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Electromagnetic and mechanical characterisation of ITER CS-MCconductors affected by transverse cyclic loading. III. Mechanicalproperties

机译:受横向循环载荷影响的ITER CS-MC导体的电磁和机械特性三,机械性能

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The magnetic field and current of a coil wound with a cable-in-conduit conductor causes a transverse force pushing the cable to one side of the conduit. This load causes elastic and plastic deformation with friction as well as heating due to friction. A special cryogenic press has been built to study the mechanical and electrical properties of full-size ITER conductors under transverse mechanical loading. The cryogenic press can transmit at 4.2 K cyclic forces of 650 kN/m to conductor sections of 400 mm length representative of the peak load on a 50 kA conductor at 13 T. In order to transmit the force directly onto the cable, the conduit is opened partly to allow the cable deformation. The force acting on the cable as well as the displacement are monitored simultaneously in order to determine the mechanical heat generation due to friction. The mechanical loss under load is investigated for the Nb3Sn, 45 kA, 10 and 13 T, central solenoid model cell conductors (CSMC). The mechanical heat generation is determined from the hysteresis in the measured curves of displacement versus applied force. The first results of the effect of some 40 loading cycles are presented and the two conductors are compared. A significant decrease of the cable mechanical heat generation after loading cycles is observed
机译:缠绕有导管内导体的线圈的磁场和电流会产生横向力,将电缆推向导管的一侧。这种负载会导致摩擦产生弹性和塑性变形,并由于摩擦而发热。为了研究全尺寸ITER导体在横向机械载荷下的机械和电气性能,已经建造了一种特殊的低温压力机。低温压力机可以以4.2 k K的650 kN / m的循环力将其传递到400 mm长的导体部分,该导体部分表示在13 T时50 kA导体上的峰值载荷。为了将力直接传递到电缆上,导管部分打开以使电缆变形。同时监测作用在电缆上的力和位移,以便确定由于摩擦而产生的机械热量。研究了Nb3Sn,45 kA,10和13 T的中央螺线管模型电池导体(CSMC)在负载下的机械损耗。机械热量的产生是根据位移与施加力的测量曲线中的磁滞来确定的。给出了约40个负载循环影响的第一个结果,并比较了两个导体。观察到负载循环后电缆机械发热的显着降低

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