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Preparation and properties of aluminum nitride-filled epoxy composites: Effect of filler characteristics and composite processing conditions

机译:氮化铝填充的环氧复合材料的制备和性能:填料特性和复合加工条件的影响

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Polymer-matrix composites based on brominated epoxy as the matrix and aluminum nitride (AlN) particle as the filler were prepared. Effects of AlN size and content as well as composite processing conditions on the preparation and properties of the composites had been investigated. At the same processing conditions, Young's modulus (E) and dielectric constant (D_k) of the composites increase, whereas coefficient of thermal expansion decreases when increasing AlN content or decreasing AlN size; tensile strength and elongation at break first increase then decrease with AlN content, and they reach maximum values at lower AlN content with decreasing AlN size; glass transition temperature (T_g) also exhibits a trend of first increase then decrease with AlN content, and it decreases with decreasing AlN size, especially at high AlN content; dissipation factor (D_f) generally decreases with AlN content except for the composites filled with 50 nm-AlN, and it increases with decreasing AlN size. Comparing the composites prepared at different processing conditions, the properties of the composite are relatively poor at low vacuum conditions during removal of solvent and bubble. The scanning electron microscope and Fourier transform infrared analyses indicate that the properties of the composites are related to the aggregation of AlN filler and voids in the composites as well as the crosslink density of epoxy matrix. The preparation of the composites is also found to be affected by AlN size and content as well as vacuum conditions, indicating that increase of viscosity of system and/or the solvent evaporation during curing results in poor formability of the composites.
机译:制备了以溴化环氧树脂为基质,氮化铝(AlN)颗粒为填充剂的聚合物基复合材料。研究了AlN的尺寸和含量以及复合材料的加工条件对复合材料的制备和性能的影响。在相同的加工条件下,复合材料的杨氏模量(E)和介电常数(D_k)增加,而当增加AlN含量或减小AlN尺寸时,热膨胀系数降低;随着AlN含量的增加,抗拉强度和断裂伸长率先增加,然后降低;随着AlN尺寸的减小,AlN含量降低时,它们达到最大值。玻璃化转变温度(T_g)也呈现出先升高后随AlN含量降低的趋势,并且随着AlN尺寸的减小而降低,特别是在高AlN含量的情况下;除了填充50 nm-AlN的复合材料外,耗散因数(D_f)通常随AlN含量而降低,并且随AlN尺寸的减小而增加。比较在不同加工条件下制备的复合材料,在除去溶剂和气泡的低真空条件下,复合材料的性能相对较差。扫描电子显微镜和傅立叶变换红外分析表明,复合材料的性能与AlN填料的聚集和复合材料中的空隙以及环氧基质的交联密度有关。还发现复合材料的制备受AlN尺寸和含量以及真空条件的影响,表明在固化过程中体系粘度的增加和/或溶剂蒸发导致复合材料的可成形性差。

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