Vibration analysis and optimization design of profile sawing and milling machine tool

Qing Zhao, Xiaolong Ren
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Abstract

At present, the common profile processing machine tools have a single function, and the use cost of the machining center series is high. In order to save costs and realize the multi-functional processing of profiles, a profile sawing and milling machine is designed. Mainly study the dynamic characteristics of the machine tool, suppress the vibration of the machine tool, and improve the machining accuracy. Through 3D modeling, ADAMS simulation, changing the thickness of the worktable, adding damping force and other methods, the natural frequency of the machine tool, the milling cutter mechanism and the amplitude of the worktable are obtained, and the structure of the machine tool is optimized. The results show that the resonance frequency of the self-excited vibration of the machine tool is mainly concentrated in the low frequency range of 0.1-100 Hz. The maximum frequency response of the machine tool is 18.19Hz with an amplitude of 39.84mm. The thickness of the worktable is increased by 20%, the maximum frequency response of the machine tool is shifted to the left by 0.41Hz, and the maximum amplitude of the worktable is reduced by 6.15mm. Adding the damping force, the maximum amplitude of the y+ and z- milling cutters is reduced by 3.96mm and 7.33mm respectively. It can be seen that the two optimal designs can effectively suppress the self-excited vibration of the machine tool, improve the machining accuracy, and make the machine tool design structure more completed and feasible.
型材锯铣床的振动分析与优化设计
目前常见的型材加工机床功能单一,加工中心系列使用成本高。为了节约成本,实现型材的多功能加工,设计了一种型材锯铣床。主要研究机床的动态特性,抑制机床的振动,提高加工精度。通过三维建模、ADAMS仿真、改变工作台厚度、增加阻尼力等方法,得到机床的固有频率、铣刀机构和工作台的振幅,并对机床的结构进行优化。结果表明:机床自激振动的共振频率主要集中在0.1 ~ 100 Hz的低频范围内;机床的最大频率响应为18.19Hz,幅值为39.84mm。工作台厚度增加20%,机床最大频响左移0.41Hz,工作台最大振幅减小6.15mm。加入阻尼力后,y+型和z-型铣刀的最大振幅分别减小了3.96mm和7.33mm。可以看出,两种优化设计都能有效地抑制机床的自激振动,提高加工精度,使机床设计结构更加完整和可行。
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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