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中国农机化学报

中国农机化学报 ›› 2023, Vol. 44 ›› Issue (1): 142-151.DOI: 10.13733/j.jcam.issn.2095-5553.2023.01.021

• 农产品加工工程 • 上一篇    下一篇

风筛式清选装置筛下物料分布规律研究

樊荣,崔清亮,卢琦,郑德聪,王嘉伟   

  1. 1. 山西农业大学农业工程学院,山西太谷,030801; 2. 中国农业机械化科学研究院,北京市,100083
  • 出版日期:2023-01-15 发布日期:2023-01-18
  • 基金资助:
    国家重点研发计划(2016YFD0701801)

Study on distribution law of materials under sieve in airandscreen cleaning device

Fan Rong, Cui Qingling, Lu Qi, Zheng Decong, Wang Jiawei.   

  • Online:2023-01-15 Published:2023-01-18

摘要: 为揭示筛下物料分布随清选装置结构、运动参数变化规律,在QXS-3.0型谷物清选试验台上进行了不同风机转速、风机风向角、曲柄转速、曲柄直径的振动筛下物料分布试验。通过分析不同条件下筛下各物料含量及沿筛面横向、纵向分布情况,得出筛下籽粒重量、杂余重量、物料总重量及含杂率沿筛面横向、纵向分布规律。结果表明,物料在横向上分布极不均匀,荞麦籽粒主要分布于籽粒收集箱中间位置,两侧分布较少;因受风机布置影响,杂余量呈“人”字形分布;而筛下物料含杂率呈“w”型分布,且随各参数变化明显。在纵向上,物料分布也不均匀,荞麦籽粒主要集中于籽粒收集箱中间位置,而前端、后端分布较少;杂余量、含杂率曲线近似,杂余量、含杂率在籽粒收集箱0~1 100 mm区域内增长缓慢,1 100~1 500 mm区域增长迅速。所得结论可以为荞麦清选装置的设计及优化提供理论依据,同时对指导农业生产也有重要意义。

关键词: 风筛式清选装置, 分布规律, 荞麦脱出混合物, 清选性能

Abstract: The study aims to reveal the variation of material distribution under the sieve with the structural parameters and movement parameters of the cleaning device. The material distribution tests under vibrating screen with different fan speed, fan wind direction angle, crank speed and crank diameter were carried out on QXS-3.0 grain cleaning test bench. By analyzing the content of each material under the sieve and its transverse and longitudinal distribution along the screen surface, the grain weight, impurity weight, total weight of the material and the impurity rate under the screen surface were obtained. The material distribution was very uneven in transverse direction. Buckwheat grains were mainly distributed in the middle position, less on both sides. Due to the influence of fan layout, the impurities were distributed in the shape of Chinese character of “human”. The impurity rate curve of the material under the screen shows a “w” shape distribution and changed obviously with each parameter. In the longitudinal direction, the distribution of materials was not uniform, buckwheat grains were mainly concentrated in the middle of the grain collection box, and the distribution was less in the front and back end. The curves of impurity weight and impurity rate were similar, and they increased slowly in region of 0-1 100 mm, but sharply in 1 100-1 500 mm region. Increasing screen surface and cross flow fan can effectively improve the uniformity of material distribution under the sieve and the cleanliness rate of grain under the sieve. The conclusions can provide theoretical basis for the design of the cleaning device, and also have important significance for guiding production.

Key words: airscreen cleaning device, distribution law, buckwheat threshing material, cleaning performance

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