Assessing the zero-stress temperature in high performance concrete at early age

Author:

Dabarera AroshaORCID,Li Liang,Lura PietroORCID,Dao VinhORCID

Funder

Australian Research Council

Australian Government

Publisher

Elsevier BV

Subject

General Materials Science,Building and Construction

Reference61 articles.

1. Cracking Tendency of Bridge Deck Concrete;Byard,2010

2. Early-age Thermal Crack Control in Concrete (CIRIA C660);Bamforth,2007

3. 254-CMS RILEM Technical Committee, Thermal Cracking of Massive Concrete Structures, RILEM State-Of-The-Art Reports;Fairbairn,2019

4. Good reinforced concrete in the Arabian Gulf;Neville;Mater. Struct.,2000

5. State-of-the-Art report on control of cracking in early age concrete;Mihashi;J. Adv. Concr. Technol.,2004

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1. Assessment of cracking risk of concrete due to restrained strain based on zero-stress temperature and cracking temperature;Construction and Building Materials;2023-06

2. Early-Age Cracking Potential of Fly Ash High Performance Concrete Internally Cured with Super Absorbent Polymers;Journal of Testing and Evaluation;2023-02-13

3. Dilatancy swerve in superplasticized cement powder paste;Construction and Building Materials;2023-01

4. Assessing Early-age Dynamic Elastic Modulus in High-Performance Concrete;International RILEM Conference on Synergising Expertise towards Sustainability and Robustness of Cement-based Materials and Concrete Structures;2023

5. Predicting early‐age stress evolution in restrained concrete by thermo‐chemo‐mechanical model and active ensemble learning;Computer-Aided Civil and Infrastructure Engineering;2022-09-04

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