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首页> 外文期刊>International Journal of Solids and Structures >Spatially complex localisation in twisted elastic rods constrained to a cylinder
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Spatially complex localisation in twisted elastic rods constrained to a cylinder

机译:约束在圆柱体上的扭曲弹性杆中的空间复杂定位

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We consider the problem of a long thin weightless rod constrained to lie on a cylinder awhile being held by end tension and twisting moment. Applications of this problem are found. Cor instance. in the buckling of drill strings inside a cylindrical hole. In a previous paper the general geometrically exact formulation was given and the case of a rod of isotropic cross-section analysed in detail. It was shown that in that case the static equilibrium equations are completely integrable and can be reduced to those of a one-degree-of-freedom oscillator whose non-trivial fixed points correspond to helical solutions of the rod. A critical load was Found where the rod coils up into a helix. Here the anisotropic case is studied. It is shown that the equations are no longer integrable and give rise to spatial chaos with infinitely many multi-loop localised solutions. Helices become slightly modulated. We study the bifurcations of the simplest single-loop Solution and a representative multi-loop as the aspect ratio of the rod Is cross-section is varied. It is shown how the anisotropy unfolds the 'coiling bifurcation'. The resulting post-buckling behaviour is of the softening-hardening-softening type typically seen in the cellular buckling of long structures. and can be interpreted in terms of a so-called Maxwell effective failure load. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 18]
机译:我们考虑了一个很长的细的失重杆,该杆受端部拉力和扭转力矩约束而只能搁置在一个圆柱体上。找到此问题的应用程序。肺心病实例。在圆柱孔内的钻柱屈曲中在先前的论文中,给出了一般的几何精确公式,并详细分析了各向同性截面杆的情况。结果表明,在这种情况下,静态平衡方程是完全可积分的,可以简化为一个单自由度振荡器的方程,其非平凡固定点对应于杆的螺旋解。发现了一个临界载荷,其中杆盘绕成螺旋状。这里研究各向异性情况。结果表明,这些方程不再可积分,并且由于无数个多环局部解而引起空间混乱。螺旋变得略有调制。我们研究最简单的单回路解和代表性多回路的分叉,因为杆的横截面的长宽比是变化的。它显示了各向异性如何展开“线圈分叉”。所产生的屈曲后行为是通常在长结构的单元屈曲中看到的软化-硬化-软化类型。可以用所谓的麦克斯韦有效失效载荷来解释。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:18]

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