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首页> 外文期刊>Nondestructive Testing and Evaluation >Ultrasonic detection of contour node represented voids and cracks
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Ultrasonic detection of contour node represented voids and cracks

机译:轮廓节点的超声波检测表示空隙和裂缝

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摘要

In current evaluation of ancient stone monuments, 2-D ultrasonic tomography is widely used. The detection result, however, has deviation in the location and the shape since the ultrasonic velocity of voids and cracks area change much more drastic than the healthy parts. Base on the homogeneous material assumption, a contour node representation is therefore proposed fitting the best defect shape and location. With the contour node representation, a quick ray tracing method is proposed. This inverse problem is solved under the Bayesian framework in which we use Markov chain Monte Carlo to search the global optimal result. Through applying more prior knowledge to the model and the quick ray tracing model, the computational cost of the inverse process is highly reduced. Compared to the ultrasonic tomography result, the proposed method has more accurate location and shape in 2-D inspection. Finally, the laboratory experiment also tests the ability of the proposed method.
机译:在目前对古代石纪念碑的评价中,二维超声波断层扫描被广泛使用。 然而,检测结果在位置和形状中具有偏差,因为空隙和裂缝区域的超声速度变化得比健康部件更加激烈。 基于均质材料假设,因此提出了一种轮廓节点表示,其适用于最佳缺陷形状和位置。 利用轮廓节点表示,提出了一种快速扫描方法。 在贝叶斯框架下,我们使用马尔可夫链蒙特卡洛搜索全局最优结果的这种反问题。 通过将更多的先验知识应用于模型和快速射线跟踪模型,逆过程的计算成本高度降低。 与超声波断层扫描结果相比,所提出的方法在2-D检查中具有更准确的位置和形状。 最后,实验室实验还测试了所提出的方法的能力。

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