The results of research to clarify the process of cutting soil spherical disk working body

V. V.
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Abstract

Purpose. Clarify the size and direction of cutting the soil, taking into account the influence of the coordinates of the instantaneous center of the disk on the rotation of its diameter at the time of its location in a vertical position. Methods. Using the provisions of physics, theoretical mechanics and resistance of materials. Results. The influence of the coordinates of the location of the instantaneous center of the disk on the angle of cutting of the soil by the points of the blade of the disk and the vectors of their trajectory in the soil medium is established, which makes it possible to more accurately determine the value of the angle of cutting of the soil depending on the parameters and operating modes of the spherical disk working body, and its smallest possible value was used in as an evaluation criterion in the selection and justification of rational parameters and operating modes of disk harrows. It has been established that the cutting angle γcut increases with decreasing angle of inclination of the disk β and an increase in the angle of attack α'. Conclusions 1. The direction of movement of the points of the blade of the disk in the soil medium is clarified due to the rotation of the diameter of the disk at the moment of its vertical location under the influence of the coordinates of the instant center, this is confirmed by the profile of the formation of the bottom of the furrow with a notched disk of the working body. 2. A refined dependence is obtained for determining the angle of soil cutting by the points of the blade of a spherical disk working body, which combines all its parameters and the smallest possible value of the angle of soil cutting, and the expediency of its use in the selection and justification of rational parameters of the working bodies of the disk harrow. Keywords: soil, soil environment, the spherical disc working body, the points of the blade of the disk, the speed of movement of points of the blade of the disk, the cutting angle of the soil, the angle of attack, the angle of inclination of the disk to the vertical.
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研究结果阐明了切割土球盘工作体的过程
目的。澄清切割土壤的大小和方向,考虑到圆盘瞬时中心的坐标对其在垂直位置上的位置时直径旋转的影响。运用物理学、理论力学和材料阻力的规定。建立了圆盘瞬时中心位置坐标对圆盘叶片各点及其在土壤介质中的轨迹矢量对土壤切削角的影响,从而可以根据球形圆盘工作体的参数和工作方式,更准确地确定土壤切削角的值。并将其最小可能值作为盘耙合理参数和操作方式的选择和论证的评价标准。结果表明,切割角γ切割随圆盘倾角β的减小和攻角α′的增大而增大。圆盘叶片各点在土壤介质中的运动方向是由圆盘直径在其垂直位置的瞬间在瞬间中心坐标的影响下的旋转而明确的,这一点由工作体带缺口圆盘的沟槽底部形成的轮廓所证实。得到了利用圆盘工作体叶片各点确定割土角的精细关系式,该关系式结合了圆盘工作体的所有参数和割土角的最小可能值,便于圆盘耙工作体合理参数的选择和论证。关键词:土壤,土壤环境,球形圆盘工作体,圆盘叶片的各点,圆盘叶片各点的运动速度,土壤的切割角,攻角,圆盘对垂直的倾斜角。
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