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Post-mortem analysis of ITER CS helium inlets fatigue tested at cryogenic temperature

机译:在低温下测试的ITER CS氦气入口疲劳的事后分析

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摘要

In the ITER Magnet System, ten thousand tonnes of superconducting Cable In Conduit Conductor (CICC) are cooled down by a forced flow of supercritical helium, which is supplied from helium inlets. For the ITER Central Solenoid (CS), consisting of six independent pancake wound modules, the He inlets consist of three overlapping holes covered by an oblong shaped boss, welded to the CS jacket through full penetration, multi-pass Tungsten Inert Gas (TIG) welding. Since they are located in a region of high cyclic tensile stresses, i.e. first turn at the inner diameter of the pancake, the CS inlets are one of the most critical structural components. Qualification of the design is done by analysis and a comprehensive design optimization has been performed by finite element (FE) simulations. In order to guarantee the required fatigue life at cryogenic temperature of these component, a post - welding process consisting in ultrasonic shot - peening is required. Based on a qualified weld procedure, six mock - ups including each two He - inlets on the opposite surfaces have been produced to run a mechanical fatigue testing program at cryogenic temperature to validate the findings of the FE simulations. Five were peened and one not peened. The paper describes the results of a comprehensive post - mortem failure analysis which includes non -destructive (penetrant testing, leak testing, X-ray computed tomography) as well as destructive examinations (microoptical and hardness tests, scanning electron microscopy). The initiation site, propagation of the crack as well as the tensile overload region have been identified and studied. An estimation of the cycles from initiation to failure based on the width of the fatigue striations was performed. The paper also includes a full assessment of the welds according to the most stringent acceptance levels of the standards in force.
机译:在ITER磁铁系统中,通过从氦气入口提供的超临界氦气的强制流动,冷却了1万吨超导导管电缆(CICC)。对于由六个独立的薄煎饼缠绕模块组成的ITER中央电磁阀(CS),氦气入口包括三个重叠的孔,这些孔由一个椭圆形凸台覆盖,并通过全渗透,多通道钨极惰性气体(TIG)焊接到CS护套上焊接。由于它们位于高周期性拉伸应力的区域中,即在薄饼的内径处首先弯曲,因此CS入口是最关键的结构组件之一。通过分析来确定设计的资格,并通过有限元(FE)仿真来进行全面的设计优化。为了保证这些部件在低温下所需的疲劳寿命,需要进行包括超声波喷丸处理在内的焊后工艺。根据合格的焊接程序,已经制作了六个模型,包括在相对表面上的每个两个He-入口,以在低温下运行机械疲劳测试程序,以验证有限元模拟的结果。五个被喷丸,一个未被喷丸。本文描述了全面的事后故障分析结果,包括无损(渗透测试,泄漏测试,X射线计算机断层扫描)以及破坏性检查(微光学和硬度测试,扫描电子显微镜)。已经确定并研究了起始位置,裂纹扩展以及拉伸过载区域。根据疲劳条纹的宽度,估计了从开始到失效的周期。该文件还根据现行标准中最严格的验收标准对焊缝进行了全面评估。

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