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Structural Behavior of Hybrid Fiber Reinforced Concrete Panels Under Blast Loads = = Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Structural Behavior of Hybrid Fiber Reinforced Concrete Panels Under Blast Loads =/
其他題名:
Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari.
其他題名:
Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari.
作者:
Alkabbani, Mouhammed Jalal.
面頁冊數:
1 online resource (83 pages)
附註:
Source: Masters Abstracts International, Volume: 83-11.
Contained By:
Masters Abstracts International83-11.
標題:
Load. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=29079308click for full text (PQDT)
ISBN:
9798426883987
Structural Behavior of Hybrid Fiber Reinforced Concrete Panels Under Blast Loads = = Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari.
Alkabbani, Mouhammed Jalal.
Structural Behavior of Hybrid Fiber Reinforced Concrete Panels Under Blast Loads =
Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari.Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari. - 1 online resource (83 pages)
Source: Masters Abstracts International, Volume: 83-11.
Thesis (Master's)--Izmir Institute of Technology (Turkey), 2021.
Includes bibliographical references
Terrorist attacks cause injuries and casualties not only due to direct effect of explosions, but also due to collapse of non-structural elements in buildings such as brick walls. Strengthening of non-blast resistant buildings to blast loads can be done using blast resistant cladding. In this study, structural behavior of panels manufactured using hybrid fiber reinforced concrete, composed of steel and synthetic polyvinyl alcohol (PVA) fibers, under blast loads was investigated and the potential use of such panels for the strengthening of existing buildings against blast loads was examined. For this purpose, 11 panels with 1900x1900x50 dimensions were tested under blast loads. Blast loads were applied on panels by a shock tube designed and manufactured within this project. As a result of the study, it was found that panels manufactured using hybrid fiber reinforced concrete had higher strength and energy absorption capacity under blast loads compared to panels manufactured by using steel fibers only. Using steel and PVA fibers provided a better control of micro and macro cracking and increased the panels' ductility. The study showed that hybrid fiber reinforced concrete panels can be used as a protective cladding for blast loads.
Electronic reproduction.
Ann Arbor, Mich. :
ProQuest,
2023
Mode of access: World Wide Web
ISBN: 9798426883987Subjects--Topical Terms:
3562902
Load.
Index Terms--Genre/Form:
542853
Electronic books.
Structural Behavior of Hybrid Fiber Reinforced Concrete Panels Under Blast Loads = = Hibrit Fiberli Beton Panellerin Patlama Yuku Altinda Yapisal Davranislari.
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Terrorist attacks cause injuries and casualties not only due to direct effect of explosions, but also due to collapse of non-structural elements in buildings such as brick walls. Strengthening of non-blast resistant buildings to blast loads can be done using blast resistant cladding. In this study, structural behavior of panels manufactured using hybrid fiber reinforced concrete, composed of steel and synthetic polyvinyl alcohol (PVA) fibers, under blast loads was investigated and the potential use of such panels for the strengthening of existing buildings against blast loads was examined. For this purpose, 11 panels with 1900x1900x50 dimensions were tested under blast loads. Blast loads were applied on panels by a shock tube designed and manufactured within this project. As a result of the study, it was found that panels manufactured using hybrid fiber reinforced concrete had higher strength and energy absorption capacity under blast loads compared to panels manufactured by using steel fibers only. Using steel and PVA fibers provided a better control of micro and macro cracking and increased the panels' ductility. The study showed that hybrid fiber reinforced concrete panels can be used as a protective cladding for blast loads.
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Terorist saldirilar sadece patlamalarin dogrudan etkileri nedeniyle degil, ayni zamanda binalardaki tugla duvar gibi yapisal olmayan elemanlarin cokmesiyle de can kaybina yol acmaktadir. Patlamalara karsi tasarlanmamis binalarin patlama yuklerine karsi guclendirilmesi patlamalara dayanikli cephe kaplamalariyla yapilabilir. Bu calismada celik ve sentetik polivinil alkol (PVA) fiberlerden olusan hibrit fiberli betondan imal edilen panellerin patlama yukleri karsisinda yapisal davranislari incelenmis ve bu panellerin mevcut binalarin patlama yuklerine karsi guclendirilmesi amaciyla kullanim potansiyelleri arastirilmistir. Bu amacla 1900x1900x50 mm boyutlarinda 11 panel patlama yukleri altinda test edilmistir. Paneller uzerinde patlama yukleri bu proje kapsaminda tasarlanan ve imal edilen bir sok tupu vasitasiyla uygulanmistir. Calismanin sonucunda patlama yukleri altinda hibrit fiberli betondan uretilen panellerin sadece celik fiber kullanilan panellere gore daha yuksek dayanim ve enerji sonumleme kapasitesine sahip olduklari gorulmustur. Celik ve PVA fiberlerin birlikte kullanimi mikro ve makro catlaklarin daha iyi kontrolunu saglamis ve panellerin sunekligini arttirmistir. Calisma hibrit fiberli beton panellerin patlama yuklerine karsi koruyucu cephe kaplamasi olarak kullanilabilecegini gostermistir.
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