This work assesses the residual stress relaxation of the nickel-based alloy RR1000 due to thermal exposure and dwell-fatigue loading. A number of different characterization methods, including X-ray residual stress analysis, electron back-scattered diffraction, microhardness testing and focused ion beam secondary electron imaging, contributed to a detailed study of the shot-peened region. Thermal exposure at 700 °C resulted in a large reduction in the residual stresses and work-hardening effects in the alloy, but the subsurface remained in a beneficial compressive state. Oxidizing environments caused recrystallization in the near surface, but did not affect the residual stress-relaxation behaviour. Dwell-fatigue loading caused the residual s...
This study aims to investigate the crack growth performance of the high strength superalloy RR1000 a...
The simulation and design of advanced materials for fatigue resistance requires an understanding of ...
Minimum dwell fatigue testing of nickel based superalloy FG RR1000 at 650 ∘C has led to significant ...
The goal of this work was to determine effects of shot peening (SP) coverage on the compressive resi...
The goal of this work was to determine effects of shot peening (SP) coverage on the compressive resi...
Shot peening induces compressive residual stresses in components that positively influence fatigue l...
International audienceThis study evaluates the influence of residual stresses induced by the fabrica...
Stress relaxation research is very valuable as it provides information on how materials relieve stre...
This study investigates the influence of shot peening on the fatigue properties of GH4169 alloy at 2...
AbstractThe low cycle fatigue performance of the nickel based superalloy RR1000 was investigated und...
A methodology for evaluating the effect of surface damage in the fatigue life of nickel superalloys ...
International audienceThe shot-peening operation is used to improve the fatigue lifetime of mechanic...
Compressive surface residual stresses achieved by mechanical surface treatments (shot peening, low-p...
RR1000 is a new generation nickel base powder superalloy intended for aeroengine disc applications. ...
Shot peening has traditionally been thought to improve the fatigue performance of polycrystalline ni...
This study aims to investigate the crack growth performance of the high strength superalloy RR1000 a...
The simulation and design of advanced materials for fatigue resistance requires an understanding of ...
Minimum dwell fatigue testing of nickel based superalloy FG RR1000 at 650 ∘C has led to significant ...
The goal of this work was to determine effects of shot peening (SP) coverage on the compressive resi...
The goal of this work was to determine effects of shot peening (SP) coverage on the compressive resi...
Shot peening induces compressive residual stresses in components that positively influence fatigue l...
International audienceThis study evaluates the influence of residual stresses induced by the fabrica...
Stress relaxation research is very valuable as it provides information on how materials relieve stre...
This study investigates the influence of shot peening on the fatigue properties of GH4169 alloy at 2...
AbstractThe low cycle fatigue performance of the nickel based superalloy RR1000 was investigated und...
A methodology for evaluating the effect of surface damage in the fatigue life of nickel superalloys ...
International audienceThe shot-peening operation is used to improve the fatigue lifetime of mechanic...
Compressive surface residual stresses achieved by mechanical surface treatments (shot peening, low-p...
RR1000 is a new generation nickel base powder superalloy intended for aeroengine disc applications. ...
Shot peening has traditionally been thought to improve the fatigue performance of polycrystalline ni...
This study aims to investigate the crack growth performance of the high strength superalloy RR1000 a...
The simulation and design of advanced materials for fatigue resistance requires an understanding of ...
Minimum dwell fatigue testing of nickel based superalloy FG RR1000 at 650 ∘C has led to significant ...