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UV curable silicone rubber compositions 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C08F-020/20
  • C08F-020/26
  • C08F-030/08
  • C08F-002/50
출원번호 US-0571036 (1984-01-16)
발명자 / 주소
  • Lin Samuel Q. S. (S. Windsor CT) Nakos Steven T. (Andover CT)
출원인 / 주소
  • Loctite Corporation (Newington CT 02)
인용정보 피인용 횟수 : 99  인용 특허 : 9

초록

Compositions of (a) a silicone resin characterized by an intermediate region free of acrylic groups, at least 150 siloxane units long, and terminal acrylic groups; (b) at least 10% of a fumed silica filler; and (c) a photoinitiator, can be cured by UV irradiation to tough elastomeric materials usefu

대표청구항

A silicone composition curable by UV irradiation to an elastomer comprising: (a) At least 56% by weight of a silicone resin or mixture of silicone resins represented by the formula: [Figure] where R1 is H or alkyl, the R2 groups are divalent hydrocarbon or hydrocarbonoxy groups, the R3 groups are th

이 특허에 인용된 특허 (9)

  1. Lien Qcheng S. (South Windsor CT) Nakos Steven T. (East Hartford CT), Dual curing silicone, method of preparing same and dielectric soft-gel compositions thereof.
  2. Sato Yasuhiko (Annaka JPX) Inomata Hiroshi (Annaka JPX) Okinoshima Hiroshige (Annaka JPX), Method for preparing cured rubbery products of organopoly-siloxanes.
  3. Sato Yasuhiko (Annaka JPX) Inomata Hiroshi (Annaka JPX), Photocurable organopolysiloxane compositions.
  4. Lien Samuel Q. S. (South Windsor CT now by change of name from Qcheng S. Lien) Nakos Steven T. (East Hartford CT), Polymers with graft a 상세보기
  • Lin Samuel Q. S. (South Windsor CT), Polyphotoinitiators and compositions thereof.
  • Cully Maryann (Croton-on-Hudson NY) Pines Arthur N. (Katonah NY) Metzler Richard B. (Ossining NY) Babian Gunther W. (Peekskill NY), Radiation curable silicone release compositions.
  • Eldred Roger J. (Detroit MI), Radiation cured and monomer modified silicon elastomers.
  • Humke Byron M. (Glenshaw PA) Gruber Gerald W. (Sewickley PA) Dowbenko Rostyslaw (Gibsonia PA) Friedlander Charles B. (Glenshaw PA), Radiation-curable coating compositions containing amide acrylate compounds.
  • Eckberg Richard P. (Round Lake NY), Ultraviolet light curable acrylic functional silicone compositions.
  • 이 특허를 인용한 특허 (99)

