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Patent · US2011154641A1 · A1 · US

Electroactive polymer manufacturing

(11) Publication number
US2011154641A1
(21) Application number
13/042,863
(22) Filing date
2011-03-08
(30) Priority date
1999-07-20
(43) Publication date
2011-06-30
(52) CPC
  • F02G Hot gas or combustion-product positive-displacement engine plants; use of waste heat of combustion engines; not otherwise provided for: 1/043, 2243/52
  • F04B Positive-displacement machines for liquids; pumps: 35/00, 35/045, 43/043
  • F05C Indexing scheme relating to materials, material properties or material characteristics for machines, engines or pumps other than non-positive-displacement machines or engines: 2225/08
  • F25B Refrigeration machines, plants or systems; combined heating and refrigeration systems; heat pump systems: 9/14
  • H01G Capacitors; capacitors, rectifiers, detectors, switching devices, light-sensitive or temperature-sensitive devices of the electrolytic type: 5/16
  • H02N Electric machines not otherwise provided for: 2/023
  • H04R Loudspeakers, microphones, gramophone pick-ups or like acoustic electromechanical transducers; electric hearing AIDS; public address systems: 19/02, 23/00
  • H10N Electric solid-state devices not otherwise provided for: 30/098, 30/2042, 30/206, 30/30, 30/308, 30/857, 30/87, 30/878
  • Y10S Technical subjects covered by former uspc cross-reference art collections [xracs] and digests: 310/80
  • Y10T Technical subjects covered by former us classification: 29/49826
(73) Assignee
STANFORD RES INST INT
(54) Title
Electroactive polymer manufacturing
(57) Abstract

Described herein are transducers and their fabrication. The transducers convert between mechanical and electrical energy. Some transducers of the present invention include a pre-strained polymer. The pre-strain improves the conversion between electrical and mechanical energy. The present invention provides methods for fabricating electromechanical devices including one or more electroactive polymers.

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Claims (1)

  1. A method of fabricating a device comprising an electroactive polymer and multiple electrodes, the method comprising: mechanically stretching a polymer to form a pre-strained electroactive polymer, wherein the pre-strained electroactive polymer has an elastic modulus below 100 MPa; fixing a first portion of the pre-strained electroactive polymer to a solid member; forming a first electrode on a portion of a first surface of the pre-strained electroactive polymer; and forming a second electrode on a portion of a second surface of the pre-strained electroactive polymer. 2. The method of claim 1 wherein the pre-strained electroactive polymer is elastically pre-strained. 3. The method of claim 1 wherein the polymer is one of: a silicone elastomer, PVDF copolymer, or adhesive elastomer. 4. The method of claim 1 wherein the first portion of the pre-strained electroactive polymer includes an edge portion of the electroactive polymer. 5. The method of claim 1 wherein the pre-strain is applied uniformly over a second portion of the polymer to produce an isotropic pre-strained electroactive polymer. 6. The method of claim 1 wherein the pre-strain is applied unequally in different directions for a second portion of the polymer to produce an anisotropic pre-strained electroactive polymer. 7. The method of claim 1 wherein the pre-strain includes a strain between about 100 and about 500 percent in each planar direction. 8. The method of claim 1 wherein forming first electrode comprises spraying an electrode solution onto the pre strained polymer using a mask that defines the portion of the first surface. 9. The method of claim 1 wherein the electrode solution includes carbon black, a binder and a solvent. 10. The method of claim 1 wherein fixing the portion of the pre-strained electroactive polymer to the solid member includes attaching the solid member to the portion using an adhesive. 11. The method of claim 1 wherein the solid member includes one of: a rigid plastic or metal or a flexible plastic film or metal film. 12. A method of fabricating a device comprising an electroactive polymer and multiple electrodes, the method comprising: mechanically stretching a polymer to form a pre-strained electroactive polymer, wherein the pre-strained electroactive polymer has an elastic modulus below 100 MPa; fixing a portion of the pre-strained electroactive polymer to a solid member; spraying an electrode solution onto a first surface of the electroactive polymer using a first mask that defines a pattern for a first electrode on the first surface of the electroactive polymer; and spraying the electrode solution onto a second surface of the electroactive polymer using a second mask that defines a pattern for a second electrode on the second surface of the electroactive polymer. 13. The method of claim 12 wherein the electrode solution includes a conductive grease and a solvent. 14. The method of claim 13 further comprising dissolving the conductive grease in the solvent to form the electrode solution. 15. The method of claim 13 wherein the electrode solution also includes an uncured conductive silicone or an uncured elastomer. 16. The method of claim 12 wherein fixing the portion of the electroactive polymer to the solid member uses an adhesive. 17. The method of claim 12 wherein the mechanical stretch includes a strain greater than about 40 percent in a planar direction of the polymer. 18. The method of claim 17 wherein the mechanical stretch includes a strain greater than about 100 percent in a planar direction of the polymer. 19. The method of claim 12 wherein the electroactive polymer includes an additive. 20. The method of claim 19 wherein the additive improves at least one of polymer dielectric breakdown strength, maximum linear strain, dielectric constant, elastic modulus, response time, and actuation voltage.

