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M3B2-type borides effect on the wide gap brazing of K417G alloy with mixed powder

机译:M3B2型硼化物对混合粉的K417G合金宽隙钎焊

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Aerospace components are often exposed to high temperature and high pressure, which may cause relatively large wear zones. The effective repair of wide gaps is an important requirement of industrial production. In this study, a gap (width of 20 mm) was bonded by wide gap braze (WGB) technology. The Ni-based K417G alloy was used as the base metal, and a mixture of low-melting boron-containing nickelbased alloy powder and high-melting nickel-based alloy powder (similar to the base metal composition) was used as the filler material for the repair. Desired mechanical properties of the repaired joint were obtained by controlling the microstructure and the content of M3B2-type borides in the bonding layer, and by altering the size, morphology, and distribution of these boride particles. The K417G alloy repaired by sintering at 1200 degrees C exhibited a tensile strength of 971 MPa, completely exceeding the strength of the base metal (935 MPa). The microstructures of the joints were examined and found to include 97.56% equiaxed/spherical gamma + gamma' matrix with 2.44% dispersed M3B2-type boride precipitates (similar to 1.4 mu m). The results indicate that M3B2 boride particles mainly nucleate at the interface of gamma and gamma' phases, and gamma acts as the nucleation point of the high-energy grain boundary. The fine particles of M3B2-type borides are coherently precipitated in-situ in the gamma phase and uniformly dispersed, facilitating excellent repair. (C) 2019 Elsevier B.V. All rights reserved.
机译:航天部件通常暴露于高温和高压,这可能导致相对较大的磨损区。的巨大差距的有效修复是工业生产的重要要求。在这项研究中,间隙(20毫米宽)中的溶液通过宽间隙铜焊(WGB)技术接合。的Ni基合金K417G用作碱金属,和低熔点含硼镍基合金粉末和高熔点镍基合金粉末(类似于基体金属组合物)用作填料材料的混合物修复。经修复关节的期望的机械性能进行了通过控制微观结构和M3B2型硼化物的在粘结层中的含量,以及通过改变尺寸,形态和这些硼化物粒子的分布而获得。通过在1200摄氏度烧结修复K417G合金显示出971兆帕的抗张强度,完全超过基体金属(935兆帕)的强度。接头的显微组织进行了检查,发现包括97.56%等轴/球的γ+伽马”矩阵与2.44%分散M3B2型硼化物析出物(类似于1.4微米)。结果表明,M3B2硼化物颗粒主要在核伽马和γ”相的界面,和γ作为高能量晶界的成核点。 M3B2型硼化物的细颗粒被相干沉淀原位在γ相和均匀地分散,有利于优良修复。 (c)2019 Elsevier B.v.保留所有权利。

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