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Optimization of Dual Motion Mechanism with Double Grooved Cams for High-voltage Gas Circuit Breaker

机译:高压气体断路器双槽凸轮双运动机构的优化

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A novel design of a dual motion mechanism for a high-voltage gas circuit breaker is presented. The contact motion of the circuit breaker due to the operating mechanism increases capacitive current switching (CCS) performance. CCS is one of the interrupting duties of the circuit breaker, where high voltage is applied during the half cycle from contact separation. The dual motion mechanism drives two contacts in opposite directions from each other. Operating energy is reduced because the maximum displacement of the moving parts linked to the operating mechanism is shortened. To increase CCS performance at lower operating energies, the contact on the opposite side of the contact linked to the operating mechanism requires quick motion in the CCS period with a short displacement. The dual motion mechanism reported here is composed of two grooved cams that cross each other (double grooved cams). A pin positioned at the intersection point of the grooved cams rotates a lever linked to both contacts while changing the lever ratio that shortens the path length of the pin movement. To implement an optimized displacement curve with low operating energy and low mechanical stress while keeping the CCS performance high, a shape optimization method was developed that uses a direct search to minimize the local contact forces acting on the contact positions between the grooved cams and the pin. In order to maintain the stability of the pin in motion, a position holding part was designed by considering size of the gaps between the grooved cams and the pin. The measured displacement curve was in good agreement with the ideal one. In addition, a full-scale prototype was fabricated that successfully passed a 10,000-motion test.
机译:提出了一种用于高压气体断路器的双运动机构的新颖设计。由于操作机制引起的断路器的接触运动增加了电容电流切换(CCS)性能。 CCS是断路器的中断职责之一,其中在从接触分离中施加高电压。双运动机构在彼此相反的方向上驱动两个触点。由于与操作机构连接的移动部件的最大位移而减小,因此缩短了操作能量。为了在较低的操作能量下提高CCS性能,连接到操作机制的接触的相对侧的接触需要在CCS周期内快速运动,短位移。这里报道的双运动机构由两个沟槽凸轮组成,彼此交叉(双槽凸轮)。位于带槽凸轮的交叉点处的销旋转杠杆连接到两个触点的杆,同时改变缩短销移动的路径长度的杠杆比。为了实现具有低操作能量和低机械应力的优化位移曲线,同时保持CCS性能高,开发了一种形状优化方法,其使用直接搜索来最小化作用在沟槽凸轮和销之间的接触位置上的局部接触力。为了保持销的稳定性,通过考虑带槽凸轮和销之间的间隙的尺寸来设计位置保持部分。测量的位移曲线与理想的位移良好。此外,制造了成功通过了10,000次运动试验的满量程原型。

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