On the issue of limiting the irregular motion of a technological machine within specified limits

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING Obrabotka Metallov-Metal Working and Material Science Pub Date : 2022-06-15 DOI:10.17212/1994-6309-2022-24.2-67-77
Yuriy Podgornyj, T. Martynova, V Yu Skeeba
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Abstract

Introduction. The problem of regulating speed fluctuations for any mechanism is essential, because the time interval of this movement is the working time during which the main technological operation is performed. In this case, the question may arise about the regulation of motion speeds both during acceleration, idling of the machine, and during the execution of the main technological operation. The main qualitative indicator of the satisfactory operation of any machine is the motion irregularity ratio, the value of which depends on the ratio of the maximum, minimum and average speeds of the drive shaft. Particularly acute is the problem of determining the motion irregularity ratio of the machine, taking into account the characteristics of the motor. In this case, the machine is considered as a system consisting of a single mass. The elasticity of the elements included in the machine is neglected. An analysis of the scientific literature in this area indicates that insufficient attention is paid to the study of rotation irregularities and its influence on the dynamics of mechanisms, especially when it comes to solving equations taking into account the characteristics of the motor. The purpose of this work is to develop a methodology that allows determining and regulate the non-uniform rotation of the drive shaft, taking into account the characteristics of the motor, the forces of useful resistance and the inertia of the masses of the mechanism. The relevance of the study is due to the lack of a unified methodology that allows adjusting the non-uniform rotation of the drive shaft at the stage of designing mechanisms of this type. Theory and methods. It is proposed to use the Lagrange equation of the second kind to determine the equation of machine motion in differential form. Mathematical simulation is carried out using the Mathcad and KOMPAS-3D application packages. Results and discussion. A methodology is presented that makes it possible to regulate the non-uniform rotation of the shaft. The CAE of the Mathcad system are used to determine the value of the irregularity ratio and patterns of change in these indicators are identified for total operating values that are in the range of 22-46 Nm. An analysis of the results of the calculations performed indicates that the irregularity ratio of the drive shaft rotation is 0.101. It is possible to change this ratio by changing the reduced moment of inertia by installing an additional flywheel or changing the torque of the motor shaft. The obtained results of the research made it possible to develop specific recommendations for the modernization of the drive designs for machines for mixing bulk materials and to outline ways for further research in this direction.
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关于将工艺机器的不规则运动限制在规定范围内的问题
介绍。调节任何机械的速度波动的问题都是至关重要的,因为这种运动的时间间隔是执行主要技术操作的工作时间。在这种情况下,可能会出现在加速、机器空转和执行主要工艺操作期间运动速度调节的问题。任何机器运行是否满意的主要定性指标是运动不规则比,其值取决于传动轴的最大、最小和平均速度之比。特别急迫的是在考虑到电机特性的情况下确定机器的运动不均匀率的问题。在这种情况下,机器被认为是一个由单一质量组成的系统。机器中包含的元件的弹性被忽略了。对该领域科学文献的分析表明,对旋转不规则性及其对机构动力学的影响的研究不够重视,特别是在求解考虑电机特性的方程时。这项工作的目的是开发一种方法,允许确定和调节传动轴的非均匀旋转,同时考虑到电机的特性,有用阻力的力量和机构质量的惯性。该研究的相关性是由于缺乏一种统一的方法,允许在设计这种类型的机构阶段调整传动轴的不均匀旋转。理论与方法。提出用第二类拉格朗日方程确定微分形式的机械运动方程。利用Mathcad和KOMPAS-3D软件包进行数学仿真。结果和讨论。提出了一种方法,可以调节轴的不均匀旋转。使用Mathcad系统的CAE来确定不规则比的值,并在22-46 Nm范围内确定这些指标的变化模式。对计算结果的分析表明,传动轴的旋转不均匀率为0.101。可以通过安装额外的飞轮或改变电机轴的扭矩来改变减小的转动惯量来改变这个比率。所获得的研究结果使得有可能对混合散装材料的机器的驱动设计的现代化提出具体建议,并概述了在这个方向上进一步研究的方法。
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来源期刊
Obrabotka Metallov-Metal Working and Material Science
Obrabotka Metallov-Metal Working and Material Science METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
50.00%
发文量
26
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