机床与其基础之间的动态互动建模

IF 3.5 2区 工程技术 Q2 ENGINEERING, MANUFACTURING
Paweł Dunaj , Andreas Archenti
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引用次数: 0

摘要

地面和底土的特性以及它们与所安装机床之间的相互作用直接影响着机床的性能。在机床的运行环境中安装机床是一项独特的挑战,是机械工程和土木工程学科之间的桥梁。这种跨学科的问题往往在各自独立的学科中被忽视。然而,要有效地应对这一挑战,需要对机械和土木工程原理有全面的了解。为解决这一问题,本研究提出了一种方法,通过考虑安装机床的地基和底土,改进机床动态特性建模。该方法基于有限元建模。使用了系统组件的线性模型以及它们之间的连接。这些模型辅以复刚度表示的阻尼,可以确定固有频率、模态振型和频率响应函数(在此基础上获得传递率)。在经过实验验证的立式和卧式车床模型的基础上,进行了灵敏度分析,旨在估算系统参数的变化对地板型和块状地基振动传递性的影响。因此,可以确定对振动传递性影响最大的机床-支撑-地基-底土系统参数。在对所讨论的案例进行分析后,我们发现振动的传递性主要受两个关键因素的影响。首先,机床结构环的特性起着重要作用。此外,地基所处底土的特性也是影响振动传递性的重要决定因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modeling the dynamic interaction between machine tools and their foundations

Modeling the dynamic interaction between machine tools and their foundations

The performance of a machine tool is directly influenced by the characteristics of the floor, subsoil, and their interaction with the installed machine. Installing a machine tool in its operational environment poses a distinct challenge that bridges mechanical and civil engineering disciplines. This interdisciplinary issue is often overlooked within the individual separate disciplines. However, effectively addressing this challenge requires a comprehensive understanding of mechanical and civil engineering principles. To address this problem, the present study proposes a method for improved modeling of the dynamic properties of the machine tool by considering the foundation and the subsoil on which it is installed. The method is based on finite element modeling. Linear models of the system components and the connections between them were used. These, supplemented with damping expressed by complex stiffness, made it possible to determine the natural frequencies, mode shapes, and frequency response functions (based on which the transmissibilities were obtained). Based on the experimentally verified models of vertical and horizontal lathes, the sensitivity analysis aimed at estimating the impact of changes in system parameters on vibration transmissibility for a floor-type and a block-type foundation was conducted. Thus, it was possible to identify those machine tool-support-foundation-subsoil system parameters that had the most significant impacts on the vibration's transmissibility. After analyzing the cases discussed, it became evident that the transmissibility of vibrations is primarily influenced by two key factors. First and foremost, the properties of the structural loop of the machine tool played a significant role. Additionally, the characteristics of the subsoil on which the foundation was situated emerged as a crucial determinant in the observed vibration transmissibility.

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来源期刊
CiteScore
7.40
自引率
5.60%
发文量
177
审稿时长
46 days
期刊介绍: Precision Engineering - Journal of the International Societies for Precision Engineering and Nanotechnology is devoted to the multidisciplinary study and practice of high accuracy engineering, metrology, and manufacturing. The journal takes an integrated approach to all subjects related to research, design, manufacture, performance validation, and application of high precision machines, instruments, and components, including fundamental and applied research and development in manufacturing processes, fabrication technology, and advanced measurement science. The scope includes precision-engineered systems and supporting metrology over the full range of length scales, from atom-based nanotechnology and advanced lithographic technology to large-scale systems, including optical and radio telescopes and macrometrology.
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