CN101252332A - Controllable magnetic combustion machine - Google Patents

Controllable magnetic combustion machine Download PDF

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Publication number
CN101252332A
CN101252332A CNA2007101822751A CN200710182275A CN101252332A CN 101252332 A CN101252332 A CN 101252332A CN A2007101822751 A CNA2007101822751 A CN A2007101822751A CN 200710182275 A CN200710182275 A CN 200710182275A CN 101252332 A CN101252332 A CN 101252332A
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magnetic
magnet
rotor
control
gear
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CNA2007101822751A
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邢成龙
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Individual
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Abstract

Disclosed is a motor which is independent of gasoline energy, instead, uses kinetic energy converted from magnetic energy. The power system of the motor is dispensed with a stator and converts magnetic energy into kinetic energy through the cooperation of the magnets on one or more rotors; the control system of the motor is realized through adjusting the distances of the magnets between the rotors and the magnets of the rotors. Without a stator, the motor has the advantage that the motor makes use of the repulsion force among the magnets and can generate kinetic energy while effectively avoiding the influence from the force that is not used; rebound magnetic arms on the rotors change the distance between the arm of force and the fulcrum when the magnets generate driving force and resistance to maintain the state that the arm of force of the driving force is bigger than the arm of force of the resistance all the time, thus avoiding the failure that the driving force will be definitely balanced with the resistance; therefore the motor can directly power the equipment that needs powering.

Description

Controllable magnetic combustion machine
Affiliated technical field
The present invention relates to a kind of engine class plant equipment that is converted to kinetic energy by magnetic energy.Having proposed first kind of two kinds of design is the method for designing of no stator structure, and second kind is to adopt similar internal combustion engine structure to be converted to the engine of kinetic energy by magnetic energy.
Background technology
At present, along with human society constantly develops, many manpowers are replaced by machinery, and from the steam engine nuclear power till now of 19 beginnings of the century, these power-equipments all need consumes energy such as coal, gasoline, diesel oil, natural gas, electric power and the rare energy to wait provides power.Though nowadays this class engine plays an important role in social every field, they all exist common defective.For example this class of the vehicles needs the constantly machinery of motion, not only carry limited energy, the energy prices costliness that has, accessory products after it uses causes environmental pollution serious, human body also there is certain harm, and the impossible unconfined exploitation utilization of the most energy, human eager need the service for us by a kind of alternative energy.Therefore a lot of inventions once being arranged all is to utilize the magnetic force that produces between the magnet to provide the method for power to carry out the research of alternative energy source, and some has applied for patent, and only domestic just have tens of patents of the same type.For example: the applying date is on April 21st, 1996, and open day is on October 29th, 1997, and application number is 96104458.6 application documents.Its adopt be fixed with on the rotor several homopolarities N utmost point to periphery by the compact arranged laminar magnet of circle, stator by two block magnet N utmost point S utmost points each form one group of stator in a side, the array stator by equal fixed distance on circular casing.Its principle be stator N extremely to the epitrochanterian magnet N utmost point repel each other produce thrust simultaneously the S utmost point also produce under the double action with thrust equidirectional suction with the epitrochanterian magnet N utmost point, rotor is rotated on the next magnet, at this moment the N utmost point of stator again with the N utmost point of rotor simultaneously the S utmost point also meet and produce under the double action with thrust equidirectional suction with the epitrochanterian magnet N utmost point, make rotor continue rotation again, thereby produce power so repeatedly.Its control system is to control by the resistance that the extruding rotor produces.This document exists several query points: first, want fixing so many homopolarity certain degree of difficulty to be arranged on the rotor of magnetic motivation at the magnet of equidirectional, because all can repel mutually between per two magnets, even fixing back rotor is difficult to guarantee stability when running up.The second, this patent disclosure is to utilize the revolving force that repels each other between magnet and inhale the double action generation mutually, but reality its original suction when rotor is subjected to resistance will make it stop to produce power with this resistance jointly.The 3rd, what the control system of this patent was used is the control of brake class friction catch, if the braking of short time only when rotor dynamic is powerful, this control system can not guarantee its stability under the non-stop situation of power; Again for example: the applying date is on October 10th, 1994, and open day is on April 17th, 1996, and application number is 94116538.8 application documents.This patent has only dynamical