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The measurement of the morphology of closed cell foams which control the overall thermal conductivity

机译:控制整体导热率的闭孔泡沫形态的测量

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Means to characterize and measure morphology which affects the solid and radiative contributions in closed cell foams have been developed. From measured two-dimensional intercept area distributions, the actual cell size distribution is calculated. For each of the small-celled polyurethane foams examined, the distribution is narrow, close to the mean cell diameter. From numerical analysis of extreme cell segregation, less than 13percent error in the extinction coefficient and the radiative contribution calculated from the mean cell diameter is expected due to cell size distribution. A means to measure the fraction of solid in the strut from strut cross sectional areas is derived. For the small-celled foams analyzed, the fraction of solid in the strut decreases from 0.67 to 0.34 as mean cell diameter decreases from 0.363 mm to 0.109 mm. Smaller celled foams which show a redistribution of polymer from the struts to the cell walls as cell size decreases will exhibit a larger solid conductivity which may counterbalance the decrease in radiation which accompanies the small cell size.
机译:制定了对影响封闭细胞泡沫中的固体和辐射贡献的形态的表征和测量形态。从测量的二维拦截区域分布,计算实际的小区大小分布。对于所检查的每种小型细胞聚氨酯泡沫,分布窄,接近平均电池直径。根据极端细胞偏析的数值分析,由于细胞尺寸分布,预期从消光系数中的误差小于13误差,并且由平均细胞直径计算的辐射贡献。衍生从支柱横截面积中测量支柱中固体分数的手段。对于分析的小纤维泡沫,支柱中固体的分数从0.67〜0.34减少,因为平均电池直径从0.363mm降低到0.109mm。较小的纤维泡沫,其显示从支柱中的聚合物重新分布到电池壁的细胞壁下降将表现出较大的固体导电性,其可以抵消伴随小细胞尺寸的辐射的降低。

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