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The anti-plane dynamic fracture analysis of functionally graded materials with arbitrary spatial variations of material properties
Gao, Xiao-Xia ; Wang, Yue-Sheng ; Huang, Gan-Yun
2010-05-07 ; 2010-05-07
关键词crack coating interface impact load dynamic stress intensity factor (DSIF) functionally graded material (FGM) anti-plane deformation STRESS INTENSITY FACTORS HALF-PLANES CRACK INTERLAYER INTERFACE SYSTEM FIELDS LAYER Mechanics
中文摘要Anti-plane dynamic fracture analysis is presented for functionally graded materials (FGM) with arbitrary spatial variations of material properties. The FGM with the material properties varying continuously in an arbitrary manner is modeled as a multi-layered medium with the elastic modulus and mass density varying linearly in each sub-layer and continuous at the interfaces between two adjacent sub-layers. With this linearly inhomogeneous multi-layered model, the problem of a crack in a graded interfacial zone bonded to two homogeneous half-spaces or in a coating bonded to a homogeneous half-space subjected to the anti-plane shear impact load is investigated. Laplace and Fourier transforms and transfer matrix are applied to reduce the associated mixed boundary value problem to a Cauchy singular integral equation which is solved numerically in the Laplace transformed domain. The dynamic stress intensity factors (DSIF) are obtained by using the numerical technique of Laplace inversion.
语种英语 ; 英语
出版者SPRINGER ; NEW YORK ; 233 SPRING STREET, NEW YORK, NY 10013 USA
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/15713]  
专题清华大学
推荐引用方式
GB/T 7714
Gao, Xiao-Xia,Wang, Yue-Sheng,Huang, Gan-Yun. The anti-plane dynamic fracture analysis of functionally graded materials with arbitrary spatial variations of material properties[J],2010, 2010.
APA Gao, Xiao-Xia,Wang, Yue-Sheng,&Huang, Gan-Yun.(2010).The anti-plane dynamic fracture analysis of functionally graded materials with arbitrary spatial variations of material properties..
MLA Gao, Xiao-Xia,et al."The anti-plane dynamic fracture analysis of functionally graded materials with arbitrary spatial variations of material properties".(2010).
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