热状态对龙门型数控机床主作动机构导轨的影响

Q4 Engineering
L. Petrea, G. Stan, Cătălin Drob
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引用次数: 0

摘要

大间距数控龙门机床(龙门铣床、等离子和激光龙门切割机、立式车床等)广泛用于制造大型和长部件。因为这种类型的机床用于高速加工大型零件,所以在切削工具层面会产生大量热量,并通过刀架传递到冲头或旋压,然后再传递到铰缸导轨。由于滚珠丝杠水平的摩擦力,在主轴上使用滚珠丝杠驱动时也会产生热量。由于材料膨胀,加工过程中产生的热量会影响机床的精度。本文采用有限元分析方法分析了温度对机床导轨刚度的影响。所执行的研究结果将为机床制造商提供关于需要解决的点的重要信息,以帮助改进热补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE INFLUENCE OF THE THERMAL REGIME ON THE GUIDEWAYS OF THE MAIN ACTUATION OF A GANTRY TYPE CNC MACHINE
CNC Gantry Type Machine Tools with great distance between slides (gantry milling machines, plasma and laser gantry cutting machines, vertical lathe machines, etc) are used extensively in the manufacturing of large and long components. Because this type of Machine Tool it is used to machine large parts at high speeds, significant heat will be produce at the cutting tool level and transmitted thru the tool holder to the ram or spindled and then to the ream case guideways. Heat it’s also generated when using a ball screw actuation for the main axis because of the friction forces at the ball screw level. Due to material expansion, the heat generated during the machining process can influence the precision of the Machine Tool. In this paper, finite element analysis (FEA) was used to analyze the influence of the temperature on the rigidity of the Machine Tool guideways. The results of the studies performed will provide the machine tool builder with important information regarding the points that need to be address in order to help in improving thermal compensation.
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来源期刊
International Journal of Modern Manufacturing Technologies
International Journal of Modern Manufacturing Technologies Engineering-Industrial and Manufacturing Engineering
CiteScore
0.70
自引率
0.00%
发文量
15
期刊介绍: The main topics of the journal are: Micro & Nano Technologies; Rapid Prototyping Technologies; High Speed Manufacturing Processes; Ecological Technologies in Machine Manufacturing; Manufacturing and Automation; Flexible Manufacturing; New Manufacturing Processes; Design, Control and Exploitation; Assembly and Disassembly; Cold Forming Technologies; Optimization of Experimental Research and Manufacturing Processes; Maintenance, Reliability, Life Cycle Time and Cost; CAD/CAM/CAE/CAX Integrated Systems; Composite Materials Technologies; Non-conventional Technologies; Concurrent Engineering; Virtual Manufacturing; Innovation, Creativity and Industrial Development.
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