A Study on Diffusion in Hot-dip Aluminizing

被引:2
|
作者
Lu, Yuheng [1 ]
Shangguan, Qi [1 ]
Huang, Caimin [1 ]
Pan, Jiehua [1 ]
Zeng, Jianmin [1 ]
机构
[1] Guangxi Univ, Key Lab Nonferrous Mat & New Proc Technol, Nanning 530004, Peoples R China
关键词
Hot-dip aluminizing; Aluminum; Diffusion; Mathematical model; ALUMINUM;
D O I
10.4028/www.scientific.net/AMR.97-101.1253
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Hot-dip aluminizing panels of Q235 steels were produced in laboratory. Then the hot-dip aluminizing samples were executed diffusion at elevated temperatures protecting with flowing argon gas. Metallographic microscope, scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS) were employed for compositional analyses and graphical analyses of coating. The diffusion process was researched and the phase's microstructure after diffusion was analyzed and discussed. The hot-dip aluminizing diffusion mathematical model was established with the finite element method. The results show that after diffusion in hot-dip aluminizing, the aluminum of the coating disappeared. The thickness of diffusion layer increased and the dentate frame disappeared. There are some iron-rich phases such as Fe2Al5, FeAl and Fe3Al in the diffusion layer. The phase Fe2Al5 decreases and the phase FeAl increases. The mathematical model corresponds with the actual situation. The diffusion coefficients of Al atoms diffusing in intermetallic compounds were calculated at 950 degrees C, which were 0.29x10(-12) m(2)/s fbr Fe2Al5, 0.7x10(-12) m(2)m/s for FeAl, and Fe3Al, respectively.
引用
收藏
页码:1253 / 1256
页数:4
相关论文
共 50 条
  • [41] Preparation of TiAl3 Coating on γ-TiAl through Hot-dip Aluminizing and Subsequent Interdiffusion Treatment
    Zhang, Z. G.
    Teng, X.
    Xiang, H. F.
    Sheng, Y. G.
    Zhang, X. J.
    [J]. HIGH TEMPERATURE MATERIALS AND PROCESSES, 2009, 28 (1-2) : 115 - 119
  • [42] Guidelines for hot-dip galvanizing
    [J]. JOT, Journal fuer Oberflaechentechnik, 2020, 60 : 6 - 7
  • [43] More on hot-dip galvanizing
    Resnick, M
    [J]. MATERIALS PERFORMANCE, 2003, 42 (10) : 7 - 7
  • [44] Hot-dip closes in on electro
    [J]. Iron Age New Steel, 2000, 16 (03):
  • [45] HOT-DIP GALVANIZING ALLOYS
    LYNCH, RF
    [J]. JOURNAL OF METALS, 1987, 39 (08): : 39 - 41
  • [46] Enhancing Corrosion Resistance of Type 310S Stainless Steel in Carbonate Melt by Hot-Dip Aluminizing
    Sah, Santosh Prasad
    Tada, Eiji
    Nishikata, Atsushi
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2018, 165 (07) : C403 - C411
  • [47] Effect of silicon on the microstructure and growth kinetics of intermetallic phases formed during hot-dip aluminizing of ferritic steel
    Lemmens, B.
    Springer, H.
    De Graeve, I.
    De Strycker, J.
    Raabe, D.
    Verbeken, K.
    [J]. SURFACE & COATINGS TECHNOLOGY, 2017, 319 : 104 - 109
  • [48] New Insights into Microstructure Characteristics and Tribological Property of Ti Alloy Processed by Hot-Dip Aluminizing and Heat Treatment
    Zhao, Jianhua
    Shangguan, Jingjing
    Gao, Lisen
    Gu, Cheng
    Wang, Yajun
    Shi, Yu
    [J]. METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2022, 53 (03): : 1035 - 1050
  • [49] New Insights into Microstructure Characteristics and Tribological Property of Ti Alloy Processed by Hot-Dip Aluminizing and Heat Treatment
    Jianhua Zhao
    Jingjing Shangguan
    Lisen Gao
    Cheng Gu
    Yajun Wang
    Yu Shi
    [J]. Metallurgical and Materials Transactions A, 2022, 53 : 1035 - 1050
  • [50] On the bonding of hot-dip galvanized components
    Abeln, Bjoern
    Richter, Carl
    Feldmann, Markus
    [J]. STAHLBAU, 2017, 86 (11) : 1029 - 1035