Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering

Sintering of macroscopically inhomogeneous ceramic components is always accompanied by shape distortions due to the difference in shrinkage rates of powder elements. The objective of the present investigation is the theoretical determination of initially distorted shapes of the green bodies needed t...

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Main Authors: Maximenko A.L., Biest Der Van O., Olevsky E.A.
Format: Article
Language:English
Published: International Institute for the Science of Sintering, Beograd 2003-01-01
Series:Science of Sintering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0350-820X/2003/0350-820X0301005M.pdf
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author Maximenko A.L.
Biest Der Van O.
Olevsky E.A.
author_facet Maximenko A.L.
Biest Der Van O.
Olevsky E.A.
author_sort Maximenko A.L.
collection DOAJ
description Sintering of macroscopically inhomogeneous ceramic components is always accompanied by shape distortions due to the difference in shrinkage rates of powder elements. The objective of the present investigation is the theoretical determination of initially distorted shapes of the green bodies needed to provide near-net-shape sintered components. Calculations are based on a finite element implementation of the continuum theory of sintering. In this theory, sintering is considered as a creep under the influence of the compressive “sintering stress”. To predict the initial shapes of the components the “inverse” numerical procedure is used when the component is assumed to swell from the final shape to the initial one under the influence of the pressure equal (with the exception of sign) to the sintering stress.
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spelling doaj.art-4d5be622476c4faf8e34b109c18991e42022-12-21T20:44:46ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X2003-01-0135151210.2298/SOS0301005MPrediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sinteringMaximenko A.L.Biest Der Van O.Olevsky E.A.Sintering of macroscopically inhomogeneous ceramic components is always accompanied by shape distortions due to the difference in shrinkage rates of powder elements. The objective of the present investigation is the theoretical determination of initially distorted shapes of the green bodies needed to provide near-net-shape sintered components. Calculations are based on a finite element implementation of the continuum theory of sintering. In this theory, sintering is considered as a creep under the influence of the compressive “sintering stress”. To predict the initial shapes of the components the “inverse” numerical procedure is used when the component is assumed to swell from the final shape to the initial one under the influence of the pressure equal (with the exception of sign) to the sintering stress.http://www.doiserbia.nb.rs/img/doi/0350-820X/2003/0350-820X0301005M.pdffunctionally graded materialshape distortioncontinuum theory of sintering
spellingShingle Maximenko A.L.
Biest Der Van O.
Olevsky E.A.
Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering
Science of Sintering
functionally graded material
shape distortion
continuum theory of sintering
title Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering
title_full Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering
title_fullStr Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering
title_full_unstemmed Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering
title_short Prediction of initial shape of functionally graded ceramic pre-forms for near-net-shape sintering
title_sort prediction of initial shape of functionally graded ceramic pre forms for near net shape sintering
topic functionally graded material
shape distortion
continuum theory of sintering
url http://www.doiserbia.nb.rs/img/doi/0350-820X/2003/0350-820X0301005M.pdf
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