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Reactive Compatibilization of Ethylene-co-Vinyl Acetate/Starch Blends

机译:乙烯-乙酸乙烯酯/淀粉共混物的反应相容性

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The dispersion of starch as a filler in hydrophobic ethylene-co-vinyl acetate (EVA) rubber is an issue. To obtain a fine dispersion of starch in EVA rubber, EVA/starch blends were prepared by reactive extrusion in the presence of maleic anhydride (MA), benzoyl peroxide (BPO), and glycerol. MA, BPO, and glycerol play the role of coupling agent, free-radical initiator, and plasticizer, respectively. Molau experiment and Fourier transform infrared spectroscopy (FTIR) results showed that EVA chains were grafted onto the surface of starch particles during reactive extrusion via a free-radical grafting mechanism. As a result, EVA-g-starch copolymers acted as a compatibilizer, leading to fine dispersion of starch and strong interfacial adhesion between the starch and the EVA matrix. Scanning electron microscope (SEM) images showed that the starch particle size reduced from hundreds micrometers in the case of physical blending to approximately 1 micrometer in the case of reactive blending, and consequently, the EVA rubber was effectively reinforced by the incorporation of starch and the reactive compatibilization (e.g., the tensile strength of the EVA/starch (50/50, wt/wt) was increased by a factor of 6 after the addition of 0.9-1.8 wt% MA). The property stability of starch compounds is usually an issue, while the mechanical properties of the (compatibilized) EVA/starch blends reported in this article were stable during storage.
机译:淀粉作为填充剂在疏水性乙烯-乙酸乙烯酯共聚物(EVA)橡胶中的分散是一个问题。为了获得淀粉在EVA橡胶中的精细分散,在马来酸酐(MA),过氧化苯甲酰(BPO)和甘油的存在下,通过反应挤出制备EVA /淀粉共混物。 MA,BPO和甘油分别起偶联剂,自由基引发剂和增塑剂的作用。 Molau实验和傅立叶变换红外光谱(FTIR)结果表明,在反应挤出过程中,通过自由基接枝机理将EVA链接枝到了淀粉颗粒的表面。结果,EVA-g-淀粉共聚物起到了增容剂的作用,导致淀粉的细分散和淀粉与EVA基质之间的牢固界面粘合。扫描电子显微镜(SEM)图像显示,淀粉颗粒尺寸从物理共混时的数百微米减小到反应性共混时的约1微米,因此,通过掺入淀粉和淀粉,EVA橡胶得到了有效的增强。反应性相容性(例如,添加0.9-1.8 wt%的MA后,EVA /淀粉(50/50,wt / wt)的拉伸强度提高了6倍)。淀粉化合物的性能稳定性通常是一个问题,而本文报道的(相容的)EVA /淀粉共混物的机械性能在储存期间是稳定的。

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