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Investigations on Failure of Electromagnetic Brake units of Motors used in Critical Applications of Sodium Cooled Fast Breeder Reactor

机译:钠冷快中子增殖堆关键应用中的电动机电磁制动装置故障研究

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In sodium cooled Fast Breeder Reactors; power control is achieved through control rods which are driven by Induction motor with Electromagnetic brake. The motor will be energised upon release of brake unit. The brake coil will be energised to release the brake. The coil is of 48 V DC. If the brake is not released properly due to low flux developed in the brake coil, inter-turn short, liner wear; then there is a chance of Induction Motor getting damaged due to high frequency Surge generated due to interruption of locked rotor current. Hence the performance of brake unit in this application is highly critical. Voltage build-up time for brake power supply is checked. Magnetic field developed by various EM brake units has been measured and plotted as a function of applied voltage. Brake coil has been modelled in FEMM and Electromagnetic Finite Element Analysis has been carried out for determining the number of turns and fill factor of the coil. Brake unit has been dismantled and the effect of brake liner and the friction plate on pulling force of coil is observed. The same has been simulated in FEMM for computing the EM force on movable armature (disk) at various distances from the brake coil. Experiments and simulation results were used for diagnosing the cause of non-release of the EM brake. This paper discuses various causes of failure to the brake unit and to avoid recurrence of similar failure event.
机译:在钠冷却的快速繁殖反应堆中;通过控制杆实现功率控制,控制杆由带有电磁制动器的感应电动机驱动。释放制动单元后,电动机将通电。制动线圈将通电以释放制动。线圈为48 V DC。如果由于制动线圈中产生的低通量而无法正确释放制动器,则匝间短路,衬套磨损;则高频电动机可能会损坏感应电动机,这是由于锁定转子电流的中断而产生的电涌。因此,在此应用中,制动单元的性能至关重要。检查制动电源的电压建立时间。测量了各种EM制动单元产生的磁场,并将其绘制为施加电压的函数。制动线圈已在FEMM中建模,并且进行了电磁有限元分析,以确定线圈的匝数和填充系数。拆下制动单元,观察制动衬片和摩擦片对线圈拉力的影响。在FEMM中已经进行了相同的模拟,以计算在距制动线圈不同距离的可移动电枢(磁盘)上的EM力。实验和模拟结果用于诊断EM制动器未释放的原因。本文探讨了制动单元故障的各种原因,并避免了类似故障事件的再次发生。

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