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[미국특허] Method and apparatus for separating particulate from a flowing fluid 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C02F-001/36
출원번호 US-0613772 (1996-02-28)
발명자 / 주소
  • Dickinson Stuart C. (Bristol RI) Kuklinski Robert (Portsmouth RI)
출원인 / 주소
  • The United States of America as represented by the Secretary of the Navy (Washington DC 06)
인용정보 피인용 횟수 : 56  인용 특허 : 10

초록

Apparatus and methods for filtering particulate matter from a fluid traveling proximate a surface containing a port. First and second ultrasonic wave generators produce superposed ultrasonic waves to define a composite wave pattern in a region of the fluid body upstream of the port. Nodes and antino

대표청구항

A method for filtering particulate matter of a preselected size and density from fluid entering a port in a surface in which the surface and fluid undergo relative motion that establishes a flow boundary spaced from the surface and between a first fluid flow portion contiguous the surface that enter

이 특허에 인용된 특허 (10) 인용/피인용 타임라인 분석

  1. Bolleman Brent (4021 West 30th Avenue Vancouver ; British Columbia CAX V6S 1X4) Dunwoody A. Bruce (9571 Pickering Drive Richmond ; British Columbia CAX V7E 5A3), Acoustic liquid processing device.
  2. Feke Donald L. (Chesterland OH) Tolt Thomas L. (North Olmsted OH), Acoustically driven particle separation method and apparatus.
  3. Heyman Joseph S. (Williamsburg VA), Acoustophoresis separation method.
  4. Kuhn, Martin C.; Zeitz, Vernon, Apparatus for ultrasonic processing of materials.
  5. Schram Cornelius J. (Pavenham GB2), Manipulating means utilizing ultrasonic wave energy for use with particulate material.
  6. Walter Bruno H. (North Vancouver CAX), Method and apparatus for generating high energy acoustic pulses.
  7. Szonntagh Eugene L. (Flourtown PA), Method and apparatus for sonic separation and analysis of components of a fluid mixture.
  8. Schram Cornelius J. (Bedford GB2), Particle separation.
  9. Schram Cornelius J. (Bedford GBX), Particle separation.
  10. Schram Cornelius J. (Pavenham GB2), Ultrasonic field generating device.

