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Advances In Engineered Cementitious Composite Materials Structures And Numerical Modeling Y X Zhang

  • SKU: BELL-46082922
Advances In Engineered Cementitious Composite Materials Structures And Numerical Modeling Y X Zhang
$ 31.00 $ 45.00 (-31%)

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Advances In Engineered Cementitious Composite Materials Structures And Numerical Modeling Y X Zhang instant download after payment.

Publisher: Elsevier
File Extension: PDF
File size: 15.13 MB
Pages: 540
Author: Y. X. Zhang, Kequan Yu
ISBN: 9780323851497, 0323851495
Language: English
Year: 2022

Product desciption

Advances In Engineered Cementitious Composite Materials Structures And Numerical Modeling Y X Zhang by Y. X. Zhang, Kequan Yu 9780323851497, 0323851495 instant download after payment.

Advances in Engineered Cementitious Composite: Materials, Structures and Numerical Modelling focuses on recent research developments in high-performance fiber-reinforced cementitious composites, covering three key aspects, i.e., materials, structures and numerical modeling. Sections discuss the development of materials to achieve high-performance by using different type of fibers, including polyvinyl alcohol (PVA), polyethylene (PE) polypropylene (PP) and hybrid fibers. Other chapters look at experimental studies on the application of high-performance fiber-reinforced cementitious composites on structures and the performance of structural components, including beams, slabs and columns, and recent development of numerical methods and modeling techniques for modeling material properties and structural behavior. This book will be an essential reference resource for materials scientists, civil and structural engineers and all those working in the field of high-performance fiber-reinforced cementitious composites and structures. Features up-to-date research on [HPFRCC], from materials development to structural application Includes recent experimental studies and advanced numerical modeling analysis Covers methods for modeling material properties and structural performance Explains how different types of fibers can affect structural performance

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