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Mathematical approach for geometric error modeling of three axis CNC vertical milling machine

机译:三轴数控立式铣床几何误差建模的数学方法

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The aim of this paper overviews about to find out the errors that come from three axis CNC vertical milling machine. The errors come from, the CNC milling machine can be modelled into mathematical models and later on these error models will be used to analyse the errors in the measured data. Many errors from CNC machine tools have given significant effects toward the accuracy and repeatability of manufacturing process. There are two error sources come from CNC machine tools such as tool deflection and thermal distortions of machine tool structure. These errors later on will contribute to result in the geometrical deviations of moving axis in CNC vertical milling machine. Geometrical deviations of moving axis such as linear positioning errors, roll, pitch and yaw can be designated as volumetric errors in three axis machine tool. Geometrical deviations of moving axises happen at every axis in three axis CNC vertical milling machine. Geometrical deviations of moving axises in linear and angular movement has the amount of errors up to twenty one errors. Moreover, this geometrical errors play the major role in the total amount of errors and for that particular reason extra attention towards the geometrical deviation errors will be needed along machining process. Each of geometrical error of three axes vertical machining center is modeled using a homogeneous transformation matrix (HTM). The developed mathematical model is used to calculate geometrical errors at each axis and to predict the resultant error vector at the interface of machine tool and workpiece for error compensation.
机译:本文的目的概述了了解来自三轴CNC立式铣床的错误。错误来自,CNC铣床可以建模到数学模型中,稍后将用于分析测量数据中的错误。 CNC机床的许多错误对制造过程的准确性和可重复性产生了显着影响。有两个错误源来自CNC机床,如刀具偏转和机床结构的热扭曲。稍后这些错误将有助于导致移动轴在数控立式铣床中的几何偏差。移动轴的几何偏差,例如线性定位误差,辊,俯仰和横摆物可以在三个轴机床中作为容积误差指定为容量误差。移动轴的几何偏差发生在三轴CNC立式铣床中的每个轴上。线性和角度运动中移动轴的几何偏差具有高达二十一误差的误差。此外,这种几何误差在误差总量中发挥了重要作用,并且对于加工过程需要额外关注几何偏差误差的特别原因。三个轴垂直加工中心的每个几何误差使用均匀的变换矩阵(HTM)进行建模。开发的数学模型用于计算每个轴处的几何误差,并在机床和工件的界面处预测所得到的误差向量,以进行错误补偿。

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