会议论文详细信息
1st International Postgraduate Conference on Mechanical Engineering
Nano-enhanced phase change material effects on the supercooling degree improvement: A review
工业技术(总论);机械制造
Mohamad, Ahmad Tajuddin^1 ; Che Sidik, Nor Azwadi^1
Malaysia - Japan International Institute of Technology (MJIIT), Universiti Teknologi Malaysia Kuala Lumpur, Jalan Sultan Yahya Petra (Jalan Semarak), Kuala Lumpur
54100, Malaysia^1
关键词: Dispersion of nano particles;    Experimental procedure;    Inorganic salt hydrates;    Nanoenhanced phase change material (NePCM);    Nanoparticles synthesis;    Physical and chemical properties;    Thermal-physical property;    Thermo-physical property;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/469/1/012036/pdf
DOI  :  10.1088/1757-899X/469/1/012036
学科分类:工业工程学
来源: IOP
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【 摘 要 】
In this paper, an overview about experimental procedure of phase change material (PCM), in order to enhance its thermal properties is discussed. Enhancement of PCM needs the employment of nanoparticle that would affect the thermo-physical properties. The supercooling degree of PCM influenced by dispersion of nanoparticle which can be controlled by the nucleation process of nanoparticle. Hence, the best candidate material as nucleating agent is preferred in order to maximize the dispersion nanoparticle in PCM. In addition, the tiny structure will cause nanoparticle to have a large surface area that correlates with their physical and chemical properties that react to the thermal-physical properties of PCM. In this review, graphene-based nanoparticle is discussed. The surface area of graphene is the main characteristics used in determining the best thermal physical properties for nano-enhanced phase change material (NEPCM). Due to the best characteristics as base phase change material, inorganic salt hydrates material is reviewed in this paper. However, there have been limited research carried out about the employment of graphene nanoparticles synthesis, characterization and modification process of nanoparticle itself to enhance the thermal physical properties of inorganic PCM.
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