IP Library Granted Patent US 7,807,260
Granted Patent B2
US 7,807,260 · App. 12/016,118 · Granted Oct 5, 2010

Multi-layered foamed polymeric objects and related methods

Assignees: MicroGREEN Polymers, Inc.; The University of Washington
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Quick Facts
Patent No.
US 7,807,260
App. No.
12/016,118
Granted
Oct 5, 2010
Kind
B2
Abstract

The invention disclosed herein relates to relates to foamed thermoplastic material objects and articles of manufacture having an internal layered cellular structure, as well as to methods of making the same. In one embodiment, the invention is directed to a multi-layer foamed polymeric article of manufacture, comprising: a non-laminated multi-layer thermoplastic material sheet, wherein the multi-layer thermoplastic material sheet has first and second discrete outer layers sandwiching a plurality of discrete inner foamed layers, and wherein the two outer layers and plurality discrete inner foamed layers are integral with one another. The thermoplastic material may be a semi-crystalline polymer such as, for example, PET (polyethylene terephthalate), PEEK (polyetheretherketone), PEN (polyethylene napthalate), PBT (polybutylene terephthalate), PMMA (polymethyl methacrylate), PLA (polylactide), polyhydroxy acid (PHA), thermoplastic urethane (TPU), or blends thereof. The two outer layers may be unfoamed skin layers having smooth outer surfaces, and the discrete inner foamed layers may be microcellular.

Claims (22)

1. A multi-layer foamed polymeric article of manufacture, comprising: a non-laminated multi-layer thermoplastic material sheet, the multi-layer thermoplastic material sheet having first and second discrete outer skin layers sandwiching a plurality of discrete inner foamed layers, wherein the two outer skin layers and plurality of discrete inner foamed layers are integral with one another, and wherein the plurality of discrete inner foamed layers include at least (i) two substantially identical second inner foamed layers positioned immediately adjacent to the two outer skin layers, (ii) two substantially identical third inner foamed layers positioned immediately adjacent to the second inner foamed layers, and (iii) a central fourth inner foamed layer positioned immediately adjacent to and interposed between the third inner foamed layers, wherein the thickness of the two second inner foamed layers is greater than the thickness of the two third inner foamed layers, and wherein the thickness of the central fourth layer is less than the thickness of either of the two third inner foamed layers.

2. The multi-layer foamed polymeric article of manufacture according to claim 1 wherein the thermoplastic material is a semicrystalline polymer.

3. The multi-layer foamed polymeric article of manufacture according to claim 2 wherein the semi-crystalline polymer is selected from the group consisting of PET (polyethylene terephthalate), PEEK (polyetheretherketone), PEN (polyethylene napthalate). PBT (polybutylene terephthalate). PMMA (polymethylmethacrylate). PLA (polyactide), polyhydroxy acid (PHA), thermoplastic urethane (TPU), and blends thereof.

4. The multi-layer foamed polymeric article of manufacture according to claim 2 wherein the semi-crystalline polymer is PET(polyethylene terephthalate).

5. The multi-layer foamed polymeric article of manufacture according to claim 4 wherein the two outer layers are unfoamed skin layers having smooth outer surfaces.

6. The multi-layer foamed polymeric article of manufacture according to claim 1 wherein each of the plurality of discrete inner foamed layers are microcellular.

7. The multi-layer foamed polymeric article of manufacture according to claim 1 wherein the second inner foamed layers each include a first plurality of closed cells wherein the first plurality of closed cells has an average cell diameter ranging from about 5 to about 10 microns.

8. The multi-layer foamed polymeric article of manufacture according to claim 7 wherein the third inner foamed layers each include a second plurality of closed cells, wherein the second plurality of closed cells has an average cell diameter ranging from about 30 to about 50 microns.

9. The multi-layer foamed polymeric article of manufacture according to claim 7 wherein the fourth inner foamed layer includes a third plurality of closed cells, wherein the third plurality of closed cells has an average cell diameter ranging from about 20 to about 40 microns.

10. The multi-layer foamed polymeric article of manufacture according to claim 1 wherein the thermoplastic material sheet is nonplanar.

11. The multi-layer foamed polymeric article of manufacture according to claim 1 wherein the density and stiffness of the multi-layer thermoplastic material sheet is graded across the sheet such that the outermost layers of the plurality of discrete inner foamed layers have the greatest density and stiffness of the plurality of discrete inner foamed layers.

