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A flexible and cost-effective compensation method for leveling using large-scale coordinate measuring machines and its application in aircraft digital assembly

机译:使用大规模坐标测量机测整的灵活且经济高效的补偿方法及其在飞机数字组装中的应用

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摘要

In the assembly process of large-size aerospace products, the leveling and horizontal alignment of large components are essential prior to the installation of an inertial navigation system (INS) and the final quality inspection. In general, the inherent coordinate systems of large-scale coordinate measuring devices are not coincident with the geodetic horizontal system, and a dual-axis compensation system is commonly required for the measurement of difference in heights. These compensation systems are expensive and dedicated designs for different devices at present. Considering that a large-size assembly site usually needs more than one measuring device, a compensation approach which is versatile for different devices would be a more convenient and economic choice for manufacturers. In this paper, a flexible and cost-effective compensation method is proposed. Firstly, an auxiliary measuring device called a versatile compensation fixture (VCF) is designed, which mainly comprises reference points for coordinate transformation and a dual-axis inclinometer, and a kind of network tighten points (NTPs) are introduced and temporarily deployed in the large measuring space to further reduce transformation error. Secondly, the measuring principle of height difference is studied, based on coordinate transformation theory and trigonometry while considering the effects of earth curvature, and the coordinate transformation parameters are derived by least squares adjustment. Thirdly, the analytical solution of leveling uncertainty is analyzed, based on which the key parameters of the VCF and the proper deployment of NTPs are determined according to the leveling accuracy requirement. Furthermore, the proposed method is practically applied to the assembly of a large helicopter by developing an automatic leveling and alignment system. By measuring four NTPs, the leveling uncertainty (2 sigma) is reduced by 29.4% to about 0.12 mm, compared with that without NTPs.
机译:在大型航空航天产品的装配过程中,在安装惯性导航系统(INS)和最终质量检测之前,大型部件的平整和水平对准是必不可少的。通常,大规模坐标测量装置的固有坐标系与大地测量水平系统不一致,并且通常需要测量高度差异的双轴补偿系统。这些补偿系统是目前不同设备的昂贵且专用的设计。考虑到大尺寸的装配网站通常需要多个测量装置,对于不同设备而言的补偿方法将是制造商更方便和经济的选择。在本文中,提出了一种灵活且经济高效的补偿方法。首先,设计了一种称为通用补偿夹具(VCF)的辅助测量装置,其主要包括用于坐标变换的参考点和双轴倾斜度计,以及一种网络拧紧点(NTPS)并暂时部署在大型中测量空间以进一步减少转换误差。其次,研究了高度差的测量原理,基于坐标变换理论和三角学时考虑到地球曲率的影响,并且通过最小二乘调节导出坐标变换参数。第三,分析了水平不确定性的分析解决方案,基于该测量的vcf的关键参数和NTPS的正确部署是根据水平精度要求确定的。此外,通过开发自动调平和对准系统,实际上,该方法实际上应用于大直升机的组装。通过测量四个NTP,与没有NTPS的情况相比,水平不确定度(2Σ)减少了29.4%至约0.12mm。

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