The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material
This paper investigates the elastic (Young’s) modulus of carbon Nanotube- (CNT-) reinforced cement paste using 3D and axisymmetric models using Abaqus software. The behavior of the CNT and the cement matrix was assumed to be fully elastic while the cohesive surface framework was used to model the in...
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doaj-63069c750ca44501932e320f757004e92020-11-24T23:49:39ZengHindawi LimitedJournal of Nanomaterials1687-41101687-41292015-01-01201510.1155/2015/283579283579The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite MaterialAla G. Abu Taqa0Rashid K. Abu Al-Rub1Ahmed Senouci2Nasser Al-Nuaimi3Khaldoon A. Bani-Hani4Department of Civil and Architectural Engineering, Qatar University, P.O. Box 2713, Doha, QatarInstitute Center for Energy, Mechanical and Materials Engineering Department, Masdar Institute of Science and Technology, P.O. Box 54224, Abu Dhabi, UAEDepartment of Construction Management, University of Houston, Houston, TX 77204-4020, USADepartment of Civil and Architectural Engineering, Qatar University, P.O. Box 2713, Doha, QatarDepartment of Civil Engineering, Jordan University of Science and Technology, P.O. Box 3030, Irbid 22110, JordanThis paper investigates the elastic (Young’s) modulus of carbon Nanotube- (CNT-) reinforced cement paste using 3D and axisymmetric models using Abaqus software. The behavior of the CNT and the cement matrix was assumed to be fully elastic while the cohesive surface framework was used to model the interface. To investigate the effect of fiber waviness on the value of the elastic modulus, 3D models were developed assuming different distributions of fibers. The results obtained using the 3D model were compared to those obtained using the simplified three-phase axisymmetric model which consists of one single CNT aligned in the center of composite unit cell, an interface, and cement matrix. A parametric study was then carried out using the axisymmetric model to study the role of the interface in the composite elastic modulus without accounting for the presence of the interfacial transition zone (ITZ or interphase). The results showed that the CNTs waviness significantly reduced their reinforcing capability in the cement paste. On the other hand, the results obtained using the axisymmetric model were found to be in good agreement with those obtained using the 3D model. Moreover, the results of the parametric study showed that the interface properties significantly affect the composite elastic modulus and alter its behavior.http://dx.doi.org/10.1155/2015/283579 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ala G. Abu Taqa Rashid K. Abu Al-Rub Ahmed Senouci Nasser Al-Nuaimi Khaldoon A. Bani-Hani |
spellingShingle |
Ala G. Abu Taqa Rashid K. Abu Al-Rub Ahmed Senouci Nasser Al-Nuaimi Khaldoon A. Bani-Hani The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material Journal of Nanomaterials |
author_facet |
Ala G. Abu Taqa Rashid K. Abu Al-Rub Ahmed Senouci Nasser Al-Nuaimi Khaldoon A. Bani-Hani |
author_sort |
Ala G. Abu Taqa |
title |
The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material |
title_short |
The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material |
title_full |
The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material |
title_fullStr |
The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material |
title_full_unstemmed |
The Effect of Fiber Geometry and Interfacial Properties on the Elastic Properties of Cementitious Nanocomposite Material |
title_sort |
effect of fiber geometry and interfacial properties on the elastic properties of cementitious nanocomposite material |
publisher |
Hindawi Limited |
series |
Journal of Nanomaterials |
issn |
1687-4110 1687-4129 |
publishDate |
2015-01-01 |
description |
This paper investigates the elastic (Young’s) modulus of carbon Nanotube- (CNT-) reinforced cement paste using 3D and axisymmetric models using Abaqus software. The behavior of the CNT and the cement matrix was assumed to be fully elastic while the cohesive surface framework was used to model the interface. To investigate the effect of fiber waviness on the value of the elastic modulus, 3D models were developed assuming different distributions of fibers. The results obtained using the 3D model were compared to those obtained using the simplified three-phase axisymmetric model which consists of one single CNT aligned in the center of composite unit cell, an interface, and cement matrix. A parametric study was then carried out using the axisymmetric model to study the role of the interface in the composite elastic modulus without accounting for the presence of the interfacial transition zone (ITZ or interphase). The results showed that the CNTs waviness significantly reduced their reinforcing capability in the cement paste. On the other hand, the results obtained using the axisymmetric model were found to be in good agreement with those obtained using the 3D model. Moreover, the results of the parametric study showed that the interface properties significantly affect the composite elastic modulus and alter its behavior. |
url |
http://dx.doi.org/10.1155/2015/283579 |
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