Accuracy compensation method with the combined dissimilar measurement devices for enhanced measurement quality: a digital aircraft assembly technology

IF 1.2 4区 工程技术 Q3 ENGINEERING, AEROSPACE
Md Helal Miah, Dharmahinder Singh Chand, Gurmail Singh Malhi
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引用次数: 0

Abstract

Purpose

The pivotal aspect of aircraft assembly lies in precise measurement accuracy. While a solitary digital measuring tool suffices for analytical and small surfaces, it falls short for extensive synthetic surfaces like aircraft fuselage panels and wing spars. The purpose of this study is to develop a “combined measurement method” (CMM) that enhances measurement quality and expands the evaluative scope, addressing the limitations posed by singular digital devices in meeting measurement requirements across various aircraft components.

Design/methodology/approach

The study illustrated the utilization of the CMM by combining a laser tracker and a portable arm-measuring machine. This innovative approach is tailored to address the intricate nature and substantial dimensions of aircraft fuselage panels. The portable arm-measuring machine performs precise scans of panel components, while common points recorded by the laser tracker undergo coordinate conversion to reconstruct the fuselage panel’s shape. The research outlines the CMM’s measurement procedure and scrutinizes the data processing technique. Ultimately, the investigation yields a deviation vector matrix and chromatogram deviation distribution, pivotal in achieving enhanced measurement precision for the novel CMM device.

Findings

The use of CMM noticeably enhances fuselage panel assembly accuracy, concurrently reducing assembly time and enhancing efficiency compared to conventional measurement systems.

Practical implications

The research’s practical implication lies in revolutionizing aircraft assembly by mitigating accuracy issues through the innovative digital CMM for aircraft synthetic structure type product (aircraft fuselage panel). This ensures safer flights, reduces rework and enhances overall efficiency in the aerospace industry.

Originality/value

Introducing a new aircraft assembly accuracy compensation method through digital combined measurement, pioneering improved assembly precision. Also, it enhances aerospace assembly quality, safety and efficiency, offering innovative insights for optimized aviation manufacturing processes.

利用组合式不同测量设备提高测量质量的精度补偿方法:一种数字飞机装配技术
目的飞机装配的关键在于精确的测量精度。虽然单独的数字测量工具足以满足分析和小型表面的要求,但对于像飞机机身面板和机翼支柱这样的大面积合成表面,它就显得力不从心了。本研究的目的是开发一种 "组合测量方法"(CMM),以提高测量质量和扩大评估范围,解决单一数字设备在满足各种飞机部件测量要求方面的局限性。这种创新方法专门针对飞机机身面板的复杂性和巨大尺寸而设计。便携式臂式测量机对面板部件进行精确扫描,而激光跟踪仪记录的公共点则进行坐标转换,以重建机身面板的形状。这项研究概述了坐标测量机的测量程序,并仔细研究了数据处理技术。研究结果与传统测量系统相比,使用坐标测量机可显著提高机身面板的装配精度,同时缩短装配时间并提高效率。研究的实际意义在于通过创新的数字坐标测量机缓解飞机合成结构类型产品(飞机机身面板)的精度问题,从而彻底改变飞机装配。原创性/价值通过数字组合测量引入一种新的飞机装配精度补偿方法,开创性地提高了装配精度。同时,它还提高了航空装配质量、安全性和效率,为优化航空制造流程提供了创新见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Aircraft Engineering and Aerospace Technology
Aircraft Engineering and Aerospace Technology 工程技术-工程:宇航
CiteScore
3.20
自引率
13.30%
发文量
168
审稿时长
8 months
期刊介绍: Aircraft Engineering and Aerospace Technology provides a broad coverage of the materials and techniques employed in the aircraft and aerospace industry. Its international perspectives allow readers to keep up to date with current thinking and developments in critical areas such as coping with increasingly overcrowded airways, the development of new materials, recent breakthroughs in navigation technology - and more.
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