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Viscoelastic foam layer and composition 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C08G-018/28
출원번호 US-0576033 (2004-10-19)
등록번호 US-8975306 (2015-03-10)
국제출원번호 PCT/US2004/034596 (2004-10-19)
§371/§102 date 20060414 (20060414)
국제공개번호 WO2005/042611 (2005-05-12)
발명자 / 주소
  • Milliren, Charles M.
출원인 / 주소
  • Intellectual Property Holdings, LLC
대리인 / 주소
    Pearne & Gordon LLP
인용정보 피인용 횟수 : 1  인용 특허 : 80

초록

A viscoelastic foam system is provided having an amine-based polyoxypropylene extended polyol to impart strength, recoverability and endurance to the foam, and an appropriately selected non-amine-based polyol to provide flexibility to the foam. The combination of amine-based propylene oxide extended

대표청구항

1. A viscoelastic foam made from a Part A composition and a Part B composition, the Part A composition comprising 20-30 weight percent isocyanate (NCO) and the Part B composition consisting of: (i) 50-80 parts by weight of propylene oxide-extended amine-based polyether polyol having substantially no

이 특허에 인용된 특허 (80)

  1. Maeda Takashi (Wako JPX) Yamashita Tsuyoshi (Wako JPX) Nakamura Mitsuo (Wako JPX) Suzuki Hiroshi (Tokyo JPX) Fujii Hideo (Saitama JPX), Automotive sound-proof materials and damping materials therefor.
  2. Bocks Paul J. (Viersen DT) Grammel Jurgen (Cologne DT) Neumaier Hermann (Leichlingen DT), Composite materials and processes for their production.
  3. Monaci Roberto,ITX, Composite polymeric material having high resistance to impact energy.
  4. Monaci, Roberto, Composite polymeric material having high resistance to impact energy.
  5. Sampara Agus ; Peeler Cal ; Bowman Kerry,CAX ; Jewell Richard,CAX, Energy absorbing elastomers.
  6. Hiles Maurice A. F. (Welwyn GB2), Energy absorbing elastomers and composites.
  7. Kelly David J. ; Niederoest Beat, Energy absorbing foams.
  8. Michael F. Hnatow ; Vincenzo A. Bonaddio ; Chiu Y. Chan ; Robert Mohr, Energy absorbing foams.
  9. Kerman Michael L. (Romeo MI), Energy absorbing panel.
  10. Hiles Maurice (234 Silver Valley Blvd. Munroe Falls OH 44262), Energy absorbing polyurethane composite article.
  11. Lockwood Robert John (Macomb MI) Fogg Brian (Rochester Hills MI), Energy absorbing polyurethane foams.
  12. Everitt Lori R. ; Harrison Richard P. ; Onufrak Vechelle R., Energy absorbing, water blown, rigid polyurethane foam.
  13. Rossio Richard C. (Troy MI) Easterle Mark A. (Rochester MI) Jackson Michael L. (Allen Park MI), Energy absorbing, water blown, rigid polyurethane foam.
  14. Rossio Richard C. (Troy MI) Easterle Mark A. (Rochester MI) Jackson Michael L. (Allen Park MI), Energy absorbing, water blown, rigid polyurethane foam.
  15. Rossio Richard C. (Troy MI) Easterle Mark A. (Rochester MI) Jackson Michael L. (Allen Park MI), Energy absorbing, water blown, rigid polyurethane foam.
  16. Rossio Richard C. (Troy MI) Easterle Mark A. (Rochester MI) Jackson Michael L. (Allen Park MI), Energy absorbing, water blown, rigid polyurethane foam.
  17. Rossio Richard C. (Troy MI) Easterle Mark A. (Rochester MI) Jackson Michael L. (Allen Park MI), Energy absorbing, water blown, rigid polyurethane foam.
  18. Austin Thomas H. (Austin TX), Energy management polyether polyurethane foam.
  19. Perry Mark J. ; Lambach James L. ; Critchfield Frank E., Energy management polyurethane rigid foams with high recovery.
  20. Hostettler Fritz (Whitehall PA), Energy-attenuating polyurethanes.
  21. Milliren Charles M. ; Madan Sanjeev ; Slack William E. ; Zibert Ronald ; Riccitelli Richard A. ; Miller William E., Flexible foams and flexible molded foams based on allophanate-modified diphenylmethane diisocyanates and processes for.
  22. Henry Mattesky, Flexible, substantially open celled polyurethane foam and method of making same.
  23. Hinz Werner (Frankenthal DEX) Adams Stefan (Ludwigshafen DEX) Koehler Ulrich (Mannheim DEX) Maletzko Christian (Mannheim DEX) Vorspohl Klaus (Ludwigshafen DEX) Zschiesche Ruth (Mannheim DEX), Highly reactive polyoxyalkylene-polyols containing tertiary amino groups in bonded form, their preparation, and their us.
  24. Flanagan ; Kirby E. L., Impact energy-absorbing urethane foam.
