具有流畅内质量的双振幅偏心配重的建模与优化

Y.G. Popov, G.S. Malov, A. Krasnikov
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摘要

本文讨论了振动压路机的激振器,激振器包括一个空心偏心配重,其内部有一个流体质量。这种设计可以减少不平衡轴在反转和加速过程中冲击和共振现象的负面影响。然而,在科学文献中,没有关于设计这种激振器的方法的信息。在偏心重体加速和均匀旋转过程中,流畅质量在偏心重体内部的运动也不清楚。为此,进行了动力学建模,从而可以识别出内部质量运动的特征特征。在此基础上,提出了一种确定松散内质量体积及其工作偏心率的方法。建立了稳定运动的不平衡和流畅质量参数化模型,并利用IOSO NM软件包对控制参数进行多准则优化。上述技术允许为各种类型的振动压路机设计具有特定振动特性的激振器。
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Modeling and optimization of two-amplitude eccentric weight with fluent inner mass
The article discusses the vibration exciter of a vibratory roller, including a hollow eccentric weight located inside with a fluent mass. This design makes it possible to reduce the negative effects of shocks and resonance phenomena during reversal and acceleration of the unbalanced shaft. However, in the scientific literature there is no information about the methods for designing such vibration exciters. It is also unclear the movement of the fluent mass inside the eccentric weight during its acceleration and during uniform rotation. In this regard, dynamic modeling was carried out, which made it possible to identify the characteristic features of the movement of the internal mass. Based on this information, a method was proposed for determining the volume of the loose internal mass and its working eccentricity. A parametrized model of unbalance and fluent mass for steady motion was built and multicriteria optimization was carried out using the IOSO NM software package for controlled parameters. The above technique allows designing vibration exciters with specified vibration characteristics for various types of vibratory rollers.
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