[go: up one dir, main page]

NL1024233C2 - Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device - Google Patents

Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device Download PDF

Info

Publication number
NL1024233C2
NL1024233C2 NL1024233A NL1024233A NL1024233C2 NL 1024233 C2 NL1024233 C2 NL 1024233C2 NL 1024233 A NL1024233 A NL 1024233A NL 1024233 A NL1024233 A NL 1024233A NL 1024233 C2 NL1024233 C2 NL 1024233C2
Authority
NL
Netherlands
Prior art keywords
blocking
rotatable
trial key
generated
blocking device
Prior art date
Application number
NL1024233A
Other languages
Dutch (nl)
Inventor
Henk Stephen Linger
Original Assignee
Henk Stephen Linger
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 Henk Stephen Linger filed Critical Henk Stephen Linger
Priority to NL1024233A priority Critical patent/NL1024233C2/en
Application granted granted Critical
Publication of NL1024233C2 publication Critical patent/NL1024233C2/en

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K53/00Alleged dynamo-electric perpetua mobilia
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K49/00Dynamo-electric clutches; Dynamo-electric brakes
    • H02K49/10Dynamo-electric clutches; Dynamo-electric brakes of the permanent-magnet type
    • H02K49/104Magnetic couplings consisting of only two coaxial rotary elements, i.e. the driving element and the driven element
    • H02K49/108Magnetic couplings consisting of only two coaxial rotary elements, i.e. the driving element and the driven element with an axial air gap

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Dynamo-Electric Clutches, Dynamo-Electric Brakes (AREA)

Abstract

Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with a rotatable magnetic plate between them, a trial key and a blocking device. The whole structure is of a material with the correct mechanical and permeable properties. The rotatable plate is provided with blocking surfaces. The magnets are positioned with like poles facing each other so that they each repel during operation. With the trial key, it is possible to remove or activate the magnetic fields. The rotatable plate is positioned with the aid of blocking surfaces and a blocking catch. The drive force produces a torque which can be used.

Description

' . 1· % . Lingerprlncipe voor het dynamisch aandrijven van motoren en generatoren·". 1%. Linger principle for the dynamic driving of engines and generators ·

Deze vinding heeft betrekking op een magneetwiel het z«g .This invention relates to a magnetic wheel.

5 “ossewisl" waarmee de in permanente magneten opgeslagen energie kan worden omgezet in bewegingsenergie. fig.1 enlA Dit systeem werkt óp het feit dat magneten elkaar aantrekken of afstoten.5 "ossewisl" with which the energy stored in permanent magnets can be converted into kinetic energy. Fig.1 enlA This system works on the fact that magnets attract or repel each other.

De kracht waarmee magneten elkaar afstoten wordt hier 10 benut voor het genereren van bewègingsenergie..The force with which magnets repel each other is utilized here for generating motion energy.

De magnetén zijn bevestigd op twee vaste nivo's met daartussen een draaibare magneetschijf,de magneetvelden z{jn aangegeven met +en - teken. fig2B en 2C.The magnets are mounted on two fixed levels with a rotating magnetic disk between them, the magnetic fields are indicated by a + and - sign. 2B and 2C.

De draaibare sch{]f is voorzien van blokkeervlakken.The rotating plate {] f is provided with blocking surfaces.

15 Dit geheel is van materiaal met een zeer laag geleidend vermogen voor magnetisme b{J de juiste mechanische eigenschappen·, fig· 1 en IA·This assembly is made of a material with a very low conductivity for magnetism b {J the correct mechanical properties ·, fig · 1 and IA ·

De magneten staan onder gelijke hoek van elkaar,bjj 3 magneten per schijf is dit 120 graden. fig.2A 20 De ruimte tussen de magneten,' per vlak , bedraagt minimaal een magneetdiamèter.The magnets are at the same angle from each other, with 3 magnets per disc this is 120 degrees. FIG. 2A The space between the magnets, per surface, is at least one magnet diameter.

Oit voor het vrOdraaien.Before turning.

Do magneten kunnen met behulp van magneetbalansen, de z.g. "trialkey" boven elkaar worden gebracht, fig. 4 25, De magneetbalansen,ook wel geleldebalansen , voorkomen dat de magneetvelden elkaar beïnvloeden.The magnets can be brought above each other by means of magnetic balances, the so-called "trial key", fig. 4.

Met deze vinding is het mogeljjk de geleidebalans gemakkeljjk in en uit het veld te liften... ·With this invention it is possible to easily lift the guide balance in and out of the field ... ·

Door de balans in te drukken op de punten C.en D. fig. 4 3© is hst mogelijk de magneet velden op te heffen of te activeren. . fig. 4A en 4B.By pressing the balance at points C. and D. fig. 4 3 © it is possible to cancel or activate the magnetic fields. . 4A and 4B.

De balansen scharnieren hlerbg over de draaipunten P en Q fig. 4.The balances hinge over the pivot points P and Q fig. 4.

