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LEADER 00000cam a2200589Ii 4500 
003    OCoLC 
005    20190319055757.3 
006    m     o  d         
007    cr cnu---unuuu 
008    180413s2018    sz      o     000 0 eng d 
015    GBB8N9150|2bnb 
019    SpringerEBAon1031214388 
020    9783319893181|q(electronic bk.) 
020    3319893181|q(electronic bk.) 
020    |z9783319893174 
020    |z3319893173 
024 7  10.1007/978-3-319-89318-1|2doi 
037    com.springer.onix.9783319893181|bSpringer Nature 
040    N$T|beng|erda|epn|cN$T|dN$T|dGW5XE|dEBLCP|dYDX|dOCLCF|dAZU
       |dUWO|dUPM|dUAB|dOCLCQ|dMERER|dVT2|dOCLCQ|dU3W|dWYU|dOCLCQ
       |dCNCEN|dLVT|dOCLCQ|dUKMGB|dCAUOI 
049    MAIN 
050  4 TA418.38 
082 04 620.1/126|223 
100 1  Petinov, S. V.|q(Sergeĭ Vladimirovich) 
245 10 In-service fatigue reliability of structures /|cSergei V. 
       Petinov. 
264  1 Cham :|bSpringer,|c2018. 
300    1 online resource. 
336    text|btxt|2rdacontent 
337    computer|bc|2rdamedia 
338    online resource|bcr|2rdacarrier 
347    text file|bPDF|2rda 
490 1  Solid mechanics and its applications ;|vvolume 251 
505 0  Intro; Preface; Contents; Introduction; Reference; 1 
       Principal Definitions of Reliability; Abstract; 1.1 
       General; 1.2 Prediction of Intended Life of a Structure in
       Design; 1.3 Assessment of Residual Life of Structure in 
       Service; References; 2 Elements of Statistics and 
       Probability; Abstract; 2.1 Introduction; 2.2 Random Events
       and Variables; 2.2.1 Several Properties of Probability; 
       2.2.2 Random Variables; 2.2.3 Properties of the 
       Probability Density Function; 2.3 Statistics (Numerical 
       Characteristics) of Random Variables; 2.3.1 Expected 
       (Mean) Value; 2.4 Statistics of Random Processes. 
505 8  2.5 Confidence of Empirical (Observed) and Theoretical 
       DistributionsReferences; 3 Analysis of Structural 
       Response; Abstract; 3.1 General Principles: Static or 
       Dynamic Analysis of a Structure; 3.2 Statistical Dynamics.
       General Principles; 3.3 The Problems of Statistical 
       Dynamics; 3.4 Elements of Spectral Analysis; 3.5 Solution 
       of the Direct Problem (Wiener-Khinchin Theorem); 
       References; 4 Service Loads on Structures; Abstract; 4.1 
       Wind (Aerodynamic) Loads. Wind Velocity Spectrum; 4.2 
       Response of Affected Structures. Quasi-static Evaluation; 
       References. 
505 8  5 Fatigue of Materials and Structures. Phenomenon and 
       ModelingAbstract; 5.1 Introduction; 5.2 Initiation of 
       Fatigue Studies; 5.3 Fatigue Damage: Phenomenon and 
       Mechanisms; 5.4 Criteria for Fatigue Failure of Structural
       Materials. S-N Curves; 5.4.1 Cyclic Loading. Cyclic Stress
       -Strain Diagram; 5.5 Cyclic Hardening and Softening. 
       Generalization of Cyclic Diagrams; 5.6 Criteria for 
       Fatigue Failure of Structural Materials. Strain-Life 
       Format; References; 6 Factors Affecting Fatigue Resistance
       of Materials and Structures; Abstract; 6.1 General. 
505 8  6.2 Effects of Stress Concentration. S-N Criteria-Based 
       Approach6.3 Effects of Frequency of Alternating Loading; 
       6.4 Scale (Size) Effects; 6.5 The Constant Load Influence 
       on Fatigue; 6.6 Multi-axial Stress Fatigue; 6.7 Corrosion-
       Stress Effects on Fatigue; 6.8 Fatigue of Welded Joints 
       and Structures; 6.9 Establishing Identity of Fatigue 
       Properties of Welded Joints in Test Specimens and in 
       Structural Details; 6.10 Irregular and Random Load 
       Fatigue; 6.11 Strain-Life Criteria-Based Approach. Stress 
       and Strain at a Notch; 6.12 Block and Random Loading; 
       References. 
505 8  7 Examples of Fatigue Assessment of Structural 
       DetailsAbstract; 7.1 Fatigue Assessment of Welded Joint of
       Cylindrical and Conical Shells; 7.2 Evaluation of 
       Efficiency of Drilling Out the Crack Tip; 7.3 Fatigue 
       Assessment of Welded Joint in Tubular Frame; 7.4 Fatigue 
       Assessment of Ship Superstructure at Expansion Joint; 
       7.4.1 General; 7.4.2 Principles of Fatigue Analysis and 
       Design of Hull Structures; 7.4.3 Fatigue Assessment of the
       Detail. Strain-Life Approach; 7.4.4 Fatigue Analysis of 
       the Detail Versions. S-N Criteria; References. 
520    This book provides readers with the latest know-how and 
       tools needed to assess the in-service strength and 
       reliability of welded structures. It addresses the two 
       principal mechanisms of structural material deterioration,
       fatigue and corrosion, which affect the in-service 
       behavior of structures. In this regard, the primary focus 
       is on fatigue in connection with various structural 
       failure scenarios. Realistic and typical examples of 
       welded structures' design and residual life assessment are
       used throughout the book in order to show readers the 
       complexity of real-world assessments. The book offers a 
       valuable resource for master's students in mechanical and 
       civil engineering, and for engineers whose work involves 
       fatigue design and in-service inspections of welded 
       structures. 
650  0 Materials|xFatigue. 
650  0 Strains and stresses. 
650  0 Strength of materials. 
655  4 Electronic books. 
710 2  SpringerLink|eissuing body. 
776 08 |iPrint version:|aPetinov, S.V. (Sergeĭ Vladimirovich).
       |tIn-service fatigue reliability of structures.|dCham : 
       Springer, 2018|z3319893173|z9783319893174
       |w(OCoLC)1028604788 
830  0 Solid mechanics and its applications ;|vv. 251. 
830  0 Springer Engineering eBooks 2018 English+International 
856 40 |uhttps://ezp.lib.unimelb.edu.au/login?url=http://
       link.springer.com/10.1007/978-3-319-89318-1|zConnect to 
       ebook (University of Melbourne only) 
990    Springer EBA e-book collections for 2017-2019 
990    Springer Engineeriing 2018 
990    Batch Ebook load (bud2) - do not edit, delete or attach 
       any records. 
991    |zNEW New collection springerlink.ebooksengine2018 2019-03
       -18 
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