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Qiang Yuan,CaijunShi,DengwuJiao

Rheology of Fresh Cement-Based Materials: Fundamentals, Measurements, and Applications

Rheology of Fresh Cement-Based Materials: Fundamentals, Measurements, and Applications

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  • More about Rheology of Fresh Cement-Based Materials: Fundamentals, Measurements, and Applications


This book introduces the fundamentals,measurements,and applications of rheology of fresh cement-based materials,which is crucial for their flow and deformation and mixing,placement,and casting quality. It covers measurement equipment,procedures,and data interpretation,as well as applications in self-compacting concrete,pumping,and 3D printing.

Format: Hardback
Length: 322 pages
Publication date: 28 December 2022
Publisher: Taylor & Francis Ltd


The rheology of fresh cement-based materials is a crucial aspect that significantly impacts their flow and deformation properties, ultimately governing the quality of mixing, placement, and casting of concrete. This book, written by experts in the field, is the first to comprehensively address this important topic, particularly as new types of cement-based materials and concrete technologies emerge. It provides a detailed description of measurement equipment, procedures, and data interpretation for the rheology of cement paste and concrete, including applications such as self-compacting concrete, pumping, and 3D printing. Additionally, the book explores a range of other cement-based materials, including fiber-reinforced concrete, cemented paste backfills, and alkali-activated cement.

Rheology of Fresh Cement-Based Materials serves as a valuable resource for researchers and engineers, as well as a textbook for advanced undergraduate and graduate students. It offers a comprehensive understanding of the fundamentals, measurements, and applications of rheology in cement-based materials, enabling professionals to optimize their processes and improve the performance of concrete structures.

The book begins by introducing the fundamentals of rheology, including the definition of flow behavior, the principles of stress and strain, and the concept of viscosity. It then delves into the measurement of rheology, covering equipment such as rotational viscometers, shear stress meters, and capillary rheometers. The authors provide detailed procedures for conducting rheological tests, including preparation of samples, measurement techniques, and data interpretation.

In the subsequent chapters, the book discusses the rheology of cement paste and concrete, covering topics such as the development of flow curves, the influence of cement type and additives, and the effects of temperature and moisture on rheological properties. It also explores the behavior of concrete under different loading conditions, including compression, tension, and shear, and discusses the use of rheological data in the design and optimization of concrete structures.

The book further explores the applications of rheology in other cement-based materials, including fiber-reinforced concrete, cemented paste backfills, and alkali-activated cement. It discusses the properties and behavior of these materials, as well as their manufacturing processes and performance in construction applications.

Throughout the book, real-world case studies and examples are provided to illustrate the practical applications of rheology in cement-based materials. These case studies cover a range of industries, including construction, transportation, and infrastructure, and demonstrate how rheological data can be used to optimize concrete production, improve durability, and reduce costs.

In conclusion, Rheology of Fresh Cement-Based Materials is a comprehensive and authoritative guide to the rheology of cement-based materials. It provides a thorough understanding of the fundamentals, measurements, and applications of rheology, enabling professionals to optimize their processes and improve the performance of concrete structures. Whether you are a researcher, engineer, or student, this book is an essential resource for advancing your knowledge in this field.

Weight: 790g
Dimension: 254 x 178 (mm)
ISBN-13: 9781032208015

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