  25. Milliren Charles M. (Coraopolis PA), Isocyanate reactive mixture and the use thereof in the manufacture of flexible polyurethane foams.
  26. Milliren Charles M. (Coraopolis PA), Isocyanate reactive mixture and the use thereof in the manufacture of flexible polyurethane foams.
  27. Haley, David L.; Wishneski, Tedd W., Latex-like flexible polyurethane foam and process for making same.
  28. Flanagan Kirby E. L. (Rochester NH), Low density energy management urethane foam.
  29. Waddington, Simon; Sonney, Jean-Marie L.; Elwell, Richard J.; Casati, Francois M.; Storione, Antoine, Low emission polyurethane polymers made with autocatalytic polyols.
  30. Tursi, Jr., Daniel V.; Chan, Chiu Y.; Niederoest, Beat, Low energy-loss, high firmness, temperature sensitive polyurethane foams.
  31. Takashima, Hisato, Low impact resilience polyurethane form that contains carbon powder, and producing thereof.
  32. Nodelman, Neil H.; Steppan, David D.; Bushmire, Alan D.; Slack, William E., Low-density, water blown polyurethane foams for energy-absorbing applications.
  33. Swanson Larry Sven (2166 Sandy Shore Dr. SE. Kentwood MI 49508), Mattress with visco-elastic, temperature sensitive top layer.
  34. Nodelman Neil H. ; Steppan David D., Method for making semi-rigid energy-absorbing foam with polyurethane fillers.
  35. George B. Byma DE; Brian A. Cristea ; Richard Muhlbacher DE, Method of making a multiple foam interior trim substrate.
  36. Tiao Wen-Yu (Bethlehem PA) Tiao Chin-Sheng (Bethlehem PA), Methods for the manufacture of energy-attenuating polyurethanes.
  37. Pray Edward R. (240 S. Melborn Dearborn MI 48124) Stoll John R. (19343 Lancaster Woodhaven MI 48183) Plank Peter F. (15055 Garfield Redford MI 48239), Moldable energy absorbing rigid polyurethane foams.
  38. George B. Byma DE; Brian A. Cristea ; Richard Muhlbacher DE, Multiple density interior trim substrate and method of making same.
  39. Shockey, Donald A.; Erlich, David C.; Simons, Jeffrey W., Penetration resistant fabric structures and materials.
  40. Bottger, Christian; Fels, Achim; Dorloff-Lumpe, Barbel; Baumgart, Christoph, Penetration-resistant material comprising fabric with high linear density ratio of two sets of threads.
  41. Chaffanjon Pierre G. (Tervuren BEX) Stroobants Peter F. (Ham BEX) Bleys Gerhard J. (Heverlee BEX), Polyether polyols.
  42. Gardner ; Jr. Ross (Indianapolis IN), Polymeric foam earplug.
  43. Bastin Benoit Etienne Jean-Marie Ghislain,BEX ; Boelens Mark Maria Herman Alma,BEX, Polyol combination.
  44. Patricia Ansems ; H. Craig Silvis ; Lisa S. Madenjian, Polyolefin composition with improved impact properties.
  45. Nomura Takao (Nagoya JPX) Terasaka Kunihiko (Toyota JPX) Sakata Isao (Toyota JPX), Polyurethane foam product for an impact absorber.
  46. Parks Kristen L. ; Milliren Charles M., Polyurethane foam/PVC laminate for automotive instrument panels.
  47. Stuart B. Smith, Polyurethane, foam-polyester composite structure and method.
  48. Lutter Heinz-Dieter (Neckargemuend DEX) Leppkes Reinhard (Bobenheim-Roxheim DEX) Horn Peter (Heidelberg DEX) Decker Walter (Ludwigshafen DEX) Haase Volker (Adelzhausen DEX) Hinz Werner (Frankenthal D, Preparation of flexible, soft polyurethane foams having viscoelastic, structure-borne soundproofing properties, and poly.
  49. Falke, Peter; Lutter, Heinz-Dieter; Pcolinski, Michael J., Preparation of low-density hydrophilic flexible polyurethane foams.
  50. Parfondry, Alain; Yu, Jianming, Process for making cold-setting flexible foams, polyol composition and reaction system useful therefor, foams thus obtained.
  51. Parfondry, Alain; Yu, Jianming, Process for making visco-elastic foams, polyols blend and reaction system useful therefor.
  52. Berend Eling BE, Process for preparing rigid and flexible polyurethane foams.
  53. Kuczynski Edward T. (Troy MI) Cicone Michael J. (Clinton Township MI), Process for producing a polyurethane foam.
  54. Kerman Michael L. (Romeo MI), Process for producing an energy absorbing panel.
  55. Jack R. Reese, II DE; Stanley L. Hager, Process for the in-situ production of polyol blends, the in-situ produced polyol blends, and their use in the production of viscoelastic foam.
