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Characterization and properties of sPS/PET/SsPS-K engineering plastic alloys

机译:sPS / PET / SsPS-K工程塑料合金的表征和性能

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The compatibility, crystallization behavior, and mechanical properties of syndiotactic polystyrene (sPS)/polyester (PET)/potassium salt of sulfonated syndiotactic polystyrene (SsPS-K) were investigated. DMA results showed that all the alloys showed one T-g and the half-peak width of the sPS/PET/SsPS-K alloys became narrower compared with that of sPS/PET alloys, which decreased with an increasing content of the SsPS-K ionomer. The results of DSC showed that the T-m of sPS and PET of the alloys was similar to those of the pure materials and did not change with the content of the SsPS-K ionomer, while the initial crystallization temperature (T-0) and crystallization temperature at peak (T-p) increased. The crystallization velocity of PET increased with an increasing content of SsPS-K. The TMA results showed that the alloys could retain the perfect heat proof property of sPS. SEM micrographs showed that the addition of SsPS-K could reduce the PET domain dimension and enhance the adhesion between the PET domains and the matrix. With an increasing content of SsPS-K, the PET domain dimension was reduced continuously and dispersed more evenly. The ternary alloys had better mechanical properties and significantly higher unnotched Izod impact strength than those of the alloys without SsPS-K. When the weight ratio of sPS/PET/SsPS-K was 85/15/4, the impact strength reached a maximum of 11.5 kJ/m(2), which was about three times that of pure sPS, and still had a higher tensile strength, flexural strength, and storage modulus, which were 38.8, 54.2, and 1.55 x 10(4) MPa, respectively. (C) 2002 Wiley Periodicals, Inc. [References: 11]
机译:研究了间规聚苯乙烯(sPS)/聚酯(PET)/磺化间规聚苯乙烯(SsPS-K)钾盐的相容性,结晶行为和力学性能。 DMA结果表明,所有合金均显示出一个T-g,与sPS / PET合金相比,sPS / PET / SsPS-K合金的半峰宽变窄,随SsPS-K离聚物含量的增加而降低。 DSC结果表明,合金的sPS和PET的Tm与纯材料相似,并且不随SsPS-K离聚物的含量而变化,而初始结晶温度(T-0)和结晶温度峰值(Tp)增加。 PET的结晶速度随SsPS-K含量的增加而增加。 TMA结果表明,该合金可以保持sPS的完美耐热性能。扫描电镜显微照片显示,添加SsPS-K可以减小PET结构域的尺寸,并增强PET结构域与基质之间的附着力。随着SsPS-K含量的增加,PET区域尺寸不断减小,分散更加均匀。与没有SsPS-K的合金相比,该三元合金具有更好的机械性能和显着更高的无缺口悬臂梁式冲击强度。当sPS / PET / SsPS-K的重量比为85/15/4时,冲击强度最大为11.5 kJ / m(2),约为纯sPS的三倍,并且仍具有较高的拉伸强度强度,弯曲强度和储能模量,分别为38.8、54.2和1.55 x 10(4)MPa。 (C)2002 Wiley Periodicals,Inc. [参考:11]

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