Crosslinked polyolefin separator and method for manufacturing the same

US11673985B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11673985-B2
Application numberUS-201916766116-A
CountryUS
Kind codeB2
Filing dateSep 3, 2019
Priority dateSep 3, 2018
Publication dateJun 13, 2023
Grant dateJun 13, 2023

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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Abstract

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A method for manufacturing a crosslinked polyolefin separator and the crosslinked polyolefin separator obtained by the method are provided. The method includes (S1) mixing polyolefin, a diluting agent, an initiator and alkoxysilane containing a carbon-carbon double bonded group to an extruder, and then carrying out extrusion to obtain a silane-grafted polyolefin composition; (S2) molding and orienting the extruded silane-grafted polyolefin composition in the form of a sheet; (S3) introducing the oriented sheet to an extraction water bath containing a crosslinking catalyst to extract the diluting agent and perform aqueous crosslinking; and (S4) thermally fixing a resultant aqueous crosslinked product. The method can provide a separator having a high meltdown temperature and improved heat shrinkage.

First claim

Opening claim text (preview).

What is claimed is: 1. A method for manufacturing a crosslinked polyolefin separator, comprising the steps of: (S1) mixing polyolefin, a diluting agent, an initiator and alkoxysilane containing a carbon-carbon double bonded group to an extruder, and then carrying out extrusion to obtain a silane-grafted polyolefin composition; (S2) molding and orienting the extruded silane-grafted polyolefin composition in the form of a sheet; (S3) introducing the oriented sheet to an extraction water bath containing a crosslinking catalyst to extract the diluting agent and perform aqueous crosslinking; and (S4) thermally fixing a resultant aqueous crosslinked product. 2. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein the extraction water bath comprises water and an extraction solvent. 3. The method for manufacturing the crosslinked polyolefin separator according to claim 2 , wherein the extraction solvent is an organic solvent. 4. The method for manufacturing the crosslinked polyolefin separator according to claim 2 , wherein the extraction water bath further comprises an alcohol. 5. The method for manufacturing the crosslinked polyolefin separator according to claim 4 , wherein a weight ratio of water to alcohol is 95:5-80:20. 6. The method for manufacturing the crosslinked polyolefin separator according to claim 4 , wherein the alcohol comprises methanol, ethanol, propanol, isopropyl alcohol, butanol, pentanol, hexanol or a mixture of at least two thereof. 7. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein the extraction water bath has a temperature of 40° C. or higher. 8. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein a content of the alkoxysilane containing the carbon-carbon double bonded group is 0.01-1.0 parts by weight based on 100 parts by weight of a total weight of the polyolefin and the diluting agent, and a content of the initiator is 0.1-5.0 parts by weight based on 100 parts by weight of the alkoxysilane containing the carbon-carbon double bonded group. 9. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein the thermal fixing is carried out at a temperature of 120-150° C. 10. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein the alkoxysilane containing the carbon-carbon double bonded group comprises vinyltrimethoxysilane, vinyltriethoxysilane, vinyltriacetoxysilane, (3-methacryloxypropyl)trimethoxysilane, (3-methacryloxypropyl) triethoxysilane, vinylmethyl dimethoxysilane, vinyl-tris(2-methoxyethoxy)silane, vinylmethyldiethoxysilane or a mixture of at least two thereof. 11. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein the crosslinking catalyst comprises dibutyltin dilaurate, dibutyltin diacetate, stannous acetate, stannous caprylate, zinc naphthenate, zinc caprylate, cobalt naphthenate, ethylamine, dibutylamine, hexylamine, pyridine, sulfuric acid, hydrochloric acid, toluene sulfonic acid, acetic acid, stearic acid, maleic acid or a mixture of at least two thereof. 12. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , wherein a content of the crosslinking catalyst is 0.1-10 parts by weight based on 100 parts by weight of the alkoxysilane containing the carbon-carbon double bonded group. 13. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , further comprising: disposing an interleaving film coated with aqueous dispersion containing a crosslinking catalyst on the oriented sheet between (S2) and (S3); and extracting the diluting agent and removing the interleaving film in (S3). 14. The method for manufacturing the crosslinked polyolefin separator according to claim 1 , further comprising: carrying out aqueous crosslinking of the thermally fixed product at a temperature of 70-90° C. under a relative humidity of 70-90% after (S4). 15. A crosslinked polyolefin separator having a heat shrinkage (120° C./1 hr) in a machine direction (MD) and a heat shrinkage (120° C./1 hr) in a transverse direction (TD) satisfying following Formula 1: MD+TD≤10%,  [Formula 1] wherein MD represents the heat shrinkage of the crosslinked polyolefin separator in MD and TD represents the heat shrinkage of the crosslinked polyolefin separator in TD, and the heat shrinkage is calculated by formula of: Heat shrinkage=(Initial length−Length after carrying out heat shrinking treatment at 120° C. for 1 hour)/(Initial length)×100, wherein the crosslinked polyolefin separator has a gel content after extraction from 18.8% to 28.4%. 16. The crosslinked polyolefin separator according to claim 15 , wherein the crosslinked polyolefin separator is applied to a lithium secondary battery. 17. The crosslinked polyolefin separator according to claim 15 , wherein the crosslinked polyolefin separator has an air permeation time determined in accordance with a JIS P-8117 testing method from 89 to 131 s/100 cc.

Assignees

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Classifications

  • Crosslinking, e.g. vulcanising, of macromolecules (mechanical aspects B29C35/00; crosslinking agents C08K) · CPC title

  • Elimination of an organic solid phase · CPC title

  • Manufacturing processes of separators, membranes or diaphragms · CPC title

  • Polyolefins · CPC title

  • grafted on to homopolymers or copolymers of aliphatic hydrocarbons containing only one carbon-to-carbon double bond · CPC title

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What does patent US11673985B2 cover?
A method for manufacturing a crosslinked polyolefin separator and the crosslinked polyolefin separator obtained by the method are provided. The method includes (S1) mixing polyolefin, a diluting agent, an initiator and alkoxysilane containing a carbon-carbon double bonded group to an extruder, and then carrying out extrusion to obtain a silane-grafted polyolefin composition; (S2) molding and or…
Who is the assignee on this patent?
Lg Chemical Ltd
What technology area does this patent fall under?
Primary CPC classification C08F255/02. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Jun 13 2023 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 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).