000 02746cam a2200301zu 4500
001 88812213
003 FRCYB88812213
005 20250107211041.0
006 m o d
007 cr un
008 250107s2011 fr | o|||||0|0|||eng d
020 _a9780123852045
035 _aFRCYB88812213
040 _aFR-PaCSA
_ben
_c
_erda
100 1 _aLee, Yung-Li
245 0 1 _aMetal Fatigue Analysis Handbook
_bPractical problem-solving techniques for computer-aided engineering
_c['Lee, Yung-Li', 'Barkey, Mark E.', 'Kang, Hong-Tae']
264 1 _bElsevier Science
_c2011
300 _a p.
336 _btxt
_2rdacontent
337 _bc
_2rdamdedia
338 _bc
_2rdacarrier
650 0 _a
700 0 _aLee, Yung-Li
700 0 _aBarkey, Mark E.
700 0 _aKang, Hong-Tae
856 4 0 _2Cyberlibris
_uhttps://international.scholarvox.com/netsen/book/88812213
_qtext/html
_a
520 _aUnderstand why fatigue happens and how to model, simulate, design and test for it with this practical, industry-focused reference Written to bridge the technology gap between academia and industry, the Metal Fatigue Analysis Handbook presents state-of-the-art fatigue theories and technologies alongside more commonly used practices, with working examples included to provide an informative, practical, complete toolkit of fatigue analysis. Prepared by an expert team with extensive industrial, research and professorial experience, the book will help you to understand: Critical factors that cause and affect fatigue in the materials and structures relating to your work Load and stress analysis in addition to fatigue damage—the latter being the sole focus of many books on the topic How to design with fatigue in mind to meet durability requirements How to model, simulate and test with different materials in different fatigue scenarios The importance and limitations of different models for cost effective and efficient testing Whilst the book focuses on theories commonly used in the automotive industry, it is also an ideal resource for engineers and analysts in other disciplines such as aerospace engineering, civil engineering, offshore engineering, and industrial engineering. The only book on the market to address state-of-the-art technologies in load, stress and fatigue damage analyses and their application to engineering design for durability Intended to bridge the technology gap between academia and industry—written by an expert team with extensive industrial, research and professorial experience in fatigue analysis and testing An advanced mechanical engineering design handbook focused on the needs of professional engineers within automotive, aerospace and related industrial disciplines  
999 _c61202
_d61202