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Analyzing the Distribution of Microencapsulated Organic Phase Change Materials Embedded in a Metallic Matrix

机译:分析嵌入金属基质的微囊有机相变材料的分布

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This work aims to mitigate the overdesign of steady state packaging systems by combining an organic phase change material (o-PCM) and a metallic PCM (m-PCM) to create a passive cooling composite for pulse power applications. The organic constituent, melamine microencapsulated paraffin spheres, is manually mixed into a Field's metal (32.5Bi/51In/16.5Sn wt%) matrix. Four concentrations are synthesized containing organic volumetric fractions (VF) of 21.8%, 40.3%, 50.1%, and 61.2%, with a liquid-solid melting temperature near 60°C. Several tools aid in determining the physical arrangement and thermal properties of the prepared PCM composites. A scanning electron microscope (SEM) shows preliminary o-PCM orientations on the composite surface at various magnifications. For interior o-PCM sphere distribution analysis, still images are taken from time-lapse videos created from a micro-computed tomographic (micro-CT) system. Binarization and pixel counting techniques are able to determine effective internal VFs within 3-5% of the prepared bulk VF. Differential scanning calorimetry is employed to determine the phase change onset temperature, heating peak temperature, and latent heat of the PCM composites. This novel PCM fabrication approach decreases the device package size, limits the associated weight, increases the system performance, and minimizes the composite cost.
机译:这项工作旨在通过组合有机相变材料(o-PCM)和金属PCM(m-PCM)来创建用于脉冲功率应用的无源冷却复合材料,来减轻稳态包装系统的过度设计。将有机成分三聚氰胺微囊化石蜡球手动混合到Field的金属(32.5Bi / 51In / 16.5Sn wt%)基质中。合成了四个浓度,分别包含21.8%,40.3%,50.1%和61.2%的有机体积分数(VF),液固熔融温度接近60°C。几种工具有助于确定所制备的PCM复合材料的物理排列和热性能。扫描电子显微镜(SEM)以不同的放大倍数显示了复合材料表面的初步o-PCM取向。对于内部o-PCM球面分布分析,静止图像是从由微型计算机断层摄影(micro-CT)系统创建的延时视频中获取的。二值化和像素计数技术能够确定有效内部VF,该内部VF在所准备的体积VF的3-5%之内。差示扫描量热法用于确定相变起始温度,加热峰值温度和PCM复合材料的潜热。这种新颖的PCM制造方法减小了器件封装的尺寸,限制了相关的重量,提高了系统性能,并使合成成本最小化。

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