RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS
Glassy polymers like Poly Mathyel Metha Acrylate are usually classified as non-porous materials; they are almost considered as fully transparent. Thin samples of these materials reflect color changing followed by porous formation and consequently cracking when exposed to certain level of ?-irradiat...
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College of Science for Women, University of Baghdad
2010-03-01
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doaj-113454dd1c724540a2a34b5c06461bd52020-11-25T00:36:58ZaraCollege of Science for Women, University of BaghdadBaghdad Science Journal2078-86652411-79862010-03-017110.21123/bsj.7.1.119-128RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERSBaghdad Science Journal Glassy polymers like Poly Mathyel Metha Acrylate are usually classified as non-porous materials; they are almost considered as fully transparent. Thin samples of these materials reflect color changing followed by porous formation and consequently cracking when exposed to certain level of ?-irradiation. The more the dose is the higher the effect have been observed. The optical microscope and UV-VIS spectroscopy have clearly approved these consequences especially for doped polymers. http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/2880"gamma ray , dopedvglassy, radition application" |
collection |
DOAJ |
language |
Arabic |
format |
Article |
sources |
DOAJ |
author |
Baghdad Science Journal |
spellingShingle |
Baghdad Science Journal RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS Baghdad Science Journal "gamma ray , dopedvglassy, radition application" |
author_facet |
Baghdad Science Journal |
author_sort |
Baghdad Science Journal |
title |
RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS |
title_short |
RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS |
title_full |
RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS |
title_fullStr |
RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS |
title_full_unstemmed |
RADIATION ENHANCED MICRO CRACKING AND POROUS FORMATION IN DOPED GLASSY POLYMERS |
title_sort |
radiation enhanced micro cracking and porous formation in doped glassy polymers |
publisher |
College of Science for Women, University of Baghdad |
series |
Baghdad Science Journal |
issn |
2078-8665 2411-7986 |
publishDate |
2010-03-01 |
description |
Glassy polymers like Poly Mathyel Metha Acrylate are usually classified as non-porous materials; they are almost considered as fully transparent. Thin samples of these materials reflect color changing followed by porous formation and consequently cracking when exposed to certain level of ?-irradiation. The more the dose is the higher the effect have been observed. The optical microscope and UV-VIS spectroscopy have clearly approved these consequences especially for doped polymers. |
topic |
"gamma ray , dopedvglassy, radition application" |
url |
http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/2880 |
work_keys_str_mv |
AT baghdadsciencejournal radiationenhancedmicrocrackingandporousformationindopedglassypolymers |
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1725303326540562432 |