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Characterization of cold-rolled heterogeneous microstructure formed by multimodal deformation in an Fe-Ni-Al-C alloy with lattice softening

机译:Fe-Ni-Al-C合金中具有晶格软化的多峰变形形成的冷轧非均质组织的表征

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摘要

A heterogeneous microstructure in cold-rolled Fe-24.1Ni-4.06Al-0.43C with lattice softening, where C'=(C-11-C-12)/2 is significantly reduced, was investigated through hierarchical analysis from the macroscale to nanoscale to determine the origin of the ultrahigh-strength and large ductility of the alloy. Microstructural analysis revealed that the heterogeneous microstructure in the developed Fe-based alloy exhibited a mixture of four kinds of morphology, formed through different deformation processes activated by the specific phase stability with lattice softening which arises at the limit of phase stability of austenite (fcc) phase. In addition to the reduced C', the alloy is also characterized by the lowered stacking fault energy (SFE) and decreased the austenite-to-martensite (Ms) transformation temperature down to ambient temperature. These results suggest that both deformation twinning and stress-induced martensitic transformation are activated simultaneously or successively, in addition to dislocation glide, during cold rolling in the present alloy. On the basis of microstructural and mechanical characterization of the cold-rolled specimen, it is reasonable to conclude that the work-hardening induced by cold rolling activates a multimodal deformation mechanism which suppresses the premature failure during plastic deformation at ultrahigh-strength. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过从宏观到纳米的层次分析,研究了冷轧的Fe-24.1Ni-4.06Al-0.43C中具有晶格软化的非均质组织,其中C'=(C-11-C-12)/ 2明显降低。以确定合金的超高强度和大延展性的起源。显微组织分析表明,已开发的铁基合金中的异质组织表现出四种形态的混合物,这些形态是通过不同的变形过程形成的,这些变形过程由特定的相稳定性和晶格软化激活,这是在奥氏体(fcc)的相稳定性极限下产生的。相。除了降低C'外,该合金还具有降低堆垛层错能(SFE)和将奥氏体-马氏体(Ms)相变温度降低至环境温度的特点。这些结果表明,在本发明合金的冷轧过程中,除了位错滑移之外,变形孪生和应力诱发的马氏体相变都被同时或相继激活。根据冷轧试样的微观结构和力学特性,可以合理地得出结论,冷轧引起的加工硬化激活了一种多峰变形机制,该机制抑制了超高强度塑性变形过程中的过早破坏。 (C)2018 Elsevier Ltd.保留所有权利。

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