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Effect of the filler size and content on the thermomechanical properties of particulate aluminum nitride filled epoxy composites

机译:填料尺寸和含量对颗粒状氮化铝填充环氧复合材料热机械性能的影响

摘要

Polymer matrix composites based on brominated epoxy as the matrix and aluminum nitride (AlN) particles as the filler were prepared. The influences of the size, content, and size distribution of AlN on the thermomechanical properties, including the glass-transition temperature (T g), coefficient of thermal expansion (CTE), dynamic storage modulus (E′), dynamic loss modulus (E″), and loss factor (tan δ), of the composites were investigated by thermomechanical analysis and dynamic mechanical analysis. There was a total change trend for T g; that is, T g of the composites containing nano-aluminum nitride (nano-AlN; 50 nm) was lower than that of the micro-aluminum nitride (micro-AlN; 2.3 μm) filled composites, especially at high nano-AlN contents. The T g depression of the composites containing nano-AlN was related to the aggregation of nano-AlN and voids in the composites. On the other hand, the crosslink density of the epoxy matrix decreased for nano-AlN-filled composites, which also resulted in a T g depression. The results also show that E′ and E″ increased, whereas tan δ and CTE of the composites decreased, with increasing the AlN content or increasing nano-AlN fraction at the same AlN content. These results indicate that increasing the interfacial areas between AlN and the epoxy matrix effectively enhanced the dynamic modulus and decreased CTE. In addition, at a fixed AlN content of 10 wt %, a low E′ of pre-T g (before T g temperature) and high T g were observed at the smaller weight ratio of nano-AlN when combinations of nano-AlN plus micro-AlN were used as the filler. This may have been related to the best packing efficiency at that weight ratio when the bimodal filler was used.
机译:制备了以溴化环氧树脂为基体,氮化铝(AlN)颗粒为填充剂的聚合物基复合材料。 AlN的尺寸,含量和尺寸分布对热机械性能的影响,包括玻璃化转变温度(T g),热膨胀系数(CTE),动态储能模量(E'),动态损耗模量(E ”),并通过热力学分析和动态力学分析研究了复合材料的损耗因子(tanδ)。 T g的总变化趋势;即,包含纳米氮化铝(纳米AlN; 50 nm)的复合材料的T g低于填充了微氮化铝(micro AlN; 2.3μm)的复合材料的T g,特别是在纳米AlN含量高的情况下。含纳米AlN的复合材料的T g降低与纳米AlN的聚集和复合材料中的空隙有关。另一方面,纳米AlN填充复合材料的环氧基质的交联密度降低,这也导致T g降低。结果还表明,随着AlN含量的增加或相同AlN含量的纳米AlN分数的增加,复合材料的E'和E''升高,而tanδ和CTE降低。这些结果表明,增加AlN和环氧基质之间的界面面积可以有效地提高动态模量和降低CTE。另外,在固定的AlN含量为10 wt%的情况下,当纳米AlN加微型AlN用作填充剂。当使用双峰填料时,这可能与该重量比下的最佳包装效率有关。

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