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Degree:Doctoral Degree in Engineering
School/Department:College of Aerospace Engineering

郭万林

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Gender:Male

Education Level:西北工业大学

Paper Publications

Higher order J-T-z-A(T) solution for three-dimensional crack border fields in power-law hardening solids
Date of Publication:2019-12-01 Hits:

Affiliation of Author(s):航空学院
Journal:ENGINEERING FRACTURE MECHANICS
Key Words:Elastic-plastic crack border fields Out-of-plane constraint factor T-z In-plane constraint coefficient A(T) Higher order J-T-z-A(T) solution J-T-z solution
Abstract:Higher order J-A(2) solution has been developed to improve the HRR singular solution under ideal plane strain conditions in power-law hardening solids with the the second A(2) being considered to take into account of the in-plane constraint effect, and the J-T-z singular solution has been obtained for three-dimensional (3D) cracked body by introducing the out-of-plane stress constraint factor T-z. Here a higher order J-T-z-A(T) solution is developed on the basis of the J-T-z and J-A(2) solutions and validated against comprehensive 3D finite element (FE) analyses for specimens with through-thickness, surface, embedded and corner cracks. It is shown that better agreements are obtained between the higher order J-T-z-A(T) solution and 3D FE results in all simulated conditions than previously available two- or three-parameter solutions. For specimens of high in-plane constraint, such as the single-edge cracked tension specimen, compact specimen and single-edge-notched bending specimen under three-point bending, the J-T-z leading singular solution itself shows sufficient accuracy. This universal characterization of crack border stress fields confirms that the developed J-T-z-A(T) solution combines the advantages of the J-T-z and J-A(2) solutions, which can service as a solid foundation of elastic-plastic fracture mechanics.
ISSN No.:0013-7944
Translation or Not:no
Date of Publication:2019-12-01
Co-author:Cui, Pengfei
Correspondence Author:Guo Wanlin
Date of Publication:2019-12-01