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Influence of Directional Solidification on the Creep Properties of a Binary NbSi Eutectic Alloy

机译:定向凝固对二元NbSi共晶合金蠕变性能的影响

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摘要

The influence of directional solidification (DS) on the creep properties of the binary NbSi eutectic, Nb-18 at.% Si, consisting of Nb solid solution and the Nb3Si silicide phase, is investigated. It is comparatively assessed with an identical alloy composition produced by means of powder metallurgy (PM). The creep behavior is determined for both materials for temperatures up to 1400A degrees C and stresses up to 150 MPa. It is found that the DS process leads to an outstanding improvement of the creep resistance of about three orders of magnitude in terms of minimum creep rate; this significant difference can mainly be attributed to the different sizes of microstructural features (phase size in PM versus cell size in DS material). Diffusional creep may be the responsible creep mechanism in both the PM and the DS material. The activation energies that are responsible for the temperature dependence of creep are found to be very high compared with literature data. It is believed that the contribution of the two phases leads to this high creep activation energy. Comparison with a state-of-the-art single-crystalline nickel-based superalloy (CMSX 4) underpins the outstanding improvement of the creep resistance of DS NbSi eutectics.
机译:研究了定向凝固(DS)对由Nb固溶体和Nb3Si硅化物相组成的二元NbSi共晶Nb-18 at。%Si的蠕变性能的影响。使用粉末冶金(PM)生产的相同合金成分对它进行比较评估。确定了两种材料在最高1400A的温度和最高150 MPa的应力下的蠕变行为。已经发现,DS方法在最小蠕变速率方面导致抗蠕变性显着提高了大约三个数量级。这种显着差异主要归因于微观结构特征的不同大小(PM中的相大小与DS材料中的细胞大小)。扩散蠕变可能是PM和DS材料中负责任的蠕变机制。与文献数据相比,发现引起蠕变温度依赖性的活化能非常高。相信两相的贡献导致这种高的蠕变活化能。与最先进的单晶镍基高温合金(CMSX 4)进行比较,可显着改善DS NbSi共晶体的抗蠕变性。

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