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Processing and Properties of Exfoliated Graphite Nanoplatelet-PolypropyleneNanocomposites

机译:片状石墨纳米片-聚丙烯纳米复合材料的制备与性能

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The potential of exfoliated graphite nanoplatelets, (graphene sheets ~10nm thickness, ~lum diameter), a new material developed in our lab, is explored as a multifunctional nanoreinforcement for polymers i.e., polypropylene. Exfoliated graphite nanoplatelet (xGnP)-polypropylene (PP) nanocomposites are fabricated by two-step process, compounding and molding (injection or compression). Two approaches are employed for the compounding: (i) solution method and (ii) melt mixing. Results include mechanical properties such as flexural strength, modulus of elasticity, and impact strength and thermal properties i.e., coefficient of thermal expansion and thermal conductivity. In addition, the electrical conductivity and the percolation threshold of the xGnP-PP nanocomposites are determined as a function of the xGnP's aspect ratio fabrication method and processing conditions used. Furthermore, the xGnP-PP nanocomposites are compared to composites made using other carbon-based electrically conductive fillers such as carbon black (CB), vapor grown carbon fibers (VGCF) and polyacrylonitrile based carbon fibers (PAN). Finally, a crystallinity study performed using differential scanning calorimetry (DSC), X-ray diffraction, (XRD), and optical microscopy indicated that xGnP acts as a nucleating agent for PP by increasing the crystallization temperature, and promotes the less preferable (3 crystal form which is responsible for the observed increase of impact strength at low xGnP loadings. Addition of xGnP had no effect on the overall degree of crystallinity.
机译:剥落的石墨纳米片(石墨烯片〜10nm厚度,〜lum直径),这是我们实验室开发的一种新材料,具有开发潜力,可作为聚合物(例如聚丙烯)的多功能纳米增强材料。剥落的石墨纳米片(xGnP)-聚丙烯(PP)纳米复合材料是通过两步工艺,复合和模制(注射或压缩)制成的。配混采用两种方法:(i)溶液法和(ii)熔融混合。结果包括机械性能,例如挠曲强度,弹性模量,冲击强度和热性能,即热膨胀系数和热导率。此外,xGnP-PP纳米复合材料的电导率和渗透阈值是根据xGnP的长宽比制造方法和所使用的加工条件确定的。此外,将xGnP-PP纳米复合材料与使用其他碳基导电填料(例如炭黑(CB),气相生长碳纤维(VGCF)和聚丙烯腈基碳纤维(PAN))制成的复合材料进行了比较。最后,使用差示扫描量热法(DSC),X射线衍射(XRD)和光学显微镜进行的结晶度研究表明,xGnP通过提高结晶温度而充当PP的成核剂,并促进了次优(3晶体在低xGnP载荷下观察到的冲击强度增加是导致这种形式的原因,而添加xGnP对总体结晶度没有影响。

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