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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Effect of filler particle size on electric energy density of epoxy-aluminum nanocomposites
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Effect of filler particle size on electric energy density of epoxy-aluminum nanocomposites

机译:填料粒径对环氧铝纳米复合材料电能密度的影响

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摘要

The size effect of filler particles on the dielectric properties and maximum electric energy density of epoxy-aluminum composites are evaluated. Aluminum particles encapsulated with aluminum oxide layers are used as the fillers to enhance the dielectric constant of the composite and also to maintain the breakdown strength. Experiments were conducted to evaluate the dielectric constant, dissipation factor, breakdown voltage and maximum electric energy density of the composites as a function of filler loading. Dielectric property measurements demonstrated that, for composites containing 70 nm (average particle size) aluminum the dielectric constant is increased by a factor of 7 at 18 wt% filler loading as compared with that of pure epoxy matrix. Even if there is a reduction in breakdown strength, the addition of nanoparticles resulted in potential gain in electric energy density. To analyze the size effect of filler particles on the performance of the composites, samples with a different filler size of 40 nm (APS) were prepared and dielectric properties were evaluated. It is observed that the enhancement in dielectric constant is 6 times that of pure epoxy at a lower filler concentration of 14 wt% for 40 nm (APS) filler samples. The improvement in maximum energy density is 4 times at 18 wt% filler loading and 3.5 times at 14 wt% filler loading for 70 nm (APS) and 40 nm (APS) composites respectively. Material characteristics were analyzed using Scanning Electron Microscopy (SEM), Energy Dispersive Spectroscopy (EDS), X-ray Diffraction (XRD), Differential Scanning Calorimetry (DSC) and Thermogravimetric (TGA) techniques.
机译:评估了填料颗粒对环氧铝复合材料介电性能和最大电能密度的尺寸影响。用氧化铝层包封的铝颗粒用作填料,以增强复合材料的介电常数并保持击穿强度。进行实验以评估复合材料的介电常数,耗散因数,击穿电压和最大电能密度随填料含量的变化。介电性能测量表明,与纯环氧基质相比,对于含70 nm(平均粒径)铝的复合材料,在18 wt%的填料负载下,介电常数提高了7倍。即使击穿强度降低,纳米颗粒的添加也会导致电能密度的潜在增加。为了分析填料颗粒尺寸对复合材料性能的影响,制备了具有40 nm不同填料尺寸(APS)的样品,并评估了介电性能。可以看出,对于40 nm(APS)填料样品,在14 wt%的较低填料浓度下,介电常数的提高是纯环氧树脂的6倍。对于70 nm(APS)和40 nm(APS)复合材料,最大能量密度的改进在18 wt%填料载荷下分别是4倍和14 wt%填料载荷下3.5倍。使用扫描电子显微镜(SEM),能量色散光谱(EDS),X射线衍射(XRD),差示扫描量热法(DSC)和热重分析(TGA)技术分析材料特性。

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