Saini Sanjay, Menon Ranjini, Sharma S K, Nabhiraj P Y, Neogy Suman, Srivastava A P
Materials Science Division, Bhabha Atomic Research Centre, Trombay, Mumbai, 400085, India.
Homi Bhabha National Institute, Trombay, Mumbai, 400094, India.
Sci Rep. 2025 Aug 6;15(1):28733. doi: 10.1038/s41598-025-11922-x.
The impact of helium ion irradiation on the evolution of microstructure and mechanical properties of a Ni-45%Cr-1.4%Mo (wt%) alloy has been investigated. Analysis via transmission electron microscopy (TEM) of a pristine sample revealed an uneven distribution of alpha-Cr phase precipitates along with a few isolated planar arrangements of dislocations within the fcc γ-Ni matrix phase. A detailed study of irradiated samples established the presence of radiation-induced defect clusters, dislocation loops, network dislocations as perceptible irradiation effects. X-ray diffraction (XRD) and positron annihilation spectroscopy (PAS) studies also confirmed lattice swelling as an effect of irradiation in this alloy, likely caused by helium-stabilized vacancy cluster. A line profile analysis method which takes into account of planar defects, was employed on GIXRD (Grazing Incidence X-ray Diffraction) data to analyze changes in microstructural parameters such as domain size, microstrain, dislocation density and lattice parameter as a function of irradiation dose. All of these irradiation-damage manifestations led to the increase in the hardness of the alloy in nano-indentation experiment. Overall, the findings of this work provide significant insights into the radiation-induced microstructural changes and their effect on the hardening behavior of the studied Ni-Cr-Mo alloy.
研究了氦离子辐照对Ni-45%Cr-1.4%Mo(重量百分比)合金微观结构演变和力学性能的影响。通过透射电子显微镜(TEM)对原始样品进行分析,发现α-Cr相析出物分布不均匀,同时在面心立方γ-Ni基体相中存在一些孤立的位错平面排列。对辐照样品的详细研究确定了辐射诱导缺陷团簇、位错环、网络位错等明显的辐照效应。X射线衍射(XRD)和正电子湮没光谱(PAS)研究也证实了晶格膨胀是该合金辐照的一种效应,可能是由氦稳定的空位团簇引起的。采用一种考虑平面缺陷的线轮廓分析方法,对掠入射X射线衍射(GIXRD)数据进行分析,以研究诸如畴尺寸、微观应变、位错密度和晶格参数等微观结构参数随辐照剂量的变化。在纳米压痕实验中,所有这些辐照损伤表现都导致了合金硬度的增加。总体而言,这项工作的研究结果为辐射诱导的微观结构变化及其对所研究的Ni-Cr-Mo合金硬化行为的影响提供了重要见解。