Membrane structure landscape It is a structural system combining architecture and structure. It is a kind of space structure that combines the high strength flexible membrane material with the support system to form a stable surface with a certain rigidity and can bear a certain external load. It is free and light in shape, flame retardant, easy to make, fast in installation, energy-saving, easy to use, and so on, which makes it widely used around the world. This structural form is particularly suitable for large stadiums, population corridors, sketches, public leisure and entertainment squares, exhibition venues, shopping and other fields.
The classification of membrane structure landscape forms can be roughly divided into skeleton, tensioned and inflatable membrane structures in terms of structure. After the skeleton membrane structure is composed of steel structure or integrated material, the membrane material is tensioned above the roof skeleton. The lower support structure has high stability. Because the roof shape is simple, the opening is not easily restricted, and the economic benefits are high, It is widely applicable to spaces of any size. The tensioned membrane structure is composed of membrane materials, steel cables and pillars. The steel cables and pillars are used to introduce tension into the membrane materials to achieve stability.
The membrane structure landscape is not only a creative, innovative and beautiful form that can be practiced, but also a structural form that shows the spirit of membrane structure. In recent years, large span space also adopts the form of steel cable net composed of steel cables and compressed materials to support the upper membrane materials. Its construction precision is high, structural performance is strong, and it has rich performance. Inflatable membrane structure Inflatable membrane structure is to fix the membrane material around the roof structure, use the air supply system to make the indoor air pressure rise to a certain pressure, so that there is a pressure difference between the inside and outside of the roof to resist external forces.
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