12. A multi-layer foamed polymeric article of manufacture, comprising: a non-laminated multi-layer thermoplastic material sheet, the multi-layer thermoplastic material sheet having first and second discrete outer skin layers sandwiching a plurality of discrete inner foamed layers, wherein the two outer skin layers and plurality discrete inner foamed layers are integral with one another, and wherein the plurality of discrete inner foamed layers include at least (i) two substantially identical second inner foamed layers positioned immediately adjacent to the two outer skin layers, (ii) two substantially identical third inner foamed layers positioned immediately adjacent to the second inner foamed layers, and (iii) a central fourth inner foamed layer positioned immediately adjacent to and interposed between the third inner foamed layers, wherein the second inner foamed layers each include a first plurality of closed cells, and wherein the third inner foamed layers each include a second plurality of closed cells, and wherein the central fourth inner foamed layer includes a third plurality of closed cells, and wherein the average cell size of the second plurality of closed cells is greater than the average cell size of the third plurality of closed cells, and wherein the first, second, and third plurality of closed cells are each of uniform cell density.

13. A method of making a multi-layer foamed polymeric article of manufacture, the method comprising at least the following steps:

absorbing an effective amount of a plasticizing gas into the thermoplastic material sheet to yield a reversibly plasticized thermoplastic material sheet, the plasticized thermoplastic material sheet being impregnated with the plasticizing gas; desorbing at least some of the plasticizing gas from the plasticized thermoplastic material sheet;

heating the plasticized thermoplastic material sheet to yield a foamed thermoplastic material sheet; and

forming or thermoforming the foamed thermoplastic material sheet to yield the multi-layer foamed polymeric article of manufacture, wherein the multi-layer foamed polymeric article of manufacture comprises: a non-laminated multi-layer thermoplastic material sheet, the multi-layer thermoplastic material sheet having first and second discrete outer skin layers sandwiching a plurality of discrete inner foamed layers, wherein the two outer skin layers and plurality of discrete inner foamed layers are integral with one another, and wherein the plurality of discrete inner foamed layers include at least (i) two substantially identical second inner foamed layers positioned immediately adjacent to the two outer skin layers, (ii) two substantially identical third inner foamed layers positioned immediately adjacent to the second inner foamed layers, and (iii) a central fourth inner foamed layer positioned immediately adjacent to and interposed between the third inner foamed layers, wherein the thickness of the two second inner foamed layers is greater than the thickness of the two third inner foamed layers, and wherein the thickness of the central fourth layer is less than the thickness of either of the two third inner foamed layers.

14. A method of making a multi-layer foamed polymeric article of manufacture, the method comprising at least the following steps:

absorbing an effective amount of a plasticizing gas into the thermoplastic material sheet to yield a reversibly plasticized thermoplastic material sheet, the

plasticized thermoplastic material sheet being impregnated with the plasticizing gas;

desorbing at least some of the plasticizing gas from the plasticized thermoplastic material sheet;

heating the plasticized thermoplastic material sheet to yield a foamed thermoplastic material sheet; and

forming or thermoforming the foamed thermoplastic material sheet to yield the multi-layer foamed polymeric article of manufacture, wherein the multi-layer foamed polymeric article of manufacture comprises: a non-laminated multi-layer thermoplastic material sheet, the multi-layer thermoplastic material sheet having first and second discrete outer skin layers sandwiching a plurality of discrete inner foamed layers, wherein the two outer skin layers and plurality discrete inner foamed layers are integral with one another, and wherein the plurality of discrete inner foamed layers include at least (i) two substantially identical second inner foamed layers positioned immediately adjacent to the two outer skin layers, (ii) two substantially identical third inner foamed layers positioned immediately adjacent to the second inner foamed layers, and (iii) a central fourth inner foamed layer positioned immediately adjacent to and interposed between the third inner foamed layers, wherein the second inner foamed layers each include a first plurality of closed cells, and wherein the third inner foamed layers each include a second plurality of closed cells, and wherein the central fourth inner foamed layer includes a third plurality of closed cells, and wherein the average cell size of the second plurality of closed cells is greater than the average cell size of the third plurality of closed cells, and wherein the first, second, and third plurality of closed cells are each of uniform cell density.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2016
From: MICROGREEN POLYMERS, INC.
To: DART CONTAINER CORPORATION
Reel/Frame 037696/0092 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2010
From: KUMAR, VIPIN; WAGGONER, MICHAEL A.
To: THE UNIVERSITY OF WASHINGTON
Reel/Frame 025512/0022 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2010
From: NADELLA, KRISHNA; BRANCH, GREGORY
To: MICROGREEN POLYMERS, INC.
Reel/Frame 025512/0141 →
Continuity (3)
Provisional Application 6088650600 · Jan 24, 2007
Provisional Application 6088537400 · Jan 17, 2007
Related Publication 20090104420A1 · Apr 23, 2009