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Repairing of the defects of the engine vanes of an aeroplane by light beam brazing

机译:通过光束钎焊修复飞机发动机叶片的缺陷

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摘要

The microstructure and hardness distribution of the dispersion strengthened Ni-based alloy ChS88 brazed by light beam in vacuum with the Vpr-42 (Ni-Cr-B-Si system) and PNC-13 (Ni-Cr-Zr system) filler metals were investigated. Because of the diffusion of boron, the brazing filler metal Vpr-42 causes the obvious erosion of the base metal. The analysis of microhardness shows that the hardness distribution of the base metal-transition zone-brazing seam with the Ni-Cr-Zr system filler metal is relatively uniform, and the hardness of the brazing seam with the Ni-Cr-B-Si system filler metal and its transition zone is obviously greater than that of base metal owing to the precipitation of the brittle and hard borides. This shows that when brazed with the Ni-Cr-Zr system filler metal by light beam, the Ni-based alloy joint has better toughness. Under the laboratory conditions, the repair of the surface defects of the vanes by means of light beam vacuum brazing with the Ni-Cr-Zr system filler metal was realized.
机译:在真空中用Vpr-42(Ni-Cr-B-Si体系)和PNC-13(Ni-Cr-Zr体系)填充金属钎焊的弥散强化Ni基合金ChS88的显微组织和硬度分布为调查。由于硼的扩散,钎料Vpr-42引起母材的明显腐蚀。显微硬度分析表明,采用Ni-Cr-Zr系钎料的贱金属过渡带钎焊层的硬度分布比较均匀,采用Ni-Cr-B-Si系钎料的钎焊层的硬度比较均匀。由于脆性和硬质硼化物的沉淀,填充金属及其过渡区明显大于贱金属。这表明当通过光束将Ni-Cr-Zr系填充金属钎焊时,Ni基合金接头具有更好的韧性。在实验室条件下,利用Ni-Cr-Zr体系填充金属通过光束真空钎焊修复了叶片的表面缺陷。

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