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Tribo-Mechanical Behavior of Hybrid Polymer Composite
Details
Polymers and their composites form an important class of tribo-engineering materials, which are invariably used for the manufacture of mechanical components, where wear performance is a key parameter. The possible utilization of iron mine waste (Over burden and topsoil aggregate) for developing a new class of hybrid polymer composites has been strategized in this book. The composites were fabricated using hand-layup process by reinforcing woven glass fibers in the epoxy polymer filled with different weight proportions of iron-mud. Wear experiments (Abrasion and Erosion wear) were conducted according to Box-Behnken design approach as per ASTM standards under controlled laboratory conditions. Also, a prediction tool based on artificial neural network was implemented to investigate the tribological properties of the composites and the results were compared with the experimental ones. A metaheuristic approach like particle swarm optimization was also used to reveal the minimum wear at optimal parametric combination. Finally, the morphology of the worn surfaces was examined by using scanning electron microscopy and the possible wear mechanisms were critically examined and presented.
Autorentext
Dr. Biswajyoti Pani completed his B.Tech in Mechanical Engineering from GHITM, Puri under BPUT, Odisha in the year 2009 and M.Tech in Mechanical Engineering (Manufacturing Processes and System) from KIIT-DU, Odisha, India in the year 2011. Finally, he has been awarded with Ph.D. in Mechanical Engineering from KIIT-DU, Odisha, India in the year 2019
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786202564281
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 204
- Größe H220mm x B150mm x T13mm
- Jahr 2020
- EAN 9786202564281
- Format Kartonierter Einband
- ISBN 6202564288
- Veröffentlichung 25.05.2020
- Titel Tribo-Mechanical Behavior of Hybrid Polymer Composite
- Autor Biswajyoti Pani , Polymersetty Chandrasekhar , Saranjit Singh
- Untertitel An Experimental Investigation on Iron-Mud Filled Glass-Fiber / Epoxy Composite
- Gewicht 322g
- Herausgeber LAP LAMBERT Academic Publishing