    1. Tensor Paul M., Ambient UVL-curable elastomer mold apparatus.
    2. Brauker, James H.; Boock, Robert; Rixman, Monica; Simpson, Peter C.; Brister, Mark; Shults, Mark, Analyte sensor.
    3. Brauker, James H.; Kamath, Apurv U., Analyte sensor.
    4. Brauker, James H.; Kamath, Apurv Ullas, Analyte sensor.
    5. Brauker, James H.; Kamath, Apurv Ullas, Analyte sensor.
    6. Brauker, James H.; Simpson, Peter C.; Boock, Robert; Rixman, Monica; Brister, Mark, Analyte sensor.
    7. Brister, Mark C.; Petisce, James R.; Woo, Kum Ming; Saint, Sean; Nolting, John, Analyte sensor.
    8. Brister, Mark C.; Petisce, James R.; Woo, Kum Ming; Saint, Sean; Nolting, John, Analyte sensor.
    9. Brister, Mark; Masterson, Steve; Saint, Sean; Simpson, Peter; Wightlin, Matthew D.; Petisce, James R.; Pryor, Jack; Swanson, Vance; Nolting, John, Analyte sensor.
    10. Brister, Mark; Masterson, Steve; Saint, Sean; Simpson, Peter; Wightlin, Matthew D.; Petisce, James R.; Pryor, Jack; Swanson, Vance; Nolting, John, Analyte sensor.
    11. Brister, Mark; Kline, Daniel S.; Masterson, Steve; Saint, Sean, Analyte sensor inserter system.
    12. Simpson, Peter C.; Boock, Robert J.; Petisce, James R.; Brister, Mark C.; Rixman, Monica A.; Woo, Kum Ming; Nguyen, Lisa; Brunner, Seth R.; Chee, Arthur; Nicholas, Melissa A.; Wightlin, Matthew D.; Pryor, Jack; Markovic, Dubravka, Analyte sensors having a signal-to-noise ratio substantially unaffected by non-constant noise.
    13. Simpson, Peter C.; Boock, Robert; Petisce, James R.; Brister, Mark; Rixman, Monica A.; Woo, Kum Ming; Nguyen, Lisa; Brunner, Seth R.; Chee, Arthur; Nicholas, Melissa A.; Wightlin, Matthew; Pryor, Jack; Markovic, Dubravka, Analyte sensors having a signal-to-noise ratio substantially unaffected by non-constant noise.
    14. Kamath, Apurv Ullas; Simpson, Peter C.; Brauker, James H.; Goode, Jr., Paul V., Calibration techniques for a continuous analyte sensor.
    15. Kamath, Apurv Ullas; Simpson, Peter C.; Brauker, James H.; Goode, Jr., Paul V., Calibration techniques for a continuous analyte sensor.
    16. Kamath, Apurv Ullas; Simpson, Peter C.; Brauker, James H.; Goode, Jr., Paul V., Calibration techniques for a continuous analyte sensor.
    17. Petisce, James R.; Woo, Kum Ming; Ha, Victor; Nicholas, Melissa; Boock, Robert, Cellulosic-based interference domain for an analyte sensor.
    18. Petisce, James R.; Woo, Kum Ming; Ha, Victor; Nicholas, Melissa, Cellulosic-based resistance domain for an analyte sensor.
    19. Tremblay, Scott R.; Levandoski, Michael P.; McGrath, Sean P., Compositions and processes for assembling appliances.
    20. Burger Christa (Burghausen DEX) Mller Johann (Burghausen DEX) Bosch Erhard (Burghausen DEX), Compositions which can be crosslinked by radiation to form elastomers.
    21. Kobayashi, Jun; Yoshikawa, Hitoshi; Takahashi, Wataru, Conductive crosslinked body and production process thereof, and transducer, flexible wiring board and electromagnetic wave shield using the conductive crosslinked body.
    22. Levandoski, Michael P.; DeCato, Alfred A., Curable silicone compositions having enhanced cure-through-volume.
    23. Takei, Yoshihito; Ishikawa, Kazunori; Saiki, Takeaki, Curable silicone resin composition.
    24. Sarkar, Soumya; Kendhale, Amol Murlidharrao; Eiji, Tanigawa, Curable, dual cure, one part silicone composition.
    25. Chambers,Brian R.; Hannah,Steven L.; Raleigh, Jr.,Ronald J., Dual-cure silicone compounds exhibiting elastomeric properties.
    26. Chu,Hsien Kun, Fast moisture curing and UV-moisture dual curing compositions.
    27. Bennington Lester D., Flame-retardant UV and UV/moisture curable silicone compositions.
    28. Bennington Lester D., Flame-retardant UV curable silicone compositions.
    29. Tsai, George, Injector for intraocular lens system.
    30. Flinchbaugh David E. (4855 Big Oaks La. Orlando FL 32806), Low pressure medical silicone gasket.
    31. Araki, Tadashi; Sakamoto, Takafumi, Method for preparing an organopolysiloxane compound and curing composition using the compound.
