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首页> 外文期刊>Journal of Materials Science >Structure and evolution of multiphase composites for 3D printing
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Structure and evolution of multiphase composites for 3D printing

机译:三维印刷多相复合材料的结构与演化

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摘要

Ethylene-vinyl acetate-glycidyl methacrylate random terpolymer (EVM-GMA, VA = 60 wt%, GMA = 2.9%) was used as a polymeric plasticizer replacing the traditional dioctyl phthalate (DOP) to prepare a polyvinyl chloride (PVC) masterbatch. Polylactic acid (PLA) was applied to blend with the PVC masterbatch in melt to examine the epoxy ring-opening reactions between epoxy groups in EVM-GMA and end carboxyl groups in PLA in order to construct a special phase structure in PVC/PLA improving the mechanical properties and 3D printing performance. The formation and evolution of phase structures were revealed by aids of the unique rheological responses of multi-component composite system. The results showed that with the increase in EVM-GMA content, the phase morphology of PVC/PLA was refined from co-continuous phase structure to denser one and then evolved to sea-island structure. It was also found that the addition of EVM-GMA inhibited the crystallization of PLA and the cold crystallization as well. When PVC/EVM-GMA/PLA was incorporated in weight ratio of 45/5/50, the denser co-continuous phase structure with smaller domain imparted the composite a highest zero shear viscosity and viscous flow activation energy. This unique structure existed stably when the shear rate was less than 230 s(-1) or below 180 degrees C. Consequently, it endowed composite the highest impact strengths and smoothest appearance of 3D printed specimens. Therefore, moderate EVM-GMA is not only a reliable alternative plasticizer for PVC, but also an ideal modifier for the compatibility of PVC/PLA blends which presented an excellent performance in 3D printing.
机译:甲基乙烯酯 - 甲基丙烯酸缩水甘油酯(EVM-GMA,VA = 60wt%,GMA = 2.9%)用作聚合物增塑剂,取代邻苯二甲酸酯(DOP)以制备聚氯乙烯(PVC)母料。施加聚乳酸(PLA)以与PVC母料混合熔体,以检查PLA中EVM-GMA中环氧基团的环氧开环反应,以在PVC / PLA改善PVC / PLA中构建特殊相结构机械性能和3D打印性能。通过多组分复合体系的独特流变反应的艾滋病揭示了相结构的形成和演变。结果表明,随着EVM-GMA含量的增加,PVC / PLA的相形形态由共连续相结构精制到更密集的,然后进化到海岛结构。还发现EVM-GMA的添加抑制了PLA的结晶和冷结晶。当PVC / EVM-GMA / PLA以45/5/50的重量比掺入时,具有较小结构域的更密集的连续相结构赋予复合零剪切粘度和粘性流动活化能量。当剪切速率小于230秒或低于180℃时,这种独特的结构稳定存在。因此,它赋予了3D印刷样本的最高冲击强度和最平滑的外观。因此,适度的EVM-GMA不仅是PVC的可靠替代增塑剂,而且是用于PVC / PLA混合物的相容性的理想改性剂,其在3D印刷中呈现出优异的性能。

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