Analysis of vibrations for a vibrating jaw crusher when interacting with material

IF 1.7 4区 管理学 Q3 OPERATIONS RESEARCH & MANAGEMENT SCIENCE
A. Shokhin, G. Panovko, I. Lyan
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引用次数: 1

Abstract

A model of a vibrating jaw crusher (VJC) with self-synchronizing unbalanced vibration exciters is considered with account of the impacts between the jaws and the material being processed. Numerical modeling is used to establish the influence of the initial gap between the jaws and the material and of the velocity recovery factor upon impact on the synchronization of vibration exciters rotation and jaw vibrations, on the excitation frequency ranges of stable periodic vibroimpact regimes, and on the impact velocities between the jaws. The analysis results indicate that a change in the conditions of contact between the jaws and the material being processed leads to a change in the frequency ranges of the stable antiphase synchronization of vibration exciters rotation, as well as in the excitation frequency ranges of steady single-period vibroimpact regimes for the motion of the system, considered as the main operating modes of the VJC. The impact-like nature of the interaction between the jaws and the material being processed suggests the possible multimodality of the system, which explains some of the effects observed in practice and manifested in changes in the periodicity of the vibroimpact regime and in the vibration mode of the jaws at a constant excitation frequency. Therefore, the vibroimpact-based model proposed for the VJC and its dynamics analysis results may be used to design and improve vibrating jaw crushers with the selection of reasonable design parameters and the most effective vibration excitation conditions. The work was carried out with the financial support of the RFBR, project No. 18-08-01491_a.
振动颚式破碎机与物料相互作用时的振动分析
考虑了振动颚式破碎机与被加工物料之间的相互影响,建立了具有自同步非平衡激振器的振动颚式破碎机模型。采用数值模拟的方法,建立了钳口与材料之间的初始间隙和速度恢复系数对激振器旋转和颚面振动同步、稳定周期振动冲击区激励频率范围和钳口之间冲击速度的影响。分析结果表明,钳口与被加工材料接触条件的变化会导致激振器旋转的稳定反相位同步频率范围的变化,以及系统运动的稳定单周期振动冲击状态的激励频率范围的变化,这是VJC的主要工作模式。钳口和被加工材料之间的相互作用的类似撞击的性质表明了系统可能的多模态,这解释了在实践中观察到的一些影响,并表现在振动冲击状态的周期性变化和恒定激励频率下钳口的振动模式。因此,基于振动冲击的VJC模型及其动力学分析结果可用于设计和改进振动颚式破碎机,选择合理的设计参数和最有效的振动激励条件。这项工作是在RFBR项目18-08-01491_a的财政支持下进行的。
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来源期刊
4or-A Quarterly Journal of Operations Research
4or-A Quarterly Journal of Operations Research 管理科学-运筹学与管理科学
CiteScore
3.80
自引率
5.00%
发文量
26
审稿时长
6 months
期刊介绍: 4OR - A Quarterly Journal of Operations Research is jointly published by the Belgian, French and Italian Operations Research Societies. It publishes high quality scientific papers on the theory and applications of Operations Research. It is distributed to all individual members of the participating societies.
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