电动向日葵脱粒机的设计与研制

M. Hoque, Md.Sayed Ali, M. Miah, M. Karim, M. Hossain
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引用次数: 0

摘要

孟加拉国的向日葵产量正在增加,但农民面临着将种子和葵花籽分离的问题。传统上,用棍子敲打向日葵的头来打谷。这个实验的目标是设计和开发一个电机驱动的机器,从向日葵中分离种子。利用SolidWorks 2016软件绘制正射影图。向日葵脱粒机随后在2017-18年根据图纸在FMPE分部车间使用当地可用的材料制造。研制的向日葵脱粒机于2018-19年进行了改造。对改进后的模型进行了进一步的修改,在保持机器容量不变的情况下减小了整体尺寸。脱粒辊由5台减少到4台。在改进的版本中增加了一个脱粒风扇,以从颗粒中分离粉尘。电动脱粒机的脱粒量比手动脱粒机和脚踏脱粒机分别高出115和304%。脱粒机的脱粒能力随水分含量的变化而变化。脱粒机的脱粒量为89 ~ 125 kg/h,含水率为31 ~ 62% (wb)。
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Design and Development of a Power Operated Sunflower Thresher
Sunflower production is increasing in Bangladesh, but farmers face problems separating the seeds from the sunflower heads. Sunflowers are traditionally threshed by beating the heads manually with a stick. The goal of this experiment is to design and develop a motor-driven machine that separates the seeds from the sunflower. An orthographic projection was drawn using SolidWorks 2016 software. The sunflower threshing machine was then fabricated according to the drawing in the FMPE Divisional workshop using locally available materials in 2017-18. The developed sunflower threshing machine was modified in 2018-19. The improved model was further modified to reduce the overall dimensions while maintaining the same capacity of the machine. The number of threshing rollers was reduced from 5 to 4. A threshing fan has been added to the improved version to separate the dust from the grains. The capacity of the motorized sunflower thresher was 115 and 304% higher than that of the pedal thresher and manual threshing, respectively. The capacity of the thresher was varied with moisture content. The capacity of the thresher varied from 89 to 125 kg/h at moisture content from 31 to 62% (wb).
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