IP Library › Granted Patent US 11,136,445
Granted Patent B2
US 11,136,445 · App. 14/052,797 · Granted Oct 5, 2021

Liquid crystalline polymer composition

Inventor: Young Shin Kim (Erlanger, KY)
Assignee: Ticona LLC
C08K3/34B29C48/2886B29C48/345B29C48/40B29C48/625B29C48/67B29C48/767B29C48/919B29C48/92C08J5/10C08K3/346C08K3/40C08K5/092C08K5/13C08K7/02C09K19/3809C09K19/52C09K19/54H01B1/20H01B1/24B29C48/04B29C48/05B29C2948/92704C09K2019/521Y10T428/1372Y10T428/266Y10T428/269
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Quick Facts
Patent No.
US 11,136,445
App. No.
14/052,797
Granted
Oct 5, 2021
Kind
B2
Abstract

A compact camera module that contains a generally planar base on which is mounted a lens barrel is provided. The base, barrel, or both are molded from a polymer composition that includes a thermotropic liquid crystalline polymer and a plurality of mineral fibers (also known as “whisker”). The mineral fibers have a median width of from about 1 to about 35 micrometers and constitute from about 5 wt % to about 60 wt % of the polymer composition.

Claims (25)

1. A polymer composition that is formed from:

a thermotropic liquid crystalline polymer matrix, wherein the liquid crystalline polymer matrix includes a polymer containing monomeric repeating units derived from an aromatic diol, aromatic dicarboxylic acid, aromatic hydroxycarboxylic acid, aromatic amine, aromatic amide, or a combination thereof;

a functional aromatic compound that includes an aromatic dicarboxylic acid;

a non-aromatic functional compound that includes a hydrate, the hydrate comprising alumina trihydrate, copper sulfate pentahydrate, barium chloride dihydrate, calcium sulfate dihydrate, or combinations thereof;

a plurality of mineral fibers wherein the mineral fibers have a median width of from about 1 to about 35 micrometers and an aspect ratio of from about 2 to about 20; and

optional glass fibers;

wherein the mineral fibers constitute from about 5 wt. % to about 40 wt. % of the polymer composition, wherein the weight percentage of the liquid crystalline polymer matrix in the polymer composition exceeds the combined weight percentage of the mineral fibers and the optional glass fibers, and wherein the polymer composition exhibits a tensile strength of from 138.1 MPa to about 500 MPa as determined in accordance with ISO Test No. 527 at 23° C.

2. The polymer composition of claim 1 , wherein the liquid crystalline polymer matrix constitutes from about 25 wt. % to about 95 wt. % of the composition.

3. The polymer composition of claim 1 , wherein the polymer has a total amount of repeating units derived from naphthenic hydroxycarboxylic and/or naphthenic dicarboxylic acids of more than about 10 mol. %.

4. The polymer composition of claim 1 , wherein the polymer contains repeating units derived from 4-hydroxybenzoic acid, terephthalic acid, hydroquinone, 4,4′-biphenol, 6-hydroxy-2-naphthoic acid, 2,6-naphthelene dicarboxylic acid, or a combination thereof.

5. The polymer composition of claim 1 , wherein at least about 60% by volume of the mineral fibers have a diameter of from about 1 to about 35 micrometers.

6. The polymer composition of claim 1 , wherein the mineral fibers have a median width of from about 3 to about 15 micrometers.

7. The polymer composition of claim 1 , wherein the mineral fibers include fibers derived from a silicate.

8. The polymer composition of claim 7 , wherein the silicate is an inosilicate.

9. The polymer composition of claim 8 , wherein the inosilicate includes wollastonite.

10. The polymer composition of claim 1 , wherein the functional aromatic compound is 2,6-naphthelene dicarboxylic acid.

11. The polymer composition of claim 1 , wherein functional aromatic compounds constitute from about 0.001 wt. % to about 5 wt. % of the polymer composition.

12. The polymer composition of claim 1 , further comprising a conductive filler, glass filler, clay mineral, or a combination thereof.

13. The polymer composition of claim 1 , wherein the composition has a melt viscosity of from about 0.1 to about 80 Pa-s, as determined in accordance with ISO Test No. 11443 at a shear rate of 1000 seconds −1 and temperature that is 15° C. above the melting temperature of the composition.

14. The polymer composition of claim 1 , wherein the hydrate includes alumina trihydrate.

15. The polymer composition of claim 1 , wherein hydrates constitute from about 0.02 wt. % to about 2 wt. % of the polymer composition.

16. The polymer composition of claim 1 , wherein the composition further contains a conductive filler.

17. The polymer composition of claim 16 , wherein the conductive filler includes a carbon filler.

18. The polymer composition of claim, 16 , wherein the conductive filler includes an ionic liquid.

19. An electrical connector comprising a molded part, the molded part comprising the polymer composition of claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2013
From: KIM, YOUNG SHIN
To: TICONA LLC
Reel/Frame 031575/0125 →
Continuity (2)
Provisional Application 61779260 · Mar 13, 2013
Related Publication 20140264183A1 · Sep 18, 2014
Cited By (7)
US 12,209,163 US 12,247,116 US 12,282,005 US 12,297,348 US 12,331,194 US 12,368,216 US 12,522,716