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The study on hydraulic system of roller mill

机译:轧机液压系统的研究

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摘要

The performance of hydraulic system plays an important role in roller mill. The hydraulic system was regarded as a vibration system with a single degree-of-freedom and the differential equation of roller was derived on the basis of the analysis of piston movement. It was found that the dynamic performance is affected by the damping ration, which depends on the performance of the hydraulic oil and the cross-section of the hydraulic tube, and the stiffness which is influenced by the pressure and the volume of accumulator. The damping ratio has a great effect on the response amplitude and the force-delivering ratio, but the stiffness only affects the response amplitude. The simulation on the hydraulic system of a roller mill designed to crush limestone was performed using Matlab. The result has shown that the system reached the steady state in 2s when step excitation was applied and in 1s when impulse excitation was applied.
机译:液压系统的性能在辊磨机中起着重要作用。液压系统被认为是具有单自由度的振动系统,并且在分析活塞运动的基础上推导了滚子的微分方程。发现动态性能受阻尼比的影响,阻尼比取决于液压油的性能和液压管的横截面以及受压力和蓄能器体积影响的刚度。阻尼比对响应幅值和力传递比有很大的影响,但是刚度仅影响响应幅值。使用Matlab对旨在粉碎石灰石的辊磨机的液压系统进行了仿真。结果表明,在施加阶跃激励时,系统在2s内达到稳态,而在施加脉冲激励时,系统在1s内达到稳态。

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