It was demonstrated in the present paper that cavitation peening which is one of the mechanical surface modification technique can suppress fatigue crack propagation in duralumin. The impacts produced when cavitation bubble collapses can be utilised for the mechanical surface modification technique in the same way as laser peening and shot peening, which is called “cavitation peening”. Cavitation peening employing a cavitating jet in water was used to treat the specimen made of duralumin Japanese Industrial Standards JIS A2017-T3. After introducing a notch, fatigue test was conducted by a load-controlled plate bending fatigue tester, which has been originally developed. The fatigue crack propagation behavior was evaluated and the relationsh...
Shot peening is a dynamic cold working process involving the impingement of peening media onto a sub...
Cavitation impact at cavitation bubble collapse can be utilized for surface enhancement in the same ...
Flat fatigue specimens of biomedical Ti6Al4V ELI alloy were surface-processed by high pressure water...
Cavitation impacts at bubble collapse normally cause severe damage in hydraulic machineries. However...
This paper gives an overview of the art, crafl and science of "Cavitation Shotless Peening &quo...
One of the traditional methods used to improve the fatigue properties of metallic materials is shot ...
Mechanical surface modification such as shot peening offer powerful enhancement of fatigue propertie...
This paper presents a novel compound strengthening method based on laser-induced peening and cavitat...
Friction stir welding (FSW) is an attractive solid-state joining technique for lightweight metals; h...
Although impacts at cavitation bubble collapses cause severe damage in hydraulic machineries, the ca...
Shot peening is a mechanical process which cold works the surface of a structural part by means of a...
In many industries, such as aerospace, surface enhancement is a vital process to improve the fatigue...
Additive manufacturing (AM) of metals is one of the foremost methods used for making medical implant...
Cavitation impact at cavitation bubble collapse can be utilized for surface enhancement in the same ...
Shot peening is a well-known surface treatment method used for fatigue life improvement of cyclicall...
Shot peening is a dynamic cold working process involving the impingement of peening media onto a sub...
Cavitation impact at cavitation bubble collapse can be utilized for surface enhancement in the same ...
Flat fatigue specimens of biomedical Ti6Al4V ELI alloy were surface-processed by high pressure water...
Cavitation impacts at bubble collapse normally cause severe damage in hydraulic machineries. However...
This paper gives an overview of the art, crafl and science of "Cavitation Shotless Peening &quo...
One of the traditional methods used to improve the fatigue properties of metallic materials is shot ...
Mechanical surface modification such as shot peening offer powerful enhancement of fatigue propertie...
This paper presents a novel compound strengthening method based on laser-induced peening and cavitat...
Friction stir welding (FSW) is an attractive solid-state joining technique for lightweight metals; h...
Although impacts at cavitation bubble collapses cause severe damage in hydraulic machineries, the ca...
Shot peening is a mechanical process which cold works the surface of a structural part by means of a...
In many industries, such as aerospace, surface enhancement is a vital process to improve the fatigue...
Additive manufacturing (AM) of metals is one of the foremost methods used for making medical implant...
Cavitation impact at cavitation bubble collapse can be utilized for surface enhancement in the same ...
Shot peening is a well-known surface treatment method used for fatigue life improvement of cyclicall...
Shot peening is a dynamic cold working process involving the impingement of peening media onto a sub...
Cavitation impact at cavitation bubble collapse can be utilized for surface enhancement in the same ...
Flat fatigue specimens of biomedical Ti6Al4V ELI alloy were surface-processed by high pressure water...