DK178492B1 - Propulsion system with oscillating masses - Google Patents
Propulsion system with oscillating masses Download PDFInfo
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- DK178492B1 DK178492B1 DKPA200901071A DKPA200901071A DK178492B1 DK 178492 B1 DK178492 B1 DK 178492B1 DK PA200901071 A DKPA200901071 A DK PA200901071A DK PA200901071 A DKPA200901071 A DK PA200901071A DK 178492 B1 DK178492 B1 DK 178492B1
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- masses
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- foundation
- fom
- spring
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Abstract
Fremdrivning ved hjælp af oscillerende masser. Fremdrivnings system bestående af systemfundament (1) på monteret motor/gearsystem (2) der er forbundet med kranksystem (3) monteret med stødstænger (4) der er forbundet med pendulstænger med masser (5) fastgjort drejeligt på pendulakselholder med aksel (8) der er monteret på systemfundament (1). pendularme med masser (5) påvirker fjedersystem (6) monteret på fjedersystemholder (7) der er fastgjort på systemfundament (1). Det nye ved fremdrivnings systemet, er at oscillationen af pendul masser sker i bevægelsesretning af systemet (9) symmetrisk i en vinkel mindre end 360 grader på hver side af retningen og at disse masser bevæger sig i mod fase om samme aksel. Hvorved inertien i de oscillerende masser udnyttes optimalt til fremdrivning.Propulsion using oscillating masses. Propulsion system consisting of system foundation (1) on mounted engine / gear system (2) connected to crank system (3) mounted with thrust rods (4) connected to pendulum bars with masses (5) pivotally attached to shaft holder with shaft (8) there is mounted on system foundation (1). pendulum arms with masses (5) affect the spring system (6) mounted on the spring system holder (7) fixed on the system foundation (1). What is new about the propulsion system is that the oscillation of the pendulum masses moves in the direction of motion of the system (9) symmetrically at an angle less than 360 degrees on either side of the direction and that these masses move in phase towards the same shaft. Whereby the inertia of the oscillating masses is optimally utilized for propulsion.
Description
Fremdrivningssystem med oscillerende masser.Propulsion system with oscillating masses.
Den foreliggende opfindelse angår et fremdrivningssystem med oscillerende masser. (FOM system). Drivsystemet skaber kraft i et fartøj uden at påvirke omgivelser direkte, eksempler: rumskibe, satellitter, biler, både, fly, droner, robotter mm.The present invention relates to an oscillating mass propulsion system. (FOM system). The propulsion system creates power in a vessel without affecting its surroundings directly, examples: spaceships, satellites, cars, boats, aircraft, drones, robots and more.
Drivsystemet omfatter et eller flere svingsystemer med masse monteret i en ende af en pendularm, hvis anden ende er svingbart monteret i et aksel/leje således at pendularmen svinger mellem to ydre stillinger/vendepunkter som vekselvirker med en fjeder ved hvert af vendepunkterne. Fjederen kan være en magnetisk fjeder med modsat rettede magnetiske poler, hvor den ene er placeret ved vendepunktet og den anden er placeret ved den svingende pendularm.The drive system comprises one or more pivot systems with mass mounted at one end of a pendulum arm, the other end of which is pivotally mounted in a shaft / bearing so that the pendulum arm pivots between two outer positions / turning points which interact with a spring at each of the turning points. The spring may be a magnetic spring with opposite magnetic poles, one being located at the turning point and the other being located at the swinging pendulum arm.
Systemet, kan omfatte et antal identiske svingsystemer, der parvis er indrettet til at svinge i indbyrdes modfase, og hvor svingningerne par og par imellem er faseforskudt.The system may comprise a number of identical pivoting systems, which are arranged in pairs to pivot in reciprocal phase, and the pivot pairs between pairs are phase-shifted.
Fjederen er monteret således at pendularmens vinkelhastighed vendes ved vendepunktet, og pendularmen returnerer fra hvert vendepunkt med en vinkelhastighed, der er modsat rettet.The spring is mounted so that the angular velocity of the pendulum arm is reversed at the turning point, and the pendulum arm returns from each turning point at an angular velocity opposite to the direction.
De nævnte to ydre stillinger afgrænser pendularmen til svingninger i en vinkel på mindre end 360 grader.Said two outer positions define the pendulum arm for oscillations at an angle of less than 360 degrees.
