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WO3 Powder Applied for Energy Efficient Building Glass 21

WO3 powder may be applied for manufacturing an energy efficient building glass. The heat insulation performance of the prepared energy-saving glass: When the sunlight is strong and the outdoor temperature reaches or exceeds 33°C, the surface of the architectural glass curtain wall coated with thermal insulation coating of nano particle size tungsten oxide can be 10°C compared with the surface of the glass curtain wall without heat insulation treatment. The indoor temperature difference is 3-6°C. And the higher the temperature,…

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Yellow Tungsten Oxide Powder Applied for Energy Efficient Building Glass 18

Yellow tungsten oxide powder may be applied for preparing an energy efficient building glass. As you may know, the development trend of energy-saving glass has been good for a long time. Under the background of economic transformation, the development space of energy-saving glass is gradually opening up, and the policy implementation and demand replacement upgrade will promote the industry forward in the medium and long term. Therefore, many companies are optimistic about the future development of energy-saving glass industry. They…

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Tungsten Oxide Powder Applied for Energy Efficient Building Glass 14

Tungsten oxide powder may be applied to produce an energy efficient building glass. As a new generation of energy-saving glass, tungsten oxide energy-saving glass has better heat insulation and heat preservation performance. According to relative data, the heat preservation performance of such glass is several times higher than that of a common glass. Due to the high thermal resistance of this glass, it has better anti-condensation and anti-frosting properties, so it is also very beneficial for winter lighting in severe…

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Tungsten Trioxide Powder Applied for Energy Efficient Building Glass 13

Tungsten trioxide powder may be used to produce a new type of dingal glass, namely electrochromic glass, also known as smart glass, which can be said to be an energy efficient building glass. The reason why experts from all over the world began to study smart glass is mainly to solve the different requirements of glass heat insulation performance in different climate regions and different seasons. More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html The tungsten oxide electrochromic glass is composed of common…

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WO3 Nanopowder Applied for Energy Efficient Building Glass 13

WO3 nanopowder may be used to produce an energy efficient building glass, which is a thermal insulation glass in hot summer and a heat preservation glass in cold winter. We all know that glass doors and windows have always been the focus and breakthrough for achieving the goal of building energy conservation. As people’s decorative requirements for buildings continue to increase, glass is more and more widely applied in the construction industry. More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html While people pay…

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Yellow Tungsten Oxide Nanopowder Applied for Energy Efficient Building Glass 14

Yellow tungsten oxide nanopowder is a type of nano dingal material with excellent optical properties, and thus may be used for preparing an energy efficient building glass with high heat insulation and high heat preservation performance. As we all know, building energy efficiency is a huge project that requires everyone’s joint efforts. More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html To achieve the goal of building energy efficiency, we can start with “doors and windows.” Generally, common building glasses do not have thermal…

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WO3 Applied for Energy Efficient Building Glass 15

WO3 may be used to prepare an energy efficient building glass. The heat insulating raw material used therein is tungsten trioxide nanoparticles, which have the advantages of energy conservation and environmental protection. As we all know, building energy conservation and environmental protection are urgent issues nowadays. However, the situation is not optimistic. Without regard to the existing buildings, how many buildings under construction can meet the national energy-saving standards of 50%-65%? More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html Therefore, in order to…

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Tungsten Oxide Applied for Energy Efficient Building Glass 14

Tungsten oxide may be used to prepare a new type of energy efficient building glass. As we all know, with the in-depth development of the door and window industry, the whole industry must constantly develop new glass products to meet the needs of the market. Recently, door and window products have made new breakthroughs in structural design, and developed an energy-saving door and window of fiber reinforced plastics structure (FRP structure). More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html Some experts have combined…

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Yellow Tungsten Oxide Nanopowder Applied for New Energy Efficient Glass 14

Yellow tungsten oxide nanopowder may be applied to a new energy efficient glass such as energy-saving glass curtain wall, which is environmentally friendly of great importance in building renovation. Some experts have conducted experiments on the heat insulation effect of common insulating glass and tungsten oxide smart glass. The test results show that: More details, please visit: http://www.tungsten-powder.com/tungsten-oxide.html The ordinary insulating glass is heating up to a temperature of more than 10°C in one minute under infrared irradiation. While the…

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Yellow Tungsten Oxide Nanopowder Applied for Energy-efficient Glass 15

Yellow tungsten oxide nanopowder may be applied to energy-efficient glass in the form of a smart film. In the future, there will be more environmentally friendly smart film products coming into our lives. For example, the glass used in the energy-saving glass curtain wall is a smart glass or an electrochromic glass of tungsten oxide nanoparticles for building. It can change color according to temperature changes due to a layer of smart nano-film on the glass. More details, please visit:…

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