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The Analysis of Ball's Motion in the Torus- Shaped Autoequalizer

机译:球形自动化器中球运动的分析

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The reduction of vibrations in rotary systems is necessary condition for the development of constructions with high quality requirements. Among the devices that are able to reduce rotor's vibrations are automatic balancers with balls, liquid, etc. Autoequalizers with torus-shaped body contain one ball-shaped adjustment mass that can freely roll both in the ring direction and in the cross section. This enables reducing to the minimum the force of resistance at the ball's moving, but simultaneously decreases the chance of launching the autoequalizer in the autobalancing regime. It has been stated that the ball in the working state is influenced by forces that are aimed at moving it in the body of the autoequalizer towards the side opposite to the imbalance. The design of an autoequalizer that ensures working state in which at rotation the ball stops relative to the autoequalizer's body opposite to the imbalance has been experimentally worked out. The autoequalizer is made up of the mathematical model with two differential equations. In the result of the calculations it has been proved that the ball of an equalizer with the torus-shaped body has at least two movement conditions one of which is a working state, and another one is a spare state.
机译:旋转系统中振动的减小是具有高质量要求的结构的必要条件。在能够降低转子振动的装置中,具有带球,液体等的自动平衡器。自动平衡器,带有圆环形的主体,其包含一个球形调节质量,可以在环方向和横截面中自由滚动。这使得能够在球的移动中降低阻力的最小力,但同时降低在自动化制度中发射自动化器的机会。已经说明工作状态中的球受到旨在使其在自动化器体内的力的影响,朝向与不平衡相反的一侧。自动化器的设计,该自动化器确保工作状态,其中在旋转时旋转相对于自动化器的身体与不平衡相对的滚动器已经进行了实验研究。自动化器由具有两个微分方程的数学模型组成。在计算结果中,已经证明,均衡器与圆环形主体的球具有至少两个运动条件,其中一个是工作状态,另一个是备用状态。

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