滚珠丝杠进给传动、再循环直线导轨和滚珠丝杠的静、动态分析综述

IF 14 1区 工程技术 Q1 ENGINEERING, MANUFACTURING International Journal of Machine Tools & Manufacture Pub Date : 2023-05-01 DOI:10.1016/j.ijmachtools.2023.104021
Changyou Li , Mengtao Xu , Wenjun Song , Hongzhuang Zhang
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引用次数: 3

摘要

机床关键结构部件的静态和动态分析是数字化制造趋势从物理领域向虚拟领域转移的关键阶段。高非线性滚动运动关节的建模技术直接影响预测的准确性和效率。现有文献复制了考虑滚动元件接触界面的非线性静态和动态特性,并提出了进给驱动器的理论建模方法。然而,缺乏系统的文献调查。本文综述了滚动运动关节非线性分析模型的最新进展,包括滚珠丝杠进给驱动器、循环线性导轨和滚珠丝杠。对滚珠丝杠传动的非线性动态刚度和振动响应进行了深入研究。具体而言,对于线性导轨和滚珠丝杠,刚度和载荷分布模型可分为两类:考虑和不考虑构件结构变形。此外,还介绍了相应的详细建模过程。概述了突出滚动元件再循环运动的时间依赖建模原理,并简要讨论了摩擦磨损行为。文章最后介绍了当前的研究进展和不足,并提出了有前景的建模趋势。特别是,建模趋势要求对滚珠丝杠进给驱动器进行综合模型研究,考虑更详细的非线性关节。此外,多物理参数的融合有望实现智能制造需求的关键结构部件的高保真力学模型。
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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A review of static and dynamic analysis of ball screw feed drives, recirculating linear guideway, and ball screw

Static and dynamic analysis of key structural components of the machine tool is the crucial stage in transferring the physical to the virtual domain for digital manufacturing trends. The modeling technique of rolling kinematic joints with high nonlinearity can directly influence the accuracy and efficiency of prediction. Existing literature replicates the nonlinear static and dynamic characteristics considering the rolling element contact interface and proposes the theoretical modeling approach for the feed drives. However, there is a lack of systematic literature surveys. This paper reviews the current progress placed at the nonlinear analytical model of rolling kinematic joints, including ball screw feed drives, recirculating linear guideways, and ball screws. Advanced investigations on nonlinear dynamic stiffness and vibration response associated with ball screw feed drives are covered. Specifically, for linear guideways and ball screws, the stiffness and load distribution models can be divided into two categories: with and without consideration of the component structural deformations. Moreover, the corresponding detailed modeling process is introduced. The time-dependent modeling principle highlighting the recirculation motion of rolling elements is summarized, and friction and wear behavior is briefly discussed. The paper ends with the current research advancement and scarcity and recommends promising modeling tendencies. Particularly, the modeling tendencies require integrated model research on ball screw feed drives considering the more detailed nonlinear joint. Moreover, a fusion of multi-physics parameters is expected to achieve the high-fidelity mechanical model of key structural components for intelligent manufacturing demand.

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来源期刊
CiteScore
25.70
自引率
10.00%
发文量
66
审稿时长
18 days
期刊介绍: The International Journal of Machine Tools and Manufacture is dedicated to advancing scientific comprehension of the fundamental mechanics involved in processes and machines utilized in the manufacturing of engineering components. While the primary focus is on metals, the journal also explores applications in composites, ceramics, and other structural or functional materials. The coverage includes a diverse range of topics: - Essential mechanics of processes involving material removal, accretion, and deformation, encompassing solid, semi-solid, or particulate forms. - Significant scientific advancements in existing or new processes and machines. - In-depth characterization of workpiece materials (structure/surfaces) through advanced techniques (e.g., SEM, EDS, TEM, EBSD, AES, Raman spectroscopy) to unveil new phenomenological aspects governing manufacturing processes. - Tool design, utilization, and comprehensive studies of failure mechanisms. - Innovative concepts of machine tools, fixtures, and tool holders supported by modeling and demonstrations relevant to manufacturing processes within the journal's scope. - Novel scientific contributions exploring interactions between the machine tool, control system, software design, and processes. - Studies elucidating specific mechanisms governing niche processes (e.g., ultra-high precision, nano/atomic level manufacturing with either mechanical or non-mechanical "tools"). - Innovative approaches, underpinned by thorough scientific analysis, addressing emerging or breakthrough processes (e.g., bio-inspired manufacturing) and/or applications (e.g., ultra-high precision optics).
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