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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >A new approach for the geometrical calibration of parallel kinematics machines tools based on the machining of a dedicated part
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A new approach for the geometrical calibration of parallel kinematics machines tools based on the machining of a dedicated part

机译:基于专用零件加工的并联运动学机床几何校准的新方法

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摘要

A main limitation of parallel kinematics machine tools (PKM) in high-speed machining tasks is their low level of accuracy compared with serial kinematics machine tools, which is largely due to geometrical transformation errors. These errors can be reduced by identifying the geometrical parameters of the inverse kinematics model integrated in the controller by exteroceptive calibration. The aim of this paper is to propose a new external measurement method in order to perform the geometrical calibration of PKM, taking into account machining requirements. This method is implemented in three steps: machining of a dedicated part, measurement, and identification of the geometrical parameter values. In this paper, the method is described with a particular emphasis on the machined surface profiles of the dedicated part and on the numerical calibration approach. Measurement errors on the machined surface enable the identification of the PKM geometrical parameters. Thus, calibration is performed with respect to machined surface defects without taking into account the entire tool pose defect, as is the case in usual calibration methods. The study is illustrated using the Verne PKM, which is located at IRCCyN (Nantes, France).
机译:并行运动学机床(PKM)在高速加工任务中的主要局限性在于,与串行运动学机床相比,其精度较低,这在很大程度上是由于几何变换误差造成的。这些误差可以通过感知性校准确定集成在控制器中的逆运动学模型的几何参数来减少。本文的目的是提出一种新的外部测量方法,以便在考虑加工要求的情况下执行PKM的几何校准。该方法分三个步骤实施:加工专用零件,测量和识别几何参数值。在本文中,对方法的描述特别着重于专用零件的机加工表面轮廓和数值校准方法。机加工表面上的测量误差使得能够识别PKM几何参数。因此,与通常的校准方法一样,对加工的表面缺陷进行校准而无需考虑整个刀具姿态缺陷。使用位于IRCCyN(法国南特)的凡尔纳PKM对该研究进行了说明。

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