    32. Vo-Dinh, Tuan; Bourke, Jr., Frederic A., Methods and systems for treating cell proliferation disorders using plasmonics enhanced photospectral therapy (PEPST) and exciton-plasmon enhanced phototherapy (EPEP).
    33. Lim,Thomas F.; Bachon,Thomas; Beuer,Bernd; Klein,Johann, Mixed alkoxysilyl functional polymers.
    34. Bourke, Jr., Frederic A.; Walder, Harold, Modulating a biological activity of a target structure by energy generation in-situ within a medium.
    35. Ozai, Toshiyuki; Goto, Tomoyuki; Inoue, Yoshifumi, Organopolysiloxane composition.
    36. Pinto, Olivier; Alric, Jérôme; Thivillon, Maud, Photocrosslinkable composition comprising a polyorganosiloxane.
    37. Arai Masatoshi (Annaka JPX) Fujioka Kazutoshi (Annaka JPX) Satou Masaharu (Takasaki JPX), Photocurable organopolysiloxane composition.
    38. Sakamoto, Takafumi; Araki, Tadashi; Ikeno, Masayuki, Photocurable organopolysiloxane composition.
    39. Hodd, Kenneth A.; Norrby, Sverker, Photocurable siloxane polymers.
    40. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    41. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    42. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    43. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    44. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    45. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    46. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    47. Bourke, Jr., Frederic Avery; Vo-Dinh, Tuan, Plasmonic assisted systems and methods for interior energy-activation from an exterior source.
    48. Chu, Hsien-Kun, Resin-reinforced UV, moisture and UV/moisture dual curable silicone compositions.
    49. Belek Ronald E., Shielded radiation assembly.
    50. Boock, Robert J.; Rixman, Monica A., Silicone based membranes for use in implantable glucose sensors.
    51. Boock, Robert J.; Swinney, Monica Rixman, Silicone based membranes for use in implantable glucose sensors.
    52. Boock, Robert; Rixman, Monica, Silicone based membranes for use in implantable glucose sensors.
    53. Boock, Robert; Rixman, Monica, Silicone based membranes for use in implantable glucose sensors.
    54. Boock, Robert; Rixman, Monica, Silicone based membranes for use in implantable glucose sensors.
    55. Fujisawa, Tsunetoshi, Silicone gel composition.
    56. Melancon Kurt C. (St. Paul MN) Driscoll William A. (Woodbury MN), Silicone/acrylate vibration dampers.
    57. Allen, John; Hohenwarter, Jr., Thomas E.; Lersch, Peter; Moore, Ernest D.; Paez, Angela Dawn; Simpelkamp, J?rg; Smith, Steven Paul, Siloxane-containing compositions curable by radiation to silicone elastomers.
    58. Faust Rudolf ; Hadjikyriacou Savvas E. ; Suzuki Toshio, Silyl-functional initiator for living cationic polymerization.
    59. Kennedy Joseph P. (Akron OH) Omura Naoki (Akron OH) Lubnin Alexander (Fairlawn OH), Star polymers having a well-defined siloxane core and multiple polyisobutylene arms and a method for the synthesis there.
    60. Bourke, Jr., Frederic A., Systems and methods for interior energy-activation from an exterior source.
    61. Bourke, Jr., Frederic A., Systems and methods for interior energy-activation from an exterior source.
    62. Bourke, Jr., Frederic A., Systems and methods for interior energy-activation from an exterior source.
    63. Bourke, Jr., Frederic A., Systems and methods for interior energy-activation from an exterior source.
    64. Bourke, Jr., Frederic A., Systems and methods for interior energy-activation from an exterior source.
    65. Bourke, Jr., Frederic A., Systems and methods for interior energy-activation from an exterior source.
    66. Brauker, James H.; Carr-Brendel, Victoria; Brister, Mark, Transcutaneous analyte sensor.
    67. Brister, Mark C.; Masterson, Steve; Dobbles, John Michael; Mensinger, Michael Robert; Saint, Sean; Kamath, Apurv Ullas, Transcutaneous analyte sensor.
    68. Brister, Mark C.; Neale, Paul V.; Brauker, James H., Transcutaneous analyte sensor.