  56. Gansen Peter (Cologne DEX) Wolfgramm Rudi (Leverkusen DEX) Wolf Klaus D. (Cologne PA DEX) Lindsey John J. (Pittsburgh PA), Process for the production of cold-setting flexible polyurethane foams with excellent damping properties.
  57. Bruchmann, Bernd; Lutter, Heinz-Dieter, Production of flexible polyurethane foams.
  58. Horn Peter (Heidelberg DEX) Jung Ludwig (Mammendorf DEX) Larbig Harald (Ludwigshafen DEX) Lebkucher Rolf (Mannheim DEX) Lehr Gerhard (Schwegenheim DEX), Production of low-fogging polyurethane foams, and specific poly-oxyalkylene-polyols which can be used for this purpose.
  59. Bernd Zaschke DE; Kirsten Schmaler DE; Peter Falke DE, Production of sound-absorbing polyurethane foams having an adhesive surface.
  60. Falke Peter,DEX ; Rotermund Inge,DEX ; Schmutzer Klaus,DEX ; Schmaler Kirsten,DEX, Production of sound-damping and energy-absorbing polyurethane foams.
  61. Bell Sandra J.,GBX ; Townend David J.,GBX, Protection of human head and body.
  62. James Scott Ewing ; Maria Maroulis ; Andrew F. Conn, Protective helmet.
  63. Platz Matthew S. ; Chen Tongqian ; Kagan Shashi S. ; Pereira Helena M.,FRX, Psoralen sensitizers for viral inactivation.
  64. Krueger David C. (Grosse Ile MI) Christman Donald L. (Grosse Ile MI) Rothacker Andreas H. (Dearborn Heights MI) Lee Thomas B. (Southgate MI), Rigid polyurethane foams containing lithium salts for energy absorbing applications.
  65. Krueger David C. (Grosse Ile MI) Christman Donald L. (Grosse Ile MI) Rothacker Andreas H. (Dearborn Heights MI) Lee Thomas B. (Southgate MI), Rigid polyurethane foams containing lithium salts for energy absorbing applications.
  66. Krueger David C. (Grosse Ile MI) Christman Donald L. (Grosse Ile MI) Rothacker Andreas H. (Dearborn Heights MI) Lee Thomas B. (Southgate MI), Rigid polyurethane foams containing lithium salts for energy absorbing applications.
  67. Khanna Som N. (Guelph CAX), Semi-flexible shock-absorbing polyurethane foam prepared from a triol, a compound having a single reactive hydrogen, an.
  68. Tozune Sigeru (Sano JPX) Yamazaki Shizuo (Oora JPX) Komori Ryuichi (Koga JPX) Ishii Masashi (Wako JPX) Sakaguchi Yoshio (Wako JPX) Oda Tetsuya (Wako JPX), Shock-absorbing polyurethane foam and production process thereof.
  69. Nishida Kiyomi,JPX ; Takahashi Shuichi,JPX ; Sasaoka Kunio,JPX ; Obata Masashi,JPX, Soft polyurethane foam, method of producing the same and vehicle interior member using the same.
  70. Milliren Charles M. (Coraopolis PA) Gricar James R. (Washington PA), System for the production of toluene diisocyanate based flexible foams and the flexible foams produced therefrom.
  71. Milliren Charles M. (Coraopolis PA) Gricar James R. (Washington PA), System for the production of toluene diisocyanate based flexible foams and the flexible foams produced therefrom.
  72. Wood Louis L. (Rockville MD), Urethane foams having low resiliency.
  73. Christoph Kittel DE; Gerhard Burak DE; Carsten Kliwer DE; Cornelia Peters DE, Viscoelastic damping foam having an adhesive surface.
  74. Milliren,Charles M., Viscoelastic foam layer and composition.
  75. Stanley L. Hager ; Veril C. Jividen ; Sebastien P. Triouleyre FR; Faouzi Joulak FR, Viscoelastic polyurethane foams.
  76. Milliren Charles M. (Coraopolis PA) Zibert Ronald (Burgettstown PA), Water blown, energy absorbing foams.
  77. Milliren Charles M. (Coraopolis PA) Zibert Ronald (Burgettstown PA), Water blown, energy absorbing foams.
  78. Milliren Charles M. (Coraopolis PA) Zibert Ronald (Burgettstown PA), Water blown, energy absorbing foams.
  79. Milliren Charles M. (Coraopolis PA) Zibert Ronald (Burgettstown PA), Water blown, energy absorbing foams.
  80. Nodelman Neil H. ; Steppan David D. ; Davolio Mark A. ; Sounik David F. ; Bushmire Alan D., Water blown, energy absorbing foams.

이 특허를 인용한 특허 (1)

  1. McVey, Susan B.; Hager, Stanley L.; Moore, Micah N.; Reese, Jack R., Polyol compositions, a process for the production of these polyol compositions, and their use in the production of open celled polyurethane foams having high airflow.
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