数字农科院2.0

Design and Experiment of Axial Flow Threshing and Cleaning Device for Roller Brush Type Castor Harvesting Machine

文献类型: 外文期刊

作者: Teng Wu;Bin Zhang;Fanting Kong;Yongfei Sun;Qing Xie;Huayang Zhao;Shuhe Zheng

作者机构:

关键词: agricultural machinery;castor threshing and cleaning;mechanism design;parameter optimization;response surface

期刊名称: Agriculture (Switzerland)

ISSN:

年卷期: 2025 年 15 卷 24 期

页码:

收录情况: SCIE(2025版)

摘要: In order to alleviate the problems of lack of research on threshing and cleaning equipment and poor operational performance of castor harvester, an axial-flow threshing and cleaning device was designed and evaluated for a roller brush type castor harvester. This paper introduces the overall machine structure and elaborates on the working principles of the castor threshing and cleaning device. It clarifies the design and analysis of key components such as the conveyor design, rod-tooth structure design, collision force analysis between the fruit and rod-tooth, concave sieve design, and guide plate design. The main indicators for evaluating the castor threshing and cleaning device include the impurity rate, damage rate, and separation loss rate. Based on the previous experimental research, the working parameters of castor threshing and cleaning device are tested and studied by using the Box–Behnken central combined test method. The three-factor three-level quadratic regression orthogonal test design is carried out based on the forward speed, roller rotational speed, and threshing gap of concave sieve. A response surface mathematical model was established, analyzing the impact of various factors on work quality and conducting comprehensive optimization of influencing factors. The experimental results indicate that the significance order of factors affecting the impurity rate was forward speed > roller rotational speed > threshing gap of concave sieve; the significance order for damage rate was roller rotational speed > threshing gap of concave sieve > forward speed; and the significance order for separation loss rate was roller rotational speed > forward speed > threshing gap of concave sieve. The field test results show that the optimal working parameter combination is forward speed of 0.87 m∙s−1, roller rotational speed of 462 r∙min−1, and threshing gap of concave sieve of 30 mm, with an impurity rate of 2.95%, a damage rate of 1.75%, and a separation loss rate of 0.49%. The research findings can provide references for the structural improvement and operational parameter optimization of the castor harvester’s threshing and cleaning device.

分类号:

  • 相关文献

[1]The Design and Optimization of a Peanut-Picking System for a Fresh-Peanut-Picking Crawler Combine Harvester. Jie Ling,Haiyang Shen,Man Gu,Zhichao Hu,Sheng Zhao,Feng Wu,Hongbo Xu,Fengwei Gu,Peng Zhang. 2024

[2]Innovative Design and Optimization of High-Quality Peanut Digging-Inverter. Haiyang Shen,Man Gu,Hongguang Yang,Jie Ling,Feng Wu,Fengwei Gu,Liang Pan,Zhaoyang Yu,Zhichao Hu. 2024

[3]Dynamic Analysis and Parameter Optimization of the Cutting System for Castor Harvester Picking Devices. Kong, Fanting,Wang, Defu,Shi, Lei,Huang, Huinan,Xie, Qing,Wu, Teng,Sun, Yongfei,Chen, Changlin. 2023

[4]Power Consumption Influence Test of Castor Disc-Cutting Device. Wu, Teng,Kong, Fanting,Shi, Lei,Xie, Qing,Sun, Yongfei,Chen, Changlin. 2022

[5]Design and Parameter Optimization of Variable Speed Reel for Oilseed Rape Combine Harvester. Min Zhang,Gang Li,Yao Yang,Mei Jin,Tao Jiang. 2023

[6]Simulation Analysis and Test of a Cleaning Device for a Fresh-Peanut-Picking Combine Harvester Based on Computational Fluid Dynamics–Discrete Element Method Coupling. Jie Ling,Man Gu,Weiwen Luo,Haiyang Shen,Zhichao Hu,Fengwei Gu,Feng Wu,Peng Zhang,Hongbo Xu. 2024

