Latex composition for dip molding, dip-molded product comprising same, and method for manufacturing dip-molded product by using same

US12006390B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12006390-B2
Application numberUS-202017421822-A
CountryUS
Kind codeB2
Filing dateAug 12, 2020
Priority dateOct 1, 2019
Publication dateJun 11, 2024
Grant dateJun 11, 2024

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Abstract

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The present invention relates to a latex composition for dip molding, and such latex composition includes: a carboxylic acid-modified nitrile-based copolymer latex; and a reactive compound having three or more branched chains and a reactive group at a terminal of each of the branched chains, wherein the reactive group is one or more selected from the group consisting of an amine group, a hydroxy group, an epoxy group, a glycidyl group, and an isocyanate group.

First claim

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The invention claimed is: 1. A latex composition for dip molding, the latex composition comprising: a carboxylic acid-modified nitrile-based copolymer latex; and a reactive compound having three or more branched chains and a reactive group at a terminal of each of the three or more branched chains, wherein the reactive group is one or more selected from the group consisting of an amine group, a hydroxy group, an epoxy group, a glycidyl group, and an isocyanate group, wherein each of the three or more branched chains included in the reactive compound comprises a repeating unit represented by Formula 1, wherein A is an alkylene group having 2 to 5 carbon atoms, and n is an integer of 150 to 250. 2. The latex composition of claim 1 , wherein the reactive compound is represented by the following Formula 2, wherein n is an integer of 150 to 250, and R1 to R4 are each independently one selected from the group consisting of an amine group, a hydroxy group, an epoxy group, a glycidyl group, and an isocyanate group. 3. The latex composition of claim 2 , wherein the reactive compound has a weight average molecular weight of 450 to 40,000. 4. The latex composition claim 1 , wherein the reactive compound is included in 0.1 parts by weight to 5 parts by weight based on a solid content of 100 parts by weight of the carboxylic acid-modified nitrile-based copolymer latex. 5. The latex composition of claim 1 , further comprising a sulfur component, a vulcanization accelerator, and a cross-linking agent, wherein the sulfur component is included in 0.8 parts by weight or less, the vulcanization accelerator is included in 0.6 parts by weight or less, and the cross-linking agent is included in 1.1 parts by weight or less, based on a solid content of 100 parts by weight of the carboxylic acid-modified nitrile-based copolymer latex. 6. The latex composition of claim 1 , wherein the carboxylic acid-modified nitrile-based copolymer includes a conjugated diene-based monomer-derived repeating unit, an ethylenically unsaturated nitrile-based monomer-derived repeating unit, and an ethylenically unsaturated acid monomer-derived repeating unit. 7. A cross-linked polymer comprising: two or more parts derived from a carboxylic acid-modified nitrile-based copolymer; a part derived from a reactive compound having three or more branched chains and a reactive group at a terminal of each of the three or more branched chains; and a cross-linking part formed by cross-linking a carboxylic acid group included in the carboxylic acid-modified nitrile-based copolymer and the reactive group included in the reactive compound, wherein each of the three or more branched chains included in the reactive compound comprises a repeating unit represented by Formula 1, wherein A is an alkylene group having 2 to 5 carbon atoms, and n is an integer of 150 to 250. 8. A method of preparing a latex composition for dip molding, the method comprising: step S10: emulsion-polymerizing a monomer mixture including a conjugated diene-based monomer, an ethylenically unsaturated nitrile-based monomer, and an ethylenically unsaturated acid monomer to obtain a carboxylic acid-modified nitrile-based copolymer latex; and step S20: selectively adding a sulfur component, a vulcanization accelerator, and a cross-linking agent in the presence of the obtained carboxylic acid-modified nitrile-based copolymer latex, wherein a reactive compound having three or more branched chains and a reactive group at a terminal of each of the three or more branched chains is added in the step S10, the step S20, or both the step S10 and the step S20, wherein each of the three or more branched chains included in the reactive compound comprises a repeating unit represented by Formula 1, wherein A is an alkylene group having 2 to 5 carbon atoms, and n is an integer of 150 to 250. 9. The method of claim 8 , wherein the reactive compound is added in an amount of 0.1 parts by weight to 5 parts by weight, the sulfur component is added in an amount of 0.8 parts by weight or less, the vulcanization accelerator is added in an amount of 0.6 parts by weight or less, and the cross-linking agent is added in an amount of 1.1 parts by weight or less, based on a solid content of 100 parts by weight of the carboxylic acid-modified nitrile-based copolymer latex. 10. The method of claim 8 , wherein the reactive compound added in the step S10 is added to the monomer mixture, to the obtained carboxylic acid-modified nitrile-based copolymer latex, or to both the monomer mixture and the obtained carboxylic acid-modified nitrile-based copolymer latex. 11. The method of claim 8 , wherein the cross-linking agent is zinc oxide or titanium oxide. 12. A dip-molded article comprising a layer derived from the latex composition for dip molding of claim 1 .

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What does patent US12006390B2 cover?
The present invention relates to a latex composition for dip molding, and such latex composition includes: a carboxylic acid-modified nitrile-based copolymer latex; and a reactive compound having three or more branched chains and a reactive group at a terminal of each of the branched chains, wherein the reactive group is one or more selected from the group consisting of an amine group, a hydrox…
Who is the assignee on this patent?
Lg Chemical Ltd
What technology area does this patent fall under?
Primary CPC classification C08J5/02. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Jun 11 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).