My Account Log in

3 options

Investigation of cohesive zone models for three-dimensional fatigue crack propagation in engineering metals / vorgelegt von M.Sc. Xiao Li.

EBSCOhost Academic eBook Collection (North America) Available online

View online

Ebook Central Academic Complete Available online

View online

eBook EngineeringCore Collection Available online

View online
Format:
Book
Author/Creator:
Li, Xiao, author.
Language:
English
Subjects (All):
Three-dimensional imaging.
Physical Description:
1 online resource (122 pages) : illustrations, graphs
Place of Publication:
Göttingen, [Germany] : Cuvillier Verlag, 2017.
Summary:
With the development of technology, damage tolerance design becomes compulsory and fatigue crack propagation life is a necessary design case, e.g. in aerospace industry. For low cycle fatigue problems, the failure process is generally ductile which cannot be described by the known Paris' law properly. Predicting elastoplastic fatigue crack growth life remains one of the most challenging problems in fracture mechanics.Cohesive zone modeling provides an alternative way to predict crack growth in ductile materials under elastoplastic loading conditions. The investigations of constraint effects have confirmed that cracking depends on the applied load intensity and the load configuration. Present dissertation concerns the constraint effect on the cohesive zone model and the application of the cohesive zone model for three-dimensional low cycle fatigue crack growth predictions. - A new stress-triaxiality-dependent cohesive zone model is proposed to describe 3D elastoplastic fracture process.- A new cyclic cohesive zone model is proposed to describe the fatigue crack growth with both low and high growth rates.- A new stress-triaxiality-dependent cyclic cohesive zone model is proposed and the stress-state affects both the cohesive law and the damage evolution equation.
Notes:
Includes bibliographical references.
Description based on online resource; title from PDF title page (ebrary, viewed October 20, 2017).
ISBN:
9783736986190
373698619X

The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.

Find

Home Release notes

My Account

Shelf Request an item Bookmarks Fines and fees Settings

Guides

Using the Find catalog Using Articles+ Using your account