IP Library Granted Patent US 8,158,274
Granted Patent B2
US 8,158,274 · App. 13/093,168 · Granted Apr 17, 2012

Welding material and welded joint structure

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Quick Facts
Patent No.
US 8,158,274
App. No.
13/093,168
Granted
Apr 17, 2012
Kind
B2
Abstract

A welding material, to be used for welding a base metal made of an austenitic alloy comprising C≦2.0%, Si≦4.0%, Mn: 0.01 to 3.0%, P: more than 0.03% to not more 0.3%, S≦0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 1% and N≦0.3%, with the balance being Fe and impurities to a base metal made of another austenitic alloy, which comprises C: more than 0.3% to 3.0%, Si≦4.0%, Mn≦3.0%, P≦0.03%, S≦0.03%, Cr: more than 22% to 55%, Ni: more than 30% to not more than 70%, sol. Al: 0.001 to 1% and N≦0.3%, with the balance being Fe and impurities can suppress the weld solidification cracking which occurs in an austenitic alloy having a high P content and showing fully austenitic solidification. Therefore, the said welding material can be widely used in such fields where a welding fabrication is required. The said welding material may contain a specific amount or amounts of one or more elements selected from Cu, Mo, W, V, Nb, Ti, Ta, Zr, Hf, Co, B, Ca, Mg and REM.

Claims (39)

1. A welding material to be used for welding a base metal made of an austenitic alloy having the following “chemical composition 21” to a base metal made of another austenitic alloy, comprising:

by mass percent, C: 0.8 to 3.0%, Si: not more than 4.0%, Mn: not more than 3.0%, P: not more than 0.03%, S: not more than 0.03%, Cr: more than 22% to not more than 55%, Ni: more than 30% to not more than 70%, sol. Al: 0.001 to 1% and N: not more than 0.3%, with the balance being Fe and impurities:

“Chemical composition 21”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.03% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

2. The welding material according to claim 1 , in which the base metal made of the another austenitic alloy has the following “chemical composition 21”:

“Chemical composition 21”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.03% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

3. The welding material according to claim 1 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

4. The welding material according to claim 2 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

5. A welded joint structure in which a base metal made of an austenitic alloy having the following “chemical composition 22” is welded to a base metal made of another austenitic alloy by using the welding material comprising, by mass percent, C: more than 0.3% to not more than 3.0%, Si: not more than 4.0%, Mn: not more than 3.0%, P: not more than 0.03%, S: not more than 0.03%, Cr: more than 22% to not more than 55%, Ni: more than 30% to not more than 70%, sol. Al: 0.001 to 1% and N: not more than 0.3%, with the balance being Fe and impurities:

“Chemical composition 22”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

6. The welded joint structure according to claim 5 in which the base metal made of the another austenitic alloy has the following “chemical composition 22”:

“Chemical composition 22”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

7. The welded joint structure according to claim 5 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

8. The welded joint structure according to claim 6 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

9. A welded joint structure which is constructed with base metals each made of an austenitic alloy comprising, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities, and a weld metal made of an austenitic alloy having the following characteristics (i) and (ii):

(i) the chemical composition of at least the primary layer being welded from one side, comprises, by mass percent, C: more than 0.1% to not more than 0.7%, Si: not more than 4.0%, Mn: not more than 3.0%, P: more than 0.03% to not more than 0.1%, S: not more than 0.03%, Cr: 18 to 30%, Ni: more than 10% to not more than 70%, sol. Al: 0.001 to 1% and N: not more than 0.3%, with the balance being Fe and impurities; and

(ii) the penetration bead has a height of 0 to 3 mm.

10. The welded joint structure according to claim 9 , in which one or more alloys among the base metals and weld metal contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

11. A welded joint structure resulting from welding of a base metal made of an austenitic alloy having the following “chemical composition 22” to a base metal made of another austenitic alloy, on the occasion of welding, a welding material which comprises, by mass percent, C: more than 0.6% to not more than 2.0%, Si: not more than 4.0%, Mn: not more than 3.0%, P: not more than 0.03%, S: not more than 0.03%, Cr: more than 22% to not more than 35%, Ni: more than 30% to not more than 70%, sol. Al: 0.001 to 1% and N: not more than 0.3%, with the balance being Fe and impurities, is used in the primary pass of the multi-layer welding and a welding material which comprises, by mass percent, C: more than 0.2% to not more than 0.6%, Si: not more than 4.0%, Mn: not more than 3.0%, P: not more than 0.03%, S: not more than 0.03%, Cr: more than 22% to not more than 35%, Ni: more than 30% to not more than 70%, sol. Al: 0.001 to 1% and N: not more than 0.3%, with the balance being Fe and impurities, is used in the subsequent build-up passes of the said multi-layer welding:

“Chemical composition 22”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

12. The welded joint structure according to claim 11 , in which the base metal made of the another austenitic alloy has the following “chemical composition 22”:

“Chemical composition 22”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

13. The welded joint structure according to claim 11 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

14. The welded joint structure according to claim 12 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

15. A welded joint structure resulting from welding of a base metal made of an austenitic alloy having the following “chemical composition 22” to a base metal made of another austenitic alloy, on the occasion of welding, using a welding material which comprises by mass percent, C: more than 0.2% to not more than 0.6%, Si: not more than 4.0%, Mn: not more than 3.0%, P: not more than 0.03%, S: not more than 0.03%, Cr: more than 22% to not more than 35%, Ni: more than 30% to not more than 70%, sol. Al: 0.001 to 1% and N: not more than 0.3%, with the balance being Fe and impurities, at least the welding of the primary layer is carried out under a condition such that the ratio of dilution from the base metals becomes less than 50%:

“Chemical composition 22”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P:

more than 0.03% 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

16. The welded joint structure according to claim 15 , in which the base metal made of the another austenitic alloy has the following “chemical composition 22”:

“Chemical composition 22”: a chemical composition which comprises, by mass percent, C: not more than 2.0%, Si: not more than 4.0%, Mn: 0.01 to 3.0%, P: more than 0.08% to not more than 0.3%, S: not more than 0.03%, Cr: 12 to 35%, Ni: 6 to 80%, sol. Al: 0.001 to 5%, N: not more than 0.3% and one or more elements selected from Ca: not more than 0.05%, Mg: not more than 0.05% and REM: not more than 0.3%, with the balance being Fe and impurities.

17. The welded joint structure according to claim 15 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

18. The welded joint structure according to claim 16 , in which one or more alloys among the base metals and welding material contain one or more elements selected from the first group given below in lieu of a part of Fe, by mass percent:

first group: Cu: not more than 5%, Mo: not more than 10%, W: not more than 10%, V: not more than 2%, Nb: not more than 3%, Ti: not more than 3%, Ta: not more than 8%, Zr: not more than 1%, Hf: not more than 1%, Co: not more than 15% and B: not more than 0.03%.

Assignments (2)
MERGER Recorded May 14, 2019
From: SUMITOMO METAL INDUSTRIES, LTD.
To: NIPPON STEEL & SUMITOMO METAL CORPORATION
Reel/Frame 049165/0517 →
CHANGE OF NAME Recorded May 14, 2019
From: NIPPON STEEL & SUMITOMO METAL CORPORATION
To: NIPPON STEEL CORPORATION
Reel/Frame 049257/0828 →