Dislocations are the main carriers of the plasticity and are the dominate deformation mechanism in metallic materials. With recent innovations in manufacturing, a number of novel metallic materials with high strength have been produced. Compared to the conventional metals, these metallic materials are more chemically and microstructurally complex. To best tailor these features for optimal performnace, it is necessary to understand how these complex factors affect dislocation dynamics, such as nucleation and propagation. Using atomistic simulations, this thesis research aims to reveal the dislocation dynamics responsible for their superior strength in three types of metallic materials, i.e., multi-principal element alloys (MPEAs) with local ...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
Ultra-high strength metallic multilayers are ideal for investigating the effects of length scales in...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Dislocations are the main carriers of the plasticity and are the dominate deformation mechanism in m...
The increasing demand for better structural materials creates many extreme and complex conditions un...
In conventional metals, there is plenty of space for dislocations-line defects whose motion results ...
Internal microstructural length scales play a fundamental role in the strength and ductility of a ma...
The interactions between dislocations and interfaces between materials with different structures, ch...
In nanostructured metallic multilayers, hardness and strength are greatly enhanced compared to their...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
We present dislocation simulations involving the collective behavior of partials and extended full d...
Incipient plasticity of crystals is usually initiated from versatile pre-existing crystalline defect...
Irradiation hardening due to voids can be a significant result of radiation damage in metals, but tr...
Interface-facilitated dislocation nucleation dominates deformation behaviors of metallic nanolaminat...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
Ultra-high strength metallic multilayers are ideal for investigating the effects of length scales in...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Dislocations are the main carriers of the plasticity and are the dominate deformation mechanism in m...
The increasing demand for better structural materials creates many extreme and complex conditions un...
In conventional metals, there is plenty of space for dislocations-line defects whose motion results ...
Internal microstructural length scales play a fundamental role in the strength and ductility of a ma...
The interactions between dislocations and interfaces between materials with different structures, ch...
In nanostructured metallic multilayers, hardness and strength are greatly enhanced compared to their...
Leveraging defects is a cornerstone of materials science, and has become increasingly important from...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
We present dislocation simulations involving the collective behavior of partials and extended full d...
Incipient plasticity of crystals is usually initiated from versatile pre-existing crystalline defect...
Irradiation hardening due to voids can be a significant result of radiation damage in metals, but tr...
Interface-facilitated dislocation nucleation dominates deformation behaviors of metallic nanolaminat...
Dislocation-mediated plasticity in alloy systems is strongly affected by the concentration and distr...
Ultra-high strength metallic multilayers are ideal for investigating the effects of length scales in...
Nanostructured metallic materials have gained significant interest for their superior performance in...