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Nondestructive Evaluation of Functionally Graded Subsurface Damage on Cylinders in Nuclear Installations Based on Circumferential SH Waves

机译:基于圆周SH波的核设施汽缸功能渐变地下损伤无损评估

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摘要

Subsurface damage could affect the service life of structures. In nuclear engineering, nondestructive evaluation and detection of the evaluation of the subsurface damage region are of great importance to ensure the safety of nuclear installations. In this paper, we propose the use of circumferential horizontal shear (SH) waves to detect mechanical properties of subsurface regions of damage on cylindrical structures. The regions of surface damage are considered to be functionally graded material (FGM) and the cylinder is considered to be a layered structure. The Bessel functions and the power series technique are employed to solve the governing equations. By analyzing the SH waves in the 12Cr-ODS ferritic steel cylinder, which is frequently applied in the nuclear installations, we discuss the relationship between the phase velocities of SH waves in the cylinder with subsurface layers of damage and the mechanical properties of the subsurface damaged regions. The results show that the subsurface damage could lead to decrease of the SH waves’ phase velocity. The gradient parameters, which represent the degree of subsurface damage, can be evaluated by the variation of the SH waves’ phase velocity. Research results of this study can provide theoretical guidance in nondestructive evaluation for use in the analysis of the reliability and durability of nuclear installations.
机译:亚表面损伤可能影响结构的使用寿命。在核工程,无损评估和亚表面损伤区域的评价的检测是非常重要的,以确保核设施的安全。在本文中,我们提议使用圆周水平剪切(SH)波来检测筒状结构的损伤的地下区域的机械性能。表面损伤的区域被认为是功能梯度材料(FGM)和所述气缸被认为是层状结构。 Bessel函数和幂级数技术被采用以解决控制方程。通过在分析SH波的12Cr-ODS铁素体钢筒,其在核设施经常应用中,我们讨论在汽缸中与损伤的地表下层和地下的损坏的机械性能SH波的相速度之间的关系区域。结果表明,亚表面损伤可能导致降低SH波相速度。梯度参数,其表示亚表面损伤的程度,可通过SH波相位速度的变化来进行评价。这项研究的研究成果可以在可靠性和核设施的耐久性分析中使用提供无损评价的理论指导。

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