基于运动轴几何误差模型的蒙特卡罗仿真机床精度估计

IF 0.6 Q4 ENGINEERING, MECHANICAL
A. Valasek, J. Smolik, P. Kolar
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引用次数: 0

摘要

精度是机床最重要的特性之一。能够估计由总容积误差表示的机床的整体精度在设计过程中是一个巨大的优势。本文概述了用于几何误差传递建模和体积误差建模的方法。在建立误差传递刚体模型的基础上,提出了一种随机直线导轨直线度误差廓线发生器。这允许模拟一个运动轴与随机直线误差的轨道和计算几何误差的装配轴。然后,利用三轴机床的运动方案和齐次变换矩阵建立了具有21个运动误差的三轴机床的体积误差模型。利用模拟轴作为体积模型的输入,可以模拟整个机床。由此得到了总体积误差,并进行了蒙特卡罗仿真。这样就可以分析总体容积误差的统计数据,并且可以在微小的输入变化(导轨直线度公差)下进行灵敏度分析,以确定机床中最具影响力的误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ESTIMATION OF MACHINE TOOL ACCURACY BASED ON MONTE CARLO SIMULATION USING MOVEMENT AXES GEOMETRIC ERRORS MODEL
Accuracy is one of the most important feature of a machine tool. Being able to estimate the overall accuracy of a machine tool represented by the total volumetric error can be a huge advantage in the design process. This paper provides overview of methods used for geometric error transfer modeling and volumetric error modeling. An error transfer rigid body model is derived and after that, a random linear guideway straightness error profile generator is proposed. This allows to simulate a movement axis with random straightness errors of rails and computed geometric errors of an assembled axis. Volumetric error of a 3-axis machine tool is then modeled using its kinematic scheme and homogenous transformation matrices with 21 kinematic errors. Using simulated axes as input to the volumetric model, an entire machine tool can be simulated. From that, the total volumetric error can be obtained and a Monte Carlo simulation carried out. This allows to analyze statistics of the total volumetric error and with slight input changes (rail straightness tolerance), a sensitivity analysis can be performed to determine the most influential errors in the machine tool.
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来源期刊
MM Science Journal
MM Science Journal ENGINEERING, MECHANICAL-
CiteScore
1.30
自引率
42.90%
发文量
96
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