for C-PBSI, some olefinic absorption peaks remained for all the hybrid composites. (c) 2007 Wiley Periodicals, Inc.
机译:通过1,4-丁二醇,琥珀酸和衣康酸的摩尔比为2.0:1.0:1.0的反应,合成含衣康酸酯单元的聚丁二酸丁二酯(PBSI),并使所得的PBSI与甲基丙烯酸反应。在过氧化苯甲酰(BPO)存在下,在130℃下使用三价基团取代的聚倍半硅氧烷(ME-PSQ)生产PBSI / ME-PSQ杂化复合材料。与PBSI / ME-PSQ杂化复合材料的热力学和动态力学性能相比,与在BPO存在下在130℃固化的PBSI进行了比较。结果,杂化复合材料在橡胶态下显示出比固化的PBSI(C-PBSI)高得多的热降解温度和储能模量。杂化复合材料的热降解温度和储能模量随ME-PSQ含量的增加而增加。通过动态力学分析杂化复合材料测得的玻璃化转变温度随ME-PSQ含量的增加而有所增加。但是,所有杂化复合材料的玻璃化转变温度均低于C-PBSI。尽管对于C-PBSI未检测到与C = C基团相关的IR吸收峰,但对于所有杂化复合材料,仍保留了一些烯烃吸收峰。 (c)2007年Wiley Periodicals,Inc.

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