Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment

© 2020 IEEE. Oxygen ion implantation has been applied to improve the color quality of the ruby corundum gemstone. Specifically, the color enhancement of the ruby considered in this study was to bring out more redness of the gemstone. Surprisingly, the redness enhancement could be done indirectly by...

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Main Authors: Weerapat Buaprasert, Boonsri Kaewkham-Ai, Kasemsak Uthaichana
Format: Conference Proceeding
Published: 2020
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/70425
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spelling th-cmuir.6653943832-704252020-10-14T08:49:36Z Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment Weerapat Buaprasert Boonsri Kaewkham-Ai Kasemsak Uthaichana Computer Science Decision Sciences Engineering Physics and Astronomy © 2020 IEEE. Oxygen ion implantation has been applied to improve the color quality of the ruby corundum gemstone. Specifically, the color enhancement of the ruby considered in this study was to bring out more redness of the gemstone. Surprisingly, the redness enhancement could be done indirectly by increasing the yellowness while decreasing the blueness of the ruby. However, not all rubies can be improved equally through the oxygen ion implantation technique and each implantation procedure usually takes at least 6 hours. It was of a great need to know the characterization of the rubies that would response well to the oxygen ion implantation. This paper proposed an input-output mathematical model that could predict the levels of color enhancement of rubies via an oxygen ion-implantation. The proposed model described the relationship between two critical chemical compositions, the traced levels of iron and chromium before the treatment as the model inputs and the positive increment in the b∗ axis (the increment toward yellowness in the yellow-blue axis) being the model output. The model structure was explored using the first, the second and the third order polynomial equations. The parameters were estimated based on the least square method, and the leave-one-out cross validation was used for dealing with a limitation of data points. The prediction performance of three chosen models were measured against the observed data. It was found that the third order model yielded the lowest error while satisfying prediction performance could be observed from the second order models as well. 2020-10-14T08:30:15Z 2020-10-14T08:30:15Z 2020-06-01 Conference Proceeding 2-s2.0-85091854769 10.1109/ECTI-CON49241.2020.9158295 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85091854769&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/70425
institution Chiang Mai University
building Chiang Mai University Library
continent Asia
country Thailand
Thailand
content_provider Chiang Mai University Library
collection CMU Intellectual Repository
topic Computer Science
Decision Sciences
Engineering
Physics and Astronomy
spellingShingle Computer Science
Decision Sciences
Engineering
Physics and Astronomy
Weerapat Buaprasert
Boonsri Kaewkham-Ai
Kasemsak Uthaichana
Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment
description © 2020 IEEE. Oxygen ion implantation has been applied to improve the color quality of the ruby corundum gemstone. Specifically, the color enhancement of the ruby considered in this study was to bring out more redness of the gemstone. Surprisingly, the redness enhancement could be done indirectly by increasing the yellowness while decreasing the blueness of the ruby. However, not all rubies can be improved equally through the oxygen ion implantation technique and each implantation procedure usually takes at least 6 hours. It was of a great need to know the characterization of the rubies that would response well to the oxygen ion implantation. This paper proposed an input-output mathematical model that could predict the levels of color enhancement of rubies via an oxygen ion-implantation. The proposed model described the relationship between two critical chemical compositions, the traced levels of iron and chromium before the treatment as the model inputs and the positive increment in the b∗ axis (the increment toward yellowness in the yellow-blue axis) being the model output. The model structure was explored using the first, the second and the third order polynomial equations. The parameters were estimated based on the least square method, and the leave-one-out cross validation was used for dealing with a limitation of data points. The prediction performance of three chosen models were measured against the observed data. It was found that the third order model yielded the lowest error while satisfying prediction performance could be observed from the second order models as well.
format Conference Proceeding
author Weerapat Buaprasert
Boonsri Kaewkham-Ai
Kasemsak Uthaichana
author_facet Weerapat Buaprasert
Boonsri Kaewkham-Ai
Kasemsak Uthaichana
author_sort Weerapat Buaprasert
title Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment
title_short Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment
title_full Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment
title_fullStr Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment
title_full_unstemmed Modeling of Color Improvement of Ruby Corundum Gemstone via Oxygen Ion Implantation Treatment
title_sort modeling of color improvement of ruby corundum gemstone via oxygen ion implantation treatment
publishDate 2020
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85091854769&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/70425
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