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Opto-mechanical modelling and experimental approach to the measurement of aerospace materials using shearography and thermal loading

机译:利用剪切成像和热负荷测量航空材料的光机械建模和实验方法

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摘要

This paper is concerned with the modelling of the complete opto-mechanical measurement system, including shearography instrument, loading technique and the response of the object under test and the comparison of the simulation results with experimental results. To show the applicability of this technique, the response of an aluminium flat plate sample under thermal load was analysed. First a finite element model of the plate was generated, using an experimentally measured temperature profile. The strain and displacement values obtained from the finite element model were used to simulate the phase-map in the optical part of the model. The simulated phase maps were then compared qualitatively with experimental phase maps measured using shearography. This approach is suitable to understand the response of components under load and to predict anomalies such as defects, thereby making the analysis of measured phase maps easier and less empirical.
机译:本文涉及完整的光机械测量系统的建模,包括剪切仪,加载技术和被测物体的响应,以及模拟结果与实验结果的比较。为了显示该技术的适用性,分析了铝平板样品在热负荷下的响应。首先,使用实验测量的温度曲线生成板的有限元模型。从有限元模型获得的应变和位移值用于模拟模型光学部分的相位图。然后将模拟的相图与使用剪切成像法测量的实验相图进行定性比较。此方法适合于了解负载下组件的响应并预测异常(例如缺陷),从而使对测得的相位图的分析更加容易,而且经验不足。

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