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首页> 外文期刊>Polymer bulletin >Preparation of chlorinated poly(propylene carbonate) and its effects on the mechanical properties of poly(propylene carbonate)/starch blends as a compatibilizer
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Preparation of chlorinated poly(propylene carbonate) and its effects on the mechanical properties of poly(propylene carbonate)/starch blends as a compatibilizer

机译:氯化聚(碳酸亚丙酯)的制备及其对聚(碳酸丙酯)/淀粉混合物作为增容剂的力学性能的影响

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Poly(propylene carbonate) (PPC) was chemically modified by chlorine through water phase suspension chlorination reaction, and the product was named as chlorinated poly(propylene carbonate) (CPPC). C-13 NMR results showed that the PPC was successfully chlorinated by this method. GPC results indicated that the molecular weight of CPPC dropped considerably owing to the degradation of PPC during chlorination reaction. The prepared CPPC was then melt-blended with maleic anhydride end-capped PPC (PPC-MA) and thermoplastic starch (TPS) to investigate the effects of CPPC on the compatibility, rheological and mechanical properties of PPC-MA/TPS blends. It was found that CPPC could enhance the interaction between PPC-MA and TPS. Therefore, moderate addition of CPPC could efficiently improve the compatibility of PPC-MA/TPS blends and a perfect co-continuous structure was formed. Due to the improved compatibility, rheological investigation revealed that the blends with CPPC exhibited a non-terminal behavior at low frequencies and a pronounced shear thinning behavior at high frequencies. Moreover, tensile strength, elongation at break and Young's modulus of the blends simultaneously increased with increasing the CPPC content up to 5.0 wt%, which is also ascribed to the improved compatibility. Thereafter, they decreased with further increasing the CPPC content because of the reduced compatibility and poor mechanical properties of CPPC. The optimal mechanical properties of PPC-MA/TPS blends could be obtained when the content of CPPC was 5.0 wt%, at which elongation at break, tensile strength and Young's modulus could reach 22.4%, 12.7 MPa and 611.3 MPa, separately.
机译:通过水相悬浮氯化反应通过氯化学改性聚(碳酸丙酯)(PPC),并将产物命名为氯化聚(碳酸亚丙酯)(CPPC)。 C-13 NMR结果表明,PPC通过该方法成功氯化。 GPC结果表明,由于PPC在氯化反应期间,CPPC的分子量显着降低。然后将制备的CPPC用马来酸酐端盖PPC(PPC-MA)和热塑性淀粉(TPS)熔融混合,以研究CPPC对PPC-MA / TPS共混物的相容性,流变和力学性能的影响。发现CPPC可以增强PPC-MA和TPS之间的相互作用。因此,中等添加CPPC可以有效地改善PPC-MA / TPS共混物的相容性,并形成完美的共连线结构。由于具有改善的相容性,流变研究表明,具有CPPC的混合物在低频下表现出非终端行为以及高频处的明显剪切变薄行为。此外,随着增长的CPPC含量高达5.0wt%的增加,共混物的断裂强度和杨氏模量的抗拉强度和杨氏模量同时增加,这也归因于改善的相容性。此后,由于CPPC的相容性和差的机械性能降低,它们随着CPPC含量的进一步增加,它们降低。当CPPC的含量为5.0wt%时,可以获得PPC-MA / TPS共混物的最佳机械性能,其中断裂伸长率和杨氏模量可以单独达到22.4%,12.7MPa和611.3MPa。

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