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{ "item_title" : "Metal Fatigue", "item_author" : [" L. P. Pook "], "item_description" : "Chapter 1: Introduction; Chapter 2: Historical Background: 2.1 Introduction, 2.2 Experimental Work, 2.3 The Modem Era; Chapter 3: Constant Amplitude Fatigue: 3.1 Notation, 3.2 S/N (W hler) Curves, 3.3 Scatter in Fatigue Data, 3.4 Mechanisms of Metal Fatigue; Chapter 4: Variable Amplitude and Multiaxial Fatigue: 4.1 Introduction, 4.2 Mathematical Description of Fatigue Loadings; 4.3 Miner's Rule, 4.4 Standard Load Histories, 4.5 Multiaxial Fatigue in Metals; Chapter 5: Fatigue Design: 5.1 Introduction, 5.2 Failure Analysis, 5.3 Situations, Philosophies and Approaches, 5.4 Product Liability; 5.5 Safety Regulations; Chapter 6: The Uncracked Situation: 6.1 Introduction, 6.2 Effect of Surface Finish; 6.3 Effect of Mean Stress, 6.4 Effect of Multiaxial Fatigue Loading, 6.5 Effect of Notches, 6.6 Bicycle Crankshaft Analysis; 6.7 Scatter under Variable Amplitude Fatigue Loading; 6.8 Improvement of Fatigue Life; Chapter 7: The Cracked Situation: 7.1 Introduction, 7.2 Initial Crack Size; 7.3 Final Crack Size; 7.4 Constant Amplitude Fatigue Crack Propagation, 7.5 Variable Amplitude Fatigue Crack Propagation, 7.6 Fractography; Chapter 8: Fatigue Crack Paths: 8.1 Introduction, 8.2 Crack Paths in Two Dimensions, 8.3 Planar Crack Paths, 8.4 Crack Paths in Three Dimensions; Chapter 9: Why Metal Fatigue Matters: 9.1 Introduction; 9.2 Avoidance of Fatigue Failure; 9.3 Research and Development; 9.4 The Role of Non Destructive Testing; 9.5. Current Trends; Appendix A: Fracture Mechanics; Appendix B: Random Load Theory and RMS; Appendix C: Non Destructive Testing; References; Index.", "item_img_path" : "https://covers4.booksamillion.com/covers/bam/9/40/177/645/9401776458_b.jpg", "price_data" : { "retail_price" : "109.99", "online_price" : "109.99", "our_price" : "109.99", "club_price" : "109.99", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Metal Fatigue|L. P. Pook

Metal Fatigue : What It Is, Why It Matters

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Overview

Chapter 1: Introduction; Chapter 2: Historical Background: 2.1 Introduction, 2.2 Experimental Work, 2.3 The Modem Era; Chapter 3: Constant Amplitude Fatigue: 3.1 Notation, 3.2 S/N (W hler) Curves, 3.3 Scatter in Fatigue Data, 3.4 Mechanisms of Metal Fatigue; Chapter 4: Variable Amplitude and Multiaxial Fatigue: 4.1 Introduction, 4.2 Mathematical Description of Fatigue Loadings; 4.3 Miner's Rule, 4.4 Standard Load Histories, 4.5 Multiaxial Fatigue in Metals; Chapter 5: Fatigue Design: 5.1 Introduction, 5.2 Failure Analysis, 5.3 Situations, Philosophies and Approaches, 5.4 Product Liability; 5.5 Safety Regulations; Chapter 6: The Uncracked Situation: 6.1 Introduction, 6.2 Effect of Surface Finish; 6.3 Effect of Mean Stress, 6.4 Effect of Multiaxial Fatigue Loading, 6.5 Effect of Notches, 6.6 Bicycle Crankshaft Analysis; 6.7 Scatter under Variable Amplitude Fatigue Loading; 6.8 Improvement of Fatigue Life; Chapter 7: The Cracked Situation: 7.1 Introduction, 7.2 Initial Crack Size; 7.3 Final Crack Size; 7.4 Constant Amplitude Fatigue Crack Propagation, 7.5 Variable Amplitude Fatigue Crack Propagation, 7.6 Fractography; Chapter 8: Fatigue Crack Paths: 8.1 Introduction, 8.2 Crack Paths in Two Dimensions, 8.3 Planar Crack Paths, 8.4 Crack Paths in Three Dimensions; Chapter 9: Why Metal Fatigue Matters: 9.1 Introduction; 9.2 Avoidance of Fatigue Failure; 9.3 Research and Development; 9.4 The Role of Non Destructive Testing; 9.5. Current Trends; Appendix A: Fracture Mechanics; Appendix B: Random Load Theory and RMS; Appendix C: Non Destructive Testing; References; Index.

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Details

  • ISBN-13: 9789401776455
  • ISBN-10: 9401776458
  • Publisher: Springer
  • Publish Date: August 2016
  • Dimensions: 9.61 x 6.69 x 0.61 inches
  • Shipping Weight: 1.03 pounds
  • Page Count: 271

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