研磨和混合旋转脉动复合体的主体和冲击元件的标准尺寸的选择建议

O. Shcherbinina, I. Scherbinin, V. Uvarov, E. Popov
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引用次数: 0

摘要

本文分析并给出了在考虑功率消耗的情况下,研混旋转脉动复合装置的主体尺寸和影响因素的优化选择的主要建议。这些建议旨在解决与确定住房大小与其主要技术参数的依赖关系有关的设计问题,并有可能在这些综合体的设计中使用数据。考虑到复合体的直径和宽度的比值、工作元件的尺寸、它们的体面积、槽数(基于以下输入值)、生产率、功耗和表征复合体效率的参数——转子和定子通道中的交变压力,计算了复合体的一些基本标准尺寸。在工作中,确定了紊流状态下的功率判据。对于一些基本尺寸的复合体,获得了复合体的总功率成本与定子和转子元件转速的图形依赖关系。综合住宅的设计考虑了公认的标准尺寸。综合得到的各间隙的总功率成本,确定转子的最大半径。考虑到复合管筒壁厚的结构强度条件,对多种标准尺寸的复合管定子和转子的直径进行了计算。根据这些计算,我们选择了转子和定子上的槽数,槽的宽度和高度
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RECOMMENDATIONS FOR THE SELECTION OF STANDARD SIZES OF THE BODY AND IMPACT ELEMENTS OF THE GRINDING AND MIXING ROTARY PULSATION COMPLEX
In this article, the main recommendations aimed at the optimal choice of body sizes and impact elements of the grinding and mixing rotary pulsation complex, taking into account the power consumption, were analyzed and given. These recommendations were aimed at solving design problems related to determining the dependencies of the size of the housing with its main technological parameters, with the possibility of using data in the design of these complexes. Calculations of a number of basic standard sizes of the complex have been made taking into account the ratios of the diameter and width of the complex, the dimensions of the working elements, their body area, the number of slots based on the following input values, productivity, power consumption and a parameter characterizing the efficiency of the complex – alternating pressure in the channels of the rotor and stator. In the work, the power criteria calculated for the turbulent regime were determined. Graphical dependences of the total power costs of the complex on the rotational speed of the stator and rotor elements for a number of basic sizes of the complex are obtained. The housing of the complex was designed taking into account the accepted standard sizes. Taking into account the obtained values of the total power costs for each gap of the complex, the maximum radius of the rotor was determined. Taking into account the conditions of structural strength of the cylinder wall thickness of the complex, calculations were made for the diameters of the stator and rotor for a number of standard sizes of the complex. Based on these calculations, we selected the number of slots on the rotor and stator, their width and height
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