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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of B content on microstructure and high-temperature stress rupture properties of a high chromium polycrystalline nickel-based superalloy
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Effects of B content on microstructure and high-temperature stress rupture properties of a high chromium polycrystalline nickel-based superalloy

机译:B含量对高铬多晶镍高温合金的微观结构和高温应力破裂性能的影响

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摘要

Effects of boron (B) addition on microstructure and high-temperature stress rupture properties of a heat-treated high chromium polycrystalline Nickel-based superalloy were investigated by adjusting B content (0, 0.016 wt%, 0.048 wt%, 0.09 wt%). The results indicated that the grain boundary characteristics were altered by B addition, such as the morphologies of the MC carbides, M23C6 carbides and precipitation of gamma' particles along grain boundaries. Meanwhile, it was confirmed that B existed in the form of Cr-rich M5B3 borides in the boron-containing alloys. Moreover, boron addition aggravated the inhomogeneity of microstructures, and reduced the volume fraction of secondary gamma' particles. Additionally, the rupture life was remarkably improved as the B content was increased to 0.016 wt%, whilst the elongation tended to improve as the B content was increased to 0.048 wt%. The improvement of stress rupture properties was mainly contributed to the modification of the grain boundary characteristics which retarded crack nucleation and propagation at grain boundaries. However, with excessive addition of B, the stress rupture properties were reduced significantly, as the solid solution strengthening and precipitation strengthening tended to be weakened by B addition, in addition the incipient melting regions and lager size borides promoted the intragranular crack nucleation and propagation. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过调整硼含量(0,0.016 wt%,0.048 wt%,0.09 wt%),研究了硼对热处理高铬多晶镍基高温合金组织和高温持久性能的影响。结果表明,硼的加入改变了合金的晶界特征,如MC碳化物、M23C6碳化物的形貌以及沿晶界析出的γ′粒子。同时,证实了硼以富铬M5B3硼化物的形式存在于含硼合金中。此外,硼的加入加剧了微观结构的不均匀性,降低了二次γ粒子的体积分数。此外,当B含量增加到0.016 wt%时,断裂寿命显著提高,而当B含量增加到0.048 wt%时,伸长率趋于提高。应力断裂性能的改善主要归功于晶界特性的改善,从而延缓了裂纹在晶界的形核和扩展。然而,过量添加硼后,应力断裂性能显著降低,因为固溶强化和沉淀强化倾向于被添加硼削弱,此外,初始熔化区和较大尺寸的硼化物促进了晶内裂纹的形核和扩展。(C) 2020爱思唯尔B.V.版权所有。

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