The variational method developed by Fletcher and Adamson is applied to calculate the energy of the interface between (100) faces of two cubic crystals for arbitrary relative twist displacements and for lattice parameter ratios between 0·6 and 2·0. A simplified interatomic potential is used for this calculation and this shows only a small number of cusped energy minima
The methods available to study the correlation between properties and atomic structure of interfaces...
The methods available to study the correlation between properties and atomic structure of interfaces...
A discrete lattice plane, regular solution, broken bond model, previously used to calculate the inte...
A variational method is developed for calculating the energy of an interface between two crystals of...
An expression for the energy of an interface of general form between two crystals of arbitrary struc...
We develop an explicit model for the interfacial energy in crystals that emphasizes the geometric or...
The general principles governing the structure and energy of crystal interfaces are reviewed, parti...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...
A discrete lattice plane, regular solution, broken bond model, previously used to calculate the inte...
The interfacial energy of boundaries between dissimilar materials can be described as function of th...
AbstractA crystal-chemical model of atomic interactions has been suggested which considers the condi...
The interfacial energy of boundaries between dissimilar materials can be described as function of th...
The methods available to study the correlation between properties and atomic structure of interfaces...
The methods available to study the correlation between properties and atomic structure of interfaces...
A discrete lattice plane, regular solution, broken bond model, previously used to calculate the inte...
A variational method is developed for calculating the energy of an interface between two crystals of...
An expression for the energy of an interface of general form between two crystals of arbitrary struc...
We develop an explicit model for the interfacial energy in crystals that emphasizes the geometric or...
The general principles governing the structure and energy of crystal interfaces are reviewed, parti...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
Understanding interfacial energy between crystal lattices is of great interest in modeling mechanica...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...
A discrete lattice plane, regular solution, broken bond model, previously used to calculate the inte...
The interfacial energy of boundaries between dissimilar materials can be described as function of th...
AbstractA crystal-chemical model of atomic interactions has been suggested which considers the condi...
The interfacial energy of boundaries between dissimilar materials can be described as function of th...
The methods available to study the correlation between properties and atomic structure of interfaces...
The methods available to study the correlation between properties and atomic structure of interfaces...
A discrete lattice plane, regular solution, broken bond model, previously used to calculate the inte...