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首页> 外文期刊>Journal of Materials Science >Nanostructured fumed metal oxides for thermal interface pastes
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Nanostructured fumed metal oxides for thermal interface pastes

机译:用于热界面胶的纳米结构气相金属氧化物

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Fumed metal oxides (13 nm aluminum oxide particles and 20-25 nm zinc oxide particles), which are in the form of porous agglomerates of nanoparticles, are effective as thermally conductive solid components in thermal pastes. They are as effective as carbon black, but are advantageous in their electrical non-conductivity. Without fuming, the oxides are less effective. By coating with silane, which decreases the viscosity of the paste, they are even more effective. The organic vehicle (polyol esters) and solid component content (2.4-4.0 vol.%) are chosen to attain conformability and spreadability. The use of either 4.0 vol.% silane coated fumed zinc oxide or 2.4 vol.% silane coated alumina gives thermal pastes that are more effective than commercial thermal pastes (Ceramique and Shin-Etsu). Fumed zinc oxide is superior to non-fumed zinc oxide in improving the thermal stability. Silane coating of the fumed zinc oxide further improves the thermal stability. Fumed alumina does not affect the thermal stability, but silane coated fumed alumina improves the thermal stability. Though silane coated fumed zinc oxide is superior to silane coated alumina in enhancing the thermal stability, it is slightly inferior in the phase separation tendency.
机译:以纳米颗粒的多孔团聚体形式的气相金属氧化物(13 nm氧化铝颗粒和20-25 nm氧化锌颗粒)可以有效地用作导热膏中的导热固体成分。它们与炭黑一样有效,但是在非导电性方面是有利的。如果不发烟,氧化物的效果会降低。通过用硅烷涂覆,可降低浆料的粘度,它们甚至更有效。选择有机载体(多元醇酯)和固体组分含量(2.4-4.0%(体积)),以获得贴合性和铺展性。使用4.0%(体积)的硅烷涂覆的气相氧化锌或2.4%(体积)的硅烷涂覆的氧化铝所得到的导热膏比市售导热膏(Ceramique和Shin-Etsu)更有效。气相氧化锌在改善热稳定性方面优于非气相氧化锌。气相氧化锌的硅烷涂层进一步提高了热稳定性。气相法氧化铝不影响热稳定性,但硅烷涂覆的气相法氧化铝可提高热稳定性。尽管硅烷涂覆的热解氧化锌在增强热稳定性方面优于硅烷涂覆的氧化铝,但其相分离趋势稍差。

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