由各向异性可磁化弹性体构成的物体在带电流线圈的磁场中的运动轨迹

IF 0.3 Q4 MECHANICS
D. I. Merkulov, D. A. Pelevina, V. A. Turkov, V. A. Naletova
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引用次数: 0

摘要

本文研究了粘性液体中各向异性可磁化弹性体球体在带电流线圈磁场作用下的运动。考虑到对其运动的各种限制因素,提出了这种物体运动的数学模型。考虑的情况是,物体刚性固定在杆的末端,而杆的末端枢轴固定在带电流线圈的轴上。此外,还介绍了当物体的运动从下方受到水平面的限制,并且物体可以在该表面上滚动或滑动时的情况。在初始时各向异性矢量与磁场矢量不平行的情况下,构建了磁场打开时人体从线圈轴线上的位置开始运动的轨迹。在这种情况下,各向异性体(与各向同性体不同)会偏离线圈轴线。根据问题的不同参数,可以计算出体偏离线圈轴线的偏差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Trajectory of Motion of a Body Made of Anisotropic Magnetizable Elastomer with Different Constraints in a Field of a Coil with Current

Trajectory of Motion of a Body Made of Anisotropic Magnetizable Elastomer with Different Constraints in a Field of a Coil with Current

In this paper, the motion of a spherical body with anisotropic magnetizable elastomer in a viscous liquid under the action of a magnetic field of the coil with current is investigated. A mathematical model of the movement of such a body is proposed taking into account various limiters of its movement. The case when the body is rigidly fixed at the end of the rod, which is pivotally fixed on the axis of the coil with current, is considered. And also the case when the movement of the body is limited from below by a horizontal surface and the body can roll or slide on this surface is presented. The trajectories of the body movement from the position on the axis of the coil when the magnetic field is turned on are constructed in the case when the anisotropy vector at the initial instance is not parallel to the vector of the magnetic field. In this case, an anisotropic body (unlike an isotropic one) can deviate from the axis of the coil. The deviation of the body from the axis of the coil is calculated for various parameters of the problem.

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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
9
期刊介绍: Moscow University Mechanics Bulletin  is the journal of scientific publications, reflecting the most important areas of mechanics at Lomonosov Moscow State University. The journal is dedicated to research in theoretical mechanics, applied mechanics and motion control, hydrodynamics, aeromechanics, gas and wave dynamics, theory of elasticity, theory of elasticity and mechanics of composites.
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