ERGONOMIC ASPECTS OF MODELING THE PROCESS OF MATERIAL SEPARATION ON STATIONARY SCREW SURFACES

S. F. Pylypaka, A. V. Nesvidomin
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Abstract

The movement of material particles along gravitational surfaces is used in special devices for their separation by physical and mechanical properties. For this, stationary helical surfaces of constant pitch are used. In the mining industry, screw separators with different axial cross-sections (chute) are used for the enrichment of ores. Grain separation is carried out on linear helical surfaces, which are compartments of an oblique helicoid. Despite the fact that such separators are passive working bodies and do not require energy to drive them, they also have disadvantages. This is relatively low performance and low resolution. Now the calculation of the relationship between the kinematic parameters of the movement, the coefficient of friction and the design parameters of the separator, as well as the case when its surface is an expanding helicoid, has been carried out. The purpose of the research is the analysis of a helical surface with various design parameters for the purpose of improving its resolution using mathematical and geometric modeling of the process without the production of surface models. Solving the problem of building the trajectory of the movement of a material particle along the surface under the action of its own weight is preceded by the problem of finding the trajectory on an inclined plane. It is described by a system of equations, which is non-linear and numerical methods must be used for its integration. Modern software products make it possible not only to find the trajectory of a particle's movement, but also to show it on the surface and even make an animation, which essentially replaces high-speed photography. This approach makes it possible to study the kinematic parameters of movement on various helical surfaces without full-scale samples of these surfaces, which significantly reduces the cost of searching for the necessary surfaces. The motion of a particle along a helical conoid and a spreading helicoid is considered. It has been established that the nature of the particle movement will also be different for different surfaces. When moving along the surface of a helical conoid, a particle first accelerates in the presence of friction, and then stops at a considerable distance from its axis. To prevent this, it is necessary to take a limited compartment of the conoid both in height and along its periphery. When a particle moves along the surface of an expanding helicoid, its speed becomes constant over time, and the trajectory after that will be a helical line. In further research, it is necessary to use the developed approaches to identify the possibilities of material separation not only after the stabilization of the movement, but also during the transition process, since its visualization has become possible. This will make it possible to select a surface compartment of the optimal size, which will ensure the required separation performance due to the dispersion of particles with different friction coefficients on its surface.
人体工程学方面的建模在固定螺丝表面上的材料分离过程
物质粒子沿着重力表面的运动被用于特殊的装置中,通过物理和机械特性来分离它们。为此,使用固定螺距的固定螺旋面。在采矿工业中,采用不同轴向截面(溜槽)的螺旋分离器对矿石进行富集。颗粒分离是在线性螺旋表面上进行的,它是斜螺旋面的隔室。尽管这种分离器是被动工作体,不需要能量来驱动,但它们也有缺点。这是相对较低的性能和低分辨率。计算了分离器的运动参数、摩擦系数与设计参数之间的关系,并对其表面为膨胀螺旋面的情况进行了计算。本研究的目的是分析具有不同设计参数的螺旋表面,目的是在不产生表面模型的情况下,使用过程的数学和几何建模来提高其分辨率。在求解质点在自重作用下沿表面运动轨迹的问题之前,首先要求解质点在斜面上的运动轨迹。它是用一个非线性方程组来描述的,必须用数值方法对其进行积分。现代软件产品不仅可以找到粒子的运动轨迹,还可以在表面上显示它,甚至制作动画,这基本上取代了高速摄影。这种方法可以在不需要对各种螺旋表面进行全尺寸采样的情况下,研究各种螺旋表面上的运动运动学参数,从而大大降低了寻找所需表面的成本。考虑了粒子沿螺旋锥面和扩展螺旋面的运动。已经确定,对于不同的表面,粒子运动的性质也会不同。当粒子沿着螺旋锥面表面运动时,由于摩擦力的存在,粒子首先加速,然后在离轴相当远的地方停下来。为了防止这种情况,有必要在高度和沿其外围取一个有限的腔室。当一个粒子沿着膨胀的螺旋体表面运动时,它的速度随着时间的推移变得恒定,之后的轨迹将是一条螺旋线。在进一步的研究中,有必要使用开发的方法来识别材料分离的可能性,不仅在运动稳定之后,而且在过渡过程中,因为它的可视化已经成为可能。这将使选择最佳尺寸的表面隔室成为可能,这将确保所需的分离性能,因为具有不同摩擦系数的颗粒分散在其表面。
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