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Engineering and modeling of compatibilized bio-based polymer blends using reactive extrusion.

机译:使用反应挤出技术对相容的生物基聚合物共混物进行工程设计和建模。

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Two bio-based polymers, cellulose acetate (CA) and starch, were selected in this study to prepare compatibilized polymer blends. These blends were prepared by adding a reactive copolymer-poly (styrene- co-maleic anhydride (SMA)), generating graft copolymer of a CA-SMA or a Starch-SMA copolymer in situ by reactive extrusion to act as compatibilizer. In order to improve the compatibility of the blends, different grades of SMA having various molecular weights and various maleic anhydride contents were studied.; The grafting reaction (e.g. reactant concentration, temperature and catalyst concentrations), morphology and the mechanical properties of CA/SMA blends were investigated under both solution and melt conditions. We observed that a third order kinetic model of the grafting reaction parameters gave adequate fit and could be used to describe the compatibility of the blends under different reaction conditions. The morphology and the mechanical properties of CA/SMA blends having different compositions were also studied. Our results indicate that it is possible to prepare compatible CA/SMA blends having high tensile properties and good moisture resistance, which should make such blends suitable for a wide range of commercial applications. Furthermore, the preparation process itself was studied and optimized. Our results indicate that if the blends contain more than 15 wt% high molecular SMA, the extrusion proceeds smoothly without the need to add any plasticizer. Generally, the tensile strength was inversely proportional to the SMA content and the highest tensile strength was obtained when a minimum amount of SMA was used.; The relationship between the morphology of the blends and the extent of grafting reactivity was also studied. In the melt, the phase dispersion affects the grafting reaction via increasing the interface area while the grafting reaction affects the phase dispersion by reducing the interfacial tension. Additionally, shear rate, interfacial tension, temperature and composition as well as the injection molding conditions further impact the compatibility of the blends and were used to optimize the injection process.; In starch/SMA blend, the addition of glycerol as a plasticizer greatly improves the processability due to grafting of glycerol onto SMA as well as additional cross-linking between starch, SMA and glycerol. This modified starch/SMA blend was blended with poly (butylene adipate-co-terephthalate) (Ecoflex) and the resulting compatible blend was blown into films. Such blends of Ecoflex and modified starch exhibit good mechanical properties, excellent processability, low cost (compared with Ecoflex and starch blend), and are biodegradable.; In the last part of this thesis, vinyltrimethoxysilane was used as a grafting agent to prepare organic-inorganic hybrids based on Ecoflex and Magnesium Silicate Hydroxide (Talc). The grafting reactions of this silane were studied in relation to the mechanic properties of the blends.
机译:在这项研究中,选择了两种生物基聚合物,醋酸纤维素(CA)和淀粉,以制备相容的聚合物共混物。这些共混物是通过添加反应性共聚物-聚(苯乙烯-马来酸酐(SMA)),通过反应性挤出原位生成CA-SMA或淀粉-SMA共聚物的接枝共聚物以充当增容剂而制备的。为了改善共混物的相容性,研究了具有不同分子量和不同马来酸酐含量的不同等级的SMA。在溶液和熔融条件下都研究了CA / SMA共混物的接枝反应(例如反应物浓度,温度和催化剂浓度),形态和力学性能。我们观察到接枝反应参数的三阶动力学模型具有足够的拟合度,可用于描述共混物在不同反应条件下的相容性。还研究了具有不同组成的CA / SMA共混物的形态和机械性能。我们的结果表明,可以制备具有高拉伸性能和良好的耐湿性的相容性CA / SMA共混物,这将使此类共混物适用于广泛的商业应用。此外,对制备过程本身进行了研究和优化。我们的结果表明,如果共混物包含超过15 wt%的高分子SMA,则挤出过程会顺利进行,而无需添加任何增塑剂。通常,抗拉强度与SMA含量成反比,当使用最小量的SMA时可获得最高的抗拉强度。还研究了共混物的形态与接枝反应程度之间的关系。在熔体中,相分散通过增加界面面积来影响接枝反应,而接枝反应则通过降低界面张力来影响相分散。另外,剪切速率,界面张力,温度和组成以及注射成型条件进一步影响了共混物的相容性,并被用于优化注射过程。在淀粉/ SMA共混物中,由于甘油接枝到SMA以及淀粉,SMA和甘油之间的其他交联,甘油作为增塑剂的添加大大提高了可加工性。将该改性的淀粉/ SMA共混物与聚(己二酸丁二酯-对苯二甲酸对苯二甲酸酯)(Ecoflex)共混,并将所得的相容性共混物吹塑成膜。这种Ecoflex和改性淀粉的共混物表现出良好的机械性能,优异的加工性,低成本(与Ecoflex和淀粉共混物相比),并且是可生物降解的。本文的最后一部分,使用乙烯基三甲氧基硅烷作为接枝剂,制备了基于Ecoflex和硅酸镁氢氧化物(滑石粉)的有机-无机杂化体。研究了这种硅烷的接枝反应与共混物的力学性能。

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