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Aggiungi al carrelloTaschenbuch. Condizione: Neu. Titanium Alloy Foams For Biomedical Applications | Abhishek Sharma (u. a.) | Taschenbuch | Englisch | 2021 | Scholars' Press | EAN 9786138961840 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu.
Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Germania
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Aggiungi al carrelloTaschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Titanium and its alloy based foam have gained a lot of interest for research in recent years as implants in biomedical applications. This book deals about titanium alloy foams prepared by powder metallurgy. The foams prepared by using titanium, copper and silver powders. Space holder material wax was used in two different sizes: 200-500 microns and 500-1000 microns in order to observe the effect of different pore size on mechanical properties and density. The sintered samples were examined in terms of relative density, percent porosity, pores size and distribution, compressive strength and flexural strength. The results show that percent porosity of sintered samples in case of copper and silver alloyed titanium foam is less than pure titanium foams due to higher compressibility of silver and copper powders. Compressive strength and flexural strength of alloy foam is higher than pure titanium due to solid solution strengthening. 92 pp. Englisch.
Da: Majestic Books, Hounslow, Regno Unito
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Aggiungi al carrelloCondizione: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Sharma AbhishekAbhishek Sharma, received his M. Tech Degree in Stress & Vibration Analysis in the Department of Mechanical Engineering from Maulana Azad National Institute Technology, Bhopal, M.P. His research interest is in the fiel.
Da: Biblios, Frankfurt am main, HESSE, Germania
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Aggiungi al carrelloTaschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Titanium and its alloy based foam have gained a lot of interest for research in recent years as implants in biomedical applications. This book deals about titanium alloy foams prepared by powder metallurgy. The foams prepared by using titanium, copper and silver powders. Space holder material wax was used in two different sizes: 200-500 microns and 500-1000 microns in order to observe the effect of different pore size on mechanical properties and density. The sintered samples were examined in terms of relative density, percent porosity, pores size and distribution, compressive strength and flexural strength. The results show that percent porosity of sintered samples in case of copper and silver alloyed titanium foam is less than pure titanium foams due to higher compressibility of silver and copper powders. Compressive strength and flexural strength of alloy foam is higher than pure titanium due to solid solution strengthening.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 92 pp. Englisch.
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Aggiungi al carrelloTaschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Titanium and its alloy based foam have gained a lot of interest for research in recent years as implants in biomedical applications. This book deals about titanium alloy foams prepared by powder metallurgy. The foams prepared by using titanium, copper and silver powders. Space holder material wax was used in two different sizes: 200-500 microns and 500-1000 microns in order to observe the effect of different pore size on mechanical properties and density. The sintered samples were examined in terms of relative density, percent porosity, pores size and distribution, compressive strength and flexural strength. The results show that percent porosity of sintered samples in case of copper and silver alloyed titanium foam is less than pure titanium foams due to higher compressibility of silver and copper powders. Compressive strength and flexural strength of alloy foam is higher than pure titanium due to solid solution strengthening.