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首页> 外文期刊>Structural health monitoring >Ultrasonic high-frequency guided waves for the inspection of shell weld in core support structure of fast breeder reactors
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Ultrasonic high-frequency guided waves for the inspection of shell weld in core support structure of fast breeder reactors

机译:超声高频导波检查快中子增殖堆堆芯支撑结构壳焊缝

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This article reports an ultrasonic high-frequency guided wave based methodology for inspection of shell weld of core support structure of the main vessel in 500-MWe sodium-cooled prototype fast breeder reactor. The high-frequency guided waves are generated in 30-mm-thick plate of core support structure at 2MHz (frequency-thickness product of approximate to 60MHz-mm). These wave modes are fairly nondispersive over considerable distance of propagation through the material. In order to understand the generation and propagation characteristics of these high-frequency guided waves, a series of two-dimensional plane strain finite element models are developed using explicit scheme. The optimum transducer placement for generating efficient high-frequency guided wave is achieved by sweeping the transducer position along the curvature of the main vessel plate with respect to the centerline of the vertical shell support plate. The generated high-frequency guided waves are analyzed and identified with the help of dispersion curves and time-frequency analysis. The simulation results are found to capture the features observed in the experimental measurements rather well, and the time of flight of the reflected waves in the simulation is found to be in excellent agreement with the experimental results. The optimum transducer locations for inspection of a general T-joint configuration with different angles between the web and the base have been studied in detail using finite element simulations. With optimum transducer position, the high-frequency guided waves are also used to inspect the artificially introduced defects in the connecting weld of shell support plate. It has been demonstrated that the high-frequency guided wave could detect defects of 20% wall thickness (6mm) in the connecting shell weld.
机译:本文报道了一种基于超声高频导波法的方法,该方法用于检查500 MWe钠冷原型快中子增殖堆中主容器堆芯支撑结构的壳体焊接。高频导波在核心支撑结构的30毫米厚的平板中以2MHz的频率产生(频率厚度乘积约为60MHz-mm)。这些波模在通过材料的相当大的传播距离内​​是相当不分散的。为了理解这些高频导波的产生和传播特性,使用显式方案开发了一系列二维平面应变有限元模型。通过沿主容器板的曲率相对于垂直壳体支撑板的中心线扫掠换能器位置,可以实现产生有效的高频导波的最佳换能器位置。借助色散曲线和时频分析对生成的高频导波进行分析和识别。发现仿真结果很好地捕获了在实验测量中观察到的特征,并且发现在仿真中反射波的飞行时间与实验结果非常吻合。使用有限元模拟,已经详细研究了用于检查腹板和底座之间不同角度的一般T型接头配置的最佳换能器位置。在最佳换能器位置的情况下,高频导波还用于检查壳体支撑板连接焊缝中人为引入的缺陷。已经证明,高频导波可以检测到连接壳焊缝中壁厚为20%(6mm)的缺陷。

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