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Over-current performance of movable springs of a latched-type relay used in Watt-hour meters

机译:电能表中使用的闭锁型继电器的可动弹簧的过电流性能

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Latched-type relays used in smart Watt-hour meters need to carry a current some ten times higher than its rated value when a short circuit happens in its testing region. The Holm's repelling force and the static welding are two major challenges faced to the contact system leading by the short circuit current. Movable springs of those relays are usually metal stacks in “V” shape for providing not only additional force to overcome the Holm's repelling force but also tangential motion to break the static welding. Transient electro-thermal coupling analysis was carried out to a typical contact system under a variety of short currents with different lasting time to evaluate the highest temperature rise for the metal stack. Then, thermo-structural model was used to predict, firstly the expansion and elongation degree of the metal stack when the contacting point was set to be free (without welding) and secondly the tangential force exerted on the contacting point when it was set to be fixed (with welding).
机译:当智能电能表中的闩锁型继电器在其测试区域发生短路时,其电流必须比其额定值高十倍。霍尔姆的排斥力和静态焊接是由短路电流导致的接触系统面临的两个主要挑战。这些继电器的活动弹簧通常是“ V”形的金属叠层,不仅可提供克服霍姆推斥力的附加力,而且还可提供切向运动以打破静态焊接。在典型的接触系统中,在各种短电流下,持续时间不同的情况下,进行了瞬态电热耦合分析,以评估金属叠层的最高温升。然后,使用热结构模型来预测:首先,将接触点设为自由(不焊接)时金属叠层的膨胀和伸长程度;其次,当接触点设为零时将施加在接触点上的切向力。固定(带焊接)。

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