Claims
- 1. A method for the continuous electrolytic treatment of a metal strip with an electrolytic treating liquid using horizontal electrodes substantially insoluble in said electrolytic treating liquid, comprising the steps of:
- moving a metal strip horizontally through a narrow treating space formed between a pair of feeding rolls and a pair of delivering rolls and between horizontal upper and lower electrode devices facing each other, each device comprising at least one electrode substantially insoluble in an electrolytic treating liquid to be applied, whereby said treating space is divided into upper and lower horizontal gaps by said metal strip;
- feeding upper and lower streams of said electrolytic treating liquid into said upper and lower gaps, respectively, through upper and lower slits, each formed in the middle portions of the corresponding electrode device, each extending horizontally across the corresponding electrode device at substantially right angles to the direction of movement of said metal strip, and each directed vertically to the corresponding surface of the metal strip at substantially right angles to the surface of the metal strip, wherein each slit is unobstructed across its length except for at least one vertically disposed flow-uniforming plate placed in each slit with an orientation parallel to the direction of movement of said mmetal strip and the width of the feeding end portion of each slit is expanded outwardly facing the corresponding gap whereby uniform streams of electrolytic treating liquid are fed through each slit, and whereby each stream of said electrolytic treating liquid passed into the corresponding gap is divided into a pair of flows concurrent and counercurrent with the movement of said metal strip, each flow having a uniform flow rate over the corresponding surface of said metal strip; and
- applying an electric current between each electrode and said metal strip through said feeding rolls, whereby said metal strip is electrolytically treated with said electrolytic treating liquid.
- 2. A method as claimed in claim 1, wherein said metal strip is moved at a speed of from 150 to 300 m/min.
- 3. A method as claimed in claim 1, wherein said electrolytic treating liquid is fed into each gap at a feeding rate of 0.005 to 0.4 m.sup.3 /min per cm of the length of said slit.
- 4. A method as claimed in claim 1, wherein the current density of said electric current is in the range of from 10 to 200 A per dm.sup.2 of each surface of said metal strip.
- 5. A method as claimed in claim 4, wherein the current density is in the range of from 80 to 200 A/dm.sup.2.
- 6. A method as claimed in claim 1, wherein a portion of said electrolytic treating liquid is discharged from said treating space, the discharged portion of said electrolytic treating liquid being collected and then recycled into said slits.
- 7. A method as claimed in claim 1, wherein said electrolytic treating liquid is a sulfuric acid-containing electroplating acid liquid.
- 8. A method as claimed in claim 7, wherein said electroplating liquid has a temperature of from 40.degree. C. to 80.degree. C. and a pH of from 0.8 to 2.0.
- 9. A method as claimed in claim 7, wherein said electroplating liquid contains zinc or a zinc-based alloy.
- 10. A method as claimed in claim 1, wherein the thickness of the gaps is adjustable to 30 mm or less.
- 11. An apparatus for the continuous electrolytic treatment of a metal strip with an electrolytic treating liquid using horizontal electrodes substantially insoluble in said electrolytical treating liquid, comprising:
- means for feeding a metal strip;
- means for delivering said metal strip, which means is located downstream said feeding means in such a manner that a horizontal path of movement of said steel strip is provided between said feeding means and said delivering means;
- upper and lower horizontal electrode devices which are arranged, respectively, above and below said horizontal path of movement of said metal strip between said feeding means and said delivering means in such a manner as to form a treating space between the upper and lower electrode devices, said treating space being divided into upper and lower horizontal gaps by the horizontal path of movement of said metal strip, and each electrode device comprising at least one horizontal electrode substantially insoluble in the electrolytic treating liquid to be applied to said metal strip and being provided with a slit for feeding said electrolytic treating liquid into the corresponding gap, which slit is formed in the middle portion of said electrode device, which slit extends horizontally across said electrode device at substantially right angles to the direction of movement of said metal strip, which slit is directed vertically to the corresponding gap at substantially right angles to the horizontal path of movement of said metal strip, and which slit is connected to a source of supply of said electrolytic treating liquid and wherein each slit is unobstructed across its length except for at least one vertically disposed flow-uniforming plate placed in each slit with an orientation parallel to the direction of movement of said metal strip and the width of the feeding end portion of each slit is expanded outwardly facing the corresponding gap, whereby uniform streams of electrolytic treating liquid are fed through each slit; and
- means for applying an electric current between each electrode and said metal strip through said feeding means.
