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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Strain transfer characteristics of surface-attached FBGs in aircraft wing distributed deformation measurement
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Strain transfer characteristics of surface-attached FBGs in aircraft wing distributed deformation measurement

机译:飞机机翼分布式变形测量中表面连接FBG的应变传递特性

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摘要

Dynamic deformations of aircraft wing can lead to changes in baseline length, which seriously affects the performance of ground height measurement and multi-phase central array imaging. It is very important to measure the deformation of aircraft wing with high accuracy in dynamic environment. The layout of sensors is not allowed to affect the safety of aircraft structure and the sensor packaging design directly affects the accuracy of aircraft wing deformation measurement. For these, the strain calibration methods used in recent years are analyzed first, and then a strain calibration method of the surface-attached FBGs applied to distributed strain measurement of aircraft wing is proposed. In this paper, two sets of Aluminium Alloy Test Plates with different sizes were designed as matrix materials for tensile test. The strain sensitivity of surface-attached FBGs on test substrates with different sizes was compared by several groups of tests. The test results show that the tensile test based on AATP-A is better than AATP-B. By comparing the measurement results of surface-attached FBGs and strain gauge on AATP-A, the high measurement accuracy of surface-attached FBGs is verified. The test results show that the strain measurement method based on the surface-attached FBGs is simple and reliable, and this method can be used to calibrate the surface-attached FBGs before use, and improve the accuracy and accuracy of the measurement of wing deformation.
机译:飞机机翼的动态变形可能导致基线长度的变化,这严重影响了地高测量和多相中央阵列成像的性能。在动态环境中高精度测量飞机机翼的变形非常重要。传感器的布局不允许影响飞机结构的安全性,传感器包装设计直接影响飞机机翼变形测量的准确性。为此,首先分析近年来使用的应变校准方法,然后提出了应用于飞机机翼分布式应变测量的表面连接的FBG的应变校准方法。在本文中,设计了两组具有不同尺寸的铝合金试验板作为拉伸试验的基质材料。通过几组试​​验比较了表面连接的FBG对具有不同尺寸的试验基材的应变敏感性。测试结果表明,基于AATP-A的拉伸试验优于AATP-B。通过比较表面连接的FBG和应变仪对AATP-A的测量结果,验证了表面连接的FBG的高测量精度。测试结果表明,基于表面连接的FBG的应变测量方法简单可靠,并且该方法可用于在使用前进行校准表面连接的FBG,并提高机翼变形测量的准确性和准确性。

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