Increasing milling stability predictions accuracy considering speed dependent spindle behavior with an automated measurement device

IF 3.2 3区 工程技术 Q2 ENGINEERING, INDUSTRIAL
O. Ozkirimli , E. Ozturk (2)
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引用次数: 0

Abstract

Manufacturers seek to enhance productivity by investing in high-speed machine tools. However, at elevated spindle speeds, dynamic characteristics of spindles may change due to thermal loads on bearings, complicating the task of finding optimal spindle speeds. To address this issue, an automated measurement system was developed to evaluate dynamic characteristics of tooling assemblies under rotating conditions. The system employs a solenoid actuator for excitation and capacitance probes for response measurement. Dynamic measurements and milling tests were conducted on a 5-axis milling machine tool and benefits of the system in improving accuracy of stability prediction are presented.
增加铣削稳定性预测精度考虑速度依赖的主轴行为与自动测量装置
制造商寻求通过投资高速机床来提高生产率。然而,在主轴转速升高时,由于轴承上的热负荷,主轴的动态特性可能会发生变化,从而使寻找最佳主轴转速的任务复杂化。为了解决这一问题,开发了一种自动化测量系统来评估旋转条件下工装组件的动态特性。该系统采用电磁致动器进行激励,电容探头进行响应测量。在一台五轴铣床上进行了动态测量和铣削试验,说明了该系统在提高稳定性预测精度方面的作用。
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来源期刊
Cirp Annals-Manufacturing Technology
Cirp Annals-Manufacturing Technology 工程技术-工程:工业
CiteScore
7.50
自引率
9.80%
发文量
137
审稿时长
13.5 months
期刊介绍: CIRP, The International Academy for Production Engineering, was founded in 1951 to promote, by scientific research, the development of all aspects of manufacturing technology covering the optimization, control and management of processes, machines and systems. This biannual ISI cited journal contains approximately 140 refereed technical and keynote papers. Subject areas covered include: Assembly, Cutting, Design, Electro-Physical and Chemical Processes, Forming, Abrasive processes, Surfaces, Machines, Production Systems and Organizations, Precision Engineering and Metrology, Life-Cycle Engineering, Microsystems Technology (MST), Nanotechnology.
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