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Experimental investigation on thermal and Theological properties of n-octadecane with dispersed TiO_2 nanoparticles

机译:分散有TiO_2纳米颗粒的正十八烷的热学和神学特性的实验研究

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In the present study, titanium (Ⅳ) oxide (TiO_2) nanoparticles were dispersed in n-octadecane to fabricate phase change material (PCM) with enhanced properties and behavior. Thermal conductivity (TC) and viscosity of n-octadecane/TiO_2 dispersions were experimentally investigated using transient plane source (TPS) technique and rotating coaxial cylindrical viscometer, respectively. The results showed that the TC of n-octadecane/TiO_2 dispersion depends on temperature and nanoparticle loading. A non-monotonic behavior of TC enhancement in both solid and liquid phases was observed. In solid phase, the maximum TC enhancement occurred at 3 wt.% of nanoparticles. When the nanoparticle mass fraction was over 4% in liquid phase, the TC started to decrease. The Theological behavior of the n-octadecane/TiO_2 samples indicated that dispersions with low nanoparticle mass fractions demonstrate Newtonian behavior, and for higher mass factions the shear-thinning behavior was observed. Shear stress vs. shear rate curves showed that the liquid phase of PCM behaves like a Bingham plastic fluid for mass fraction greater than 1%. As expected, the effective viscosity could be influenced by temperature. At the shear rate of 48.92 s~(-1) for 3 wt.% nanoparticles, the effective viscosity decreased by 26.8% while temperature increased from 35 ℃ to 55 ℃. For the investigated n-octadecane/TiO_2 dispersions, new thermophysical correlations are proposed for predicting TC and rheological properties.
机译:在本研究中,将氧化钛(Ⅳ)(TiO_2)纳米颗粒分散在正十八烷中,以制备具有增强的性能和性能的相变材料(PCM)。使用瞬态平面源(TPS)技术和旋转同轴圆柱粘度计分别对正十八烷/ TiO_2分散体的热导率(TC)和粘度进行了实验研究。结果表明,正十八烷/ TiO_2分散体的TC取决于温度和纳米粒子的负载。在固相和液相中均观察到TC增强的非单调行为。在固相中,最大的TC增强发生在纳米粒子的3 wt%处。当液相中纳米粒子的质量分数超过4%时,TC开始下降。正十八烷/ TiO_2样品的神学行为表明,具有低纳米颗粒质量分数的分散体表现出牛顿行为,对于较高质量的派系,观察到剪切稀化行为。剪切应力与剪切速率的关系曲线表明,PCM的液相行为类似于宾汉塑性流体,质量分数大于1%。如预期的那样,有效粘度可能受到温度的影响。在3%(重量)的纳米颗粒的剪切速率为48.92 s〜(-1)下,当温度从35℃升高到55℃时,有效粘度下降了26.8%。对于所研究的正十八烷/ TiO_2分散体,提出了新的热物理相关性以预测TC和流变性质。

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