TO ASSESS THE STRUCTURAL AND TECHNOLOGICAL CHANGES IN THE PARAMETERS OF THE PRECISION ROTARY SYSTEM ACCORDING TO THE SPECIFIED FUNCTIONS OF SENSITIVITY AND DEVIATION OF THE SPECTRUM OF OWN FREQUENCIES

V. Lus’
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Abstract

The question of precision rotary systems with artificial elements of pretension, which significantly affect the rigidity and displacement of resonance frequencies and, as a result, lead to the appearance of very conditioned sensitivity matrices, has been investigated. The mathematical model of the system is identified. With spatial oscillations of the system, two of the most typical and important are defined: fluctuations in vibration force along the rotor axis and in a direction perpendicular to it. Designed diagnostic operator as a complete sensitivity matrix. The proposed algorithm for the diagnosis of parameters of multidimensional mechanical fluctuation systems using computer technology. In any prefabricated design, the parameters of the system during assembly may differ from the design values and change during operation. In order to predict the consequences of this, it is necessary to know the reaction of the system to these changes. At the same time, in many cases, it is almost impossible to assess experimentally the effect of parameters on the behavior of the system. Therefore, there is a need to study and analyze the effect of changes in parameters on the properties of the system analytically, that is, according to the known mathematical model of the system. Analytical study of the dynamics of such systems is a very difficult task, but determining the sensitivity functions for this type of compound experimentally is another much more complex technological task, so their characteristics should be obtained by different methods of identification. The main purpose of this work is to determine: the identified mathematical model of the system, to offer a methodology and algorithm for the diagnosis of parameters of multidimensional mechanical fluctuation systems using computer technology. Of course, the presented algorithm is most suitable for the diagnosis of parameters of multidimensional fluctuation systems, but of course, in this case, widespread use of modern computer technology is necessary. If in the system it is necessary to determine the degree of influence of various physical parameters on the vector of the state, then it is necessary to consider the matrix of relative sensitivity. Sensitivity matrices allow determining sensitive and invariant parameters to the state vector. This information answers the question of which parameters determine the vibrational characteristics of the object to the greatest extent. In addition, the determination of the sensitivity matrix can significantly simplify the dynamic model of the system, leaving only those parameters that most determine the vibrational state of the system. Keywords: construction, press-threaded connection, dynamic parameters, structural model, deformation, deviation, frequency and amplitude of oscillations, sensitivity of dynamic parameters, algorithm, sensitivity matrix, methodology.
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根据自身频率频谱的灵敏度和偏差的规定函数,评估精密旋转系统参数的结构和技术变化
对具有人工预紧元件的精密旋转系统的问题进行了研究,该系统对共振频率的刚度和位移有显著影响,从而导致非常条件敏感矩阵的出现。建立了系统的数学模型。对于系统的空间振荡,定义了两种最典型和最重要的振荡:沿转子轴和垂直于转子轴方向的激振力波动。将诊断算子设计为一个完整的灵敏度矩阵。提出了一种基于计算机技术的多维机械波动系统参数诊断算法。在任何预制设计中,系统在装配过程中的参数可能与设计值不同,并在运行过程中发生变化。为了预测这种变化的后果,有必要知道系统对这些变化的反应。同时,在许多情况下,几乎不可能通过实验来评估参数对系统行为的影响。因此,有必要解析地研究和分析参数变化对系统性质的影响,即根据已知的系统数学模型。对这类系统的动力学进行分析研究是一项非常困难的任务,而通过实验确定这类化合物的灵敏度函数则是另一项复杂得多的技术任务,因此它们的特性需要通过不同的识别方法来获得。本工作的主要目的是确定系统的识别数学模型,为利用计算机技术诊断多维机械波动系统的参数提供一种方法和算法。当然,本文提出的算法最适合于多维波动系统的参数诊断,当然,在这种情况下,现代计算机技术的广泛应用是必要的。如果在系统中需要确定各种物理参数对状态矢量的影响程度,则需要考虑相对灵敏度矩阵。灵敏度矩阵允许确定状态向量的敏感和不变参数。这些信息回答了哪些参数最大程度地决定物体的振动特性的问题。此外,灵敏度矩阵的确定可以大大简化系统的动力学模型,只留下那些最能决定系统振动状态的参数。关键词:结构,压螺纹连接,动力参数,结构模型,变形,偏差,振荡频率和振幅,动力参数的灵敏度,算法,灵敏度矩阵,方法论。
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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