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Wide-Gap Brazing of K417G Alloy Assisted by In Situ Precipitation of M3B2 Boride Particles

机译:K417G合金的宽隙钎焊辅助M3B2硼化物颗粒的原位沉淀辅助

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摘要

In this study, K417G Ni-based superalloy with a 20-mm gap was successfully bonded at 1200 °C using powder metallurgy with a powder mixture. The results indicated that the microstructure and mechanical properties of the as-bonded alloy were highly dependent on the brazing time (15–45 min), mainly due to the precipitation and distribution characteristics of M B boride particles. Specifically, alloy brazed for 30 min exhibited desirable mechanical properties, such as a high tensile ultimate strength of 971 MPa and an elongation at fracture of 6.5% at room temperature, exceeding the balance value (935 MPa) of the base metal. The excellent strength and plasticity were mainly due to coherent strengthening and dispersion strengthening of the in situ spherical and equiaxed M B boride particles in the γ + γ′ matrix. In addition, the disappearance of dendrites and the homogenization of the microstructure are other factors that cannot be excluded. This powder metallurgy technique, which can avoid the eutectic transformation of traditional brazing, provides a new effective method for wide-gap repair of alloy materials.
机译:在该研究中,使用粉末混合物在1200℃下成功将K417G Ni的超合金在1200℃下成功键合。结果表明,粘结合金的微观结构和机械性能高度依赖于钎焊时间(15-45分钟),主要是由于M B硼化物颗粒的沉淀和分布特性。具体而言,钎焊30分钟的合金表现出理想的机械性能,例如高温强度为971MPa的强度,并且在室温下的裂缝处的伸长率为6.5%,超过基础金属的平衡值(935MPa)。优异的强度和塑性主要是由于γ+γ'基质中原位球形和等式的M B硼化物颗粒的相干强化和分散。此外,枝晶的消失和微观结构的均质化是不能排除的其他因素。这种粉末冶金技术,可以避免传统钎焊的共晶转化,为合金材料的宽隙修复提供了一种新的有效方法。

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