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Research on Indentation Rolling Resistance Based on Viscoelasticity of Cover Rubber under a Conveyor Belt

机译:输送带下基于盖胶粘弹性的压痕滚动阻力研究

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Minimizing the power consumption of the belt conveyor is the common wish of all enterprises and even countries. Among all the resistances generated by the belt conveyor during the operation, the indentation rolling resistance accounts for the largest proportion and the power consumed is the largest. Therefore, accurately predicting and reducing the rolling resistance of indentation is the focus of current research. Firstly, based on the three-element Maxwell solid model, the dynamic loading experiments of cylindrical rubber made of conveyor belt cover material were carried out at different temperatures. The identification models of elastic moduli E2 and E3 and viscosity coefficient 2 in the three-element Maxwell model were obtained, and then the fitting functions of the three parameters were gotten, which can intuitively reflect the influence of temperature. Secondly, the mathematical model of the indentation rolling resistance was derived. The mathematical model is characterized by the direct parameters such as belt speed v, thickness of backing material h, the idler radius R, and the rubber viscoelastic parameters E2, E3, and 2 and the indirect parameters such as normal force P and temperature T. Afterwards, the effects of belt speed, normal force, temperature, idler radius, and thickness of underlay on the indentation rolling resistance were studied under different working conditions. After that, experimental testing and analysis were fulfilled using test equipment and compared with theoretical analysis results. The results prove that the theoretical results are basically consistent with the experimental results, in line with the actual engineering rules. Finally, the application of the results in practical engineering was analyzed superficially.
机译:使皮带输送机的功耗最小化是所有企业甚至国家的共同愿望。在皮带输送机在运行过程中产生的所有阻力中,压痕滚动阻力所占比例最大,消耗的功率最大。因此,准确预测和减小压痕的滚动阻力是当前研究的重点。首先,基于三元素麦克斯韦固体模型,在不同温度下进行了由输送带覆盖材料制成的圆柱形橡胶的动态加载实验。在三元麦克斯韦模型中,建立了弹性模量E2,E3和黏度系数2的辨识模型,得到了三个参数的拟合函数,可以直观地反映温度的影响。其次,推导了压痕滚动阻力的数学模型。该数学模型的特征在于直接参数,例如皮带速度v,背衬材料的厚度h,惰轮半径R和橡胶粘弹性参数E2,E3和2,以及间接参数,例如法向力P和温度T.然后,研究了不同工作条件下皮带速度,法向力,温度,惰轮半径和衬里厚度对压痕滚动阻力的影响。之后,使用测试设备进行实验测试和分析,并与理论分析结果进行比较。结果证明,理论结果与实验结果基本吻合,符合实际工程规律。最后,浅析浅析了结果在实际工程中的应用。

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  • 来源
    《Mathematical Problems in Engineering》 |2019年第3期|1781427.1-1781427.16|共16页
  • 作者单位

    Taiyuan Univ Sci & Technol Sch Mech Engn Taiyuan 030024 Shanxi Peoples R China|Taiyuan Univ Sci & Technol Key Lab Intelligent Logist Equipment Shanxi Prov Taiyuan 030024 Peoples R China;

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