Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics

In this study, decomposition and densification behavior of PbAlNbO3-PbZrTiO3 (PAN-PZT) ceramics were characterized for powder injection molding process. Thermal gravity analysis and in-situ dilatometer experiment were carried out to construct master curve. Based on master curve model approach, one-c...

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Main Authors: Jun Sae Han, Jae Man Park, Seong Jin Park
Format: Article
Language:English
Published: Polish Academy of Sciences 2020-07-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/116389/PDF/AMM-2020-3-22-Seong%20Jin%20Park.pdf
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author Jun Sae Han
Jae Man Park
Seong Jin Park
author_facet Jun Sae Han
Jae Man Park
Seong Jin Park
author_sort Jun Sae Han
collection DOAJ
description In this study, decomposition and densification behavior of PbAlNbO3-PbZrTiO3 (PAN-PZT) ceramics were characterized for powder injection molding process. Thermal gravity analysis and in-situ dilatometer experiment were carried out to construct master curve. Based on master curve model approach, one-combined master debinding curve (MDC) and master sintering curve (MSC) were constructed for piezoelectric PAN-PZT ceramics. Derived curves matched well with the experimental data. Process optimization and material development will be conducted based on characterization of master curve parameters.
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spelling doaj.art-0bbf188e494f462f8bfcb8b3b18ddf192022-12-22T02:48:50ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092020-07-01vol. 65No 310991103https://doi.org/10.24425/amm.2020.133224Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 CeramicsJun Sae HanJae Man ParkSeong Jin ParkIn this study, decomposition and densification behavior of PbAlNbO3-PbZrTiO3 (PAN-PZT) ceramics were characterized for powder injection molding process. Thermal gravity analysis and in-situ dilatometer experiment were carried out to construct master curve. Based on master curve model approach, one-combined master debinding curve (MDC) and master sintering curve (MSC) were constructed for piezoelectric PAN-PZT ceramics. Derived curves matched well with the experimental data. Process optimization and material development will be conducted based on characterization of master curve parameters.https://journals.pan.pl/Content/116389/PDF/AMM-2020-3-22-Seong%20Jin%20Park.pdfmaster debinding curvemaster sintering curvepan-pztpowder injection moldingdilatometer
spellingShingle Jun Sae Han
Jae Man Park
Seong Jin Park
Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics
Archives of Metallurgy and Materials
master debinding curve
master sintering curve
pan-pzt
powder injection molding
dilatometer
title Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics
title_full Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics
title_fullStr Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics
title_full_unstemmed Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics
title_short Master Curve Model for Characterization of Decomposition and Densification Behavior of PbAlNbO3-PbZrTiO3 Ceramics
title_sort master curve model for characterization of decomposition and densification behavior of pbalnbo3 pbzrtio3 ceramics
topic master debinding curve
master sintering curve
pan-pzt
powder injection molding
dilatometer
url https://journals.pan.pl/Content/116389/PDF/AMM-2020-3-22-Seong%20Jin%20Park.pdf
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AT jaemanpark mastercurvemodelforcharacterizationofdecompositionanddensificationbehaviorofpbalnbo3pbzrtio3ceramics
AT seongjinpark mastercurvemodelforcharacterizationofdecompositionanddensificationbehaviorofpbalnbo3pbzrtio3ceramics