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首页> 外文期刊>Journal of Mechanical Science and Technology >Dynamic analysis of indentation rolling resistance of steel cord rubber conveyor belt
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Dynamic analysis of indentation rolling resistance of steel cord rubber conveyor belt

机译:钢丝绳橡胶输送带压痕滚动阻力的动态分析

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摘要

To study the variation trend of the indentation rolling resistance of a rubber conveyor belt under different environmental temperatures, the sinusoidal compression displacement test was first carried out on the rubber matrix at six temperatures between -20 degrees C and 40 degrees C by a high and low temperature universal testing machine. Elastic modulus E-1, E-2 and loss factor tan of the rubber matrix were identified using the Fourier series. Then, the dynamic contact characteristics between the idling roller and conveyor belt were analyzed by the viscoelastic mechanics theory. Hence, the calculation equation of the indentation rolling resistance in the full thickness direction of the conveyor belt was deduced. Finally, a practical calculation and experimental verification of the indentation rolling resistance of the steel cord rubber conveyor belt at different temperatures were conducted. The results showed that the drop of the indentation rolling resistance of the conveyor belt was significant when the temperature was increased in the range of -20-10 degrees C. In the range of 10-40 degrees C, the influence of the increase of the ambient temperature on the indentation rolling resistance was relatively weak. Additionally, it is found that the contact force in the vertical direction and the idling roller diameter are important factors that affect the indentation rolling resistance of the conveyor belt. The influence of belt speed on the indentation rolling resistance is weak.
机译:为了研究橡胶输送带在不同环境温度下的压痕滚动阻力的变化趋势,首先在-20℃和40摄氏度之间的六个温度下在橡胶基质上进行正弦压缩位移试验,高低温度通用试验机。使用傅立叶系列鉴定了橡胶基质的弹性模量E-1,E-2和损耗因子棕褐色。然后,通过粘弹性机械理论分析空转辊和传送带之间的动态接触特性。因此,推导出传送带的全厚度方向上的压痕滚动阻力的计算等式。最后,进行了在不同温度下钢丝绳橡胶输送带的压痕滚动阻力的实际计算和实验验证。结果表明,当温度在-20-10摄氏度的范围内增加时,输送带的压痕滚动阻力显着显着。在10-40℃的范围内,增加了增加的影响压痕滚动阻力的环境温度相对较弱。另外,发现垂直方向上的接触力和空转辊直径是影响传送带的压痕滚动电阻的重要因素。皮带速度对压痕滚动阻力的影响较弱。

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