Assessment of Sustainability and Self-Healing Performances of Recycled Ultra-High-Performance Concrete
Author:
Publisher
American Concrete Institute
Subject
General Materials Science,Building and Construction,Civil and Structural Engineering
Reference55 articles.
1. Potential Benefits of Digital Fabrication for Complex Structures: Environmental Assessment of a Robotically Fabricated Concrete Wall;Agustí-Juan;Journal of Cleaner Production,2017
2. Construction and Demolition Waste Generation and Properties of Recycled Aggregate Concrete: A Global Perspective;Akhtar;Journal of Cleaner Production,2018
3. Innovative Design Concept of Cooling Water Tanks/Basins in Geothermal Power Plants using Ultra High Performance Fiber Reinforced Concrete with Enhanced Durability;Al-Obaidi;Sustainability,2021
4. Durability-Based Design of Structures Made with UHP/UHDC in Extremely Aggressive Scenarios: Application to a Geothermal Water Basin Case Study;Al-Obaidi;Infrastructures,2020
5. Effect of Matrix Self-Healing on the Bond-Slip Behavior of Micro Steel Fibers in Ultra-High-Performance Concrete;Al Obaidi;Cement and Concrete Composites,2022
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