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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >A method of measuring the frequency response function of the tool point based on the surface of feeding system
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A method of measuring the frequency response function of the tool point based on the surface of feeding system

机译:一种测量基于馈电系统刀具点的频率响应函数的方法

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摘要

In the existing method of predicting the frequency response function of the tool point, the effect of lathe feed system is considered in the tool point frequency response function. The junction surface affects the tool point frequency response function, and the junction surface include: bearing–lead screw, lead screw–nut, working bench-guide rail, tool holder–turning tool. The lathe machining system is divided into four substructures, and the lead screw–nut junction surface and workbench-guide rail junction surface have a significant effect in the tool point frequency response function, so we mainly considered the impact of these junctions surface. Through the junction surface stiffness and junction surface damping to obtain a small response at the junction surface. And the frequency response function of the substructure is obtained by hammering method and Timoshenko beam model. Finally, the frequency response function of the substructure end is coupled with the vibration response of the lead screw–nut and workbench-guide rail by the response coupling method, and finally we get the tool point frequency response function. The CA6140 lathe was used as the experimental object, and the frequency response function of the tool point is predicted by above method. The experimental results show that the predicted tool point frequency response function has a high degree of coincidence. The method proposed in this paper can quickly get the frequency response function of the tool point which laid a foundation for the accurate prediction of static and dynamic characteristics of machine tool.
机译:在预测刀具点的频率响应函数的现有方法中,在刀具点频率响应函数中考虑车床馈送系统的效果。连接面影响刀具点频率响应功能,结表面包括:轴承引线螺钉,铅螺母,工作台导轨,工具架转动工具。车床加工系统分为四个子结构,铅螺丝螺母连接面和工作台导轨连接面在刀具点频率响应功能中具有显着影响,因此我们主要考虑了这些连接面的影响。通过结表面刚度和结表面阻尼,以在结表面获得小响应。并且通过锤击方法和Timoshenko光束模型获得子结构的频率响应函数。最后,子结构端的频率响应函数通过响应耦合方法与铅螺母和工作台导轨的振动响应相结合,最后我们得到了刀具点频率响应函数。使用CA6140车床作为实验对象,通过上述方法预测刀具点的频率响应函数。实验结果表明,预测的工具点频率响应函数具有高度的巧合。本文提出的方法可以快速获取刀具点的频率响应函数,其为准确预测机床的静态和动态特性的准确预测。

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