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A co-rotational 8-node assumed strain shell element for postbuckling analysis of laminated composite plates and shells

机译:同向旋转的8节点假定应变壳单元,用于层压复合板和壳体的屈曲后分析

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The formulation of a nonlinear composite shell element is presented for the solution of stability problems of composite plates and shells. The formulation of the geometrical stiffness presented here is exactly defined on the midsurface and is efficient for analyzing stability problems of thin and thick laminated plates and shells by incorporating bending moment and transverse shear resultant forces. The composite element is free of both membrane and shear locking behaviour by using the assumed natural strain method such that the element performs very well as thin shells. The transverse shear stiffness is defined by an equilibrium approach instead of using the shear correction factor. The proposed formulation is computationally efficient and the test results showed good agreement. In addition the effect of the viscoelastic material is investigated on the postbuckling behaviour of laminated composite shells.
机译:为了解决复合板和壳的稳定性问题,提出了一种非线性复合壳单元的公式。这里给出的几何刚度的公式精确地定义在中表面上,并且通过结合弯矩和横向剪切合力有效地分析了薄板和厚板和壳的稳定性问题。通过使用假定的自然应变方法,该复合元件既没有膜也没有剪切锁定行为,因此该元件表现得很薄。横向剪切刚度是通过平衡方法而不是使用剪切校正因子定义的。所提出的公式计算效率高,测试结果显示出良好的一致性。另外,研究了粘弹性材料对层压复合材料壳的屈曲后行为的影响。

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