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並列タイトル等Local Delamination Buckling of a Laminated Beam Due to Three-Point Bending
一般注記出版タイプ: VoR
Asymmetric three-point bending of a layered beam containing an interior interface crack is analyzed on the basis of classical beam theory. The point of load application is assumed to lie on the delaminated part, so that a part of the crack faces is contacting one another, while the remaining part of the crack faces is open. Axial compressive and tensile forces are induced by bending in the parts of the beam above and below the delamination and they are determined by modeling the cracked part as two lapped beams hinged at both ends. When the magnitude of the applied load is small, the beam deflects retaining mutual contact of whole crack faces, but as the applied load reaches a critical value, local delamination buckling occurs. The relation between the magnitude of the applied load and the deflection at the point of load application is found to be nearly bilinear. The validity of this prediction is confirmed by experiments. It is also shown that once the delamination buckling occurs, energy release rate generally becomes larger as compared with the case of perfect contact of delaminated surfaces.
一次資料へのリンクURLAN0018742X_v72_n722_p1479-1486.pdf (fulltext)
連携機関・データベース国立情報学研究所 : 学術機関リポジトリデータベース(IRDB)(機関リポジトリ)