Equal channel angular pressing (ECAP) is so far the most viable severe plastic deformation procedure to extrude material by using specially designed channel dies without any substantial changes in geometry and to prepare an ultrafine grained material. Magnesium is the lightest of all structural metallic materials, but a typical hard-to-deform metallic material due to its HCP structure and associated slip systems. ECAP has been applied fora processing method of severe plastic deformation to achieve grain refinement of magnesium and to enhance it's low ductility. In particular, we investigated the deformation and fracture behavior of pure magnesium workpiece using experimental and numerical methods. The finite element method with differe...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
AbstractCommercially pure magnesium was processed by a single pass of Equal Channel Angular Pressing...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
In this paper, grain refinement of pure magnesium using severe plastic deformation was investigated ...
This thesis reviewed the development of processing technologies, including forging, rolling, extrusi...
Pure Mg and Mg alloys generally exhibit only limited ductilities at ambient temperatures. Experiment...
© 2015 Severe plastic deformation (SPD) is capable of producing metals with ultrafine grained micros...
The present research was aimed at lowering the deformation temperature by applying cover tube casing...
Equal-channel angular pressing (ECAP) is an excellent processing tool for achieving exceptional grai...
AbstractSevere plastic deformation (SPD) is capable of producing metals with ultrafine grained micro...
Magnesium alloys are very promising materials for weight-saving structural applications due to their...
Equal channel angular pressing (ECAP) is a promising technique to produce an ultra-fine grain micros...
UnrestrictedThe relationship between processing, structure and properties is analyzed in magnesium a...
Magnesium can be replaced with materials which experience strain controlled fatigue in their respect...
This paper deals with differences of mechanical characteristics and fracture surface morphology of A...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
AbstractCommercially pure magnesium was processed by a single pass of Equal Channel Angular Pressing...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
In this paper, grain refinement of pure magnesium using severe plastic deformation was investigated ...
This thesis reviewed the development of processing technologies, including forging, rolling, extrusi...
Pure Mg and Mg alloys generally exhibit only limited ductilities at ambient temperatures. Experiment...
© 2015 Severe plastic deformation (SPD) is capable of producing metals with ultrafine grained micros...
The present research was aimed at lowering the deformation temperature by applying cover tube casing...
Equal-channel angular pressing (ECAP) is an excellent processing tool for achieving exceptional grai...
AbstractSevere plastic deformation (SPD) is capable of producing metals with ultrafine grained micro...
Magnesium alloys are very promising materials for weight-saving structural applications due to their...
Equal channel angular pressing (ECAP) is a promising technique to produce an ultra-fine grain micros...
UnrestrictedThe relationship between processing, structure and properties is analyzed in magnesium a...
Magnesium can be replaced with materials which experience strain controlled fatigue in their respect...
This paper deals with differences of mechanical characteristics and fracture surface morphology of A...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
AbstractCommercially pure magnesium was processed by a single pass of Equal Channel Angular Pressing...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...