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이방성 섬유의 배열이 복합재료의 응력에 미치는 영향Effects of Anisotropic Fiber Packing on Stresses in Composites

Other Titles
Effects of Anisotropic Fiber Packing on Stresses in Composites
Authors
이정기이형민
Issue Date
2004
Publisher
대한기계학회
Keywords
Mixed Volume and Boundary Integral Equation Method; Volume Integral Equation Method; Boundary Integral Equation Method; Inclusions; Voids; Fiber Packing; Mixed Volume and Boundary Integral Equation Method; Volume Integral Equation Method; Boundary Integral Equation Method; Inclusions; Voids; Fiber Packing; 혼합 체적-경계 적분방정식법; 체적 적분방정식법; 경계요소법; 함유체; 공동; 섬유 배열
Citation
대한기계학회논문집 A, v.28, no.9, pp.1284 - 1296
Journal Title
대한기계학회논문집 A
Volume
28
Number
9
Start Page
1284
End Page
1296
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/26241
ISSN
1226-4873
Abstract
In order to investigate effects of anisotropic fiber packing on stresses in composites, a Volume Integral Equation Method is applied to calculate the elastostatic field in an unbounded isotropic elastic medium containing multiple orthotropic inclusions subject to remote loading, and a Mixed Volume and Boundary Integral Equation Method is introduced for the solution of elastostatic problems in unbounded isotropic materials containing multiple anisotropic inclusions as well as one void under uniform remote loading. A detailed analysis of stress fields at the interface between the isotropic matrix and the central orthotropic inclusion is carried out for square, hexagonal and random packing of orthotropic cylindrical inclusions, respectively. Also, an analysis of stress fields at the interface between the isotropic matrix and the central orthotropic inclusion is carried out, when it is assumed that a void is replaced with one inclusion adjacent to the central inclusion of square, hexagonal and random packing of orthotropic cylindrical inclusions, respectively, due to manufacturing and/or service induced defects. The effects of random orthotropic fiber packing on stresses at the interface between the isotropic matrix and the central orthotropic inclusion are compared with the influences of square and hexagonal orthotropic fiber packing on stresses. Through the analysis of plane elastostatic problems in unbounded isotropic matrix with multiple orthotropic inclusions and one void, it will be established that these new methods are very accurate and effective for investigating effects of general anisotropic fiber packing on stresses in composites.
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College of Science and Technology > Department of Mechanical and Design Engineering > 1. Journal Articles

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