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Assessment of Residual Stresses in ITER CS Helium Inlet Welds Fatigue Tested at Cryogenic Temperature

机译:在低温温度下评估浸渍CS氦气入口焊缝疲劳疲劳的评估

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The ITER Central Solenoid (CS) consists of six independent wound modules. The cooling of the cable-in-conduit conductor is assured by a forced flow of supercritical He at 4.5 K supplied by He inlets located at the innermost radius of the coil. The inlets consist of a racetrack-shaped boss welded to the outer conduit wall through a full penetration Tungsten Inert Gas (TIG) weld. They are critical structural elements submitted to severe cyclic stresses due to the electromagnetic forces acting on the coils. The weld contour is shape-optimised and locally processed by Ultrasonic Shot Peening (USP), conferring large compressive residual stresses on a subsurface layer of several millimetres thickness to improve fatigue strength. The distribution of the residual stresses and the effect of USP on microstructure and mechanical properties is assessed, with reference to the results of a cryogenic fatigue test campaign, performed on peened and as-welded inlets for comparison.
机译:浸渍中心螺线管(CS)由六个独立的伤口模块组成。电缆导管导体的冷却通过在线圈最内半径的入口处提供的4.5 k的超临界HE的强制流动。入口由梯形凸台组成,通过全渗透钨惰性气体(TIG)焊接焊接到外导管壁。由于作用在线圈上的电磁力,它们是提交给严重循环应力的关键结构元素。焊接轮廓由超声波喷丸(USP)进行形状和局部加工,赋予了几毫米厚度的地下层上的大型压缩残余应力以提高疲劳强度。评估残余应力和USP对微观结构和机械性能的影响,参考低温疲劳试验活动的结果进行喷丸和用作焊接入口进行比较。

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