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Buckling of Metal-Matrix Composite Plate with a Square Hole

机译:带方孔的金属基复合板的屈曲

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摘要

The buckling of laminated metal-matrix composite(MMC)plates with a central square cutout were analyzed under compressive biaxial loading using the finite element approach.The MMC plates displayed some interesting buckling patterns and initial buckling shapes when subjected to different combination of hole sizes and boundary conditions.In the case of anti-symmetric,free-free boundary conditions,the MMC plates with central square cutout resist higher buckling loads as the hole size increased.Two laminated stacking sequences [90/0/0/90]2 and [45/-45/-45/45]2 were used in this study.For the same hole size,plate aspect ratio,and boundary conditions,the results showed that the critical buckling behavior of the plates were primarily influenced by the edge boundary conditions rather than by the laminated stacking sequences.The overall critical buckling analysis indicated that plates with clamped boundary conditions will take higher compressive loads than that of simply supported boundary conditions by a ratio of 2 to 1.
机译:采用有限元方法在压缩双轴载荷下分析了具有中心方形切口的层压金属基复合材料(MMC)板的屈曲。当孔尺寸和孔尺寸的组合不同时,MMC板显示出一些有趣的屈曲图案和初始屈曲形状在反对称,自由边界条件下,带有中心正方形切口的MMC板会随着孔尺寸的增加而承受更高的屈曲载荷。两个叠层堆叠序列[90/0/0/90] 2和[本研究使用45 / -45 / -45 / 45] 2。对于相同的孔尺寸,板高宽比和边界条件,结果表明,板的临界屈曲行为主要受边缘边界条件的影响整体临界屈曲分析表明,边界条件受约束的板将承受比简单支撑边界条件更高的压缩载荷比例为2:1。

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