Claims
- 1. A hot-dip Zn—Al—Mg plated steel sheet good in corrosion resistance and surface appearance that is a hot-dip Zn-base plated steel sheet obtained by forming on a surface of a steel sheet a hot-dip Zn—Al—Mg plating layer composed of Al: 4.0-10 wt. %, Mg: 1.0-4.0 wt. % and the balance of Zn and unavoidable impurities, the plating layer having a metallic structure including a primary crystal Al phase in a matrix of Al/Zn/Zn2Mg ternary eutectic structure.
- 2. A hot-dip Zn—Al—Mg plated steel sheet good in corrosion resistance and surface appearance that is a hot-dip Zn-base plated steel sheet obtained by forming on a surface of a steel sheet a hot-dip Zn—Al—Mg plating layer composed of Al: 4.0 wt. %, Mg: 1.0-4.0 wt. % and the balance of Zn and unavoidable impurities, the plating layer having a metallic structure including a primary crystal Al phase and a Zn single phase in a matrix of Al/Zn/Zn2Mg ternary eutectic structure.
- 3. A hot-dip Zn—Al—Mg plated steel sheet according to claim 1, wherein the metallic structure of the plating layer is composed of a total amount of the primary crystal Al phase and the Al/Zn/Zn2Mg ternary eutectic structure not less than 80 vol. %, and Zn single phase not greater than 15 vol. %, including 0 vol. %.
- 4. A hot-dip Zn—Al—Mg plated steel sheet according to claim 1, wherein the metallic structure of the plating layer contains substantially neither Al/Zn/Zn11/Mg2 ternary eutectic crystal matrix per se nor in this matrix a Zn11Mg2-system phase including an Al primary crystal or an Al primary crystal and a Zn single phase.
- 5. A method of producing hot-dip Zn—Al—Mg plated steel sheet good in corrosion resistance and surface appearance that is a method of producing a hot-dip Zn—Al—Mg plated steel sheet using a hot-dip plating bath composed of Al: 4.0-10 wt. %, Mg: 1.0-4.0 wt. % and the balance of Zn and unavoidable impurities, characterized in controlling a bath temperature of the plating bath to not lower than the melting point and lower than 470° C. and a cooling rate up to completion of plating layer solidification to not less than 10° C./s.
- 6. A method of producing hot-dip Zn—Al—Mg plated steel sheet according to claim 5, wherein the bath temperature of the plating bath is not lower than the melting point and not higher than 450° C. and the cooling rate is not less than 12° C./s.
- 7. A method of producing hot-dip Zn—Al—Mg plated steel sheet good in corrosion resistance and surface appearance that is a method of producing a hot-dip Zn—Al—Mg plated steel sheet using a hot-dip plating bath composed of Al: 4.0-10 wt. %, Mg: 1.0-4.0 wt. % and the balance of Zn and unavoidable impurities, characterized in controlling a bath temperature of the plating bath to not lower than 470° C. and a cooling rate up to completion of plating layer solidification to not less than 0.5° C./s.
- 8. A method of producing hot-dip Zn—Al—Mg plated steel sheet according to claim 5, wherein the plating layer of the plated steel sheet has a metallic structure including a primary crystal Al phase or a primary crystal Al phase and a Zn single phase in a matrix of Al/Zn/Zn2Mg ternary eutectic structure.
- 9. A hot-dip Zn—Al—Mg-system plated steel sheet with no stripe pattern and having good corrosion resistance and surface appearance comprising a hot-dip plated steel sheet obtained by forming on a surface of a steel sheet a plating layer composed of Al: 5.0-8.5 wt. %, Mg: 1.0-4.0 wt. %, Be: 0.001-0.05 wt. % and the balance of Zn and unavoidable impurities, the plating layer having a metallic structure including a primary crystal Al phase or primary crystal Al phase and Zn single phase in a matrix of Al/Zn/Zn2Mg ternary eutectic structure.
- 10. A hot-dip Zn—Al—Mg-system plated steel sheet with no stripe pattern and having good corrosion resistance and surface appearance comprising a hot-dip plated steel sheet obtained by forming on a surface of a steel sheet a plating layer composed of Al: 5.0-8.6 wt. %, Mg: 1.0-4.0 wt. %, Ti: 0.0020.1 wt. %, B: 0.001-0.045 wt. %, Be: 0.001-0.05 wt. % and the balance of Zn and unavoidable impurities, the plating layer having a metallic structure including a primary crystal Al phase or primary crystal Al phase and Zn single phase in a matrix of Al/Zn/Zn2Mg ternary eutectic structure.
Priority Claims (4)
Number |
Date |
Country |
Kind |
8-352467 |
Dec 1996 |
JP |
|
9-63923 |
Mar 1997 |
JP |
|
9-162035 |
Jun 1997 |
JP |
|
9-316631 |
Nov 1997 |
JP |
|
Parent Case Info
This application is a divisional of application Ser. No. 09/117,779 filed Aug. 6, 1998, U.S. Pat. No. 6,235,410 which is a 371 application of PCT/JP97/04594, filed Dec. 12, 1997.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3505043 |
Lee et al. |
Apr 1970 |
A |
4369211 |
Nitto et al. |
Jan 1983 |
A |
5500290 |
Udagawa et al. |
Mar 1996 |
A |
Foreign Referenced Citations (3)
Number |
Date |
Country |
6-158257 |
Jun 1994 |
JP |
8-35049 |
Feb 1996 |
JP |
8-60324 |
Mar 1996 |
JP |