Het dikgestreepte deel van de toegepaste balans is van 35 staal het onderbroken gestreepte is van materiaal met de juiste permeabiele en mechanische eigenschappen, fig. 5 1024233-The thick stripe part of the applied balance is made of steel, the broken stripe is of material with the correct permeable and mechanical properties, fig. 5 1024233

I 2 II 2 I

I De balansen scharnieren voor en achter de magneten langs . ' . II The balances hinge in front of and behind the magnets. ". I

I zodat een geleidebrtig kan ontstaan, fig. 3A, 3B, 3C, II so that a conductivity can be formed, FIGS. 3A, 3B, 3C, I

I fig.6 en 6A. I6 and 6A. I

I zgn de aagneten n.b.v. de trialkey op elkaar gepositioneerd II called the magnets n.b.v. the trial key positioned on top of each other I

I 5 dan wordt de draaibare schjjf geblokkeerd aet behulp van IThen the rotating disk is blocked by means of I

I blokkeerpal B. fig.1 II blocking catch B. fig.1 I

I Door de trialkey in te drukken worden de opponerende II By pressing the trial key the opposing I

I magneetvelden geactiveerd. II magnetic fields activated. I

I De schjjf staat nu onder dryfspanning. IThe disk is now under dry voltage. I

I 10 De blokkeerpal kan nu worden ingedrukt. II 10 The blocking catch can now be pressed. I

I Oe magneetvelden willen hun natuurlflke ruimte innemen II The magnetic fields want to occupy their natural space I

I waardoor een dryfkracht optreedt. II causing a drying force. I

I Dit koppel kan worden overgebracht op vliegwiel of dynamo. II This torque can be transferred to flywheel or dynamo. I

I Het rendement kan worden afgesteld door tussen magneet II The efficiency can be adjusted by between magnet I

I *5 en geleidebalans een stuk koper te schuiven waardoor II * 5 and guide balance to slide a piece of copper through which I

I het, magnetisch, veld door de balans afneemt en het bedienen II, the magnetic field decreases due to the balance and the operation I

I van de balans in gunstige richting wordt beïnvloed. II of the balance in a favorable direction is affected. I

I De koperklab draait hlerbg over de punten R en S. fig 4 C. IThe copper clab rotates hlerbg over points R and S. Fig. 4 C. I

I In. fig. 40 en 4E ,doorsnede A-A en B-8 is het koper II. 40 and 4E, section A-A and B-8 is the copper I

I 20 net stippen aangegeven· II 20 just dots indicated · I

HH

De koperklab kan worden vervangen door stilstaand of IThe copper clab can be replaced by stationary or I

I roterend kopertraject die het magnetischveld frequent II rotating copper path that the magnetic field is frequent I

I afdekt. II covers. I

I 25 II 25 I

II

I 1024233- · II 1024233- I

Claims (4)

5 Dit "wiel" bestaat uit vaste magneetvlakken met daartuèsen een draaibare magneetschyf,geleidebalansen, blokkeer-inrichting en koperklab. Oit geheel ie van materiaal met de juiste mechanische en permeabiele eigenschappen·This "wheel" consists of fixed magnetic surfaces with thereafter rotatable magnetic discs, guide balances, blocking device and copper clab. It is made entirely of material with the correct mechanical and permeable properties. 10 De draaibare schjjf is voorzien van blokkeervlakken· Oe magneten staan met geljjke polen naar elkaar toe gericht waardoor ze elkaar by functioneren afstoten· Met de geleidebalans de z.g. trialkey is het mogeljjk de magneetvelden op te heffen of te activeren.The rotatable disk is provided with blocking surfaces. The magnets are directed towards each other with the same poles, so that they repel each other during their function. 15 Oe draaibare schyf wordt gepositioneerd m»b«v blokkeervlakken en.blokkeerpal· De magneetvelden kunnen nu met de trialkey worden geactiveerd. Oe fixatie kan nu worden opgeheven/ door da blokkeerpal 20 in te drukken· Oe optredende drijfkracht veroorzaakt een draaimoment die benut kan worden. Oeze vinding wordt gekenmerkt door* twee bijzonderheden· Ten eerste het principe van magneetaandryving.15 The rotatable disk is positioned with blocking surfaces and locking catch. · The magnetic fields can now be activated with the trial key. The fixation can now be released / by pressing the blocking catch 20. The buoyancy occurring causes a torque which can be utilized. This invention is characterized by * two specifics · First, the principle of magnet failure. 25 Ten tweede de trialkey· 1024233-25 Second, the trial key · 1024233-
NL1024233A 2003-09-05 2003-09-05 Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device NL1024233C2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
NL1024233A NL1024233C2 (en) 2003-09-05 2003-09-05 Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NL1024233A NL1024233C2 (en) 2003-09-05 2003-09-05 Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device
NL1024233 2003-09-05

Publications (1)

