A comprehensive approach to the analysis of the static and dynamic strength of the rotor of the smoke cleaner

V. Martynenko
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Abstract

The work describes the process of assessing the static and dynamic strength of the rotor of an axial smoke exhauster with twin blades which allow significantly increasing its efficiency. To build a calculation model for the strength analysis, the geometric model was simplified by removing bolted connections, slicing small surfaces, as well as modeling welds in the form of roundings and chamfers. Such simplifications made it possible to build a high-quality finite-element mesh with the sufficient accuracy for performing engineering calculations. Calculation models include a finite-element model of one sector of cyclic symmetry of the impeller of the smoke exhauster, which is used to more accurately determine its stress-strain state and local maximum stresses in the places of their concentration in the root sections of the blades and in the places where they are connected by jumpers due to the action of centrifugal forces, aerodynamic loads on the blade and thermal loads due to wheel heating, as well as a finite-element model of the entire rotor with a less detailed meshing of the impeller, which in this case plays the role of a mass-inertia element, and a more detailed meshing of the shaft to analyze its static strength and reactions in bearing assemblies from the action of gravity and determine natural frequencies and mode shapes of rotor vibrations and the possibility of resonances with multiples of the frequency of excitating loads. The analysis of the static strength of the impeller and the rotor shaft of the smoke exhauster was performed by comparing the von Mises equivalent stresses with the allowable stresses, and the analysis of the dynamic strength of the smoke exhauster rotor was performed by determining the level of detuning of the natural frequencies of vibrations from multiples of the frequency of the excitating load, which in this case was assumed to be the centrifugal forces acting on the unbalance of the rotating rotor. A detailed analysis of the results of calculations made it possible to establish that the elements of the smoke exhauster rotor meet the requirements of static strength under the action of all possible types of loads, and the natural frequencies of the rotor oscillations have a sufficient level of detuning from multiples of the frequency of the excitating load. In this way, a conclusion was made about the static and dynamic strength of the rotor of the smoke exhauster, which affect its resource and durability of operation in the nominal mode.
烟气净化器转子静、动强度的综合分析
本文描述了对双叶片轴向排烟器转子的静、动强度进行评估的过程,该方法可以显著提高排烟器的效率。为了建立用于强度分析的计算模型,通过去除螺栓连接、切割小表面以及以圆角和倒角的形式对焊缝进行建模来简化几何模型。这样的简化使得有可能建立一个高质量的有限元网格,具有足够的精度进行工程计算。计算模型包括排烟器叶轮单扇形循环对称的有限元模型,该模型用于更准确地确定叶片根部部分的应力-应变状态和由于离心力、叶片气动载荷和车轮加热引起的热载荷作用下的跳线连接处的应力-应变集中位置和局部最大应力。以及整个转子的有限元模型,叶轮的网格划分不太详细,在这种情况下,叶轮起着质量惯性元件的作用,而轴的网格划分更详细,以分析其静强度和轴承组件在重力作用下的反应,确定转子振动的固有频率和模态振型,以及与激励载荷频率的倍数共振的可能性。通过比较von Mises等效应力和许用应力,对排烟器叶轮和转子轴的静强度进行了分析;通过确定受激励载荷频率倍数的振动固有频率的失谐程度,对排烟器转子的动强度进行了分析。在这种情况下,它被认为是作用在旋转转子不平衡上的离心力。通过对计算结果的详细分析,可以确定排烟器转子的元件在所有可能类型的载荷作用下满足静强度要求,转子振荡的固有频率与激励载荷的频率倍数有足够的失谐。由此得出了排烟器转子的静、动强度对排烟器在标称模式下运行的资源性和耐久性的影响。
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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