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A GBT-based mixed finite element for curved thin-walled members with circular axis

机译:基于GBT的圆轴弯曲薄壁构件的混合有限元

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In this paper a mixed finite element based on Generalised Beam Theory (GBT) is proposed to analyse the first-order behaviour of naturally curved beams with circular axis (without pre-twist) and having deformable thin-walled cross-sections. The element applies the assumed strain concept to the longitudinal strains terms that are not present in straight members and cause locking. The additional strain DOFs are condensed out and therefore the stiffness matrix of the mixed element shares the DOFs of the standard (displacement-based) GBT finite element. The superior predictive capacity of the proposed mixed element with respect to the standard element with reduced integration is demonstrated through several examples involving complex global distortional-local cross-section deformation.
机译:本文提出了一种基于广义梁理论(GBT)的混合有限元方法,用于分析具有圆形轴(无预扭曲)且具有可变形薄壁截面的自然弯曲梁的一阶行为。该元素将假定的应变概念应用于直形构件中不存在并引起锁定的纵向应变项。额外的应变自由度被冷凝出来,因此混合元素的刚度矩阵共享标准(基于位移)GBT有限元的自由度。通过涉及复杂整体局部变形局部横截面的几个示例,证明了所提出的混合元素相对于标准元素具有较低集成度的优越预测能力。

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