Ductility versus brittleness of a material, while singularly important in the design of devices and structures, is one of the least understood properties of materials. Using ab initio density functional theory calculations and topological analysis of electron density of tin (which exhibits a brittle to ductile transition (BDT) as a function of pressure), we find that electron densities at the critical points correlate in a simple way with the relevant stacking fault and surface energetics. Rationalizing this correlation with a simple model, we use it to accurately capture trends in the BDT temperature of bcc metals and demonstrate how it facilitates cost-effective design of materials with improved mechanical properties through an example of...
At the time of the 50th anniversary of the Kohn-Sham method, ab initio calculations based on density...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographi...
ABSTRACT: Boron carbide (B4C) is a hard material whose value for extended engineering applications s...
Ductility versus brittleness of a material, while singularly important in the design of devices and ...
Toughness enhancements can be induced in cubic-B1 transition metal nitride alloys by an increased oc...
Hard refractory transition-metal nitrides possess unique combinations of outstanding mechanical and ...
Recently, a new class of B2 intermetallic compounds, e.g., YAg and YCu, were experimentally shown to...
Over the past decades, enormous effort has been dedicated to enhancing the hardness of refractory ce...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
Materials properties depend on phenomena in a hierarchical order from atomic to macroscopic scales. ...
The effects of substitutional alloying on the ductility of MoSi<SUB>2</SUB> single crystals are stud...
Defects significantly affect the mechanical properties of materials. However, quantitatively correla...
While most B2 materials are brittle, a new class of B2 (rare-earth) intermetallic compounds is obser...
Toughness, besides hardness, is one of the most important properties of wear-resistant coatings. We ...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
At the time of the 50th anniversary of the Kohn-Sham method, ab initio calculations based on density...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographi...
ABSTRACT: Boron carbide (B4C) is a hard material whose value for extended engineering applications s...
Ductility versus brittleness of a material, while singularly important in the design of devices and ...
Toughness enhancements can be induced in cubic-B1 transition metal nitride alloys by an increased oc...
Hard refractory transition-metal nitrides possess unique combinations of outstanding mechanical and ...
Recently, a new class of B2 intermetallic compounds, e.g., YAg and YCu, were experimentally shown to...
Over the past decades, enormous effort has been dedicated to enhancing the hardness of refractory ce...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
Materials properties depend on phenomena in a hierarchical order from atomic to macroscopic scales. ...
The effects of substitutional alloying on the ductility of MoSi<SUB>2</SUB> single crystals are stud...
Defects significantly affect the mechanical properties of materials. However, quantitatively correla...
While most B2 materials are brittle, a new class of B2 (rare-earth) intermetallic compounds is obser...
Toughness, besides hardness, is one of the most important properties of wear-resistant coatings. We ...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
At the time of the 50th anniversary of the Kohn-Sham method, ab initio calculations based on density...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographi...
ABSTRACT: Boron carbide (B4C) is a hard material whose value for extended engineering applications s...