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Effect of processing technique on the transport and mechanical properties of graphite nanoplatelet/rubbery epoxy composites for thermal interface applications

机译:加工工艺对热界面应用石墨纳米片/橡胶环氧复合材料传输和力学性能的影响

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Graphite nanoplatelet (GNP)/rubbery epoxy composites were fabricated by mechanical mixer (MM) and dual asymmetric centrifuge speed mixer (SM). The properties of the GNP/rubbery epoxy were compared with GNP/glassy epoxy composites. The thermal conductivity of GNP/rubbery epoxy composite (25 wt.% GNP, particle size 15μm) reached 2.35Wm~(-1) K~(-1) compared to 0.1795 W m~(-1) K~(-1) for rubbery epoxy. Compared with GNP/rubbery epoxy composite, at 20 wt.%, GNP/glassy epoxy composite has a slightly lower thermal conductivity but an electrical conductivity that is 3 orders of magnitude higher. The viscosity of rubbery epoxy is 4 times lower than that of glassy epoxy and thus allows higher loading. The thermal and electrical conductivities of composites produced by MM are slightly higher than those produced by SM due to greater shearing of GNPs in MM, which results in better dispersed GNPs. Compression and hardness testing showed that GNPs increase the compressive strength of rubbery epoxy ~2 times without significantly affecting the compressive strain and hardness. The GNP/glassy epoxy composites are 40 times stiffer than the GNP/rubbery epoxy composites. GNP/rubbery epoxy composites with their high thermal conductivity, low electrical conductivity, low viscosity before curing and high conformability are promising thermal interface materials.
机译:通过机械混合器(MM)和双不对称离心速度混合器(SM)制备石墨纳米片(GNP)/橡胶环氧复合材料。将GNP /橡胶环氧与GNP /玻璃环氧复合材料的性能进行了比较。 GNP /橡胶环氧复合材料(GNP的25 wt%,粒径15μm)的热导率达到2.35Wm〜(-1)K〜(-1),而0.1795 W m〜(-1)K〜(-1)用于橡胶状环氧。与20重量%的GNP /橡胶环氧复合材料相比,GNP /玻璃状环氧复合材料的热导率略低,但电导率高3个数量级。橡胶状环氧树脂的粘度比玻璃状环氧树脂低4倍,因此可以增加负载量。 MM生产的复合材料的导热率和电导率比SM生产的复合材料的导热率和导电率略高,这是因为MM中GNP的剪切更大,这导致GNP分散得更好。压缩和硬度测试表明,GNPs使橡胶状环氧的抗压强度提高了约2倍,而对压缩应变和硬度没有显着影响。 GNP /玻璃环氧复合材料的硬度是GNP /橡胶环氧复合材料的40倍。具有高导热率,低导电率,固化前的低粘度和高贴合性的GNP /橡胶环氧复合材料是很有前途的热界面材料。

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