Publication Number Publication Date
NL1024233C2 true NL1024233C2 (en) 2005-03-08

Family

ID=34464870

Family Applications (1)

Application Number Title Priority Date Filing Date
NL1024233A NL1024233C2 (en) 2003-09-05 2003-09-05 Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device

Country Status (1)

Country Link
NL (1) NL1024233C2 (en)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE515427A (en) *
GB1271673A (en) * 1967-08-04 1972-04-26 James Everett Jines Means for shielding and unshielding permanent magnets and magnetic motors utilizing same
US3967146A (en) * 1974-04-24 1976-06-29 Howard Gerald T Magnetic motion conversion device
FR2461369A1 (en) * 1979-07-10 1981-01-30 Thomson Csf Angled hyperfrequency coaxial element - has centre conductor covered with sleeve of high rigidity dielectric secured at each end in dielectric block
JPS57151078A (en) * 1981-03-14 1982-09-18 Kazuaki Murakoshi Motor driven by force of permanent magnet
GB2261999A (en) * 1991-11-30 1993-06-02 Trevor Lyn Whatford Repelling permanent magnet motor with superconducting shields
EP0808013A1 (en) * 1996-04-25 1997-11-19 Teruo Kawai Motive power generating apparatus utilizing energy of permanent magnet

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE515427A (en) *
GB1271673A (en) * 1967-08-04 1972-04-26 James Everett Jines Means for shielding and unshielding permanent magnets and magnetic motors utilizing same
US3967146A (en) * 1974-04-24 1976-06-29 Howard Gerald T Magnetic motion conversion device
FR2461369A1 (en) * 1979-07-10 1981-01-30 Thomson Csf Angled hyperfrequency coaxial element - has centre conductor covered with sleeve of high rigidity dielectric secured at each end in dielectric block
JPS57151078A (en) * 1981-03-14 1982-09-18 Kazuaki Murakoshi Motor driven by force of permanent magnet
GB2261999A (en) * 1991-11-30 1993-06-02 Trevor Lyn Whatford Repelling permanent magnet motor with superconducting shields
EP0808013A1 (en) * 1996-04-25 1997-11-19 Teruo Kawai Motive power generating apparatus utilizing energy of permanent magnet

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
ANGRIST S W: "PERPETUAL MOTION MACHINES", SCIENTIFIC AMERICAN, SCIENTIFIC AMERICAN INC. NEW YORK, US, vol. 218, no. 1, 1968, pages 114 - 122, XP002036811, ISSN: 0036-8733 *
PATENT ABSTRACTS OF JAPAN vol. 0062, no. 56 (M - 179) 15 December 1982 (1982-12-15) *

Similar Documents

Publication Publication Date Title
CA2809977C (en) Magnetic drive motor assembly and associated methods
US4684838A (en) Electric motor with deformable disk brake
US4207773A (en) Magnetic piston machine
SK282184B6 (en) MAGNETIC ROTARY DEVICE
NL8004035A (en) SWITCHABLE PERMANENT MAGNETIC BRAKE.
KR920015053A (en) Electromagnetic clutch assembly
NL1024233C2 (en) Direct dynamic drive is generated by permanent magnets and involves fixed magnetic surfaces with rotatable magnetic plate between them, trial key and blocking device
SE9503527L (en) damping device
SE9901107D0 (en) Rotor for a high speed permanent magnet motor
MXPA04003073A (en) Brush-holder system and driving device.
US8080914B2 (en) Torque generating device
JP3191724B2 (en) Collision detection device using anti-chattering contact structure
KR20070104060A (en) Car disc brake
RU2117379C1 (en) Magnetic motor
DE59713012D1 (en) electric motor
US4206377A (en) Single phase stepping motor
TR200001168T2 (en) Braking device
RU94026259A (en) Magnetic-field-to-kinetic energy converter
NL1022462C1 (en) Generator for e.g. electricity or driving machinery, comprises magnets and coils mounted on rotary discs
ATE250294T1 (en) ELECTRIC MOTOR WITH BRAKE
RU2307266C1 (en) Support
JPS58224553A (en) Magnetic force rotary machine
KR960039560A (en) Power generating device consisting of arrangement of stator and rotor magnet and blocking method of magnetic force
KR19990068354A (en) Fower unit system using permant magnet
CN86106041A (en) repulsive magnetic motor

Legal Events

Date Code Title Description
PD2B A search report has been drawn up
SD Assignments of patents

Owner name: ROY PATRICK LINGER

Effective date: 20061005

Owner name: YVONNE BEATRIX ZAANDAM

Effective date: 20061005

Owner name: SASKIA BIANCA LINGER

Effective date: 20061005

Owner name: JANE MONIQUE LINGER

Effective date: 20061005

Owner name: LEATITIA HAIDY MARIJKE LINGER

Effective date: 20061005

Owner name: VIVIEN YVONNE LINGER

Effective date: 20061005

V1 Lapsed because of non-payment of the annual fee

Effective date: 20140401