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Thermophysical Properties of Biporous Heat Pipe Evaporators

机译:双孔热管蒸发器的热物理性质

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Thirty biporous slugs with 3 different cluster diameters and 5 different particle diameters (15 combinations with 2 repetitions) and 12 monoporous slugs with 6 different particle diameters were sintered from spherical copper powder, and thermophysical properties were measured. The neck size ratio for all the particles was approximately 0.4. The porosity of monoporous samples was found to be independent of particle diameter and was equal to 0.28, and the porosity of biporous samples was found to be independent of cluster and particle diameters, and was equal to 0.64. The liquid permeability and maximum capillary pressure of small pores were found to be a linear function of the particle diameter. Similarly, vapor permeability was found to be a linear function of the cluster diameter. The thermal conductivity of monoporous samples was measured to be 142 ± 3 W/m K at 42 ± 2℃, and it was independent of particle diameter. The thermal conductivity of biporous samples was found to be a function of cluster to particle diameter ratio.
机译:从球形铜粉中烧结出三十个具有3个不同簇直径和5个不同粒径(15个组合,重复2次)的双孔小块和12个具有6个不同粒径的单孔小块,并测量其热物理性质。所有颗粒的颈部尺寸比约为0.4。发现单孔样品的孔隙率与粒径无关并且等于0.28,并且发现双孔样品的孔隙率与团簇和粒径无关,并且等于0.64。发现小孔的液体渗透性和最大毛细压力是粒径的线性函数。同样,发现蒸汽渗透率是团簇直径的线性函数。在42±2℃下测得的单孔样品的热导率为142±3 W / m K,与粒径无关。发现双孔样品的热导率是簇与粒径之比的函数。

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