Recent research work has been undertaken to investigate the feasibility of forming micro-components by combining Electrical-field activated sintering and microforming (Micro-FAST). This paper firstly introduces the Micro-Fast technology and experimental validation method employed. Cylindrical components were used for the experiments and the sintering and forming was realised by use of a Gleeble 3800 thermal mechanical simulator. Thirteen different types of powders (metallic and ceramic) with variable particle sizes have been formed successfully. The influential parameters, such as pressure, temperature and heating rate, were studied. From the experiment results it is shown that the component quality depends significantly on the pressure, th...
The electric current activated/assisted sintering (ECAS) is an ever growing class of versatile techn...
As demands on miniature products increase significantly, a rapid process and production system for h...
There is an increased demand for miniature/micro products (such as MEMS) and nanotechnology-based pr...
Recent research work has been undertaken to investigate the feasibility of forming micro-components ...
The electrical Field Activated Sintering Technology (FAST) process uses low voltage and high current...
Micro-FAST is a process concept which scales down conventional FAST to the micro-scale process (deal...
As the demand for miniature products has increased significantly, so also has the need for these pr...
The demand for miniature products has recently significantly increased as has the need for these pro...
As the demand for the miniature products has increased significantly, so also has the need for these...
A novel Micro-forming technology, called electric-field activated sintering for micro-scale forming ...
The use of microcomponents as well as intensive competition on manufacturing cost led to the require...
The Alumina (Al2O3), also known as Aluminium oxide, has a good thermal conductivity, but it is an el...
Finite element simulations have been conducted to investigate the heat distribution between the part...
Forming of micro-components from powder with fields-activated sintering technology (FAST) renders di...
In this paper, a novel sintering method is introduced for the forming of microcomponents in which th...
The electric current activated/assisted sintering (ECAS) is an ever growing class of versatile techn...
As demands on miniature products increase significantly, a rapid process and production system for h...
There is an increased demand for miniature/micro products (such as MEMS) and nanotechnology-based pr...
Recent research work has been undertaken to investigate the feasibility of forming micro-components ...
The electrical Field Activated Sintering Technology (FAST) process uses low voltage and high current...
Micro-FAST is a process concept which scales down conventional FAST to the micro-scale process (deal...
As the demand for miniature products has increased significantly, so also has the need for these pr...
The demand for miniature products has recently significantly increased as has the need for these pro...
As the demand for the miniature products has increased significantly, so also has the need for these...
A novel Micro-forming technology, called electric-field activated sintering for micro-scale forming ...
The use of microcomponents as well as intensive competition on manufacturing cost led to the require...
The Alumina (Al2O3), also known as Aluminium oxide, has a good thermal conductivity, but it is an el...
Finite element simulations have been conducted to investigate the heat distribution between the part...
Forming of micro-components from powder with fields-activated sintering technology (FAST) renders di...
In this paper, a novel sintering method is introduced for the forming of microcomponents in which th...
The electric current activated/assisted sintering (ECAS) is an ever growing class of versatile techn...
As demands on miniature products increase significantly, a rapid process and production system for h...
There is an increased demand for miniature/micro products (such as MEMS) and nanotechnology-based pr...