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Development of electrochromic evacuated advanced glazing

机译:电致变色真空高级玻璃的开发

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Electrochromic evacuated advanced glazing has been developed, combining optimum dynamic control of the solar radiation penetrating into buildings with a high degree of thermal insulation. This was achieved by the optimisation of the electrochromic device materials (electrochromic, ion storage, protective layers, transparent conductors and polymer electrolytes) and by the refinement of a sealing method for evacuated glazing. Electrochromic evacuated glazing prototypes with dimensions up to 40 cm x 40 cm have been fabricated using vacuum techniques and chemical methods. The prototypes exhibit excellent optical and thermal performance, with a contrast ratio up to 1:32 (visible dynamic transmittance range T_(lum, bleached)= 63% and T_(lum, colored) = 2%), coloration efficiency up to 92 cm~2/C and mid-pane U-values as low as 0.86 W m~(-2) K~(-1). Their durability in relation to real working environmental conditions has been assessed through indoor and outdoor testing. Such a glazing can be used in building applications to improve occupant thermal comfort, contribute to a reduction in space heating and cooling loads and allow for increased areas of fenestration thereby reducing artificial lighting loads. These factors reduce the energy demand for the building and therefore contribute to the reduction of carbon dioxide emissions.
机译:已经开发出电致变色真空高级玻璃,它结合了对进入建筑物的太阳辐射的最佳动态控制,并具有高度的隔热性。这是通过优化电致变色设备材料(电致变色,离子存储,保护层,透明导体和聚合物电解质)以及改进真空玻璃的密封方法来实现的。已经使用真空技术和化学方法制造了尺寸高达40 cm x 40 cm的电致变色真空玻璃原型。原型具有出色的光学和热性能,对比度高达1:32(可见动态透射率范围T_(明暗,漂白)= 63%,T_(明暗,有色)= 2%),着色效率高达92 cm 〜2 / C和中窗格U值低至0.86 W m〜(-2)K〜(-1)。通过室内和室外测试,评估了它们在实际工作环境条件下的耐久性。这种玻璃可以用于建筑应用中以改善居住者的热舒适性,有助于减少空间的加热和冷却负荷,并允许增加开窗面积,从而减少人造照明负荷。这些因素减少了建筑物的能源需求,因此有助于减少二氧化碳的排放。

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