APA Style
Rahim, K. A. N. A. (2022). Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact.
Current Research in Public Health, 1(1), 2-32.
https://doi.org/10.31586/wjcea.2022.223
ACS Style
Rahim, K. A. N. A. Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact.
Current Research in Public Health 2022 1(1), 2-32.
https://doi.org/10.31586/wjcea.2022.223
Chicago/Turabian Style
Rahim, Khalid Abdel Naser Abdel. 2022. "Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact".
Current Research in Public Health 1, no. 1: 2-32.
https://doi.org/10.31586/wjcea.2022.223
AMA Style
Rahim KANA. Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact.
Current Research in Public Health. 2022; 1(1):2-32.
https://doi.org/10.31586/wjcea.2022.223
@Article{crph223,
AUTHOR = {Rahim, Khalid Abdel Naser Abdel},
TITLE = {Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact},
JOURNAL = {Current Research in Public Health},
VOLUME = {1},
YEAR = {2022},
NUMBER = {1},
PAGES = {2-32},
URL = {/10.31586/wjcea-1-1-210.31586/wjcea/1/1/2},
ISSN = {2831-5162},
DOI = {10.31586/wjcea.2022.223},
ABSTRACT = {This paper is a continuation of the researches which were carried out by [1,2,3]. Accordingly, this manuscript proposes analytical analysis of a novel triple skin Concrete Filled Steel Tube (CFST) under the effect of sudden impact. Moreover, this is done by extending the double skinned CFST design and installing a third inner CFST inside the second inner tube to achieve the proposed triple skinned CFST design. Furthermore, the propositions consist of two parts. Where the first proposition is a novel triple skin CFST design under the effect of sudden impact, with first sandwich layer filled with Ultra High-Performance Fiber Reinforced Concrete (UHPFRC) and second sandwich layer filled with Normal Strength Concrete (NSC). While the second proposition is a novel triple skin CFST under the effect of sudden impact, with first sandwich layer filled with UHPFRC, second sandwich layer filled with NSC and third skin internal tube filled with NSC. It is strongly believed by the author of this manuscript that (1) the first proposition of novel triple skin CFST will increase the impact resistivity of the structural member by 25 to 32% and (2) it is predicted that the second proposition of novel triple skin CFST will boost the efficiency of the structural member under the even of sudden impact by 28 to 36%.},
}
TY - JOUR
AU - Rahim, Khalid Abdel Naser Abdel
TI - Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact
T2 - Current Research in Public Health
PY - 2022
VL - 1
IS - 1
SN - 2831-5162
SP - 2
EP - 32
UR - /10.31586/wjcea-1-1-210.31586/wjcea/1/1/2
AB - This paper is a continuation of the researches which were carried out by [1,2,3]. Accordingly, this manuscript proposes analytical analysis of a novel triple skin Concrete Filled Steel Tube (CFST) under the effect of sudden impact. Moreover, this is done by extending the double skinned CFST design and installing a third inner CFST inside the second inner tube to achieve the proposed triple skinned CFST design. Furthermore, the propositions consist of two parts. Where the first proposition is a novel triple skin CFST design under the effect of sudden impact, with first sandwich layer filled with Ultra High-Performance Fiber Reinforced Concrete (UHPFRC) and second sandwich layer filled with Normal Strength Concrete (NSC). While the second proposition is a novel triple skin CFST under the effect of sudden impact, with first sandwich layer filled with UHPFRC, second sandwich layer filled with NSC and third skin internal tube filled with NSC. It is strongly believed by the author of this manuscript that (1) the first proposition of novel triple skin CFST will increase the impact resistivity of the structural member by 25 to 32% and (2) it is predicted that the second proposition of novel triple skin CFST will boost the efficiency of the structural member under the even of sudden impact by 28 to 36%.
DO - Analytical Investigation on Hybrid Triple Skinned CFST Under the Effect of Sudden Impact
TI - 10.31586/wjcea.2022.223
ER -