Fatigue crack growth bridging mechanisms in titanium metal matrix composites /
Thesis (Doctor of Philosophy) - University of Rhodes Island, 1997
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Rhodes Island : University of Rhodes Island,
1997
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_version_ | 1826426472313651200 |
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author | 304103 Mohd. Nasir Tamin |
author_facet | 304103 Mohd. Nasir Tamin |
author_sort | 304103 Mohd. Nasir Tamin |
collection | OCEAN |
description | Thesis (Doctor of Philosophy) - University of Rhodes Island, 1997 |
first_indexed | 2024-03-05T06:01:32Z |
format | |
id | KOHA-OAI-TEST:350661 |
institution | Universiti Teknologi Malaysia - OCEAN |
last_indexed | 2024-03-05T06:01:32Z |
publishDate | 1997 |
publisher | Rhodes Island : University of Rhodes Island, |
record_format | dspace |
spelling | KOHA-OAI-TEST:3506612020-12-19T17:12:08ZFatigue crack growth bridging mechanisms in titanium metal matrix composites / 304103 Mohd. Nasir Tamin Rhodes Island : University of Rhodes Island,1997Thesis (Doctor of Philosophy) - University of Rhodes Island, 199709PRZSLStrength of materialsMetallic compositesFibrous compositesStructural analysis (Engineering) |
spellingShingle | Strength of materials Metallic composites Fibrous composites Structural analysis (Engineering) 304103 Mohd. Nasir Tamin Fatigue crack growth bridging mechanisms in titanium metal matrix composites / |
title | Fatigue crack growth bridging mechanisms in titanium metal matrix composites / |
title_full | Fatigue crack growth bridging mechanisms in titanium metal matrix composites / |
title_fullStr | Fatigue crack growth bridging mechanisms in titanium metal matrix composites / |
title_full_unstemmed | Fatigue crack growth bridging mechanisms in titanium metal matrix composites / |
title_short | Fatigue crack growth bridging mechanisms in titanium metal matrix composites / |
title_sort | fatigue crack growth bridging mechanisms in titanium metal matrix composites |
topic | Strength of materials Metallic composites Fibrous composites Structural analysis (Engineering) |
work_keys_str_mv | AT 304103mohdnasirtamin fatiguecrackgrowthbridgingmechanismsintitaniummetalmatrixcomposites |