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| 1 | Preparation and performance of form-stable polyethylene glycol/silicon dioxide composites as solid–liquid phase change materials显示文摘 | Weilong Wang Xiaoxi Yang Yutang Fang Jing Ding | 2008 | Applied Energy2008,,2: | 2 |
| 2 | Preparation and performance of form-stable polyethylene glycol/silicon dioxide composites as solid-liquid phase change materials显示文摘 | Wang Weilong Yang Xiaoxi Fang Yutang | 2009 | Applied Energy2009,86,: | 1 |
| 3 | Synthesis and characterization of elastoplastic poly(styrene-co-ethylene)using novel mono(Ti5-cyclopentadienyl)titanium and modified methylaluminoxane catalysts 显示文摘 | Zhu Fangming Fang Yutang Lin Shangan | 1999 | Journal of Applied Polymer Science1999,74,: | 1 |
| 4 | Preparation and thermal properties of polyethylene glycol/expanded graphite blends for energy storage显示文摘 | WANG Weilong YANG Xiaoxi FANG Yutang | 2009 | Applied Energy2009,86,9: | 1 |
| 5 | Enhanced thermal conductivity and thermal performance of form-stable composite phase change materials by using β-Aluminum nitride显示文摘 | Weilong Wang Xiaoxi Yang Yutang Fang Jing Ding Jinyue Yan | 2008 | Applied Energy2008,,7: | 1 |
| 6 | 3D shape-stable temperature-regulated macro-encapsulated phase change material:KAl(SO_(4))_(2)·12H_(2)O-C_(2)H_(2)O_(4)·2H_(2)O-CO(NH_(2))_(2) eutectic/polyurethane foam as core and carbon modified silicone resin as shell显示文摘Micro-encapsulated phase change materials(PCMs)have been confirmed a high-efficiency way to store latent heat,but their poor mechanical properties,expensive and complicated synthesis block their industrial application.Herein,borrowing from this structure and magnifying it,we prepared a novel 3D shape-stable temperature-regulated macro-encapsulated PCMs.The KAl(SO_(4))_(2)·12H_(2)O-C_(2)H_(2)O_(4)·2H_(2)O-CO(NH_(2))_(2)(APSD-OAD-Urea)was configured as PCM to composite with light-weight porous polyurethane foam(PUF)framework,and the enthalpy reduction of PCM@PUF(core)was only 1.70%.Subsequent,carbon modified silicone resin(CMS,shell)was introduced to macro-encapsulate PCM@PUF.The results showed that with the optimized mass ratio of 75%APSD-25%OAD and extra addition of 10% Urea,the obtained PCM had a relatively high enthalpy(194.6 J/g),appropriate phase transition temperature(42.17℃)and suppressed supercooling(0.504℃).CMS thin-layer with 2.0 mm thickness increased resistance to deformation,impressions,scratches,and possessed a brilliant sealing effect on PCM@PUF to achieve leak-free and operation steady of PCM.PCM@PUF@CMS with low thermal conductivity from inside out displayed an outstanding thermal insulation performance.Moreover,the fluctuation of the thermodynamic property after 150 thermal cycles is relatively small.All these above enable the application of PCM@PUF@CMS in the thermal energy storage system and provide a novel strategy for the preparation of macro-encapsulated PCMs. | Weicheng Chen Xianghui Liang Wanhui Han Shuangfeng Wang Xuenong Gao Zhengguo Zhang Yutang Fang | 2022 | Journal of Materials Science & Technology2022,,5: | 1 |
| 7 | Preparation and thermal energy storage properties of paraffin/expanded graphite composite phase change material显示文摘 | Zhengguo Zhang Ni Zhang Jing Peng Xiaoming Fang Xuenong Gao Yutang Fang | 2011 | Applied Energy2011,,1: | 1 |
| 8 | Preparation and characterization of novel nanoencapsulated phase change materials 显示文摘 | Fang Yutang Kuang Shengyan Gao Xuenong | 2008 | Energy Conversion and Management2008,49,12: | 1 |
| 9 | Preparation and thermal performance of polystyrene/n-tetradecane composite nanoencapsulated cold energy storage phase change materials 显示文摘 | Fang Yutang Yu Huimin Wan Weijun Gao Xuenong Zhang Zhengguo | 2013 | Energy Conversion and Management2013,76,11: | 1 |
| 10 | Enhanced thermal conductivity and thermal performance of form-stable composite phase change materials by using 显示文摘 | Wang Weilong Yang Xiaoxi Fang Yutang | 2009 | Applied Energy2009,86,78: | 1 |
| 11 | En- hanced Thermal Conductivity and Thermal Performance of Form-Stable Composite Phase Change Materials by Us- ing β-Aluminum Nitride 显示文摘 | Wang Weilong Yang Xiaoxi Fang Yutang | 2009 | Applied Energy2009,86,7: | 1 |
| 12 | Prepa- ration of nanoencapsulated phase change material as latent functionally thermal fluid显示文摘 | Fang Yutang Kuang Shengyan Gao Xuenong | 2009 | Journal of Physics D: Applied Physics2009,42,3: | 1 |
| 13 | Prepara- tion and characterization of novel nanoencapsulated phase change materials显示文摘 | Fang Yutang Kuang Shengyan Gao Xuenong | 2008 | Energy Conversion and Management2008,49,12: | 1 |
| 14 | Preparation and thermal properties of polyethylene glycol/expanded graphite blends for energy storage 显示文摘 | Wang Weilong Yang Xiaoxi Fang Yutang | 2009 | Applied Energy2009,86,9: | 1 |
| 15 | Prepa- ration and characterization of novel nanoencapsulated phase change materials显示文摘 | Fang Yutang Kuang Shengyan Oao Xuenong | 2008 | Energy Conversion and Management2008,49,12: | 1 |
| 16 | Preparation and performance of form-stable polyethylene glycol/silicon di- oxide composites as solid-liquid phase change materials显示文摘 | Wang Weilong Yang Xiaoxi Fang Yutang | | Ap- plied Energy0,85,: | 1 |
| 17 | Measurement of GaAs start duration in different solution concentration using infrared images显示文摘This paper proposes a new infrared method to measure the start duration of GaAs substrate in chemi- cal etching. When etching starts, the temperature of liquid-film will change because of heat release in the chemical reaction. As a result, the start duration of GaAs can be tested by collecting real-time in- frared thermal images in the course of temperature variation. Both theoretical analysis and experi- mental results show that the line shape liquid film of a 2-mm width is a good monitoring subject. By making use of the grey distribution change of a certain cross section of the line shape liquid film, the start duration of reaction between GaAs and H2SO4-H2O2-H2O is obtained. The start durations of reac- tion between GaAs substrate and H2SO4:H2O2:H2O (=5:1:50 and 15:3:50) solution are about 0.2 s and 0.3―0.4 s, respectively. This result and relative method will impulse the research of wet chemical etching technology of GaAs and so on. | LIU Lin YE YuTang WU YunFeng FANG Liang LU JiaJia | 2008 | Chinese Science Bulletin2008,53,6: | 1 |
| 18 | 显示文摘 | Wang Weilong Yang Xiaoxi Fang Yutang | 2009 | Applied Energy2009,86,2: | 1 |