In this paper, torsion fracture behavior of drawn pearlitic steel wires with different heat treatments was investigated. Samples with different heat treatments was investigated. Samples with different heat treatment conditions were subjected to torsion and tensile tests. The shear strain along the torsion sample after fracture was measured. Fracture surface of wires was examined by Scanning Electron Microscopy. In addition, the method of Differential Scanning Calorimetry was used to characterize the thermodynamic process in the heat treatment. A numerical simulation via finite element method on temperature field evolution for the wire during heat treatment process was performed. The results show that both strain aging and recovery process o...
The microstructures and longitudinal fracture resistances of 0.635 mm diam lamp-doped and undoped tu...
This paper deals with the influence of the cold drawing process on the fracture behaviour of pearlit...
International audienceThe formation of a white etching layer (WEL), a very hard and brittle phase on...
Spheroidization of lamellar cementite often occurs in cold-drawn pearlitic steel wires during galvan...
Relationship between torsion delamination and cementite recrystallization in heavily cold drawn pear...
In the present experiment, hot-dip galvanizing simulated annealing of 2000 MPa cold-drawn pearlitic ...
The torsion behavior of pearlitic steel wires is investigated and the conditions responsible for tor...
In this paper a study is presented of the tensile fracture behavior of progressively-drawn pearlitic...
In situ micro-cantilever fracture testing is used to demonstrate changes in fracture behavior of nan...
To investigate the effects of drawing-generated heating on the microstructural and mechanical proper...
Although many heat treatment schemes have been developed for pearlitic steel, in the literature ther...
Plastic deformation of tungsten wire is an effective source of toughening tungsten fibre-reinforced ...
The effect of the thermal properties of steels on wire drawing behavior has been investigated to und...
Steel wires under severe cold drawing deformation, develop high strength (5-6 GPa) and ductility. Fo...
In this paper, an attempt was made to explain the causes of surface delamination in high carbon stee...
The microstructures and longitudinal fracture resistances of 0.635 mm diam lamp-doped and undoped tu...
This paper deals with the influence of the cold drawing process on the fracture behaviour of pearlit...
International audienceThe formation of a white etching layer (WEL), a very hard and brittle phase on...
Spheroidization of lamellar cementite often occurs in cold-drawn pearlitic steel wires during galvan...
Relationship between torsion delamination and cementite recrystallization in heavily cold drawn pear...
In the present experiment, hot-dip galvanizing simulated annealing of 2000 MPa cold-drawn pearlitic ...
The torsion behavior of pearlitic steel wires is investigated and the conditions responsible for tor...
In this paper a study is presented of the tensile fracture behavior of progressively-drawn pearlitic...
In situ micro-cantilever fracture testing is used to demonstrate changes in fracture behavior of nan...
To investigate the effects of drawing-generated heating on the microstructural and mechanical proper...
Although many heat treatment schemes have been developed for pearlitic steel, in the literature ther...
Plastic deformation of tungsten wire is an effective source of toughening tungsten fibre-reinforced ...
The effect of the thermal properties of steels on wire drawing behavior has been investigated to und...
Steel wires under severe cold drawing deformation, develop high strength (5-6 GPa) and ductility. Fo...
In this paper, an attempt was made to explain the causes of surface delamination in high carbon stee...
The microstructures and longitudinal fracture resistances of 0.635 mm diam lamp-doped and undoped tu...
This paper deals with the influence of the cold drawing process on the fracture behaviour of pearlit...
International audienceThe formation of a white etching layer (WEL), a very hard and brittle phase on...