Tungsten

Information
Tungsten Trioxide Powder Applied for Window Heat Insulation Film 122

Tungsten trioxide powder may be applied for producing window heat insulation film. Tungsten trioxide powder may be prepared by micro-emulsion method. The preparation method has the advantages of no need of heating, simple experimental device, convenient operation, controllable product composition and particle size, and the like. However, it has the disadvantages of high costs and slight agglomeration. Preparation of Tungsten Trioxide by Micro-emulsion Method N-butyl alcohol, CTAB and cyclohexane were mixed and stirred. Na2WO4 aqueous solution was added and stirred…

Information
Tungsten Trioxide Powder Applied for Heat Insulation Masterbatch 113

Tungsten trioxide powder may be used to manufacture heat insulation masterbatch. And the prepared heat-insulating masterbatch can be used for the preparation of heat-insulating glass and the like. So, the room temperature and temperature in automobile can be reduced. And it also reduces the cooling fee. The WO3 powder may be prepared by template method with the advantages of simple production process, high repetition rate, good predictability, uniform product morphology and stable performance. However, the disadvantage is that the templating…

Information
Tungsten Trioxide Powder Applied for Thermal Insulating Glass 115

Tungsten trioxide powder may be applied for producing thermal insulating glass. And this type of glass can be seen in many places such as offices, home, exhibition hall, and so on. WO3 may be prepared by template method. For example, the Na2WO4 solution is inlet with nitrogen, stirred, and added with HCl, and then the washed precipitate is dissolved with oxalic acid solution to obtain tungsten trioxide sol. The AAO template is immersed in it for a period of time,…

Information
Tungsten Trioxide Powder Applied for Heat Insulation Coating 145

Tungsten trioxide powder has the advantages of uniform distribution and good dispersibility, which may be used for producing heat insulation coating, thereby applying to heat-insulating glass. WO3 plays a role of high heat insulation and high visible light transmission in thermal insulation glass. And it is not easy to fade. Also, it will not affect wireless communication. Furthermore, its resistance to UV is up to 99% so that it can prevent furniture from fading and protect people from skin tanning.…

Information
Tungsten Trioxide Powder Applied for Thermal Insulation Coating 136

Tungsten trioxide powder may be prepared by hydrothermal method with the advantages of complete particles, small particle size, uniform distribution, and good dispersibility, and may be used to produce thermal insulation coating. The tungsten trioxide powder prepared by the hydrothermal method can directly synthesize the metal or its precursor, avoiding the process of converting to oxide by calcining in the general liquid phase synthesis method, thereby greatly reducing or even avoiding the formation of hard agglomeration. And it can effectively…

Information
Tungsten Trioxide Powder Applied for Thermal Insulation Film 127

Tungsten trioxide powder applying for thermal insulation film may be prepared by hydrothermal synthesis method. For example, the Na2WO4 solution is acidified with HCl and hydrothermally reacted at 130~200°C for 1~5 days. Eventually, tungsten trioxide with uniform particle size distribution can be obtained. The obtained tungsten trioxide can be used for the preparation of a variety of heat-insulating materials, such as film, coating, and so on, thereby being applied to heat-insulating glasses and the like. What is hydrothermal synthesis? Hydrothermal…

Information
Tungsten Trioxide Powder Applied for Thermal Insulation Paper 138

Thermal insulation paper prepared by using tungsten trioxide powder as raw material has the advantages of high temperature resistance, high heat insulation, good electrical insulation, fire prevention, nice mechanical processing performance, high strength, excellent tear resistance, high flexibility, and low slag ball content, etc. The tungsten trioxide can be prepared by sol-gel method. Tungsten Trioxide Powder Prepared by Sol-gel Method Na2WO4 was used as raw material, hydrochloric acid was added to make a sol, and then cetrimonium bromide (CTAB) surfactant…

Information
Tungsten Trioxide Applied for Ceramic Microsphere 157

Tungsten trioxide may be prepared by the sol-gel method and be applied for ceramic microsphere. The WO3 powder prepared by sol-gel method has the characteristics of small particle size, good uniformity and high purity. And it is easy to be industrialized. However, the disadvantage is that it is difficult to control the transformation of the sol-gel, and easy to form hard agglomeration after drying. Besides, the synthesis cycle is often longer. Preparation of Tungsten Trioxide by Sol-Gel Method Na2WO4 was…

Information
Tungsten Trioxide Applied for Nano-ceramic Color Master 170

Tungsten trioxide may be applied for the manufacture of nano-ceramic color master. And this type of color master can be applied in coating industry, which combines the best performance of WO3 in one. Furthermore, it is also has the characteristics of safety and environmental protection. WO3 may be prepared by sol-coprecipitation method or chemical precipitation method. Preparation of Tungsten Trioxide By Sol-coprecipitation Method Sol-coprecipitation method is a kind of precipitation method. Tungsten trioxide powder with particle size of 3~9nm may…

Information
Tungsten Trioxide Applied for Nano-ceramic Dispersion Solution 152

Tungsten trioxide may be applied for the production of nano-ceramic dispersion solution, which is a type of nano energy-saving coating with high visible light transmittance and excellent heat insulation effect. In other words, WO3 can be applied in the field of building energy conservation. Tungsten trioxide can be prepared by precipitation method. The precipitation method is mainly divided into coprecipitation method and chemical precipitation method. The precipitation method usually mixes different chemical components in the solution state. The basic principle…

1 332 333 334 335 336 357