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Comparison of Spring Models for Dynamic Analysis of a High Voltage Circuit Breaker with a Spring Operating Mechanism

机译:具有弹簧操作机构的高压断路器动态分析的弹簧模型比较

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Because the performance of a circuit breaker mainly depends on the spring operating mechanism, an analysis of the spring operating mechanism is required for advanced designs. The spring, especially the closing spring, stores deformation energy from compression and then accelerates the load rapidly within the circuit breaker. To carry out a kinematic and dynamic analysis of circuit breakers, an accurate modeling of spring behavior is required. In this paper, the static stiffness of the spring was captured by using a material testing machine. Sine-wave excitation tests, which were based on several amplitudes, were performed to find out the spring's characteristics. The test results were then used to model the spring in a computer simulation. Three types of spring models-a linear spring model, a modal spring model, and a nodal spring model-were made and compared to experimental results. Numerical results were also compared to experimental results. Numerical accuracy was verified as well as the efficiency of the experiment. In addition, a simple mechanism similar to the spring operating mechanism was designed to generate the release motion of the spring. A high-speed camera was used to capture the behavior of the spring. The release simulation results were compared to experimental results. Finally, a circuit breaker simulation was carried out to compare the performances of the spring models.
机译:由于断路器的性能主要取决于弹簧操作机构,因此高级设计需要对弹簧操作机构进行分析。弹簧,特别是闭合弹簧,存储来自压缩的变形能量,然后在断路器内迅速加速负载。为了进行断路器的运动学和动态分析,需要对弹簧性能进行精确建模。在本文中,通过使用材料测试机来捕获弹簧的静态刚度。进行了基于多个振幅的正弦波激励测试,以找出弹簧的特性。然后将测试结果用于在计算机仿真中对弹簧建模。制作了三种类型的弹簧模型:线性弹簧模型,模态弹簧模型和节点弹簧模型,并与实验结果进行了比较。数值结果也与实验结果进行了比较。验证了数值准确性以及实验效率。另外,设计了类似于弹簧操作机构的简单机构以产生弹簧的释放运动。使用高速相机捕获弹簧的行为。将释放模拟结果与实验结果进行比较。最后,进行了断路器仿真以比较弹簧模型的性能。

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