Theoretical studies of oscillations of the cleaning working bodies spiral potato separator

V. Adamchuk, V. Bulgakov, I. Holovach, Z. Ruzhylo
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Abstract

Purpose. Increase of efficiency of potato tubers cleaning process from impurities of new construction of spiral separator taking into account and activation of vibrating process of its cleaning spiral springs. Methods. The research was carried out with the use of higher mathematics, theoretical mechanics, elasticity theory and methods of programming and numerical calculations with the help of PC. Results. For the developed construction of the spiral separator of potato heap, which consists of cantilever mounted cleaning spiral springs, the mathematical model of free ends of spiral oscillations under the influence of external load is developed. An equivalent bending scheme of the cantilever spiral under the action of uniformly distributed load, selected corresponding axes of coordinates and parameters characterizing the vibrational process of the spiral end are determined. For such an equivalent scheme, a differential equation of cleaning spiral oscillations in partial derivatives is made for the first time. After the corresponding transformations, the differential equation was numerically solved according to the program, by means of a PC. This made it possible to find the dependence of the change in the winding pitch of the cleaning spiral spring as a result of its deformation, in particular, the simultaneous longitudinal stretching and transverse deflection, on its length. Also new analytical dependences of the reduced moment of inertia of the section of the cantilever spring are received, on the basis of which graphic dependences of change of its value on length of a spiral spring at the set diameter, pitch of skills, angle of rise of a coil and angular speed of rotation have been received on the PC. Conclusions 1.The calculated mathematical model of vibrations of the working bodies of the spiral separator of potato heap is constructed, as a result the differential equation of transverse bending vibrations of its console cleaning spiral spring is made. 2.On the basis of the differential equation solution of transverse bending oscillations of the cleaning spiral spring the analytical expressions describing the law of vibrational process and deflection of the spiral spring at any moment of time for any point of its longitudinal axis are received. 3.Analytical dependencies are obtained to determine the variable pitch of a curved coil spring at any given time and for any inter-turn lumen during this oscillatory process. 4.At the angular velocity of the spiral spring, which is equal to ω = 30 rad∙s-1, the density of the material of which the spring is made, = 7700 kg∙m-3, modulus of elasticity Е = 2∙1011 Pa, the radius of the bar = 8.5 mm, uniformly distributed spiral spring load by potato heap intensity 1000 Н∙m-1 the total spring deflection along its length varies from 0 to 0.25 m. 5.The obtained analytical expressions of restriction on the maximum change of the cleaning spiral spring pitch at its fluctuations from the condition that potato tubers do not fall into the spring inter-turn space taking into account structural and kinematic parameters of the cleaning spiral spring, the material from which it is made, technological modes of operation and tubers' sizes. 6.As the numerical calculations on the PC show, a cleaning spiral spring with the above parameters and an initial winding pitch S = 48 mm at the considered transverse oscillations at the expense of deformation can change a step up to 54 mm that will provide not falling out of a potato tuber outside of a separator of a potato heap. Keywords: potatoes, digging, impurities, cantilever spiral spring, oscillations, differential equation, numerical calculations on PC.
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马铃薯螺旋分离器清洗工作体振动的理论研究
目的。考虑到新型螺旋分离机清洗螺旋弹簧振动过程的激活,提高了马铃薯块茎杂质清洗过程的效率。运用高等数学、理论力学、弹性理论和计算机编程、数值计算等方法进行了研究。针对马铃薯堆螺旋分离器悬臂安装式清洗螺旋弹簧结构的研制,建立了外载荷作用下螺旋振荡自由端数学模型。确定了均布荷载作用下悬臂螺旋的等效弯曲方案,选择了相应的坐标轴,并确定了表征螺旋端振动过程的参数。对于这种等效格式,首次建立了偏导数形式的清洗螺旋振荡微分方程。在进行相应的变换后,根据程序用PC机对微分方程进行数值求解。这使得有可能找到清洁螺旋弹簧的缠绕节距变化的依赖关系,作为其变形的结果,特别是同时纵向拉伸和横向挠曲,对其长度。在此基础上,在pc上得到了其值的变化与设定直径下螺旋弹簧的长度、技巧节距、线圈的上升角和旋转角速度的图形依赖关系。建立了马铃薯堆螺旋分离器工作体振动的计算数学模型,得到了其控制台清洗螺旋弹簧横向弯曲振动的微分方程。在清洗螺旋弹簧横向弯曲振动微分方程解的基础上,得到了描述螺旋弹簧纵轴上任意时刻任意点的振动过程和挠度规律的解析表达式。在振荡过程中,得到了曲线线圈弹簧在任何给定时间和任何转间管腔的变螺距的解析依赖关系。当螺旋弹簧的角速度为ω = 30 rad∙s-1,制成螺旋弹簧的材料密度为7700 kg∙m-3,弹性模量Е = 2∙1011 Pa,杆的半径为8.5 mm,马铃薯堆强度1000 Н∙m-1均匀分布螺旋弹簧荷载时,螺旋弹簧沿其长度的总挠度为0 ~ 0.25 m.5。考虑清洗螺旋弹簧的结构参数、运动参数、材料、工艺方式和块茎尺寸,得到了马铃薯块茎不落入弹簧匝间空间条件下清洗螺旋弹簧波动时节距最大变化的限制解析表达式。PC上的数值计算表明,在考虑的横向振荡条件下,具有上述参数的清洁螺旋弹簧,在以变形为代价的情况下,初始缠绕节距S = 48 mm,可以改变高达54 mm的步长,从而保证不会从马铃薯堆分离器外的马铃薯块茎中掉出来。关键词:马铃薯,挖掘,杂质,悬臂螺旋弹簧,振动,微分方程,PC数值计算。
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https://journal.imesg.gov.ua Substantiation of the structural-functional scheme and performance of a rotary treater of periodic action for layer-by-layer seed treatment Methods of experimental studies of the process of drying bird droppings in a drum dryer Theoretical study of uniform motion of the harrowing section for steam treatment To the mathematical model of the process of contact heating of seeds in vacuum
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