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Optimization Design on Deep-Fertilization Fertilizer Amount Adjusting Mechanism for Paddy Field

机译:稻田深施肥量调节机构的优化设计

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In order to solve the deliquesced fertilizer adheres to fertilizer conveying pipe, and leads to fertilizer conveying pipe blocked, a kind of fertilizer amount adjusting mechanism of deep-fertilization machinery for paddy field was designed. This adjusting mechanism was taken as research object, the distance between hinge axis and the center of blade connection seat, the distance between hinge axis and sliding limited post axis, the rotation angular velocity of cam ring and the angular velocity of blade rotating around hinge axis were taken as objective function, the diameter of fertilizer through-hole, the number of blades and the changing range of curvature radius of guide chute were taken as constraint conditions, the aided design and analysis software for fertilizer amount adjusting mechanism was programmed by VB software, through which kinematics optimization was carried out for fertilizer amount adjusting mechanism. The obtained optimal parameter ranges are: the radius of inner ring of cam is 30mm, the number of blade is 6, the distance between the hinge axis and the center of blade connection seat is 47.5mm, the distance between hinge axis and sliding limited post axis is 12.5mm, the rotation angular velocity of cam ring is 25-35r/min, the angular velocity of blade rotating around hinge axis is 30-35r/min. According to optimization results, the fertilizer amount adjusting mechanism was simulated by Pro/E software, the simulation results were validated by experiment. The results show that the adjustable range of diameter of fertilizer through-hole for fertilizer amount adjusting mechanism is 9-56mm, the sliding limited post of blade and the guiding chute of cam ring have good sliding performance, and the designed fertilizer amount adjusting mechanism can satisfy the expected design requirements.
机译:为了解决潮解后的肥料附着在肥料输送管上,导致肥料输送管堵塞的问题,设计了一种稻田深施肥机械的肥料用量调节机构。以该调节机构为研究对象,铰链轴与叶片连接座中心的距离,铰链轴与滑动限位轴之间的距离,凸轮环的旋转角速度和叶片绕铰链轴旋转的角速度为研究对象。以目标函数为参数,以肥料通孔直径,叶片数和导槽的曲率半径变化范围为约束条件,用VB软件编写辅助量分析机构的辅助设计与分析软件,通过运动学优化了肥料用量的调节机理。获得的最佳参数范围为:凸轮内圈半径为30mm,叶片数为6,铰链轴与叶片连接座中心的距离为47.5mm,铰链轴与滑动限位柱的距离轴为12.5mm,凸轮环的旋转角速度为25-35r / min,叶片绕铰链轴旋转的角速度为30-35r / min。根据优化结果,通过Pro / E软件对肥料用量调节机理进行了仿真,并通过实验对仿真结果进行了验证。结果表明,施肥量调节机构的施肥通孔直径可调范围为9-56mm,叶片的滑动限位柱和凸轮环的导向斜槽具有良好的滑动性能,设计的施肥量调节机构可以满足预期的设计要求。

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