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Elastic-plastic Fatigue Crack Growth Analysis Under Variable Amplitude Loading Spectra

Elastic-plastic Fatigue Crack Growth Analysis Under Variable Amplitude Loading Spectra PDF Author: Semen Mikheevskiy
Publisher:
ISBN:
Category :
Languages : en
Pages : 149

Book Description
Most components or structures experience in service a variety of cyclic stresses. In the case of cyclic constant amplitude loading the fatigue crack growth depends only on the crack, the component geometry and the applied loading. In the case of variable amplitude loading it also depends on the preceding cyclic loading history. Various types of load sequence (overloads, under-loads, or combination of them) may induce different load-interaction effects which can cause either acceleration or reduction of the fatigue crack growth rate. The previously developed UniGrow fatigue crack growth model for constant amplitude loading histories which was based on the analysis of the local stress-strain material behaviour at the crack tip has been improved, modified and extended to such a level of sophistication that it can be used for fatigue crack growth analyses of cracked bodies subjected to arbitrary variable amplitude loading spectra. It was shown that the UniGrow model enables to correctly predict the effect of the applied compressive stress and tensile overloads by accounting for the existence of the internal (residual) stresses induced by the reversed cyclic plasticity around the crack tip. This idea together with additional structural memory effect model has been formalized mathematically and coded into computer program convenient for predicting fatigue crack growth under arbitrary variable amplitude loading spectra.

Elastic-plastic Fatigue Crack Growth Analysis Under Variable Amplitude Loading Spectra

Elastic-plastic Fatigue Crack Growth Analysis Under Variable Amplitude Loading Spectra PDF Author: Semen Mikheevskiy
Publisher:
ISBN:
Category :
Languages : en
Pages : 149

Book Description
Most components or structures experience in service a variety of cyclic stresses. In the case of cyclic constant amplitude loading the fatigue crack growth depends only on the crack, the component geometry and the applied loading. In the case of variable amplitude loading it also depends on the preceding cyclic loading history. Various types of load sequence (overloads, under-loads, or combination of them) may induce different load-interaction effects which can cause either acceleration or reduction of the fatigue crack growth rate. The previously developed UniGrow fatigue crack growth model for constant amplitude loading histories which was based on the analysis of the local stress-strain material behaviour at the crack tip has been improved, modified and extended to such a level of sophistication that it can be used for fatigue crack growth analyses of cracked bodies subjected to arbitrary variable amplitude loading spectra. It was shown that the UniGrow model enables to correctly predict the effect of the applied compressive stress and tensile overloads by accounting for the existence of the internal (residual) stresses induced by the reversed cyclic plasticity around the crack tip. This idea together with additional structural memory effect model has been formalized mathematically and coded into computer program convenient for predicting fatigue crack growth under arbitrary variable amplitude loading spectra.

Fatigue Testing and Analysis Under Variable Amplitude Loading Conditions

Fatigue Testing and Analysis Under Variable Amplitude Loading Conditions PDF Author: Peter C. McKeighan
Publisher: ASTM International
ISBN: 0803134797
Category : Aluminum alloys
Languages : en
Pages : 588

Book Description


Fatigue Crack Growth Prediction Methods for Variable Amplitude Loading

Fatigue Crack Growth Prediction Methods for Variable Amplitude Loading PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 32

Book Description
Considerable data on fatigue properties of materials under constant amplitude loading is available in the literature under the forms representative of the different aspects of the fatigue phenomenon. To employ these data, the design engineer must adapt it to the particular service conditions that he is concerned with. The stress vs. life or S-N curve is largely related to the fatigue initiation behaviour of materials and defines the endurance limit which is used for design. The strain-life curve is of more recent origin and relates the elastic and plastic strain amplitudes to the initiation life. Fatigue propagation data are presented on a crack growth rate vs. stress intensity factor range diagram.

