IP Library Granted Patent US 12686732
Granted Patent B2
US 12686732 · App. 17/987,995 · Granted Jul 21, 2026

Ionomer composition and ionomer film prepared therefrom

Inventors: Yong Zheng (Daejeon, KR); Soon Min Kwon (Daejeon, KR); Ki Yup Kim (Daejeon, KR); Sang Yeup Lee (Daejeon, KR)
Assignees: SK Innovation Co., Ltd.; SK Geo Centric Co., Ltd.
C08F20/14C08K3/36
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Quick Facts
Patent No.
US 12686732
App. No.
17/987,995
Granted
Jul 21, 2026
Kind
B2
Abstract

Provided are an ionomer composition including silica particles which satisfy a specific equation and are acidic in an aqueous solution state and an ionomer film produced therefrom. The ionomer composition has excellent miscibility, and when a film is produced using the composition, surface appearance such as transparency is well-improved, and wear resistance, coefficient of friction, and the like of the film are significantly improved.

Claims (33)

1 . An ionomer composition comprising: an ethylene-(meth)acrylic acid ionomer and silica particles, wherein an aqueous solution comprising the silica particles at a concentration of 50 mg/ml has an acidic pH, and the silica particles satisfy the following Equation 1:

V

pore

A

×

Dv

(

50

)

0.1

[

Equation

1

]

wherein

V pore is a pore volume (ml/g), A is an effective area (m 2 /kg), and Dv(50) is a particle diameter (μm) corresponding to 50% of volume accumulation of a particle size distribution.

2 . The ionomer composition of claim 1 , wherein the silica particles have a ratio between FWHM and FWQM (FWQM/FWHM) of the particle size distribution of 1.5 or less.

3 . The ionomer composition of claim 1 , wherein the silica particles have Dv(50) of 1 to 10 μm.

4 . The ionomer composition of claim 1 , wherein the aqueous solution comprising the silica particles at a concentration of 50 mg/ml has a pH of 2 to 5.

5 . The ionomer composition of claim 1 , wherein the silica particles have a pore volume of 0.2 to 5 ml/g.

6 . The ionomer composition of claim 1 , wherein the silica particles have an effective area of 2000 to 2500 m 2 /kg.

7 . The ionomer composition of claim 1 , wherein the silica particles have a bulk density of 0.02 to 5 g/ml.

8 . The ionomer composition of claim 1 , wherein the silica particles are comprised at 0.1 to 0.5 wt % with respect to a total weight of the ionomer composition.

9 . The ionomer composition of claim 1 , wherein the ethylene-(meth)acrylic acid ionomer comprises 5 to 15 wt % of a (meth)acrylic acid repeating unit.

10 . The ionomer composition of claim 1 , wherein the ethylene-(meth)acrylic acid ionomer has a degree of neutralization by one or two or more metals selected from the group consisting of lithium, sodium, potassium, calcium, magnesium, manganese, cobalt, nickel, copper, zinc, and lead of 25 to 60%.

11 . The ionomer composition of claim 1 , wherein a melt flow index of the ethylene-(meth)acrylic acid ionomer composition is 1 to 10 g/10 min as measured in accordance with ISO 1133-1 (2011).

12 . An ionomer film produced from the ionomer composition of claim 1 .

13 . The ionomer film of claim 12 , wherein the film has a maximum coefficient of static friction (μ s ) of 0.2 or less as measured in accordance with ISO 8295.

14 . The ionomer film of claim 12 , wherein the film has a wear resistance test result value of 40 mg or less as measured in accordance with ASTM 4060.

15 . The ionomer film of claim 12 , wherein the film has a haze of 15% or less as measured in accordance with ASTM D1003.