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Oxidation behaviour of a next generation polycrystalline Mn containing Ni-based superalloy

机译:下一代含Ni基高温合金的多晶Mn的氧化行为

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摘要

A prototype next-generation superalloy containing 1 at.% Mn was oxidised in air at 800 degrees C for 100 h, and compared with a commercial Ni-based superalloy. The oxide scale consisted of a multi-phase layered structure measured by Atom Probe Tomography as uppermost NiCr2Mn2O4, followed by an inhomogeneous mix of Cr2O3, spinel MnCr2O4 and rutile (Ti,Cr)O-2. The Mn did not form a homogeneous, surface passivating oxide layer. Despite this, the alloy showed a 3 x reduction of oxide thickness compared to a commercial polycrystalline Ni-based superalloy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:含有1 at。%Mn的下一代下一代超合金原型在800℃的空气中被氧化100 h,并与商用的Ni基超合金进行了比较。氧化物鳞片由多相层状结构组成,该结构通过原子探针断层扫描法测量为最高NiCr2Mn2O4,然后是Cr2O3,尖晶石MnCr2O4和金红石(Ti,Cr)O-2的不均匀混合物。 Mn没有形成均匀的表面钝化氧化物层。尽管如此,与市售的多晶镍基高温合金相比,该合金的氧化物厚度却降低了3倍。 (C)2015 Elsevier Ltd.保留所有权利。

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