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An experimentally validated rubber shear spring model for vibrating flip-flow screens

机译:经过实验验证的用于振动倒流筛的橡胶剪切弹簧模型

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摘要

Vibrating flip-flow screens (VFFS) provide an effective solution for screening highly moist and fine-grained minerals, and the dynamic response of the main and the floating screen frames largely accounts for a VFFS's screening performance and its processing capacity. An accurate dynamic model of the rubber shear springs inserted between the frames of the VFFS is critical for its dynamic analysis but has rarely been studied in detail. In this paper, a variance-based global sensitivity analysis is applied to actually illustrate that the rubber shear spring is the most important component for the dynamics of VFFS. Then a nonlinear rubber shear spring model is proposed to predict its amplitude and frequency dependency, which is described by a friction model and a fractional derivative vis-coelastic model, respectively, and the elasticity is predicted by a nonlinear spring. The reasonability of the proposed model is verified by experimental cyclic tests of the rubber shear spring. Comparisons between the newly proposed model and other classic models, including the Generalized Maxwell model, adopted for the dynamic analysis of the VFFS are carried out, and experimental tests of an industrial VFFS's dynamic response show that dynamics of the VFFS can be better described using the proposed model than the existing models. Furthermore, the method of the global sensitivity analysis is also applied to the newly VFFS dynamic model to calculate the sensitivities of model outputs caused by the input parameters. The results reveal that the dynamic response of an operating VFFS is most sensitive to changes in the stiffness of the rubber shear spring, followed by the mass of the floating screen frames.
机译:振动倒流筛(VFFS)提供了一种有效的解决方案,用于筛分高湿和细粒矿物,并且主筛网和浮筛机的动态响应在很大程度上决定了VFFS的筛分性能及其处理能力。插入在VFFS框架之间的橡胶剪切弹簧的精确动力学模型对其动力学分析至关重要,但很少进行详细研究。在本文中,基于方差的全局灵敏度分析被实际用来说明橡胶剪切弹簧是VFFS动力学的最重要组成部分。然后提出了一种非线性橡胶剪切弹簧模型来预测其振幅和频率依赖性,该模型分别由摩擦模型和分数阶导数粘弹性模型描述,而弹性由非线性弹簧预测。通过橡胶剪切弹簧的实验循环测试,验证了所提出模型的合理性。对新提出的模型和其他经典模型(包括通用麦克斯韦模型)进行了VFFS动力学分析,并进行了比较,对工业VFFS动力响应的实验测试表明,使用VFFS可以更好地描述VFFS的动力学。建议的模型要比现有模型好。此外,全局灵敏度分析的方法也应用于新的VFFS动态模型,以计算由输入参数引起的模型输出的灵敏度。结果表明,运行中的VFFS的动态响应对橡胶剪切弹簧刚度的变化最敏感,其次是浮动筛框的质量。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2020年第5期|106619.1-106619.15|共15页
  • 作者单位

    School of Chemical and Environmental Engineering China University of Mining and Technology Beijing Xueyuan Road 100083 China Centre for Audio Acoustics and Vibration Faculty of Engineering and Information Technology University of Technology Sydney 15 Broadway Ultimo NSW 2007 Australia;

    Centre for Audio Acoustics and Vibration Faculty of Engineering and Information Technology University of Technology Sydney 15 Broadway Ultimo NSW 2007 Australia;

    School of Chemical and Environmental Engineering China University of Mining and Technology Beijing Xueyuan Road 100083 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vibrating flip-flow screen; Rubber shear spring; Nonlinear dynamic model; Variance-based global sensitivity analysis;

    机译:振动翻转流筛;橡胶剪簧;非线性动力学模型基于方差的全局敏感性分析;
  • 入库时间 2022-08-18 05:24:04

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