Fatigue characteristics of A7075-T651 aluminum material were studied with surface treatment of shot peening. The fatigue life was characterized by two fatigue testing methods, ultrasonic fatigue test (UFT, 20 kHz) and the rotary-bending fatigue test (RFT, 53 Hz). The fatigue life improvement was confirmed by rotary bending fatigue tester. However, the surface modification effects were hardly observed by UFT method. The RFT results validate that the fatigue properties of RFT show a fine congruence regardless of the test machine types. The results of hardness, compressive residual stress, fatigue strength, and mechanical properties of specimen were improved by shot peening
The approach to engineering design based on the flaws propagation assumption applying the principles...
Shot peening is a mechanical treatment that induces several changes in the material: surface roughne...
In this study the effect of different shot peening intensities, from very light peening with ceramic...
AbstractEffect of ultrasonic shot peening (USSP) for different durations, with graded surface struct...
AbstractThe effect of different shot-peening treatments on the reverse and pulsating bending fatigue...
The effect of different shot-peening treatments on the reverse and pulsating bending fatigue behavio...
AbstractFatigue life of AW 7075 aluminium alloy in the high and ultra-high cycle region was tested a...
The ever more pressing and concurrent requirements of light design, increased performances and relia...
Shot peening is a surface treatment commonly used to improve the fatigue behaviour of mechanical com...
The objective of the present study was to investigate the effect of surface hardening by shot-peenin...
AbstractThe approach to engineering design based on the flaws propagation assumption applying the pr...
Shot peening is an attractive technique for fatigue enhanced performance of metallic components, bec...
Shot peening is a well-known surface treatment method used for fatigue life improvement of cyclicall...
The present paper is aimed at investigating the effect of different shot peening treatments on the f...
Al alloys have long been of interest to the aerospace community, due to their modest specific streng...
The approach to engineering design based on the flaws propagation assumption applying the principles...
Shot peening is a mechanical treatment that induces several changes in the material: surface roughne...
In this study the effect of different shot peening intensities, from very light peening with ceramic...
AbstractEffect of ultrasonic shot peening (USSP) for different durations, with graded surface struct...
AbstractThe effect of different shot-peening treatments on the reverse and pulsating bending fatigue...
The effect of different shot-peening treatments on the reverse and pulsating bending fatigue behavio...
AbstractFatigue life of AW 7075 aluminium alloy in the high and ultra-high cycle region was tested a...
The ever more pressing and concurrent requirements of light design, increased performances and relia...
Shot peening is a surface treatment commonly used to improve the fatigue behaviour of mechanical com...
The objective of the present study was to investigate the effect of surface hardening by shot-peenin...
AbstractThe approach to engineering design based on the flaws propagation assumption applying the pr...
Shot peening is an attractive technique for fatigue enhanced performance of metallic components, bec...
Shot peening is a well-known surface treatment method used for fatigue life improvement of cyclicall...
The present paper is aimed at investigating the effect of different shot peening treatments on the f...
Al alloys have long been of interest to the aerospace community, due to their modest specific streng...
The approach to engineering design based on the flaws propagation assumption applying the principles...
Shot peening is a mechanical treatment that induces several changes in the material: surface roughne...
In this study the effect of different shot peening intensities, from very light peening with ceramic...