【摘 要】
:
The hot deformation behavior of Fe-26Mn-6.2Al-0.05C steel was studied by experimental hot compression tests in the temperature range of 800-1050 ℃ and strain rate range of 0.01-30 s-1 on a Gleeble-3500 thermal simulation machine.The microstructural evolut
【机 构】
:
Collaborative Innovation Center of Steel Technology,University of Science and Technology Beijing, Be
论文部分内容阅读
The hot deformation behavior of Fe-26Mn-6.2Al-0.05C steel was studied by experimental hot compression tests in the temperature range of 800-1050 ℃ and strain rate range of 0.01-30 s-1 on a Gleeble-3500 thermal simulation machine.The microstructural evolution during the corresponding thermal process was observed in situ by confocal laser scanning microscopy.Electron backscattered diffraction and transmission electron microscopy analyses were carried out to observe the microstructural morphology before arid after the hot deformation.Furthermore,interrupted compression tests were conducted to correlate the microstructural characteristics and softening mechanisms at different deformation stages.The results showed that hot compression tests of this steel were all carried out on a duplex matrix composed of austenite and δ-ferrite.As the deformation temperature increased from 800 to 1050 ℃,the volume fraction of austenite decreased from 70.9% to 44.0%,while that of δ-ferrite increased from 29.1% to 56.0%.Due to the different stress exponents (n) and apparent activation energies (Q),the generated strain was mostly accommodated by δ-ferrite at the commencement of deformation,and then both dynamic recovery and dynamic recrystallization occurred earlier in δ-ferrite than in austenite.This interaction of strain partitioning and unsynchronized softening behavior caused an abnormal hot deformation behavior profile in the Fe-Mn-A1 duplex steel,such as yield-like behavior,peculiar work-hardening behavior,and dynamic softening behavior,which are influenced by not only temperature and strain rate but also by microstructural evolution.
其他文献
Carbon nanotube (CNT)-reinforced 6061Al (CNT/6061Al) composites were fabricated via powder metallurgy combined with friction stir processing (FSP).CNTs were dispersed after FSP and accelerated the precipitation process of the CNT/6061Al composites.However
Glass fibres/epoxy resins composites have been performed as ideal materials to make support instruments for high-energy and nuclear physics experiments.The effects of the γ-ray irradiation on the fatigue strength,thermal conductivities and thermal stabili
Boron-doped aluminum nitride (B-A1N) thin films were synthesized on A1 substrates by using chemical vapor deposition method by changing the synthesis parameters and were used as thermal interface material for high power light emitting diode (LED).The B-A1
Solidification shrinkage has been recognized as an important factor for macrosegregation formation.An arbitrary Lagrangian-Eulerian (ALE) model is constructed to predict the macrosegregation caused by thermal-solutal convection and solidification shrinkag
Mixtures of W and B13C2 powders were mechanically milled and subsequently annealed at 900-1200℃.It is found that amorphous W-B-C alloy formed as the mixtures were milled for 20-80 h.After annealing the 80 h-milled mixtures at 900-950 ℃,solid solutions of
Target assembly is a key consumable material for producing thin film used in the electronic packaging and devices.The residual stresses induced during the process of soldering are detrimental to the performance of target assembly.In this work,the intensit
Mg-Zn-Ag alloys have been extensively studied in recent years for potential biodegradable implants due to their unique mechanical properties, biodegradability and biocompatibility. In the present study, Mg-3Zn-xAg (wt%, x = 0. 2, 0. 5 and 0. 8) alloys wit
Both of the single crystal (SX) castability and undercoolability of PWA 1383 superalloy were investigated during the directional solidification and isothermal cooling.In all the six SX parts of a casting cluster,no stray grains were found,revealing a defe
The effect of sulphide (Na2S) concentration (SC) on the corrosion and cavitation erosion behaviours of a cast nickel aluminium bronze (NAB) in 3.5% NaC1 solution is investigated in this study.The results show that when the SC exceeds 50 ppm,the hydrogen e
Diffusion bonding of refractory Nb-Si-based alloy was performed with Ni/Al and Ti/Al nanolayers under the condition of 1473 K/30 MPa/60 min.The NbSS/Nb5Si3 in situ composite with the nominal composition of Nb-22Ti-16Si-3Cr-3Al-2Hf was used as the parent m