Gas wiping nozzle and methods for manufacturing hot-dip metal-coated steel strip and gas wiping nozzle

US2025034691A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2025034691-A1
Application numberUS-202218716260-A
CountryUS
Kind codeA1
Filing dateOct 11, 2022
Priority dateDec 10, 2021
Publication dateJan 30, 2025
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A gas wiping nozzle and a method for manufacturing a hot-dip metal-coated steel strip using the gas wiping nozzle. The gas wiping nozzle adjusts the coating weight of a molten metal on the surface of a steel strip pulled up from a molten metal bath. At least the surface of the gas wiping nozzle is made of a ceramic, and the arithmetic mean roughness Ra and the peak count PPI of the gas wiping nozzle satisfy Formula (1):PPI>c⁢1×Ra+c⁢2(1)PPI: peak count (the number of peaks per inch)Ra: arithmetic mean roughness [μm]c1 and c2: determined constants for each ceramic used in the surface of the gas wiping nozzle.

First claim

Opening claim text (preview).

1 . A gas wiping nozzle that is configured to blow gas to a steel strip pulled up from a molten metal bath to adjust a coating weight of a molten metal on a surface of the steel strip, wherein: at least a surface of the gas wiping nozzle is made of a ceramic, and an arithmetic mean roughness Ra and a peak count PPI, which are measures of surface roughness, of the gas wiping nozzle satisfy Formula (1) PPI> c 1×Ra+ c 2  (1) in which PPI: peak count (number of peaks per inch) Ra: arithmetic mean roughness [μm] c1 and c2: determined constants for each ceramic used in a surface of the gas wiping nozzle. 2 . The gas wiping nozzle according to claim 1 , wherein the entire gas wiping nozzle is made of a ceramic. 3 . A method for manufacturing a hot-dip metal-coated steel strip, the method comprising: continuously dipping a steel strip in a bath of molten metal; and adjusting a coating weight of the molten metal on both sides of the steel strip by blowing a gas to the steel strip from a plurality of the gas wiping nozzle according to claim 1 that are disposed to face each other with the steel strip, which is pulled up from the bath, therebetween to continuously manufacture the hot-dip metal-coated steel strip. 4 . A method for manufacturing the gas wiping nozzle according to claim 1 , the method comprising: selecting a material of the gas wiping nozzle or of a surface of the gas wiping nozzle; and selecting a processing method and processing conditions for the surface of the gas wiping nozzle; and manufacturing the gas wiping nozzle according to the selected processing method and processing conditions, wherein the material and/or the processing method and the processing conditions are selected such that the arithmetic mean roughness Ra and the peak count PPI, which are measures of surface roughness, of the gas wiping nozzle satisfy Formula (1) PPI > c ⁢ 1 × Ra + c ⁢ 2 ( 1 ) PPI: peak count (number of peaks per inch) Ra: arithmetic mean roughness [μm] c1 and c2: determined constants for each ceramic used in the surface of the gas wiping nozzle. 5 . A method for manufacturing a hot-dip metal-coated steel strip, the method comprising: continuously dipping a steel strip in a bath of molten metal; and adjusting a coating weight of the molten metal on both sides of the steel strip by blowing a gas to the steel strip from a plurality of the gas wiping nozzle according to claim 2 that are disposed to face each other with the steel strip, which is pulled up from the bath, therebetween to continuously manufacture the hot-dip metal-coated steel strip. 6 . A method for manufacturing the gas wiping nozzle according to claim 2 , the method comprising: selecting a material of the gas wiping nozzle or of a surface of the gas wiping nozzle; selecting a processing method and processing conditions for the surface of the gas wiping nozzle; and manufacturing the gas wiping nozzle according to the selected processing method and processing conditions, wherein the material and/or the processing method and the processing conditions are selected such that the arithmetic mean roughness Ra and the peak count PPI, which are measures of surface roughness, of the gas wiping nozzle satisfy Formula (1) PPI > c ⁢ 1 × Ra + c ⁢ 2 ( 1 ) PPI: peak count (number of peaks per inch) Ra: arithmetic mean roughness [μm] c1 and c2: determined constants for each ceramic used in the surface of the gas wiping nozzle.

Assignees

Inventors

Classifications

  • Plates; Strips · CPC title

  • Zinc or cadmium or alloys based thereon · CPC title

  • C23C2/20Primary

    Strips; Plates · CPC title

  • with a blast of gas or vapour · CPC title

  • in flat form, e.g. fan-like, sheet-like · CPC title

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What does patent US2025034691A1 cover?
A gas wiping nozzle and a method for manufacturing a hot-dip metal-coated steel strip using the gas wiping nozzle. The gas wiping nozzle adjusts the coating weight of a molten metal on the surface of a steel strip pulled up from a molten metal bath. At least the surface of the gas wiping nozzle is made of a ceramic, and the arithmetic mean roughness Ra and the peak count PPI of the gas wiping n…
Who is the assignee on this patent?
Jfe Steel Corp
What technology area does this patent fall under?
Primary CPC classification C23C2/20. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Jan 30 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).