[HTML][HTML] Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang, S Chen… - Nature …, 2022 - nature.com
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

[HTML][HTML] Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang, S Chen… - Nature …, 2022 - ncbi.nlm.nih.gov
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

[PDF][PDF] Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang, S Chen, Y Zhao… - Nature …, 2022 - d-nb.info
Nanoparticle strengthening provides a crucial basis for developing highperformance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang… - Nature …, 2022 - pubmed.ncbi.nlm.nih.gov
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion.

B Xiao, J Luan, S Zhao, L Zhang, S Chen… - Nature …, 2022 - europepmc.org
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion.

B Xiao, J Luan, S Zhao, L Zhang… - Nature …, 2022 - search.ebscohost.com
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang, S Chen… - Nature …, 2022 - ideas.repec.org
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang… - Nature …, 2022 - ui.adsabs.harvard.edu
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang, S Chen… - Nature …, 2022 - scholars.cityu.edu.hk
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …

Achieving thermally stable nanoparticles in chemically complex alloys via controllable sluggish lattice diffusion

B Xiao, J Luan, S Zhao, L Zhang, S Chen… - Nature …, 2022 - econpapers.repec.org
Nanoparticle strengthening provides a crucial basis for developing high-performance
structural materials with potentially superb mechanical properties for structural applications …