材料科学
电阻率和电导率
合金
凝聚态物理
冶金
工程类
物理
电气工程
作者
Fadi Saied Ahmad,Amram Azulay,Gautam Kumar,Yaron Amouyal,Hanna Bishara
标识
DOI:10.1016/j.scriptamat.2025.116860
摘要
Dislocation density impacts functional properties of materials. For hard materials, introducing dislocations is normally challenging due to crack formation. Here, we use mechanical grinding and nanoindentation techniques to form near-surface dislocations in Fe 2 VAl. Transmission electron microscopy shows that 2 × 10 14 and 3 × 10 13 m -2 are present at 1 μm away from the surface, respectively. Local four-point probe electrical measurements indicate that the electrical resistivities for pristine, indented, and ground regions are 3.9, 4.2, and 7.5 ± 0.1 μΩ cm, respectively, confirming that dislocations significantly impede charge transport. The relation between resistivity and dislocation density is discussed in terms of the interaction between electrons and the strain fields induced by dislocations. Additionally, we determine that the elastic modulus and nanohardness for the pristine alloy are 225 ± 5 GPa and 6.6 ± 0.1 GPa, respectively. This study demonstrates that surface mechanical treatments can be used to control the electrical resistivity of these alloys.
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