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首页> 外文期刊>Journal of Materials Research and Technology >Influence of Mo alloying on the thermal stability and hardness of ultrafine-grained Ni processed by high-pressure torsion
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Influence of Mo alloying on the thermal stability and hardness of ultrafine-grained Ni processed by high-pressure torsion

机译:Mo合金化对高压扭转处理超细晶Ni的热稳定性和硬度的影响

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摘要

The influence of Mo alloying on the thermal stability of grain size, dislocation density and hardness of ultrafine-grained (UFG) Ni alloys was studied. The UFG microstructure in alloys with low (~0.3at.%) and high (~5at.%) Mo contents was achieved by high-pressure torsion (HPT) performed for 20 turns at room temperature. The thermal stability of the two alloys was studied by calorimetry. A Curie-transition from ferromagnetic to paramagnetic state was not found for the Ni–5% Mo alloy due to the high Mo content. It was found that heating at a rate of 40K/min up to ~850K resulted in a complete recovery and recrystallization of the UFG microstructure in the alloy with 0.3% Mo. The same annealing for Ni–5% Mo led only to a moderate reduction of the dislocation density and the grain size remained in the UFG regime. Therefore, the higher Mo content yielded a much better thermal stability of the Ni alloy. The influence of the change of the microstructure during annealing on the hardness is discussed.
机译:研究了钼合金化对超细晶粒(UFG)Ni合金晶粒尺寸,位错密度和硬度的热稳定性的影响。通过在室温下进行20圈高压扭转(HPT),可以实现低(〜0.3at。%)和高(〜5at。%)Mo含量的合金中的UFG显微组织。通过量热法研究了两种合金的热稳定性。由于高的Mo含量,对于Ni–5%Mo合金,未发现从铁磁态到顺磁态的居里跃迁。发现以40K / min的速度加热到〜850K可以完全恢复和重结晶含0.3%Mo的合金中的UFG显微组织。对Ni–5%Mo进行相同的退火只会导致中等程度的还原UFG体系中位错密度和晶粒尺寸仍然保持不变。因此,较高的Mo含量产生了Ni合金更好的热稳定性。讨论了退火过程中显微组织的变化对硬度的影响。

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