Mold and Core Sands in Metalcasting: Chemistry and Ecology (PDF)
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The metal casting, uses large amounts of natural resources, energy and metals as well as generates significant amounts of gases and solid wastes, which have an essential influence on the natural environment and work conditions in casting houses. The condition of the further development is the adjustment to the strategy of the sustainable development.This book examines potential solutions to the economic, ecological, and occupational hazards generated by the foundry industry. It focuses on emissions of chemical compounds during the preparation and formation of molding sands, molds pouring with molten metal, molds cooling and castings knocking out. It also addresses the effects of the spent molding sands reclamation process and the influence of spent sands on the environment during their storage. Establishing the most sustainable techniques for limiting the negative impact of foundry processes on the environment is explored in detail. The book will be valuable toacademics and industry professionals alike.
- Describes the mechanisms of hardening and thermal destruction of individual binders in moulding and core sands;
- Assesses the influence of moulding and core sands technology on the environment;
- Discusses state of the art moulding and core sand technology.
Dr. Angelika Kmita is a assistant professor at AGHUniversity of Science and Technology, Krakow, Poland. Her research focuses on design, synthesis and characterization of hybrid nanoparticles and nanocomposites, as well as environmental concerns in the foundry industry. She is the author or co-author of 45 scientific papers, the co-author of 3 monographs, and the co-author of 3 patents. She represents Poland in COST (European Cooperation in Science & Technology) as MC substitute in Action CA18125 .
- Autoren: Mariusz Holtzer , Angelika Kmita
- 2020, 1st ed. 2020, 359 Seiten, Englisch
- Verlag: Springer International Publishing
- ISBN-10: 3030532100
- ISBN-13: 9783030532109
- Erscheinungsdatum: 18.09.2020
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- Größe: 12 MB
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