765 antique tile, aluminum magnesium manganese
As the name suggests, aluminum-magnesium-manganese antique tiles are roof tiles formed by stamping with aluminum-magnesium-manganese sheets. Aluminum-magnesium-manganese antique tiles meet market demand and energy-saving policy guidance.
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As the name suggests, aluminum-magnesium-manganese antique tiles are roof tiles formed by stamping with aluminum-magnesium-manganese sheets. Aluminum-magnesium-manganese antique tiles meet market demand and energy-saving policy guidance. They are superior to traditional roof tiles in terms of production environmental protection, safety, construction convenience, comprehensive cost, and aesthetics.
Magnesium-manganese antique tiles not only give buildings a better visual impact, but also their surfaces are treated with fluorocarbon coatings of different colors. They have the characteristics of antique, waterproof and anti-corrosion. The service life can reach more than 50 years, and they can be recycled after use. Become an economical and environmentally friendly choice for modern buildings.
Aluminum Magnesium Manganese Roof Panel
Light weight The density of aluminum is 2.73G/M3, only 1/3 of steel
Fluorocarbon Aluminum Magnesium Manganese 25-430
Light weight The density of aluminum is 2.73G/M3, only 1/3 of steel
65-400 Aluminum Magnesium Manganese
Light weight The density of aluminum is 2.73G/M3, only 1/3 of steel
65-430 Aluminum Magnesium Manganese
It has many advantages such as corrosion resistance, beauty, light weight, high strength, easy processing and molding. It is widely used in airport terminals, aircraft maintenance depots, stations and large transportation hubs, conference and exhibition centers, stadiums, exhibition halls, large public entertainment facilities, public service buildings, large shopping malls, commercial facilities, civil residences and other buildings. The 270 ° occlusion process of this roof panel is made by automatic professional operation of the automatic occlusion machine to bite the bilateral single support, and the package buckling method formed by the buckling edge and the support ingeniously solves the physical displacement caused by thermal expansion and contraction. This advantage is reflected in the fact that the lengthwise long-span roofing system does not deform due to internal and external forces. At the same time, the complete and complete supply of accessories for this roofing system can meet the requirements of various building forms.
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