What makes aircraft hangars tensile structure so attractive?

Aircraft hangar tensile structure? Really? It could be surprising, we know, but it’s not rare. A fun fact: tensile materials were first invented to be used as coatings for aerospace items. So it must not come as a shock that tensile structures are being used in the construction of aircraft hangers. If you have been thinking that how can a flexible, lightweight and elastic material turn as a shed for aero planes, you have been getting it all wrong. In this brief blog we will explain why. We will also list out some of the properties of tensile structure that makes them fit to be used as cover for this huge flying machine. Read on.

·         It’s elastic and flexible – but that doesn’t mean its liquid. In fact, elasticity helps a lot in forming new shapes and designs. As you already know, tensile structure is nothing but a combination of curves balanced by a force of tension. The flexibility offered by tensile materials makes their cutting, welding and forming easier.

·         Prefabrication aids quicker installation – imagine that you ordered an aircraft hangar and it was delivered to you within a week. Won’t that be wonderful? A typical brick and mortar structure would at least take a month or two if not longer. Tensile structure, being constructed by prefabrication, makes their completion faster. It’s a process in which a big structure is disintegrated into smaller units and each unit is fabricated simultaneously and at different locations. When they are done, all that you have to do is bring them back to the destination and assemble them together. It’s that easy.

·         Durability is its plus point – an average tensile structure can easily last for at least 10-15 years thanks to their exceptional resistance to weather elements, chemical reactions etc. Some like ETFE are resilient to UV rays as well. If maintained properly, they can last even longer. A good value of your money, don’t you think?

·         Strong and beautiful – many of the tensile materials possess a very high ultimate tensile strength and elongation at breakage. Furthermore, they can be easily be manufactured in multitude of colors and elegant designs. All this qualities don’t just make them very attractive but also valuable.


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