首页> 外文期刊>International journal of non-linear mechanics >Secondary torsional moment deformation effect in inelastic nonuniform torsion of bars of doubly symmetric cross section by BEM
【24h】

Secondary torsional moment deformation effect in inelastic nonuniform torsion of bars of doubly symmetric cross section by BEM

机译:双对称截面杆的非弹性非均匀扭转中的二次扭转力矩变形效应

获取原文
获取原文并翻译 | 示例
       

摘要

In this paper a boundary element method is developed for the inelastic nonuniform torsional problem of simply or multiply connected prismatic bars of arbitrarily shaped doubly symmetric cross section, taking into account the secondary torsional moment deformation effect. The bar is subjected to arbitrarily distributed or concentrated torsional loading along its length, while its edges are subjected to the most general torsional boundary conditions. A displacement based formulation is developed and inelastic redistribution is modeled through a distributed plasticity model exploiting three dimensional material constitutive laws and numerical integration over the cross sections. An incremental-iterative solution strategy is adopted to resolve the elastic and plastic part of stress resultants along with an efficient iterative process to integrate the inelastic rate equations. The one dimensional primary angle of twist per unit length, a two dimensional secondary warping function and a scalar torsional shear correction factor are employed to account for the secondary torsional moment deformation effect. The latter is computed employing an energy approach under elastic conditions. Three boundary value problems with respect to (i) the primary warping function, (ii) the secondary warping one and (iii) the total angle of twist coupled with its primary part per unit length are formulated and numerically solved employing the boundary element method. Domain discretization is required only for the third problem, while shear locking is avoided through the developed numerical technique. Numerical results are worked out to illustrate the method, demonstrate its efficiency and wherever possible its accuracy.
机译:针对二次扭转力矩变形的影响,针对任意形状的双对称截面的简单或多重连接的棱柱的非弹性非均匀扭转问题,提出了一种边界元方法。钢筋沿其长度方向承受任意分布或集中的扭转载荷,而其边缘则承受最一般的扭转边界条件。开发了基于位移的公式,并通过利用三维材料本构定律和横截面的数值积分的分布式可塑性模型,对非弹性再分布进行建模。采用增量迭代求解策略来求解应力合成的弹性和塑性部分,并采用有效的迭代过程来积分非弹性速率方程。每单位长度的一维初级扭转角,二维次级翘曲函数和标量扭转剪切校正因子被用于解决次级扭转力矩变形效应。后者是在弹性条件下采用能量方法计算的。关于边界变形方法(i),主要变形函数,(ii)次要变形函数,以及(iii)每单位长度的总扭转角及其主要部分,提出了三个边界值问题,并采用边界元方法进行了数值求解。仅对第三个问题才需要进行域离散化,而通过开发的数值技术可以避免剪切锁定。数值结果说明了该方法,证明了其效率以及可能的准确性。

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