system, what adopt is the principle that the same magnetic pole between magnetic piston and magnetic are filled in surely repels each other, and between magnetic isolation plate alternately between two groups of magnetic pistons and magnetic are filled in surely, play separated magnetic effect and produce power, it is to laminate shape with the mode of magnetic pole at homonymy with Nd-Fe-B permanent magnet that magnetic piston wherein and magnetic are filled in surely, and between every magnetic sheet, be bonded into cylindrical with binding material or other shape, the piston bush made from ceramic diamond spar combination that this magnet plates is bonded together is entangled and is constituted the magnetic piston and magnetic is filled in surely again, magnetic isolation plate wherein is little triangular prism or a quadrangular of making the branch S utmost point and the N utmost point with Nd-Fe-B permanent magnet, the little triangular prism or the quadrangular utmost point are formed magnetic isolation plate to being arranged in order on the contrary, pay the drive magnetic isolation plate by the sprocket wheel on the bent axle and two tumbler gears of chain drive and move the composition timing system, make this machine that power is provided.This document exists several query points equally: the first, and the magnetic structure of piston is difficult to accomplish, even accomplish that its stability will be very poor.Reason is that the power of the homopolar-repulsion that produces between when same direction of the same magnetic pole of magnet is very big, is difficult to them by being fixed together with jointing material, even the piston bush made from ceramic diamond spar is fixed and also is difficult to accomplish again.Second, most important magnetic isolation plate can not play separated magnetic effect after making of this method in this document, reason is that this method is made the little triangular prism of the branch S utmost point and the N utmost point or quadrangular is inhaled combination mutually with heteropole magnet combination with Nd-Fe-B permanent magnet, when filling in one of them close contact surely with magnetic piston or magnetic, really can play the effect that stops this magnetic barrier to hold prismatic combination, but with prism combination be put in magnetic piston and magnetic fill in surely between the time two plugs overlaps with the magnetic line of force of the opposite pole end of prism combination both sides separately, become as a whole magnet separately and make the active force of the homopolar-repulsion that still existence is bigger between two plugs.The 3rd, this document non control system.Also having in a lot of patents some is the design of pure theory class, and some is the ideal class design, and it is also very high that some implements its cost of comparison difficulty.
The patented technology of existing the type exists problems in a word, be the magnetic motivation that adopts the compound mode of stator and rotor on the one hand mostly, when only utilizing repulsion or suction or mixing force, be not subjected to the influence of the non-power of utilization in the time of can not avoiding between on-stream period any position fully; Again on the one hand, the magnetic motivation design that is proposed can not solve power and resistance always is in the poised state mistaken ideas in a certain position; The patented technology of the type can not solve uppity problem on the other hand, and exists patented technology and theorize and can not realize or the like.
Summary of the invention
The invention provides two kinds of technical schemes for addressing the above problem:
The dynamical system of first kind of technical scheme has adopted the method for designing of no stator structure.Realize being converted to the process of kinetic energy by cooperate mutually method that magnetic energy is converted to kinetic energy of one or more epitrochanterian magnets by magnetic energy.It is made up of magnet, rotor, control magnet, magnet slideway, gear, back springing type magnetic swing arm, tooth flywheel, clutch tooth flywheel, casing, cover, gear box, it is characterized in that: the dynamical system of this machine adopts no stator structure technology, forms by cooperating mutually between one or more epitrochanterian magnets.Each rotor by the magnetic pole that utilizes (the N utmost point or the S utmost point) of one or more magnet towards outside, and it is arranged evenly circular with the unified even angle that tilts clockwise or counterclockwise, its every magnet is installed on the magnetic axis linking arm, the magnetic axis linking arm is connected on the armature spindle that has wheel-shaped body according to the opposite position of rotor magnet, the magnetic axis linking arm is meshed with gear wheel, gear wheel is connected on the external tooth flywheel core, the external tooth flywheel sleeve is meshed with the internal tooth flywheel, and gear wheel is meshed with clutch tooth flywheel and little gear wheel.Inner gear shaft with its concentric is arranged in armature spindle, on inner gear shaft, has and the corresponding internal tooth flywheel of rotor magnet quantity, between the inner gear shaft of rotor or and rotor gear between transmission mutually.The magnet slideway of restricted rotor magnet running orbit between rotor, dynamical system is formed in the mutual transmission of the wheel-shaped body on each armature spindle jointly, and the mutual transmission of wheel-shaped body on the armature spindle and change pulley is positioned at gear box and provides power to the external world; Control system is made up of one or more control magnet at position between rotor.
