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BRAZING OF THE ITER FIRST WALL BY A COPPER-BASED RAPIDLY QUENCHED RIBBON-TYPE FILLER METAL

机译:用铜基快速淬火带状填充金属钎焊第一壁

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As applied to the manufacture of the ITER first wall, a rapidly quenched copper-based filler metal for brazing chromium-zirconium copper alloy (CuCrZr) with beryllium (Be) at temperatures below 720℃ has been selected. The composition of the given filler metal has been optimized by varying the concentration of alloying elements, such as Sn, Ni, and P, improving the filler functional properties and quality. Rapidly quenched ribbon-type filler metals with various contents of alloying elements were investigated by differential thermal and X-ray phase analysis, atomic force microscopy, and scanning electron microscopy. To improve the casting performance of the filler metal and obtain high-quality ribbons, the kinematic viscosity of brazing alloys with various contents of Ni, Sn, and P has been investigated. The chromium-zirconium copper alloy has been brazed with Be using the filler metals obtained (by furnace brazing and fast brazing by passing an electric current). Based on the results of complex research, an ultrafast (quenching rate of~10~5℃/s) quenched brazing alloy STEMET 1101M (Cu-9.1Ni-3.6Sn-8.OP, in weight percent) has been selected and manufactured in the form of a ribbon that is 50 mm in width and 50 μm in thickness. An experimental mock-up of the ITER first wall has been made in D.V. Efremov SRIEA by rapid brazing (by passing a current) using the filler metal STEMET 1101M. The brazed joint has withstood 15 000 cycles of thermocycling under a thermal load of 05 to 5.9 MW/m~2 without breaking.
机译:在ITER第一壁的制造中,已经选择了一种快速淬火的铜基填充金属,用于在低于720℃的温度下用铍(Be)钎焊铬-锆铜合金(CuCrZr)。通过改变合金元素(如Sn,Ni和P)的浓度,优化了给定填充金属的成分,从而改善了填充剂的功能特性和质量。通过差示热和X射线相分析,原子力显微镜和扫描电子显微镜研究了具有各种含量的合金元素的快速淬火带状填充金属。为了提高填充金属的铸造性能并获得高质量的薄带,已研究了各种含量的Ni,Sn和P的钎焊合金的运动粘度。铬-锆铜合金已使用获得的填充金属(通过熔炉钎焊和通过电流通过快速钎焊)与铍钎焊。根据复杂的研究结果,选择并制造了一种超快(淬火速率约10〜5℃/ s)淬火钎焊合金STEMET 1101M(Cu-9.1Ni-3.6Sn-8.OP,以重量百分比计)。宽度为50毫米,厚度为50微米的色带形式。在D.V.中制作了ITER第一壁的实验模型。 Efremov SRIEA通过使用钎料STEMET 1101M进行快速钎焊(通过电流)来实现。钎焊接头在05至5.9 MW / m〜2的热负荷下经受了15 000次热循环而不会破裂。

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