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Dynamic response of elastic-viscoplastic sandwich beams with asymmetrically arranged thick layers

机译:厚壁不对称布置的弹粘塑性夹层梁的动力响应

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Composite beam structures with asymmetrically arranged, perfectly onded and thick layers are analyzed. Layerwise continuous and linear in-plane displacement fields are implemented, and as such model both the global and local elastic-viscoplastic response of laminate beams. By definition of an effective cross-sectional rotation the complex problem reduces to the simpler case of a homogenized shear-deformable beam with effective stiffness and corresponding set of boundary conditions. Inelastic defects of the material are equivalent to eigenstrains in an identical but elastic background structure of the homogenized beam with proper effective virgin stiffness. Proper resultants of these eigenstrains are defined. Since the incremental response of the background is considered linear within a given time step, solution methods of the linear theory of flexural vibrations can be applied. The confirmed load consists of the given external forces and the eigenstrain resultants. The latter are updated in space in the course of time.
机译:分析了具有不对称布置,完美覆盖和厚层的复合梁结构。实现了分层的连续和线性平面内位移场,并以此模型对层合梁的整体和局部弹性粘塑性响应进行建模。通过定义有效的横截面旋转,将复杂的问题简化为具有有效刚度和相应边界条件集的均质剪切变形梁的简单情况。材料的非弹性缺陷等效于均质梁具有相同的有效原始刚度的相同但弹性的背景结构中的本征应变。定义了这些特征应变的正确结果。由于背景的增量响应在给定的时间步长内被认为是线性的,因此可以应用弯曲振动线性理论的求解方法。确定的载荷包括给定的外力和本征应变合力。后者会随时间在空间上更新。

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