WO2014142696A1 - Dispositif de force sans appuis - Google Patents

Dispositif de force sans appuis Download PDF

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Publication number
WO2014142696A1
WO2014142696A1 PCT/RU2013/000180 RU2013000180W WO2014142696A1 WO 2014142696 A1 WO2014142696 A1 WO 2014142696A1 RU 2013000180 W RU2013000180 W RU 2013000180W WO 2014142696 A1 WO2014142696 A1 WO 2014142696A1
Authority
WO
WIPO (PCT)
Prior art keywords
force
filling
different
power device
conductivity
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/RU2013/000180
Other languages
English (en)
Russian (ru)
Inventor
Геннадий Александрович ОЛЕЙНОВ
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to PCT/RU2013/000180 priority Critical patent/WO2014142696A1/fr
Publication of WO2014142696A1 publication Critical patent/WO2014142696A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02NELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
    • H02N1/00Electrostatic generators or motors using a solid moving electrostatic charge carrier
    • H02N1/06Influence generators
    • H02N1/08Influence generators with conductive charge carrier, i.e. capacitor machines

Definitions

  • the invention is intended for use in various fields of technology, for example, when lifting goods, or in transport for driving, i.e. when applied as a mover.
  • a variety of unsupported propulsors are known, based on the action of electromagnetic waves on elements of conductors with electric current.
  • the propulsion device according to the patent RU 2 093 377 C1 is known (M.C. 60 L 9/08, H 04 N 1/08), which is taken in as a prototype. It contains an electrostatic element and a generator of polarized electromagnetic pulses that interact with the element and create a predominant force in the direction of this polarization.
  • the force is created due to the influence of an alternating magnetic field on the alternating current in the conductor or, as in the prototype, the direction of the force is created by the direction of the field of the pulsed electric wave acting on the electrostatic element. This determines the complexity of such devices and the small amount of received forces.
  • the force is created due to the electric or electrostatic interaction of charges in structural elements with different potentials, which determines the large value of the received force, in comparison with electromagnetic wave interaction, and • simplification of the design.
  • the unsupported power device contains bodies with different electric potentials, i.e. actually a capacitor plugged in, for example, to a source of direct or alternating voltage, but in a special shape.
  • the special form implies the presence of at least one surface with a certain electric potential on the body, for example, on a transverse plate, i.e. located at a certain angle or perpendicular to the direction of the received force, while at a different potential there can be either a body of any shape or another plate with a transverse surface, in particular, it can be the surfaces of plates spaced or opened relative to the direction of the received force, t .e. surfaces with different potentials are not opposite.
  • a special filling between surfaces with different potentials serves to increase the strength.
  • This filling can be made in the form of a channel or a circuit directing in a certain way the electric field lines, for example, by organizing an electric current between the surfaces, which can be achieved by conducting conductive lines in the filling material or by a sufficiently high overall resistance of the filling material.
  • Filling can be made composite of different materials, for example, semiconductors with different conductivity, connected electrically, for example, through a metal, adhering to the surface with a negative polarity of the n-type semiconductor, and to the positive - the p-type semiconductor.
  • the device can be made in the form of plates with surfaces transverse to the direction of the force and, in particular, parallel to each other, to each of which, on the one hand, with respect to the direction of the force, i.e. not counter, adjoining appropriate semiconductors electrically connected to each other, for example, a conductor passing around one of the plates.
  • the drawing illustrates the invention.
  • figure 1 schematically shows one of the simplest options unsupported power device.
  • Fig.Z is a variant of the group arrangement of the plates.
  • Figure 4 options for the forms of charged bodies.
  • the unsupported power device contains at least two electrically charged surfaces 1 and 2 (Figs. 1,2,3, 4) located on bodies or plates 3 and 4.
  • the latter to create a potential difference, can be connected to a voltage source 5 (figure 1) or terminals 6 and 7 (figure 2,3).
  • surfaces 1 and 2 have a special shape. This is expressed in the fact that at least one of the surfaces 1 and 2 is located across the direction A of the support force, in particular, the interacting surfaces can be deployed in pairs in the direction of direction A (Fig. 1.3) or there is a surface 1 (Fig.
  • the parts 10 and 11 are electrically connected to each other, for example, electrically conductive insert 12 (figure 1), or simply a conductor 13 (figure 2), which bends around a plate 14 parallel to the plate 4.
  • Electrically conductive insert 12 figure 1
  • a conductor 13 figure 2
  • Elements with surfaces under different potentials can have different configurations, for example, form chains, in particular circular, with a pair the location of surfaces 1 and 2 (FIG. 3) and the enhancement of the action, for example, due to the setting of additional fillings 15 from an insulator with a sufficiently high dielectric constant.
  • a potential difference is created, for example, by connecting a voltage source 5 (Fig. 1). On these surfaces, i.e. on charges on these surfaces, forces act in the direction of the lines of force of the electric field and along the normals to surfaces 1 and 2. In general, this creates a net force in the direction A.
  • the proposed device can be made in different ways.
  • figure 2 in the form of one common plate 4 with one electric potential and several smaller, parallel or perpendicular, with another potential.
  • Figure 4 shows examples of forms that make it possible to obtain the resulting force.
  • electric forces act mainly in the direction A, and counteract on the surface with other directions.
  • the weakening of the counteraction is facilitated by the setting of the grid 16 with the calculated potential.
  • cathodes are installed in liquid batteries as extreme when anodes are installed, they are deformed (see, for example, T. Erden-Gruz, “Chemical Energy Sources”, p. 221).
  • the latter can be associated with the presence of a near-cathode potential drop and the force action on the cathode in all directions.
  • the electrostatic force is predominantly towards the cathode and on its surface a considerable charge is formed, leading to deformation even with a small contact voltage. It is worth adding that in Nature the largest in magnitude are electrostatic forces.
  • FIG 1 clearly shows that, unlike the Coulomb law, plates 3 and 4 have, as it were, different distances for interacting charges, depending on their location on the plates.
  • the charges on surfaces 1 and 2, creating a force in the direction A, are as close as possible electrically to each other, regardless of the size of the insert 12, and the force acting in the other direction depends, for example, on the size of the insulator 17.

