Metal Fatigue Testing and Analysis: Theory and Practice
Autor Yung-Li Leeen Limba Engleză Paperback – 23 ian 2025
Readers are guided through the development of validation tests to assess the durability of their designs, with emphasis placed on the importance of implementing reliability demonstration tests to ensure that test structures meet the design targets.
- Reviews fatigue and reliability theories for product durability designs, analyses, and validations, highlighting the latest advances and identifying key challenges
- Guides readers on how to design targets from mission profile data, which is crucial in ensuring that structures (vehicle, systems, and components) meet the specific requirements of their applications
- Outlines the development of validation tests to assess the durability of their designs, emphasizing the importance of implementing reliability demonstration tests to ensure that test structures meet design targets
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Specificații
ISBN-13: 9780443266652
ISBN-10: 0443266654
Pagini: 544
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443266654
Pagini: 544
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Fatigue damage theories
2. Rainflow cycle counting methods
3. Stress-based fatigue life estimation methods
4. Strain-based fatigue life estimation methods
5. Multiaxial fatigue theories
6. Theories of plasticity
7. Structural dynamics
8. Spectral fatigue damage estimation methods
9. Vibration fatigue test target development
10. Fatigue analysis of spot-welded and seam-welded joints
11. Thermomechanical fatigue damage – the neo-sehitoglu model
12. Reliability demonstration test methods
13. Durability test target development
2. Rainflow cycle counting methods
3. Stress-based fatigue life estimation methods
4. Strain-based fatigue life estimation methods
5. Multiaxial fatigue theories
6. Theories of plasticity
7. Structural dynamics
8. Spectral fatigue damage estimation methods
9. Vibration fatigue test target development
10. Fatigue analysis of spot-welded and seam-welded joints
11. Thermomechanical fatigue damage – the neo-sehitoglu model
12. Reliability demonstration test methods
13. Durability test target development