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Avinaya Tripathi
Avinaya Tripathi
Research Graduate Student, Arizona State University
Verified email at asu.edu
Title
Cited by
Cited by
Year
Examining layer height effects on the flexural and fracture response of plain and fiber-reinforced 3D-printed beams
SAO Nair, A Tripathi, N Neithalath
Cement and Concrete Composites 124, 2021
272021
A comprehensive analysis of buildability of 3D-printed concrete and the use of bi-linear stress-strain criterion-based failure curves towards their prediction
A Tripathi, SAO Nair, N Neithalath
Cement and Concrete Composites 128, 104424, 2022
242022
Relating print velocity and extrusion characteristics of 3D-printable cementitious binders: Implications towards testing methods
S Nair, S Panda, A Tripathi, N Neithalath
Additive Manufacturing 46, 102127, 2021
112021
Anisotropic chloride transport in 3D printed concrete and its dependence on layer height and interface types
S Surehali, A Tripathi, AS Nimbalkar, N Neithalath
Additive Manufacturing 62, 103405, 2023
62023
Carpet fiber recycling in regular-use concrete mixtures and associated life cycle analysis
A Simon, A Tripathi, S Surehali, N Neithalath
Waste Management Bulletin 1 (3), 103-114, 2023
22023
Anisotropy in Additively Manufactured Concrete Specimens under Compressive Loading—Quantification of the Effects of Layer Height and Fiber Reinforcement
S Surehali, A Tripathi, N Neithalath
Materials 16 (15), 5488, 2023
22023
Print Geometry Alterations and Layer Staggering to Enhance Mechanical Properties of Plain and Fiber-Reinforced Three-Dimensional-Printed Concrete
A Tripathi, SAO Nair, H Chauhan, N Neithalath
Materials Journal 121 (2), 17-30, 2024
12024
Constitutive response and failure progression in digitally fabricated (3D printed) concrete under compression and their dependence on print layer height
SAO Nair, A Tripathi, N Neithalath
Construction and Building Materials 411, 134246, 2024
2024
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