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A Disc-Shaped Interface Crack in a Laminated Plate Subject to a Uniform Temperature Change

机译:温度均匀变化的复合板圆盘形界面裂纹

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摘要

Symmetrical bending of a circular laminated plate containing a disc-shaped delamination subjected to uniform temperature change is analyzed on the basis of the theory of small deflection of plates. Radial inplane forces induced by bending in the parts of the plate above and below the delamination are determined by regarding the cracked part as two lapped discs hinged at both edges. For small temperature change, the plate deflects retaining mutual contact of crack faces, and in this case energy release rate is identically zero. For temperature change that is larger than some critical value, local delamination buckling occurs and the energy release rate is no longer zero. It is shown that, when the critical energy release rate concept of Griffith is adopted, the disc-shaped delamination grows unstably under constant temperature condition.
机译:基于板的小挠度理论,分析了包含均匀温度变化的圆盘状分层的圆形层压板的对称弯曲。由板在分层之上和之下的部分中的弯曲所引起的径向面内力是通过将破裂部分视为两个铰接在两个边缘上的研磨盘来确定的。对于较小的温度变化,板会偏转,以保持裂纹面相互接触,在这种情况下,能量释放率完全为零。对于大于某个临界值的温度变化,会发生局部分层屈曲,并且能量释放速率不再为零。结果表明,采用格里菲斯(Griffith)的临界能量释放速率概念时,圆盘状分层在恒温条件下会不稳定地增长。

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