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Fulltext / DOI:
doi:10.14459/2021md1635091
Author:
Philipp Lechner
Original title:
A Material Model for Foundry Cores
Translated title:
Ein Materialmodell für Gießereikerne
Document type:
Buch
Institution:
TUM School of Engineering and Design
Translated subtitle:
Das spröde Bruchverhalten von chemisch gebundenen Gießereisanden
Language:
en
Abstract:
In this dissertation, a material model capable of predicting the mechanical behaviour of foundry cores was developed. This model enables mechanical FEM simulations along their process chain. It is parameterised with several novel test setups, which determine the fracture strength under multiaxial loading. In addition, a non-destructive method for quantifying the elastic parameters of core materials has been developed. This material model was implemented in several FEM simulations and experimenta...     »
Last change:
24.02.2022
Controlled terms (agricultural engineering):
foundry cores, material model, foundry sand, process simulation, inorganic binder systems, Mohr-Coulomb, Drucker-Prager, Weibull, failure surface, bi-axial material testing, tri-axial material testing, brittle fracture, core handling, core storage, creep, elastic constants, impulse excitation, non-destructive characterisation
Pages:
184
File size:
54480446 bytes
Series volume:
31
Notes:
New edition of the dissertation of the same title, which was published by the Technical University of Munich in 2021
WWW:
https://mediatum.ub.tum.de/?id=1635091
Series:
Schriftenreihe Umformtechnik und Gießereiwesen
ISBN:
978-3-95884-073-7
TUM classification:
FER 210; FER 070
Year:
2021
Original subtitle:
The Brittle Fracture Behaviour of Chemically-Bound Foundry Sands
Publication :
Lehrstuhl für Umformtechnik und Gießereiwesen (utg), TUM School of Engineering and Design, Technical University of Munich
Subject group:
FER Fertigungstechnik
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