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Methods for Preparing Graphite Sheets with Piercing Treatment to Enhance Vertical Thermal Conduction

机译:用刺穿处理制备石墨片的方法,以增强垂直热传导

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Graphite film was transformed into an effective TIM material by redirecting the in-plane thermal conduction into the cross-plane conduction through piercing mechanism. The piercing action deformed the graphite film into sprout shape, thus redirecting the thermal conduction from horizontal to vertical direction. The effect was further enhanced when graphite was pierced from both directions and the resultant thermal conductivity could be more than doubled vertically. The film thickness was optimal at $250 mumathrm{m}$, with pressure for thermal conductivity measurement being optimal at 65 lbf. The optimal piercing density was 15 runs of the rolling, and the optimal length of spike was 0.5 mm. This piercing mechanism can be implemented into roll-to-roll manufacturing process.
机译:通过通过刺穿机构将面内热传导重定向到平面传导中,将石墨膜转化为有效的螺旋材料。 刺穿动作使石墨膜变形为萌芽形状,从而将热导通从水平传导重定向到垂直方向。 当石墨从两个方向刺穿时,效果进一步增强,并且所得到的导热率可能大于垂直加倍。 薄膜厚度在最佳状态 $ 250 mu mathrm { m} $ ,具有导热性测量的压力在65 LBF时是最佳的。 最佳刺穿密度为15次轧制,最佳的峰值长度为0.5mm。 这种穿孔机构可以实现成卷 - 卷制造过程。

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