En motor driver via et krank system to stødstænger der bringer et svingsystems pendularme i bevægelse. Stødstængerne er i modsatte ende fastgjort drejeligt til hver sin pendularm.A motor drives two thrust bars via a crank system which causes the pendulum arm of a swing system to move. The rods are at the opposite end pivotally attached to each pendulum arm.
Kendte systemer se GB 2426315 A. og GB 2451488 A.Known systems see GB 2426315 A. and GB 2451488 A.
De ovennævnte patenter vurderes grundlæggende at være en anden type opfindelse end FOM systemet da princippet i fremdrivningseffekten er forskellig mm.The above patents are basically considered to be a different type of invention than the FOM system since the principle of the propulsion effect is different etc.
FOM systemet udnytter, at en masse i cirkelformet bevægelse, konstant skaber en kraft der har retning mod det geometriske centrum af den cirkelformede bevægelse. Denne kraft er fundamentalt en følge af inertien af masser, der ændrer bevægelses hastighed. Denne kraft svarer til det man kender som centripetalkraft og kunne benævnes centripetal inerti.The FOM system utilizes that a mass in circular motion constantly creates a force that has a direction towards the geometric center of the circular motion. This force is fundamentally a consequence of the inertia of masses that change the speed of movement. This force is similar to what is known as centripetal force and could be called centripetal inertia.
Det konstateres at den tilsigtede virkning af det andet kendt system er modsat FOM systemet både teoretisk og vist i forsøg.It is found that the intended effect of the other known system is opposite to the FOM system both theoretically and experimentally.
I de engelske patentskrifter er det kendt, at oscillationen af masser sker modsat bevægelsesretning af systemet i en vinkel på ca. 90 grader på hver side at retningen og at tophastighed på masser i bevægelser er henholdsvis før og efter bevægelsesretning af systemet hvilket giver lavere virkningsgrad, end hvis oscillationen sker i bevægelsesretning af systemet i en vinkel på f.eks. ca. 45 grader på hver side af bevægelsesretning af system.In the English patents it is known that the oscillation of masses occurs opposite to the direction of movement of the system at an angle of approx. 90 degrees on each side that the direction and that the top velocity of masses in motion is respectively before and after the direction of movement of the system, which gives lower efficiency than if the oscillation occurs in the direction of movement of the system at an angle of e.g. ca. 45 degrees on each side of the direction of movement of the system.
Men da de engelske systemer er tiltænkt at virke fremaddrivende når masser rammer de tværgående plader. Dette er i modsætning til FOM systemet dvs. at FOM kraften modvirker den tilsigtede kraft i de engelske systemer.But since the English systems are intended to be propulsive when masses hit the transverse plates. This is in contrast to the FOM system ie. that the FOM force counteracts the intended power of the English systems.
På 3 punkter afviger de engelske systemer fra FOM systemet: • Svingning af masser foregår i modsat retning i forhold til FOM system dvs. imod systemets bevægelsesretning.At three points, the English systems differ from the FOM system: • Mass fluctuation takes place in the opposite direction compared to the FOM system ie. against the direction of movement of the system.
• Svingning af masser er om to aksler i de engelske patenter.• Mass fluctuation is about two shafts of the English patents.
• Kraften i det engelske system vil være vurderet mindre end ved FOM systemet.• The power of the English system will be assessed less than the FOM system.
FOM systemet virker efter et andet princip. Men har samme formål, at skabe kraft uden at være direkte afhængig af omgivelser.The FOM system works according to another principle. But has the same purpose, to create power without being directly dependent on surroundings.
Formålet med den foreliggende opfindelse er, at tilvejebringe en mere effektiv og jævn kraft ved, at oscillationen foregår i en anden retning end ved det kendte system.The object of the present invention is to provide a more efficient and smooth force in that the oscillation takes place in a different direction from the known system.
Oscillationen af pendul masser sker i bevægelsesretning af systemet symmetrisk i en vinkel mindre end 360 grader på hver side af retningen og at disse masser bevæger sig i mod fase om samme aksel.The oscillation of pendulum masses occurs in the direction of motion of the system symmetrically at an angle less than 360 degrees on either side of the direction and that these masses move in phase towards the same shaft.
Ved at oscillationen af pendul masser sker i bevægelsesretning af systemet og at masser bevæger sig i kurveformet bane i modfase opnår man virkning af centripetal inerti og at impulsmoment bevares.By the oscillation of the pendulum masses moving in the direction of motion of the system and the masses moving in the curved orbit in the counter phase, the effect of centripetal inertia is obtained and the momentum of the pulse is preserved.
Tegninger og figurbetegnelser.Drawings and character designations.
