Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM
Lead magnesium niobate titanate (PMNT) and Portland cement (PC) composite were fabricated as a new cement-based piezoelectric composite. Scanning Electron Microscope and Piezoresponse Force Microscope were used to investigate the morphology and domain configurations at the interfacial zone of PMNT-P...
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th-cmuir.6653943832-483372018-04-25T08:50:45Z Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM N. Jaitanong H. R. Zeng G. R. Li Q. R. Yin R. Yimnirun A. Chaipanich Lead magnesium niobate titanate (PMNT) and Portland cement (PC) composite were fabricated as a new cement-based piezoelectric composite. Scanning Electron Microscope and Piezoresponse Force Microscope were used to investigate the morphology and domain configurations at the interfacial zone of PMNT-PC composites. Angular PMNT ceramic grains were found to bind well with the cement matrix and PMNT grains can be seen to disperse randomly in the cement matrix. Moreover, the angular shape PMNT particle contributes to better mechanical interlocking with the cement paste due to the angular aggregate having rough surface appearing to provide better mechanical interlocking with the cement paste. © 2013 Copyright Taylor and Francis Group, LLC. 2018-04-25T08:50:45Z 2018-04-25T08:50:45Z 2013-01-01 Journal 15635112 00150193 2-s2.0-84891777624 10.1080/00150193.2013.845484 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84891777624&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/48337 |
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Lead magnesium niobate titanate (PMNT) and Portland cement (PC) composite were fabricated as a new cement-based piezoelectric composite. Scanning Electron Microscope and Piezoresponse Force Microscope were used to investigate the morphology and domain configurations at the interfacial zone of PMNT-PC composites. Angular PMNT ceramic grains were found to bind well with the cement matrix and PMNT grains can be seen to disperse randomly in the cement matrix. Moreover, the angular shape PMNT particle contributes to better mechanical interlocking with the cement paste due to the angular aggregate having rough surface appearing to provide better mechanical interlocking with the cement paste. © 2013 Copyright Taylor and Francis Group, LLC. |
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N. Jaitanong H. R. Zeng G. R. Li Q. R. Yin R. Yimnirun A. Chaipanich |
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N. Jaitanong H. R. Zeng G. R. Li Q. R. Yin R. Yimnirun A. Chaipanich Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM |
author_facet |
N. Jaitanong H. R. Zeng G. R. Li Q. R. Yin R. Yimnirun A. Chaipanich |
author_sort |
N. Jaitanong |
title |
Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM |
title_short |
Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM |
title_full |
Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM |
title_fullStr |
Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM |
title_full_unstemmed |
Investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by SEM and PFM |
title_sort |
investigations on morphology and domain configurations in 0-3 lead magnesium niobate titanate-portland cement composites by sem and pfm |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84891777624&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/48337 |
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