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Experimental research of viscosity of microencapsulated PCM slurry at the phase change temperature

机译:相变温度下微囊PCM浆料粘度的实验研究。

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With the advancement of technological progress it is possible to close Phase Change Material "inside" capsules of the order of micro- and even nano-meters. Microcapsules added to a base liquid can be used as latent functionally thermal fluid (LFTF) in active heat exchange systems. Accurate recognition of the rheological properties of the resulting suspension, especially at the phase change temperature of the PCM, is essential for the planned practical application of the fluid. Knowledge of viscosity is one of the key parameters as this is reflected in both flow resistance and, for example, convective heat exchange. This paper presents the results of detailed tests on the viscosity change of the microencapsulated PCM slurry (Micronal (R) DS 5039 X - BASF product) at unsteady state conditions. The effect of the temperature increase rate (0.1-1.2 degrees C/min), mPCM concentration (80%, 90% of Micronal (R) DS 5039 X in water and pure Micronal (R) DS 5039 X) and the influence of spindle speed (50 RPM and 150 RPM) on mPCM slurry apparent viscosity was examined. Because the main peak melting temperature of the product is around 23 degrees C the temperature range of experiment was 15-30 degrees C.On the basis of the conducted tests, it was found that in general the temperature increase of the suspension causes a decrease of its viscosity, however a temporary increase in the viscosity of the slurry was observed when the PCM contained in the microcapsules undergoes a phase transition. (C) 2019 Elsevier Ltd. All rights reserved.
机译:随着技术进步的进步,有可能关闭相变材料“内部”的微米级甚至纳米级的胶囊。添加到基础液体中的微胶囊可用作主动热交换系统中的潜在功能性热流体(LFTF)。准确识别所得悬浮液的流变特性,尤其是在PCM的相变温度下,对于流体的计划实际应用至关重要。粘度知识是关键参数之一,因为这在流动阻力和对流热交换中都得到体现。本文介绍了在非稳态条件下对微胶囊PCM浆料(Micronal(R)DS 5039 X-BASF产品)的粘度变化进行详细测试的结果。升温速率(0.1-1.2摄氏度/分钟),mPCM浓度(80%,Micronal(R)DS 5039 X在水中和纯Micronal(R)DS 5039 X的90%)的影响以及锭子的影响检查了mPCM浆液的表观粘度的最大转速(50 RPM和150 RPM)。由于产品的主峰熔融温度约为23摄氏度,因此实验的温度范围为15摄氏度至30摄氏度。在进行的测试基础上,发现通常悬浮液的温度升高会导致温度降低。其粘度,但是当微胶囊中所含的PCM经历相变时,观察到浆料的粘度暂时增加。 (C)2019 Elsevier Ltd.保留所有权利。

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