IP Library Patent Application 16681914
Patent Application
App. No. 16/681,914

CORE-SHELL FILAMENT, METHOD OF FORMING A CORE-SHELL FILAMENT, METHOD OF FORMING AN ARTICLE BY FUSED FILAMENT FABRICATION, AND ARTICLE FORMED FILAMENT FABRICATION

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Patent No.
US None
App. No.
16/681,914
Abstract

A core-shell filament useful for fused filament fabrication includes a core, and a shell surrounding and in contact with the core. The core contains a block polyetherimide-polysiloxane. The shell contains a polyetherimide. When the filament is used in fused filament fabrication for printing a three-dimensional article, the core material remains surrounded by shell material. So, the printed article exhibits good interlayer adhesion provided by the shell material, and good ductility provided by the core material.

Claims (63)

1 . A core-shell filament for fused filament fabrication, comprising:

a core; and

a shell surrounding and in contact with the core;

wherein the core comprises a core composition comprising, based on the weight of the core composition, at least 50 weight percent of a block polyetherimide-polysiloxane; and

wherein the shell comprises a shell composition comprising, based on the weight of the shell composition, at least 30 weight percent of a polyetherimide.

2 . The core-shell filament of claim 1 , wherein the core composition comprises at least 90 weight percent of the block polyetherimide-polysiloxane.

3 . The core-shell filament of claim 1 , wherein the shell composition further comprises, based on the weight of the shell composition, 15 to 60 weight percent of a block polyestercarbonate.

4 . The core-shell filament of claim 1 , wherein the shell composition further comprises, based on the weight of the shell composition, 10 to 30 weight percent of a block polyestercarbonate-polysiloxane.

5 . The core-shell filament of claim 1 , wherein the shell composition further comprises, based on the weight of the shell composition, 4 to 20 weight percent of a block polycarbonate-polysiloxane.

6 . The core-shell filament of claim 1 , wherein the shell composition further comprises, based on the weight of the shell composition, 1 to 10 weight percent of a block polyetherimide-polysiloxane that is the same as or different from the block polyetherimide-polysiloxane of the core composition.

7 . The core-shell filament of claim 1 , wherein the shell composition comprises, based on the total weight of the shell composition,

30 to 75 weight percent of the polyetherimide,

20 to 60 weight percent of a block polyestercarbonate,

4 to 20 weight percent of a block polycarbonate-polysiloxane, and

1 to 10 weight percent of a block polyetherimide-polysiloxane that is the same as or different from the block polyetherimide-polysiloxane of the core composition.

8 . The core-shell filament of claim 1 , wherein the filament comprises, based on the volume of the filament, 10 to 90 volume percent of the core and 10 to 90 volume percent of the shell.

9 . The core-shell filament of claim 1 ,

wherein the core composition comprises at least 90 weight percent of the block polyetherimide-polysiloxane;

wherein the shell composition comprises

30 to 75 weight percent of the polyetherimide,

20 to 60 weight percent of a block polyestercarbonate,

4 to 20 weight percent of a block polycarbonate-polysiloxane, and

1 to 10 weight percent of a block polyetherimide-polysiloxane that is the same as or

different from the block polyetherimide-polysiloxane of the core composition; and

wherein the filament comprises, based on the volume of the filament, 10 to 90 volume percent of the core and 10 to 90 volume percent of the shell.

10 . A method of making a core-shell filament, comprising:

coextruding a core composition and a shell composition to form a core-shell filament comprising a core and a shell surrounding and in contact with the core;

wherein the core composition comprises, based on the weight of the core composition, at least 50 weight percent of a block polyetherimide-polysiloxane; and

wherein the shell composition comprises, based on the weight of the shell composition, at least 30 weight percent of a polyetherimide.

11 . The method of claim 10 ,

wherein the core composition comprises at least 90 weight percent of the block polyetherimide-polysiloxane;

wherein the shell composition comprises

30 to 75 weight percent of the polyetherimide,

20 to 60 weight percent of a block polyestercarbonate,

4 to 20 weight percent of a block polycarbonate-polysiloxane, and

1 to 10 weight percent of a block polyetherimide-polysiloxane that is the same as or

different from the block polyetherimide-polysiloxane of the core composition; and

wherein the filament comprises, based on the volume of the filament, 10 to 90 volume percent of the core and 10 to 90 volume percent of the shell.

12 . A method of fused filament fabrication, comprising:

melt extruding a core-shell filament to form an extrudate; and

depositing the extrudate in a predetermined pattern to form a plurality of layers collectively forming the article, wherein each layer contacts at least one other layer;

wherein the core-shell filament comprises a core, and a shell surrounding and in contact with the core;

wherein the core comprises a core composition comprising, based on the weight of the core composition, at least 50 weight percent of a block polyetherimide-polysiloxane; and

wherein the shell comprises a shell composition comprising, based on the weight of the shell composition, at least 30 weight percent of a polyetherimide.

13 . The method of claim 12 ,

wherein the core composition comprises at least 90 weight percent of the block polyetherimide-polysiloxane;

wherein the shell composition comprises

30 to 75 weight percent of the polyetherimide,

20 to 60 weight percent of a block polyestercarbonate,

4 to 20 weight percent of a block polycarbonate-polysiloxane, and

1 to 10 weight percent of a block polyetherimide-polysiloxane that is the same as or

different from the block polyetherimide-polysiloxane of the core composition; and

wherein the filament comprises, based on the volume of the filament, 10 to 90 volume percent of the core and 10 to 90 volume percent of the shell.

14 . An article formed by the method of claim 12 .

15 . The article of claim 14 ,

wherein the core composition comprises at least 90 weight percent of the block polyetherimide-polysiloxane;

wherein the shell composition comprises

30 to 75 weight percent of the polyetherimide,

20 to 60 weight percent of a block polyestercarbonate,

4 to 20 weight percent of a block polycarbonate-polysiloxane, and

1 to 10 weight percent of a block polyetherimide-polysiloxane that is the same as or

different from the block polyetherimide-polysiloxane of the core composition; and

wherein the filament comprises, based on the volume of the filament, 10 to 90 volume percent of the core and 10 to 90 volume percent of the shell.

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 Nov 13, 2019
From: TENG, WEIBING; BIHARI, MALVIKA; HARDING, GEROULD
To: SABIC GLOBAL TECHNOLOGIES B.V.
Reel/Frame 050994/0270 →