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Strain-Hardening Cement-Based Composites - SHCC4 (Hardcover, 1st ed. 2018): Viktor Mechtcherine, Volker Slowik, Petr Kabele Strain-Hardening Cement-Based Composites - SHCC4 (Hardcover, 1st ed. 2018)
Viktor Mechtcherine, Volker Slowik, Petr Kabele
R5,605 Discovery Miles 56 050 Ships in 10 - 15 working days

This is the proceedings of the 4th International Conference on Strain-Hardening Cement-Based Composites (SHCC4), that was held at the Technische Universitat Dresden, Germany from 18 to 20 September 2017. The conference focused on advanced fiber-reinforced concrete materials such as strain-hardening cement-based composites (SHCC), textile-reinforced concrete (TRC) and high-performance fiber-reinforced cement-based composites (HPFRCC). All these new materials exhibit pseudo-ductile behavior resulting from the formation of multiple, fine cracks when subject to tensile loading. The use of such types of fiber-reinforced concrete could revolutionize the planning, development, dimensioning, structural and architectural design, construction of new and strengthening and repair of existing buildings and structures in many areas of application. The SHCC4 Conference was the follow-up of three previous successful international events in Stellenbosch, South Africa in 2009, Rio de Janeiro, Brazil in 2011, and Dordrecht, The Netherlands in 2014.

Strain Hardening Cement Composites: Structural Design and Performance - State-of-the-Art Report of the RILEM Technical... Strain Hardening Cement Composites: Structural Design and Performance - State-of-the-Art Report of the RILEM Technical Committee 208-HFC, SC3 (Hardcover, 2013 ed.)
Keitetsu Rokugo, Tetsushi Kanda; Kanakubo Toshiyuki, Petr Kabele, Hiroshi Fukuyama, …
R2,762 Discovery Miles 27 620 Ships in 10 - 15 working days

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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