Described rotor is the back springing type magnetic swing arm that a plurality of angular distribution with unanimity is installed by connecting on the cogged armature spindle, rotor magnet is installed on the magnetic swing arm forms.
Described back springing type magnetic swing arm is by the magnetic swing arm tooth bar that has teeth that spring is installed, wherein one side has the inclined slip of sloping sample, magnetic swing arm tooth bar can be done stretching motion in magnetic swing arm shell, one end of its spring connects magnetic swing arm tooth bar, one end connects magnetic swing arm shell, make magnetic swing arm tooth bar inwardly can spring back to initial position after the motion, the end that magnet is installed at magnetic swing arm tooth bar has one or more rollers, and the edge of roller exceeds the edge of magnet.
Described armature spindle is the axle of hollow, inner gear shaft with its concentric is arranged in armature spindle, position and the corresponding internal tooth flywheel of quantity with above-mentioned back springing type magnetic swing arm are arranged on the inner gear shaft, be meshed with the external tooth flywheel sleeve on being installed in armature spindle or magnetic swing arm shell, gear wheel that has on the external tooth flywheel core and the above-mentioned mutual transmission of magnetic swing arm tooth bar, and be meshed with clutch tooth flywheel sleeve and little gear wheel on being connected armature spindle.Clutch tooth flywheel core is connected with the gear connecting rod, is connected with little gear wheel at the other end.
Described clutch tooth flywheel by the flywheel core that is provided with two or more clutch dogs, and the outer flywheel sleeve of flywheel core, tapered rod, awl bar fixed mount, ball, spring, drive link, and drive link on roller form jointly.Each clutch dog is by the expansion link that has spring, at can be meshed with the flywheel sleeve tooth expansion link tooth of oblique thread form of its shape near the head of an end of flywheel sleeve tooth, the other end of expansion link is inlaid in the clutch dog shell, and the expansion link spring returns to initial position after can moving it.The gag lever post that extends through the free longitudinally-moving of shell external enwergy is arranged in the clutch dog shell, get back to initial position after having spring that housing is moved together with expansion link between gag lever post and the clutch dog shell, other end at housing has ball free to rotate, ball and tapered rod initial position be not for contacting, when tapered rod moves when moving, overstocked ball drives whole clutch dog and moves to flywheel sleeve tooth direction, the expansion link tooth of clutch dog front end contacts with the flywheel sleeve tooth and is meshed, the one direction of flywheel sleeve will drive flywheel core and rotate when rotating, when flywheel sleeve when other direction rotates, because the inclined-plane of expansion link is parallel with the inclined-plane of flywheel sleeve tooth, so overstock expansion link phase medial movement, can not drive the clutch core and rotate, when tapered rod leaves ball, clutch dog integral body moves inward expansion link because the effect of spring will return to initial position.The tapered rod of clutch tooth flywheel connects drive link, the other end of drive link is connected with a roller, do not contact with the magnetic swing arm tooth bar initial position of back springing type magnetic swing arm, when the tooth bar moves to certain position, slope projection on it touches roller and moves up, roller is moved tapered rod by drive link to clutch tooth flywheel core, rotate, finish clutch function thereby the extruding clutch dog makes clutch tooth flywheel sleeve drive its core.
Described magnet slideway between rotor, its one side can with the sliding contact when the compression of roller on the back springing type magnetic swing arm magnetic swing arm tooth bar, play the close effect of magnet between the restrict rotor.
Described control magnet is the position between one or more magnet installation and the rotor, institute's magnetic pole strength that utilizes of magnet is outside, the non-magnetic pole strength that utilizes of magnet is relative, the centre connects and composes an integral body with permeability magnetic material, in the control magnet case of installing and can move within the specific limits by the rotation of the gear on the casing, be the control magnet can away from near the action of rotor, reach the purpose of control rotor rotation.When rotor magnet springs back to the edge of rotor by back springing type magnetic swing arm, produce revolving force with the rotor magnet homopolar-repulsion controllable magnetic combustion machine is rotated.
Its kinetic energy derives from: the synergy that the rotor upper magnet repels mutually with magnetic pole strength.Its epitrochanterian magnet becomes the rotor magnet group with the magnet combination that utilized magnetic pole one side outwards tilts clockwise or counterclockwise.With the rotor that the rotor magnet group of clockwise inclination is formed, direction is counterclockwise so claim that this rotor is reverse rotor when rotating because of it; Otherwise is clockwise that so a pair of rotor interconnects the power source that the co-operating rotor that partners becomes this machine by the gear on it or other wheel-shaped body so be called the forward rotor with the rotor that counter clockwise direction inclined rotor magnet group is formed because of its direction of rotation.
