Damage evolution and plastic deformation mechanism of passivation layer during shear rheological polishing of polycrystalline tungsten
Author:
Publisher
Elsevier BV
Subject
Metals and Alloys,Surfaces, Coatings and Films,Biomaterials,Ceramics and Composites
Reference44 articles.
1. A comprehensive review of friction stir techniques in structural materials and alloys: challenges and trends;Prabhakar;J Mater Res Technol,2022
2. Microstructure and electrical contact behavior of Al2O3-Cu/30W3SiC(0.5Y2O3) composites;Zheng;J Mater Res Technol,2023
3. Overview of goals and performance of ITER and strategy for plasma-wall interaction investigation;Shimada;J Nucl Mater,2005
4. Effects of pH values and H2O2 concentrations on the chemical enhanced shear dilatancy polishing of tungsten;Xu;Micromachines,2022
5. Residual thermal stress, fracture toughness, and hardness in WC-Co cemented carbide: finite element simulation and experimental verification;He;J Mater Res Technol,2022
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