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Finite element analysis of electromagnets and contact systems in low voltage current limiting circuit breakers

机译:低压限流断路器中的电磁体和接触系统的有限元分析

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The magnetic forces generated by short-circuit currents in the fast electromagnet and breaking chamber of a low-voltage current-limiting circuit breaker are computed by a finite-element package. A particular type of electromagnet with a rotating armature is optimized by a combination of experiments and numerical analysis. An analytical expression giving the armature torque as a function of its angle and coil exciting current is deduced from the results of finite-element analysis. This expression is used for the study of the transient state of the electromagnet, providing the evolution of its position, speed, and kinetic energy. The simulated values of armature angle are compared with measured ones. The influence of contact arm arrangement and iron plates of the breaking chamber is investigated by assuming a two-dimensional model.
机译:低压限流断路器的快速电磁铁和分断室中的短路电流所产生的磁力是通过有限元软件包计算的。通过结合实验和数值分析,可以优化具有旋转电枢的特定类型的电磁体。根据有限元分析的结果推导了一个解析表达式,给出了电枢转矩作为其角度和线圈励磁电流的函数。该表达式用于研究电磁体的瞬态,提供其位置,速度和动能的演变。将电枢角的仿真值与实测值进行比较。通过假设二维模型,研究了接触臂布置和破碎室铁板的影响。

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