高电压技术
高電壓技術
고전압기술
HIGH VOLTAGE ENGINEERING
2009年
10期
2395-2400
,共6页
阎孟昆%罗俊华%杨黎明%郑传宝
閻孟昆%囉俊華%楊黎明%鄭傳寶
염맹곤%라준화%양려명%정전보
抗水树%电力电缆%加速老化%工频击穿电压%绝缘结构%特性
抗水樹%電力電纜%加速老化%工頻擊穿電壓%絕緣結構%特性
항수수%전력전람%가속노화%공빈격천전압%절연결구%특성
water-tree retardant%power cable%accelerated aging%power frequency breakdown voltage%insulating structure%characteristic
为检验电缆材料是否具有抗水树枝能力,建立抗水树枝材料性能试验手段和评价程序,在同一制造厂分别采用5种不同电缆绝缘料,生产同一绝缘结构的电缆,并制作成90个电缆试样.在相同试验条件下,进行14 d负荷循环、120 d加速老化、180 d加速老化、360 d加速老化和480 d加速老化试验,然后对老化前原始样和老化后电缆试样共6种不同老化状态的电缆试样进行工频逐级击穿,试验研究XLPE电力电缆工频击穿特性.试验结果表明:普通电缆绝缘料制造的XLPE电力电缆工频击穿特性相对抗水树电缆绝缘料制造的XLPE电力电缆工频击穿特性存在明显差异,抗水树XLPE电力电缆经过480 d加速老化试验后仍保持较好的工频击穿特性,安全运行寿命较长.
為檢驗電纜材料是否具有抗水樹枝能力,建立抗水樹枝材料性能試驗手段和評價程序,在同一製造廠分彆採用5種不同電纜絕緣料,生產同一絕緣結構的電纜,併製作成90箇電纜試樣.在相同試驗條件下,進行14 d負荷循環、120 d加速老化、180 d加速老化、360 d加速老化和480 d加速老化試驗,然後對老化前原始樣和老化後電纜試樣共6種不同老化狀態的電纜試樣進行工頻逐級擊穿,試驗研究XLPE電力電纜工頻擊穿特性.試驗結果錶明:普通電纜絕緣料製造的XLPE電力電纜工頻擊穿特性相對抗水樹電纜絕緣料製造的XLPE電力電纜工頻擊穿特性存在明顯差異,抗水樹XLPE電力電纜經過480 d加速老化試驗後仍保持較好的工頻擊穿特性,安全運行壽命較長.
위검험전람재료시부구유항수수지능력,건립항수수지재료성능시험수단화평개정서,재동일제조엄분별채용5충불동전람절연료,생산동일절연결구적전람,병제작성90개전람시양.재상동시험조건하,진행14 d부하순배、120 d가속노화、180 d가속노화、360 d가속노화화480 d가속노화시험,연후대노화전원시양화노화후전람시양공6충불동노화상태적전람시양진행공빈축급격천,시험연구XLPE전력전람공빈격천특성.시험결과표명:보통전람절연료제조적XLPE전력전람공빈격천특성상대항수수전람절연료제조적XLPE전력전람공빈격천특성존재명현차이,항수수XLPE전력전람경과480 d가속노화시험후잉보지교호적공빈격천특성,안전운행수명교장.
Ninety pieces of power cable samples with the same insulating structure were made using 5 kinds of insulation materials, and all of the samples were produced by the factory at the same producing process. At the same test condition, all the samples were distributed into 6 groups to form 6 kinds of aging states that depend on different accelerating aging periods. The 6 kinds of aging states of samples included original state, 14 d loading cycle state, 120 d accelerated aging state, 180 d accelerated aging state, 360 d accelerated aging state, and 480 d accelerated aging state. Then, all of the samples were tested one by one to validate their AC breakdown voltage. The test results of AC breakdown voltage test of every sample show that the AC breakdown voltage of samples with common insulation is rather lower than other samples with water-tree retardant insulation. On the other hand, the length and shape inspection of water-tree inside the slice of 6 kinds of samples reveal the observable difference among these samples. That is, the cable with water-tree retardant insulation is safer to meet special operation requirements, and its operation life is much longer.