Deep cryogenic treatment is a special kind of bulk hardening heat treatment performed on a big variety of tool and carburized steels, to improve mechanical properties and wear resistance. The mai reason for this is the complete transformation from austenite into martensite plus the formation of submicrometric carbides dispersed in the tempered martensitic structure. The greatest improvement in properties is obtained by carrying out the deep cryogenic treatment between quenching and tempering. However, a significant improvement can be obtained even by treating the tools at the end of the usual heat treatment cycle, i.e. the finished tools. This last solution is more flexible than the other one and can extend the use of the treatment to many ...
Deep Cryogenic Treatment (DCT) is now extensively used as supplementary process for the achievement ...
A short review of experimental data about the effect of deep cryogenic treatment,DCT, on the abrasiv...
Life expectancy of mechanical systems is always dependent on the most critical component of the syst...
Deep cryogenic treatment is a special kind of bulk hardening heat treatment performed on a big varie...
In this paper the effect of deep cryogenic treatment time on microstructure and tribological behavio...
Cryogenic treatment is widely used to enhance mechanical and physical properties of tool steels, hot...
Cryogenic treatments are known to increase the wear resistance and toughness of steel. However, the ...
Wear resistance of metallic materials can be effectively improved by the deep cryogenic treatment. I...
The influence of Deep Cryogenic Treatment (DCT) on the properties of four wrought and PM high speed ...
The effects of deep cryogenic treatment (DCT) on the wear behavior of different tool steels have bee...
none8noA deep cryogenic treatment, carried out after quenching, can improve several mechanical prope...
In this study, the effects of conventional quenching, deep cryogenic process and tempering treatment...
The behaviour of the cryogenically treated En52 martensitic valve steel has been experimentally anal...
The purpose of this study was to reveal the changes in properties of deep cryogenic treatment (DCT) ...
Properly performed heat treatment can significantly affect final properties of high-speed steels, so...
Deep Cryogenic Treatment (DCT) is now extensively used as supplementary process for the achievement ...
A short review of experimental data about the effect of deep cryogenic treatment,DCT, on the abrasiv...
Life expectancy of mechanical systems is always dependent on the most critical component of the syst...
Deep cryogenic treatment is a special kind of bulk hardening heat treatment performed on a big varie...
In this paper the effect of deep cryogenic treatment time on microstructure and tribological behavio...
Cryogenic treatment is widely used to enhance mechanical and physical properties of tool steels, hot...
Cryogenic treatments are known to increase the wear resistance and toughness of steel. However, the ...
Wear resistance of metallic materials can be effectively improved by the deep cryogenic treatment. I...
The influence of Deep Cryogenic Treatment (DCT) on the properties of four wrought and PM high speed ...
The effects of deep cryogenic treatment (DCT) on the wear behavior of different tool steels have bee...
none8noA deep cryogenic treatment, carried out after quenching, can improve several mechanical prope...
In this study, the effects of conventional quenching, deep cryogenic process and tempering treatment...
The behaviour of the cryogenically treated En52 martensitic valve steel has been experimentally anal...
The purpose of this study was to reveal the changes in properties of deep cryogenic treatment (DCT) ...
Properly performed heat treatment can significantly affect final properties of high-speed steels, so...
Deep Cryogenic Treatment (DCT) is now extensively used as supplementary process for the achievement ...
A short review of experimental data about the effect of deep cryogenic treatment,DCT, on the abrasiv...
Life expectancy of mechanical systems is always dependent on the most critical component of the syst...