• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2022, Vol. 58 ›› Issue (24): 10-19.doi: 10.3901/JME.2022.24.010

• 仪器科学与技术 • 上一篇    下一篇

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基于三轴测量机拓扑结构的单项几何误差模型

赖涛1,2, 彭小强1,2, 徐超1,2, 戴一帆1,2, 胡皓1,2, 刘俊峰1,2   

  1. 1. 国防科技大学装备综合保障技术重点实验室 长沙 410073;
    2. 国防科技大学超精密加工技术湖南省重点实验室 长沙 410073
  • 收稿日期:2022-05-12 修回日期:2022-09-25 出版日期:2022-12-20 发布日期:2023-04-03
  • 通讯作者: 刘俊峰(通信作者),男,1987年出生,博士,副研究员,博士研究生导师。主要研究方向为机械系统动力学、超精密加工、典型惯性器件超精密检测与动态分析等。E-mail:ljf20090702122@163.com
  • 作者简介:赖涛,男,1991年出生,博士,讲师。主要研究方向为精密工程。E-mail:laitao_nudt@163.com;彭小强,男,1977年出生,博士,研究员,博士研究生导师。主要研究方向为光学零件先进制造装备和工艺、超精密切削加工工艺及装备、超精密机电系统测控、纳米精度形面测量评价和高性能成像系统技术等。E-mail:pxq2000@vip.sina.com;刘俊峰(通信作者),男,1987年出生,博士,副研究员,博士研究生导师。主要研究方向为机械系统动力学、超精密加工、典型惯性器件超精密检测与动态分析等。E-mail:ljf20090702122@163.com
  • 基金资助:
    国家重点研发计划(2019YF0708903)、高性能复杂制造国家重点实验室开放课题基金(Kfkt2021-07)、国家自然科学基金(52205505)和国防科技大学科研计划(ZK22-12)资助项目。

Single Geometric Error Model of 3-axis Measurement Machine Based on Topological Structure

LAI Tao1,2, PENG Xiaoqiang1,2, XU Chao1,2, DAI Yifan1,2, HU Hao1,2, LIU Junfeng1,2   

  1. 1. Laboratory of Science and Technology on Integrated Logistics Support, National University of Defense Technology, Changsha 410073;
    2. Key Laboratory of Ultra-precision Machining Technology of Hunan Province, National Vniversity of Defense Technology, Changsha 410073
  • Received:2022-05-12 Revised:2022-09-25 Online:2022-12-20 Published:2023-04-03

摘要: 基于刚体模型和小角度假设,传统的几何误差模型采用传递矩阵建立几何误差与测量机空间误差的关系。但通过传递矩阵建立的几何误差模型难以清晰揭示各单项几何误差对空间误差的影响关系。为了更清楚地表达单项几何误差对空间误差的影响关系,基于三轴测量机拓扑结构建立了各单项几何误差模型,分析了测量机各项阿贝误差产生机制。利用所建立的单项几何误差模型分析各单项几何误差的影响权重,对自研测量机高权重几何误差进行辨识与补偿,结果表明,补偿后测量机测量直径150 mm平面与直径60 mm凹球面的PV值分别达到344.32 nm和161.74 nm,面形误差与波面干涉仪测量结果基本一致。单项几何误差模型有助于了解阿贝误差的产生机理;提出的几何误差权重计算方法有助于实现对测量机敏感误差的精确控制,指导高精度测量机结构设计与测量精度的提升。

关键词: 几何误差, 阿贝误差, 坐标测量机, 误差权重, 测量精度

Abstract: Based on the rigid body model and small angle assumption, the traditional geometric error model uses a homogeneous transfer matrix (HTM) to establish the volumetric error of a machine tool. Each geometric error will produce a corresponding volumetric error at the corresponding position, but the HTM ignores the influence mechanism of each geometric error on the volumetric error. In order to clearly express the influence mechanism and include more synthesis position variables, a single geometric error model based on the topological sturcture of machine was established. Special emphasis is placed on the relationship between the anglur error and Abbe error. The effect ratio is analysed using the single geometric error model, the large-ratio geometric error is measured and compensated. The results show that the accuracy of the measurement machine is improved by the compensating. The flat accuracy of φ150 mm is measured at 344.32 nm, and the concave accuracy of f60 mm is measured at 161.74 nm. The surface maps measured by the coordinate machine are similar to the surface maps measured by interferometer. The establishment process of the proposed error model was simple, which was helpful for understanding the influence mechanism of the angulr error on the Abbe error. The methods presented herin can be applied to design machine tools and improve the accuracy of measurement machine.

Key words: geometric error, Abbe error, coordinate measurement machine, error sensitive, measurement accuracy

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