Impact on Motor Speed of a New Rotary Vibrating Screen with Material Kinematics Characteristics

Hongwei Yan, Yang Wang, Yajie Li, Feiyang Yuan, Fangxian Peng
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Abstract

In order to solve the problem that the existing screening equipment is bulky and unsuitable for fine sample preparation of each sample, this paper proposes a small-scale rotary vibration sieve that can be sieved repeatedly by using inclined sieve surfaces. Based on the theory of multi-body dynamics, the virtual prototyping technology was used to simulate the motion characteristics of the material on the screen. By comparing the trajectory, velocity and angular velocity curves of the material at different motor speeds, the motor speed value with the best material motion characteristics and the range of motor speed values in subsequent experiments can be obtained. This section produced experimental equipment and conducted screening efficiency experiments to verify the accuracy of the simulation results. The results show that the maximum speed of the motor obtained in the simulation is 600 r/min-1200 r/min when the material dynamic characteristics are the best; after the experiment in this interval, the screening effect of the motor rotation speed in the range of 960 r/min to 1020 r/min was obtained. The simulation results are in accordance with the experimental results. This study can provide a new method for screening equipment design and provide an important basis for follow-up research.
物料运动学特性对新型振动筛电机转速的影响
为了解决现有筛分设备体积庞大,不适合对每种样品进行精细制样的问题,本文提出了一种小型旋转振动筛,可以利用倾斜筛面进行重复筛分。基于多体动力学理论,采用虚拟样机技术模拟了材料在屏幕上的运动特性。通过对比不同电机转速下物料的运动轨迹、速度和角速度曲线,得出物料运动特性最佳的电机转速值以及后续实验中电机转速值的取值范围。本节制作实验设备,进行筛分效率实验,验证模拟结果的准确性。结果表明:仿真得到的电机最大转速为600 r/min ~ 1200 r/min,此时材料动态特性最佳;经过这段时间的实验,得到了电机转速在960 r/min ~ 1020 r/min范围内的筛分效果。仿真结果与实验结果吻合较好。本研究可为筛选设备设计提供新的方法,并为后续研究提供重要依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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