Finite Element Simulation of Ceramic Powder Compaction | Uniaxial Compaction of Alumina Ceramic Powder

Omed Gh. Abdullah

ISBN 10: 3659926507 ISBN 13: 9783659926501
Verlag: LAP LAMBERT Academic Publishing, 2016
Neu Taschenbuch

Verkäufer preigu, Osnabrück, Deutschland Verkäuferbewertung 5 von 5 Sternen 5 Sterne, Erfahren Sie mehr über Verkäufer-Bewertungen

AbeBooks-Verkäufer seit 5. August 2024


Beschreibung

Beschreibung:

Finite Element Simulation of Ceramic Powder Compaction | Uniaxial Compaction of Alumina Ceramic Powder | Omed Gh. Abdullah | Taschenbuch | 152 S. | Englisch | 2016 | LAP LAMBERT Academic Publishing | EAN 9783659926501 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. Bestandsnummer des Verkäufers 103480421

Diesen Artikel melden

Inhaltsangabe:

The green compact of uniform density is a fundamental requirement for the production of a good quality and high strength part. Density inhomogeneity can be caused by friction force owing to interparticle movement and relative slip between the powder particles and the die wall. Also, the die geometry and the sequence of punch movements results in a lack of density homogeneity for a compact of complex shape. In this study the mechanical behavior of alumina ceramic powder during maximum applied stress stage to the unloading and after the ejection are analyzed using Finite Element Methods, in which the powder is modeled as an elastic–plastic continuum material. The modify Drucker–Prager Cap model was chosen as the yield surface of the medium, the surface consists of a linear shear failure, transition, and elliptic cap surface. The elastic properties and plastic parameters of the model were expressed as a function of density, from which realistic powder properties are generated and fed into ABAQUS finite element code; and the constitutive modeling of the frictional behavior of the powder in the die is modeled by Coulomb's friction low.

Über die Autorin bzw. den Autor: Omed Gh. Abdullah, is an assistant professor of materials science in physics department, college of Science, University of Sulaimani, Kurdistan Region-Iraq. His main research interests include fabrication and characterization of advanced materials, polymer nanocomposites, as well as simulation of powder compaction.

„Über diesen Titel“ kann sich auf eine andere Ausgabe dieses Titels beziehen.

Bibliografische Details

Titel: Finite Element Simulation of Ceramic Powder ...
Verlag: LAP LAMBERT Academic Publishing
Erscheinungsdatum: 2016
Einband: Taschenbuch
Zustand: Neu

Beste Suchergebnisse bei AbeBooks