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首页> 外文期刊>Sensors and Actuators, A. Physical >A simple heat diffusion model to avoid singularity in estimating a crack length using sonic infrared inspection technology
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A simple heat diffusion model to avoid singularity in estimating a crack length using sonic infrared inspection technology

机译:一种简单的热扩散模型,以避免使用声波红外检测技术估计裂缝长度的奇点

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Sonic infrared (IR) is a rapidly developing nondestructive evaluation technique for detecting and estimating the length of fatigue cracks in aircraft components. In this study, a spatial and temporal forward analytical solution of a simple 2D heat diffusion model is developed assuming uniform frictional heat generation along the crack. This model not only captures the temperature rise while applying the excitation load, but also captures the temperature decay after the excitation load stops. The simple forward analytical solution is validated in close comparison with 2D and 3D finite element modeling (FEM) results. With a validated forward model, an inversion algorithm is proposed to estimate the crack length independent of heat source values. The use of predetermined heat source function of uniform heat generation along the crack avoids singularity in estimating a crack length while feeding temperature change along but also around the crack to the inversion algorithm. The proposed algorithm showed high accuracy in predicting a crack length using thermal images generated from 2D and 3D FEM data with and without randomly added virtual temperature uncertainties. Moreover, the temperature-based inversion model as a method of estimating a crack length is tested against experimental sonic IR data to illustrate the potential capabilities of advancing this model. (C) 2019 Elsevier B.V. All rights reserved.
机译:声波红外(IR)是一种快速发展的非破坏性评估技术,用于检测和估算飞机组分中的疲劳裂缝长度。在该研究中,假设沿着裂缝的均匀摩擦热产生,开发了简单的2D热扩散模型的空间和时间前向解析解。该模型不仅捕获激励负载的同时捕获温度上升,而且在激励负载停止后捕获温度衰减。与2D和3D有限元建模(FEM)结果关闭相比,验证了简单的前向分析解决方案。利用经过验证的前向模型,提出了一种反演算法来估计与热源值无关的裂缝长度。使用沿着裂缝的均匀发热的预定热源函数避免了估计裂缝长度的奇异性,同时喂养温度沿着曲折算法围绕裂缝。所提出的算法在预测使用由2D和3D FEM数据生成的热图像的裂缝长度来预测裂缝长度的高精度,并且没有随机增加的虚拟温度不确定性。此外,测试基于温度的反转模型作为估计裂缝长度的方法,用于实验性Sonic IR数据,以说明推进该模型的潜在能力。 (c)2019 Elsevier B.v.保留所有权利。

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