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Microstructure and Creep Behavior of Casting and Rolling GH4169 Superalloy after Long-term Aged

机译:长期老化后铸造和轧制GH4169超合金的微观结构和蠕变行为

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By means of the long-term aging treated, creep properties measuring and microstructure observation, an investigation has been made into the microstructure and creep behavior of the casting and rolling GH4169 superalloy after long-term aged. Results show that, after the casting and rolling GH4169 superalloy treated by long-term aged, significant amount of gamma" phase are dispersedly precipitated within the grains of the alloy, and some of the NbC, Cr_7C_3 carbide are distributed along the grain boundaries. In the range of the applied stresses and temperatures, the creep activation energies and stress exponents of LTA GH4169 alloy during steady state creep are calculated to be Q=541.1kJ/mol and n=16.2, respectively. During creep, the deformation mechanism of LTA GH4169 is thought to be the twinning and dislocation slipping within the twinning regions, and the damaging mode of the alloy is the intergranular fracture, and the non-smooth crystal surface is displayed in the fracture regions of the alloy. Thereinto, the carbides film formed along the grain boundaies has a few effect on the strength between the boundaries, which is a main reason of resulting in the alloy possessing a longer creep lifetimes.
机译:通过长期老化处理,蠕变性能测量和微观结构观察,在长期老化后,已经进入了铸造和轧制GH4169超合金的微观结构和蠕变行为。结果表明,在通过长期老化处理的铸造和轧制GH4169超合金之后,在合金的晶粒内分散沉淀的大量γ“相,并且一些Nbc,Cr_7c_3碳化物沿着晶界分布。在稳定状态蠕变期间LTA GH4169合金的施加应力和温度,蠕变激活能量和应力指数的范围分别计算为Q = 541.1kJ / mol,n = 16.2。在蠕变期间,LTA GH4169的变形机制被认为是孪晶区域内的孪晶和脱位,并且合金的破坏模式是骨间骨折,并且非光滑的晶体表面显示在合金的断裂区域中。其中,碳化物膜形成谷物界限对边界之间的强度产生了一些影响,这是产生具有较长蠕变寿命的合金的主要原因。

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