AbstractWater jet peening is a mechanical surface strengthening process which has gained momentum in the last two decades. It is an application of water jet abrasion process which improves the residual stresses of the treated surface. In comparison to other conventional methods like shot peening, laser shock peening water jet peening offers resistance to corrosion, improved fatigue resistance, simpler control over the process, full coverage of the treated area, flexibility in treating complex areas and eco-friendly environment. Since WJP uses water for improving the residual stresses it is a potential method for treating a variety of materials. The high pressure water jets has the tendency to cause the surface damage if the parameters are n...
The present study investigates a combined effect of waterjet peening and smoothing on the surface of...
Our goal for this study was to understand the cause of the differences in surface properties between...
The local residual stresses (tensile) generated on the surface of a component during its manufacturi...
AbstractWater jet peening is a mechanical surface strengthening process which has gained momentum in...
This study focusses on exploring the effect of using Pulsating water jet technology\nas a surface tr...
As a countermeasure against high residual stress, some residual stress improvement methods have been...
In many industries, such as aerospace, surface enhancement is a vital process to improve the fatigue...
We have developed a practical peening technology using cavitating water jet. Water jet peening (WJP)...
ABSTRACT As a countermeasure against high residual stress, we have developed some residual stress im...
In today’s practice, mechanical surface treatments have been widely applied particularly in the auto...
Peening techniques are nowadays attracting more research attention due to their association with the...
The residual stress and subsurface hardness of welded joints treated by peening using an ultrasonic ...
Waterjet peening is a recent promising method in surface treatment. It has potential to induce compr...
The study addresses the effect of multiple jet passes and other parameters namely feedrate, water pr...
Waterjet technology started in early 1960s. Water is normally compressed up to about 600 MPa and di...
The present study investigates a combined effect of waterjet peening and smoothing on the surface of...
Our goal for this study was to understand the cause of the differences in surface properties between...
The local residual stresses (tensile) generated on the surface of a component during its manufacturi...
AbstractWater jet peening is a mechanical surface strengthening process which has gained momentum in...
This study focusses on exploring the effect of using Pulsating water jet technology\nas a surface tr...
As a countermeasure against high residual stress, some residual stress improvement methods have been...
In many industries, such as aerospace, surface enhancement is a vital process to improve the fatigue...
We have developed a practical peening technology using cavitating water jet. Water jet peening (WJP)...
ABSTRACT As a countermeasure against high residual stress, we have developed some residual stress im...
In today’s practice, mechanical surface treatments have been widely applied particularly in the auto...
Peening techniques are nowadays attracting more research attention due to their association with the...
The residual stress and subsurface hardness of welded joints treated by peening using an ultrasonic ...
Waterjet peening is a recent promising method in surface treatment. It has potential to induce compr...
The study addresses the effect of multiple jet passes and other parameters namely feedrate, water pr...
Waterjet technology started in early 1960s. Water is normally compressed up to about 600 MPa and di...
The present study investigates a combined effect of waterjet peening and smoothing on the surface of...
Our goal for this study was to understand the cause of the differences in surface properties between...
The local residual stresses (tensile) generated on the surface of a component during its manufacturi...