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Thermal Conductivity of Epoxy Composites Filled With Aluminium Nitride (AIN)

机译:填充氮化铝(AIN)的环氧树脂复合材料的导热系数

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摘要

Thermal conductivity of epoxy composites embedded with Aluminium Nitride(AlN) micro-fillers is estimated in the present thesis with analytical modelling. Thermal conductivity of AlN powder filled epoxy composite is calculated by measuring heat flow using an instrument Unitherm TM Model. In the analytical model,a mathematical model is developed to calculate the effective thermal conductivity of the composites filled with particulate fillers with different concentrations. The conductivity values measured experimentally are compared with the analytical ones and experimental ones. These composites with AlN have been fabricated and thermal conductivities of the samples are measured experimentally. Observations can be made that with 15 % of volume AlN in epoxy matrix, thermal conductivity has increased by about 6 times while with25 volume % the thermal conductivity has increased by about 59 times which is much higher than epoxy matrix. A conclusion to draw from the measured values are in close approximation with the proposed model close upto 25 % of vol. fraction at which a sudden rise is observed in the measured value of Keff. This sudden rise in effective thermal conductivity is due to the overlap between filler particle which leads to the formation of conductive chain. The volume percentage after which this phenomenon occur is termed as percolation threshold
机译:本文利用解析模型估算了嵌入氮化铝(AlN)微填料的环氧复合材料的导热系数。 AlN粉末填充的环氧复合材料的导热系数是通过使用Unitherm TM模型仪器测量热流来计算的。在分析模型中,建立了数学模型来计算填充了不同浓度颗粒填料的复合材料的有效导热系数。将实验测得的电导率值与分析值和实验值进行比较。已经制造了这些具有AlN的复合材料,并通过实验测量了样品的热导率。可以观察到,在环氧树脂基质中有15%体积的AlN时,热导率增加了约6倍,而在25%体积中时,热导率增加了约59倍,这远高于环氧树脂基质。从测量值得出的结论与所提出的模型非常接近,接近体积的25%。 Keff的测量值中观察到突然升高的分数。有效热导率的突然上升是由于填料颗粒之间的重叠,从而导致形成导电链。发生此现象之后的体积百分比称为渗滤阈值

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    Nayak Swaraj Sourav;

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  • 年度 2015
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