Comparing kernel damage of different threshing components using high-speed cameras
Abstract
Keywords: maize grain, damage, threshing process, high-speed camera
DOI: 10.25165/j.ijabe.20201306.5395
Citation: Ma Z, Han M, Li Y M, Yu S C, Chandio F A. Comparing kernel damage of different threshing components using high-speed cameras. Int J Agric & Biol Eng, 2020; 13(6): 215–219.
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Ministry of Agriculture and Rural Affairs of the People's Republic of China. Significant progress has been made in the mechanization of major crops Available at: http://www.moa.gov.cn/ztzl/ncgzhy2017/pandian/201712/ t20171219_6105958.htm. Accessed on [2017-12-05]
Yang L, Cui T, Qu Z, Li K H, Yin X W, Han D D, et al. Development and application of mechanized maize harvesters. Int J Agric & Biol Eng, 2016; 9(3): 15–28.
Geng A J, Yang J N, Zhang Z L, Zhang J, Zhang R S. Discuss about the current situation and future of maize harvest machinery about domestic and abroad. Journal of Agricultural Mechanization Research, 2016; 38(4): 251–257. (in Chinese)
Chen Z, Hao F P, Wang F D, Su W F, Cui J W. Development of technology and equipment of maize harvester in China. Transactions of the CSAM, 2012; 43(12): 44–49. (in Chinese)
Li X P, Xiong S, Geng L X, Ji J T. Influence of water content on antipressing properties of maize ear. Transactions of the CSAE, 2018; 34(2): 25–31. (in Chinese)
Qu H J, Zhang D L, Yang T W, Xu Z D. Experimental research on maize threshing performance affected by moisture content. Journal of Agricultural Mechanization Research, 2014; 36(2): 153–156. (in Chinese)
Li S K, Wang K R, Xie R Z, Li L L, Ming B, Hou P, et al. Grain breakage rate of maize by mechanical harvesting in China. Crops, 2017; 2017(2): 76–80. (in Chinese)
Yi K C, Zhu D W, Zhang X W, Yao Z H, Liu Z. Effect of moisture content on maize grain harvesting mechanization. Journal of Chinese Agricultural Mechanization, 2016; 37(11): 78–80. (in Chinese)
Liu J Y, Cui Z K, Ma J C, Jiao W. Problems and countermeasures of wheat maize rotation production mechanization for main crops in Huanghuaihai Region. Journal of Agricultural Mechanization Research, 2016; 38(5): 259–263. (in Chinese)
Gao L X, Li F, Zhang X W, Zhang Y L, Liu X, Jiao W P. Mechanism of moisture content affect on maize seed threshing. Transactions of the CSAM, 2011; 42(12): 92–96. (in Chinese)
Chowdhury M H, Buchele W F. The nature of maize kernel damage inflicted in the shelling crescent of grain combines. Transactions of the ASABE, 1978; 21(4): 610–614.
Kustermann M, von Maiskoerner S B. Impact load on maize grains. Grundlagen Landtechnik, 1987; 37(4): 121–131.
Petkevichius S, Shpokas L, Kutzbach H D. Investigation of the maize ear threshing process. Biosystems Engineering, 2008; 99(4): 532–539.
Li X P, Ma F L, Gao L X. High-speed photograph analysis on threshing process of maize seed. Transactions of the CSAM, 2009; 40(11): 46–49. (in Chinese)
Zhang X W, Yi K C, Gao L X. Contacting mechanics analysis during impact process between maize seeds and threshing component. Chinese Agricultural Science Bulletin, 2015; 31(14): 285–290. (in Chinese)
Fu H, Lü Y, Li Y S, Yu J Q. Analysis for maize threshing process based DEM. Journal of Jilin University (Science Edition), 2012; 42(4): 997–1002. (in Chinese)
Yu Y. Research on analysis method of maize threshing based on 3D DEM. Doctoral dissertation, Changchun: Jilin University, 2013; 134p. (in Chinese)
Xu L, Ma J, Wang Z, Yang Y, Chen L, Fang L. Design and experimental study on stripping device of maize harvester. International Agricultural Engineering Journal, 2018; 27(3): 210–221.
Di Z F, Cui Z K, Zhang H, Zhou J, Zhang M Y, Bu L X. Design and experiment of rasp bar and nail tooth combined axial flow maize threshing cylinder. Transactions of the CSAE, 2018; 34(1): 28–34. (in Chinese)
Cui Z K, Di Z F, Zhou J, Zhang H, Bu L X, Gao Q. Design and research on 5TYS280 maize threshing and cleaning test bench. Journal of Agricultural Mechanization Research, 2017; 39(5): 113–117. (in Chinese)
Yang L Q, Wang W Z, Zhang H M, Li L H, Wang M M, Hou M T. Improved design and bench test based on tangential flow-transverse axial flow maize threshing system. Transactions of the CSAE, 2018; 34(1): 35–43. (in Chinese)
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