Mechanical alloying behavior of Nb–Ti–Si-based alloy made from elemental powders by ball milling process

被引:3
作者
Li-Jing Zhang [1 ]
Xi-Ping Guo [1 ]
机构
[1] State Key Laboratory of Solidification Processing, Northwestern Polytechnical University
基金
中国国家自然科学基金;
关键词
Mechanical alloying; Nb–Ti–Si-based alloy; Powder morphology; Phase constituents; Microstructure; Supersaturated Nb solid solution;
D O I
暂无
中图分类号
TG146.416 [];
学科分类号
080502 ;
摘要
Nb-Ti-Si-based alloy powders were prepared by mechanical alloying(MA) of elemental particles.The evolutions of morphology,size,phase constituents,crystallite size,lattice strain,composition and internal microstructure,etc.,of the alloy powders were analyzed by X-ray diffraction(XRD),scanning electron microscopy(SEM),energy-dispersive spectroscopy(EDS),laser particle size analyzer and transmission electron microscope(TEM) analyses.The alloy particles are gradually refined and their shapes become globular with the increase in milling time.The diffraction peaks of Nb solid solution(Nbss) phase shift toward lower29 angles during ball milling from 2 to 5 h,and after that Nbss diffraction peaks shift toward higher 29 angles with the increase in milling time from 5 to 70 h,which is mainly attributed to the alteration of the lattice parameter of Nbss powders due to the solution of the alloying element atoms into Nb lattice to form Nbss.During ball milling process,the decrease in crystallite size and increase in lattice strain of Nbss powders lead to continuous broadening of their diffraction peaks.A typical lamellar microstructure is formed inside the powder particles after ball milling for 5 h and becomes more refined and homogenized with the increase in milling time.After 40-h-ball milling,the typical lamellar microstructure disappears and a very homogeneous microstructure is formed instead.This homogeneous microstructure is proved to be composed of only supersaturated Nbss phase.
引用
收藏
页码:174 / 182
页数:9
相关论文
共 22 条
  • [1] Characterization of porous Ti-bioglass composite produced by mechanical milling and space holder sintering[J]. Saeed Riahi,Mohammad Rajabi,Sayed Mahmood Rabiee.Rare Metals. 2015(09)
  • [2] Fabrication of Ti3AlC2 ceramic material by mechanical alloying[J]. GUO Shiboa,KANG Qipinga,LIU Juna,and QU Xuanhuib a College of Electromechanical Engineering,Hunan University of Science and Technology,Xiangtan 411201,China b School of Materials Science and Engineering,University of Science and Technology Beijing,Beijing 100083,China.Rare Metals. 2010(04)
  • [3] 粉末冶金法制备Nb-15Ti-11Al-10Si复合材料
    易丹青
    李丹
    李荐
    周宏明
    [J]. 稀有金属, 2007, (04) : 472 - 476
  • [4] Microstructure characterization of nanocrystalline (Ti 0.9 W 0.1 ) C prepared by mechanical alloying[J] . Chiheb Slama,Mohieddine Abdellaoui.International Journal of Refractory Metals and Ha . 2016
  • [5] Evolution of the microstructure of Cu–Fe–Co–Ni powder mixtures upon mechanical alloying[J] . P.A. Loginov,E.A. Levashov,V.V. Kurbatkina,A.A. Zaitsev,D.A. Sidorenko.Powder Technology . 2015
  • [6] Effects of B addition on the microstructure and properties of Nb silicide based ultrahigh temperature alloys[J] . Song Zhang,Xiping Guo.Intermetallics . 2014
  • [7] Evolution of microstructural and magnetic properties of mechanically alloyed Fe 80? x Ni 20 Si x nanostructured powders[J] . A.H. Bahrami,H. Ghayour,S. Sharafi.Powder Technology . 2013
  • [8] Preparation of (Ti,Ta)–(C,N) by mechanical alloying[J] . Melisha Naidoo,Jan Raethel,Iakovos Sigalas,Mathias Herrmann.International Journal of Refractory Metals and Hard Materials . 2012
  • [9] Microstructure evolution and room temperature fracture toughness of an integrally directionally solidified Nb–Ti–Si based ultrahigh temperature alloy[J] . Haisheng Guo,Xiping Guo.Scripta Materialia . 2010 (7)
  • [10] Preparation of nanostructured high-temperature TZM alloy by mechanical alloying and sintering[J] . E. Ahmadi,M. Malekzadeh,S.K. Sadrnezhaad.International Journal of Refractory Metals and Hard Materials . 2010 (1)