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Surface treatments of hexagonal boron nitride for thermal conductive epoxy composites

机译:六方氮化硼用于导热环氧复合材料的表面处理

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摘要

Thermal issues increase with the electronic industry pushing towards fast in high speed, high density, and high performance. Thermal conductive materials are strongly demanded for increasing heat dissipation and reducing operating temperature of devices. Hexagonal boron nitride (h-BN) nanosheet that owns high thermal conductivity and low coefficient of thermal expansion is a good filler candidate to enhance the thermal conductivity of polymer composites. It is important to decrease the thermal contact resistance at the filler-matrix interface to increase the thermal conductivity of composite materials. However, there are few functional groups such as hydroxyl (-OH) on the edge planes of the h-BN particles. Acetone, nitric acid, silane coupling agent and some other surface treating agents have been used to improve the interface affinity between the fillers and matrix resin. In this paper, the h-BN particles prepared by liquid exfoliation of bulk h-BN flakes were first treated in sodium hydroxide solution or sulphuric acid solution to attach more functional groups onto the surfaces and then modified with 3-glycidoxypropyltrimethoxysilane (KH560). The treated particles were mixed with epoxy, and the mixture were then scraped into a glass mold and cured at proper temperatures. The thermal, mechanical properties were characterized by TGA, DMA, TMC, etc. The effects of the surface treating reagent on the thermal conductivity were discussed.
机译:随着电子工业朝着高速,高密度和高性能的方向发展,散热问题也越来越多。强烈需要导热材料来增加散热并降低设备的工作温度。具有高热导率和低热膨胀系数的六方氮化硼(h-BN)纳米片是增强聚合物复合材料热导率的良好填充材料。重要的是减小填料-基质界面处的热接触电阻以增加复合材料的导热率。然而,在h-BN颗粒的边缘平面上几乎没有诸如羟基(-OH)的官能团。丙酮,硝酸,硅烷偶联剂和一些其他表面处理剂已用于改善填料与基体树脂之间的界面亲和力。在本文中,首先将通过液体剥落的块状h-BN薄片制成的h-BN颗粒在氢氧化钠溶液或硫酸溶液中处理,以将更多的官能团附着在表面上,然后用3-环氧丙氧基丙基三甲氧基硅烷(KH560)进行改性。将处理过的颗粒与环氧树脂混合,然后将混合物刮入玻璃模具中并在适当的温度下固化。通过TGA,DMA,TMC等表征了热力学性能。讨论了表面处理剂对热导率的影响。

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