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Effects of Support Conditions to the Post-Buckling Behaviors of Axially Functionally Graded Material Rods

机译:支撑条件对轴向功能梯度材料棒后屈曲行为的影响

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The effects of support conditions to the post-buckling behaviors of rod structures made of Axially Functionally Graded Material (AFGM) are presented. The material property of the rod member is assumed to vary linearly in the axis direction of the member. The non-linear material property of the rod element is formulated in the Finite Element context. The consistent shape functions for the rod element were developed to take into account the varying material property in the finite element formulation. The geometrically non-linear behavior of the rod element is formulated in the context of the updated co-rotational formulation. The non-linear equilibrium equations are solved by using the incremental and iterative procedures in combination with the arc-length control method. The influences of the material distribution on the post-buckling behaviors of the AFGM Williams' toggle frames under various support conditions are highlighted. As a result, the graded between two materials can increase the post-buckling behaviors of the AFGM rod element regardless of the types of support conditions. The orientation of material distributions combined with the type of support condition can increase the performance of the rod element. The fixed-fixed support condition showed the highest performance of the AFGM rod element.
机译:提出了支撑条件对由轴向功能梯度材料(AFGM)制成的杆结构后屈曲行为的影响。假设杆构件的材料特性在构件的轴线方向上线性地线性变化。杆元件的非线性材料性质在有限元上下文中配制。开发了杆元件的一致形状功能,以考虑有限元制剂中的不同材料性能。在更新的共旋转制剂的背景下配制杆元件的几何非线性行为。通过使用增量和迭代程序与弧长控制方法结合使用的增量和迭代程序来解决非线性平衡方程。突出了物质分布对各种支援条件下AFGM Williams'切换框架的后屈曲行为的影响。结果,两种材料之间的分级可以增加AFGM棒元件的后屈曲行为,而不管载体条件的类型。材料分布的方向与支撑条件的类型组合可以增加杆元件的性能。固定固定支撑条件显示了AFGM棒元件的最高性能。

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