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Nondestructive inverse approach for determining thermal and geometrical properties of internal defects in CFRP composites by lock-in thermography

机译:用于通过锁定热成像确定CFRP复合材料中内部缺陷的热和几何特性的非破坏性逆方法

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Resolution approach of an inverse problem by lock-in thermography was developed for research geometric and thermal properties of internal defects, which are found in composites (CFRP), as depth, size, thermal conductivity and heat capacity. We have developed a new hybrid algorithm that uses the adaptive simulated annealing algorithm and the generalized patterns search algorithm to calculate the depth, size, thermal conductivity and heat capacity of defects. The gaps between results and literature values are very small, they do not exceed 4%. For optimizing the inverse problem objective function, the proposed algorithm has converged faster than literature algorithms.
机译:开发了通过锁定热成像的逆问题的分辨率接近内部缺陷的研究几何和热性质,其在复合材料(CFRP)中,作为深度,尺寸,导热性和热容量。我们开发了一种新的混合算法,使用自适应模拟退火算法和广义模式搜索算法来计算深度,尺寸,导热性和缺陷的热容量。结果和文学价值之间的差距非常小,它们不超过4%。为了优化逆问题目标函数,所提出的算法融合得比文献算法快。

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