IP Library Granted Patent US 8,313,678
Granted Patent B2
US 8,313,678 · App. 11/752,956 · Granted Nov 20, 2012

Preparing method of microporous high density polyethylene film

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Quick Facts
Patent No.
US 8,313,678
App. No.
11/752,956
Granted
Nov 20, 2012
Kind
B2
Abstract

The present invention discloses a microporous high-density polyethylene film for a battery separator, and process for preparing the same. The microporous high-density polyethylene film according to the present invention comprises of high-density polyethylene with weight average molecular weight of 2×10 5 ˜4×10 5 , containing not more than 5 wt % of molecules with molecular weight of 1×10 4 or less and not more than 5 wt % of molecules with molecular weight of 1×10 6 or more, and has the properties of puncture strength of 0.22 N/μm or more, Darcy's permeability constant of 1.8×10 −5 Darcy or more, and shrinkage of 4% or less in machine and transverse direction, respectively. Particularly, the microporous high-density polyethylene film has excellent extrusion-compoundability and stretchability with high productivity and enhances performances and stability of the battery using the film.

Claims (9)

1. A process for preparing microporous high-density polyethylene having puncture strength of 0.22 N/μm or more, Darcy's permeability constant of 1.8×10 −5 Darcy or more, and shrinkage of 4% or less in machine and transverse direction, respectively, which comprises the steps of

melt-extruding a composition consisting of 20 to 50 wt % of high-density polyethylene with weight average molecular weight of 2×10 5 to 4×10 5 , containing not more than 5 wt % of molecules with molecular weight of 1×10 4 or less and not more than 5 wt % of molecules with molecular weight of 1×10 6 or more (Component I), and 80 to 50 wt % of diluent (Component II) to form a sheet;

stretching the sheet at a temperature range where 30 to 80 wt % of the crystalline portion of the sheet melts, by using roll type or tenter type sequential or simultaneous stretcher in a stretching ratio of 4 times or more in machine and transverse direction, respectively, with total stretching ratio of 25 to 50 times to form a film;

cooling the film, just upon the completion of stretching, under the condition of retaining the tension applied during the stretching, wherein a cooling temperature is higher than ambient temperature but lower than a crystallization temperature of the stretched film;

extracting the diluent from the resultant film; and

heat-setting the film at a temperature range where 10 to 30 wt % of the crystalline portion of the film melts.

2. A process for preparing microporous high-density polyethylene according to claim 1 , wherein Component I comprises not more than 2 wt % of comonomer which is selected from the group consisting of propylene, butene-1, hexene-1 and 4-methylpentene-1.

3. A process for preparing microporous high-density polyethylene according to claim 1 , wherein Component II is paraffin oil having kinetic viscosity of 20 to 200 cSt at 40° C.

4. A process for preparing microporous high-density polyethylene according to claim 1 , wherein the residual amount of diluent in the film at the extraction step is not more than 1 wt %.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2019
From: SK INNOVATION CO., LTD.
To: SK INNOVATION CO., LTD.; SK IE TECHNOLOGY CO., LTD.
Reel/Frame 050007/0637 →
CHANGE OF NAME Recorded Sep 20, 2011
From: SK ENERGY CO., LTD.
To: SK INNOVATION CO., LTD.
Reel/Frame 026936/0858 →
CHANGE OF NAME Recorded Jan 24, 2008
From: SK CORPORATION
To: SK ENERGY CO., LTD.
Reel/Frame 020406/0228 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2007
From: RHEE, JANG-WEON; SUNG, JUNG-MOON; JO, BYOUNG-CHEON; LEE, YOUNG-KEUN
To: SK CORPORATION
Reel/Frame 019337/0032 →