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Analytical modeling of spindle-tool dynamics on machine tools using Timoshenko beam model and receptance coupling for the prediction of tool point FRF

机译:使用Timoshenko梁模型和接受耦合预测机床点FRF的机床主轴动力学分析模型

摘要

Regenerative chatter is a well-known machining problem that results in unstable cutting process, poor surface quality and reduced material removal rate. This undesired self-excited vibration problem is one of the main obstacles in utilizing the total capacity of a machine tool in production. In order to obtain a chatter-free process on a machining center, stability diagrams can be used. Numerically or analytically, constructing the stability lobe diagram for a certain spindleholdertool combination implies knowing the system dynamics at the tool tip; i.e., the point frequency response function (FRF) that relates the dynamic displacement and force at that point. This study presents an analytical method that uses Timoshenko beam theory for calculating the tool point FRF of a given combination by using the receptance coupling and structural modication methods. The objective of the study is two fold. Firstly, it is aimed to develop a reliable mathematical model to predict tool point FRF in a machining center so that chatter stability analysis can be done, and secondly to make use of this model in studying the effects of individual bearing and contact parameters on tool point FRF so that better approaches can be found in predicting contact parameters from experimental measurements. The model can also be used to study the effects of several spindle, holder and tool parameters on chatter stability. In this paper, the mathematical model, as well as the details of obtaining the system component (spindle, holder and tool) dynamics and coupling them to obtain the tool point FRF are given. The model suggested is veried by comparing the natural frequencies of an example spindleholdertool assembly obtained from the model with those obtained from a nite element software.
机译:再生颤动是一个众所周知的加工问题,会导致切削过程不稳定,表面质量差和材料去除率降低。这种不希望的自激振动问题是在生产中利用机床总容量的主要障碍之一。为了在加工中心上获得无抖动的过程,可以使用稳定性图。从数值或分析上,为某些主轴夹工具组合构造稳定性凸角图,意味着了解刀尖上的系统动力学。即点频率响应函数(FRF),该函数将该点的动态位移和力相关联。这项研究提出了一种分析方法,该方法使用Timoshenko束理论通过接受耦合和结构校正方法来计算给定组合的工具点FRF。研究的目的有两个方面。首先,旨在建立可靠的数学模型来预测加工中心中的刀具点FRF,从而可以进行颤动稳定性分析;其次,该模型用于研究各个轴承和接触参数对刀具点的影响FRF,以便在通过实验测量预测接触参数时可以找到更好的方法。该模型还可用于研究几个主轴,刀柄和刀具参数对颤振稳定性的影响。在本文中,给出了数学模型,以及获得系统组件(主轴,夹具和刀具)动力学并将其耦合以获得刀具点FRF的详细信息。通过比较从模型获得的示例主轴夹具工具组件的固有频率与从nite元素软件获得的固有频率进行比较,得出建议的模型。

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