Li Yifei, Zhou Wenqi, Yi Shujuan, Chen Tao, Zhang Dongming, Wang Song
College of Engineering, Northeast Agricultural University, Harbin, Heilongjiang, China.
College of Engineering, Heilongjiang Bayi Agricultural University, Daqing, Heilongjiang, China.
PLoS One. 2025 May 28;20(5):e0320001. doi: 10.1371/journal.pone.0320001. eCollection 2025.
The millet collision coefficient of restitution (COR) is one of the important elementary physical parameters for researching the precision hole seeding system. In this study, to explore the factors affecting the bounce issue observed when seeds exit the seed-metering and seed-guiding devices, the dynamic equations for the millet collision process were derived employing Newtonian kinematics, and a COR measurement test bench was built. The effects of collision material type, speed and variety respectively on the COR were investigated by single-factor experiments and orthogonal experiments. Single-factor tests revealed that COR values decreased in the sequence of Acrylic plate, ABS, Rubber, Black soil,Meadow soil, and Sandy loam soil, with Tuogu exhibiting higher COR than Zhang Zagu 13 and Shuangyu, the latter having the lowest value. During two collision phases, the COR progressively decreased as seeding speed increased. Orthogonal tests identified the significant influences of each factor. A combination of bench and simulation tests validated the test results, showing no significant differences and confirming the method's viability for determining COR. These findings offer a reference for optimizing the design of relevant components within the millet metering system.
谷子碰撞恢复系数(COR)是研究精密穴播系统的重要基础物理参数之一。本研究为探究种子从排种和导种装置排出时出现弹跳问题的影响因素,运用牛顿运动学推导了谷子碰撞过程的动力学方程,并搭建了碰撞恢复系数测量试验台。通过单因素试验和正交试验分别研究了碰撞材料类型、速度和品种对碰撞恢复系数的影响。单因素试验表明,碰撞恢复系数值按亚克力板、ABS、橡胶、黑土、草甸土、砂壤土的顺序降低,坨谷的碰撞恢复系数高于张杂谷13和双玉,双玉的碰撞恢复系数最低。在两个碰撞阶段,碰撞恢复系数均随播种速度的增加而逐渐降低。正交试验确定了各因素的显著影响。试验台与模拟试验相结合验证了试验结果,二者无显著差异,证实了该方法用于测定碰撞恢复系数的可行性。这些研究结果为优化谷子计量系统中相关部件的设计提供了参考。