Creep Shrinkage and Durability Mechanics of Concrete and Other Quasi brittle Materials

Creep  Shrinkage and Durability Mechanics of Concrete and Other Quasi brittle Materials
Author: Treval C. Powers
Publsiher: Pergamon
Total Pages: 0
Release: 2001
Genre: Concrete
ISBN: 0080440029

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Creep Shrinkage and Durability Mechanics of Concrete and Concrete Structures Two Volume Set

Creep  Shrinkage and Durability Mechanics of Concrete and Concrete Structures  Two Volume Set
Author: Tada-aki Tanabe,Kenji Sakata,Hirozo Mihashi,Ryoichi Sato,Kochi Maekawa,Hikaru Nakamura
Publsiher: CRC Press
Total Pages: 1552
Release: 2008-09-01
Genre: Technology & Engineering
ISBN: 9780203882955

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CREEP, SHRINKAGE AND DURABILITY MECHANICS OF CONCRETE AND CONCRETE STRUCTURES contains the keynote lectures, technical reports and contributed papers presented at the Eighth International Conference on Creep, Shrinkage and Durability of Concrete and Concrete Structures (CONCREEP8, Ise-shima, Japan, 30 September - 2 October 2008). The topics covered

Creep Shrinkage and Durability of Concrete and Concrete Structures

Creep  Shrinkage and Durability of Concrete and Concrete Structures
Author: Gilles Pijaudier-Cabot,Bruno Gérard,Paul Acker
Publsiher: Wiley-ISTE
Total Pages: 656
Release: 2005-09-30
Genre: Technology & Engineering
ISBN: 1905209509

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Creep, shrinkage and durability of concrete and concrete structures have been a traditional conference topic for almost fifty years. This volume contains contributions from presentations at CONCREEP – 7, held September 12th – September 14th, 2005 at Ecole Centrale de Nantes, France. These papers cover the latest results and implementation strategies of creep, shrinkage and durability mechanics research at the interface of solid mechanics, materials science, experimental mechanics, and computational mechanics of concrete-like materials, and the related structural engineering problems.

Creep and Hygrothermal Effects in Concrete Structures

Creep and Hygrothermal Effects in Concrete Structures
Author: Zdeněk P. Bažant,Milan Jirásek
Publsiher: Springer
Total Pages: 918
Release: 2018-01-17
Genre: Technology & Engineering
ISBN: 9789402411386

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This comprehensive treatise covers in detail practical methods of analysis as well as advanced mathematical models for structures highly sensitive to creep and shrinkage. Effective computational algorithms for century-long creep effects in structures, moisture diffusion and high temperature effects are presented. The main design codes and recommendations (including RILEM B3 and B4) are critically compared. Statistical uncertainty of century-long predictions is analyzed and its reduction by extrapolation is discussed, with emphasis on updating based on short-time tests and on long-term measurements on existing structures. Testing methods and the statistics of large randomly collected databases are critically appraised and improvements of predictions of multi-decade relaxation of prestressing steel, cyclic creep in bridges, cracking damage, etc., are demonstrated. Important research directions, such as nanomechanical and probabilistic modeling, are identified, and the need for separating the long-lasting autogenous shrinkage of modern concretes from the creep and drying shrinkage data and introducing it into practical prediction models is emphasized. All the results are derived mathematically and justified as much as possible by extensive test data. The theoretical background in linear viscoelasticity with aging is covered in detail. The didactic style makes the book suitable as a textbook. Everything is properly explained, step by step, with a wealth of application examples as well as simple illustrations of the basic phenomena which could alternate as homeworks or exams. The book is of interest to practicing engineers, researchers, educators and graduate students.

Report 25 Early Age Cracking in Cementitious Systems Report of RILEM Technical committee TC 181 EAS Early age cracking shrinkage induced stresses and cracking in cementitious systems

Report 25  Early Age Cracking in Cementitious Systems   Report of RILEM Technical committee TC 181 EAS  Early age cracking shrinkage induced stresses and cracking in cementitious systems
Author: Arnon Bentur
Publsiher: RILEM Publications
Total Pages: 360
Release: 2003
Genre: Concrete
ISBN: 2912143330

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Numerical Modeling of AAR

Numerical Modeling of AAR
Author: Victor Saouma
Publsiher: CRC Press
Total Pages: 324
Release: 2013-12-19
Genre: Technology & Engineering
ISBN: 9781315777689

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This reference book presents the theory and methodology to conduct a finite element assessment of concrete structures subjected to chemically induced volumetric expansion in general and alkali aggregate reaction in particular. It is limited to models developed by the author, and focuses on how to best address a simple question: if a structure suffe

Developments in Mechanics of Structures and Materials

Developments in Mechanics of Structures and Materials
Author: Andrew J. Deeks,Hong Hao
Publsiher: Taylor & Francis Group
Total Pages: 708
Release: 2005
Genre: Mechanics, Applied
ISBN: 0415366119

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Comprehensive Structural Integrity

Comprehensive Structural Integrity
Author: Ian Milne,R. O. Ritchie,B.L. Karihaloo
Publsiher: Elsevier
Total Pages: 4647
Release: 2003-07-25
Genre: Business & Economics
ISBN: 9780080490731

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The aim of this major reference work is to provide a first point of entry to the literature for the researchers in any field relating to structural integrity in the form of a definitive research/reference tool which links the various sub-disciplines that comprise the whole of structural integrity. Special emphasis will be given to the interaction between mechanics and materials and structural integrity applications. Because of the interdisciplinary and applied nature of the work, it will be of interest to mechanical engineers and materials scientists from both academic and industrial backgrounds including bioengineering, interface engineering and nanotechnology. The scope of this work encompasses, but is not restricted to: fracture mechanics, fatigue, creep, materials, dynamics, environmental degradation, numerical methods, failure mechanisms and damage mechanics, interfacial fracture and nano-technology, structural analysis, surface behaviour and heart valves. The structures under consideration include: pressure vessels and piping, off-shore structures, gas installations and pipelines, chemical plants, aircraft, railways, bridges, plates and shells, electronic circuits, interfaces, nanotechnology, artificial organs, biomaterial prostheses, cast structures, mining... and more. Case studies will form an integral part of the work.