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Modeling Soil Forces on a Rotating Tine MechanismArtificial Soil

机译:旋转齿型造型土壤造型土壤力

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Understanding soil-tool interaction can enable better maneuvering of weeding tools to achieve higher weeding efficacy. The interaction between vertical tine of a rotating tine mechanism and soil was investigated using a mathematical model that estimated forces on a tine of a rotating tine mechanism operating at different linear and rotational velocities. The kinematics associated with linear and rotational velocities of a rotating tine mechanism were modelled, and the magnitude of shearing and inertial forces were estimated. A soil bin experiment was conducted using artificial soil with one tine to estimate the shear and inertial force coefficient values. Experimental conditions were the same for both the sets of tests. Experimental factors were longitudinal velocity at three levels (0.09 m/s, 0.29 m/s and 0:5 m/s) and speed ratio, the ratio of longitudinal velocity to peripheral velocity of the tines, at three levels (I, 1.5 and 2). Horizontal draft force and torque on the tine mechanism were measured. The nonlinear least squares method was used to estimate model parameters from experimental data, resulting in the shear force coefficient ranging from 2.96 to 37.5 N and the inertial force coefficient ranging from J 6.6 to 528 N-s2-m'2. These variations in shear and inertial forces on the tine were due to differences soil failure patterns across the treatments.
机译:了解土工具交互可以更好地操纵除草工具,以实现更高的杂草疗效。使用数学模型研究旋转柱机构和土壤的垂直尖柱之间的相互作用,该数学模型估计在不同线性和旋转速度的旋转齿机构的螺柱机构上的力。建模了与旋转齿机构的线性和旋转速度相关的运动学,估计剪切和惯性力的大小。使用人工土壤进行土壤箱实验,用一尖来估计剪切和惯性力系数值。两种测试都是相同的实验条件。实验因素是三个水平的纵向速度(0.09 m / s,0.29 m / s和0:5 m / s)和速度比,纵向速度与叉速度的比率,三个水平(i,1.5和2)。测量了罐式机制上的水平牵伸力和扭矩。非线性最小二乘法用于从实验数据中估计模型参数,导致剪切力系数范围为2.96至37.5 n以及从J 6.6至528 n-S2-M'2的惯性力系数。这些剪切和叉子上的惯性力的变化是由于整个处理的差异差异。

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