Fatigue of Structures and Materials

Fatigue of Structures and Materials PDF Author: J. Schijve
Publisher: Springer Science & Business Media
ISBN: 1402068085
Category : Science
Languages : en
Pages : 627

Book Description
Fatigue of structures and materials covers a wide scope of different topics. The purpose of the present book is to explain these topics, to indicate how they can be analyzed, and how this can contribute to the designing of fatigue resistant structures and to prevent structural fatigue problems in service. Chapter 1 gives a general survey of the topic with brief comments on the signi?cance of the aspects involved. This serves as a kind of a program for the following chapters. The central issues in this book are predictions of fatigue properties and designing against fatigue. These objectives cannot be realized without a physical and mechanical understanding of all relevant conditions. In Chapter 2 the book starts with basic concepts of what happens in the material of a structure under cyclic loads. It illustrates the large number of variables which can affect fatigue properties and it provides the essential background knowledge for subsequent chapters. Different subjects are presented in the following main parts: • Basic chapters on fatigue properties and predictions (Chapters 2–8) • Load spectra and fatigue under variable-amplitude loading (Chapters 9–11) • Fatigue tests and scatter (Chapters 12 and 13) • Special fatigue conditions (Chapters 14–17) • Fatigue of joints and structures (Chapters 18–20) • Fiber-metal laminates (Chapter 21) Each chapter presents a discussion of a speci?c subject.

Fatigue Crack Growth Under Spectrum Loads

Fatigue Crack Growth Under Spectrum Loads PDF Author: Ralph Ivan Stephens
Publisher: ASTM International
ISBN:
Category : Alloys
Languages : en
Pages : 345

Book Description


Prediction of Fatigue-crack Growth Under Variableamplitude and Spectrum Loading Using a Closure Model

Prediction of Fatigue-crack Growth Under Variableamplitude and Spectrum Loading Using a Closure Model PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 42

Book Description


Development of a Practical Methodology for Elastic-Plastic and Fully Plastic Fatigue Crack Growth

Development of a Practical Methodology for Elastic-Plastic and Fully Plastic Fatigue Crack Growth PDF Author: R. Craig McClung
Publisher:
ISBN:
Category : Materials
Languages : en
Pages : 490

Book Description


Elastic-Plastic Fatigue Crack Initiation and Propagation Under Variable Amplitude Loading

Elastic-Plastic Fatigue Crack Initiation and Propagation Under Variable Amplitude Loading PDF Author:
Publisher:
ISBN: 9789178715923
Category :
Languages : en
Pages : 155

Book Description


Cyclic Stress-strain and Plastic Deformation Aspects of Fatigue Crack Growth

Cyclic Stress-strain and Plastic Deformation Aspects of Fatigue Crack Growth PDF Author:
Publisher:
ISBN:
Category : Metals
Languages : en
Pages : 240

Book Description


Development of a Practical Methodology for Elastic-Plastic and Fully Plastic Fatigue Crack Growth

Development of a Practical Methodology for Elastic-Plastic and Fully Plastic Fatigue Crack Growth PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781721974122
Category :
Languages : en
Pages : 538

Book Description
A practical engineering methodology has been developed to analyze and predict fatigue crack growth rates under elastic-plastic and fully plastic conditions. The methodology employs the closure-corrected effective range of the J-integral, delta J(sub eff) as the governing parameter. The methodology contains original and literature J and delta J solutions for specific geometries, along with general methods for estimating J for other geometries and other loading conditions, including combined mechanical loading and combined primary and secondary loading. The methodology also contains specific practical algorithms that translate a J solution into a prediction of fatigue crack growth rate or life, including methods for determining crack opening levels, crack instability conditions, and material properties. A critical core subset of the J solutions and the practical algorithms has been implemented into independent elastic-plastic NASGRO modules. All components of the entire methodology, including the NASGRO modules, have been verified through analysis and experiment, and limits of applicability have been identified. McClung, R. C. and Chell, G. G. and Lee, Y. -D. and Russell, D. A. and Orient, G. E. Marshall Space Flight Center NAS8-37828...