首页> 外文会议>Nano Science and Technology Institute(NSTI) Nanotechnology Conference and Trade Show(NSTI Nanotech 2006) vol.1 >Nylon - Exfoliated Graphite Nanoplatelet (xGnP) Nanocomposites with Enhanced Mechanical, Electrical and Thermal Properties
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Nylon - Exfoliated Graphite Nanoplatelet (xGnP) Nanocomposites with Enhanced Mechanical, Electrical and Thermal Properties

机译:尼龙-具有增强的机械,电和热性能的片状石墨纳米薄片(xGnP)纳米复合材料

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Since the late 1990's, research has been underway in our group at Michigan State University to investigate the fabrication of new nano-size carbon material, exfoliate graphite nanoplatelets [xGnP]. The xGnP is fabricated from natural graphite and can be used as a nanoreinforcement for polymers as an alternative to expensive carbon-based nanomaterials. The thickness of the xGnP became around 5-10nm. The diameter can be controlled from sub-micron level to few hundred um, indication the aspect ratio can be controlled. The surface area of the material reached more than 100m~2/g. Since graphite is the stiffest material found in nature (Young's Modulus = 1060 MPa), having a modulus several times that of clay, accompanied with excellent strength, electrical and thermal conductivity, the xGnP should have similar properties to carbon-based nanomaterials, including carbon nanotubes, nanofibers, and fullerenes, yet the estimated cost is fur less than these materials. The cost of the graphite nanoplatelets was estimated to be S5/lb or less, which makes the material highly cost effective. Several papers related to this topic have been published since 1990's. In this research, the xGnP was used as nanoreinforcements for nylon 6 and Nylon 66 composites. The xGnP could improve the modulus of nylons better than other commercially available reinforcements. Impedance measurements have shown that the aspect ratio of the xGnP affect the percolation threshold of the composites. By using xGnP with high aspect ratio, the percolation threshold reached below 5vol%. Thermal conductivity measurement revealed that it reached almost 4 W/m~*K for xGnPylon nanocomposite. Gas permeation test showed that the barrier property was significantly improved with xGnP, almost as good as nanoclays.
机译:自1990年代后期以来,我们在密歇根州立大学的研究小组一直在进行研究,以研究制造新型纳米级碳材料,剥落石墨纳米片[xGnP]。 xGnP由天然石墨制成,可以用作聚合物的纳米增强材料,以替代昂贵的碳基纳米材料。 xGnP的厚度变为约5-10nm。直径可以控制在亚微米级到几百微米之间,表明可以控制纵横比。材料的表面积达到100m〜2 / g以上。由于石墨是自然界中最坚硬的材料(杨氏模量= 1060 MPa),其模量是粘土的几倍,并且具有出色的强度,导电性和导热性,因此xGnP应该具有与碳基纳米材料(包括碳)相似的性能。碳纳米管,纳米纤维和富勒烯,但估计成本比这些材料还少。石墨纳米片的成本估计为S5 / lb或更低,这使材料具有很高的成本效益。自1990年代以来,已经发表了与该主题相关的几篇论文。在这项研究中,xGnP被用作尼龙6和尼龙66复合材料的纳米增强材料。与其他市售增强材料相比,xG​​nP可以更好地改善尼龙的模量。阻抗测量表明,xGnP的长宽比会影响复合材料的渗滤阈值。通过使用高纵横比的xGnP,渗滤阈值达到5vol%以下。热导率测量表明,xGnP /尼龙纳米复合材料的热导率达到近4 W / m〜* K。气体渗透测试表明,xGnP的阻隔性得到了显着改善,几乎与纳米粘土一样好。

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