Required power calculation to small rotor tip drive

V. A. Nikolayev
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Abstract

Introduction. The problem of accelerating and reducing the cost of road construction without reducing their quality can be solved by creating a complex of continuous units. The units, following each other, carry out the whole range of works aimed at the construction of roads. One of the elements of the continuous unit that forms the cuvette is a direct-flow rotary ripper. It was revealed that for excavation near the axis of rotation of the rotor of a direct-flow rotary ripper, a small rotor with a higher angular velocity coaxially with a large rotor should be installed. The small rotor contains of a small rotor tip with spiral knives, two teeth and two knives. Previously, the structural layout of the small rotor was determined, the height of the spiral of the spiral knife was calculated. By analyzing the interaction of the elements of the working bodies of the direct-flow rotary ripper with the soil, it is necessary to identify the power on the drive of the tip of the small rotor. The method of research . The calculation methods of power for the introduction of a cone into the ground, power for friction of the cone on the ground, power for the introduction of the end of the spiral knife into the ground, power for the introduction of a spiral knife into the ground in the radial direction, power to overcome the friction of the spiral knife on the ground, power to overcome the force of resistance of the soil to the rotation of the spiral knife have been developed. Results. On the basis of the developed methods, the parameters were calculated. From the spatial models of the forces of interaction with the soil of the spiral knife, their resultant, normal forces, the forces of resistance of the soil to the rotation of the spiral knife are revealed, the friction forces of the soil on the rear surfaces of the first and second turns of the spiral knife are calculated. The total power for the drive of the tip of the small rotor and the volumetric energy for the introduction of a cone with a spiral knife into the ground are calculated. Conclusion . The total power for the drive of the tip of the small rotor includes power for the introduction of the cone into the ground, power for friction of the cone on the ground, power for the introduction of the end of the spiral knife into the ground; power for the introduction of a spiral knife into the ground in the radial direction, power to overcome the friction of the spiral knife on the ground, power to overcome the force of resistance of the soil to the rotation of the spiral knife. The required power to drive the tip of the small rotor is 1127 W. The volumetric energy for the introduction of a cone with a spiral knife into the ground is 16.9 kJ / cubic meter.
所需功率计算,以小转子尖端驱动
介绍。在不降低质量的情况下加快和降低道路建设成本的问题可以通过创建连续单元的复合体来解决。各单位依次进行道路建设的全部工作。构成试管的连续装置的要素之一是一个直接流动的旋转撕裂器。结果表明,在直流式旋开膛机转子旋转轴附近开挖时,应在大转子同轴位置安装角速度较高的小转子。小转子包含一个小转子尖与螺旋刀,两个齿和两个刀。在此之前,确定了小转子的结构布局,计算了螺旋刀的螺旋高度。通过分析直流式旋转撕裂机工作体各元件与土的相互作用,确定小转子尖端驱动的功率是必要的。研究的方法。功率的计算方法引入锥进地面,地面的摩擦锥,权力的介绍螺旋刀在地上,权力引入螺旋刀在地上在径向方向上,螺旋刀的力量克服摩擦在地上,土壤的力量克服阻力的力量旋转的螺旋刀已经开发出来。结果。在此基础上进行了参数计算。从螺旋刀与土壤相互作用力的空间模型出发,揭示了它们的合力、法向力、土壤对螺旋刀旋转的阻力,计算了螺旋刀第一次转动和第二次转动时土壤对螺旋刀后表面的摩擦力。计算了驱动小转子尖端的总功率和带螺旋刀的锥体进入地面的体积能量。结论。所述驱动小转子尖端的总功率包括将锥体引入地面的功率、锥体与地面摩擦的功率、将螺旋刀端引入地面的功率;动力用于将螺旋刀沿径向引入地面,动力用于克服螺旋刀在地面上的摩擦,动力用于克服土壤对螺旋刀旋转的阻力。驱动小转子尖端所需功率为1127 W。带螺旋刀的锥体进入地面的体积能量为16.9千焦/立方米。
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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