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首页> 外文期刊>Journal of Materials Processing Technology >Vacuum brazing of Inconel 600 sleeve to 316L stainless steel sheath of mineral insulated cable
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Vacuum brazing of Inconel 600 sleeve to 316L stainless steel sheath of mineral insulated cable

机译:将Inconel 600套管真空钎焊到矿物绝缘电缆的316L不锈钢护套

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摘要

In mineral insulated (MI) triaxial cables for detectors, the 200 μm thick zirconiated copper conductors are sheathed with 200 μm thick 316L stainless steel (SS). The process conditions for high-temperature vacuum brazing of Inconel 600 sleeves to 316L SS cable sheath, with a radial gap of 125-150 μm between them, has been optimised using 40 μm thick nickel-base BNi2 brazing alloy. The brazed joints, which were subjected to thermal cycling between 473 and 923 K over 50 thermal cycles to simulate the high-temperature operating conditions, was found to have adequate tensile strength similar to those in the as-brazed condition. During tensile testing, failure occurs in the cable sheath in all cases. The leak tightness of the brazed joints, in as-brazed and thermal-cycled conditions, both before and after tensile testing is also found to be satisfactory.
机译:在用于探测器的矿物绝缘(MI)三轴电缆中,200μm厚的氧化锆铜导体包裹有200μm厚的316L不锈钢(SS)。使用40μm厚的镍基BNi2钎焊合金优化了Inconel 600套管到316L SS电缆护套的高温真空钎焊的工艺条件,它们之间的径向间隙为125-150μm。已发现,在50个热循环中经受了473至923 K的热循环以模拟高温操作条件的钎焊接头具有足够的抗拉强度,与在钎焊条件下相似。在拉伸测试期间,所有情况下电缆护套都会发生故障。在拉伸试验之前和之后,在钎焊和热循环条件下,钎焊接头的密封性也令人满意。

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