Claims
- 1. A surface-treated steel sheet exhibiting improved corrosion resistance after forming, which comprises a Zn--X alloy electroplated layer in an amount of 5-50 g/m.sup.2 on at least one side of the steel sheet, an alloy composition of the layer being such that X is at least one substance selected from the group consisting of Ni: 3-18 wt %, Co: 0.02-3 wt %, Mn: 25-45 wt %, and Cr: 8-20 wt %, and a chromate film placed on the Zn--X alloy electroplated layer in an amount of 10-200 mg/m.sup.2 as metallic Cr, the Zn--X alloy plating layer having cracks, the density of which is 1000-150000 in terms of the number of plated regions surrounded by cracks in a visual field measuring 1 mm.times.1 mm, with cracks having a maximum width of 0.5 .mu.m or less comprising 90% or more of the total number of the cracks, and with cracks having a depth of 80 % or more of the thickness of the plating layer comprising 80% or more of the total number of the cracks.
- 2. A surface-treated steel sheet as set forth in claim 1 wherein a plating layer containing 70 wt % or more of Ni is placed in an amount of 0.001-5 g/m.sup.2 underneath the Zn--X alloy plating layer.
- 3. A surface-treated steel sheet as set forth in claim 1 wherein a Zn plating layer in an amount of 7 g/m.sup.2 or less is placed on the Zn--Ni alloy electroplated layer, and the chromate film is placed on the Zn plating layer.
- 4. A surface-treated steel sheet as set forth in claim 3 wherein cracks are provided in the Zn plating layer.
- 5. A surface-treated steel sheet as set forth in claim 1 wherein a thin resin coating is applied to the chromate film.
- 6. A surface-treated steel sheet as set forth in claim 1 wherein the chromate film contains a lubricating agent.
- 7. A surface-treated steel sheet exhibiting improved corrosion resistance after forming, which comprises a Zn--X alloy electroplated layer in an amount of 7 g/m.sup.2 or less on at least one side of the steel sheet, an alloy composition of the layer being such that X is at least one substance selected from the group consisting of Ni: 3-18 wt %, Co: 0.02-3 wt %, Mn: 25-45 wt %, and Cr: 8-20 wt %, a Zn plating layer in an amount of 10-50 g/m.sup.2 which is plated as an underlayer of the Zn--X alloy electroplated layer and which is less noble potential than the Zn--X alloy electroplated layer, and a chromate film placed on the Zn--X alloy electroplated layer in an amount of 10-200 mg/m.sup.2 as metallic Cr, the Zn--X alloy plating layer underlying the chromate film having cracks with a density of 1000-150000 in terms of the number of plated regions surrounded by cracks in a visual field measuring 1 mm.times.1 mm, with cracks having a maximum width of 0.5 .mu.m or less comprising 90% or more of the total number of the cracks.
- 8. A surface-treated steel sheet as set forth in claim 7 wherein a plating layer containing 70 wt % or more of Ni is placed in an amount of 0.001-5 g/m.sup.2 underneath the Zn--X alloy plating layer.
- 9. A surface-treated steel sheet as set forth in claim 7 wherein a thin resin coating is applied to the chromate film.
- 10. A surface-treated steel sheet as set forth in claim 7 wherein the chromate film contains a lubricating agent.
- 11. A surface-treated steel sheet as set forth in claim 1 wherein the chromate film penetrates at least some of the cracks in the Zn--X alloy plating layer.
- 12. A surface-treated steel sheet as set forth in claim 7 wherein the chromate film penetrates at least some of the cracks in the Zn--X alloy plating layer.
Parent Case Info
This application is a continuation of Application No. PCT/JP96/01537, filed in Japan on Jun. 6, 1996, and which designates the United States of America.
US Referenced Citations (7)
Foreign Referenced Citations (11)
Number |
Date |
Country |
58-45396 |
Mar 1983 |
JPX |
59-93884 |
May 1984 |
JPX |
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Feb 1986 |
JPX |
62-297490 |
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JPX |
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JPX |
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Nov 1992 |
JPX |
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Feb 1993 |
JPX |
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JPX |
5-106058 |
Apr 1993 |
JPX |
8-60175 |
Mar 1996 |
JPX |
WO9617979 |
Jun 1996 |
WOX |
Non-Patent Literature Citations (1)
Entry |
"Corrosion Mechanism of Zn-Ni Alloy Plating", H. Tsuji et al., (Oct. 10, 1982), The 66.sup.th Scientific Lecture Summaries by Metal Surface Technology Association, Japan, p. 144-145. |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCTJP9601537 |
Jun 1996 |
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