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AgWC30电接触材料的电弧行为研究
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昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室,昆明贵金属研究所 稀贵金属综合利用新技术国家重点实验室

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国家自然科学(批准号:51267007,51461023,51164015, U1302272)、云南省创新团队(批准号:2012HC027)和云南省自然科学基金(批准号:2010CD126,2012FB195,2015FA035)资助的课题


The research of arc erosion Characteristics of AgWC30 electrical contact material
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Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals,Sate Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metal,Kunming Institute of Precious Metals

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    摘要:

    对电弧基本行为的研究一直是电接触材料领域的研究重点,本研究以AgWC30触头为研究对象,借助高速摄像的手段,观测电触头对在不同工作条件下,电弧行为的基本特征和规律,并进行了定量测量研究。通过扫描电镜对燃弧后触头表面形貌进行分析。结果表明,电弧演化阶段经历起弧,稳定燃烧,迅速熄灭三个过程。起弧阶段存在多点起弧特征,并伴有金属熔滴的喷溅行为,稳定燃烧阶段出现电弧的产生、长大和合并行为,最后电弧迅速熄灭。触头表面存在以WC为骨架覆Ag的大量凸丘与熔桥的产生和断裂行为有密切关系,触头分断过程中熔桥和电弧可同时存在,并存在一定的协助作用。

    Abstract:

    The generation mechanism of arc erosion is a key problem in the research of electric contact materials. Arc erosion characteristics of AgWC30 electrical contact material are investigated under direct current 25A and voltage in 20V, 25V, 30V, 35V respectively. The images of breaking arc light are obtained by a high-speed camera to deduce the forming regularity of arc evolution. The arc formation processes in different voltages are similar and go through three stages, including forming stage, steady burning and discharge quenching stage. On the other hand, the bullet-shaped convex, pore, crack and starchiness coagulum structure are observed on erosion surface of contacts under scanning electron microscopy (SEM). The bullet-shaped convex is formed in the break off of liquid bridge and is formed by the WC skeleton and Ag cladding. The results indicate that the liquid bridges occur allowing with the arc discharges and is promoted under the action of the arc heat flow.

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任县利,陈松,李慕阳,谢明,陈静洪,王塞北,李爱坤,刘满门. AgWC30电接触材料的电弧行为研究[J].稀有金属材料与工程,2017,46(11):3345~3351.[Ren Xianli, Chen Song, Li Muyang, Xie Ming, Chen Jinghong, Wang Saibei, Li Aikun, Liu Mangmeng. The research of arc erosion Characteristics of AgWC30 electrical contact material[J]. Rare Metal Materials and Engineering,2017,46(11):3345~3351.]
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  • 收稿日期:2015-08-25
  • 最后修改日期:2015-12-17
  • 录用日期:2016-01-14
  • 在线发布日期: 2017-12-13
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