1 00:00:00,000 --> 00:00:02,170 现在模拟一下线路控制 2 00:00:02,170 --> 00:00:04,005 合上顶端空气开关 3 00:00:04,005 --> 00:00:06,800 假设此刻得线路状态是分闸位置 4 00:00:06,800 --> 00:00:08,735 分闸指示灯是点亮得 5 00:00:08,735 --> 00:00:10,110 手动合闸时 6 00:00:10,110 --> 00:00:12,570 将转换开关打到手动位置 7 00:00:12,570 --> 00:00:14,115 电到达按钮前端 8 00:00:14,120 --> 00:00:15,580 按下合闸按钮 9 00:00:15,580 --> 00:00:17,265 合闸电磁铁吸合 10 00:00:17,265 --> 00:00:18,565 合闸完成后 11 00:00:18,565 --> 00:00:19,660 松开按钮 12 00:00:19,660 --> 00:00:22,426 此时真空断路器常闭触点分开 13 00:00:22,426 --> 00:00:23,956 常开触点闭合 14 00:00:23,956 --> 00:00:25,916 致使分闸指示灯熄灭 15 00:00:25,916 --> 00:00:27,516 合闸指示灯点亮 16 00:00:27,516 --> 00:00:28,731 手动分闸时 17 00:00:28,733 --> 00:00:30,203 按下分闸按钮 18 00:00:30,203 --> 00:00:31,908 分闸电磁铁吸合 19 00:00:31,908 --> 00:00:33,213 分闸完成后 20 00:00:33,213 --> 00:00:35,148 断路器常开触点分开 21 00:00:35,160 --> 00:00:36,670 常闭触点闭合 22 00:00:36,670 --> 00:00:38,765 致使合闸指示灯熄灭 23 00:00:38,765 --> 00:00:40,325 分闸指示灯点亮 24 00:00:40,325 --> 00:00:42,146 当需要远程分合闸时 25 00:00:42,146 --> 00:00:45,081 只需将转换开关打到远程控制 26 00:00:45,081 --> 00:00:49,326 此时电到达远控箱或自动化控制等远程控制平台的 27 00:00:49,326 --> 00:00:50,280 常开触点 28 00:00:50,280 --> 00:00:55,115 可通过远程异地控制合闸触点和分闸触点实现分合闸 29 00:00:55,115 --> 00:00:56,893 既提升了操作灵活性 30 00:00:56,893 --> 00:00:59,520 更保证了我们操作人员的安全