MLchartDataset catalogue

Patent · US6116257A · A · US

Micromotors, linear motors, micropumps, methods of using the same, microactuators, methods of controlling flow properties of fluids, and apparatuses for controlling flow properties of fluids

(11) Publication number
US6116257A
(21) Application number
US-2072598-A
(22) Filing date
1998-02-09
(30) Priority date
1997-03-28
(43) Publication date
2000-09-12
(45) Date of grant
2000-09-12
(52) CPC
  • F15C Fluid-circuit elements predominantly used for computing or control purposes: 5/00, 1/04
  • F15B Systems acting by means of fluids in general; fluid-pressure actuators, e.g. servomotors; details of fluid-pressure systems, not otherwise provided for: 21/065
  • F16K Valves; taps; cocks; actuating-floats; devices for venting or aerating {}: 2099/0094, 99/0001, 99/0007, 99/0013, 99/0042, 99/0057
  • H01J Electric discharge tubes or discharge lamps: 41/18
  • H02N Electric machines not otherwise provided for: 11/006
  • Y10S Technical subjects covered by former uspc cross-reference art collections [xracs] and digests: 137/909
  • Y10T Technical subjects covered by former us classification: 137/0318, 137/2082, 137/2191, 137/85978
(73) Assignee
NEW TECHNOLOGY MANAGEMENT CO L
(54) Title
Micromotors, linear motors, micropumps, methods of using the same, microactuators, methods of controlling flow properties of fluids, and apparatuses for controlling flow properties of fluids
(57) Abstract

The present invention provides a use of an electro-sensitive movable fluid, that is, a micromotor, a linear motor, a micropump and a method of using the micropump, a microactuator, and an apparatus which these devices are applied to, and a method and an apparatus of controlling flow properties of a fluid.

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Claims (10)

  1. A method of controlling flow properties of a moving fluid, comprising the steps of arranging in a fluid at least one pair of electrodes capable of forming a non-uniform electric field in the fluid, applying a voltage between the electrodes to produce a jet flow of the fluid between the electrodes and in a shear direction of a flow of the fluid, and controlling flow properties of the fluid by the jet flow.
  2. The method as claimed in claim 1, wherein at least one electrode out of the pair of electrodes capable of forming a non-uniform electric field in the fluid is an uneven surface electrode.
  3. The method as claimed in claim 1, wherein at least one electrode out of the pair of electrodes capable of forming a non-uniform electric field has a non-smooth surface and the shortest distance between the non-smooth surface of the electrode and the other electrode is in the range of about 5 mm to about 20 μm.
  4. The method as claimed in claim 1, wherein the non-smooth surface electrode is a flocked electrode whose surface is flocked with a number of fibers of a fibrous material.
  5. The method as claimed in claim 4, wherein the flocked electrode is obtained by flocking a surface of a conductive material with at least one fibrous material selected from the group consisting of an organic fibrous material, an inorganic fibrous material and a metallic fibrous material, and the other electrode is a conductive material electrode.
  6. The method as claimed in claim 4, wherein the fibers for forming the flocked electrode have a mean length of about 10 mm to about 50 μm and a fineness of about 0.1 to about 20 deniers, and the number of the fibers for the flocking is about 1,000 to about 50,000 based on 1 cm 2.
  7. The method as claimed in claim 1, wherein the fluid has a conductivity of not more than about 5×10 -6 S·m -1 at its working temperature.
  8. An apparatus for controlling flow properties of a moving fluid, said apparatus comprising a fluid having therein at least one pair of electrodes capable of forming a non-uniform electric field, said electrodes being arranged in such manner that a voltage can be applied between the electrodes, and a gap to be filled with the fluid is formed between the electrodes such that a jet flow of fluid is produced between the electrodes and in a shear direction of fluid flow.
  9. The apparatus for controlling flow properties of a fluid as claimed in claim 8, wherein one electrode out of the pair of electrodes capable of forming a non-uniform electric field is a flocked electrode whose surface is flocked with fibers of a fibrous material.
  10. The apparatus for controlling flow properties of a fluid as claimed in claim 9, wherein the relative positional relation between the flocked electrode and the other electrode is fixed, and the fluid flows between the electrodes.

