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The effect of boron and alpha grain size on the massive transformation in Ii-46Al-8Nb-xB alloys

机译:硼和α晶粒尺寸对Ii-46Al-8Nb-xB合金大规模转变的影响

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Samples of Ti~46Al-8Nb containing up to 1 at. percent B have been examined using optical microscopy after cooling over a wide range of cooling rates from the a phase field in order to understand the influence of boron and grain size on the massive transformation. The grain size of the samples was controlled either by varying the boron level or by appropriate processing of B-free and B-containing alloys. The results show that the addition of boron suppresses the feathery and the Widmanstatten transformation. The massive transformation and the lamellar transformation are strongly influenced by prior a grain size independent of whether the grain size was achieved by heat treatment or by addition of boron. In finegrained samples the range of cooling rates over which the massive transformation occurs is restricted by formation of the lamellar microstructure at high cooling rates. These observations are discussed in terms of the factors controlling the nucleation and the progression of these transformations.
机译:Ti〜46Al-8Nb样品中最高含1 at。为了了解硼和晶粒尺寸对大相变的影响,在从a相场开始的宽范围冷却速率下冷却后,使用光学显微镜检查了B的百分含量。通过改变硼含量或通过适当处理无硼和含硼合金来控制样品的晶粒尺寸。结果表明,硼的添加抑制了羽状转变和维德曼斯坦转变。先前的晶粒尺寸强烈影响块状相变和层状相变,而与晶粒尺寸是通过热处理还是通过添加硼来获得无关。在细颗粒样品中,发生大相变的冷却速率范围受到高冷却速率下层状微结构的形成的限制。根据控制这些转变的成核和进展的因素讨论了这些观察结果。

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