IP Library › Granted Patent US 10,730,232
Granted Patent B2
US 10,730,232 · App. 15/005,383 · Granted Aug 4, 2020

Coextruded, multilayer and multicomponent 3D printing inputs

Inventors: Richard Guillemette (West Warwick, RI); Robert Peters (West Warwick, RI)
Assignee: Guill Tool & Engineering Co, Inc.
B29C64/118B29C64/106B29C69/001B29K2101/12B33Y10/00B33Y70/00
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Quick Facts
Patent No.
US 10,730,232
App. No.
15/005,383
Granted
Aug 4, 2020
Kind
B2
Abstract

A 3D printer input includes filaments comprising separated layers or sections. These inputs particularly including filaments may be prepared by coextrusion, microlayer coextrusion or multicomponent/fractal coextrusion. These inputs and specifically filaments enable layering or combining different materials simultaneously through one or more nozzles during the so-called 3D printing process. These techniques facilitate smaller layer sizes (milli, micro, and nano) different layer configurations as well as the potential to incorporate materials that would otherwise not be usable in standard 3D printer methods.

Claims (9)

1. A meltable 3D printer product filament having a length, comprising:

a section of a first solid 3D printer meltable filament which is aligned in-line or perpendicular to the length of the meltable 3D printer product filament and having a first chopped end including a first shape comprising at least one planar surface that is angled relative to the length of the meltable 3D printer product filament;

a section of a second solid 3D printer meltable filament which is aligned in-line or perpendicular to the length of the meltable 3D printer product filament and having a second chopped end including a second shape comprising at least one planar surface that is angled relative to the length of the meltable 3D printer product filament;

wherein the first chopped end of the section of the first solid 3D printer meltable filament and the second chopped end of the section of the second solid 3D printer meltable filament are stacked and welded together and the first shape of the first chopped end of the section of the first solid 3D printer meltable filament and the second shape of the second chopped end of the section of the second solid 3D printer meltable filament are complementary to one another and define a transition between the section of the first solid 3D printer meltable filament and the section of the second solid 3D printer meltable filament.

2. The meltable 3D printer product filament according to claim 1 further comprising additional sections of the first solid 3D printer meltable filament having a first chopped end and the second solid 3D printer meltable filament having a second chopped end that are aligned in-line or perpendicular to the length of the meltable 3D printer product filament to form a 1-5 mm thick filament.

3. The meltable 3D printer product filament according to claim 1 wherein said section of the first solid 3D printer meltable filament is aligned in-line to the length of the meltable 3D printer product filament to form a 1-5 mm thick filament.

4. The meltable 3D printer product filament according to claim 1 wherein said section of the second solid 3D printer meltable filament is aligned in-line to the length of the meltable 3D printer product filament.

5. The meltable 3D printer product filament according to claim 1 further comprising multiple sections of the first solid 3D printer meltable filament aligned in-line to the length of the meltable 3D printer product filament.

6. The meltable 3D printer product filament according to claim 1 further comprising multiple sections of the second solid 3D printer meltable filament aligned perpendicular to the length of the meltable 3D printer product filament.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2016
From: GUILLEMETTE, RICHARD; PETERS, ROBERT
To: GUILL TOOL & ENGINEERING CO,INC.
Reel/Frame 037646/0923 →
Continuity (5)
Continuation PCTUS2014066252 · Nov 19, 2014
Provisional Application 61971452 · Mar 27, 2014
Provisional Application 61906218 · Nov 19, 2013
Related Publication 20160136887A1 · May 19, 2016
Related Publication 20170252967A9 · Sep 7, 2017