陀螺仪进动的相互关系

R. Usubamatov
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引用次数: 0

摘要

陀螺仪理论的基本原理包括由旋转圆盘的旋转质量产生的惯性力矩系统,该系统通过其绕轴旋转的角速度的比率相互关联。离心的、常见的惯性科里奥利力的作用和角动量的变化产生惯性力矩系统。这四个动力部件组成了同时作用在转盘上的八个力矩的系统。它们的作用表现在陀螺效应中。陀螺仪进动的比率表示围绕旋转轴的陀螺仪效应之一。已知的这个比率的数学模型包含一个在这项工作中纠正的错误。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interrelation of Precessed Motions of the Gyroscope
The fundamental principles of the gyroscope theory contain the system of the inertial torques generated by the rotating mass of the spinning disc that interrelated by the ratio of its angular velocities rotation around axes. The action of the centrifugal, common inertial Coriolis forces and the change in the angular momentum generate the system of inertial torques. These four dynamical components make up the system of the eight torques acting simultaneously on the spinning disc. They manifest their action in gyroscopic effects. The ratio of the precessed motions of the gyroscope presents one of the gyroscopic effects around axes of rotation. The known mathematical model for this ratio contains an error that was corrected in this work.
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