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Thermal and Electrical Transport Properties of Sheared and Un-Sheared Thin-Film Polymer/CNTs Nanocomposites

机译:剪切和未剪切薄膜聚合物/ CNT纳米复合材料的热电传输性能

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Transport properties have been measured transverse to the plane of sheared and un-sheared thin-film nanocomposites of isotactic Polypropylene (iPP) and multiwall carbon nanotubes (MWCNTs) at various MWCNT concentrations. The sheared samples were processed in the melt at 200 °C at 1 Hz in a Linkan microscope shearing hot stage. The thermal and electrical conductivity measurements were performed on the same cell arrangement with the transport perpendicular to the thin-film plane using a DC method. The thermal and electrical conductivity perpendicular to the surface of the films are higher for the un-sheared as compared to the sheared samples. Interestingly, the percolation threshold appears smeared in both conductivity measurements likely due to pressing and shear treatment of the films, or the spacing between the data points. Important for electronics packaging and materials for which those anisotropic properties are highly desired this work presents important advances in understanding the structure-transport property relations.
机译:已经在各种MWCNT浓度下被横向于横向于同位聚丙烯(IPP)和多壁碳纳米管(MWCNT)的剪切和未剪切的薄膜纳米复合材料的平面的运输性能。在Linkan显微镜剪切热阶段,在1Hz下在熔体中在熔体中在熔体中处理剪切样品。使用DC方法对与薄膜平面垂直于薄膜平面的传输进行热和导电测量。与剪切样品相比,垂直于薄膜表面的热和导电率较高。有趣的是,由于压制和剪切薄膜的处理,或者数据点之间的间隔,渗透阈值可能在可能导致的两种电导率测量中涂抹。对于电子包装和材料非常重要的是,这些各向异性特性受到强度所需的材料,这项工作提出了了解结构运输财产关系的重要进展。

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