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Modal Parameters Evaluation in a Full-Scale Aircraft Demonstrator under Different Environmental Conditions Using HS 3D-DIC

机译:使用HS 3D-DIC在不同环境条件下的大型飞机演示器中的模态参数评估

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摘要

In real aircraft structures the comfort and the occupational performance of crewmembers and passengers are affected by the presence of noise. In this sense, special attention is focused on mechanical and material design for isolation and vibration control. Experimental characterization and, in particular, experimental modal analysis, provides information for adequate cabin noise control. Traditional sensors employed in the aircraft industry for this purpose are invasive and provide a low spatial resolution. This paper presents a methodology for experimental modal characterization of a front fuselage full-scale demonstrator using high-speed 3D digital image correlation, which is non-invasive, ensuring that the structural response is unperturbed by the instrumentation mass. Specifically, full-field measurements on the passenger window area were conducted when the structure was excited using an electrodynamic shaker. The spectral analysis of the measured time-domain displacements made it possible to identify natural frequencies and full-field operational deflection shapes. Changes in the modal parameters due to cabin pressurization and the behavior of different local structural modifications were assessed using this methodology. The proposed full-field methodology allowed the characterization of relevant dynamic response patterns, complementing the capabilities provided by accelerometers.
机译:在实际的飞机结构中,噪声的存在会影响机组人员和乘客的舒适度和职业表现。从这个意义上讲,应特别注意隔离和振动控制的机械和材料设计。实验表征,尤其是实验模态分析,为适当的机舱噪声控制提供了信息。在飞机工业中为此目的使用的传统传感器是侵入性的并且提供低空间分辨率。本文提出了一种使用高速3D数字图像相关技术对前机身全尺寸演示器进行实验模态表征的方法,该方法是非侵入性的,确保了结构响应不受仪表质量的干扰。具体而言,当使用电动振动台激发结构时,对乘客车窗区域进行了全场测量。对所测量的时域位移进行频谱分析,可以确定固有频率和全场工作偏转形状。使用该方法评估了由于舱室增压而引起的模态参数的变化以及不同的局部结构修改的行为。拟议的全场方法可以表征相关的动态响应模式,从而补充了加速度计提供的功能。

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