Citations (7)

  • EP0695025A2
  • EP0787792A1
  • GB2118741A
  • SU630617A1
  • US3395720A
  • US3599428A
  • US4532853A
Record as JSON
{
  "publication_number": "US6116257A",
  "country": "US",
  "kind": "A",
  "title": "Micromotors, linear motors, micropumps, methods of using the same, microactuators, methods of controlling flow properties of fluids, and apparatuses for controlling flow properties of fluids",
  "abstract": "The present invention provides a use of an electro-sensitive movable fluid, that is, a micromotor, a linear motor, a micropump and a method of using the micropump, a microactuator, and an apparatus which these devices are applied to, and a method and an apparatus of controlling flow properties of a fluid.",
  "claims": [
    "1. A method of controlling flow properties of a moving fluid, comprising the steps of arranging in a fluid at least one pair of electrodes capable of forming a non-uniform electric field in the fluid, applying a voltage between the electrodes to produce a jet flow of the fluid between the electrodes and in a shear direction of a flow of the fluid, and controlling flow properties of the fluid by the jet flow.",
    "2. The method as claimed in claim 1, wherein at least one electrode out of the pair of electrodes capable of forming a non-uniform electric field in the fluid is an uneven surface electrode.",
    "3. The method as claimed in claim 1, wherein at least one electrode out of the pair of electrodes capable of forming a non-uniform electric field has a non-smooth surface and the shortest distance between the non-smooth surface of the electrode and the other electrode is in the range of about 5 mm to about 20 μm.",
    "4. The method as claimed in claim 1, wherein the non-smooth surface electrode is a flocked electrode whose surface is flocked with a number of fibers of a fibrous material.",
    "5. The method as claimed in claim 4, wherein the flocked electrode is obtained by flocking a surface of a conductive material with at least one fibrous material selected from the group consisting of an organic fibrous material, an inorganic fibrous material and a metallic fibrous material, and the other electrode is a conductive material electrode.",
    "6. The method as claimed in claim 4, wherein the fibers for forming the flocked electrode have a mean length of about 10 mm to about 50 μm and a fineness of about 0.1 to about 20 deniers, and the number of the fibers for the flocking is about 1,000 to about 50,000 based on 1 cm 2.",
    "7. The method as claimed in claim 1, wherein the fluid has a conductivity of not more than about 5×10 -6 S·m -1 at its working temperature.",
    "8. An apparatus for controlling flow properties of a moving fluid, said apparatus comprising a fluid having therein at least one pair of electrodes capable of forming a non-uniform electric field, said electrodes being arranged in such manner that a voltage can be applied between the electrodes, and a gap to be filled with the fluid is formed between the electrodes such that a jet flow of fluid is produced between the electrodes and in a shear direction of fluid flow.",
    "9. The apparatus for controlling flow properties of a fluid as claimed in claim 8, wherein one electrode out of the pair of electrodes capable of forming a non-uniform electric field is a flocked electrode whose surface is flocked with fibers of a fibrous material.",
    "10. The apparatus for controlling flow properties of a fluid as claimed in claim 9, wherein the relative positional relation between the flocked electrode and the other electrode is fixed, and the fluid flows between the electrodes."
  ],
  "cpc": [
    "F15C 5/00",
    "F15B 21/065",
    "F15C 1/04",
    "F16K 2099/0094",
    "F16K 99/0001",
    "F16K 99/0007",
    "F16K 99/0013",
    "F16K 99/0042",
    "F16K 99/0057",
    "H01J 41/18",
    "H02N 11/006",
    "Y10S 137/909",
    "Y10T 137/0318",
    "Y10T 137/2082",
    "Y10T 137/2191",
    "Y10T 137/85978"
  ],
  "assignees": [
    "NEW TECHNOLOGY MANAGEMENT CO L"
  ],
  "filing_date": "1998-02-09",
  "publication_date": "2000-09-12",
  "grant_date": "2000-09-12",
  "priority_date": "1997-03-28",
  "application_number": "US-2072598-A",
  "family_id": "27275244",
  "citations": [
    "EP0695025A2",
    "EP0787792A1",
    "GB2118741A",
    "SU630617A1",
    "US3395720A",
    "US3599428A",
    "US4532853A"
  ]
}

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