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Conductive Polymer Nanocomposites for Novel Heating Elements

机译:用于新型加热元件的导电聚合物纳米复合材料

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Electrical and thermal properties of composites based on high-density polyethylene filled with nanofillers, namely carbon black (CB), carbon fiber (CF) and their mixture, were investigated under alternating current. The composite samples were prepared by thermal pressing from the mechanically mixed blend. High-density polyethylene (HDPE) was used as matrix. The nanofiller content was chosen to be 8 vol% for CF and 8, 12, 16, 30 vol% for CB. This content is higher loading than the percolation threshold and guarantees sufficient heating. The electrical resistivity of the abovementioned composites decreased significantly from 10~(12) Ω/cm to ~ 10~1-10~2 Ω/cm with increasing of the CF/CB content. When a certain voltage was applied to the composites, the equilibrium temperature of the surface of the composite was reached within less than 100 s. The maximum surface temperature as the equilibrium state of the composite samples can be easily controlled by adjusting the composites filler ratio.
机译:在交流电流下研究基于填充有纳米填充物的高密度聚乙烯的复合材料的电气和热性能,即炭黑(Cb),碳纤维(CF)及其混合物。通过从机械混合混合物中热压制备复合样品。使用高密度聚乙烯(HDPE)作为基质。选择纳米填充物含量为CF和8,12,16,30体积%的8体积%。该内容的负载较高,而不是渗透阈值,并保证足够的加热。上述复合材料的电阻率显着从10〜(12)Ω/ cm至〜10〜1-10〜2Ω/ cm,随着CF / CB含量的增加。当对复合材料施加一定电压时,在小于100秒的情况下达到复合材料表面的平衡温度。通过调节复合材料填充率,可以容易地控制作为复合样品的平衡状态的最大表面温度。

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