首页> 外文期刊>Journal of Polymer Research >Inhibited transesterification on the properties of reactive core-shell particles toughened poly(butylene terephthalate) and polycarbonate blends
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Inhibited transesterification on the properties of reactive core-shell particles toughened poly(butylene terephthalate) and polycarbonate blends

机译:酯交换反应对活性核-壳颗粒增韧聚对苯二甲酸丁二酯和聚碳酸酯共混物性能的抑制

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Reactive core-shell particles with polybutadiene as core (297 nm) and methyl methacrylate-co-styrene-co-glycidyl methacrylate terpolymer as shell (PB-g-MSG) were prepared to toughen poly(butylene terephthalate) (PBT) and polycarbonate (PC) blends. Sodium pyrophosphate (SPP) was used to modify the transesterification between PBT and PC. FTIR results proved the occurrence of the transesterification and the addition of SPP inhibited the exchange reactions. SEM displayed the PB-g-MSG particles dispersed in PBT/PC matrix uniformly and the addition of SPP had no negative influence on the uniform dispersion. The crystallization temperature of PBT increased with the addition of SPP which indicated the constraint of PC block on the crystallization of PBT chain became poor. At the same time, with the addition of SPP into the PBT/PC/PB-g-MSG blend, the T-g of PC phase further shifted to higher temperature. PB-g-MSG was an effective toughener for PBT/PC blends, however, SPP decreased the toughening efficiency of PB-g-MSG particles for the PBT/PC blends. The yield strength and tensile modulus of PBT/PC blends increased first and then deceased with the increase of SPP content in the blends. Fracture mechanisms results showed the addition of SPP was not beneficial to the cavitation of the core-shell particles and shear yielding of the matrix and led to the decreased impact toughness.
机译:制备了以聚丁二烯为核(297 nm)和甲基丙烯酸甲酯-共苯乙烯-甲基丙烯酸缩水甘油酯三甲基丙烯酸三元共聚物为壳(PB-g-MSG)的反应性核-壳颗粒,以增韧聚对苯二甲酸丁二酯(PBT)和聚碳酸酯( PC)混合。焦磷酸钠(SPP)用于修饰PBT和PC之间的酯交换反应。 FTIR结果证明了酯交换反应的发生,SPP的添加抑制了交换反应。 SEM显示PB-g-MSG颗粒均匀分散在PBT / PC基质中,SPP的添加对均匀分散没有负面影响。随着SPP的加入,PBT的结晶温度升高,这表明PC嵌段对PBT链结晶的约束变差。同时,在PBT / PC / PB-g-MSG共混物中添加SPP后,PC相的T-g进一步转移到更高的温度。 PB-g-MSG是PBT / PC混合物的有效增韧剂,但是,SPP降低了PB-g-MSG颗粒对PBT / PC混合物的增韧效率。 PBT / PC共混物的屈服强度和拉伸模量先增加,然后随着共混物中SPP含量的增加而降低。断裂机理结果表明,SPP的添加不利于核-壳颗粒的空化和基体的剪切屈服,并导致冲击韧性降低。

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