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石蠟/二氧化硅復合相變材料的制備及其性能

Preparation and properties of paraffin/SiO2 composite phase change materials

  • 摘要: 以石蠟為相變芯材,以正硅酸乙酯為硅源,在酸性條件下通過溶膠-凝膠法制備出石蠟/二氧化硅復合相變材料.應用傅里葉紅外光譜、X射線衍射、掃描電鏡、差示掃描量熱法、熱重法等手段對所制備復合相變材料的形貌、成分、熱性能等進行了表征.實驗結果表明,所制備的石蠟/二氧化硅復合相變材料的形貌是直徑約為2μm的核/殼結構微球.當核/殼質量比為2∶1時,石蠟包覆率為66.3%,熔點為54.2℃,熔化焓為133.8 J·g-1,凝固點為49.5℃,凝固焓為127.5 J·g-1.與傳統的有機高分子殼層材料相比,無機二氧化硅殼層材料具有更好的熱導率,提升了復合相變材料的導熱性能,且其不易燃燒,無腐蝕性,更加安全環保,有效拓展了相變材料在建筑保溫和智能保溫紡織物等領域的實際應用.

     

    Abstract: Paraffin/SiO2 composite phase change materials based on a paraffin core and a silica shell were prepared using TEOS as a silica source through a sol-gel method under acidic condition. Fourier transformation infrared spectroscopy,X-ray diffraction,scanning electron microscopy,differential scanning calorimetry and thermogravimetry were employed to investigate the morphology,chemical structure,crystalloid phase,phase change properties and thermal stability of the composite materials. The results show that the paraffin/SiO2 materials have core/shell morphology with a diameter of about 2 μm. When the core/shell mass ratio reaches 2:1,the encapsulated ratio of paraffin is 66.3%,the melting point of the composites is 54.2℃ with a latent heat of 133.8 J·g-1,and the solidifying temperature is 49.5℃ with a latent heat of 127.5 J·g-1. In comparison to traditional composite phase change materials with a polymeric shell,the thermal conductivity of the paraffin/SiO2 materials increases due to the extra silica shell. This advantage expands applications in building materials and textile fabrics.

     

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