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Fatigue assessment of the ITER TF coil case based on JJ1 fatigue tests

机译:基于JJ1疲劳测试的ITER TF线圈箱的疲劳评估

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The material of the TF coil case in the ITER requires to withstand cyclic electromagnetic forces applied up to 3 x 10~4 cycles at 4.2 K. A cryogenic stainless steel, JJ1, is used in high stress region of TF coil case. The fatigue characteristics (S-N curve) of JJ1 base metal and welded joint at 4.2 K has been measured. The fatigue strength of base metal and welded joint at 3 x 10~4 cycles are measured as 1032 and 848 MPa, respectively. The design S-N curve is derived from the measured data taking account of the safety factor of 20 for cycle-to-failure and 2 for fatigue strength, and it indicates that an equivalent alternating stress of the case should be kept less than 516 MPa for the base metal and 424 MPa for the welded joint at 3 x 10~4 cycles. It is demonstrated that the TF coil case has enough margins for the cyclic operation. It is also shown the welded joint should be located in low cyclic stress region because a residual stress affects the fatigue life.
机译:在ITER中,TF线圈箱的材料需要承受4.2 K时高达3 x 10〜4个周期的循环电磁力。TF线圈箱的高应力区域使用低温不锈钢JJ1。测量了JJ1母材和焊接接头在4.2 K时的疲劳特性(S-N曲线)。母材和焊接接头在3 x 10〜4个循环下的疲劳强度分别为1032和848 MPa。设计SN曲线是从实测数据得出的,其中考虑到循环失效的安全系数为20,疲劳强度的安全系数为2,这表明,对于箱体,等效的交替应力应保持在516 MPa以下。在3 x 10〜4个循环中,母材和424 MPa的焊接接头。事实证明,TF线圈盒有足够的余量用于循环操作。还显示出焊接接头应位于低循环应力区域,因为残余应力会影响疲劳寿命。

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