The influence of waterjet peening on the residual stresses and fatigue performance of AISI 304 is investigated. The specimen surfaces were treated with multiple jet passes. The fatigue strength was evaluated using an alternating bending fatigue tester. The results of XRD measurements showed that a higher amount of compressive residual stresses is induced in the treated specimens. This strengthening layer is limited within the first 100 �m below the surface, which had been confirmed by micro hardness measurements. Even though the treated specimens showed compressive residual stresses the fatigue limit is lower than that of the untreated specimens. The roughness of the surface and the resulting notch effect seems to be stronger than the posit...
Shot peening is well known as a surface deformation process which can induce compressive residual st...
Shot peening process induces compressive stresses in a material to enhance the fatigue life. The out...
Abrasive waterjet peening (AWJP) is a new mechanical surface treatment where particles are delivered...
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...
AbstractEmbedding of grit during abrasive waterjet (AWJ) is known to have an adverse effect on compo...
Waterjet peening is a recent promising method in surface treatment. It has potential to induce compr...
Flat fatigue specimens of biomedical Ti6Al4V ELI alloy were surface-processed by high pressure water...
The study addresses the effect of multiple jet passes and other parameters namely feedrate, water pr...
As a countermeasure against high residual stress, some residual stress improvement methods have been...
This study focusses on exploring the effect of using Pulsating water jet technology\nas a surface tr...
Shot peening is a mechanical process which cold works the surface of a structural part by means of a...
AbstractWater jet peening is a mechanical surface strengthening process which has gained momentum in...
In many industries, such as aerospace, surface enhancement is a vital process to improve the fatigue...
ABSTRACT As a countermeasure against high residual stress, we have developed some residual stress im...
Shot peening is well known as a surface deformation process which can induce compressive residual st...
Shot peening process induces compressive stresses in a material to enhance the fatigue life. The out...
Abrasive waterjet peening (AWJP) is a new mechanical surface treatment where particles are delivered...
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...
AbstractEmbedding of grit during abrasive waterjet (AWJ) is known to have an adverse effect on compo...
Waterjet peening is a recent promising method in surface treatment. It has potential to induce compr...
Flat fatigue specimens of biomedical Ti6Al4V ELI alloy were surface-processed by high pressure water...
The study addresses the effect of multiple jet passes and other parameters namely feedrate, water pr...
As a countermeasure against high residual stress, some residual stress improvement methods have been...
This study focusses on exploring the effect of using Pulsating water jet technology\nas a surface tr...
Shot peening is a mechanical process which cold works the surface of a structural part by means of a...
AbstractWater jet peening is a mechanical surface strengthening process which has gained momentum in...
In many industries, such as aerospace, surface enhancement is a vital process to improve the fatigue...
ABSTRACT As a countermeasure against high residual stress, we have developed some residual stress im...
Shot peening is well known as a surface deformation process which can induce compressive residual st...
Shot peening process induces compressive stresses in a material to enhance the fatigue life. The out...
Abrasive waterjet peening (AWJP) is a new mechanical surface treatment where particles are delivered...