IP Library Patent Application 16515277
Patent Application
App. No. 16/515,277

HIGH HEAT POLYCARBONATE COMPOSITIONS

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Patent No.
US None
App. No.
16/515,277
Abstract

Polycarbonate blend compositions are disclosed. The compositions include at least one polycarbonate useful for high heat applications. The compositions can include one or more additional polymers. The compositions can include one or more additives. The compositions can be used to prepare articles of manufacture, and in particular, automotive bezels.

Claims (45)

1 . An article comprising a metallized surface and a thermoplastic composition comprising, based on the total weight of the composition:

(a) 35 wt % to 72 wt % of a first polycarbonate which is a para-cumylphenol end-capped polycarbonate comprising 31 mol % to 35 mol % structural units derived from 3,3-bis(4-hydroxyphenyl)-2-phenylisoindolin-1-one and at least 18 wt % structural units derived from bisphenol A, the first polycarbonate having a Mw of 23,000 g/mol [ ± 1,000 g/mol] to 40,000 g/mol [ ± 1,000 g/mol], as determined by GPC using BPA polycarbonate; and

(b) a second polycarbonate that is a para-cumylphenol end-capped bisphenol A polycarbonate having a Mw of 17,000 g/mol [ ± 1,000 g/mol] to less than 20,000 g/mol, as determined by GPC using bisphenol A polycarbonate standards;

wherein the composition has a melt viscosity of less than 375 Pa·s, measured in accordance with ISO 11443 at 300° C. at a shear rate of 1500 s −1 ;

a heat deflection temperature of at least 150° C., measured at 0.45 MPa in accordance with ISO 75; and

the metalized article achieves a GT0 metal adhesion rating when measured in accordance with ASTM 3359/ISO 2409; and

wherein the article is selected from instrument panels, overhead consoles, interior trim, center consoles, panels, quarter panels, rocker panels, trim, fenders, doors, deck lids, trunk lids, hoods, bonnets, roofs, bumpers, fascia, grilles, minor housings, pillar appliqués, cladding, body side moldings, wheel covers, hubcaps, door handles, spoilers, window frames, headlamp bezels, headlamps, tail lamps, tail lamp housings, tail lamp bezels, license plate enclosures, roof racks, circuit breakers, electrical and electronic housings, and running boards, or any combination thereof.

2 . The article of claim 1 , wherein the first polycarbonate has a PDI of 2 to 3.

3 . The article of claim 1 , wherein the first polycarbonate comprises 32 mol % structural units derived from 3,3-bis(4-hydroxyphenyl)-2-phenylisoindolin-1-one, has a PDI of 2 to 3, and a Mw of 23,000 g/mol [ ± 1,000 g/mol], as determined by GPC using BPA polycarbonate standards.

4 . The article of claim 1 , wherein the thermoplastic composition comprising, based on the total weight of the composition, 27 to 65 wt % of the second polycarbonate.

5 . The article of claim 4 , wherein the second polycarbonate is a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,200 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and the second polycarbonate has a PDI of 2 to 3.

6 . The article of claim 4 , wherein the second polycarbonate is a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,800 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and the second polycarbonate has a PDI of 2 to 3.

7 . The article of claim 1 , wherein the composition comprises, based on the total weight of the composition:

35 wt % to 72 wt % of the first polycarbonate; and

27 wt % to 65 wt % of the second polycarbonate,

wherein the first polycarbonate comprises 32 mol % structural units derived from 3,3-bis(4-hydroxyphenyl)-2-phenylisoindolin-1-one, has a PDI of 2 to 3, and a Mw of 23,000 g/mol [ ± 1,000 g/mol], as determined by GPC using BPA polycarbonate standards; and

the second polycarbonate is

a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,200 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and a PDI of 2 to 3, or

a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,800 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and a PDI of 2 to 3.

8 . The article of claim 1 , wherein the composition comprises, based on the total weight of the composition:

45 wt % to 72 wt % of the first polycarbonate; and

27 wt % to 55 wt % of the second polycarbonate,

wherein the first polycarbonate comprises 32 mol % structural units derived from 3,3-bis(4-hydroxyphenyl)-2-phenylisoindolin-1-one, has a PDI of 2 to 3, and a Mw of 23,000 g/mol [ ± 1,000 g/mol], as determined by GPC using BPA polycarbonate standards; and

the second polycarbonate is

a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,200 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and a PDI of 2 to 3, or

a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,800 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and a PDI of 2 to 3.

