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首页> 外文期刊>International journal of non-linear mechanics >Nonlinear bifurcation analysis of statically loaded free-form curved beams using isogeometric framework and pseudo-arclength continuation
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Nonlinear bifurcation analysis of statically loaded free-form curved beams using isogeometric framework and pseudo-arclength continuation

机译:使用异构函数框架和伪arclencth延续的静载自由形式弯曲梁的非线性分岔分析

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摘要

This paper presents an isogeometric analysis (IGA) integrated with pseudo-arclength continuation technique in order to predict the elastic bifurcation behavior of geometrically nonlinear free-form curved beams under static loading. The presented formulation is based on the Timoshenko beam theory and accounts for shear deformations in the large-displacement analysis of curved beams. The full equilibrium path of the buckled structures including common types of static instabilities (e.g., the saddle-node and pitchfork bifurcations) can be tracked by the presented approach. Thanks to the exact geometry representation of the IGA framework, the objective of this paper is to extend the current literature of the nonlinear budding analysis of curved beams to a broader range of free-form geometries with engineering applications. Some practical case studies with different loading scenarios are investigated and the results are validated against the commercial finite element software and well-established benchmark examples.
机译:本文介绍了与伪阶段连续技术集成的异步分析(IGA),以预测静载荷下几何非线性自由弯曲梁的弹性分岔行为。所提出的制剂基于TIMOSHENKO光束理论,并考虑弯曲梁的大位移分析中的剪切变形。可以通过所提出的方法跟踪包括普通类型的静态稳定性(例如,鞍座节点和堆积叉分叉分叉分叉分叉的弯曲结构的完整平衡路径。由于IGA框架的确切几何形状表示,本文的目的是将弯曲梁非线性萌芽分析的目前文献扩展到具有工程应用的更广泛的自由形态几何形状。调查了一些具有不同加载方案的实用案例研究,结果验证了商业有限元软件和成熟的基准示例。

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