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Matthew Aguayo
Matthew Aguayo
Doctoral Researcher, Arizona State University
E-mail confirmado em asu.edu
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Hydration and strength development in ternary portland cement blends containing limestone and fly ash or metakaolin
K Vance, M Aguayo, T Oey, G Sant, N Neithalath
Cement and Concrete Composites 39, 93-103, 2013
3662013
On the feasibility of using phase change materials (PCMs) to mitigate thermal cracking in cementitious materials
F Fernandes, S Manari, M Aguayo, K Santos, T Oey, Z Wei, G Falzone, ...
Cement and Concrete Composites 51, 14-26, 2014
1802014
The influence of microencapsulated phase change material (PCM) characteristics on the microstructure and strength of cementitious composites: Experiments and finite element …
M Aguayo, S Das, A Maroli, N Kabay, JCE Mertens, SD Rajan, G Sant, ...
Cement and Concrete Composites 73, 29-41, 2016
1542016
Microstructural packing-and rheology-based binder selection and characterization for Ultra-high Performance Concrete (UHPC)
A Arora, M Aguayo, H Hansen, C Castro, E Federspiel, B Mobasher, ...
Cement and Concrete Research 103, 179-190, 2018
1412018
The fracture response of blended formulations containing limestone powder: Evaluations using two-parameter fracture model and digital image correlation
S Das, M Aguayo, V Dey, R Kachala, B Mobasher, G Sant, N Neithalath
Cement and Concrete Composites 53, 316-326, 2014
832014
Porous inclusions as hosts for phase change materials in cementitious composites: Characterization, thermal performance, and analytical models
M Aguayo, S Das, C Castro, N Kabay, G Sant, N Neithalath
Construction and Building Materials 134, 574-584, 2017
712017
Fracture process zone and tensile behavior of blended binders containing limestone powder
S Das, M Aguayo, G Sant, B Mobasher, N Neithalath
Cement and Concrete Research 73, 51-62, 2015
452015
Microstructural, mechanical, and durability related similarities in concretes based on OPC and alkali-activated slag binders
K Vance, M Aguayo, A Dakhane, D Ravikumar, J Jain, N Neithalath
International Journal of Concrete Structures and Materials 8, 289-299, 2014
372014
Electrically driven chloride ion transport in blended binder concretes: Insights from experiments and numerical simulations
M Aguayo, P Yang, K Vance, G Sant, N Neithalath
Cement and Concrete Research 66, 1-10, 2014
372014
Microstructure-guided numerical simulations to predict the thermal performance of a hierarchical cement-based composite material
S Das, M Aguayo, SD Rajan, G Sant, N Neithalath
Cement and Concrete Composites 87, 20-28, 2018
302018
Elucidating the influences of compliant microscale inclusions on the fracture behavior of cementitious composites
S Das, M Aguayo, N Kabay, B Mobasher, G Sant, N Neithalath
Cement and Concrete Composites 94, 13-23, 2018
132018
Developing Ultra-High–Performance Concrete Mix Designs for Arizona Bridge Element Connections
B Mobasher, A Arora, M Aguayo, F Kianmofrad, Y Yao, N Neithalath
Arizona. Department of Transportation. Research Center, 2019
52019
Phase Change Materials in Infrastructural Concrete and Buildings: Material Design and Performance
M Aguayo
Arizona State University, 2018
22018
First principles-based design of economical ultra-high performance concrete
A Arora, M Aguayo, F Kianmofrad, Y Yao, B Mobasher, N Neithalath
12019
Composite coatings containing phase change materials
M Aguayo, A Arora, N Neithalath
US Patent App. 17/372,031, 2021
2021
Mechanical and Chloride Transport Performance of Particle Size Classified Limestone Blends
M Aguayo
Arizona State University, 2014
2014
The Fracture Response of Blended Formulations Containing Limestone Powder: Evaluations using TPFM and DIC
S Das, M Aguayo, V Dey, R Kachala, B Mobasher, G Sant, N Neithalath
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