- 12. An apparatus as claimed in claim 11, wherein each electrode device comprises a single horizontal electrode and said slit is formed in the middle portion of said electrode.
- 13. An apparatus as claimed in claim 11, wherein each electrode device comprises at least two horizontal electrodes separated from each other and at least one horizontal intermediate piece arranged between the electrodes and made from an electric insulating material.
- 14. An apparatus as claimed in claim 13, wherein the middle portion of said electrode device is formed by said intermediate piece and said slit is located in said intermediate piece.
- 15. An apparaus as claimed in claim 13, wherein the entire length of said at least one intermediate piece is 1/3 or less the entire length of said electrode device.
- 16. An apparatus as claimed in claim 11, wherein said outwardly expanded feeding end portion of each slit has a height of from 30 to 100 mm and a distance of 30 to 500 mm from a center plane of the slit to the outermost end of the expanded portion of the slit.
- 17. An apparatus as claimed in claim 11, wherein said supply source of said electrolytic treating liquid is provided with upper and lower headers located just upstream said upper and lower slit, respectively.
- 18. An apparatus as claimed in claim 11, wherein the upstream end and the downstream end of each of said upper and lower gaps with respect to the direction of movement of said metal strip are defined by an upstream sealing plate and a downstream sealing plate, respectively, each plate being movably connected to the corresponding end of said electrode device, extending toward the corresponding surface of the said metal strip and being terminated at a location spaced from the corresponding surface of said metal strip.
- 19. An apparatus as claimed in claim 11, wherein both side ends of the treating space are defined by a pair of side-masking devices which are movable horizontally in the direction at right angles to the direction of movement of said metal strip.
- 20. An apparatus for the continuous electrolytic treatment of a metal strip with an electrolytic treating liquid using horizontal electrodes substantially insoluble in said electrolytical treating liquid, comprising:
- means for feeding a metal strip;
- means for delivering said metal strip, which means is located downstream said feeding means in such a manner that a horizontal path of movement of said metal strip is provided between said feeding means and said delivering means;
- upper and lower horizontal electrode devices which are arranged, respectively, above and below said horizontal path of movement of said metal strip between said feeding means and said delivering means in such a manner as to form a treating space between the upper and lower electrode devices, said treating space being divided into upper and lower horizontal gaps by the horizontal path of movement of said metal strip, and each electrode device comprising at least one horizontal electrode substantially insoluble in the electrolytic treating liquid to be applied to said metal strip and being provided with a slit for feeding said electrolytic treating liquid into the corresponding gap, which slit is formed in the middle portion of said electrode device, which slit extends horizontally across said electrode device at substantially right angles to the direction of movement of said metal strip, which slit is directed vertically to the corresponding gap at substantially right angles to the horizontal path of movement of said metal strip, and which slit is connected to a source of supply of said electrolytic treating liquid and wherein said slit is unobstructed across its length except for at least one vertically disposed flow-uniforming plate placed in each slit with an orientation parallel to the direction of movement of said metal strip and the width of the feeding end portion of each slit is expanded outwardly facing the corresponding gap, whereby uniform streams of electrolytic treating liquid are fed through each slit;
- means for applying an electric current between each electrode and said metal strip through said feeding means; and
- wherein the upstream end and the downstream end of each of said upper and lower gaps with respect to the direction of movement of said metal strip are defined by an upstream sealing plate and a downstream sealing plate, respectively, each plate being movably connected to the corresponding end of the electrode device, extending toward the corresponding surface of the metal strip and being selectively terminated at a location spaced from the corresponding surface of said metal strip.
Priority Claims (1)
Number |
Date |
Country |
Kind |
55-176518 |
Dec 1980 |
JPX |
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Parent Case Info
This application is a continuation of application No. 330,598, filed Dec. 14, 1981, now abandoned.
US Referenced Citations (5)
Continuations (1)
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Number |
Date |
Country |
Parent |
330598 |
Dec 1981 |
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