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Corresponding Author(s)

刘晓鹏(1989—),男,武汉轻工大学副教授,博士。E-mail:conquermygod@163.com

Abstract

[Objective] To provide a theoretical reference for the optimal design of the polisher structure by comparing the differences in the contact parameters of different kinds of rice. [Methods] Using bench test and simulation test, and combining with MATLAB software image processing technology, the optimal parameter combinations are obtained through the steepest climbing test and quadratic orthogonal test, and the contact parameters of the four kinds of rice grains, namely Japonica Rice, Japonica Glutinous Rice, Indica Rice, and Indica Glutinous Rice, are measured and calibrated. [Rseults ] The coefficient of static friction between Japonica Rice, Japonica Glutinous Rice, Indica Rice, and Indica Glutinous Rice and the steel plate is 0.47, 0.46, 0.52, and 0.52, respectively. The coefficient of rolling friction is 0.069, 0.074, 0.081, and 0.075, respectively. The collision recovery coefficient is 0.40, 0.42, 0.43, and 0.41, respectively. In the stacking angle measurement test, the coefficient of static friction between Japonica rice is 0.34, with a coefficient of rolling friction of 0.04, and a collision recovery coefficient of 0.53. The coefficient of static friction between Japonica Glutinous Rice is 0.32, with a coefficient of rolling friction of 0.04, and a collision recovery coefficient of 0.45. The coefficient of static friction between Indica Rice is 0.37, with a coefficient of rolling friction of 0.06, and a collision recovery coefficient of 0.56. The coefficient of static friction between Indica Glutinous Rice is 0.35, with a coefficient of rolling friction of 0.05, and a collision recovery coefficient of 0.54. [Conclusion] The coefficients of static friction and rolling friction of the long-grained Indica Rice and Indica Glutinous Rice are larger than those of the round-grained Japonica Rice and Japonica Glutinous Rice. The coefficient of rolling friction of Indica Rice is also slightly larger than that of Indica Glutinous Rice.