이 특허를 인용한 특허 (56) 인용/피인용 타임라인 분석

  1. Ward, Michael W.; Kaduchak, Gregory, Acoustic concentration of particles in fluid flow.
  2. Laugharn, Jr., James A.; Garrison, Brevard S., Apparatus and method for controlling sonic treatment.
  3. Laugharn, Jr., James A.; Garrison, Brevard S., Apparatus and methods for controlling sonic treatment.
  4. Laugharn, Jr., James A.; Garrison, Brevard S., Apparatus and methods for controlling sonic treatment.
  5. Katsutoshi Yoshinaga JP; Hironao Kasai JP, Apparatus for purification of water area.
  6. Laugharn, Jr., James A.; Garrison, Brevard S., Apparatus for sample preparation.
  7. Kaduchak, Gregory; Ward, Michael D, Apparatus for separating particles utilizing engineered acoustic contrast capture particles.
  8. Kaduchak, Gregory; Ward, Michael D., Apparatus for separating particles utilizing engineered acoustic contrast capture particles.
  9. Yu, Liping; Warner, Brian David; Trotter, Joseph T., Devices and methods for manipulating components in a fluid sample.
  10. Yu, Liping; Warner, Brian David; Trotter, Joseph T., Devices and methods for manipulating components in a fluid sample.
  11. Yu, Liping; Warner, Brian David; Trotter, Joseph T., Devices and methods for manipulating components in a fluid sample.
  12. Yu, Liping, Devices and methods for separating magnetically labeled moieties in a sample.
  13. Ward, Michael D.; Elling, John W.; Kaduchak, Gregory, Kits for systems and methods using acoustic radiation pressure.
  14. Ward, Michael D.; Stewart, Carleton C.; Kaduchak, Gregory, Medium switching systems and methods using acoustic radiation pressure.
  15. Ward, Michael D.; Stewart, Carleton C.; Kaduchak, Gregory, Medium switching systems and methods using acoustic radiation pressure.
  16. Laugharn, Jr., James A.; Garrison, Brevard S., Method and apparatus for acoustically controlling liquid solutions in microfluidic devices.
  17. Laugharn, Jr., James A.; Garrison, Brevard S., Method and apparatus for acoustically controlling liquid solutions in microfluidic devices.
  18. Laugharn, Jr., James A.; Garrison, Brevard S., Method and apparatus for acoustically controlling liquid solutions in microfluidic devices.
  19. Kuklinski Robert, Method and apparatus for producing gas bubbles in a liquid medium.
  20. Lal,Amit; Lee,Chung Hoon, Method and apparatus for separating particles by size.
  21. Laugharn, Jr., James A.; Beckett, Carl, Method and system for acoustically treating material.
  22. Laugharn, Jr., James A.; Beckett, Carl; He, Xiaoyin, Method and system for acoustically treating material.
  23. Laugharn, Jr., James A.; He, Xiaoyin, Method and system for acoustically treating material.
  24. Goddard, Gregory R; Kaduchak, Gregory; Jett, James H; Graves, Steven W, Method for non-contact particle manipulation and control of particle spacing along an axis.
  25. Goddard, Gregory Russ; Kaduchak, Gregory; Jett, James Hubert; Graves, Steven Wayde, Method for non-contact particle manipulation and control of particle spacing along an axis.
  26. Goddard, Gregory Russ; Kaduchak, Gregory; Jett, James Hubert; Graves, Steven Wayde, Method for non-contact particle manipulation and control of particle spacing along an axis.
  27. Laugharn, Jr., James A.; Garrison, Brevard S.; Yates, Douglas A., Methods and apparatus for treating samples with acoustic energy.
  28. Laugharn, Jr., James A.; Rudd, Edwin, Methods and apparatus for treating samples with acoustic energy to form particles and particulates.
  29. Kaduchak, Gregory; Stewart, Carleton; Ward, Michael, Methods and systems for controlling the flow of particles for detection.
  30. Kaduchak, Gregory; Stewart, Carleton; Ward, Michael D., Methods and systems for controlling the flow of particles for detection.
  31. Laugharn, Jr., James A.; Garrison, Brevard S.; McKnight, Robert; Yates, Douglas A., Methods and systems for modulating acoustic energy delivery.
  32. Laugharn, Jr., James A.; Garrison, Brevard S.; McKnight, Robert; Yates, Douglas A., Methods and systems for modulating acoustic energy delivery.
  33. Laugharn, Jr., James A.; Garrison, Brevard S.; Mcknight, Robert; Yates, Douglas A., Methods and systems for modulating acoustic energy delivery.
  34. Laugharn, Jr., James A.; Garrison, Brevard S.; Yates, Douglas A., Methods and systems for processing samples using acoustic energy.
  35. Ward, Michael D.; Kaduchak, Gregory, Methods for fusing cells using acoustic radiation pressure.
  36. Kaduchak, Gregory; Ward, Michael D, Particle analysis in an acoustic cytometer.
  37. Kaduchak, Gregory; Ward, Michael D, Particle analysis in an acoustic cytometer.
  38. Kaduchak, Gregory; Ward, Michael D., Particle analysis in an acoustic cytometer.
  39. Kaduchak, Gregory; Ward, Michael D., Particle analysis in an acoustic cytometer.
  40. Ward, Michael D.; Kaduchak, Gregory, Particle analyzing systems and methods using acoustic radiation pressure.
  41. Ward, Michael; Kaduchak, Gregory, Particle analyzing systems and methods using acoustic radiation pressure.
  42. Ward, Michael; Kaduchak, Gregory, Particle analyzing systems and methods using acoustic radiation pressure.
  43. Kaduchak, Gregory; Stewart, Carleton C.; Ward, Michael D., Particle imaging systems and methods using acoustic radiation pressure.
  44. Ward, Michael D.; Kaduchak, Gregory, Particle quantifying systems and methods using acoustic radiation pressure.
  45. Ward, Michael D.; Kaduchak, Gregory, Particle quantifying systems and methods using acoustic radiation pressure.
  46. Ward, Michael D.; Stewart, Carleton C.; Kaduchak, Gregory, Particle switching systems and methods using acoustic radiation pressure.
  47. Laugharn, Jr., James A., Sample holder and method for treating sample material.
  48. Yasuda Kenji,JPX ; Sakamoto Takeshi,JPX, Stirrer having ultrasonic vibrators for mixing a sample solution.
  49. Kaduchak, Gregory; Ward, Michael D., System and method for acoustic focusing hardware and implementations.
  50. Graves, Steven W.; Habbersett, Robert C., System and method for measuring particles in a sample stream of a flow cytometer using a low power laser source.
  51. Graves, Steven W.; Habbersett, Robert C., System and method for measuring particles in a sample stream of a flow cytometer using low-power laser source.
  52. Graves, Steven W.; Habbersett, Robert C., System and method for measuring particles in a sample stream of a flow cytometer using low-power laser source.
  53. Laugharn, Jr.,James A.; Garrison,Brevard S., Systems and methods for determining a state of fluidization and/or a state of mixing.
  54. Kaduchak, Gregory; Ward, Michael D., Systems and methods for separating particles utilizing engineered acoustic contrast capture particles.
  55. Kaduchak, Gregory; Goddard, Greg; Salzman, Gary; Sinha, Dipen; Martin, John C.; Kwiatkowski, Christopher; Graves, Steven, Ultrasonic analyte concentration and application in flow cytometry.
  56. Kaduchak, Gregory; Goddard, Greg; Salzman, Gary; Sinha, Dipen; Martin, John C.; Kwiatkowski, Christopher; Graves, Steven, Ultrasonic analyte concentration and application in flow cytometry.

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