Estimation of Manifestations of Material Properties and Mechanical Effects on a Macrocrack, Induced by a Cluster of Elliptical Microracks
A macrocrack in a brittle material containing a cluster of microcracks experiences the stress shielding effect when the macrocrack front locates in the domain of stress relaxation induced by the microcacks. This is called the microcrack toughening effect for the macrocrack in a brittle material such...
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Published in | Transactions of the Japan Society of Mechanical Engineers Series A Vol. 66; no. 651; pp. 2060 - 2067 |
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Main Authors | , |
Format | Journal Article |
Language | Japanese |
Published |
The Japan Society of Mechanical Engineers
2000
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Online Access | Get full text |
ISSN | 0387-5008 1884-8338 |
DOI | 10.1299/kikaia.66.2060 |
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Abstract | A macrocrack in a brittle material containing a cluster of microcracks experiences the stress shielding effect when the macrocrack front locates in the domain of stress relaxation induced by the microcacks. This is called the microcrack toughening effect for the macrocrack in a brittle material such as ceramic. Therefore the existence of microcracks improves the fracture toughness of the macrocracked solid. This paper presents the numerical analyses for the macrocrack in an anisotropically damaged materials. The homogenization method based on the superposition method is used to evaluate the material properties of the damaged materials and the mechanical behavior of the macrocrack in the damaged materials. In order to evaluate the mixed-mode stress intensity factors of a macrocrack in the anisotropically damaged materials, we derive the component separation method based on three dimensional path independent J integral. This paper provides the numerical results for the effective elastic moduli of the damaged materials and for the J integrals and the stress intensity factors of the macrocrack. |
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AbstractList | A macrocrack in a brittle material containing a cluster of microcracks experiences the stress shielding effect when the macrocrack front locates in the domain of stress relaxation induced by the microcacks. This is called the microcrack toughening effect for the macrocrack in a brittle material such as ceramic. Therefore the existence of microcracks improves the fracture toughness of the macrocracked solid. This paper presents the numerical analyses for the macrocrack in an anisotropically damaged materials. The homogenization method based on the superposition method is used to evaluate the material properties of the damaged materials and the mechanical behavior of the macrocrack in the damaged materials. In order to evaluate the mixed-mode stress intensity factors of a macrocrack in the anisotropically damaged materials, we derive the component separation method based on three dimensional path independent J integral. This paper provides the numerical results for the effective elastic moduli of the damaged materials and for the J integrals and the stress intensity factors of the macrocrack. |
Author | NISHIOKA, Toshihisa KATO, Tetsuji |
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References_xml | – reference: (4) 日本学術振興会先端材料技術第156委員会編,材料 システム学,共立出版(1997),160-172. – reference: (1) 都井•諸,機論A,59-557(1993),248-255. – reference: (19) Nishioka, T. and Kato, T., Int. J. Fract., 89(1998), 159- 192. – reference: (2) 都井•清末,機論A,61-582(1995),447-453. – reference: (13) Nishioka, T. and Atluri, S. N., Eng. Fract. Mech., 17 (1983), 247-268. – reference: (5) 加藤•西岡,第10回破壊力学シンポジウム講演論文 集,(1999),107-111. – reference: (8) Guedes, J. M. and Kikuchi, N., Com. Mech. App. Mech. Eng., 83(1990), 143-198. – reference: (11) 西岡•矢川•小倉•安藤,機論,42-362(1976),3086- 3093. – reference: (16) 西岡•前田•松尾,機論A,61-588(1995),128-135. – reference: (3) 田村•堀内共編,材料強度物性学,オーム社(1984), 25-41. – reference: (14) Nishioka, T., JSME Int. J. Ser. A, 37-4(1994), 63-70. – reference: (18) Budiansky, B. and O'Connell, R. J., Int. J. Solids and Structures., 12(1976), 81-97. – reference: (7) 西岡•村上•松尾,機論A,57-541(1991),128-135. – reference: (6) 加藤•西岡,機論A,66-643(2000),524-531. – reference: (12) Vijayakumar, K. and Atluri, S. N., J. Appl. Mech., 48 (1981), 88-96. – reference: (17) Liebowitz, H. edited, Fracture, Volume II, Academic Press(1968), 108-114. – reference: (9) Hollister, S. J. and Kikuchi, N., Comput. Mech., 10 (1992), 73-95. – reference: (15) Rice, J. R., J. Appl. Mech., 35(1968), 379-386. – reference: (10) 矢川•西岡•安藤,機論,42-358(1976),1644-1651. |
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Snippet | A macrocrack in a brittle material containing a cluster of microcracks experiences the stress shielding effect when the macrocrack front locates in the domain... |
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SubjectTerms | Anisotropy Component Separation Method Damaged Material Effective Elastic Moduli Fracture Mechanics Homogenization Method Microcrack Toughening Stress Intensity Factor VNA Solution |
Title | Estimation of Manifestations of Material Properties and Mechanical Effects on a Macrocrack, Induced by a Cluster of Elliptical Microracks |
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