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Detection of interlayer delamination in W monoblock of ITER divertors via electromagnetic acoustic transduction

机译:通过电磁声转换检测WERER VEROCHER中的层间分层

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The W monoblock is one of the key components in divertors of the International Thermonuclear Experimental Reactor (ITER). During fabrication, it is prone to interlayer delamination posing a severe threat to integrity of diverters and safe operation of ITER. This opens up the research of efficient nondestructive evaluation techniques for quality assessment of W monoblock. In this paper, electromagnetic acoustic transduction with full-circumference radial excitation (FREM-EMAT) for detection of interlayer delamination in W monoblock has been intensively investigated via simulations and experiments. The probe parameters including the distance between permanent magnets, magnet type and height of excitation coil, etc and their influence on the transduction efficiency and testing signals are analyzed through semi-analytical modeling. Following this, a series of experiments have been carried out for detection of simulated interlayer delamination in W monoblocks via FREM-EMAT. It can be seen from the results that FREM-EMAT is capable of efficiently detecting the interlayer delamination with the diameter of 1mm in W monoblock, which fulfills the engineering requirement.
机译:W单块是国际热核实验反应器(浸泡)的转向器中的关键部件之一。在制造过程中,它易于中间层分层对分层的完整性和迭代的安全操作构成严重威胁。这开辟了高效非破坏性评价技术的高质量评估技术,为W单块的质量评估。本文通过模拟和实验密集地研究了用于检测W单嵌段中层间分层的全周长径向激发(FREM-EMAT)的电磁声转换。通过半分析建模分析了包括永磁体,磁体型和激励线圈高度的距离和激励线圈高度的距离及其对转导效率和测试信号的影响。在此之后,已经进行了一系列实验,用于通过FREM-EMAT检测W单块中的模拟中间层分层。从FREM-EMAT能够有效地检测具有直径为1mm的WonoBlock的夹层分层,可以看出它可以看出,这使得工程要求具有1mm。

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