首页> 外文会议>Europe/Africa Regional Conference Dresden of the Polymer Processing Society >Effect of Filler Type and Particle Size Distribution on Thermal Properties of Bimodal and Hybrid-BN/Boehmite-filled EP-Novolac Composites
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Effect of Filler Type and Particle Size Distribution on Thermal Properties of Bimodal and Hybrid-BN/Boehmite-filled EP-Novolac Composites

机译:填料型粒度分布对双峰和杂交BN / BOEHMITE填充EP-NOPOLAC复合材料热性质的影响

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In this study, the combination of hexagonal Boron Nitride (BN) and Boehmite are investigated towards their potential to enhance both the thermal and flame retardant properties in Epoxy Novolac matrices for electrical applications. The focus of this scientific work is to correlate the fillers' particle size (distribution), morphology, content, dispersion and orientation, which are investigated with microscopic methods (SEM, TEM), with the resulting thermal properties. Both filler types are studied systematically in monomodal and bimodal filler distribution and finally in a hybrid combination, both with variation in the relative compositions. The thermal properties of the resulting composites are determined via TGA (thermal decomposition), DMA (T_g), and heat flow meter for thermal conductivity. The effect on flame retardancy is examined with Cone Calorimetry. The results show that the thermal conductivity is strongly dependent on filler type, content and particle size (distribution) strongly affecting the resulting microstructure. With increasing filler content and the higher the filler's aspect ratio, the more pronounced is the enhancement of the thermal conductivity and flame retardancy. Furthermore, the variation in the relative composition of the bimodal filler distributions and hybrid combination demonstrates the potential to design and trigger the formation of the micro- structured network in a smart way improving the through-plane (z-direction) heat dissipation.
机译:在该研究中,研究了六边形氮化硼(BN)和勃姆石的组合,朝向它们的潜力提高了用于电气应用的环氧酚醛清漆基质中的热和阻燃性能。该科学工作的重点是将填充剂的粒度(分布),形态,含量,分散体和取向相关联,这些粒子尺寸(分布),形态,含量,分散体和取向,以微观方法(SEM,TEM)为由产生的热性能。两种填料在单阳极和双峰填料分布中系统地进行了系统地研究,最后在杂合组合中,两者都具有相对组合物的变化。由TGA(热分解),DMA(T_G)和用于导热率的热流量计确定所得复合材料的热性质。用锥形量热法检查对阻燃性的影响。结果表明,导热率强烈依赖于强烈影响所得微观结构的填充型,含量和粒度(分布)。随着填料含量的增加和填料的纵横比越高,越明显是增强导热率和阻燃性。此外,双峰填充分布和混合组合的相对组合物的变化表明了以智能方式设计和触发微结构网络的形成,从而改善通孔(Z方向)散热。

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