IP Library Granted Patent US 10,526,437
Granted Patent B2
US 10,526,437 · App. 15/676,740 · Granted Jan 7, 2020

Shape memory polymers

Inventors: Thomas S. Wilson (Castro Valley, CA); Jane P. Bearinger (Berwyn, PA)
Assignee: Lawrence Livermore National Security, LLC
C08G18/3203B82Y30/00C08G18/08C08G18/3221C08G18/3271C08G18/3281C08G18/3284C08G18/3287C08G18/3851C08G18/73C08J9/0085A61B17/3498A61B2017/00867A61B2017/00871A61B2017/2932C08G2280/00C08L75/04C08L75/12C08L75/14
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Quick Facts
Patent No.
US 10,526,437
App. No.
15/676,740
Granted
Jan 7, 2020
Kind
B2
Abstract

New shape memory polymer compositions, methods for synthesizing new shape memory polymers, and apparatus comprising an actuator and a shape memory polymer wherein the shape memory polymer comprises at least a portion of the actuator. A shape memory polymer comprising a polymer composition which physically forms a network structure wherein the polymer composition has shape-memory behavior and can be formed into a permanent primary shape, re-formed into a stable secondary shape, and controllably actuated to recover the permanent primary shape. Polymers have optimal aliphatic network structures due to minimization of dangling chains by using monomers that are symmetrical and that have matching amine and hydroxyl groups providing polymers and polymer foams with clarity, tight (narrow temperature range) single transitions, and high shape recovery and recovery force that are especially useful for implanting in the human body.

Claims (39)

1. A method of preparing a crosslinked thermoset open cell shape memory polymer foam comprising:

forming the crosslinked thermoset open cell shape memory polymer foam from a crosslinked polyurethane polymer, the crosslinked polyurethane polymer comprising the reaction product of: (a) at least one aliphatic diisocyanate monomer, and (b) at least one symmetric aliphatic hydroxyl containing monomer with a functionality greater than 2;

wherein the at least one aliphatic diisocyanate monomer includes isocyanate groups to match and react with hydroxyl groups of the at least one symmetric aliphatic hydroxyl containing monomer.

2. The method of claim 1 wherein:

the at least one aliphatic diisocyanate monomer includes at least one of octamethylene diisocyanate, hexamethylene diisocyanate (HDI), pentamethylene diisocyanate, tetramethylene diisocyanate, trimethylene diisocyanate, ethylene diisocyanate, methylene diisocyanate, dicyclohexylmethane-4,4′-diisocyanate, or combinations thereof; and

the at least one symmetric aliphatic hydroxyl containing monomer includes at least one of N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED), triethanol amine (TEA), N,N,N′,N′-Tetrakis(2-hydroxyethyl) ethylenediamine (HEED), trimethylolpropane ethoxylate, glycerol, polycaprolactone triol, pentaerythritol, hexamethylolmelamine, or combinations thereof.

3. The method of claim 1 wherein the at least one aliphatic diisocyanate monomer and the at least one symmetric aliphatic hydroxyl containing monomer comprise a 1:1 ratio of the isocyanate groups to the hydroxyl groups.

4. The method claim 1 wherein the at least one aliphatic diisocyanate monomer comprises hexamethylene diisocyanate (HDI) and the at least one symmetric aliphatic hydroxyl containing monomer comprises N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED) and triethanolamine (TEA).

5. The method of claim 4 wherein a mole ratio of the HDI to at least one of the HPED or the TEA is at least 1 to 1 and no more than 10 to 1.

6. The method of claim 1 wherein the at least one symmetric aliphatic hydroxyl containing monomer contains no ether linkages and no ester linkages.

7. The method of claim 1 wherein the foam also comprises additives, the additives including at least one carbon nanotubes, exfoliated clay, particulate silica, glass fibers, carbon fibers, mineral fillers, metal fillers, glassy polymers, or liquid crystalline polymers, added to the polymer prior to foaming.

8. The method of claim 1 wherein the at least one aliphatic diisocyanate monomer includes at least one of octamethylene diisocyanate, hexamethylene diisocyanate (HDI), pentamethylene diisocyanate, tetramethylene diisocyanate, trimethyl hexamethylene diisocyanate, trimethylene diisocyanate, ethylene diisocyanate, methylene diisocyanate, dicyclohexylmethane-4,4′-diisocyanate, or combinations thereof.

9. A method of preparing a crosslinked thermoset open cell shape memory polymer foam comprising:

forming the crosslinked thermoset open cell shape memory polymer foam from a crosslinked polyurethane polymer, the crosslinked polyurethane polymer comprising the reaction product of: (a) at least one aliphatic diisocyanate monomer, and (b) at least one symmetric aliphatic hydroxyl containing monomer with a functionality greater than 2;

wherein the at least one aliphatic diisocyanate monomer includes isocyanate groups to match and react with hydroxyl groups of the at least one symmetric aliphatic hydroxyl containing monomer;

wherein the at least one symmetric aliphatic hydroxyl containing monomer includes polycaprolactone triol.

