中国农业科技导报 ›› 2022, Vol. 24 ›› Issue (7): 97-107.DOI: 10.13304/j.nykjdb.2021.0402

• 智慧农业 农机装备 • 上一篇    下一篇

基于堆积试验的玉米包衣种子离散元参数标定

李飞翔(), 王鹏(), 王云飞, 葛越锋, 唐凯怿, 李得志   

  1. 洛阳智能农业装备研究院有限公司,河南 洛阳 471000
  • 收稿日期:2021-05-12 接受日期:2021-07-26 出版日期:2022-07-15 发布日期:2022-08-15
  • 通讯作者: 王鹏
  • 作者简介:李飞翔 E-mail:lifeixiang147258@163.com
  • 基金资助:
    工信部制造业高质量发展专项

Calibration of Discrete Element Parameters of Corn Coated Seeds Based on Stacking Test

Feixiang LI(), Peng WANG(), Yunfei WANG, Yuefeng GE, Kaiyi TANG, Dezhi LI   

  1. Luoyang Smart Agricultural Equipment Institute Co. ,Ltd. ,Henan Luoyang 471000,China
  • Received:2021-05-12 Accepted:2021-07-26 Online:2022-07-15 Published:2022-08-15
  • Contact: Peng WANG

摘要:

为获得基于黏结颗粒模型(BPM)玉米包衣种子离散元仿真所需的精确接触参数,基于堆积试验对玉米包衣种子的仿真参数进行标定。对郑单958玉米包衣种子分类筛选后,通过激光扫描仪对轮廓较好的种子进行扫描,得到点云数据,并通过CATIA软件对点云数据进行处理,最终得到玉米种子仿真模型。设计Plackett-Burman试验,通过Isight软件的近似模型与DOE联合模块对试验结果进行分析,筛选出对堆积角影响显著的参数:玉米种子-玉米种子静摩擦系数、法向刚度与切向刚度。基于Isight软件RSM优化模块,根据Box-Behnken试验结果建立堆积角与显著性参数的二阶回归模型,得到参数的最佳组合:玉米种子-玉米种子静摩擦系数0.269、法向刚度2.54×108 N·m-3、切向刚度5.93×107 N·m-3。将标定参数仿真所得堆积角与真实试验值进行对比,二者相对误差为0.98%。上述结果表明,响应面分析可用于标定玉米包衣种子的离散元仿真参数,为玉米气力式排种器的结构设计与参数优化提供参考。

关键词: 玉米种子, 堆积试验, 离散元, 逆向工程, 参数标定

Abstract:

In order to obtain the accurate contact parameters required for the discrete element simulation of corn coated seeds based on the bonded particle model (BPM), this study calibrated the simulation parameters of the corn coated seed based on the accumulation test. After sorting and screening corn coated seeds of Zhengdan 958, the point cloud data of seeds with better contours were obtained through a laser scanner, and the corn seed simulation model was obtained through processing the point cloud data by CATIA software. Then the Plackett-Burman test was designed, and the variance of the test results was analyzed through the approximate model of the Isight software and the DOE joint module to screen out the parameters that had significant effects on the heap angle: the static friction coefficient of corn seeds, the normal stiffness, Tangential stiffness. Based on the RSM optimization module of the Isight software, the second-order regression model of the accumulation angle and the significance parameter was established and optimized according to the Box-Behnken test results. Taking the actual accumulation angle of corn coated seeds as the goal, the best combination of parameters was obtained with the static friction coefficient between corn seeds 0.269, the normal stiffness 2.54×108 N·m-3, and the tangential stiffness 5.93×107 N·m-3. The accumulation angle obtained from the simulation with the calibration parameters was compared with the real test value. The error value was 0.98%, indicating that the simulation results were not significantly different from the real test values. Above results showed that the application of response surface analysis to calibrate the dispersion feasibility of meta-simulation parameters, which provided references for structure designatian and parameter optimization of air-poewred seed planting device.

Key words: corn seed, stacking test, discrete element method, reverse engineering, calibration of parameters

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