Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement

The density, porosity and compressive strength of white Portland cement (WPC) samples were evaluated to study their potential for use for bone implant applications. The effects of simulated body fluid (SBF) solution on the compressive strengths of WPC samples were also examined by immersing the samp...

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Main Authors: Weerapol Taptimdee, Auttachai Jantasang, Prinya Chindaprasirt, Yuichi Otsuka, Yoshiharu Mutoh, Teerawat Laonapakul
Format: Article
Language:English
Published: Khon Kaen University 2022-03-01
Series:Engineering and Applied Science Research
Subjects:
Online Access:https://ph01.tci-thaijo.org/index.php/easr/article/download/245623/166988/
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spelling doaj-a2ee1cbef3e8432b8aec10ebea2b77a62021-09-30T08:22:36ZengKhon Kaen UniversityEngineering and Applied Science Research2539-61612539-62182022-03-01492181188Effect of an in vitro environment on compressive strength and apatite formation of white Portland cementWeerapol TaptimdeeAuttachai JantasangPrinya ChindaprasirtYuichi OtsukaYoshiharu MutohTeerawat LaonapakulThe density, porosity and compressive strength of white Portland cement (WPC) samples were evaluated to study their potential for use for bone implant applications. The effects of simulated body fluid (SBF) solution on the compressive strengths of WPC samples were also examined by immersing the sample in an SBF solution. The formation of bone-like apatite on the surface and in the internal structure of the WPC samples after immersion in an SBF solution was investigated. After 28 days of water curing, the compressive strength and porosity of the WPC samples were 51.88 MPa and 41.83%, respectively. The WPC samples tested after immersion in an SBF solution showed an improvement in compressive strength at approximately 13 percent, which is a good indicator for its use as a bone implant material. Bone-like apatite was apparently formed on the surfaces and in the internal structures of WPC samples after 28 days of immersion in an SBF solution. The thickness of the bone-like apatite forming was about 30 µm.https://ph01.tci-thaijo.org/index.php/easr/article/download/245623/166988/in vitro testsimulated body fluidapatite formationphysical and mechanical property
collection DOAJ
language English
format Article
sources DOAJ
author Weerapol Taptimdee
Auttachai Jantasang
Prinya Chindaprasirt
Yuichi Otsuka
Yoshiharu Mutoh
Teerawat Laonapakul
spellingShingle Weerapol Taptimdee
Auttachai Jantasang
Prinya Chindaprasirt
Yuichi Otsuka
Yoshiharu Mutoh
Teerawat Laonapakul
Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement
Engineering and Applied Science Research
in vitro test
simulated body fluid
apatite formation
physical and mechanical property
author_facet Weerapol Taptimdee
Auttachai Jantasang
Prinya Chindaprasirt
Yuichi Otsuka
Yoshiharu Mutoh
Teerawat Laonapakul
author_sort Weerapol Taptimdee
title Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement
title_short Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement
title_full Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement
title_fullStr Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement
title_full_unstemmed Effect of an in vitro environment on compressive strength and apatite formation of white Portland cement
title_sort effect of an in vitro environment on compressive strength and apatite formation of white portland cement
publisher Khon Kaen University
series Engineering and Applied Science Research
issn 2539-6161
2539-6218
publishDate 2022-03-01
description The density, porosity and compressive strength of white Portland cement (WPC) samples were evaluated to study their potential for use for bone implant applications. The effects of simulated body fluid (SBF) solution on the compressive strengths of WPC samples were also examined by immersing the sample in an SBF solution. The formation of bone-like apatite on the surface and in the internal structure of the WPC samples after immersion in an SBF solution was investigated. After 28 days of water curing, the compressive strength and porosity of the WPC samples were 51.88 MPa and 41.83%, respectively. The WPC samples tested after immersion in an SBF solution showed an improvement in compressive strength at approximately 13 percent, which is a good indicator for its use as a bone implant material. Bone-like apatite was apparently formed on the surfaces and in the internal structures of WPC samples after 28 days of immersion in an SBF solution. The thickness of the bone-like apatite forming was about 30 µm.
topic in vitro test
simulated body fluid
apatite formation
physical and mechanical property
url https://ph01.tci-thaijo.org/index.php/easr/article/download/245623/166988/
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