Modification of surface hardness for dual two-phase Ni3Al–Ni3V intermetallic compound by using energetic ion beam and subsequent thermal treatment
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference14 articles.
1. Phase relation and microstructure in multi-phase intermetallic alloys based on Ni 3 Al–Ni 3 Ti–Ni 3 V pseudo-ternary alloy system
2. Dual multi-phase intermetallic alloys composed of geometrically close-packed Ni3X (X: Al, Ti and V) type structures – I. Microstructures and their stability
3. Dual multi-phase intermetallic alloys composed of geometrically close packed Ni3X (X: Al, Ti and V) type structures – II. Mechanical properties
4. Phase relation and microstructure in multi-phase intermetallic alloys based on Ni3Al–Ni3Nb–Ni3V pseudo-ternary alloy system
5. Mechanical properties of dual multi-phase single-crystal intermetallic alloy composed of geometrically close packed Ni3X (X: Al and V) type structures
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1. Synthesis of NiAl Intermetallic Compound under Shock-Wave Extrusion;Materials;2022-09-01
2. Modification of Lattice Structures and Mechanical Properties of Metallic Materials by Energetic Ion Irradiation and Subsequent Thermal Treatments;Quantum Beam Science;2020-03-16
3. Effect of elastic collisions and electronic excitation on lattice structure of NiTi bulk intermetallic compound irradiated with energetic ions;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2018-07
4. Lattice Structure Transformation Induced by Energetic Ion Beam and the Effect on Surface Hardness for Ni-based Intermetallic Compounds;Materia Japan;2018
5. Thermal stability of irradiation-induced metastable lattice structures in NiTi intermetallic compound;Transactions of the Materials Research Society of Japan;2018
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