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The ETFE membrane playground of Shanghai University of Engineering Technology Songjiang Campus is a landmark building of the campus and an important sports facility. It is of great significance for meeting the needs of physical education, improving the image of the school and promoting the construction of campus culture. The land area of the project is 11,500 square meters, and the construction area is about 8,800 square meters, among which the sports field area is 6,300 square meters. A variety of sports competitive activities can be held.

Wanhao as a professional engaged in space structure, large span roof design entity technology enterprises, with rich experience in the membrane structure and advanced technology, in Shanghai engineering technology campus ETFE membrane playground played a vital role in the project, in the project, Wanhao not only provides high quality ETFE membrane materials, also ensure the stability and safety of the membrane structure. Its professional construction team strictly carries out the construction in accordance with the design requirements, to ensure the overall beauty and practicality of the wind and rain playground.

ETFE membrane structures have gained significant popularity in modern architecture due to their numerous advantages. As a type of fabric building structure, ETFE filmoffer unparalleled flexibility and versatility. ETFE membranes are weather-resistant and durable, can withstand long-term harsh environmental conditions, and can also be easily molded into various shapes and sizes, making them ideal for creating visually striking and unique architectural designs such as stretched structures and shading sails.such as tensile structures and shade sails.

Unlike traditional building materials, ETFE membranes are extremely lightweight, which reduces the structural load on the supporting framework. This allows for larger spans and more open spaces without the need for heavy and bulky supports. Moreover, ETFE membranes are highly transparent, allowing natural light to flood the interior spaces. This not only enhances the aesthetic appeal but also reduces the need for artificial lighting, leading to significant energy savings.Overall, ETFE membrane structures combine functionality, aesthetics, and sustainability, making them a preferred choice for modern building projects.
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