Mechanical precision corn seed-metering planter has a compact structure, missed and repeated seeding advantages during high-speed operation. In this regard, the current research study focuses on the development of a corn seed planter that features an inclined seed-metering device. The spatial layout of the seed-metering device is optimized to change the seed-filling mode to meet the needs of high-speed operation. Firstly, the mechanical characteristics and seeds in the metering device chamber were analyzed, and then the seed-filling stress model was established. Secondly, a mechanical model for corn seed particles was developed for virtual simulation tests and numerical analysis using the discrete element method (DEM) and EDEM software. Moreover, a quadratic rotating orthogonal center combination test was implemented by setting the inclination angle of seed-metering device θ(A), machine ground speed v(B), and rotation speed of metering disc n(C) as the influence factors, with the missed seeding rate M and the seed-filling stress S as the evaluation indices. The results indicated that the most significant factors affecting the missed seeding rate, seed-filling stress, S, were the rotation speed of the metering disc (n)â>âmachine ground speed (v)â>âinclination angle of the metering disc (θ) and inclination angle of the metering device (θ)â>ârotation speed of the metering disc (n)â>âmachine ground speed (v), respectively. However, the field verification test shows that the optimized corn seed-metering planter achieved mean values of Mâ=â4.33, Q(qualified seeding rate)â=â92.83%, and R(repeated seeding rate)â=â2.84%, with average relative errors of 1.17% compared to the simulation tests and the accuracy and effectiveness of the DEM simulation model was verified. Therefore, the developed corn seed-metering device meets the industry standards and operation requirements for precise corn sowing, and technical support can be given for future studies of similar precision seeding equipment.
Design and simulation for seeding performance of high-speed inclined corn metering device based on discrete element method (DEM).
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作者:Jun Guo, Yue Yang, Memon Muhammad Sohail, Chuang Tan, Linyu Wang, Pei Tang
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2022 | 起止号: | 2022 Nov 12; 12(1):19415 |
| doi: | 10.1038/s41598-022-23993-1 | ||
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