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체적 적분방정식법을 이용한, 다수의 함유체를 포함한 반무한 고체에서의 탄성해석Elastic Analysis of a Half-Plane Containing Multiple Inclusions Using Volume Integral Equation Method

Other Titles
Elastic Analysis of a Half-Plane Containing Multiple Inclusions Using Volume Integral Equation Method
Authors
이정기구덕영
Issue Date
2008
Publisher
대한기계학회
Keywords
Volume Integral Equation Method(체적 적분방정식법); Half-Plane(반무한 고체); Isotropic Inclusions(등방성 함유체); Anisotropic Inclusions(이방성 함유체); Multiple Inclusions(다수의 함유체); Green' s Functions(그린 함수); Volume Integral Equation Method(체적 적분방정식법); Half-Plane(반무한 고체); Isotropic Inclusions(등방성 함유체); Anisotropic Inclusions(이방성 함유체); Multiple Inclusions(다수의 함유체); Green' s Functions(그린 함수)
Citation
대한기계학회논문집 A, v.32, no.2, pp.148 - 161
Journal Title
대한기계학회논문집 A
Volume
32
Number
2
Start Page
148
End Page
161
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/23324
ISSN
1226-4873
Abstract
A volume integral equation method (VIEM) is used to calculate the plane elastostatic field in an isotropic elastic half-plane containing multiple isotropic or anisotropic inclusions subject to remote loading. A detailed analysis of stress field at the interface between the matrix and the central inclusion in the first column of square packing is carried out for different values of the distance between the center of the central inclusion in the first column of square packing of inclusions and the traction-free surface boundary in an isotropic elastic half-plane containing multiple isotropic or anisotropic inclusions. The method is shown to be very accurate and effective for investigating the local stresses in an isotropic elastic half-plane containing multiple isotropic or anisotropic inclusions
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