This paper studies the surface melting in the atmosphere by YAG laser-guided micro-arc discharge. In three kinds of surface conditions (free, oiled, and polyethylene covered), we try to control the diameter and the power density of discharge pit. It is found that the power density of 3 x 10(6) W/cm(2) of discharge pit on the oiled surface is moderate to form the melted layer thicker than that of the others, adapting to strengthen the surface of material, and the power density of 1.07 x 10(7) W/cm(2) of discharge pit on the polyethylene-covered surface is highest to form the deepest discharge pit among them, adapting to remove the material
International audienceThis paper presents a comparison between simulation and experimental results o...
The properties of materials, especially of solids, can be attributed mainly to the phenomena occurri...
The thesis is focused on increasing the surface tension of polyethylen, using plasma. A gliding arc ...
We demonstrate a new technique for localized melting and boring of materials using discharges guided...
A 4.55 microsecond, 15 joule pulsed CO2 laser was used to illuminate a copper target. Bulk plasma w...
Several discharge areas by laser-guided discharge (LGD) were compared with those by common arc disch...
Gas switch is one of the key elements in pulsed-power devices, and electrode erosion is a key restri...
© Published under licence by IOP Publishing Ltd. Plasma technologies have a wide range of applicatio...
The aim of the work was to study the possibilities of plasma electrolytic treatment for cleaning sur...
Abstract: A novel approach in the field of non-equilibrium plasma generation is the development of M...
A surface engineering technique based on a Tungsten Inert Gas (TIG) torch was used to melt single tr...
The laser technology of the fusion of the working surface of details changes the surface properties,...
Energy coupling, heat conduction, melting; evaporation and plasma generation including melt-, vapor-...
A simple macroscopic thermophysical model is presented for cold electrode erosion in unsteady arc sp...
A FEM model was developed to simulate the temperature increase in the material due to the power inpu...
International audienceThis paper presents a comparison between simulation and experimental results o...
The properties of materials, especially of solids, can be attributed mainly to the phenomena occurri...
The thesis is focused on increasing the surface tension of polyethylen, using plasma. A gliding arc ...
We demonstrate a new technique for localized melting and boring of materials using discharges guided...
A 4.55 microsecond, 15 joule pulsed CO2 laser was used to illuminate a copper target. Bulk plasma w...
Several discharge areas by laser-guided discharge (LGD) were compared with those by common arc disch...
Gas switch is one of the key elements in pulsed-power devices, and electrode erosion is a key restri...
© Published under licence by IOP Publishing Ltd. Plasma technologies have a wide range of applicatio...
The aim of the work was to study the possibilities of plasma electrolytic treatment for cleaning sur...
Abstract: A novel approach in the field of non-equilibrium plasma generation is the development of M...
A surface engineering technique based on a Tungsten Inert Gas (TIG) torch was used to melt single tr...
The laser technology of the fusion of the working surface of details changes the surface properties,...
Energy coupling, heat conduction, melting; evaporation and plasma generation including melt-, vapor-...
A simple macroscopic thermophysical model is presented for cold electrode erosion in unsteady arc sp...
A FEM model was developed to simulate the temperature increase in the material due to the power inpu...
International audienceThis paper presents a comparison between simulation and experimental results o...
The properties of materials, especially of solids, can be attributed mainly to the phenomena occurri...
The thesis is focused on increasing the surface tension of polyethylen, using plasma. A gliding arc ...