Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite

Magnesium (MgO), aluminium (Al2O3), and silicate (SiO2) combine to form cordierite ceramic, which is widely used in applications needing high resilience to thermal shock. Because of its limited thermal expansion and strong electrical insulation, cordierite ceramic is a valuable material. When tested...

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Main Author: Mat Radzi, Muhammad Adib Nuqman
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2022
Subjects:
Online Access:http://eprints.usm.my/56595/
http://eprints.usm.my/56595/1/Effect%20Of%20Different%20Calcium%20Salt%20Coating%20On%20Mechanical%20And%20Bioactivity%20Properties%20Of%20Cordierite_Muhammad%20Adib%20Nuqman%20Mat%20Radzi.pdf
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author Mat Radzi, Muhammad Adib Nuqman
author_facet Mat Radzi, Muhammad Adib Nuqman
author_sort Mat Radzi, Muhammad Adib Nuqman
building USM Institutional Repository
collection Online Access
description Magnesium (MgO), aluminium (Al2O3), and silicate (SiO2) combine to form cordierite ceramic, which is widely used in applications needing high resilience to thermal shock. Because of its limited thermal expansion and strong electrical insulation, cordierite ceramic is a valuable material. When tested for resistance to external force, cordierite, on the other hand, demonstrated minimal mechanical strength. It is to learn more about the effects of different calcium salt coatings on the mechanical and biological properties of pure calcium salt solutions (calcium chloride (CaCl2), calcium acetate (C₄H₆CaO₄) solution, calcium nitrate (Ca(NO₃)₂) solution) and a bioactivity test, which involves immersing the sample in a simulated bodily fluid, are all being used in this study to see what effect they have on cordierite. The reason why the pellet need to coating with the calcium salt is, to see which calcium salt produce formation of hydroxyapatite faster. The function of calcium salt in this experiment will act as a catalyst. As a result of characterization testing, cordierite showed a favourable reaction to hydroxyapatite production under the scanning electron microscope (SEM). The apatite peaks in the XRD study suggest that apatite has formed. Bioactivity test results show an increase in intensity on the bonding in Fourier transform infrared spectroscopy (FTIR). Results reveal that cordierite obtained from this study has the potential to be used as a bone implant material, and this is the conclusion reached.
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language English
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spelling usm-565952023-01-28T03:37:19Z http://eprints.usm.my/56595/ Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite Mat Radzi, Muhammad Adib Nuqman T Technology TN Mining Engineering. Metallurgy Magnesium (MgO), aluminium (Al2O3), and silicate (SiO2) combine to form cordierite ceramic, which is widely used in applications needing high resilience to thermal shock. Because of its limited thermal expansion and strong electrical insulation, cordierite ceramic is a valuable material. When tested for resistance to external force, cordierite, on the other hand, demonstrated minimal mechanical strength. It is to learn more about the effects of different calcium salt coatings on the mechanical and biological properties of pure calcium salt solutions (calcium chloride (CaCl2), calcium acetate (C₄H₆CaO₄) solution, calcium nitrate (Ca(NO₃)₂) solution) and a bioactivity test, which involves immersing the sample in a simulated bodily fluid, are all being used in this study to see what effect they have on cordierite. The reason why the pellet need to coating with the calcium salt is, to see which calcium salt produce formation of hydroxyapatite faster. The function of calcium salt in this experiment will act as a catalyst. As a result of characterization testing, cordierite showed a favourable reaction to hydroxyapatite production under the scanning electron microscope (SEM). The apatite peaks in the XRD study suggest that apatite has formed. Bioactivity test results show an increase in intensity on the bonding in Fourier transform infrared spectroscopy (FTIR). Results reveal that cordierite obtained from this study has the potential to be used as a bone implant material, and this is the conclusion reached. Universiti Sains Malaysia 2022-05-15 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/56595/1/Effect%20Of%20Different%20Calcium%20Salt%20Coating%20On%20Mechanical%20And%20Bioactivity%20Properties%20Of%20Cordierite_Muhammad%20Adib%20Nuqman%20Mat%20Radzi.pdf Mat Radzi, Muhammad Adib Nuqman (2022) Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Bahan & Sumber Mineral. (Submitted)
spellingShingle T Technology
TN Mining Engineering. Metallurgy
Mat Radzi, Muhammad Adib Nuqman
Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite
title Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite
title_full Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite
title_fullStr Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite
title_full_unstemmed Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite
title_short Effect Of Different Calcium Salt Coating On Mechanical And Bioactivity Properties Of Cordierite
title_sort effect of different calcium salt coating on mechanical and bioactivity properties of cordierite
topic T Technology
TN Mining Engineering. Metallurgy
url http://eprints.usm.my/56595/
http://eprints.usm.my/56595/1/Effect%20Of%20Different%20Calcium%20Salt%20Coating%20On%20Mechanical%20And%20Bioactivity%20Properties%20Of%20Cordierite_Muhammad%20Adib%20Nuqman%20Mat%20Radzi.pdf