Substantiation of flexible screw conveyor metal consumption under productivity maintenance conditions

T. Dovbush, A. Dovbush, Nadiia Khomyk, H. Tson
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引用次数: 1

Abstract

Transportation, as well as loading and unloading, of bulk materials by flexible screw conveyors has wide practical application and its share is approximately 40–45%. The flexible screw conveyors are also widely used as they can change the trajectory and height of technological raw material transportation. The above-mentioned mechanisms consist of separate rigid sections which are pivotally connected between each other. Though, high metal consumption is one of their disadvantages. Taking into account that the load on section is increasing from the unloading area to the working body, it has enabled us to reduce their metal consumption.Some theoretical substantiation of productivity determination and energy values of flexible screw conveyors depending on the type of technological raw material and the height of transportation has been given in the article under discussion. The obtained characteristics have made possible to substantiate the force factors acting on separate sections. The rigid sections where the rotary moment transmission is taking place due to the flat plates action have been used in the flexible screw conveyor. Therefore, some recommendations on the mechanism metal consumption reduction without its productivity decrease due to the plates size optimization have been made in the article under discussion.
柔性螺旋输送机在生产率维持条件下金属消耗的实证研究
柔性螺旋输送机的散装物料运输和装卸具有广泛的实际应用,其份额约为40-45%。柔性螺旋输送机由于可以改变工艺原料输送的轨迹和高度而得到广泛的应用。上述机构由独立的刚性部分组成,这些刚性部分彼此之间枢转连接。然而,高金属消耗是它们的缺点之一。考虑到从卸料区到工作体截面上的载荷在增加,这使我们能够减少它们的金属消耗。本文根据工艺原料的种类和输送的高度,对柔性螺旋输送机的生产率和能量值的确定给出了一定的理论依据。所获得的特性可以证实作用在不同截面上的力因子。由于平板作用,旋转力矩传递发生的刚性部分已用于柔性螺旋输送机。因此,本文就如何在不因板材尺寸优化而导致生产效率下降的情况下降低机械金属消耗提出了一些建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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