Design and Experiment of Longitudinal Axial Flow Double Flexible Rolling and Kneading Threshing Device for Millet

被引:0
|
作者
Li X. [1 ]
Wang W. [1 ]
Zhao G. [1 ]
Sun C. [1 ]
Hu P. [1 ]
Ji J. [1 ]
机构
[1] College of Agricultural Equipment Engineering, Henan University of Science and Technology, Luoyang
关键词
Double flexible; Flexible micro motion concave grate; Flexible rubber roller; Longitudinal axial flow; Millet threshing device;
D O I
10.6041/j.issn.1000-1298.2021.07.011
中图分类号
学科分类号
摘要
Aiming at the problems of high millet agglomerates rate, high damage rate and high undelivered net loss rate in the process of mechanical harvesting, a longitudinal axial flow double flexible rolling threshing device was designed. The device adopted longitudinal axial flow threshing drum, and flexible rubber roller was installed on the threshing drum, which can reduce the damage rate of millet grain and realize the flexible and low damage threshing of millet. The rubber surface had wavy protrusion, which had good milling and threshing performance for millet. The flexible concave grate was composed of two hollow cylindrical nylon screening units, and each group of two rows of hollow cylindrical nylon screening units were mutually staggered to form U-shaped holes suitable for the separation of millet seeds. The support device of concave grate had micro motion, and the flexible micro motion concave grate was formed with the flexible concave grate, which was conducive to the separation of millet seeds and the reduction of grain rate. The feed rate, drum speed and threshing clearance were selected as the experimental factors, and the grain rate, damage rate and net undelivered loss rate were taken as the indexes to carry out the ternary quadratic regression orthogonal rotation combination test, and the optimal parameter combination of feed rate, drum speed and threshing clearance was determined. The results showed that when the feeding rate was 1.4 kg/s, the roller speed was 735 r/min and the concave gap was 9 mm, the damage rate of millet grain was 0.35%, the millet agglomerates rate was 1.78%, and the undelivered net loss rate was 0.64%, power consumption was 10.6 kW, which provided the basis for the further development of a type of millet threshing device. © 2021, Chinese Society of Agricultural Machinery. All right reserved.
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页码:113 / 123
页数:10
相关论文
共 26 条
  • [1] LI Shunguo, LIU Fei, LIU Meng, Et al., Current situation, development trend and countermeasures of millet industry in China, Research of Agricultural Modernization, 35, 5, pp. 531-535, (2014)
  • [2] LI Yuhui, GUO Erhu, FAN Huiping, Et al., Discussion on the development of millet industry, Modern Agricultural Science and Technology, 22, pp. 28-29, (2019)
  • [3] DIAO Xianmin, CHENG Ruhong, Fifteen year regional test data analysis shows the current situation of millet millet breeding, Scientia Agricultura Sinica, 50, 23, pp. 4469-4474, (2017)
  • [4] ZHANG Dongming, Design and performance test of single axial flow threshing and separating device for millet, (2020)
  • [5] WACKER P., Maize grain damage during harvest, Harvest Technology, 60, 2, pp. 84-85, (2005)
  • [6] BRUCE D M, HOBSON R N, MORGAN C L, Et al., Threshability of shatter-resistant seed pods in oilseed rape, Journal of Agricultural Engineering Research, 80, 4, pp. 343-350, (2001)
  • [7] POWAR R V, AWARE V V, SHAHARE P U., Optimizing operational parameters of finger millet threshing drum using RSM, Journal of Food Science and Technology, 56, 7, pp. 65-73, (2019)
  • [8] WU Xuefeng, Analysis and experimental study on mechanical properties of new type millet thresher, (2005)
  • [9] XIE Fangping, LUO Xiwen, LU Xiangyang, Et al., Threshing mechanism of flexible rod tooth cylinder, Transactions of the CSAE, 25, 8, pp. 110-114, (2009)
  • [10] ZHANG Dongming, YI Shujuan, TAO Guixiang, Et al., Development of millet axial flow threshing and separation test bed, Journal of Agricultural Mechanization Research, 41, 11, pp. 62-67, (2019)