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Books by Keyword: Fatigue Strength
Books
Edited by:
Prof. Xiao Hong Zhu, Prof. Jong Hak Kim, Prof. Serge Zhuiykov and Prof. Alfred A. Christy
Online since: September 2024
Description: This book contains articles comprising the research results presented at the 9th International Conference on Composite Materials and Material Engineering (ICCMME 2024) and the 14th International Conference on Advanced Materials Research (ICAMR 2024) held in January 2024 in Singapore and Phuket, Thailand, respectively. The collected research results will be helpful to many specialists in materials science, mechanical engineering and construction.
Edited by:
Prof. Andreas Öchsner and Holm Altenbach
Online since: June 2013
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This special issue of Key Engineering Materials contains selected refereed papers presented at the Sixth International Conference on Advanced Computational Engineering and Experimenting (ACE-X 2012) held at Kalyon Hotel (Istanbul), Turkey during the period 1st-4th July, 2012.
This special issue of Key Engineering Materials contains selected refereed papers presented at the Sixth International Conference on Advanced Computational Engineering and Experimenting (ACE-X 2012) held at Kalyon Hotel (Istanbul), Turkey during the period 1st-4th July, 2012.
Edited by:
Prof. Heinz Palkowski and Kai Michael Rudolph
Online since: October 2010
Description: Volume is indexed by Thomson Reuters BCI (WoS).
This work presents the results of the initial stage of research of some sub-projects of the Collaborative Research Centre SFB 675, “Creation of High-Strength Structures and Joints by Setting up Local Material Properties”, set up in 2006 by the German Research Foundation (DFG). This Collaborative Research Centre is the result of cooperation between the research institutes of Clausthal University of Technology and Leibniz Universität, Hanover. The purpose of SFB 675 is to develop materials and manufacturing processes for high-strength structures, having graduated and locally engineered properties, by exploiting material, physical and/or geometrical effects. The incorporation of locally altered material properties, tailored to handle the strains expected to be encountered during use, lead to increases in the efficiency of the whole structure. This book offers an interesting overview of this intriguing topic.
This work presents the results of the initial stage of research of some sub-projects of the Collaborative Research Centre SFB 675, “Creation of High-Strength Structures and Joints by Setting up Local Material Properties”, set up in 2006 by the German Research Foundation (DFG). This Collaborative Research Centre is the result of cooperation between the research institutes of Clausthal University of Technology and Leibniz Universität, Hanover. The purpose of SFB 675 is to develop materials and manufacturing processes for high-strength structures, having graduated and locally engineered properties, by exploiting material, physical and/or geometrical effects. The incorporation of locally altered material properties, tailored to handle the strains expected to be encountered during use, lead to increases in the efficiency of the whole structure. This book offers an interesting overview of this intriguing topic.
Edited by:
Yu Zhou, Shan-Tung Tu and Xishan Xie
Online since: September 2007
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
The collection coveres all aspects of fracture and strength of materials and structure, particularly of advanced materials ranging from nanoscale to macroscale and modern structural systems ranging from large scale plants to micro- devices.
The collection coveres all aspects of fracture and strength of materials and structure, particularly of advanced materials ranging from nanoscale to macroscale and modern structural systems ranging from large scale plants to micro- devices.
Edited by:
Ichsan Setya Putra and Djoko Suharto
Online since: March 2006
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Fracture, Fatigue and Strength are some of the most important properties of engineering materials.
Fracture, Fatigue and Strength are some of the most important properties of engineering materials.
Edited by:
Young-Jin Kim, Dong-Ho Bae and Yun-Jae Kim
Online since: November 2005
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This volume comprises selected papers from the Asian Pacific Conference for Fracture and Strength (APCFS’04), held on Jeju Island, Korea during the 6th to 8th October, 2004. During this conference, participants from the Asian-Pacific region gathered in order to exchange the latest experimental, theoretical and computational research on the fracture, strength, integrity and reliability of materials and structures.
This volume comprises selected papers from the Asian Pacific Conference for Fracture and Strength (APCFS’04), held on Jeju Island, Korea during the 6th to 8th October, 2004. During this conference, participants from the Asian-Pacific region gathered in order to exchange the latest experimental, theoretical and computational research on the fracture, strength, integrity and reliability of materials and structures.
Edited by:
Kikuo Kishimoto, Prof. Masanori Kikuchi, Tetsuo Shoji and Masumi Saka
Online since: April 2004
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
The Far East and Oceanic Fracture Society (FEOFS) and the Center for Physics and Chemistry of Fracture and Failure Prevention (PCFP) jointly organized a pair of conferences, FEOFS 2003 and 2nd ICPCF, on October 20-22 at Tohoku University, Sendai, Japan.
The Far East and Oceanic Fracture Society (FEOFS) and the Center for Physics and Chemistry of Fracture and Failure Prevention (PCFP) jointly organized a pair of conferences, FEOFS 2003 and 2nd ICPCF, on October 20-22 at Tohoku University, Sendai, Japan.
Authors:
A. Buch
Online since: January 1988
Description: Optimal design using advanced materials is an ever more progressive and challenging domain within applied mechanics. Here is an invaluable self-contained source of information concerning methods of calculation of fatigue limits and lifetimes of structural elements.
While in most texts the treatment of this subject is confined merely to a phenomenological approach, this book provides the essential knowledge for an analytical treatment of design problems as well as a unique collection of appropriate data sheets which are required for the quantitative application of accepted design recommendations.
While in most texts the treatment of this subject is confined merely to a phenomenological approach, this book provides the essential knowledge for an analytical treatment of design problems as well as a unique collection of appropriate data sheets which are required for the quantitative application of accepted design recommendations.
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