[7]Design and Performance Testing of the 4GS-457 Low-Loss Soybean Combine Harvester Header. Wang, Jin,Ni, Youliang,Liu, Zheng,Gou, Fuqiang,Qian, Zhenjie,Bai, Hongmei,Jin, Chengqian. 2025

[8]DESIGN AND EXPERIMENT OF KEY PART OF 2ZXS-2 CANTALOUPE TRANSPLANTER. Liu, Dejiang,Gong, Yan,Zhu, Yingchun,Yao, Kehen,Chen, Xiao,Wang, Guo,Zhang, Xiao. 2022

[9]DESIGN AND EXPERIMENT OF KEY PART OF 2ZXS-2 CANTALOUPE TRANSPLANTER [2ZXS-2哈密瓜移栽机的关键部件设计与试验]. Liu D.,Gong Y.,Zhu Y.,Yao K.,Chen X.,Wang G.,Zhang X.. 2022

[10]Optimization and test for spraying parameters of cotton defoliant sprayer. Qin Weicai,Qin Weicai,Xue Xinyu,Cui Longfei,Zhou Qingqing,Xu Zhufeng,Chang Feilong. 2016

[11]Soybean oil enriched with antioxidants extracted from watermelon (Citrullus colocynthis) skin sap and coated in hydrogel beads via ionotropic gelation. Muhammad Farooq,Elham Azadfar,Monica Trif,Ramezan Ali Jabaleh,Alexandru Rusu,Zohre Bahrami,Mahniya Sharifi,Sneh Punia Bangar,Naila Ilyas,Bianca Eugenia Ștefănescu,Yunyang Wang. 2021

[12]Design and optimization of the parameters of the key components for reed harvester. Huang J.C.,Zhang B.,Tian K.P.,Liu H.L.,Shen C.. 2022

[13]PID-Based Design of Automatic Control System for a Travel Speed of the 4UM-120D Electric Leafy Vegetable Harvester. Chen, Wenming,Wang, Gongpu,Hu, Lianglong,Yuan, Jianning,Wu, Wen,Bao, Guocheng,Yin, Zicheng. 2022

[14]Optimal Vase Solution for Gerbera hybrida Cut Flower Keeping Fresh by Activating SA and Cytokinin Signaling and Scavenging Reactive Oxygen Species. Chaoshui Xia,Yiyang Cao,Weixin Gan,Huifeng Lin,Huayang Li,Fazhuang Lin,Zhenhong Lu,Weiting Chen. 2025

[15]Development of an AutoWEP distributed hydrological model and its application to the upstream catchment of the Miyun Reservoir. Tian, Yu,Lei, Xiaohui,Liao, Weihong,Jia, Yang Wen,Jiang, Yun Zhong,Wang, Hao,Bai, Wei.

[16]Droplet deposition and control effect of insecticides sprayed with an unmanned aerial vehicle against plant hoppers. Qin, Wei-Cai,Qiu, Bai-Jing,Qin, Wei-Cai,Xue, Xin-Yu,Chen, Chen,Xu, Zhu-Feng,Zhou, Qing-Qing.

[17]Optimization of Electrotransfection Conditions of Mammalian Cells with Different Biological Features. Guo, Huichen,Hao, Rongzeng,Wei, Yanquan,Sun, Dehui,Sun, Shiqi,Guo, Huichen,Hao, Rongzeng,Wei, Yanquan,Sun, Dehui,Sun, Shiqi,Zhang, Zhencang. 2012

[18]Design and Experimental Study on a New Horizontal Rotary Precision Seed Metering Device for Hybrid Rice. Xia Q.,Zhang W.,Qi B.,Wang Y.. 2023

[19]BENCH TESTS AND PARAMETERS OPTIMIZATION OF ONBOARD SEED COTTON CLEANER. Sun, Yongfei,Shi, Lei,Kong, Fanting,Xie, Qing,Wu, Teng,Chen, Changlin. 2022

[20]Design and Experiment of an Integrated Automatic Transplanting Mechanism for Picking and Planting Pepper Hole Tray Seedlings. Hu, Shuangyan,Hu, Minjuan,Yan, Wei,Zhang, Wenyi. 2022

作者其他论文 更多>>