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Self-cooling beverage and food container using fullerene nanotubes 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F25D-003/08
출원번호 US-0008756 (1998-01-19)
발명자 / 주소
  • Anthony Michael M.
대리인 / 주소
    Oltman,Flynn & Kubler
인용정보 피인용 횟수 : 42  인용 특허 : 2

초록

The apparatus includes a container such as a metal or plastic can containing a product and having a conventional unified bottom and side container wall terminating in an upper sealing flange. A refrigerant receptacle is provided including a receptacle cup having a cup wall. The cup wall has an expan

대표청구항

[ I claim as my invention:] [1.] A rapid refrigeration apparatus comprising:a container means having a container upper end, a container wall with a container opening in said container upper end bordered by a container rim, said container having liquid container contents;a receptacle means extending

이 특허에 인용된 특허 (2)

  1. Koruga Djuro L. (2525 N. Los Altos ; Suite #312 Tucson AZ 85705), Method of containing radiation using fullerene molecules.
  2. Hage Robert M.,GBX ; Anthony Michael, Refrigerating apparatus and method.

이 특허를 인용한 특허 (42)

  1. Phillips, Evan I., Can end.
  2. Phillips, Evan I., Closure for can.
  3. Phillips, Evan Ira, Container.
  4. Phillips, Evan Ira, Container closure system.
  5. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Device selection circuitry constructed with nanotube ribbon technology.
  6. Segal,Brent M.; Brock,Darren K.; Rueckes,Thomas, Device selection circuitry constructed with nanotube technology.
  7. Jaiprakash,Venkatachalam C.; Ward,Jonathan W.; Rueckes,Thomas; Segal,Brent M., Devices having horizontally-disposed nanofabric articles and methods of making the same.
  8. Jaiprakash,Venkatachalam C.; Ward,Jonathan W.; Rueckes,Thomas; Segal,Brent M., Devices having vertically-disposed nanofabric articles and methods of making the same.
  9. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Electromechanical memory array using nanotube ribbons and method for making same.
  10. Segal,Brent M.; Brock,Darren K.; Rueckes,Thomas, Electromechanical memory array using nanotube ribbons and method for making same.
  11. Segal,Brent M.; Brock,Darren K.; Rueckes,Thomas, Electromechanical memory array using nanotube ribbons and method for making same.
  12. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Electromechanical memory having cell selection circuitry constructed with nanotube technology.
  13. Rueckes, Thomas; Segal, Brent M.; Bertin, Claude L., Electromechanical three-trace junction devices.
  14. Rueckes, Thomas; Segal, Brent M.; Brock, Darren K., Electromechanical three-trace junction devices.
  15. Rueckes,Thomas; Segal,Brent M.; Bertin,Claude, Electromechanical three-trace junction devices.
  16. Garrett Michael E.,GBX, Fluid chilling apparatus.
  17. Goodwin, Diana, Graded pressure apparatus for cooling food and beverages and methods of making the same.
  18. Gogotsi, Yury; Libera, Joseph A.; Yoshimura, Masahiro, Graphitic polyhederal crystals in the form of nanotubes, whiskers and nanorods, methods for their production and uses thereof.
  19. Jeuch,Pierre, Heat exchanger.
  20. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Hybrid circuit having nanotube electromechanical memory.
  21. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Hybrid circuit having nanotube electromechanical memory.
  22. Segal,Brent M.; Brock,Darren K.; Rueckes,Thomas, Hybrid circuit having nanotube electromechanical memory.
  23. Kolb, Kenneth W., Insertable thermotic module for self-heating can.
  24. Kolb,Kenneth W., Insertable thermotic module for self-heating can.
  25. Kolb,Kenneth W., Insertable thermotic module for self-heating cans.
  26. Jeuch,Pierre, Liquid/gas state separating device.
  27. Jeuch, Pierre, Method for making a self-refrigerating drink package and equipment therefor.
  28. Ward, Jonathan W.; Rueckes, Thomas; Segal, Brent M., Methods of making carbon nanotube films, layers, fabrics, ribbons, elements and articles.
  29. Rueckes, Thomas; Segal, Brent M.; Brock, Darren K., Methods of making electromechanical three-trace junction devices.
  30. Rueckes, Thomas; Segal, Brent M.; Brock, Darren K., Methods of making electromechanical three-trace junction devices.
  31. Rueckes, Thomas; Segal, Brent M., Methods of nanotube films and articles.
  32. Rueckes,Thomas; Segal,Brent M., Methods of nanotube films and articles.
  33. Rueckes,Thomas; Segal,Brent M., Methods of nanotubes films and articles.
  34. Ward,Jonathan W.; Rueckes,Thomas; Segal,Brent M., Methods of using pre-formed nanotubes to make carbon nanotube films, layers, fabrics, ribbons, elements and articles.
  35. Ward, Jonathan W.; Rueckes, Thomas; Segal, Brent M., Methods of using thin metal layers to make carbon nanotube films, layers, fabrics, ribbons, elements and articles.
  36. Rueckes, Thomas; Segal, Brent M., Nanotube films and articles.
  37. Rueckes, Thomas; Segal, Brent M., Nanotube films and articles.
  38. Rueckes, Thomas; Segal, Brent M., Nanotube films and articles.
  39. Zhang, Zhiqiang; Lockwood, Frances E., Preparation of stable nanotube dispersions in liquids.
  40. Anthony Michael M., Self-cooling container with internal beverage vessel having a vessel wall with reversible wall bulges.
  41. Jeuch, Pierre, Self-cooling package for beverages.
  42. Chopra,Nasreen G., System and method for developing production nano-material.
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