Ultra-high ductility magnesium-phosphate-cement-based composites UHDMC

Chapter 1. Fundamental performance of PVA fiber reinforced UHDMC -- Chapter 2. Fundamental performance of hybrid fiber reinforced UHDMC -- Chapter 3. Water stability of PVA-UHDMC -- Chapter 4. Performance improvement of PVA-UHDMC using fly ash and silica fume -- Chapter 5. Development of PE fiber re...

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Bibliographische Detailangaben
1. Verfasser: Feng, Hu (VerfasserIn)
Weitere Verfasser: Guo, Aofei (VerfasserIn), Zhao, Jun (VerfasserIn)
Format: UnknownFormat
Sprache:eng
Veröffentlicht: Singapore Springer 2024
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Zusammenfassung:Chapter 1. Fundamental performance of PVA fiber reinforced UHDMC -- Chapter 2. Fundamental performance of hybrid fiber reinforced UHDMC -- Chapter 3. Water stability of PVA-UHDMC -- Chapter 4. Performance improvement of PVA-UHDMC using fly ash and silica fume -- Chapter 5. Development of PE fiber reinforced UHDMC -- Chapter 6. Preparation and performance of sprayable UHDMC.
This book systematically discusses the workability, mechanical properties, water stability, and material design methods of ultra-high ductility magnesium phosphate cement-based composites (UHDMC) with PVA fibers, PE fibers, or hybrid fibers. The developed UHDMC possesses strain-hardening behavior, multi-cracking, and ultra-high ultimate tensile strain, which can be used in many engineering projects, such as rapid repair and strengthening of airport runways, roads, bridges, and military installations. Meanwhile, this book covers the development of sprayable UHDMC, which further expands the application scope of UHDMC. This book is expected to provide some technical guidance for the development and design of UHDMC. The book is intended for graduate students who are interested in the ductility improvement of magnesium phosphate cement-based composites, researchers investigating the mechanical properties (strength, toughness, etc.), water stability, microstructure, and sprayability of magnesium phosphate cement-based composites, and engineers working on rapid repair of concrete structures.
Beschreibung:Literaturangaben
Beschreibung:xiv, 265 Seiten
Illustrationen, Diagramme
ISBN:9789819709519
978-981-97-0951-9