Be example with a pair of rotor below, explain the operation process of its generation kinetic energy of cooperating mutually: in a pair of rotor installation and the casing, during the initial position of the last magnet of rotor, have the mutual repulsive force of first pair of rotor magnet owing to do not act on point-blank, its back springing type magnetic swing arm will make magnetic swing arm tooth bar eject under the effect of spring, the distance in rotor magnet and axle center has extended, make the arm of force be positioned at the rotor magnet on the straight line and the arm of force in axle center greater than other, this moment, power was greater than resistance, this will promote two rotors to rotor magnet and rotate in the opposite direction, second pair of rotor magnet is owing to run into the mutual repulsive force of the same magnetic pole of control magnet after rotor rotation, and the restriction of magnet slideway, will be to the position in more close axle center, overstocking down of the inclined slip of drive link on this magnetic swing arm tooth bar of clutch this moment tooth flywheel upwards slided along the slope, and make clutch tooth fly wheel start-up, driving the gear wheel that is engaged with when magnetic swing arm tooth bar inwardly contracts rotates, gear wheel does not only drive the rotation of clutch tooth flywheel sleeve when the clutch of clutch tooth flywheel starts, starting back clutch tooth flywheel sleeve drive clutch tooth flywheel core in clutch rotates simultaneously, the little gear wheel that clutch tooth flywheel core connects and the mutual transmission of gear wheel of next group, so driving this gear wheel rotates with the direction identical with last one group of gear wheel, this gear wheel contracts the magnetic swing arm tooth bar that drive is engaged with backward, such the 3rd pair of magnetic swing arm tooth bar upper rotor part magnet is also along with moving to axis direction, magnet pulley on the magnetic swing arm tooth bar enters the magnet slideway smoothly, since between the restriction of magnet slideway and the two corresponding rotor magnets with the mutual repulsive force of magnetic pole, limiting it jointly moves to the position away from the axle center, therefore reduced its arm of force apart from the axle center, the resistance of its generation also reduces.And second pair of rotor magnet is because along with rotor rotation, the initial position of first pair of rotor magnet will be rotated to, be positioned at the both sides of control magnet, the tooth bar of its back springing type magnetic swing arm begins to produce kinetic energy again because above-mentioned principle ejects the arm of force continuation promotion rotor rotation that extended under the effect of spring, continue the above motion process of circulation like this, make rotor constantly rotate generation kinetic energy, provide kinetic energy to the external world.
Its control system is to realize by the distance of adjusting between control magnet and the rotor, the position of control magnet close together between corresponding rotor magnet when machine works, the kinetic energy that repulsive force between the two produces is far longer than the resistance that all the other corresponding rotor magnets between rotor produce, and makes the unbalance rotation of power confining force greater than resistance of rotor.When control magnet during away from rotor magnet, the kinetic energy of its generation reduces gradually, and the running speed of rotor also will slow down, and rotor will stop operating when the power and resistance balance of its generation.When the power that produces during less than resistance, the magnetic swing arm tooth bar of the back springing type magnetic swing arm that has stretched out, because the direction of its armature spindle fulcrum and repulsive force is not on same straight line, so can not make the withdrawal of magnetic swing arm tooth bar, again because the restriction of magnet slideway, the result is that rotor stops operating, and can not turn round in the opposite direction.Thereby reach the purpose of control engine.
According to the operation process of above-mentioned a pair of rotor generation power, can be connected to each other mutual cooperation, the then double increase of its power performance between them after the combination like this with many to the sequential combination of same rotor by a rotor of an inverted rotor connection.With two pairs of rotors is that example is connected them on the casing, rely on gear or the mutual transmission of other wheel-shaped body on its armature spindle to constitute four pairs of co-operating power sources again, will with the power performance that is better than four times of former a pair of rotors by gear or other transmission device with need powered device to be connected to it kinetic energy is provided.
