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Advanced Optimization of Induction Furnace Refractory Wall
Details
This book provides recommendation to find optimum thickness for induction furnace refractory wall. An induction furnace is an electrically run furnace used for melting & heating of metals. The requirements of minimum electric power utilization and environmental protection have become extremely important, that is the minimization of the heat losses. Mostly there are heat losses by conduction, convection and radiation, and hence the improvement in refractory material and optimization of wall thickness of refractory wall is desirable. Alumina ramming mass is used as refractory material to prevent losses but proper optimization is required in thickness of refractory wall. Optimum thickness falling heat loss in furnace wall with profitable cost is desired. Aim for this research work is to establish optimization of refractory wall thickness of induction furnace for minimum heat losses during melting of metals. For completing the objective of this study, calculations have been done for theoretical heat losses by using existing furnace data which are later compared with FEA result for the validation by Ansys software. This book is targeting individuals working in foundries and scholars.
Autorentext
Dr. Nirajkumar Mehta is working as an Associate Professor of Mechanical Engineering Department at ITM Universe, Vadodara, Gujarat, India. He has published and presented 45 research papers in National and International Journals and Conferences. He is also Author of 4 International Books. He is having 12 years of Experience in Industry and Academia.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786202310963
- Genre Mechanical Engineering
- Sprache Englisch
- Anzahl Seiten 64
- Herausgeber Scholars' Press
- Größe H220mm x B150mm x T4mm
- Jahr 2018
- EAN 9786202310963
- Format Kartonierter Einband
- ISBN 6202310960
- Veröffentlichung 26.04.2018
- Titel Advanced Optimization of Induction Furnace Refractory Wall
- Autor Nirajkumar Mehta , Ravi Popat
- Untertitel Through Finite Element Method
- Gewicht 113g