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Electrodes Of Semiconductors (AREA)

Abstract

Un dispositif de force sans appuis est basé sur l'action des forces électriques entre les corps ayant une forme spéciale, par exemple, se présentant comme des plaques disposées transversalement à la force reçue et possédant des potentiels électriques différents, qui comportent entre les surfaces orientées vers la direction de force un remplissage spécial qui renforce l'action de la force électrique entre les charges dans la direction de l'action de la force. Le remplissage arrange les ligne de force du champ électrique selon le schéma désiré, principalement grâce à l'organisation d'un certain courant électrique entre les surfaces des plaques. Ce remplissage ne doit pas forme de charges bloquant le champ électrique, c'est pourquoi il est réalisé à partir de semi-conducteurs de conductivité différent, reliés électriquement les uns aux autres avec, par exemple, du métal. Un semi-conducteur à conductivité de type n adhère à la surface à polarité négative, et un semi-conducteur à conductivité de type p adhère à la surface à polarité positive.
PCT/RU2013/000180 2013-03-11 2013-03-11 Dispositif de force sans appuis Ceased WO2014142696A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/RU2013/000180 WO2014142696A1 (fr) 2013-03-11 2013-03-11 Dispositif de force sans appuis

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/RU2013/000180 WO2014142696A1 (fr) 2013-03-11 2013-03-11 Dispositif de force sans appuis

Publications (1)

Publication Number Publication Date
WO2014142696A1 true WO2014142696A1 (fr) 2014-09-18

Family

ID=51537173

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/RU2013/000180 Ceased WO2014142696A1 (fr) 2013-03-11 2013-03-11 Dispositif de force sans appuis

Country Status (1)

Country Link
WO (1) WO2014142696A1 (fr)

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB300311A (en) * 1927-08-15 1928-11-15 Thomas Townsend Brown A method of and an apparatus or machine for producing force or motion
US3187206A (en) * 1958-05-09 1965-06-01 Electrokinetics Inc Electrokinetic apparatus
RU2093377C1 (ru) * 1995-03-17 1997-10-20 Виктор Николаевич Вакулич Электростатический элемент и электродинамический движитель

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB300311A (en) * 1927-08-15 1928-11-15 Thomas Townsend Brown A method of and an apparatus or machine for producing force or motion
US3187206A (en) * 1958-05-09 1965-06-01 Electrokinetics Inc Electrokinetic apparatus
RU2093377C1 (ru) * 1995-03-17 1997-10-20 Виктор Николаевич Вакулич Электростатический элемент и электродинамический движитель

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
YAVORSKY B. M. ET AL.: "Spravochnik po fizike dlia inzhenerov i studentov vuzov.8-e izdanie.", ONIKS, MIR I OBRAZOVANIE, 2006, MOSKVA, pages 42-43 - 422-425 *

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