Thursday, October 4, 2012

Returns Of Using Fiber Reinforced Polymer (FRP) Products

By Bob Jorgenson


Fiber Reinforced Polymer (FRP) compounds are made from plastic combined together with a fiber based material to create a material that is durable and strong. Some of the commonest fibers in use include aramid, glass, and carbon but some applications do require the use of paper and asbestos. The products are made out of a mould and the plastic and fibrous material is poured in, the fibrous material helps hold shape and strength.

They are corrosion resistant composites hence their ability to be in use in the most critical applications where rust is likely to affect the tensile strength of material used. They have been used in many applications for about fifty years now in environments that require materials that are well able to withstand high temperatures and chemicals. In addition, used for making long lasting structures.

Just about anything you can think of is made out of this material and the list is endless. Some of the applications include the manufacture of boats, vehicle spoilers, and plane rudders. This is because they are easy to bend and shape into any form by use of a mould.

Fiberglass material is a popular choice for applications that require materials with strength and yet are light. This leads to reduction in operational and production costs and the weight is cut to almost sixty percent in some applications. There is also the added advantage in the reduction of parts as they can be combined into simpler molded shapes.

Fiberglass products are virtually maintenance free and the only maintenance is regular cleaning considering some of the applications like making of pipes and tanks. It is also easy to get custom-made parts and spares once the manufacturing company understands the end use of product they can strengthen or make it flexible to suit the part. Some considerations with customization include proper thickness of wall as well as the shapes.

Merits of Fiber Reinforced Polymer (FRP) consist of it is a material that is well able to stand the harshest of environments with high impact as well as extreme temperatures. The material can be made flexible or stiff during the manufacturing stage. Furthermore, it has been found that it has low thermal expansion therefore making it an ideal material for use in situations where temperatures regularly fluctuate.




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