IP Library Granted Patent US 12686734
Granted Patent B2
US 12686734 · App. 17/969,953 · Granted Jul 21, 2026

Fluorine-containing polymer film

Inventors: Tetsuhiro Kodani (Osaka, JP); Saori Sakami (Osaka, JP); Shinya Bitou (Osaka, JP); Masaharu Arimoto (Osaka, JP); Takashi Kanemura (Osaka, JP)
Assignee: DAIKIN INDUSTRIES, LTD.
C08F214/22C08F214/24C08F214/26C08J5/18H10N30/045H10N30/098
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Quick Facts
Patent No.
US 12686734
App. No.
17/969,953
Granted
Jul 21, 2026
Kind
B2
Abstract

An object is to provide a fluorine-containing polymer film. The object can be achieved by a fluorine-containing polymer film having a thermal shrinkage of 0.4% or less after being heated at 90° C. for 1 hour, and having a relative permittivity of 3 to 50 at 25° C. at 1000 Hz, or a fluorine-containing polymer film having a crystallinity of 50% or more and an elongation at break of 400% or more.

Claims (11)

1 . A fluorine-containing polymer film having a thermal shrinkage of 0.4% or less after being heated at 90° C. for 1 hour, having a relative permittivity of 3 to 50 at 25° C. at 1000 Hz, and having a ratio of retardation (nm) to film thickness (μm) of 2.5 or less.

2 . The fluorine-containing polymer film according to claim 1 , having a surface roughness (Ra) of 350 nm or less.

3 . The fluorine-containing polymer film according to claim 1 , having a residual polarization amount of 40 mC/m 2 or less.

4 . The fluorine-containing polymer film according to claim 1 , having an internal haze value of 30% or more.

5 . The fluorine-containing polymer film according to claim 1 , having a ratio of internal haze value (%) to film thickness (μm) within the range of 1 to 4.5.

6 . The fluorine-containing polymer film according to claim 1 , having a crystallinity of 50% or more,

the crystallinity being expressed by 100×(area of crystalline peak)/(sum of area of crystalline peak and area of amorphous halo peak)

wherein in an X-ray diffraction pattern obtained by placing a film sample directly on a sample holder with an aperture, and performing X-ray diffraction measurement at a diffraction angle 2θ of 10 to 40°, a baseline is set as a straight line connecting a diffraction intensity at a diffraction angle 2θ of 10° and a diffraction intensity at a diffraction angle 2θ of 25°, an area surrounded by the baseline and a diffraction intensity curve is separated into two symmetric peaks by profile fitting, and of these peaks, a peak with a larger diffraction angle 2θ is recognized as the crystalline peak, and a peak with a smaller diffraction angle 2θ is recognized as the amorphous halo peak.

7 . The fluorine-containing polymer film according to claim 1 , wherein the fluorine-containing polymer is a vinylidene fluoride-based polymer.

8 . The fluorine-containing polymer film according to claim 7 , wherein the vinylidene fluoride-based polymer is a vinylidene fluoride-tetrafluoroethylene copolymer or a vinylidene fluoride-trifluoroethylene copolymer.

9 . A piezoelectric film comprising the fluorine-containing polymer film of claim 1 .