US2014057132A1PendingUtilityA1
Zirconium-coated steel plates and chemical device elements produced with such plates
Est. expiryMar 9, 2025(expired)· nominal 20-yr term from priority
B23K 35/004B32B 15/013B23K 2103/18B23K 2103/24B23K 2103/08B23K 2103/05B23K 9/124B23K 35/005B23K 35/00Y10T428/12896Y10T428/12806B23P 15/00B23K 1/20B23K 1/19B32B 15/018Y10T29/49885C22F 1/16B32B 15/01
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Claims
Abstract
Method for producing coated assembly parts for chemical device elements including the following steps: (a) the formation of an initial assembly including a steel support part, a zirconium or zirconium alloy coating, and at least one brazing material between the support part and the coating; (b) the insertion of the initial assembly into a brazing chamber with a controlled atmosphere; (c) the formation of a controlled atmosphere in said chamber; and (d) the reheating of said assembly to a temperature at least equal to the melting temperature of said brazing material.
Claims
exact text as granted — not AI-modified1 . A method for producing coated assembly parts intended for the production of a chemical or nuclear device element comprising a zirconium or zirconium alloy coating, wherein said assembly parts include a steel support part and at least one zirconium or zirconium alloy coating, the method consisting essentially of:
(a) forming an initial assembly including a steel support part, a zirconium or zirconium alloy coating, and at least one brazing material between the support part and the coating, wherein said brazing material is an alloy including silver and copper; (b) inserting the initial assembly into a brazing chamber with a controlled atmosphere; (c) forming a controlled atmosphere in said chamber; and (d) reheating said assembly to a temperature at least equal to the brazing temperature of said brazing material, so as to attach the zirconium coating to the support part; wherein prior to forming said initial assembly, a titanium or titanium alloy layer is deposited on said zirconium or zirconium alloy coating, and wherein said coating is placed so that the titanium- or titanium alloy-coated surface thereof is in contact with said brazing material, and wherein said brazing material includes silver and copper and is at least one selected from the group consisting of binary alloys having a eutectic composition with Ag between 67% and 75%, Ag—Cu—Zn ternary alloys, Ag—Cu—Zn—Sn quaternary alloys, and Ag—Cu—Zn—Cd quaternary alloys, and wherein the brazing temperature is below around 900° C.
2 . The production method according to claim 1 , wherein the zirconium or zirconium alloy coating has a thickness of less than 5 mm.
3 . The production method according to claim 1 , wherein said titanium or titanium alloy layer is deposited on said zirconium or zirconium alloy coating so that the titanium or titanium alloy layer has a thickness of up to 50 μm.
4 . The production method according to claim 1 , wherein the titanium deposition is performed on the zirconium or zirconium alloy coating by a method selected from the group consisting of cathode spraying, plasma assisted physical vapour deposition, chemical vapour deposition, cold spray-type thermal spray deposition, plasma gun in vacuum conditions, wherein the surface of the zirconium coating has previously been washed, degreased, and/or scoured by ionic scouring.
5 . The production method according to claim 4 , wherein the titanium deposition is performed on the zirconium or zirconium alloy coating by cold spray-type thermal spray deposition.
6 . The production method according to claim 1 , wherein said brazing material is placed between said support and said zirconium coating in the form of strips or a mesh.
7 . The production method according to claim 1 , wherein the initial assembly is inserted into a brazing chamber under vacuum and in which a pressure of between 10 −3 and 10 −1 Pa is established.
8 . The production method according to claim 1 , wherein the brazing material includes tin or zinc, and in which the initial assembly is inserted into a brazing chamber under a controlled atmosphere, under a pressure of between 5 10 3 and 10 4 Pa.
9 . The production method according to claim 1 , wherein the initial assembly is subjected during the brazing to a plating pressure at least equal to 0.1 MPa.
10 . The production method according to claim 1 , wherein the zirconium or zirconium alloy coating has a thickness of less than 1 mm.
11 . The production method according to claim 1 , wherein the zirconium or zirconium alloy coating has a thickness of less than 0.5 mm.
12 . The production method according to claim 1 , wherein the zirconium or zirconium alloy coating has a thickness of less than 0.3 mm.
13 . A method for producing a steel plate coated with a zirconium or zirconium alloy layer, consisting essentially of:
(a) forming an initial assembly including a steel support part, a zirconium or zirconium alloy sheet coating, having dimensions of the steel part, and at least one brazing material between the support part and the coating, wherein said brazing material is an alloy including silver and copper; (b) inserting the initial assembly into a brazing chamber with a controlled atmosphere; (c) forming a controlled atmosphere in said chamber; (d) reheating said assembly to a temperature at least equal to the brazing temperature of said brazing material, so as to attach the zirconium sheet to the steel part; wherein prior to forming said initial assembly, a titanium or titanium alloy layer is deposited on said zirconium or zirconium alloy coating, wherein said coating is placed so that a titanium- or titanium alloy-coated surface thereof is in contact with said brazing material, and wherein said brazing material includes silver and copper and is at least one selected from the group consisting of binary alloys having a eutectic composition with Ag between 67% and 75%, Ag—Cu—Zn ternary alloys, Ag—Cu—Zn—Sn quaternary alloys, and Ag—Cu—Zn—Cd quaternary alloys, and wherein the brazing temperature is below around 900° C.
14 . A method for producing a steel plate coated with a zirconium or zirconium alloy layer, consisting essentially of:
(a) forming an initial assembly including a steel support part, a zirconium or zirconium alloy sheet coating, having dimensions of the steel part, and at least one brazing material between the support part and the coating, wherein said brazing material is an alloy including silver and copper; (b) inserting the initial assembly into a brazing chamber with a controlled atmosphere; (c) forming a controlled atmosphere in said chamber; (d) reheating said assembly to a temperature at least equal to the brazing temperature of said brazing material, so as to attach the zirconium sheet to the steel part; wherein prior to forming said initial assembly, a titanium or titanium alloy layer is deposited on said zirconium or zirconium alloy coating, wherein said coating is placed so that a titanium- or titanium alloy-coated surface thereof is in contact with said brazing material, and wherein the brazing temperature is below around 900° C.
15 . The method according to claim 14 , wherein the zirconium or zirconium alloy coating has a thickness of less than 5 mm.
16 . The method according to claim 14 , wherein the titanium deposition is performed on the zirconium or zirconium alloy coating by a method selected from the group consisting of cathode spraying, plasma assisted physical vapour deposition, chemical vapour deposition, cold spray-type thermal spray deposition, plasma gun in vacuum conditions, wherein the surface of the zirconium coating has previously been washed, degreased, and/or scoured by ionic scouring.
17 . A steel plate coated with a zirconium or zirconium alloy layer produced according to the method of claim 14 .
18 . A coated assembly part produced according to the method of claim 1 .
19 . A method for producing a chemical device element comprising a zirconium or zirconium alloy coating, comprising at least one first and one second coated assembly part, wherein each coated assembly part comprises a steel support part and at least one zirconium or zirconium alloy coating, the method comprising:
(a) producing coated assembly parts according to the method of claim 1 ; (b) shaping said coated assembly parts by plastic deformation so as to obtain said coated assembly parts; and (c) assembling the coated assembly parts so as to obtain said chemical device element.
20 . A chemical device element produced according to the method of claim 19 .Join the waitlist — get patent alerts
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