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Effect of strain rate on microstructure evolution of a nickel-based superalloy during hot deformation
Affiliation:1. School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, PR China;2. Fushun Special Steel Co. Ltd, Fushun 113000, PR China;1. School of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China;2. Light Alloy Research Institute of Central South University, Changsha 410083, China;3. State Key Laboratory of High Performance Complex Manufacturing, Changsha 410083, China;4. School of Energy and Power Engineering, Key Laboratory of Efficient and Clean Energy Utilization, Changsha University of Science and Technology, Changsha 410114, China;1. School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, PR China;2. Fushun special steel Co. Ltd., Fushun 113000, PR China;1. Department of Metallurgical and Materials Engineering, Indian Institute of Technology Kharagpur, 721302, India;2. Department of Metallurgical and Materials Engineering, Indian Institute of Technology Madras, 600036, India;3. VDM Metals GmbH, Plettenberger Strasse, 258791 Werdohl, Germany
Abstract:The hot deformation behavior of a nickel-based superalloy was investigated by means of isothermal compression tests in the strain rate range of 0.001–10 s?1 at 1110 °C. Transmission electron microscope (TEM) and electron backscatter diffraction (EBSD) technique were used to study the effect of strain rate on the microstructure evolution of the alloy during hot deformation. The results revealed that the dynamic recrystallization (DRX) process was stimulated at high strain rates (ε??5s-1) due to the high dislocation density and adiabatic temperature rise. Meanwhile, high nucleation of DRX and low grain growth led to the fine DRX grains. In the strain rate rage of 0.001–1 s?1, the volume fraction of DRX grains increased with the decreasing strain rate, and the grain growth gradually governed the DRX process. Moreover, the strain rate has an important effect on DDRX and CDRX during hot deformation. On the other hand, particular attention was also paid to the evolution of twin boundaries during hot deformation. It was found that there was a lower fraction of Σ3 boundaries at the intermediate strain rate of 1 s?1, while the fractions of Σ3 boundaries were much higher at both the lower strain rates (ε??0.1s-1) and higher strain rates (ε??5s-1).
Keywords:Nickel-based superalloy  DRX  Dislocation density  Adiabatic temperature rise  Twinning
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