首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Corotational mixed finite element formulation for thin-walled beams with generic cross-section
【24h】

Corotational mixed finite element formulation for thin-walled beams with generic cross-section

机译:具有通用截面的薄壁梁的修正混合有限元公式

获取原文
获取原文并翻译 | 示例
           

摘要

The corotational technique is adopted here for the analysis of three-dimensional beams. The technique exploits the technology that applies to a two-noded element, a coordinate system which continuously translates and rotates with the element. In this way, the rigid body motion is separated out from the deformational motion. In this paper, a mixed formulation are adopted for the derivation of the local element tangent stiffness matrix and nodal forces. The mixed finite element formulation is based on an incremental form of the two-field Hellinger-Reissner variational principle to permit elasto-plastic material behavior. The local beam kinematics is based on a low-order nonlinear strain expression using Bernoulli assumption. The present formulation captures both the Saint-Venant and warping torsional effects of thin-walled open cross-sections. Shape functions that satisfy the nonlinear local equilibrium equations are selected for the interpolation of the stress resultants. In particular, for the torsional forces and the twist rotation degree of freedom, a family of hyperbolic interpolation functions is adopted in lieu of conventional polynomials. Governing equations are expressed in a weak form, and the constitutive equations are enforced at each integration cross-section along the element length. A consistent state determination algorithm is proposed. This local element, together with the corotational framework, can be used to analyze the nonlinear buckling and postbuckling of thin-walled beams with generic cross-section. The present corotational mixed element solution is compared against the results obtained from a corotational displacement-based model having the same beam kinematics and corotational framework. The superiority of the mixed formulation is clearly demonstrated.
机译:在此采用比例技术来分析三维光束。该技术利用了应用于两节点元素的技术,该坐标系统与元素连续平移和旋转。以这种方式,刚体运动与变形运动分离。本文采用混合公式推导局部单元切线刚度矩阵和节点力。混合有限元公式基于两场Hellinger-Reissner变分原理的增量形式,以允许弹塑性材料行为。局部梁运动学基于使用伯努利假设的低阶非线性应变表达式。本发明的配方同时捕获了薄壁开放截面的圣维南和翘曲扭转效应。选择满足非线性局部平衡方程的形状函数进行应力合算的内插。特别地,对于扭转力和扭转旋转自由度,采用双曲线插值函数族代替传统的多项式。控制方程以弱形式表示,并且本构方程在沿单元长度的每个积分横截面处强制执行。提出了一种一致的状态确定算法。该局部元素与坐标框架一起,可用于分析具有通用横截面的薄壁梁的非线性屈曲和后屈曲。将当前的电浆混合元素解决方案与从具有相同光束运动学和电浆框架的基于电浆位移的模型中获得的结果进行比较。混合制剂的优越性得到了明确证明。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号