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Research and Application of Aero-engine Interface Measurement Technology

机译:航空发动机界面测量技术的研究与应用

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During the production and development of a certain type of aircraft, frequent sampling of the pipeline connecting the engine and the body occurred, which not only had a great impact on the production schedule, but also produced huge waste. In this paper, the measurement technology of laser tracker is researched, and digital measurement technology is applied for the first time in the assembly process of aeroengine. By using the laser tracker to measure the shape parameters of aeroengine in advance, the space coordinate system of the aeroengine is established, and the pipeline interface space is fitted. Coordinates and correction of pipeline manufacturing process parameters have greatly reduced the sampling of pipes in the assembly process of aero-engines. It is verified through actual production and manufacturing. After the application of laser tracker measurement technology, the average number of sampling times for connecting pipes for each aero-engine is reduced by 49% , Which greatly reduces the aircraft manufacturing cycle, and also contributes to the application of digital measurement technology in the production and development of weapons and equipment.
机译:在生产和开发某种类型的飞机期间,频繁采样连接发动机和身体的管道,这不仅对生产计划产生了很大影响,而且产生了巨大的废物。本文研究了激光跟踪器的测量技术,在航空发动机组装过程中首次应用了数字测量技术。通过使用激光跟踪器预先测量航空发动机的形状参数,建立了航空发动机的空间坐标系,装配了管道界面空间。管道制造工艺参数的坐标和校正大大降低了航空发动机组装过程中管道的采样。通过实际生产和制造进行验证。在激光跟踪器测量技术的应用之后,每个航空发动机连接管道的平均采样时间数减少了49%,这大大减少了飞机制造周期,也有助于数字测量技术在生产中的应用和开发武器和设备。

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