关节臂测量机自驱动精确测量系统
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1.安徽理工大学机电工程学院 淮南 232000; 2.安徽理工大学矿山智能装备与技术安徽省重点实验室 淮南 232000

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TN914

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安徽省教育厅安徽省高等学校科学研究项目(2024AH050348)资助


Self-driven precise measurement system of articulated arm measuring machine
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1.School of Mechanical and Electrical Engineering, Anhui University of Science and Technology, Huainan 232000, China; 2.Anhui Key Laboratory of Mine Intelligent Equipment and Technology, Anhui University of Science and Technology, Huainan 232000, China

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    摘要:

    针对关节臂测量机的测量系统无法完成如轨迹规划、误差补偿等复杂功能的问题,研制了基于Unity平台的关节臂坐标测量机的测量系统。分析了关节臂测量机的功能需求并建立了相应的算法模型,在Unity平台上搭建了测量机测量系统,针对测量系统分别设计了虚拟样机显示功能、虚拟机与实际样机同步运动功能、多关节同步轨迹规划功能与误差补偿功能。利用测量系统完成了标准球直径的测量实验,结果表明补偿后的平均误差为0.015 5 mm。完成了关节臂测量机测量系统功能的集成,为实现测量机自动化测量奠定了基础。

    Abstract:

    Aiming at the problem that the measurement system of the articulated arm measuring machine cannot complete complex functions such as trajectory planning and error compensation, a measurement system for the articulated arm coordinate measuring machine based on the Unity platform was developed. The functional requirements of the articulated arm measuring machine were analyzed and the corresponding algorithm model was established. The measurement system of the measuring machine was built on the Unity platform. For the measurement system, the virtual prototype display function, the synchronous movement function of the virtual machine and the actual prototype, the multi-joint synchronous trajectory planning function and the error compensation function were respectively designed. The measurement system was used to complete the measurement experiment of the standard ball diameter. The results show that the average error after compensation is 0.015 5 mm. The integration of the measurement system functions of the articulated arm measuring machine was completed, laying the foundation for the realization of the automatic measurement of the measuring machine.

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杨洪涛,柯源,沈梅,李天增.关节臂测量机自驱动精确测量系统[J].电子测量技术,2026,49(13):110-120

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  • 在线发布日期: 2026-09-08
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