微观结构
材料科学
合金
尼亚尔
退火(玻璃)
体积分数
晶体结构
结晶学
固溶体
冶金
金属间化合物
复合材料
化学
作者
Xiaolin Li,Chi Jin,Haozhe Li,Xiaoxiao Hao,Ke Hua,Xiangtao Deng,Haifeng Wang,Zhaodong Wang
标识
DOI:10.1016/j.jallcom.2022.164304
摘要
• The phase constitution and microstructure of as-cast and annealing AlCrCuFeNi2V x (x=0, 0.3 and 0.6) was studied. • The effect of V addition and annealing on phase constitution and mechanical properties in AlCrCuFeNi 2 have been discussed. • The crystal structure of Cu-rich phase has changed from equilibrium 9R structure to fcc structure after heat treatment. • The spherical particles changed from FeCr to NiAl with V increase for increasing lattice misfit in particles and matrix. This study developed a novel series of AlCrCuFeNi 2 V x (x = 0, 0.3 and 0.6) high-entropy alloys (HEAs), and systemically assessed the relationship between composition, processing, microstructure and mechanical properties. The alloys were produced by arc melting and studied in as-solidified and homogenized (annealing at 650 ℃ for 4 h) conditions. In the base alloy of AlCrCuFeNi 2 , the microstructure consists of disordered bcc and fcc phases, ordered B2 and L1 2 phases, and the B2 phase and bcc phase are coherent. With the increase of V content, the volume fraction of bcc/B2 phases increase, accompanied with a peculiar phenomenon that the shape of B2 phase has transferred from irregular matrix to spherical precipitates, which caused by the increase of lattice misfit after V addition. Moreover, a large number of Cu particles are randomly distributed in the NiAl (B2) phase, and the crystal structure of Cu particles has changed from 9 R structure to fcc structure after annealing treatment. Mechanical tests of these alloys reveal that the 0.6 at% V addition has doubled the yield strength (V0, 780 MPa; V0.6, 1673 MPa) for the increase in volume fraction of bcc/B2 phase and the solid solution strengthening produces by V addition. The yield strength is increased by 124 MPa after annealing treatment in V0.6 alloy without sacrificing the ductility due to the promotion of L1 2 phase after annealing treatment.
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