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Effect of Compatibilization on Biobased Rubber-Toughened Poly(trimethylene terephthalate): Miscibility, Morphology, and Mechanical Properties

机译:相容性对生物基橡胶增韧聚对苯二甲酸丙二酯的相容性,形态和机械性能的影响

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Fabrication of partially biobased poly(trimethylene terephthalate) (PTT) elastomeric blends was done via melt processing. Both natural rubber (NR) and epoxidized NR (ENR) were investigated as impact modifiers at 40 wt % loading to avoid lowering the overall biobased content of the blend system below that of the PTT alone (35% renewable content), along with maleated polybutadiene rubber (MR) and dicumyl peroxide (DCP) as reactive compatibilizers. The compatibility of the blend components was investigated using contact angle, rheometry, and scanning electron microscopy (SEM). The interfacial tensions and work of adhesions indicated that ENR was more miscible than NR in the PTT blend system, which was corroborated by the higher shear viscosity of the ENR blends and strong shear thinning behavior. Additionally, the predictive modeling of viscosity ratios on the elastomer–thermoplastic morphology was found to match the SEM micrographs with the dispersed elastomeric phase within the PTT matrix. The SEM images of the blends also establish that both the compatibilizers reduced the rubber inclusions size, though DCP hampered the impact performance as compared to the MR. In the presence of the MR, there was an increased cross-linking and observed variation in the Fourier transform infrared peaks demonstrating chemical interactions between the maleic anhydride groups with the PTT that allowed for the impact strength to reach 137 J·m–1 or 4.5 times that of the neat PTT, with the modulus of toughness increased by 82% and an elongation at yield of 50% because of the flexibility and amorphous nature of the rubber constituent.
机译:通过熔融加工完成了部分生物基聚对苯二甲酸丙二醇酯(PTT)弹性体共混物的制备。研究了天然橡胶(NR)和环氧化NR(ENR)作为抗冲改性剂在40 wt%负载下的情况,以避免将共混体系的总体生物基含量降低到单独的PTT(可再生含量35%)以下,同时还降低了马来酸化聚丁二烯的含量。橡胶(MR)和过氧化二枯基(DCP)作为反应性增容剂。使用接触角,流变仪和扫描电子显微镜(SEM)研究了共混物组分的相容性。界面张力和附着力表明在PTT共混体系中ENR比NR更易混溶,这被ENR共混物的较高剪切粘度和较强的剪切稀化行为所证实。此外,发现在弹性体-热塑性形态上的粘度比的预测模型可将SEM显微照片与PTT基质中分散的弹性体相匹配。混合物的SEM图像还表明,尽管与MR相比,DCP阻碍了冲击性能,但两种相容剂均降低了橡胶夹杂物的尺寸。在存在MR的情况下,交联增加,并且在傅立叶变换红外峰中观察到变化,表明马来酸酐基团与PTT之间的化学相互作用使冲击强度达到137 J·m-1或4.5由于橡胶组分的柔韧性和无定形性质,其弹性模量增加了纯PTT的两倍,韧性模量增加了82%,屈服伸长率提高了50%。

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