The theory of oscillating movement in the soil of a toothed disc colter of a direct seeding grain seeder

Adamchuk V. V., Bulgakov V. M., Holovach I. V., Ihnatiev Ye. І.
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Abstract

Purpose. Establishing theoretical regularities of oscillatory movements of the disc colter assembly of a direct seeding planter to justify its rational modes, which ensures high-quality sowing of seeds in the soil. Methods. During the research, methods of the theory of agricultural machines and modeling of technological processes performed by them, methods of higher mathematics, theoretical mechanics, as well as numerical calculations using a personal computer were used. Results. Compiled differential equations of translational and angular oscillations of the colter unit of the direct seeding planter, which arise under the action of reactions from the soil surface during the movement of the seeding unit along the unevenness of the field surface. The analytical solution of the specified differential equations made it possible to obtain expressions for calculating the frequencies and amplitudes of the studied oscillations depending on the structural and kinematic parameters of the colter unit and the parameters of the soil surface irregularities. On the basis of the obtained analytical expressions, graphical dependences of the amplitude of oscillations of the colter unit of the direct seeding planter on the speed of its translational movement with different stiffness of the springs of the double-spring suspension were constructed. Conclusions 1. A rational combination of the design parameters of the seeding unit, the speed of its translational movement, and the parameters of the unevenness of the soil surface, which achieve the necessary quality of seed sowing, is ensured by their determination using the obtained new analytical dependencies. 2. The obtained expressions for determining the amplitudes and frequencies of vertical oscillations of the colter assembly make it possible to minimize the magnitude of these oscillations and their impact on the quality of seed sowing. 3. Resonance values of the amplitude of oscillations are obtained when the frequency of disturbances of the colter assembly coincides with the natural frequency at speeds of translational movement of the seeder from 0.6 m s–1 to 1.0 m s–1. In the case of an increase in the speed of movement from 1.2 m s–1 to 4 m s–1 with the stiffness of the springs = 16815–67270 N∙m–1, = 17150–68600 N∙m–1, the indicators of the amplitude of vertical oscillations stabilize and acquire values, which are within 0.01–0.0004 m, respectively. Keywords: seeder, colter unit, toothed discs, soil surface irregularities, oscillations, differential equations, amplitude, frequency.
直播谷物播种机齿盘式播种机在土壤中的振荡运动原理
目的。建立了直接播种机圆盘式播种机总成振荡运动的理论规律,论证了圆盘式播种机的合理模式,保证了种子在土壤中的高质量播种。在研究过程中,运用了农业机械理论及其工艺过程建模方法、高等数学方法、理论力学方法以及个人计算机数值计算方法。编制了直播播种机播种机播种机在沿不平整地面的运动过程中,在土壤表面反作用力作用下产生的播种机播种机的平动和角振荡的微分方程。微分方程的解析解使计算所研究的振动的频率和振幅的表达式成为可能,这取决于冷却器的结构和运动参数以及土壤表面不规则性的参数。在得到解析表达式的基础上,构造了双弹簧悬吊不同刚度时,直播播种机插拔装置的振荡幅值与其平移运动速度的图形关系。利用所获得的新的解析依赖关系确定播种机的设计参数、其平移运动速度和土壤表面不均匀度参数的合理组合,保证了播种机的播种质量。所获得的用于确定收集器组件垂直振荡幅度和频率的表达式使这些振荡的幅度及其对播种质量的影响最小化成为可能。当播种机平移运动速度从0.6 m s-1到1.0 m s-1时,播种机组件的扰动频率与固有频率一致时,得到振荡幅度的共振值。当运动速度从1.2 m s-1增加到4 m s-1,弹簧刚度= 16815-67270 N∙m - 1, = 17150-68600 N∙m - 1时,垂向振荡幅度指标趋于稳定,分别在0.01-0.0004 m范围内。关键词:播种机,收割机,齿盘,土壤表面不规则,振荡,微分方程,振幅,频率。
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