首页> 外文会议>2012 IEEE 10th International Conference on the Properties and applications of Dielectric Materials. >Effect of TiO2 and oMMT nanofiller on thermal conductivity and heat deflection temperature of nanodielectric composites
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Effect of TiO2 and oMMT nanofiller on thermal conductivity and heat deflection temperature of nanodielectric composites

机译:TiO2和oMMT纳米填料对纳米介电复合材料导热系数和热变形温度的影响

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摘要

This paper focuses on thermal conductivity and heat deflection temperature (HDT) of Epoxy-oMMT, Epoxy-TiO2 and Vinyl ester-oMMT nanocomposites with 2, 5 and 7 wt.% were prepared using high shear mixing technique with suitable curing cycles and operating speed. The thermal conductivity and HDT was measured using the Unithermo model 2022, as per ASTME-1530(2011) and Tinius Olsen as per ASTM D -648(2007) at 1–8 Mpa of loading. The thermal conductivity and HDT increases with the addition of oMMT and TiO2 nanofiller indicating the formation of a percolative heat sink pathway. Further, thermal conductivity and HDT data obtained both from experiment and analytical estimations have shown good agreement.
机译:本文重点研究了采用高剪切混合技术,合适的固化周期和工作速度,制备了重量百分比分别为2、5、7%的环氧-oMMT,环氧-TiO2和乙烯基酯-oMMT纳米复合材料的导热系数和热变形温度(HDT)。 。导热系数和HDT使用Unithermo模型2022(根据ASTME-1530(2011))和Tinius Olsen(根据ASTM D -648(2007))在1-8 Mpa的载荷下进行测量。随着oMMT和TiO2纳米填料的加入,热导率和HDT增大,表明形成了渗流散热通道。此外,从实验和分析估计中获得的热导率和HDT数据显示出良好的一致性。

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