    69. Brister, Mark; Masterson, Steve; Dobbles, J. Michael; Mensinger, Michael Robert; Saint, Sean; Kamath, Apurv Ullas, Transcutaneous analyte sensor.
    70. Brister, Mark; Neale, Paul V.; Brauker, James, Transcutaneous analyte sensor.
    71. Brister, Mark; Neale, Paul V.; Brauker, James, Transcutaneous analyte sensor.
    72. Brister, Mark; Neale, Paul V.; Brauker, James H., Transcutaneous analyte sensor.
    73. Brister, Mark; Neale, Paul V.; Brauker, James H., Transcutaneous analyte sensor.
    74. Brister, Mark; Neale, Paul V.; Brauker, James H.; Thrower, James Patrick, Transcutaneous analyte sensor.
    75. Brister, Mark; Neale, Paul V.; Brauker, James; Thrower, James Patrick, Transcutaneous analyte sensor.
    76. Brister, Mark; Neale, Paul V.; Pestisce, James R.; Thrower, James Patrick; Saint, Sean; Nolting, John, Transcutaneous analyte sensor.
    77. Brister, Mark; Neale, Paul V.; Petisce, James R.; Thrower, James Patrick; Saint, Sean; Nolting, John, Transcutaneous analyte sensor.
    78. Brister, Mark; Neale, Paul V.; Saint, Sean; Petisce, James R.; McGee, Thomas F.; Codd, Daniel Shawn; Petersen, David Michael; Kline, Daniel S., Transcutaneous analyte sensor.
    79. Brister, Mark; Neale, Paul V.; Saint, Sean; Petisce, James R.; Thrower, James Patrick; Kamath, Apurv Ullas; Kline, Daniel S.; Guerre, John A.; Codd, Daniel Shawn; McGee, Thomas F.; Petersen, David Michael, Transcutaneous analyte sensor.
    80. Brister, Mark; Neale, Paul V.; Saint, Sean; Petisce, James R.; Thrower, James Patrick; Kamath, Apurv Ullas; Kline, Daniel S.; Guerre, John A.; Codd, Daniel Shawn; McGee, Thomas F.; Petersen, David Michael, Transcutaneous analyte sensor.
    81. Brister, Mark; Neale, Paul V.; Saint, Sean; Thrower, James Patrick; McGee, Thomas F.; Codd, Daniel Shawn; Petersen, David Michael; Kline, Daniel S., Transcutaneous analyte sensor.
    82. Brister, Mark; Neale, Paul V.; Saint, Sean; Thrower, James Patrick; McGee, Thomas F.; Codd, Daniel Shawn; Petersen, David Michael; Kline, Daniel S., Transcutaneous analyte sensor.
    83. Brister, Mark; Neale, Paul V.; Saint, Sean; Thrower, James Patrick; McGee, Thomas F.; Codd, Daniel Shawn; Petersen, David Michael; Kline, Daniel S., Transcutaneous analyte sensor.
    84. Brister, Mark; Neale, Paul V.; Simpson, Peter C.; Brauker, James H.; Thrower, James Patrick; Shults, Mark; Rhodes, Rathbun K.; Goode, Jr., Paul V.; Holmquist, Arnold L., Transcutaneous analyte sensor.
    85. Brister, Mark; Neale, Paul V.; Simpson, Peter C.; Brauker, James H.; Thrower, James Patrick; Shults, Mark; Rhodes, Rathburn K.; Goode, Jr., Paul V.; Holmquist, Arnold L., Transcutaneous analyte sensor.
    86. Brister, Mark; Neale, Paul V.; Thrower, James Patrick; Kline, Daniel S.; Codd, Daniel Shawn; Saint, Sean; Masterson, Steve, Transcutaneous analyte sensor.
    87. Brister, Mark; Neale, Paul V.; Thrower, James Patrick; Kline, Daniel S.; Codd, Daniel Shawn; Saint, Sean; Masterson, Steve, Transcutaneous analyte sensor.
    88. Brister, Mark; Petisce, James R.; Saint, Sean; Woo, Kum Ming; Ha, Victor; Nolting, John; Simpson, Peter C.; Brauker, James, Transcutaneous analyte sensor.
    89. Brister, Mark; Petisce, James R.; Saint, Sean; Woo, Kum Ming; Ha, Victor; Nolting, John; Simpson, Peter C.; Brauker, James, Transcutaneous analyte sensor.
    90. Brister, Mark; Simpson, Peter C.; Swanson, Vance; Kamath, Apurv Ullas; Saint, Sean; Petisce, James R.; Woo, Kum Ming, Transcutaneous analyte sensor.
    91. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    92. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    93. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    94. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    95. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    96. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    97. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    98. Kamath, Apurv Ullas; Brauker, James; Dobbles, J. Michael, Transcutaneous analyte sensor.
    99. Issari,Bahram, UV and UV/moisture dual curable compositions with improved cure through volume.
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