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Numerical shape identification of cavity in three dimensions based on thermal non-destructive testing data

机译:基于热非破坏性测试数据的三维腔的数值形状识别

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Shape identification analysis is carried out to obtain hitherto unknown defect shapes in a structure, based on the finite element and the adjoint variable methods. In this study, a test piece incorporating a known defect shape was employed to solve the shape identification problem. Also reported in this study is the shape identification problem of a cavity in a heated resin test piece made using a 3D printer by employing the temperature pattern observed on the surface of the test piece. The surface temperature of a test piece will not be uniformly distributed if it contains cavities. Practical experiments have confirmed that the characteristic of the temperature distribution depends on the size of the cavity. The thermal physical constants, i.e. the thermal conductivity and the convection coefficient, were identified for a model of the test piece incorporating a cavity based on the experimental data. Shape identification analysis was then carried out. Using numerical analysis, the finite element method was applied to simulate the temperature distribution in the test piece, and the adjoint variable method was employed to identify the cavity's shape.
机译:进行形状识别分析以基于有限元和伴随变量方法在结构中获得迄今为止未知的缺陷形状。在该研究中,采用包含已知缺陷形状的测试件来解决形状识别问题。在本研究中还报道的是通过采用在试验片表面上观察到的温度模式来使用3D打印机制成的加热树脂试验件中的腔体的形状识别问题。如果含有空腔,试验件的表面温度不会均匀分布。实际实验证实,温度分布的特性取决于腔的尺寸。热物理常数,即导热系数和对流系数,用于基于实验数据的试验片的模型识别出腔的模型。然后进行形状鉴定分析。使用数值分析,应用有限元方法来模拟试验片中的温度分布,采用伴随变量方法来识别腔形状。

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