Microstructure and texture in seamless 0.08C-Cr-Mo-V, 0.25C-Cr-Mo-V-Nb, 0.08-13Cr-3Ni-Mo-V-Nb, and 18Cr-9Ni steel pipes are studied in the as-rolled and heat-treated states using orientation EBSD microscopy. It has been found that all types of microstructure (ferrite, martensite, and bainite) in products, both after hot rolling and after heat treatment, have well-defined axial crystallographic texture, where the direction is predominately perpendicular to the pipe surface. It is demonstrated that texture formation in heat-treated states is inherited due to the following factors important for the rules of orientation selection during the γ→α phase transformation: 1) occurrence of stable orientation of austenite grains resulted from strainin...
DoctorPipes can be manufactured by welding spirals of hot–rolled linepipe steels. This process has a...
AbstractThe evolution of microstructure and texture of a 0.2%C–Mn steel during large strain warm def...
The development of microstructure and crystallographic texture of conventional and high Niobium API ...
The structure and texture of low-carbon low-alloy pipe steel after Thermo-Mechanical Controlled Proc...
Most pipelines are often designed to serve in rigorous environments for several decades. Failure in ...
The method of orientation microscopy (EBSD) is used to study the structure and texture of low-carbon...
The evolution of microstructure and crystallographic texture has been investigated in double-sided f...
Microstructural phase of linepipe steels depends on different isothermal conditions. Thermal cyclin...
Abstract. Low-carbon steels used for deep-drawability applications have properties which depend grea...
The way in which texture development is affected by hot rolling, intercritical rolling, and warm rol...
Seamless steel pipes for application in the oil and gas industries are manufactured from quenched an...
In this paper, the microstructure and mechanical properties of heavy-wall seamless bend pipe after q...
Low-carbon steels used for deep-drawability applications have properties which depend greatly on the...
Thermo-mechanical controlled processing (TMCP) is employed to obtain the required level of mechanica...
The mechanisms leading to the alpha fibre texture development in hot rolled ferritic stainless steel...
DoctorPipes can be manufactured by welding spirals of hot–rolled linepipe steels. This process has a...
AbstractThe evolution of microstructure and texture of a 0.2%C–Mn steel during large strain warm def...
The development of microstructure and crystallographic texture of conventional and high Niobium API ...
The structure and texture of low-carbon low-alloy pipe steel after Thermo-Mechanical Controlled Proc...
Most pipelines are often designed to serve in rigorous environments for several decades. Failure in ...
The method of orientation microscopy (EBSD) is used to study the structure and texture of low-carbon...
The evolution of microstructure and crystallographic texture has been investigated in double-sided f...
Microstructural phase of linepipe steels depends on different isothermal conditions. Thermal cyclin...
Abstract. Low-carbon steels used for deep-drawability applications have properties which depend grea...
The way in which texture development is affected by hot rolling, intercritical rolling, and warm rol...
Seamless steel pipes for application in the oil and gas industries are manufactured from quenched an...
In this paper, the microstructure and mechanical properties of heavy-wall seamless bend pipe after q...
Low-carbon steels used for deep-drawability applications have properties which depend greatly on the...
Thermo-mechanical controlled processing (TMCP) is employed to obtain the required level of mechanica...
The mechanisms leading to the alpha fibre texture development in hot rolled ferritic stainless steel...
DoctorPipes can be manufactured by welding spirals of hot–rolled linepipe steels. This process has a...
AbstractThe evolution of microstructure and texture of a 0.2%C–Mn steel during large strain warm def...
The development of microstructure and crystallographic texture of conventional and high Niobium API ...