Formation of out-burst structure in hot-dip Zn-5mass%Al alloy coating

被引:0
|
作者
Uchida, Y
Andoh, A
Komatsu, A
Yamakawa, K
机构
[1] Nisshin Steel Co Ltd, Steel & Technol Dev Labs, Sakai, Osaka 5928332, Japan
[2] Univ Osaka Prefecture, Coll Engn, Osaka, Japan
关键词
hot-dip coating; Zn-Al coating; alloy layer; out-burst structure; Al-Fe intermetallic compounds; Fe-Zn intermetallic compounds;
D O I
暂无
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The formation of the "out-burst" products which is consisted of Al-Fe intermetallic compounds (IMCs) grown locally and abnormally, has been studied to compare with the structure of thin alloy layer normally formed on the sheet steel in a hot-dip Zn-5mass%Al alloy coating at the bath temperature of 450 degrees C. The formation of the out-burst products is not due to the localized growth of thin alloy layer consisted of mainly Zn containing Al3Fe(Al13Fe4), but due to the growth of Al-Fe IMCs with mainly Zn containing Al5Fe2 formed at ferrite grain boundaries near the steel surface. These Al-Fe IMCs are considered to be changed from Fe-Zn IMCs which have been formed by the grain boundary diffusion of Zn. And during changing to Al-Fe IMCs, Zn discharged from Fe-Zn IMCs further diffuses to the adjacent ferrite grain boundaries and also into the adjacent ferrite grains. As a result, Fe-Zn IMCs are formed around Al-Fe IMCs which have been formed at the grain boundaries, and changes again to Al-Fe IMCs. This growth behavior of Al-Fe IMCs formed at the grain boundaries is induced From the results obtained in the previous works that the changing rate from Fe-Zn IMCs to Al-Fe IMCs in a molten Zn-5mass%Al alloy bath at 450 degrees C is very high.
引用
收藏
页码:734 / 739
页数:6
相关论文
共 50 条
  • [21] The electrochemical behavior & lifetime of a hot-dip 5-wt% Al-Zn coating in chloride environments
    Shih, HC
    Hsu, JW
    Sun, CN
    Chung, SC
    PLATING AND SURFACE FINISHING, 2001, 88 (06): : 100 - 103
  • [22] Formation of periodic layered structure during hot-dip galvanizing in Al-Zn-Mg bath
    Gao, Linjie
    Li, Zhi
    Kuang, Xiaowei
    Yin, Fucheng
    Ji, Hong
    SURFACE & COATINGS TECHNOLOGY, 2016, 304 : 306 - 315
  • [23] Study on Hot dip and Coating Structure of 55% Al-Zn Alloy Coated Steel
    Leng, Yanhong
    Feng, Yunli
    Song, Meng
    ADVANCED MATERIALS, PTS 1-3, 2012, 415-417 : 276 - +
  • [24] Research on design and microstructure of hot-dip Zn-Al-Mg/Sn alloy
    Ding, Chengfa
    Ma, Zheng
    Liu, Shiwen
    Zhao, Jinghua
    Luo, Qun
    Liu, Hongliang
    Wu, Guangxin
    Zhang, Jieyu
    MATERIALS CHARACTERIZATION, 2022, 185
  • [25] Weldability of hot-dip zn-al-mg alloy coated steel sheets
    Horikawa H.
    Asada H.
    Yosetsu Gakkai Shi/Journal of the Japan Welding Society, 2021, 90 (06): : 446 - 452
  • [26] Fatigue strength of additively manufactured hot-dip galvanized steel coated with a Zn-5Al alloy
    Kuehne, Ronny
    Voelkel, Justus
    Bartsch, Helen
    Feldmann, Markus
    Pinger, Thomas
    Sharma, Rahul
    Reisgen, Uwe
    PROGRESS IN ADDITIVE MANUFACTURING, 2024,
  • [27] Formation Mechanism of Dark Spot Defects on Hot-dip Galvanized Zn-11Al-3Mg Coating
    Peng J.
    Jin X.-Y.
    Qian H.-W.
    Surface Technology, 2023, 52 (07): : 208 - 216
  • [28] Study on Formation of Bottom Dross in Hot-dip Zn-0.1%Ni Alloy
    Luo, Gong
    Wang, Youbing
    Zeng, Jianmin
    He, Huan
    Yan, Jialin
    He, Cuiyun
    Zhang, Rui
    Li, Shining
    CHEMICAL, MATERIAL AND METALLURGICAL ENGINEERING III, PTS 1-3, 2014, 881-883 : 1572 - +
  • [29] Effect of Mg on Fe-Al interface structure of hot-dip galvanized Zn-Al-Mg alloy coatings
    Xie, Yiye
    Du, An
    Zhao, Xue
    Ma, Ruina
    Fan, Yongzhe
    Cao, Xiaoming
    SURFACE & COATINGS TECHNOLOGY, 2018, 337 : 313 - 320
  • [30] Study on the microstructure and corrosion resistance of hot-dip Al-Zn-Si-xMg coating
    Wang, Jianlong
    Han, Dong
    Qiao, Zhigang
    Zheng, Zhaoyang
    Ma, Ruina
    Du, An
    Fan, Yongzhe
    Zhao, Xue
    Yu, Huichao
    Cao, Xiaoming
    SURFACE & COATINGS TECHNOLOGY, 2025, 496