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Single-Walled Carbon Nanotube/UItrahigh-Molecular-Weight Polyethylene Composites With Percolation at Low Nanotube Contents

机译:在低纳米管含量下渗流的单壁碳纳米管/超高分子量聚乙烯复合材料

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摘要

To mix single-walled carbon nanotubes (SWCNTs) with a polymer and to achieve low percolation thresholds-, a low-viscosity liquid has been required in order to achieve sufficiently good dispersion. In this article, data are presented which show that percolation occurs at ~0.14 wt % carbon nanotubes and the dispersion procedure does not involve dispersing the SWCNTs in a low-viscosity liquid. Specifically, ultrahigh-molecular-weight polyethylene powder was mixed with a powder containing nanotubes and catalyst support, e.g., the powder contains 93% silica and 7% SWCNTs. The powder blend is compression molded into sheets using high pressure and temperature. Because of the very high viscosity of the resin, the nanotube/silica mixture largely stays segregated at the interface as shown by scanning electron microscopy. A significant drop in tensile properties (modulus, tensile strength, and elongation at break) occurs with filler incorporation. Non isothermal crystallization measurements indicate that this filler does not nucleate crystallinity when mixed in this manner; although there is a definite sharpening of the melt endotherm indicating that crystallites with smaller lamellar thicknesses are reduced significantly with filler addition. The addition of filler also slightly reduces the overall fractional crystallinity measured after a constant cooling rate.
机译:为了将单壁碳纳米管(SWCNT)与聚合物混合并实现低渗透阈值,需要低粘度的液体以实现足够好的分散。本文提供的数据表明渗滤发生在约0.14 wt%的碳纳米管上,并且分散过程不涉及将SWCNT分散在低粘度液体中。具体地,将超高分子量聚乙烯粉末与包含纳米管和催化剂载体的粉末混合,例如该粉末包含93%的二氧化硅和7%的SWCNT。使用高压和高温将粉末共混物压制成片。由于树脂的非常高的粘度,纳米管/二氧化硅混合物在扫描电子显微镜下显示在界面处很大程度上偏析。掺入填料会导致拉伸性能(模量,拉伸强度和断裂伸长率)显着下降。非等温结晶测量结果表明,当以这种方式混合时,该填料不会成核。尽管熔体吸热有明显的锐化,这表明具有较小层状厚度的微晶会随着添加填料而显着减少。在恒定的冷却速度后,添加填料还会略微降低总体结晶度。

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