Insulated glass is composed of two or more pieces of glass. The glass is separated by spacers filled with desiccant inside to form a glass product in a dry space.
Characteristic
- Larger energy saving effect
- Improve indoor environment
- Rich tones and artistry
It is suitable for office buildings, exhibition rooms, libraries and other public facilities and special buildings that require constant temperature and humidity such as computer rooms, precision instrument workshops, and chemical factories. In addition, it can also be used for sun protection and anti-dazzle places.
The main purpose
Insulating glass is mainly used in buildings that require heating, air conditioning, noise prevention or condensation, and no direct sunlight and special light. It is widely used in residences, restaurants, hotels, office buildings, schools, hospitals, shops and other occasions that require indoor air-conditioning. It can also be used for doors and windows of trains, automobiles, ships, and freezers.
Insulating glass is mainly used for outer glass decoration. Its optical performance, thermal conductivity, and sound insulation coefficient should all comply with national standards. Only when the structure is reasonable and the design meets the standard can the insulating glass exert its heat insulation, sound insulation, anti-theft, and fire prevention effects. The vacuum double-layer tempered glass can reach laboratory standards even more! There are also hollow glass with inert gas and color pigment gas added on the market, as well as the addition of beautiful scenery strips for reinforcement and decoration.
The role of hollow glass aluminum spacers: Aluminum is called an active metal element, but a dense oxide film will form on its surface in the air, preventing it from continuing to interact with oxygen and water. It can react with oxygen at high temperatures and release a lot of heat. With this high heat of reaction, aluminum can replace metal from other oxides (the thermite method).
Parameter Introduction | ||||||||
Conbination Structure | Thickness | Transmission Property | Heat Transfer Rate(W/㎡ K) | Coefficient | ||||
Visible Light | Solar Radiation | |||||||
Trans. Rate | Ref. Rate | Absor. Rate | Direct Trans. | Ref. Rate | ||||
5mm+6A+5mm | 16mm | 80 | 14.1 | 21.5 | 66 | 12.2 | 3.61 | 0.83 |
6mm+6A+6mm | 18mm | 79.1 | 14 | 25.1 | 63 | 11.6 | 3.35 | 0.82 |
8mm+6A+8mm | 22mm | 77.1 | 13.6 | 31.2 | 57.5 | 11.1 | 3.31 | 0.76 |
10mm+12A+10mm | 32mm | 75.4 | 13.6 | 36.5 | 53.1 | 10.5 | 2.87 | 0.73 |
Product Applications
Insulated glass is mainly used in buildings that require heating, air conditioning, noise or condensation prevention, and the need for direct sunlight and special light. It is widely used in residential, hotel, office buildings, schools, hospitals, shops and other places where indoor air conditioning is required.
1.Insulated Glass Curtain Wall | 2.Insulated Glass Skylight | 3.Insulated Glass Window |
4.Insulated Glass Door | 5.Insulated Glass Sunroom | 6.Insulated Glass Partition |
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