The development of argon arc brazing with Cu-based filler for ITER thermal anchor attachment

Z.C. Sun, P.Y. Lee, C. Pan, B. Hou, S. Han, Y. Pei, W. Long
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引用次数: 3

Abstract

Thermal anchor is the key components of ITER magnet supports to maintain the low temperature for the normal operation of superconducting coils. During the advanced research of ITER thermal anchor attachment, dozens of brazing filler and several kinds of brazing technique have been developed and investigated. Argon arc brazing with Cu-based filler was chosen as the principal method for the attachment of thermal anchor. The brazing temperature of Cu-based filler is over 1000°C,but heat input is relatively low for shallower heating depth of argon arc brazing. Lower heat input is good for the control of brazing deformation. It is no need to clean after brazing because for argon arc brazing there is no brazing flux used. The test result shows that Cu-based alloy have the best mechanical properties at both room temperature and 77K for high brazing temperature. Detail of argon arc brazing with Cu-based filler have been investigated in this article.
ITER热锚连接用铜基钎料氩弧钎焊的研制
热锚是ITER磁体支架维持超导线圈低温正常运行的关键部件。在ITER热锚连接的深入研究过程中,开发和研究了数十种钎焊填料和几种钎焊技术。选择铜基钎料氩弧钎焊作为热锚的主要连接方法。铜基钎料的钎焊温度在1000℃以上,但由于氩弧钎焊加热深度较浅,热输入相对较低。较低的热输入有利于控制钎焊变形。钎焊后不需要清洗,因为氩弧钎焊不使用钎焊剂。试验结果表明,cu基合金在室温和77K高钎焊温度下均具有最佳的力学性能。本文对铜基钎料氩弧钎焊工艺进行了详细研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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