首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Department of Chemical and Biomolecular Engineering,The University of Akron,Akron,OH 44325-3906,United States;Department of Mechanical and Industrial Engineering,The University of Illinois at Chicago,Chicago,IL 60607-7022,United States
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Department of Chemical and Biomolecular Engineering,The University of Akron,Akron,OH 44325-3906,United States;Department of Mechanical and Industrial Engineering,The University of Illinois at Chicago,Chicago,IL 60607-7022,United States

机译:美国阿克伦大学化学与生物分子工程系,阿克伦,俄亥俄州44325-3906;伊利诺伊大学芝加哥大学机械与工业工程系,芝加哥,IL 60607-7022

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摘要

An environmentally benign process,which uses supercritical carbon dioxide (sc-CO2) as a processing aid,is developed in this work to help exfoliate and disperse nanoclay into the polymer matrices.The process relies on rapid expansion of the clay followed by direct injection into the extruder where the mixture is dispersed into the polymer melt.Results from the mechanical properties,rheological studies,and X-ray diffraction (XRD) show that this method represents a significant improvement relative to direct melt blending in single or twin-screw extruders or other methods using sc-CO2.The greatest mechanical property response was a result of directly injecting pre-mixed sc-CO2 and nanoclay into the polypropylene melt during extrusion.It was observed that for concentrations as high as 6.6 wt% (limited only by present process capabilities),XRD peaks were eliminated,suggesting a high degree of exfoliation.Mechanical properties such as modulus increased by as much as 54%.The terminal region of the dynamic mechanical spectrum was similar to that of the base polymer,contrary to what is frequently reported in the literature.
机译:在这项工作中开发了一种环境友好的方法,该方法使用超临界二氧化碳(sc-CO2)作为加工助剂,以帮助将纳米粘土剥离并分散到聚合物基体中。该过程依赖于粘土的快速膨胀,然后直接注入力学性能,流变学研究和X射线衍射(XRD)结果表明,相对于单螺杆或双螺杆挤出机或单螺杆挤出机中的直接熔融共混,该方法具有显着改进。其他的使用sc-CO2的方法。最大的机械性能响应是在挤出过程中将预混合的sc-CO2和纳米粘土直接注入到聚丙烯熔体中的结果,观察到浓度高达6.6 wt%(仅受目前的限制)加工能力),消除了XRD峰,建议高度剥落。模量等机械性能提高了54%。动态力学光谱与基础聚合物的相似,这与文献中经常报道的相反。

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