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From Creep Damage Mechanics to Homogenization Methods: A Liber Amicorum to celebrate the birthday of Nobutada Ohno (Advanced Structured Materials Book 64)

معرفی کتاب «From Creep Damage Mechanics to Homogenization Methods: A Liber Amicorum to celebrate the birthday of Nobutada Ohno (Advanced Structured Materials Book 64)» نوشتهٔ Holm Altenbach, Tetsuya Matsuda, Dai Okumura (eds.)، منتشرشده توسط نشر Springer International Publishing AG در سال 2015. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

This volume presents a collection of contributions on materials modeling, which were written to celebrate the 65th birthday of Prof. Nobutada Ohno. The book follows Prof. Ohnoℓ́ℓs scientific topics, starting with creep damage problems and ending with homogenization methods Front Matter....Pages i-xviii Thermo-Electro-Mechanical Properties of Interpenetrating Phase Composites with Periodic Architectured Reinforcements....Pages 1-18 A Continuum Damage Model Based on Experiments and Numerical Simulations—A Review....Pages 19-35 The Multiplicative Decomposition of the Deformation Gradient in Plasticity—Origin and Limitations....Pages 37-66 Effect of Biaxial Work Hardening Modeling for Sheet Metals on the Accuracy of Forming Limit Analyses Using the Marciniak-Kuczyński Approach....Pages 67-95 Three-Dimensional FE Analysis Using Homogenization Method for Ductile Polymers Based on Molecular Chain Plasticity Model Considering Craze Evolution....Pages 97-119 Inelastic Deformation and Creep-Fatigue Life of Plate-Fin Structures....Pages 121-142 Review on Spatio-Temporal Multiscale Phenomena in TRIP Steels and Enhancement of Its Energy Absorption....Pages 143-161 Methods for Creep Rupture Analysis—Previous Attempts and New Challenges....Pages 163-198 Strain Gradient Plasticity: A Variety of Treatments and Related Fundamental Issues....Pages 199-218 Effects of Fiber Arrangement on Negative Poisson’s Ratio of Angle-Ply CFRP Laminates: Analysis Based on a Homogenization Theory....Pages 219-230 Modeling of Internal Damage Evolution of Piezoelectric Ceramics Under Compression-Compression Fatigue Tests....Pages 231-240 Analysis of Inelastic Behavior for High Temperature Materials and Structures....Pages 241-298 Onset of Matrix Cracking in Fiber Reinforced Polymer Composites: A Historical Review and a Comparison Between Periodic Unit Cell Analysis and Analytic Failure Criteria....Pages 299-317 Swelling-Induced Buckling Patterns in Gel Films with a Square Lattice of Holes Subjected to In-Plane Uniaxial and Biaxial Pretensions....Pages 319-334 A Method to Evaluate Creep Properties of Solder Alloys Using Micro Indentation....Pages 335-356 The Behavior of the Graded Cellular Material Under Impact....Pages 357-377 Fracture Mechanics at Atomic Scales....Pages 379-396 Radiation Damage Evolution in Ductile Materials....Pages 397-411 Capabilities of the Multi-mechanism Model in the Prediction of the Cyclic Behavior of Various Classes of Metals....Pages 413-439 Phase-Field Modeling for Dynamic Recrystallization....Pages 441-459 Mechanical Properties of Shape Memory Alloy and Polymer....Pages 461-487 Constitutive Model of Discontinuously-Reinforced Composites Taking Account of Reinforcement Damage and Size Effect and Its Application....Pages 489-527 A Study of Metal Fatigue Failure as Inherent Features of Elastoplastic Constitutive Equations....Pages 529-540 Maximization of Strengthening Effect of Microscopic Morphology in Duplex Steels....Pages 541-555 Molecular Dynamics Simulations on Local Lattice Instability at Mode I Crack Tip in BCC Iron....Pages 557-570 Modeling of Large-Strain Cyclic Plasticity Including Description of Anisotropy Evolution for Sheet Metals....Pages 571-585 A New Kinematic Hardening Rule Describing Different Plastic Moduli in Monotonic and Cyclic Deformations....Pages 587-601 This volume presents a collection of contributions on materials modeling, which were written to celebrate the 65th birthday of Prof. Nobutada Ohno. The book follows Prof. Ohnoĺls scientific topics, starting with creep damage problems and ending with homogenization methods
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