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Phased Array Detection Parameters for Electron Beam Welds in CFETR Vacuum Vessel Port Stubs

机译:CFETR真空容器端口桩中电子束焊缝的相控阵检测参数

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摘要

The China Fusion Engineering Testing Reactor (CFETR) vacuum vessel (VV) port stub was formed by electron beam welding (EBW). In this article, the phased array ultrasonic testing (PAUT) method was introduced for testing the quality of the weld. First, the acoustic field simulation and analysis of the EBW of 316L austenitic stainless steel were carried out with different frequency probes, then the microstructure of electron beam welds were observed by microscopic metallographic to analyze the influence of the type and influence of probe, finally fabricating the reference test blocks according to the NB/T47013-2015 standard to conducting the PAUT experiment. The test results show that the type of probe has less influence on the signal-to-noise ratio (SNR) and localization of the detection of large-thickness austenitic stainless steel electron beam welds under low-frequency conditions. The SNR of EBW detection was gradually decreased as the frequency of the probe increases under the same type of probe. In the direction of depth of the EBW, with the increase in the depth, the weld microstructure size becomes finer, so the sector scan image of phi 1-mm side drilled hole (SDH) near the upper weld was severely distorted, while the sector scan image of phi 1-mm SDH near the lower EBW was relatively good.
机译:中国聚变工程测试反应堆(CFETR)真空容器(VV)端口短管是通过电子束焊接(EBW)形成的。本文介绍了相控阵超声测试(PAUT)方法来测试焊缝质量。首先用不同频率的探针对316L奥氏体不锈钢的EBW进行了声场模拟和分析,然后用显微金相观察电子束焊缝的显微组织,以分析探针的类型和影响,最后制成根据NB / T47013-2015标准的参考测试块进行PAUT实验。测试结果表明,探头类型对低频条件下大厚度奥氏体不锈钢电子束焊缝的信噪比(SNR)和检测局部化的影响较小。在相同类型的探头下,随着探头频率的增加,EBW检测的SNR逐渐降低。在EBW的深度方向上,随着深度的增加,焊缝的显微组织尺寸变细,因此上焊缝附近的φ1 mm侧孔(SDH)的扇形扫描图像严重变形,而扇形较低EBW附近的phi 1-mm SDH的扫描图像相对较好。

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