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- 00:00:00,000 --> 00:00:02,060
- 220千伏断路器
- 2
- 00:00:02,060 --> 00:00:05,960
- 采用气吹压力与开断电流自适应熄弧原理
- 3
- 00:00:05,960 --> 00:00:08,693
- 继承了压气式断路器的结构优点
- 4
- 00:00:08,693 --> 00:00:11,583
- 具有尽可能少的灭弧室零部件
- 5
- 00:00:11,583 --> 00:00:14,478
- 使产品具有高的电气可靠性
- 6
- 00:00:14,480 --> 00:00:18,630
- 触头和弧触头均采用一体烧结式铜钨触头
- 7
- 00:00:18,630 --> 00:00:20,680
- 具有良好的机械防变形
- 8
- 00:00:20,680 --> 00:00:24,893
- 和耐弧能力高 烧损较小 电寿命长
- 9
- 00:00:24,894 --> 00:00:27,229
- 它静动触头紧密插接
- 10
- 00:00:27,229 --> 00:00:30,234
- 动气缸的气缸喷头长于动触头
- 11
- 00:00:30,234 --> 00:00:32,440
- 静触头插入到动气缸中
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- 00:00:32,440 --> 00:00:34,787
- 且和静气缸紧密连接
- 13
- 00:00:34,788 --> 00:00:36,593
- 当断路器分闸时
- 14
- 00:00:36,593 --> 00:00:39,023
- 动触头向下运动的同时
- 15
- 00:00:39,023 --> 00:00:41,053
- 带动动气缸一起运动
- 16
- 00:00:41,053 --> 00:00:42,854
- 随着气缸空间的缩小
- 17
- 00:00:42,854 --> 00:00:46,108
- 气缸里的六氟化硫气体被压缩
- 18
- 00:00:46,108 --> 00:00:48,413
- 首先分离的是动静触头
- 19
- 00:00:48,413 --> 00:00:51,318
- 分开瞬间由于距离小且电压高
- 20
- 00:00:51,318 --> 00:00:52,548
- 会击穿绝缘
- 21
- 00:00:52,548 --> 00:00:53,934
- 拉出电弧
- 22
- 00:00:53,935 --> 00:00:55,585
- 随着运动的继续
- 23
- 00:00:55,585 --> 00:00:58,065
- 当静触头离开动气缸时
- 24
- 00:00:58,065 --> 00:01:00,268
- 对动气缸的密闭会被打开
- 25
- 00:01:00,268 --> 00:01:04,253
- 气缸里压缩的高压气体通过喇叭口气缸喷嘴
- 26
- 00:01:04,253 --> 00:01:05,733
- 形成爆炸式喷发
- 27
- 00:01:06,295 --> 00:01:09,855
- 1.由于六氟化硫气体具有高负性
- 28
- 00:01:09,855 --> 00:01:11,780
- 能够迅速吸收电子
- 29
- 00:01:11,780 --> 00:01:13,855
- 形成高浓度负离子空间
- 30
- 00:01:13,855 --> 00:01:15,681
- 阻碍了电子流通
- 31
- 00:01:15,682 --> 00:01:18,695
- 2.加上爆炸式横向冲击
- 32
- 00:01:18,695 --> 00:01:22,962
- 3.外加冷的高压气体冲击冷却炙热的电弧
- 33
- 00:01:22,962 --> 00:01:26,508
- 4.以及动静触头分离的距离增大
- 34
- 00:01:26,508 --> 00:01:29,428
- 5.优良的适宜的气流特性
- 35
- 00:01:29,428 --> 00:01:33,508
- 使其开断感性电流几乎无截流过电压波形
- 36
- 00:01:33,509 --> 00:01:34,789
- 5个条件下
- 37
- 00:01:34,789 --> 00:01:36,774
- 当电流波形过零时
- 38
- 00:01:36,774 --> 00:01:38,394
- 电弧迅速熄灭
- 39
- 00:01:38,394 --> 00:01:39,224
- 消散
- 40
- 00:01:39,224 --> 00:01:41,802
- 从而完成了媳弧灭弧的功能
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