About Us

About Vardhman Composites

We would like to take this opportunity of briefly introduce Vardhman Composites India This company is a new vision of “Vardhman Composites India” which is a well established organization for the past 35 years.

Mr. Navneet Jain, B.E. (Mech), is the CEO of Vardhman Composites India. He started his Career in Extrusion Industry, Manufacturing various kinds of Pipes & Profiles. Having surveyed and researched WPC Market for last 5 Years, he has now taken the charge to make BVW World’s No. 1 WPC Brand.
After a big research & development for protecting “The Earth”, Vardhman Composites India introduced a unique ECO FRIENDLY product into the market which will save the “Trees” as well as our “Planet”. This product is introduced in the market under the Brand Name “BVW”.

This product is made by the special composition of Additives & Resins and the best part of this products is that it is water proof, flame retardant and anti termite. This product is used very successfully in dry as well as in coastal area. It is the total substitute of wood & wooden products like Doors, Flooring, Decking, Cladding, Railing, Fencing etc.

Vardhman Composites India, is spread over an area of 50,000 sq ft. approx. and is equipped with the state of art compression molding, extrusion lines, U.V printer machine, engraver, room temperature molding, resin coating, filament winding, pultrusion, dough molded components, sheet molded components and vacuum molding composite profile making machines European & other countries.
WPC increase the efficiency of wood usage by up to 40% compared to traditional wood processing. WPC have Good Mechanical Properties, High Dimensional Stability. They are tough, stable and can be extruded to High Dimensional tolerance. WPC are wood products that need no further processing.
Wood-polymer composites (WPC) increasingly gain in popularity in the building industry. To date there is less long-term experience from façade applications which reliably confirm that relevant material properties are sufficient throughout their expected lifetime. Therefore it is common practice to simulate WPC material ageing in climate chambers. Artificial conditions, however, not necessarily mirror practical applications. To get a clearer picture about WPC ageing this literature review draws a comparison between artificial and natural weathering of divers WPC compound formulations usually applied in cladding products. It was found that both conditioning types provoke comparable effects in the material. UV-light in combination with moisture leads to polymer crystallinity with chain scissions and delignification. As a result, interfacial bonding gets weaker and fibers become detached from the matrix. In the further course lightening penetrates deeper reducing the stress bearing cross-section of the WPC profile. In this view, material ageing of WPC manifests itself as highly dependent on promoting agents. These aim at improving interfacial bonding between fibers and matrix and stabilizing polymer chains against radiation.

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