颗粒物料分级设备的研究与设计

Ganbaatar Gunsen, Renchinvanjil Yadam
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引用次数: 0

摘要

有研究表明,世界上产生的总能源的10%用于农业和采矿部门的破碎、筛选和分选过程。52.7%的采矿业开采金属矿石,36.3%开采煤炭,农业部门平均每年在35万公顷的土地上种植小麦和农作物。可以看出,在这些部门中,有必要对带有颗粒的物料进行分类。根据需要,能源消耗高,使用的装置和设备仍然保持传统的设计和制造。有颗粒物料的分选过程是通过垂直轴上的平面、锤形和圆柱形网格面进行筛选。以上方法至今仍在使用,成为机械筛分方法的基础。因此,研究人员继续致力于完善上述方法。本研究工作的目的是调查和确定筛分设备设计变化的可能性,以改善筛分过程中产生的影响,提高筛分效率和设备或设备的生产率。通过本次研究工作,为了提高颗粒物料的筛分参数,我们将筛分过程中常用的十字筛孔的圆柱筛孔设计改为轴对轴,并利用ADAMS软件对轴筛孔进行CAD分析,并对轴筛孔内单个颗粒的运动情况进行分析,以验证实验结果。对真实设备上的实验进行数学建模合理化,利用“EDEM solution”软件进行物理建模,并对结果进行处理。
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Research and development of designs of the equipment for classifying the materials with particles
There are studies showing that 10% of the total energy generated in the world is spent on crushing and sifting and sorting processes in agricultural and mining sectors. 52.7% of the total mining industries extracts metal ores, 36.3% of them extracts coal and agricultural sector plants wheat and crops on the 350 thousand hectares of land per year an average. It can be seen that there is a need for sorting the materials with particles in these sectors. According to the needs, the energy expenditure is high and the devices and equipment used still maintaining their traditional designs and makes. The process of sorting out the materials with particles is sifted by the flat surfaced, trommel shaped, and cylindrical mesh surfaces positioned in vertical axis. The above methods are still in use, which becomes the basis of mechanical sifting methods. Therefore, the researchers continue to work on perfecting the above methods. The goal of this research work is to survey and determine the possibility of the changes in the designs of sifting equipment with the trommels can improve the influences that are created during the sifting process, the efficiency of sifting and the productivity of device or equipment. By this research work, with the purpose to improve the parameters of sifting of materials with particles, we will change the design of cylindrical trommel of the cross trommel sieve, which is often used in the sifting process to axle to its axis, and in order to confirm the results of experiment by determining the CAD analysis of axle trommel and the movement of one particle inside of it using the ADAMS software,  the experiment on the real equipment shall be rationalized by putting into the mathematic modeling, develop the physical modeling using the “EDEM solution” software  and process the results.  
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