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Microstructure and Mechanical Properties Evolution of the Al C-Containing CoCrFeNiMn-Type High-Entropy Alloy during Cold Rolling

机译:含AlC的CoCrFeNiMn型高熵合金冷轧过程中的组织和力学性能演变

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摘要

The effect of cold rolling on the microstructure and mechanical properties of an Al- and C-containing CoCrFeNiMn-type high-entropy alloy was reported. The alloy with a chemical composition (at %) of (20–23) Co, Cr, Fe, and Ni; 8.82 Mn; 3.37 Al; and 0.69 C was produced by self-propagating high-temperature synthesis with subsequent induction. In the initial as-cast condition the alloy had an face centered cubic single-phase coarse-grained structure. Microstructure evolution was mostly associated with either planar dislocation glide at relatively low deformation during rolling (up to 20%) or deformation twinning and shear banding at higher strain. After 80% reduction, a heavily deformed twinned/subgrained structure was observed. A comparison with the equiatomic CoCrFeNiMn alloy revealed higher dislocation density at all stages of cold rolling and later onset of deformation twinning that was attributed to a stacking fault energy increase in the program alloy; this assumption was confirmed by calculations. In the initial as-cast condition the alloy had low yield strength of 210 MPa with yet very high uniform elongation of 74%. After 80% rolling, yield strength approached 1310 MPa while uniform elongation decreased to 1.3%. Substructure strengthening was found to be dominated at low rolling reductions (<40%), while grain (twin) boundary strengthening prevailed at higher strains.
机译:报道了冷轧对含Al和C的CoCrFeNiMn型高熵合金的组织和力学性能的影响。化学成分(原子%)为(20-23)钴,铬,铁和镍的合金; 8.82锰; 3.37铝;通过自蔓延高温合成并随后诱导产生0.69C。在初始铸态条件下,合金具有面心立方单相粗晶组织。显微组织的演化主要与在轧制过程中相对较低的变形(高达20%)时的平面位错滑移或较高应变下的变形孪生和剪切带有关。减少80%后,观察到严重变形的孪晶/亚晶结构。与等原子CoCrFeNiMn合金的比较表明,在冷轧的所有阶段都具有较高的位错密度,而变形孪晶的出现则较晚,这归因于程序合金堆垛层错能的增加。通过计算证实了这一假设。在初始铸态条件下,该合金的屈服强度低至210 MPa,均匀伸长率非常高,为74%。轧制80%后,屈服强度达到1310 MPa,而均匀伸长率降至1.3%。发现在较低的压下率(<40%)下,亚结构的强化占主导地位,而在较高的应变下,晶粒(双晶)边界强化占主导。

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