Structural layout and operating parameters for a large rotor of a direct-flow bucket wheel type aggregator

V. Nikolayev
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引用次数: 3

Abstract

Introduction. The problem of accelerating and cheapening the construction of roads without reducing their quality can be solved by creating a complex of continuous units. Units, following each other, carry out the whole complex of works aimed at the construction of roads. The use of satellite navigation opens up broad prospects for full automation of units. Therefore, the overall goal is to create a complex of units that carry out the continuous construction of roads, mainly in automatic mode. One of the devices that make up the continuous units is a direct-flow bucket wheel type aggregator. The use of direct-flow bucket wheel type aggregators for soil development is constrained by insufficient theoretical substantiation of their parameters. Before analyzing the interaction of the elements of the working bodies of a direct-flow bucket wheel type aggregator with the soil, it is necessary to clarify the structural layout for the rotor of a direct-flow bucket wheel type aggregator.The method of research. Some design parameters of a direct-flow bucket wheel type aggregator are derived from logical reasoning. Other parameters of the direct-flow bucket wheel type aggregator are obtained by constructing schemes for the impact of the knife on the ground in the plane and spatial modelling. Initially, the rotor of a direct-flow bucket wheel type aggregator with a diameter of one meter was adopted for calculation.Results. The circular and end knives are assigned the numbers № 1, № 2, № 3, etc. as it approaches from the periphery of the rotor to the axis of its rotation. On the basis of the adopted methodology, the design of the knife attachment, the front and back corner of the circular and end knives have been clarified. An extremely small distance from the axis of rotation of the rotor to the nearest point of the knife is established. Hence the conclusion is made that in addition to a large rotor, in conjunction with it, it is necessary to install a small rotor. The circumferential velocity of the blade of no. 1 circumferential knife and the angular velocity of the large rotor are determined. It is customary to arrange the knives in three rows, that is, the rows of knives around the circumference are deployed at an angle of 120° relative to each other. The feed on the end knife was revealed, that is, the thickness of the layer cut by the end knife.Conclusion. On the basis of the adopted methodology, the geometric and mode parameters of a large rotor of a direct-flow bucket wheel type aggregator have been determined. An extremely small radius of location of the circular and end knives of the large rotor is established. To excavate the soil near the axis of rotation for the rotor of the direct-flow bucket wheel type aggregator, a small rotor with a higher angular velocity shall be coaxially installed. The direction of rotation of the small rotor shall be opposite to the direction of rotation of the large rotor in order to partially compensate for the reactive moment produced by the large rotor.
直流式斗轮式集料机大转子结构布置及运行参数
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一个连续单元的综合体来解决。各单位相互配合,实施旨在修建道路的整个综合工程。卫星导航的使用为机组的全自动化开辟了广阔的前景。因此,总体目标是创建一个以自动模式为主的连续道路施工单元综合体。构成连续单元的设备之一是直流斗轮式聚合器。直接流斗轮式聚合器用于土壤开发受到其参数理论证据不足的限制。在分析直流斗轮式聚合器工作体元件与土壤的相互作用之前,有必要澄清直流斗轮型聚合器转子的结构布局。研究方法。从逻辑推理的角度推导出了直流斗轮式聚合器的一些设计参数。通过在平面和空间建模中构建刀具对地面影响的方案,获得了直流斗轮式聚合器的其他参数。最初,采用直径为一米的直流斗轮式聚合器的转子进行计算。后果圆形刀具和末端刀具分配有编号№ 1.№ 2.№ 3等。在所采用的方法的基础上,阐明了刀具附件、圆形刀具和端部刀具的前角和后角的设计。从转子的旋转轴线到刀具的最近点的距离非常小。因此得出的结论是,除了大转子外,还需要安装一个小转子。确定了1号环刀叶片的圆周速度和大转子的角速度。按照惯例,将刀具排列成三排,也就是说,围绕圆周的几排刀具以120°的角度相互展开。显示了端刀上的进给量,即端刀切割的层的厚度。结论在所采用的方法的基础上,确定了直流斗轮式聚合器大转子的几何参数和模态参数。建立了大转子的圆形刀具和端部刀具的极小位置半径。为了挖掘直流斗轮式聚合器转子旋转轴附近的土壤,应同轴安装一个角速度较高的小转子。小转子的旋转方向应与大转子的旋转相反,以部分补偿大转子产生的反作用力矩。
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