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首页> 外文期刊>Journal of Applied Polymer Science >PERFORMANCE IMPROVEMENT OF GLASS-FIBER-REINFORCED POLYSTYRENE COMPOSITE USING A SURFACE MODIFIER .1. SYNTHESIS AND CHARACTERIZATION OF POLY(GAMMA-MPS-CO-STYRENE)
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PERFORMANCE IMPROVEMENT OF GLASS-FIBER-REINFORCED POLYSTYRENE COMPOSITE USING A SURFACE MODIFIER .1. SYNTHESIS AND CHARACTERIZATION OF POLY(GAMMA-MPS-CO-STYRENE)

机译:使用表面改性剂改善玻璃纤维增​​强的聚苯乙烯复合材料的性能1。聚(GAMMA-MPS-CO-苯乙烯)的合成与表征

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Poly(gamma-MPS-co-styrene), as a surface modifier of glass-fiber-reinforced polystyrene composite, was synthesized to improve the adhesion between glass fiber and polystyrene matrix. The copolymerization was carried out using AIBN as the initiator at 70 degrees C. The reactivity ratios of gamma-MPS and styrene were determined by the Finemann-Ross method. The result was r(1) (styrene) = 0.10, r(2) (gamma-MPS) = 0.86. Judging from these results, the copolymerization of gamma-MPS and styrene was azeotropic copolymerization and the synthesized copolymer was a random one. Thermal stability of the copolymer was improved as the content of silane in the copolymer was increased and the glass transition temperature decreased. The surface-modified glass fiber was investigated with Fourier transform infrared spectroscopy (FTIR). The glass fiber surface was effectively modified with the copolymer. (C) 1995 John Wiley and Sons, Inc. [References: 15]
机译:合成了作为玻璃纤维增​​强聚苯乙烯复合材料的表面改性剂的聚(γ-MPS-共苯乙烯),以改善玻璃纤维与聚苯乙烯基体之间的粘合力。使用AIBN作为引发剂在70℃下进行共聚。通过Finemann-Ross方法测定γ-MPS和苯乙烯的反应率。结果为r(1)(苯乙烯)= 0.10,r(2)(γ-MPS)= 0.86。从这些结果来看,γ-MPS和苯乙烯的共聚是共沸共聚,合成的共聚物是无规共聚物。随着共聚物中硅烷含量的增加和玻璃化转变温度的降低,共聚物的热稳定性得到改善。使用傅里叶变换红外光谱(FTIR)研究了表面改性的玻璃纤维。用该共聚物有效地修饰了玻璃纤维表面。 (C)1995 John Wiley and Sons,Inc. [参考:15]

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