Ternary or quaternary alloy coating for steam ageing and cured humidity adhesion elongated steel element comprising a ternary or quaternary brass alloy coating and corresponding method
US-2015017467-A1 · Jan 15, 2015 · US
US9951469B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9951469-B2 |
| Application number | US-201314416769-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 5, 2013 |
| Priority date | Jul 24, 2012 |
| Publication date | Apr 24, 2018 |
| Grant date | Apr 24, 2018 |
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A steel cord with two or more filaments possibly including a wrapping filament, at least one but not all of the two or more filaments including the possible wrapping filament is coated with a ternary or quaternary alloy coating of copper-M-zinc. The steel cord with lower cost and good adhesion performance is for reinforcing rubber product.
Opening claim text (preview).
The invention claimed is: 1. A steel cord comprising two or more filaments that come in contact with rubber after embedding the steel cord in rubber and filaments that do not come in contact with rubber after embedding the steel cord in rubber, wherein at least 50% but less than all of said filaments that come in contact with rubber after embedding the steel cord in rubber are coated with a ternary or quaternary alloy coating of copper-M-zinc, said M is one or two metals selected from the group consisting of cobalt, nickel, tin, indium, manganese, iron, bismuth and molybdenum, said copper has a content inside said ternary or quaternary alloy coating ranging from 58 weight percent to 75 weight percent, said M has a content inside said ternary or quaternary alloy coating ranging from 0.5 weight percent to 10 weight percent, a remainder of said ternary or quaternary alloy coating comprises zinc and unavoidable impurities, and a remainder of said filaments that are not coated with said ternary or quaternary alloy are coated with brass. 2. The steel cord according to claim 1 , wherein said steel cord has a multi-layered structure comprising at least a core layer and an outer layer, said core layer comprising at least one filament and said outer layer comprising a plurality of filaments, at least 50% of said filaments in said outer layer are coated with said ternary or quaternary alloy coating of copper-M-zinc. 3. The steel cord as claimed in claim 2 , wherein at least 70% of said filaments in said outer layer are coated with said ternary or quaternary alloy coating of copper-M-zinc. 4. The steel cord as claimed in claim 2 , wherein the remainder of said filaments that are not coated with said ternary or quaternary alloy in said outer layer are alternated with said filaments coated with said ternary or quaternary alloy coating of copper-M-zinc. 5. The steel cord as claimed in claim 2 , wherein said steel cord further has one or more inner layers comprising a plurality of filaments between said core layer and said outer layer, said filaments in said one or more inner layers are brass coated wires, zinc coated wires, said ternary or quaternary alloy of copper-M-zinc coated wires, uncoated wires or a combination thereof. 6. The steel cord as claimed in claim 1 , wherein said steel cord has a multi-layered structure comprising at least a core layer and an outer layer, said core layer comprises at least one filament and said outer layer comprises a plurality of filaments, at least 50% of said filaments in said core layer are coated with said ternary or quaternary alloy coating of copper-M-zinc. 7. The steel cord as claimed in claim 6 , wherein all of said filaments in said core layer are coated with said ternary or quaternary alloy coating of copper-M-zinc. 8. The steel cord as claimed in claim 6 , wherein said core layer comprises more than one filament, a remainder of filaments that are not coated with said ternary or quaternary alloy in said core layer being alternated with filaments coated with said ternary or quaternary alloy coating of copper-M-zinc. 9. The steel cord as claimed in claim 6 , wherein said steel cord has an unsaturated outer layer. 10. The steel cord as claimed in claim 1 , wherein said ternary or quaternary alloy coating of copper-M-zinc further comprises phosphorus, triazole or a combination thereof. 11. The steel cord as claimed in claim 1 , wherein said steel cord has a structure of 3×1, 4×1, 5×1, 6×1, 7×1, 12×1, 16×1, 19×1, 27×1, 1+5, 1+6, 1+7, 1+8, 2+5, 2+6, 2+7, 2+8, 2+9, 3+5, 3+6, 3+7, 3+8, 3+9, 4+6, 4+7, 4+8, 4+9, 4+10, 1+6+12, 2+7+12, 2+7+13, 3+9+15, 3+9+1, 3+9+15+1. 12. A rubber reinforcement comprising the steel cord as claimed in claim 1 . 13. A steel cord comprising two or more filaments, wherein at least one but less than all of said two or more filaments is coated with a ternary or quaternary alloy coating of copper-M-zinc, said M is one or two metals selected from the group consisting of cobalt, nickel, tin, indium, manganese, iron, bismuth and molybdenum, said copper has a content inside said ternary or quaternary alloy coating ranging from 58 weight percent to 75 weight percent, said M has a content inside said ternary or quaternary alloy coating ranging from 0.5 weight percent to 10 weight percent, a remainder of said ternary or quaternary alloy coating comprises zinc and unavoidable impurities, a remainder of said filaments that are not coated with said ternary or quaternary alloy are coated with brass, said steel cord has a multi-layered structure comprising at least a core layer and an outer layer, said core layer comprises at least one filament and said outer layer comprises a plurality of filaments, at least 50% of said filaments in said core layer are coated with said ternary or quaternary alloy coating of copper-M-zinc, and all of said filaments in said core layer are coated with said ternary or quaternary alloy coating of copper-M-zinc. 14. A steel cord comprising two or more filaments, wherein at least one but less than all of said two or more filaments is coated with a ternary or quaternary alloy coating of copper-M-zinc, said M is one or two metals selected from the group consisting of cobalt, nickel, tin, indium, manganese, iron, bismuth and molybdenum, said copper has a content inside said ternary or quaternary alloy coating ranging from 58 weight percent to 75 weight percent, said M has a content inside said ternary or quaternary alloy coating ranging from 0.5 weight percent to 10 weight percent, a remainder of said ternary or quaternary alloy coating comprises zinc and unavoidable impurities, a remainder of said filaments that are not coated with said ternary or quaternary alloy are coated with brass, said steel cord has a multi-layered structure comprising at least a core layer and an outer layer, said core layer comprises at least one filament and said outer layer comprises a plurality of filaments, at least 50% of said filaments in said core layer are coated with said ternary or quaternary alloy coating of copper-M-zinc, and said core layer comprises more than one filament, a remainder of filaments that are not coated with said ternary or quaternary alloy in said core layer being alternated with filaments coated with said ternary or quaternary alloy coating of copper-M-zinc.
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