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Endurance environmental solutions
Endurance environmental solutions









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endurance environmental solutions

N.Rajini, V.S.Sreenivasan, A.Alavudeen, V.Arumugaprabu, Dynamic Mechanical and Thermo-Gravimetric Analysis of Sansevieria cylindrica/polyester composite: Effect of fiber length, fiber loading and chemical treatment, Composite Part B- Engineering, Vol. Ī.Alavudeen, N.Rajini, J.T.Winowlin Jappes, M.Thiruchitrambalam, N.Venkateshwaren, Mechanical properties of banana/kenaf fiber-reinforced hybrid polyester composites: Effect of woven fabric and random orientation, Materials and Design, Vol.66, (2015) 246–257.K.Mayandi, N.Rajini, P.Pitchipoo, V.S.Sreenivasan, J.T.Winowlin Jappes, A.Alavudeen, A comparative study on characterisations of Cissus quadrangularis and Phoenix reclinata natural fibres, Journal of Reinforced plastics and composites vol. K Mayandi, N Rajini, P Pitchipoo, J T Winowlin Jappes, A Varada Rajulu, Extraction and Characterization of New Natural Lingo-Cellulosic Fiber Cyperus Pangorei, International Journal of Polymer Analysis and characterization, DOI: 0.1080/1023666X.2016.1132064, 2015, (Impact Factor-1.264) KS Kumar, I Siva, N Rajini, J T Winowlin Jappes, SC Amico, Layering pattern effects on vibrational behavior of coconut sheath/banana fiber hybrid composites, Materials and Design, 90 795–803, 2016. Recent publications in peer-reviewed journals related to the proposed research area He is currently working in University Putra Malaysia as visiting Scientist for the period of two month in the field of hybrid composites. He has completed his postdoctoral fellowship at Ghent University, Belgium in the field of Tribological Characteristics of plant fiber composites for medium load applications. Currently, he is guiding seven PhD scholars. He has published 35 international peer reviewed journals and 30 international conferences in the field of natural fiber composites.

endurance environmental solutions

His research area is mainly focused on development and material characterization of hybrid composites. Recently, he is received a Young Scientist Fellowship through the Start up Research Grant Project by DST, Govt of India. Rajini Nagarajan, obtained his PhD from Department of Mechanical Engineering – Kalasalingam University (2013). The Indian Investigator of this project proposal, Prof.

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  • The review process revealed that the life cycles of hybrid FRP composites mainly affected by stress cycle based on continuous usage. However, ageing properties of hybrid polymer composites in different environment conditions need to study for various applications. The combination of natural/synthetic hybrid composites and addition of some nano fillers enhance the durability performance of hybrid composites significantly. are found to be dominant in the FRP composites under the hydrothermal and acid environment conditions also covered. The failure mechanisms such as delamination, degradation of fibre and matrix, poor interfacial adhesion, matrix surface cracking, etc. Further, most of the FRP composites are rapidly degraded by underwater conditions at high temperatures. The thermal ageing, hydrothermal ageing, sea water, acid and alkali environment, ultraviolet radiation and stress cycle effects were extensively discussed with suitable scientific evidence in this work. This review paper is mainly covers durability studies of various FRP hybrid composites under different environmental conditions. Hence, it is necessary to create the database for the durable and sustainable low-density FRP hybrid composites with the support of significant experimental investigations. However, these materials have finding limitations in exceptional circumstances due to the unpredicted sustainability. Fibre reinforced polymer (FRP) hybrid composites builds vertically due to the achievement of custom-made properties with lightweight.











    Endurance environmental solutions