Nanostructural evolution of cementite lamellae in pearlitic steel wires subjected to cold drawing remains elusive, making it difficult to understand the origin of remarkable ductility in cementite. Using high-resolution transmission electron microscopy (HRTEM), the mechanisms underlying the inelastic deformation of cementite in pearlitic steel wires were examined and elucidated. Deformation of cementite in drawing should be included in two mechanisms: (1) Dislocation mechanism: deformation in low strain pearlite should rely on the movement of dislocation. Flat-crystal cementite was broken up into several different orientation cementite particles. (2) Grain rotation mechanism: the deformation mechanism should be by the rotation of cementite ...
In order to make clear the effect of temperature on deformation and fracture of cementite in steels,...
AbstractEutectoid steel wires are heat treated at isothermal temperatures to generate not only pearl...
High-pressure torsion of a pearlitic steel under a pressure of 7 GPa and for 1 rotation produces a h...
Cold-drawn pearlitic steel wires have attracted considerable interest because of their excellent com...
Cold-drawn pearlitic steel wires have attracted considerable interest because of their excellent com...
Despite numerous investigations in the past, mechanism of cementite dissolution has still remained a...
The torsion behavior of pearlitic steel wires is investigated and the conditions responsible for tor...
Available online 16 April 2016The effects of low temperature annealing on the cementite structure an...
To investigate the effects of drawing-generated heating on the microstructural and mechanical proper...
The alloy design concepts of high performance steels, involve the knowledge on the stability of carb...
Spheroidization of lamellar cementite often occurs in cold-drawn pearlitic steel wires during galvan...
The aim of this paper is to present recent microstructural investigations concerning two kinds of ma...
AbstractEutectoid steel wires are heat treated at isothermal temperatures to generate not only pearl...
The microscopic mechanisms that accommodate uniaxial ratchetting in cold-drawn pearlitic steel wires...
The microscopic mechanisms that accommodate uniaxial ratchetting in cold-drawn pearlitic steel wires...
In order to make clear the effect of temperature on deformation and fracture of cementite in steels,...
AbstractEutectoid steel wires are heat treated at isothermal temperatures to generate not only pearl...
High-pressure torsion of a pearlitic steel under a pressure of 7 GPa and for 1 rotation produces a h...
Cold-drawn pearlitic steel wires have attracted considerable interest because of their excellent com...
Cold-drawn pearlitic steel wires have attracted considerable interest because of their excellent com...
Despite numerous investigations in the past, mechanism of cementite dissolution has still remained a...
The torsion behavior of pearlitic steel wires is investigated and the conditions responsible for tor...
Available online 16 April 2016The effects of low temperature annealing on the cementite structure an...
To investigate the effects of drawing-generated heating on the microstructural and mechanical proper...
The alloy design concepts of high performance steels, involve the knowledge on the stability of carb...
Spheroidization of lamellar cementite often occurs in cold-drawn pearlitic steel wires during galvan...
The aim of this paper is to present recent microstructural investigations concerning two kinds of ma...
AbstractEutectoid steel wires are heat treated at isothermal temperatures to generate not only pearl...
The microscopic mechanisms that accommodate uniaxial ratchetting in cold-drawn pearlitic steel wires...
The microscopic mechanisms that accommodate uniaxial ratchetting in cold-drawn pearlitic steel wires...
In order to make clear the effect of temperature on deformation and fracture of cementite in steels,...
AbstractEutectoid steel wires are heat treated at isothermal temperatures to generate not only pearl...
High-pressure torsion of a pearlitic steel under a pressure of 7 GPa and for 1 rotation produces a h...