9 . The article of claim 1 , wherein the composition comprises:

(1) 64 wt % of the first polycarbonate, 35.6 wt % of the second polycarbonate, and 0.4 wt % of one or more additives;

(2) 60 wt % of the first polycarbonate, 39.6 wt % of the second polycarbonate, and 0.4 wt % of one or more additives;

(3) 68 wt % of the first polycarbonate, 31.6 wt % of the second polycarbonate, and 0.4 wt % of one or more additives;

(4) 72 wt % of the first polycarbonate, 27.6 wt % of the second polycarbonate, and 0.4 wt % of one or more additives; or

(5) 45 wt % of the first polycarbonate and 55 wt % of the second polymer,

wherein the first polycarbonate comprises 32 mol % structural units derived from 3,3-bis(4-hydroxyphenyl)-2-phenylisoindolin-1-one, has a PDI of 2 to 3, and a Mw of 23,000 g/mol [ ± 1,000 g/mol], as determined by GPC using BPA polycarbonate standards; and

the second polycarbonate is

a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,200 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and a PDI of 2 to 3, or

a para-cumylphenol end-capped linear Bisphenol A polycarbonate produced via interfacial polymerization, having a Mw of 18,800 g/mol [ ± 1,000 g/mol] as determined by GPC using BPA polycarbonate standards, and a PDI of 2 to 3.

10 . The article claim 9 , wherein the 0.4 wt % additives comprises: 0.04 wt % octadecyl 3-(3,5-di-tert-butyl-4-hydroxyphenyl)propionate; 0.08 wt % tris(di-t-butylphenyl)phosphite;

and 0.3 wt % Palmitic/Stearic Acid (50/50) ester of dipenta/pentaerythritol.

11 . The article of claim 1 , wherein the metallized surface has a thickness of 10 nanometers to 300 nanometers.

12 . The article of claim 1 , wherein the metallized surface comprises chrome, nickel, or aluminum.

13 . The article of claim 1 , wherein the article is a molded article having a thickness of 1.5 millimeters to 3 millimeters.

14 . The article of claim 1 , further comprising a siloxane hard-coated disposed on the metallized surface.

15 . The article of claim 1 , wherein the composition has a melt viscosity of less than 350 Pa·s, measured in accordance with ISO 11443 at 300° C. at a shear rate of 1500 s −1 ; wherein the composition has a heat deflection temperature of at least 160° C., measured at 0.45 MPa in accordance with ISO 75; wherein the composition has a notched Izod impact strength (NII) of at least 8 kJ/m 2 or at least 9 kJ/m2 at 23° C., measured in accordance with ISO 180; or wherein a molded sample of the composition has at least 60% ductility in a multi-axial impact test at 23° C., measured in accordance with ISO 6603; or any combination thereof.

16 . The article of claim 1 , wherein the article has one or more of the following properties: a minimum haze onset temperature of 150° C.; and exhibits 0% corrosion when stored for 240 hours at 98% relative humidity at 40° C., in accordance with DIN 50017.

17 . The article of claim 1 , wherein the article has an L* of 15 or less when measured using a spectrophotometer in reflection mode with specular light excluded.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE THE APPLICATION NUMBER 15039474 PREVIOUSLY RECORDED AT REEL: 054528 FRAME: 0467. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 23, 2021
From: SABIC GLOBAL TECHNOLOGIES B.V.
To: SHPP GLOBAL TECHNOLOGIES B.V.
Reel/Frame 057453/0680 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2020
From: SABIC GLOBAL TECHNOLOGIES B.V.
To: SHPP GLOBAL TECHNOLOGIES B.V.
Reel/Frame 054528/0467 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2019
From: FARRELL, TONY; VAN DER MEE, MARK ADRIANUS JOHANNES; ASSINK, ROLAND SEBASTIAN; VAN DE GRAMPEL, ROBERT DIRK
To: SABIC GLOBAL TECHNOLOGIES B.V.
Reel/Frame 049789/0008 →