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A phase field model of pressure-assisted sintering

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Title: A phase field model of pressure-assisted sintering
Authors: Dzepina, B
Balint, D
Dini, D
Item Type: Journal Article
Abstract: The incorporation of an efficient contact mechanics algorithm into a phase field sintering model is presented. Contact stresses on the surface of arbitrarily shaped interacting bodies are evaluated and built into the model as an elastic strain energy field. Energy relaxation through deformation is achieved by diffusive fluxes along stress gradients and rigid body motion of the deforming particles maintain contact between the particles. The proposed model is suitable for diffusion deformation mechanisms occurring at stresses below the yield strength of a defect-free material; this includes Nabarro-Herring creep, Coble creep and pressure-solution. The effect of applied pressure on the high pressure-high temperature (HPHT) liquid phase sintering of diamond particles was investigated. Changes in neck size, particle coordination and contact flattening were observed. Densification rates due to the externally applied loads were found to be in good agreement with a new theory which implicitly incorporates the effect of applied external pressure.
Issue Date: 1-Feb-2019
Date of Acceptance: 13-Sep-2018
URI: http://hdl.handle.net/10044/1/64759
DOI: https://dx.doi.org/10.1016/j.jeurceramsoc.2018.09.014
ISSN: 0955-2219
Publisher: Elsevier
Start Page: 173
End Page: 182
Journal / Book Title: Journal of the European Ceramic Society
Volume: 39
Issue: 2-3
Copyright Statement: © 2018 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/BY/4.0/)
Sponsor/Funder: Engineering & Physical Science Research Council (EPSRC)
Element Six Limited
Funder's Grant Number: EP/N025954/1
P/O 19971
Keywords: 0912 Materials Engineering
Materials
Publication Status: Published
Online Publication Date: 2018-09-15
Appears in Collections:Mechanical Engineering
Faculty of Natural Sciences
Faculty of Engineering