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DEM SIMULATION AND EXPERIMENT OF CORN GRAIN GRINDING PROCESS

机译:玉米籽粒碾磨工艺DEM模拟与实验

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摘要

To improve the working performance of hammer mill, cutting-edge hammer and oblique hammer were designed in this study. The advantages of new hammers were theoretically analyzed. The grinding process of corn grain with different hammers was studied by discrete element method (DEM) and experiments. Discrete element simulation results showed that under same rotor speed conditions, the cutting-edge hammer had highest bond-breaking efficiency in corn grain model. The oblique hammer could reduce the incident angle of corn grain and improve sieving efficiency. The motion trajectory of corn grain in grinding chamber was relatively dispersed and similar when using common hammer and cutting-edge hammer, and the motion trajectory was more concentrated when oblique hammer was used. The experimental results showed that both cutting-edge hammer and oblique hammer could improve the working performance of hammer mill. The productivity of hammer mill could be improved by using cutting-edge hammer, electricity consumption per ton and temperature rise of feed could be reduced by using oblique hammer, and the experimental results were consistent with simulation results and theoretical analysis results. The research results can provide references for the design of new hammer and the grinding process simulation of other agricultural materials.
机译:为提高锤式粉碎机的工作性能,本研究设计了切削锤和斜锤。从理论上分析了新锤子的优点。采用离散元法(DEM)和实验研究了不同锤子对玉米籽粒的研磨工艺。离散元仿真结果表明,在相同转子转速条件下,切削锤在玉米籽粒模型中具有最高的断粘效率。斜锤可以减小玉米籽粒的入射角,提高筛分效率。使用普通锤和切削锤时,玉米籽粒在研磨室中的运动轨迹相对分散且相似,而使用斜锤时运动轨迹更集中。实验结果表明,切削锤和斜锤均能提高锤磨机的工作性能。采用尖端锤可以提高锤磨机的生产率,使用斜锤可以降低单位吨电耗和进料温升,实验结果与模拟结果和理论分析结果一致。研究结果可为新型锤子的设计和其他农用材料的研磨工艺模拟提供参考。

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