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1)  heat storage material
储能材料
1.
This heat storage material was investigated by means of Fourier transition infrared spectroscopy(FTIR),differential scanning calorimetry(DSC) and polarization microscope(POM),the results showed that the material had great phase change enthalpy,good thermal stability and no liquid producing.
采用两步溶液聚合法以DMF为溶剂,PEG、MDI、BDO为原料合成了一种聚氨酯型高分子固-固相变储能材料,运用傅立叶红外光谱(FTIR)、差示扫描量热仪(DSC)、偏光显微镜(POM)对该种材料进行结构分析和性能表征,对其相变行为和相变机理进行初步探讨。
2)  energy storage material
储能材料
3)  heat storage
储能材料
1.
The organic/inorganic nanometer composite phase change heat storage materials of the bentonite/trihydroxy methyl propane (TMP) and bentonite/TMP + neopentylglycol (NPG) have been prepared with exchanged reaction, and characterized by XRD and DSC.
利用十六烷基三甲基溴化铵 (CTAB)嵌入到具有层状结构的膨润土层间 ,使膨润土层间得到改性 ;通过交换反应 ,使三羟甲基丙烷和新戊二醇嵌入膨润土层间而制得有机 /无机纳米复合相变储能材料
4)  thermal energy storage material
储能材料
1.
The properties of thermal energy storage material include melting point, the heat of fusion, thermal stability and microstructure are investigated.
本文提出了研制一种具有多孔基体的复合相变储能材料 ,通过实验分析了该储能材料的融解温度、融解热、热稳定性及微相结构等性能。
2.
The thermal energy storage material of building is prepared with the compound of expanded-perlite porous skeleton and organic-acid phase change materials by physical adsorption.
用膨胀珍珠岩多孔基体与有机羧酸进行物理复合,制备建筑储能材料,通过SEM分析了复合储能材料的微观结构,通过DSC测试其相变温度、相变焓。
5)  phase change material
相变储能材料
1.
The characteristics,classification,application status of phase change materials(PCM),and the public mobile communication base stations are introduced.
介绍了相变储能材料的特性、分类和应用现状,以及公用移动通信基站的简要情况。
2.
Phase diagram prediction in a thermodynamic model is an effective way for the design of phase change materials using molten salt hydrates as agent, and strong prediction ability of the model used is a precondition for this work.
用热力学模型预测相图,是一种高效快捷省时省力的熔盐水合物相变储能材料设计的方法,模型预测能力强弱是这一方法成功的关键。
6)  composite energy storage material
复合储能材料
1.
Processing technology of Na2SO4/SiO2 composite energy storage material is studied.
研究了Na2SO4/SiO2复合储能材料的工艺性能。
补充资料:储能材料
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性质:见储氢材料。

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