AbstractIn the present paper, the effects of material thickness, traverse speed and abrasive mass flow rate during abrasive water jet cutting of aluminum on surface roughness were investigated. GMT garnet was used as abrasive material with 80 mesh. Surface roughness was measured across of depth of cut. The experimental results show that traverse speed has great effect on the surface roughness at the bottom of the cut. It was also discussed the correlation between the surface roughness and other abrasive water jet cutting variables. Based on the experiments, the optimal process parameters for each material thickness were defined
This article presents results of comparative studies into the roughness (very significant tribologic...
The paper presents the results of experimental work on the assessment of 3D geometry of surface ster...
Abrasive waterjet (AWJ) is an untraditional machining tool that has been used in numerous applicatio...
AbstractIn the present paper, the effects of material thickness, traverse speed and abrasive mass fl...
AbstractThis study presents the effect of cutting speed on surface roughness in abrasive water jet c...
AbstractThis paper describes problem during water jet cutting with low (different) surface roughness...
Abstract. Abrasive waterjet (AWJ) cutting is an emerging technology which enables the shaping of pra...
Abrasive water jet (AWJ) is one of the most advanced and valuable non-traditional machining processe...
Abrasive waterjet machining is a novel method of machining complex shapes and profiles. Surface roug...
Advisors: Pradip Majumdar.Committee members: Jenn-Terng Gau; Rao Kilaparti.Includes bibliographical ...
In the present study, the influence of dynamic process parameters such as water pressure, traverse s...
AbstractThe paper investigates the effect of material machinability on the quality of cutting surfac...
Surface roughness (Ra) and kerf taper ratio (TR) characteristics of an abrasive water jet machined s...
This paper shows the impact of mixing water and abrasives in water jet cutting process on the qualit...
This study presents the effect of jet pressure, abrasive flow rate and work feed rate on smoothness ...
This article presents results of comparative studies into the roughness (very significant tribologic...
The paper presents the results of experimental work on the assessment of 3D geometry of surface ster...
Abrasive waterjet (AWJ) is an untraditional machining tool that has been used in numerous applicatio...
AbstractIn the present paper, the effects of material thickness, traverse speed and abrasive mass fl...
AbstractThis study presents the effect of cutting speed on surface roughness in abrasive water jet c...
AbstractThis paper describes problem during water jet cutting with low (different) surface roughness...
Abstract. Abrasive waterjet (AWJ) cutting is an emerging technology which enables the shaping of pra...
Abrasive water jet (AWJ) is one of the most advanced and valuable non-traditional machining processe...
Abrasive waterjet machining is a novel method of machining complex shapes and profiles. Surface roug...
Advisors: Pradip Majumdar.Committee members: Jenn-Terng Gau; Rao Kilaparti.Includes bibliographical ...
In the present study, the influence of dynamic process parameters such as water pressure, traverse s...
AbstractThe paper investigates the effect of material machinability on the quality of cutting surfac...
Surface roughness (Ra) and kerf taper ratio (TR) characteristics of an abrasive water jet machined s...
This paper shows the impact of mixing water and abrasives in water jet cutting process on the qualit...
This study presents the effect of jet pressure, abrasive flow rate and work feed rate on smoothness ...
This article presents results of comparative studies into the roughness (very significant tribologic...
The paper presents the results of experimental work on the assessment of 3D geometry of surface ster...
Abrasive waterjet (AWJ) is an untraditional machining tool that has been used in numerous applicatio...