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Deformation and fracture of a directionally solidified NiAl-28Cr-6Mo eutectic alloy

机译:定向凝固NiAl-28Cr-6Mo共晶合金的变形和断裂

摘要

A directionally solidified alloy based on the NiAl-(Cr, Mo) eutectic was examined by transmission and scanning electron microscopy to characterize the microstructure and room temperature deformation and fracture behavior. The microstructure consisted of a lamellar morphology with a group of zone axes (111) growth direction for both the NiAl and (Cr, Mo) phases. The interphase boundary between the eutectic phases was semicoherent and composed of a well-defined dislocation network. In addition, a fine array of coherent NiAl precipitates was dispersed throughout the (Cr, Mo) phase. The eutectic morphology was stable at 1300 K with only coarsening of the NiAl precipitates occurring after heat treatment for 1.8 ks (500 h). Fracture of the aligned eutectic is characterized primarily by a crack bridging/renucleation mechanism and is controlled by the strength of the semicoherent interface between the two phases. However, contributions to the toughness of the eutectic may arise from plastic deformation of the NiAl phase and the geometry associated with the fracture surface.
机译:通过透射电子显微镜和扫描电子显微镜检查了基于NiAl-(Cr,Mo)共晶的定向凝固合金,以表征其微观结构和室温变形及断裂行为。显微组织由层状形态组成,NiAl和(Cr,Mo)相均具有一组区域轴(111)生长方向。共晶相之间的相间边界是半相干的,并且由明确定义的位错网络组成。此外,精细的相干NiAl沉淀物阵列分散在整个(Cr,Mo)相中。共晶形态在1300 K下稳定,热处理1.8 ks(500 h)后仅出现NiAl沉淀的粗化。取向共晶的断裂主要以裂纹桥接/疏松机制为特征,并由两相之间的半相干界面的强度控制。然而,对共晶韧性的贡献可能来自于NiAl相的塑性变形以及与断裂表面相关的几何形状。

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