首页> 外文OA文献 >Influence Of Processing And Content Of Vinyl Acetate On The Properties Of Eva/organophilic Montmorillonite Nanocomposites [influência Das Condições De Mistura E Dos Teores De Acetato De Vinila E De Argila Nas Propriedades De Eva/montmorilonita Organofílica]
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Influence Of Processing And Content Of Vinyl Acetate On The Properties Of Eva/organophilic Montmorillonite Nanocomposites [influência Das Condições De Mistura E Dos Teores De Acetato De Vinila E De Argila Nas Propriedades De Eva/montmorilonita Organofílica]

机译:醋酸乙烯酯的加工和含量对EVA /亲有机蒙脱土纳米复合材料性能的影响[混合条件和醋酸乙烯酯和粘土的含量对EVA /亲有机蒙脱土性能的影响]

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摘要

The copolymer Ethylene Vinyl Acetate (EVA) is a polyolefin used mainly in packaging films, where its flexibility, toughness, elasticity and transparency are desirable attributes. The mechanical, thermal and barrier properties of EVA can be improved by the incorporation of inorganic fillers. Its polarity varies according to the content of Vinyl Acetate, which allows for nanocomposites to be obtained with organically modified clay, with no need to add compatibilizing agents. In this work nanocomposites of EVA and commercial organophilic montmorillonite were prepared by melt intercalation in a torque rheometer with rotors roller type, at 150°C for 10 minutes, monitoring the torque versus time. The concentration of Vinyl Acetate (19% and 28%), clay content (2% to 5%) and the rotors rotation (60 rpm to 100 rpm) were varied in order to investigate their influence on the characteristics of the nanocomposites. The clay structure, thermal stability, mechanical and barrier properties of the nanocomposites were evaluated by X-ray diffraction, thermal analysis, tensile testing, oxygen and water vapor transmission rates. Based on the permeability data, Nielsen's model was applied to assess the degree of clay exfoliation. The main results obtained from the factorial design are: (a) increasing the polarity of EVA led to an increase in the permeability to oxygen and water vapor of the material, (b) the clay content did not change the clay structure or the thermal stability of the nanocomposites, (c) increasing the concentration of clay increased the elastic modulus, decreased the elongation at break and significantly reduced the coefficient of permeability for oxygen and water vapor, (d) the rotation factor did not result in significant changes in any of the evaluated responses.
机译:共聚物乙烯醋酸乙烯酯(EVA)是一种主要用于包装薄膜的聚烯烃,其中其柔韧性,韧性,弹性和透明度是理想的属性。通过掺入无机填料可以改善EVA的机械,热和阻隔性能。其极性根据乙酸乙烯酯的含量而变化,这使得可以通过有机改性的粘土获得纳米复合材料,而无需添加增容剂。在这项工作中,EVA和商用亲有机蒙脱土的纳米复合材料是通过在具有转子滚子型的扭矩流变仪中在150°C下熔融嵌入10分钟,监控扭矩随时间变化而制备的。改变醋酸乙烯酯的浓度(19%和28%),粘土含量(2%至5%)和转子旋转(60 rpm至100 rpm),以研究它们对纳米复合材料特性的影响。通过X射线衍射,热分析,拉伸试验,氧气和水蒸气透过率评估了纳米复合材料的粘土结构,热稳定性,机械性能和阻隔性能。基于渗透率数据,尼尔森模型用于评估粘土的剥落程度。从析因设计获得的主要结果是:(a)增加EVA的极性导致材料对氧气和水蒸气的渗透性增加,(b)粘土含量未改变粘土结构或热稳定性。 (c)增加粘土的浓度可增加弹性模量,降低断裂伸长率并显着降低氧气和水蒸气的渗透系数,(d)旋转因子未引起任何改变评估的响应。

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