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Microstructural Feature and Evolution of Rapidly Solidified Ni_3Al-Based Superalloys
Authors:Ye-Fan Li  Chong Li  Jing Wu  Hui-Jun Li  Yong-Chang Liu  Hai-Peng Wang
Affiliation:1.State Key Lab of Hydraulic Engineering Simulation and Safety, School of Materials Science and Engineering, Tianjin University, Tianjin 300354, China2 Department of Applied Physics, School of Science,Northwestern Polytechnical University, Xi’an 710129, China;
Abstract:The Ni3Al-based superalloy was rapidly solidified in the form of droplets with varying diameters. The cooling rate (Rc) is a function of diameter (D) of droplet. With the decrease in droplet sizes (increase in the cooling rates), the volume fraction of γ′ + γ eutectic structure increases from 21.31 (D = 1400 μm, Rc = 3.6 × 102 K s-1) to 36.31% (D = 270 μm, Rc = 2.3 × 103 K s-1). Moreover, unimodal size distribution of nano-γ′ exists in the droplets instead of bimodal dual-size distributions of γ′ precipitates that are normal in as-cast alloys.
Keywords:Ni3Al-based  superalloy  Microstructure  Rapid  solidification  γ  precipitate  
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