This book offers a comprehensive overview of the design, mechanisms, and performance of metakaolin-based geopolymers (MKG), with a focus on uncovering the underlying mechanisms that differentiate MKG from ordinary Portland cement (OPC). Covering a wide range of topics surrounding MKG, from the early stages of geopolymerization to the final mechanical performance of MKG concrete, this book provides fundamental insights into the performance of MKG-based materials and their relationship with the composition and microstructure of MKG. The findings presented in this book may serve as a guide for the design and application of MKG in civil engineering constructions. Targeted at scientists and engineers in materials science and civil engineering, this book is intended for those interested in adopting MKG as a sustainable technology for a greener future.
This book offers a comprehensive overview of the design, mechanisms, and performance of metakaolin-based geopolymers (MKG), with a focus on uncovering the underlying mechanisms that differentiate MKG from ordinary Portland cement (OPC). Covering a wide range of topics surrounding MKG, from the early stages of geopolymerization to the final mechanical performance of MKG concrete, this book provides fundamental insights into the performance of MKG-based materials and their relationship with the composition and microstructure of MKG. The findings presented in this book may serve as a guide for the design and application of MKG in civil engineering constructions. Targeted at scientists and engineers in materials science and civil engineering, this book is intended for those interested in adopting MKG as a sustainable technology for a greener future.
Dongming Yan
Alkali excitation of geopolymers Inorganic binder Early-stage geopolymerization Drying shrinkage Heat resistance Freezing-thawing resistance MKG concrete Sulfate corrosion Mechanical performance Metakaolin-based geopolymers