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首页> 外文期刊>Journal of nonlinear science >Magnetically-induced buckling of a whirling conducting rod with applications to electrodynamic space tethers
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Magnetically-induced buckling of a whirling conducting rod with applications to electrodynamic space tethers

机译:旋转导线的磁感应屈曲及其在电动空间链中的应用

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We study the effect of a magnetic field on the behaviour of a slender conducting elastic structure, motivated by stability problems of electrodynamic space tethers. Both static (buckling) and dynamic (whirling) instability are considered and we also compute post-buckling configurations. The equations used are the geometrically exact Kirchhoff equations. Magnetic buckling of a welded rod is found to be described by a surprisingly degenerate bifurcation, which is unfolded when both transverse anisotropy of the rod and angular velocity are considered. By solving the linearised equations about the (quasi-) stationary solutions, we find various secondary instabilities. Our results are relevant for current designs of electrodynamic space tethers and potentially for future applications in nano- and molecular wires.
机译:我们研究了磁场对细长导电弹性结构的行为的影响,该结构受电动太空绳的稳定性问题的影响。同时考虑了静态(屈曲)和动态(旋转)不稳定性,并且我们还计算了屈曲后的配置。所使用的方程是几何精确的基尔霍夫方程。发现焊条的磁性屈曲由出乎意料的简并分叉来描述,当同时考虑到焊条的横向各向异性和角速度时,该分叉就展开了。通过求解关于(拟)平稳解的线性方程,我们发现了各种次要不稳定性。我们的结果与当前的电动太空系链设计有关,并可能与纳米和分子线的未来应用有关。

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