Steel sheet having excellent weldability

a technology weldability, which is applied in the field of high tensile steel sheets, can solve the problems of increasing production costs, taking a longer time than other processes, and none of the above-described cited inventions studied the width of the bead during so as to improve ductility, improve workability, and advantageous effects of high speed arc welding

Inactive Publication Date: 2007-06-28
KOBE STEEL LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0009]It is, therefore, an object of the present invention to provide a high tensile steel sheet excellent in high-speed arc weldability, capable of forming wide beads at an arc welding speed as high as 100 cm / min or above.
[0013]From the viewpoint of corrosion resistance, the steel sheet of the invention may further include Cu: 0.03-0.5% or less. When the steel sheet contains Cu as defined, it may further contain Ni: 0.015-0.5%. In addition, to enhance workability, the steel sheet of the invention may contain Ca: 0.0005-0.005% and / or REM (rare earth elements): 0.0005-0.005%, or Zr and / or Mg: 0.0005-0.005% in total. Moreover, to improve ductility, the steel sheet of the invention may contain Co: 0.03-1%.
[0014]After careful analysis and proven results, the inventors discovered that Si and Mn generate advantageous effects in high speed arc welding. However, they also found out that if an excessive amount of Si was used, more slags were formed on a weld bead, and coating came off easily. Meanwhile, if an excessive amount of Mn was used, workability of the steel sheet was deteriorated. Therefore, instead of using Si and Mn singly and excessively, they should be incorporated together. In so doing, the weld beads had superior corrosion resistance and workability, and the beads were sufficiently wide after suppressing so-called humping of weld beads which is a problem that an irregular bead shape and width is formed in the welding.
[0016]A further examination on O (oxygen) revealed that although the O content was suppressed to 0.002% or less, if an inner oxide layer in the surface layer of the steel sheet is thicker than 5 μm, oxygen still could adversely affect the high-speed arc welding of the steel sheet. This is possibly because although the oxygen content in the steel sheet may be reduced, if an inner oxide layer exists in the surface layer, oxygen is supplied from the oxide layer to the weld metal, causing humping and narrow beads. However, the present invention is not limited by such estimation mechanism because, according to a preferred embodiment of the invention, excellent high-speed weldability could be realized by suppressing the thickness of the inner oxide layer of the steel sheet to 5 μm or less.

Problems solved by technology

However, a shortcoming of the arc welding is that it takes a longer time than other processes such as cutting, pressing, and coating.
Because of this, when arc welding is employed, production line speed is deteriorated, leading to an increase in production cost.
However, none of the above-described cited inventions studied width of the bead during high speed arc welding.
Such thin steel sheets, however, were easily melted away during high current arc welding so it was not easy to have a sufficient amount of welding at high current.
Furthermore, since high tensile steel, compared with mild steels, has poor stability in a pressing process, the route gap is easily increased.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

examples

[0048]Although preferred examples of the present invention are disclosed and described in detail below, it is to be understood that the invention is not limited thereto, and the invention can be modified to a certain extent as long as modifications are in accordance with the objectives of the invention described before and hereinafter and those modifications are included within the technical scope of the invention.

1. Fabrication of Steel Sheet

[0049]A molten steel decarburized in a converter was secondarily refined in a LF (ladle refining furnace), and mixed with alloy elements and subjected to the RH degassing treatment in an RH degassing apparatus to prepare the molten steel having the chemical composition listed in Table 1. Only the molten steels corresponding to the steel sheet No. 109 having high O content (O: 0.0035%) was subjected to the RH degassing treatment for 30 minutes (average treatment time), and the others went through the RH degassing treatment for 50 minutes and the...

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Abstract

Disclosed is a steel sheet, containing: Si: 0.20-2% (the term “%” herein means “mass %”, the same is true hereinbelow), Mn: 1-2.5%, a total mass of Si and Mn being 1.5% or more, and 0: 0.002% or less (exclusive of 0%), C: 0.02-0.25%, P: 0.1% or less (exclusive of 0%), S: 0.05% or less (exclusive of 0%), Al-0.02-0.2%, and N: 0.0015-0.015%. The steel sheet of the invention can be advantageously used for forming wide beads even in high-speed arc welding of 100 cm / min or higher.

Description

BACKGROUND OF THE INVENTION[0001]1. Field of the Invention[0002]The present invention relates in general to a steel sheet used as a material for automotive parts through welding, more specifically to a high tensile steel sheet excellent in high-speed arc weldability, capable of forming wide beads at an arc welding speed as high as 100 cm / min or above.[0003]2. Description of the Related Art[0004]Diverse welding processes are involved in assembly of automotive parts, and among them is a gas shielded arc welding particularly for an assembly of parts that need to have superior rigidity. This is because arc welding is generally known to increase joint strength, stabilize welding quality, and improve rigidity of parts. However, a shortcoming of the arc welding is that it takes a longer time than other processes such as cutting, pressing, and coating. Because of this, when arc welding is employed, production line speed is deteriorated, leading to an increase in production cost. Therefore, ...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): C22C38/00
CPCB23K35/0261B23K35/3073B23K2201/16C21C7/10C21D6/008Y10T428/265C21D9/46C22C38/02C22C38/04C22C38/06C21D8/0426B23K2101/16
Inventor SOSHIRODA, TETSUOSUZUKI, REIICHIYAMAZAKI, KEI
Owner KOBE STEEL LTD
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