Optimized Design and Performance Study of High Speed Five-Axis Machine Tools

T. Chan, Jyun-Sian Yang
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引用次数: 1

Abstract

With the development of machine tools trending toward high precision, intelligence, multi-axis, and high speed, the improvement of the processing performance and rigidity of the machine is considerably important. The objective of this study is to design of a high-speed five-axis moving-column machine tool and perform structural analysis and optimization. We study the static and dynamic characteristics of the five-axis machine tool, design and improve the mechanical structure, and optimize the structural configuration of the machine. The entire machine structure is further analyzed and enhanced to improve its static and dynamic characteristics, including static rigidity, modal, transient, and spectral response characteristics. The static and dynamic characteristics of the machine structure directly affect the machine processing performance, and further affect the work piece precision machined by the tool. Through this study, the design technology for speed, accuracy, and surface roughness of the machine tool are further improved.
高速五轴机床的优化设计与性能研究
随着机床向高精度、智能化、多轴、高速方向发展,提高机床的加工性能和刚度显得尤为重要。本研究的目的是设计一种高速五轴动柱机床,并进行结构分析和优化。研究了五轴机床的静态和动态特性,设计和改进了机械结构,优化了机床的结构配置。进一步对整机结构进行分析和增强,以改善其静、动态特性,包括静刚度、模态、瞬态和频谱响应特性。机床结构的静态和动态特性直接影响机床的加工性能,进而影响刀具加工的工件精度。通过本文的研究,进一步提高了机床的速度、精度和表面粗糙度的设计技术。
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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