Hot forming of a new steel used in stamping dies and tooling
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Rafael Barea
, Gerardo Conejero , Nuria Candela und Manuel Carsí
Abstract
The hot forming behavior of a new steel used in manufacturing processes at high temperatures such as hot stamping has been studied in this article. Compression and tensile tests were performed at low and high strain rates in a temperature range of 1 173–1 473 K to simulate forming processing conditions. The deformation data obtained from these experiments were correlated with the Garofalo equation with a stress exponent of 4.4 and an activation energy of 277 kJ · mol−1. This equation was used to determine the J-factor efficiency and stability of the steel. Temperatures in the range 1 423 to 1 473 K are recommended to conduct the forming process.
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© 2013, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- The thermodynamics of boron extraction from liquid silicon using SiO2–CaO–MgO slag treatment
- Viscosity estimation of semi-solid alloys based on thermal simulation compression tests
- Original Contributions
- Experimental study of phase equilibria in the “SnO”–CaO–SiO2 system in equilibrium with tin metal
- Prediction of the solidification path of Al-4.37Cu-27.02Mg ternary eutectic alloy with a unified microsegregation model coupled with Thermo-Calc
- Evaluation of the effective diffusion coefficient of boron in the Fe2B phase in the presence of chemical stresses
- Morphology evolution of γ′ precipitates in GTD-111 Ni-based superalloy with heat treatment parameters
- Hot forming of a new steel used in stamping dies and tooling
- Mechanical properties and corrosion behaviour of freestanding, precipitate-free magnesium WE43 thin films
- Sliding wear performance of Fe-, Ni- and Co-based hardfacing alloys for PTA cladding
- The suitability of selected austenitic stainless steels and hastelloy C276 alloys as substrates for thin film deposition using spray pyrolysis
- Synthesis, structural, optical and thermal analysis of nanostructured ZnO
- Electrical conductivity variation of (Bi2Te3)0.25(Sb2Te3)0.75 crystal grown using the zone melting method
- X-ray Absorption Near Edge Structure Studies of Pb1-xMnxTe(In, Ga) Systems
- DGM News
- DGM News
- Grain refining of aluminium alloys and silicon by means of boron-nitride particles
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- The thermodynamics of boron extraction from liquid silicon using SiO2–CaO–MgO slag treatment
- Viscosity estimation of semi-solid alloys based on thermal simulation compression tests
- Original Contributions
- Experimental study of phase equilibria in the “SnO”–CaO–SiO2 system in equilibrium with tin metal
- Prediction of the solidification path of Al-4.37Cu-27.02Mg ternary eutectic alloy with a unified microsegregation model coupled with Thermo-Calc
- Evaluation of the effective diffusion coefficient of boron in the Fe2B phase in the presence of chemical stresses
- Morphology evolution of γ′ precipitates in GTD-111 Ni-based superalloy with heat treatment parameters
- Hot forming of a new steel used in stamping dies and tooling
- Mechanical properties and corrosion behaviour of freestanding, precipitate-free magnesium WE43 thin films
- Sliding wear performance of Fe-, Ni- and Co-based hardfacing alloys for PTA cladding
- The suitability of selected austenitic stainless steels and hastelloy C276 alloys as substrates for thin film deposition using spray pyrolysis
- Synthesis, structural, optical and thermal analysis of nanostructured ZnO
- Electrical conductivity variation of (Bi2Te3)0.25(Sb2Te3)0.75 crystal grown using the zone melting method
- X-ray Absorption Near Edge Structure Studies of Pb1-xMnxTe(In, Ga) Systems
- DGM News
- DGM News
- Grain refining of aluminium alloys and silicon by means of boron-nitride particles