AbstractTwinning is an important deformation mode in hexagonal close packed (HCP) metals, including magnesium alloys. Precipitates are used to provide strengthening in many of these alloys. The effect of precipitates in strengthening against deformation by slip is well understood, but this is not the case for twinning. Recent studies have indicated that precipitates are usually not sheared by twins, but the Orowan law for strengthening against slip by dislocation bowing does not give a good prediction when applied to twinning. It has therefore been proposed that the dominant strengthening effect inhibiting thickening of a twin arises from an additional back-stress that results from embedding a unsheared precipitate in twinned matrix. The pr...
The main objective of this thesis is to investigate and quantify the influence of parent-twin and tw...
Owing to its HCP crystallography, deformation mechanisms of magnesium involve both plastic slip and ...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
AbstractTwinning is an important deformation mode in hexagonal close packed (HCP) metals, including ...
Precipitation is an efficient method to strengthen metallic materials. While precipitation hardening...
Asymmetric yield behavior in tension and compression is a common and usually undesirable feature of ...
Magnesium alloys have garnered much interest in automotive and aerospace industries, where simultane...
Deformation twinning is an important deformation mode in magnesium alloys. Despite this, little is k...
The deformation behaviour of the age hardenable alloy Mg–5%Zn after different precipitation tr...
In the present study, the effect of precipitate characteristics on {101-2} extension twinning have b...
A Mg-5%Zn alloy has been aged to form c-axis rod precipitates which are known to increase strength. ...
The interaction between a lattice dislocation and non-shearable precipitates has been well explained...
While there have been many numerical and experimental studies of various aspects of mechanical twinn...
The effect of basal plate precipitates on the hardening of basal slip and {101¯2} twinning mode...
Twinning is an important deformation mode in lightweight Mg alloys, but the mechanisms of nucleation...
The main objective of this thesis is to investigate and quantify the influence of parent-twin and tw...
Owing to its HCP crystallography, deformation mechanisms of magnesium involve both plastic slip and ...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
AbstractTwinning is an important deformation mode in hexagonal close packed (HCP) metals, including ...
Precipitation is an efficient method to strengthen metallic materials. While precipitation hardening...
Asymmetric yield behavior in tension and compression is a common and usually undesirable feature of ...
Magnesium alloys have garnered much interest in automotive and aerospace industries, where simultane...
Deformation twinning is an important deformation mode in magnesium alloys. Despite this, little is k...
The deformation behaviour of the age hardenable alloy Mg–5%Zn after different precipitation tr...
In the present study, the effect of precipitate characteristics on {101-2} extension twinning have b...
A Mg-5%Zn alloy has been aged to form c-axis rod precipitates which are known to increase strength. ...
The interaction between a lattice dislocation and non-shearable precipitates has been well explained...
While there have been many numerical and experimental studies of various aspects of mechanical twinn...
The effect of basal plate precipitates on the hardening of basal slip and {101¯2} twinning mode...
Twinning is an important deformation mode in lightweight Mg alloys, but the mechanisms of nucleation...
The main objective of this thesis is to investigate and quantify the influence of parent-twin and tw...
Owing to its HCP crystallography, deformation mechanisms of magnesium involve both plastic slip and ...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...