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硬脂酸十六烷酯的合成与相变储能性能研究 被引量:2
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作者 陈长中 刘珊珊 +1 位作者 柳文敏 李雅富 《南阳师范学院学报》 CAS 2010年第12期31-33,61,共4页
通过羧基酰氯酯化法合成了硬脂酸十六烷酯固—液相变材料,并使用傅立叶红外光谱仪(FT-IR)、广角X-射线衍射仪(WAXD)、示差扫描量热仪(DSC)、热重分析仪(TG)等测试手段研究了材料的结构、结晶性能以及热性能(相变焓、相变温度和热稳定性)... 通过羧基酰氯酯化法合成了硬脂酸十六烷酯固—液相变材料,并使用傅立叶红外光谱仪(FT-IR)、广角X-射线衍射仪(WAXD)、示差扫描量热仪(DSC)、热重分析仪(TG)等测试手段研究了材料的结构、结晶性能以及热性能(相变焓、相变温度和热稳定性),发现所得材料具有较高的焓变,同时其热稳定性相比硬脂酸和十六醇得到了较大的提高,是一种具有较好相变性能的新型固—液相变储能材料. 展开更多
关键词 固—液相变材料 硬脂酸十六烷酯 硬脂酸 十六醇 热性能
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Numerical study on solid–liquid phase change in paraffin as phase change material for battery thermal management 被引量:3
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作者 Qiannan Zhang Yutao Huo Zhonghao Rao 《Science Bulletin》 SCIE EI CAS CSCD 2016年第5期391-400,共10页
With the large latent heat and low cost, the paraffin has been widely used in battery thermal management(BTM) system to improve the efficiency and cycling life of power battery. The numerical model of paraffin melting... With the large latent heat and low cost, the paraffin has been widely used in battery thermal management(BTM) system to improve the efficiency and cycling life of power battery. The numerical model of paraffin melting in a cavity has been established, and the effects on the solid–liquid phase change process have been investigated for the purpose of enhancing the heat transfer performance of paraffin-based BTM system. The results showed that the location of the heating wall had great effects on the melting process. The paraffin in the cavity melted most quickly when the heating wall located at the bottom. Furthermore, the effects of thermal conductivity and the velocity of the slip wall have been considered. The gradient of liquid fraction increased with the increase in thermal conductivity, and the melting process could be accelerated or delayed by the slip wall with different velocity. 展开更多
关键词 Phase change material Battery thermal management Solid–liquid phase change Heat flux Thermal conductivity
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Thermal Analysis of Metal Foam Matrix Composite Phase Change Material 被引量:1
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作者 SONG Xiange 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第4期386-390,共5页
In this paper,CPCM(Composite Phase Change Material)was manufactured with metal foam matrix used as filling material.The temperature curves were obtained by experiment.The performance of heat transfer was analyzed.The ... In this paper,CPCM(Composite Phase Change Material)was manufactured with metal foam matrix used as filling material.The temperature curves were obtained by experiment.The performance of heat transfer was analyzed.The experimental results show that metal foam matrix can improve temperature uniformity in phase change thermal storage material and enhance heat conduction ability.The thermal performance of CPCM is significantly improved.The efficiency of temperature control can be obviously improved by adding metal foam in phase change material.CPCM is in solid-liquid two-phase region when temperature is close to phase change point of paraffin.An approximate plateau appears.The plateau can be considered as the temperature control zone of CPCM.Heat can be transferred fiom hot source and be uniformly spread in thermal storage material by using metal foam matrix since thermal storage material has the advantage of strong heat storage capacity and disadvantage of poor heat conduction ability.Natural convection promotes the melting of solid-liquid phase change material.Good thermal conductivity of foam metal accelerates heat conduction of solid-liquid phase change material.The interior temperature difference decreases and the whole temperature becomes more uniform.For the same porosity with a metal foam,melting time of solid-liquid phase change material decreases.Heat conduction is enhanced and natural convection is suppressed when pore size of metal foam is smaller.The thermal storage time decreases and heat absorption rate increases when the pore size of metal foam reduces.The research results can be used to guide fabricating the CPCM. 展开更多
关键词 Metal Foam Matrix Composite Phase Change Material Thermal Storage Heat Absorption Rate
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