We have examined the influence of mechanical surface finishing on the development of residual stresses, and on the subsequent formation of stress corrosion cracks, in 316Ti austenitic stainless steel after exposure to boiling magnesium chloride. The surface residual stresses of as-received plate, prior to machining, were found to be biaxial and compressive. However, abrasive grinding produced significant compressive stresses in the machining direction but much lower perpendicular stresses. On the other hand, milling produced high biaxial tensile stresses (approaching the ultimate tensile strength, UTS, of the material), which were found to be relatively insensitive to cut depth but to vary as a function of feed rate. On the milled surfaces ...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
Surface quality and dimensional tolerances of the selective laser melting (SLM) process are not good...
Thermo-mechanical processing of type 304 and type 316L stainless steels done by (a) cold rolling to ...
AbstractWe have examined the influence of mechanical surface finishing on the development of residua...
The induced residual stresses in stainless steels as a consequence of surface grinding as well as th...
International audienceThe effects of machining such as grinding and turning on the microstructural a...
Correlation between machined surface alterations and stress corrosion cracking (SCC) susceptibility ...
Experimental investigation on the relation of grinding induced surface residual stresses (RS) with s...
Stainless steels were developed in the early 20th century and are used where both the mechanical pro...
Austenitic stainless steels are extensively used in mechanical engineering. The machined surface int...
Stainless steels are widely used in applications where both the mechanical properties of steels and ...
The effect of surface finish, applied stress and test duration on the developed populations of short...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
Warm-forged Type 304L stainless steel specimens have been tested in high temperature hydrogenated wa...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
Surface quality and dimensional tolerances of the selective laser melting (SLM) process are not good...
Thermo-mechanical processing of type 304 and type 316L stainless steels done by (a) cold rolling to ...
AbstractWe have examined the influence of mechanical surface finishing on the development of residua...
The induced residual stresses in stainless steels as a consequence of surface grinding as well as th...
International audienceThe effects of machining such as grinding and turning on the microstructural a...
Correlation between machined surface alterations and stress corrosion cracking (SCC) susceptibility ...
Experimental investigation on the relation of grinding induced surface residual stresses (RS) with s...
Stainless steels were developed in the early 20th century and are used where both the mechanical pro...
Austenitic stainless steels are extensively used in mechanical engineering. The machined surface int...
Stainless steels are widely used in applications where both the mechanical properties of steels and ...
The effect of surface finish, applied stress and test duration on the developed populations of short...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
Warm-forged Type 304L stainless steel specimens have been tested in high temperature hydrogenated wa...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
The influence of surface grinding and microstructure on chloride induced stress corrosion cracking (...
Surface quality and dimensional tolerances of the selective laser melting (SLM) process are not good...
Thermo-mechanical processing of type 304 and type 316L stainless steels done by (a) cold rolling to ...