10. The method of claim 9 wherein:

the at least one aliphatic diisocyanate monomer includes at least one of octamethylene diisocyanate, hexamethylene diisocyanate (HDI), pentamethylene diisocyanate, tetramethylene diisocyanate, trimethylene diisocyanate, ethylene diisocyanate, methylene diisocyanate, dicyclohexylmethane-4,4′-diisocyanate, or combinations thereof; and

the at least one symmetric aliphatic hydroxyl containing monomer includes at least one of N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED), triethanol amine (TEA), N,N,N′,N′-Tetrakis(2-hydroxyethyl) ethylenediamine (HEED), trimethylolpropane ethoxylate, glycerol, pentaerythritol, hexamethylolmelamine, or combinations thereof.

11. The method of claim 9 wherein the at least one aliphatic diisocyanate monomer is hexamethylene diisocyanate (HDI) and the at least one symmetric aliphatic hydroxyl containing monomer further comprises N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED) and triethanolamine (TEA).

12. The method of claim 11 wherein a mole ratio of the HDI to at least one of the HPED or the TEA is at least 1 to 1 and no more than 10 to 1.

13. The method of claim 9 wherein the at least one aliphatic diisocyanate monomer includes at least one of octamethylene diisocyanate, hexamethylene diisocyanate (HDI), pentamethylene diisocyanate, tetramethylene diisocyanate, trimethyl hexamethylene diisocyanate, trimethylene diisocyanate, ethylene diisocyanate, methylene diisocyanate, dicyclohexylmethane-4,4′-diisocyanate, or combinations thereof.

14. A method of preparing a crosslinked thermoset open cell polyurethane shape memory polymer foam comprising:

forming the crosslinked thermoset open cell polyurethane shape memory polymer foam, the foam comprising the reaction product of: (a) at least one aliphatic diisocyanate monomer, and (b) at least one symmetric aliphatic hydroxyl containing monomer with a functionality greater than 2;

wherein the at least one aliphatic diisocyanate monomer includes isocyanate groups to match and react with hydroxyl groups of the at least one symmetric aliphatic hydroxyl containing monomer.

15. The method of claim 14 wherein:

the at least one aliphatic diisocyanate monomer includes at least one of octamethylene diisocyanate, hexamethylene diisocyanate (HDI), pentamethylene diisocyanate, tetramethylene diisocyanate, trimethylene diisocyanate, ethylene diisocyanate, methylene diisocyanate, dicyclohexylmethane-4,4′-diisocyanate, or combinations thereof; and

the at least one symmetric aliphatic hydroxyl containing monomer includes at least one of N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED), triethanol amine (TEA), N,N,N′,N′-Tetrakis(2-hydroxyethyl) ethylenediamine (HEED), trimethylolpropane ethoxylate, glycerol, polycaprolactone triol, pentaerythritol, hexamethylolmelamine, or combinations thereof.

16. The method of claim 14 wherein the at least one aliphatic diisocyanate monomer includes at least one of octamethylene diisocyanate, hexamethylene diisocyanate (HDI), pentamethylene diisocyanate, tetramethylene diisocyanate, trimethyl hexamethylene diisocyanate, trimethylene diisocyanate, ethylene diisocyanate, methylene diisocyanate, dicyclohexylmethane-4,4′-diisocyanate, or combinations thereof.

17. The method of claim 1 wherein:

the at least one aliphatic diisocyanate monomer includes hexamethylene diisocyanate (HDI); and

the at least one symmetric aliphatic hydroxyl containing monomer comprises at least one of N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED) or triethanolamine (TEA).

18. The method of claim 9 wherein:

the at least one aliphatic diisocyanate monomer includes hexamethylene diisocyanate (HDI); and

the at least one symmetric aliphatic hydroxyl containing monomer comprises at least one of N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED) or triethanolamine (TEA).

19. The method of claim 14 wherein:

the at least one aliphatic diisocyanate monomer includes hexamethylene diisocyanate (HDI); and

the at least one symmetric aliphatic hydroxyl containing monomer comprises at least one of N,N,N′,N′-Tetrakis (2-hydroxypropyl) ethylenediamine (HPED) or triethanolamine (TEA).

20. The method of claim 14 wherein each of the hydroxyl groups matches with one of the isocyanate groups.

Assignments (2)
CONFIRMATORY LICENSE Recorded Nov 16, 2017
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 044786/0413 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2017
From: WILSON, THOMAS S.; BEARINGER, JANE P.
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 043287/0099 →
Continuity (6)
Continuation 13893033 · May 13, 2013
Division 12905949 · Oct 15, 2010
Continuation In Part 11203025 · Aug 12, 2005
Provisional Application 61332039 · May 6, 2010
Provisional Application 60602083 · Aug 16, 2004
Related Publication 20170362372A1 · Dec 21, 2017