In the as-annealed condition, the nickel-based Alloy 625 has excellent mechanical and corrosion properties compared to those of common stainless steels. This peculiarity enables its exploitation in several industrial fields at cryogenic and high temperatures and in the presence of severely corrosive atmospheres. However, in this alloy, when high-temperature plastic deformation processes and heat treatments are not carefully optimized, the occurrence of excessive grain coarsening can irremediably deteriorate the mechanical strength, possibly leading to incompatibility with the standard requirements. Therefore, this research work investigated the possibility of adopting single- and double-aging treatments aimed at improving such strength loss...
The effect of precipitation on the corrosion resistance of AISI 316L(N) stainless steel previously e...
This study investigates the effect of artificial aging treatment and mechanical attrition treatment ...
The intergranular corrosion (IGC) behavior of a new metastable austenitic Cr−Mn−Ni−...
Alloy 625 is widely used for petrochemical, marine and aerospace applications owing to its outstandi...
The microstructures evolution of precipitations for an ultra-low iron Alloy 625 subjected to long te...
UNS N06625 is a well-known nickel-base superalloy generally used in annealed condition due to its ex...
In this paper, the effects of thermal aging in the 650⁻850 °C range on the localized corr...
Alloy 617 and Alloy 230 are lead structural materials for next generation nuclear power plant (NGNP)...
Although duplex stainless steels (SS) exhibit good performance in many severe corrosive environments...
Alloy 690 is a high-chromium nickel-base alloy used in various primary coolant system components and...
The service-exposed (~60000 h/873 K) Alloy 625 ammonia cracker tubes showed higher strength and lowe...
For its high creep resistance the commercial nickel-base alloy 625 relies on solid solution strength...
The effect of natural aging (NA) on mechanical properties in double aged aluminum alloys, AA7075, wa...
Heat treatable aluminum alloys such as 7075 and 7055, because of high strength and low density, are ...
The resistance against stress corrosion cracking of a metallic material strongly depends on the qual...
The effect of precipitation on the corrosion resistance of AISI 316L(N) stainless steel previously e...
This study investigates the effect of artificial aging treatment and mechanical attrition treatment ...
The intergranular corrosion (IGC) behavior of a new metastable austenitic Cr−Mn−Ni−...
Alloy 625 is widely used for petrochemical, marine and aerospace applications owing to its outstandi...
The microstructures evolution of precipitations for an ultra-low iron Alloy 625 subjected to long te...
UNS N06625 is a well-known nickel-base superalloy generally used in annealed condition due to its ex...
In this paper, the effects of thermal aging in the 650⁻850 °C range on the localized corr...
Alloy 617 and Alloy 230 are lead structural materials for next generation nuclear power plant (NGNP)...
Although duplex stainless steels (SS) exhibit good performance in many severe corrosive environments...
Alloy 690 is a high-chromium nickel-base alloy used in various primary coolant system components and...
The service-exposed (~60000 h/873 K) Alloy 625 ammonia cracker tubes showed higher strength and lowe...
For its high creep resistance the commercial nickel-base alloy 625 relies on solid solution strength...
The effect of natural aging (NA) on mechanical properties in double aged aluminum alloys, AA7075, wa...
Heat treatable aluminum alloys such as 7075 and 7055, because of high strength and low density, are ...
The resistance against stress corrosion cracking of a metallic material strongly depends on the qual...
The effect of precipitation on the corrosion resistance of AISI 316L(N) stainless steel previously e...
This study investigates the effect of artificial aging treatment and mechanical attrition treatment ...
The intergranular corrosion (IGC) behavior of a new metastable austenitic Cr−Mn−Ni−...