Publication Date

11-19-2025

First Page

67

Last Page

74

DOI

10.13652/j.spjx.1003.5788.2024.80955

References

[1] 朱启思,关则恳,邓常继,等.籼稻适度加工关键技术研究 [J].粮食科技与经济,2020,45(3):108-111.ZHU Q S,GUAN Z K,DENG C J,et al.Study on appropriate processing technology of indica rice [J].Grain Science and Technology and Economy,2020,45(3):108-111.
[2] 王卓权,林祯芃,陈旭东,等.不同原料糯米品种对绍兴黄酒品质的影响 [J].浙江农业学报,2024,36(4):773-779.WANG Z Q,LIN Z P,CHEN X D,et al.Effects of glutinous rice characteristics of different glutinous rice varieties on the quality of Shaoxing rice wine [J].Acta Agriculturae Zhejiangensis,2024,36(4):773-779.
[3] 黄海军,曹峰,尹学亮,等.基于全景分析技术的自动调压大米抛光机的研究 [J].粮食与食品工业,2023,30(1):16-18.HUANG H J,CAO F,YIN X L,et al.Research on automatic pressure regulating rice polishing machine based on panoramic analysis technology [J].Cereal & Food Industry,2023,30(1):16-18.
[4] 孟祥祎.米粒碾白机理及碾磨率数值化预测方法 [D].哈尔滨:东北农业大学,2022:1-2.MENG X Y.Milling mechanism and the numerical simulation approach to predict the abrasion rate of rice during milling [D].Harbin:Northeast Agricultural University,2022:1-2.
[5] 余成.大米柔性抛光机内米粒运动轨迹分析与仿真试验 [D].武汉:武汉轻工大学,2022:2-3.YU C.Analysis and simulation test of rice grain movement trajectory in rice flexible polishing machine [D].Wuhan:Wuhan University of Light Industry,2022:2-3.
[6] 张贺飞,黄国庆,衣雪梅,等.油茶果采摘机冲击组件的设计与仿真 [J].西北农林科技大学学报 (自然科学版 ),2024,52(6):143-154.ZHANG H F,HUANG G Q,YI X M,et al.Design and simulation of impact component for Camellia oleifera fruit picking machine [J].Journal of Northwest A & F University (Natural Science Edition ),2024,52(6):143-154.
[7] 陈永,高晓勋,金鑫,等.油莎豆排种离散元仿真参数标定与试验 [J].农业机械学报,2023,54(12):58-69.CHEN Y,GAO X X,JIN X,et al.Calibration and analysis of seeding parameters of cyperus esculentus seeds based on discrete element simulation [J].Transactions of the Chinese Society for Agricultural Machinery,2023,54(12):58-69.
[8] 刘大为,段佳鹏,陈星宇,等.基于 EDEM 的稻种离散元摩擦参数标定 [J].沈阳农业大学学报,2023,54(2):189-195.LIU D W,DUAN J P,CHEN X Y,et al.Calibration of friction parameters of seed particle models of hybrid rice based on EDEM [J].Journal of Shenyang Agricultural University,2023,54(2):189-195.
[9] LI H C,ZENG R,NIU Z Y,et al.A calibration method for contact parameters of maize kernels based on the discrete element method [J].Agriculture,2022,12(5):664.
[10] HU M J,XIA J F,ZHOU Y,et al.Measurement and calibration of the discrete element parameters of coated delinted cotton seeds [J].Agriculture,2022,12(2):286.
[11] 张春,杜文亮,陈震,等.荞麦米筛分物料接触参数测量与离散元仿真标定 [J].农机化研究,2019,41(1):46-51.ZHANG C,DU W L,CHEN Z,et al.The measurement of contact parameters of buckwheat rice screening material and discrete element simulation calibration [J].Journal of Agricultural Mechanization Research,2019,41(1):46-51.
[12] 彭 才 望,周 婷,宋 世 圣,等.基 于 Hertz 接 触 理 论 的 黑 水 虻 幼虫 碰 撞 恢 复 系 数 测 定 [J].农 业 机 械 学 报,2021,52(11):125-134.PENG C W,ZHOU T,SONG S S,et al.Measurement and analysis of restitution coefficient of black soldier fly larvae in collision models based on Hertz contact theory [J].Transactions of the Chinese Society for Agricultural Machinery,2021,52(11):125-134.
[13] 郭凌云,赵美卿,高有山,等.旋耕后农田模型离散元参数标定[J].中国农机化学报,2024,45(8):296-301.GUO L Y,ZHAO M Q,GAO Y S,et al.Calibration of discrete element parameters of farmland model after rotary tillage [J].Journal of Chinese Agricultural Mechanization,2024,45(8):296-301.
[14] 张宏建,陈修波,李宏立,等.控释肥颗粒群仿真接触参数标定与试验 [J].农业机械学报,2024,55(6):80-90.ZHANG H J,CHEN X B,LI H L,et al.Simulated contact parameters calibration and experiment of controlled-release fertilizer particles [J].Transactions of the Chinese Society for Agricultural Machinery,2024,55(6):80-90.
[15] 代永波,杨薇,李建东,等.玉米小区五行分种机理分析与试验[J].农机化研究,2024,46(11):13-20,28.DAI Y B,YANG W,LI J D,et al.Mechanism analysis and experiment of five-row seeding in maize community [J].Journal of Agricultural Mechanization Research,2024,46(11):13-20,28.
[16] 陈林,余南辉,王立宗,等.米糠和碎米的接触参数测量与离散元仿真标定 [J].中国农业科技导报,2024,26(2):127-136.CHEN L,YU N H,WANG L Z,et al.Measurement of contact parameters and discrete element simulation calibration of rice bran and broken rice [J].Journal of Agricultural Science and Technology,2024,26(2):127-136.
[17] 颜俊,胡治湘,罗红武,等.提高大米抛光机抛光光洁度降低碎米率的方法研究 [J].粮食与饲料工业,2020 (3):1-3,6.YAN J,HU Z X,LUO H W,et al.Research on improving polishing brightness of rice polisher and reducing broken rice rate[J].Cereal & Feed Industry,2020 (3):1-3,6.

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