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Titlebook: Ultra-High Ductility Magnesium-Phosphate-Cement-Based Composites (UHDMC); Hu Feng,Aofei Guo,Jun Zhao Book 2024 The Editor(s) (if applicabl

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ent-based composites, researchers investigating the mechanical properties (strength, toughness, etc.), water stability, microstructure, and sprayabilityof magnesium phosphate cement-based composites, and engineers working on rapid repair of concrete structures..978-981-97-0954-0978-981-97-0952-6
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Hu Feng,Aofei Guo,Jun Zhaos. Darauf folgt die Erörterung aufbauorganisatorischer und ablauforganisatorischer Regelungen. Den Überlegungen geht jeweils ein Abriß der Situation in der Praxis voran. Die Untersuchung schließt ab mit einem Teil, der sich Fragen der Implementierung widmet.978-3-8244-0322-6978-3-663-09161-5
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Ultra-High Ductility Magnesium-Phosphate-Cement-Based Composites (UHDMC)
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Ultra-High Ductility Magnesium-Phosphate-Cement-Based Composites (UHDMC)978-981-97-0952-6
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Fundamental Performance of UHDMC with PVA Fibers, UHDMC are the highest; when the . is 0.13 or 0.16, the UHDMC can obtain relatively high strength and strain capacity while maintaining good workability. The microstructure analysis shows that PVA fibers are well embedded in the matrix and can effectively bear stress and limit the initiation and pro
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Fundamental Performance of UHDMC with Hybrid Fibers,ural analysis of the UHDMC. The findings in this chapter indicated that the mixed use of hybrid fibers can effectively improve both strength and toughness of the UHDMC, providing the base for the design of high-performance UHDMC.
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Performance Improvement and Design of UHDMC Using PE Fibers,he large . is helpful to improve strain hardening performance. When the FA content is 40%, the strain hardening performance of UHDMC is significant, and the pseudo strain-hardening indices reach the maximum. The quantitative association model between ultimate tensile strain and pseudo strain-hardeni
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