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The book Deformation of 304LN Stainless Steel Multiaxially is focuses on the behavior of 304LN stainless steel under multiaxial cyclic loading, it delves into various topics such as fatigue, plasticity, strain, stress, crack initiation, crack propagation, and mechanical behavior of the material. The book discusses the effect of loading path on the material's behavior and explores the material's response to both experimental investigation and numerical simulation. Also, examines the microstructure and texture of the material and investigates the fatigue life under high cycle fatigue and low…mehr

Produktbeschreibung
The book Deformation of 304LN Stainless Steel Multiaxially is focuses on the behavior of 304LN stainless steel under multiaxial cyclic loading, it delves into various topics such as fatigue, plasticity, strain, stress, crack initiation, crack propagation, and mechanical behavior of the material. The book discusses the effect of loading path on the material's behavior and explores the material's response to both experimental investigation and numerical simulation. Also, examines the microstructure and texture of the material and investigates the fatigue life under high cycle fatigue and low cycle fatigue. Furthermore, it explores the behavior of the material under different loading conditions such as ratcheting, non-proportional loading, and thermo-mechanical fatigue and highlights the effects of environmental factors such as oxidation, corrosion, and hydrogen embrittlement on the material's behavior. Additionally, the book explores various surface treatments and their impact on surface roughness and residual stress. The book also covers topics such as notch effect, mean stress, stress ratio, critical plane, principal stress, multiaxial stress state, and multiaxial loading. It introduces the strain-life approach and the stress-life approach for fatigue analysis and discusses the concept of cumulative damage. Overall, this book provides a comprehensive understanding of the behavior of 304LN stainless steel under multiaxial cyclic loading and offers valuable insights for researchers and practitioners in the field of material science and engineering.