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Strain Hardening Cement Composites: Structural Design and Performance: State-of-the-Art Report of the RILEM Technical Committee 208-HFC, SC3 (RILEM State-of-the-Art Reports, nr. 6)

Editat de Keitetsu Rokugo, Tetsushi Kanda De (autor) , , , , ,
Notă GoodReads:
en Limba Engleză Hardback – 26 Sep 2012
Strain Hardening Cement Composites, SHCC hereafter, demonstrate excellent mechanical behavior showing tensile strain hardening and multiple fine cracks. This strain hardening behavior improves the durability of concrete structures employing SHCC and the multiple fine cracks enhance structural performance. Reliable tensile performance of SHCC enables us to design structures explicitly accounting for SHCC’s tensile properties. Reinforced SHCC elements (R/SHCC) indicate large energy absorbing performance under large seismic excitation. Against various types of loads, R/SHCC elements can be designed by superimposing re-bar performance and SHCC’s tensile performance. 
This report focuses on flexural design, shear design, FE modeling and anti-seismic design of R/SHCC elements as well as application examples.  Establishing design methods for new materials usually leads to exploring application areas and this trend should be demonstrated by collecting actual application examples of SHCC in structures.
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Specificații

ISBN-13: 9789400748354
ISBN-10: 9400748353
Pagini: 60
Ilustrații: VI, 90 p.
Dimensiuni: 155 x 235 x 10 mm
Greutate: 0.32 kg
Ediția: 2013
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria RILEM State-of-the-Art Reports

Locul publicării: Dordrecht, Netherlands

Public țintă

Research

Cuprins

1. Introduction.-  2. Structural Behavior and Design of R/SHCC Elements: 2.1  Flexural Characteristics and Design.-  2.2  Shear Characteristics and Design.-  2.3  Finite Element Modeling.-  2.4  Ductility and Anti-seismic Design.- 3. Applications of SHCC.

Textul de pe ultima copertă

Strain Hardening Cement Composites, SHCC hereafter, demonstrate excellent mechanical behavior showing tensile strain hardening and multiple fine cracks. This strain hardening behavior improves the durability of concrete structures employing SHCC and the multiple fine cracks enhance structural performance. Reliable tensile performance of SHCC enables us to design structures explicitly accounting for SHCC’s tensile properties. Reinforced SHCC elements (R/SHCC) indicate large energy absorbing performance under large seismic excitation. Against various types of loads, R/SHCC elements can be designed by superimposing re-bar performance and SHCC’s tensile performance. 
This report focuses on flexural design, shear design, FE modeling and anti-seismic design of R/SHCC elements as well as application examples.  Establishing design methods for new materials usually leads to exploring application areas and this trend should be demonstrated by collecting actual application examples of SHCC in structures.

Caracteristici

Explains complicated shear design for R/SHCC elements
Contains many application examples for R/SHCC elements
Includes the latest developments in the field