Citations (3)

  • US3816774A
  • US5504388A
  • US5559387A
Record as JSON
{
  "publication_number": "US2011154641A1",
  "country": "US",
  "kind": "A1",
  "title": "Electroactive polymer manufacturing",
  "abstract": "Described herein are transducers and their fabrication. The transducers convert between mechanical and electrical energy. Some transducers of the present invention include a pre-strained polymer. The pre-strain improves the conversion between electrical and mechanical energy. The present invention provides methods for fabricating electromechanical devices including one or more electroactive polymers.",
  "claims": [
    "1. A method of fabricating a device comprising an electroactive polymer and multiple electrodes, the method comprising: mechanically stretching a polymer to form a pre-strained electroactive polymer, wherein the pre-strained electroactive polymer has an elastic modulus below 100 MPa; fixing a first portion of the pre-strained electroactive polymer to a solid member; forming a first electrode on a portion of a first surface of the pre-strained electroactive polymer; and forming a second electrode on a portion of a second surface of the pre-strained electroactive polymer. 2. The method of claim 1 wherein the pre-strained electroactive polymer is elastically pre-strained. 3. The method of claim 1 wherein the polymer is one of: a silicone elastomer, PVDF copolymer, or adhesive elastomer. 4. The method of claim 1 wherein the first portion of the pre-strained electroactive polymer includes an edge portion of the electroactive polymer. 5. The method of claim 1 wherein the pre-strain is applied uniformly over a second portion of the polymer to produce an isotropic pre-strained electroactive polymer. 6. The method of claim 1 wherein the pre-strain is applied unequally in different directions for a second portion of the polymer to produce an anisotropic pre-strained electroactive polymer. 7. The method of claim 1 wherein the pre-strain includes a strain between about 100 and about 500 percent in each planar direction. 8. The method of claim 1 wherein forming first electrode comprises spraying an electrode solution onto the pre strained polymer using a mask that defines the portion of the first surface. 9. The method of claim 1 wherein the electrode solution includes carbon black, a binder and a solvent. 10. The method of claim 1 wherein fixing the portion of the pre-strained electroactive polymer to the solid member includes attaching the solid member to the portion using an adhesive. 11. The method of claim 1 wherein the solid member includes one of: a rigid plastic or metal or a flexible plastic film or metal film. 12. A method of fabricating a device comprising an electroactive polymer and multiple electrodes, the method comprising: mechanically stretching a polymer to form a pre-strained electroactive polymer, wherein the pre-strained electroactive polymer has an elastic modulus below 100 MPa; fixing a portion of the pre-strained electroactive polymer to a solid member; spraying an electrode solution onto a first surface of the electroactive polymer using a first mask that defines a pattern for a first electrode on the first surface of the electroactive polymer; and spraying the electrode solution onto a second surface of the electroactive polymer using a second mask that defines a pattern for a second electrode on the second surface of the electroactive polymer. 13. The method of claim 12 wherein the electrode solution includes a conductive grease and a solvent. 14. The method of claim 13 further comprising dissolving the conductive grease in the solvent to form the electrode solution. 15. The method of claim 13 wherein the electrode solution also includes an uncured conductive silicone or an uncured elastomer. 16. The method of claim 12 wherein fixing the portion of the electroactive polymer to the solid member uses an adhesive. 17. The method of claim 12 wherein the mechanical stretch includes a strain greater than about 40 percent in a planar direction of the polymer. 18. The method of claim 17 wherein the mechanical stretch includes a strain greater than about 100 percent in a planar direction of the polymer. 19. The method of claim 12 wherein the electroactive polymer includes an additive. 20. The method of claim 19 wherein the additive improves at least one of polymer dielectric breakdown strength, maximum linear strain, dielectric constant, elastic modulus, response time, and actuation voltage."
  ],
  "cpc": [
    "F02G 1/043",
    "F02G 2243/52",
    "F04B 35/00",
    "F04B 35/045",
    "F04B 43/043",
    "F05C 2225/08",
    "F25B 9/14",
    "H01G 5/16",
    "H02N 2/023",
    "H04R 19/02",
    "H04R 23/00",
    "H10N 30/098",
    "H10N 30/2042",
    "H10N 30/206",
    "H10N 30/30",
    "H10N 30/308",
    "H10N 30/857",
    "H10N 30/87",
    "H10N 30/878",
    "Y10S 310/80",
    "Y10T 29/49826"
  ],
  "assignees": [
    "STANFORD RES INST INT"
  ],
  "filing_date": "2011-03-08",
  "publication_date": "2011-06-30",
  "priority_date": "1999-07-20",
  "application_number": "US-201113042863-A",
  "family_id": "33304295",
  "citations": [
    "US3816774A",
    "US5504388A",
    "US5559387A"
  ]
}

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