Tegning 1 viser en udførelsesform af FOM system i perspektiv.Drawing 1 shows an embodiment of the FOM system in perspective.
Tegning 2 viser en udførelsesform af FOM system set fra siden.Figure 2 is a side view of an embodiment of the FOM system.
1. Systemfundament.1. System foundation.
2. Motor og gearsystem.2. Engine and gear system.
3. Kranksystem.3. Crank system.
4. Stødstænger.4. Shock bars.
5. Pendularm med masser.5. Pendulum arm with plenty.
6. Fjedersystem.6. Spring system.
7. Fjedersystemholder.7. Spring system holder.
8. Pendulaksel holder med aksel.8. Pendulum shaft holder with shaft.
9. Bevægelsesretning for system.9. System direction of movement.
Opfindelsen vil i det følgende blive nærmere forklaret i forhold til tegning 1 og 2 der viser en udførelsesform for FOM systemet.The invention will now be explained in more detail with reference to drawings 1 and 2 illustrating one embodiment of the FOM system.
FOM system bestående af: systemfundament(l). På fundamentet er der monteret en motor med gear(2) og kan være af en hvilken som helst art. Eks el, benzin, diesel, gasturbine mm. motoraksler er forbundet med kranksystem (3) monteret med stødstænger med lejer (4) der drejeligt er forbundet med pendulstænger med masser (5) fastgjort drejeligt med lejer på aksel i pendulakselholdere (8) der er monteret på systemfundament (1). Pendulstænger med masser (5) påvirker fjedersystem (6) monteret på fjedersystemholder (7) der er fastgjort på systemfundament (1)-FOM system consisting of: system foundation (l). On the foundation is mounted a motor with gear (2) and can be of any kind. Ex electricity, gasoline, diesel, gas turbine etc. motor shafts are connected to crank system (3) mounted with thrust rods with bearings (4) pivotally connected to pendulum bars with masses (5) pivotally attached to bearings on shaft in shaft brackets (8) mounted on system foundation (1). Pendulum bars with masses (5) affect the spring system (6) mounted on the spring system holder (7) fixed on the system foundation (1) -
Materialer kan bestå af:Materials may consist of:
Systemfundament (1), stødstænger(4), penduls stænger og masser(5) pendulakselholdere (8), fjedersystemholder (7): Stål, aluminium, titanium eller lignende materiale.System foundation (1), shock bars (4), pendulum rods and masses (5) shaft shaft holders (8), spring system holder (7): Steel, aluminum, titanium or similar material.
Aksler(8), kranksystem(3): stål, titanium eller lignendeShafts (8), crane system (3): steel, titanium or the like
Pendul masser(5): magnetisk materiale, stål mm.Pendulum masses (5): magnetic material, steel, etc.
Fjedersystem (6); magnetisk materiale, fjederstål mm.Spring system (6); magnetic material, spring steel etc.
Claims (3)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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DKPA200901071A DK178492B1 (en) | 2009-09-30 | 2009-09-30 | Propulsion system with oscillating masses |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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DKPA200901071A DK178492B1 (en) | 2009-09-30 | 2009-09-30 | Propulsion system with oscillating masses |
DK200901071 | 2009-09-30 |
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DK200901071A DK200901071A (en) | 2011-03-31 |
DK178492B1 true DK178492B1 (en) | 2016-04-18 |
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DKPA200901071A DK178492B1 (en) | 2009-09-30 | 2009-09-30 | Propulsion system with oscillating masses |
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2886976A (en) * | 1956-07-13 | 1959-05-19 | Norman L Dean | System for converting rotary motion into unidirectional motion |
GB2426315A (en) * | 2005-05-18 | 2006-11-22 | David Mchale | Propulsion by inertia |
GB2451488A (en) * | 2007-08-01 | 2009-02-04 | David Francis Mchale | Propulsion mechanism having colliding masses |
-
2009
- 2009-09-30 DK DKPA200901071A patent/DK178492B1/en not_active IP Right Cessation
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2886976A (en) * | 1956-07-13 | 1959-05-19 | Norman L Dean | System for converting rotary motion into unidirectional motion |
GB2426315A (en) * | 2005-05-18 | 2006-11-22 | David Mchale | Propulsion by inertia |
GB2451488A (en) * | 2007-08-01 | 2009-02-04 | David Francis Mchale | Propulsion mechanism having colliding masses |
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Publication number | Publication date |
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DK200901071A (en) | 2011-03-31 |
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Effective date: 20180930 |