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Seeding Element Polarity Arrangement on Drum-Type Magnetic Precision Seeder

机译:鼓式磁力精密播种机上播种元件的极性排列

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In order to improve Multi-polar magnetic structure's efficiency. An-soft Maxwell of electromagnetic field finite element software is utilized to study the effect of different polarity arrangement of magnetic seeding element on the magnetic induction intensity of seeding element end and magnetic field distribution in the seeding air gap. As a result of the different electromagnetic coil current direction, magnetic polarity side is different, space structure of magnetic field distribution is also different. The suction metering device of the scope and efficiency is decided by the magnetic field distribution. According to the results of finite element analysis of magnetic field, research on magnetic drum seed-metering device with the design of the program components, and enhance the precision seed metering device performance. Studies have shown that the magnetic induction intensity of seeder in the same polarity arrangement such as NN or SS is lower than in the arrangement of cross with NS, and magnetic field is uniform along the circumference and non- uniform along the axial in the both the arrangement.
机译:为了提高多极磁性结构的效率。利用电磁场有限元软件的Maxwell软件,研究了磁种元件的不同极性布置对种子元件端部磁感应强度和种子气隙中磁场分布的影响。由于电磁线圈电流方向不同,磁极侧也不同,空间结构的磁场分布也不同。抽吸计量装置的范围和效率取决于磁场分布。根据磁场有限元分析的结果,通过程序组件的设计研究磁鼓式排种器,提高了精密排种器的性能。研究表明,在相同极性的情况下,例如NN或SS,种子的磁感应强度低于与NS交叉的情况,并且在两个方向上磁场沿圆周均匀,沿轴向不均匀。安排。

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