The Fundamentals of Structural Integrity and Failure (Construction Materials and Engineering)

دانلود کتاب The Fundamentals of Structural Integrity and Failure (Construction Materials and Engineering)

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کتاب مبانی یکپارچگی و شکست سازه (مصالح ساختمانی و مهندسی) نسخه زبان اصلی

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توضیحاتی در مورد کتاب The Fundamentals of Structural Integrity and Failure (Construction Materials and Engineering)

نام کتاب : The Fundamentals of Structural Integrity and Failure (Construction Materials and Engineering)
عنوان ترجمه شده به فارسی : مبانی یکپارچگی و شکست سازه (مصالح ساختمانی و مهندسی)
سری :
ناشر : Nova Science Publishers, Inc
سال نشر : 2020
تعداد صفحات : 280
ISBN (شابک) : 2020044962 , 9781536188264
زبان کتاب : English
فرمت کتاب : pdf
حجم کتاب : 13 مگابایت



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فهرست مطالب :


Contents\nPreface\nChapter 1\nStructural Integrity Assessment of Spent Nuclear Fuel\n Abstract\n Introduction\n Background\n Literature Review\n Material Model of SNF\n Modeling Procedures of Nuclear Fuel Rod\n Reference Fuel\n Detailed Finite Element Model of a Single Fuel Rod\n Objective of Model\n Contact Model of Pellet-Clad Bonding\n Spacer Grid Stiffness\n Rod Internal Pressure\n Analysis Procedures of Nuclear Fuel Rod Under Drop Impact Load\n Structural Resistance Analysis\n Parametric Analysis\n Results and Discussion\n Conclusion\n References\nChapter 2\nStructural Integrity Issues from Crack Nucleation, Initiation and Growth\n Abstract\n Introduction\n Crack Nucleation vs. Initiation\n Definitions\n Fatigue Crack Nucleation under Constant Amplitude Loading\n Fatigue Crack Nucleation under Variable Amplitude Loading\n Small Crack Problems\n Classification\n Short Crack Growth Rates\n Dislocation Mechanics for Short Cracks\n The Extended Slip Band Solution\n The Blocked Slip Band Solution\n The Propagated Slip Band Solution\n Long Crack Problems\n Total Life Case Studies\n Center-Hole in a Plate\n Key-Hole Specimen\n Conclusion\n References\n Biographical Sketch\nChapter 3\nModeling, Computation, Measurement, and Signal Processing for the Integrity Assessment of Engineering Structures under Uncertainty\n Abstract\n 1. Introduction\n 2. Dynamic System Modeling and System Identification\n 3. System Identification Using Least-Squares Method\n 3.1. Uncertainty\n 3.2. Least-Squares (LS) Solution\n 4. System Identification Using Extended Kalman Filter\n 4.1. Uncertainty\n 4.2. Solution procedure\n 5. 3D GILS-EKF-UI Procedure – An Approach for SIAHM with Unknown Input and Limited Responses\n 5.1. 3D GILS-EKF-UI – Stage 1 – Substructure Identification\n 5.2. 3D GILS-EKF-UI – Stage 2 – Complete Structural Identification\n 6. Example – Health Assessment of Three-Dimensional Frame\n 7. SIAHM Using Sensor Measurements and Mitigation of Uncertainty\n Conclusion\n Acknowledgments\n References\nChapter 4\nEddy Current Detection of Cracks in Ferromagnetic Steel Structures\n Abstract\n Introduction\n Eddy Current Method for Detection of Defects in Ferromagnetic Steel Structures – Short Review\n Double Differential EC Probes as Effective Tool for Defect Detection in the Ferromagnetic Steel Components\n General Information\n Detection of the Hidden Defects through the Dielectric Protective Coating\n Detection of the Defects through an Aluminum Protective Coating\n Inspection Productivity Enhancement Based on the Array Type EC Probe Development\n New Solutions to Existing Inspection Problems related to the Ferromagnetic Steel Components\n Inspection of Gas Turbine Blades by Double Differential Type EC Probe\n Detection of the Defects on the Sidewall of the Gas Turbine Holes\n Detection of the Defects in the Ferromagnetic Steel Forgings\n Conclusion\n References\n Biographical Sketch\nChapter 5\nCoercive Force Measurements for Structural Health Monitoring\n Abstract\n Introduction\n Characterization of Ferromagnetic Materials by Magnetic Parameters\n Magnetic Hysteresis and Related Parameters\n Preliminary Considerations\n Instrumentation for Magnetic Parameters Evaluation by Attachable Type Transducers\n Investigations Concerned with New Coercive Force Method Application\n Evaluation of the Steam Pipelines after Long-Term Operation Life\n Operational Stresses in Ship Load-Bearing Components under the in-Service Loading\n Conclusion\n References\n Biographical Sketch\nChapter 6\nPrognosis and Fault Detection in Pressure Vessels: Wiener Applied to Negative Selected Artificial Immunological Systems\n Abstract\n 1. Introduction\n 2. Pressure Vessel\n 3. Structural Health Monitoring - SHM\n 4. Signal Processing\n 4.1. Wiener Filter\n 4.2. Artificial Immune System: Negative Selection\n 4.3. Matching Criterion and Affinity Rate\n 5. Experimental Methodology\n 5.1. Structural System Characterization\n 5.2. Digital Signal Analysis and Processing\n 5.3. Artificial Immune System: Negative Selection\n 5.4. General Discussion of Results\n Conclusion\n Acknowledgments\n References\nIndex\nBlank Page




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