首页> 外文会议>NSTI nanotechnology conference and expo >Overcoming the Achilles' Heel of Processing of Polymer Nanocomposites: Achieving Well-Dispersed Polymer-Graphite, Polymer-Carbon Nanotube, Polymer-Carbon Nanofiber, and Polymer-Graphene Nanocomposites with Major Property Enhancements by Solid-State Shear Pulverization
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Overcoming the Achilles' Heel of Processing of Polymer Nanocomposites: Achieving Well-Dispersed Polymer-Graphite, Polymer-Carbon Nanotube, Polymer-Carbon Nanofiber, and Polymer-Graphene Nanocomposites with Major Property Enhancements by Solid-State Shear Pulverization

机译:克服了聚合物纳米复合材料的Achilles的高跟鞋:通过固态剪切粉碎实现具有主要性质的主要性能 - 碳纳米管,聚合物 - 碳纳米管,聚合物 - 石墨纳米纤维和聚合物 - 石墨烯纳米复合材料

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Polymer nanocomposites consisting of polypropylene (PP) and low levels of as-received graphite (ARG) or carbon nanotubes (CNT) were prepared via a continuous and industrially scalable process called solid-state shear pulverization (SSSP). This novel polymer processing technique exposes polymers to high shear and compressive forces near ambient temperature, which allows for fragmentaion and fusion steps in the solid-state. We found that SSSP processing leads to excellent exfoliation and dispersion of ARG and debundling and dispersion of CNT in the PP matrix. This excellent dispersion is accompanied by major property enhancements. For example, a 97.5/2.5 wt% PP/ARG nanocomposite made by SSSP exhibits a 100% increase in tensile modulus and a 50 % increase in tensile strength relative to neat PP while retaining most of the net PP elongation at break. Similar mechanical property enhancements are achieved with 99/1 wt% PP/carbon nanotube nanocomposites.
机译:由聚丙烯(PP)和低水平的接收石墨(ARC)或碳纳米管(CNT)组成的聚合物纳米复合材料通过连续和工业上可伸缩的方法制备称为固态剪切粉碎(SSSP)。这种新颖的聚合物加工技术将聚合物暴露于温度附近的高剪切和压缩力,这允许固态的碎裂和融合步骤。我们发现SSSP处理导致PP矩阵中CNT的arg和Demundling和分散的优异剥离和分散。这种优异的分散体伴随着主要性质增强功能。例如,通过SSSP制备的97.5 / 2.5wt%PP / Arg纳米复合物在拉伸模量增加100%增加,并且相对于纯PP的拉伸强度增加50%,同时保留断裂时的大部分净PP伸长率。使用99/1wt%PP /碳纳米管纳米复合材料实现了类似的机械性能增强。

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