Second kind of technical scheme: the engine kind equipment that the dynamical system of this programme has adopted the piston structure of similar internal combustion engine to form, by with the casing of internal combustion engine in the similar magnetic of cylinder push away cylinder, be equivalent to the control magnetic barrier that spark-plug location is installed, with movable magnetic barrier like the piston type, the part identical with internal combustion engine is lubricating system, cooling system, gear box, bent axle, and electric power system is a generator, wherein the parts that increase than internal combustion engine have magnet, the piston resilient mounting, magnetic isolation plate constitutes the dynamical system of this machine jointly, it is characterized in that: one or more magnetic of this machine casing push away in the structure of cylinder, the passage of the oil-feed air inlet of no carburetor class device, the passage of emission-free discharging, cooling water tank or fin are arranged, and magnetic pushes away cylinder and is broken as two parts or many parts; Its dynamical system is equipped with control magnetic barrier that one or more magnet forms and is installed in the movable magnetic barrier of forming on the motion stops shell by one or more magnet by pushing away at each magnetic in the cylinder, movable magnetic barrier and magnetic push away and is provided with the piston resilient mounting between the cylinder.Movable magnetic barrier is connected by transmission arm with the bent axle that one or more wheel-shaped bodies are installed, the magnetic isolation plate that one or more mobilizable circular or other shape is arranged between control magnetic barrier and movable magnetic barrier, wherein a part of when this magnetic isolation plate is circular is magnetic isolation plate, another part is non-magnet material or is sky, by the connected drive link that has wheel-shaped body, wheel-shaped body on this drive link and the mutual transmission of the wheel-shaped body on the bent axle, and the outward flange of magnetic isolation plate is connected with roller or bearing, magnetic push away cylinder around one or more permeability magnetic material plate or magnetic isolation plate, the dynamical system of above structure mutual group cost machine arranged; One of control system is by being connected on the control magnetic barrier, can regulate the device of distance between control magnetic barrier and the movable magnetic barrier magnetic, between control magnetic barrier and casing, be provided with the piston resilient mounting and form jointly, two constitute control system by between control magnetic barrier and magnetic isolation plate, forming control board by permeability magnetic material that can be movable or another piece magnetic isolation plate; The generator that its electric power system comes to connect as for bent axle is formed.
Piston shell one end that described movable magnetic barrier resilient mounting is installed in the movable magnetic barrier upper magnet of parcel is provided with the interior spring composition of groove, can put into spring and be attached thereto the bumper that connects in groove, and the roller of the effect of reducing friction has been arranged on the piston shell.
Described magnetic isolation plate is that the both sides of iron plate by the roller that has been provided with the effect of reducing friction at two ends are equipped with magnet, magnet is arranged according to the opposite mode of magnetic pole strength, on be added with one deck magnet, arrange according to the mode that the different pole face is inhaled mutually, be enclosed with fixed head at outermost layer and form.
Bevel wheel or concavo-convex the wheel are arranged, with bevel wheel or the mutual transmission of live roller on the drive link that is connected with magnetic isolation plate on the described bent axle.
One of described control system is the propelling movement arm and control lever transmission mutually by the control plug shell on the magnet, control lever is connected with Control Shaft on the casing, Control Shaft is connected on the travelling gear, travelling gear is meshed with the transducing gear, by the notched plate of control, realize regulating distance between control magnetic barrier and the movable magnetic barrier with the transducing gears engaged.
Two of described control system is between control magnetic barrier and magnetic isolation plate, the control board of forming by removable iron material, have dentalation to be meshed on it, and an end is connected with a connecting rod that has sliding shoe with the shutdown gear, this sliding shoe can with the mutual transmission of the travelling arm on the Control Shaft.
Its operation process is when controlling magnetic barriers at certain position for two, one of them initial position of two movable magnetic barriers is nearer apart from the control magnetic barrier, spring on the movable magnetic barrier is in compressive state simultaneously, be non-magnetic non-magnet material between the movable magnetic barrier or be sky, because of with magnetic pole strength to the downward thrust and the resilience force of spring that generation is repelled each other, the bent axle that is connected with movable magnetic barrier is rotated, and the inclined-plane gear on the drive bent axle rotates connection inclined gear driven magnetic isolation plate corresponding mobile on the magnetic isolation plate that is engaged with.The initial position of another movable magnetic barrier is distance control magnetic barrier position far away simultaneously, and between the separated magnetic effect of magnetic isolation plate is arranged, make it and control between the magnetic barrier and do not produce active force, so this movable magnetic barrier can rotate along with the bent axle of its connection and move up, when arriving the length of spring compressed that makes when magnetic pushes away the cylinder end on the movable magnetic barrier.When magnetic isolation plate moves away second movable magnetic barrier, the position of magnetic isolation plate produces separated magnetic effect between first movable magnetic barrier and control magnetic barrier, at this moment the initial position of two movable magnetic barriers and magnetic isolation plate is put upside down mutually, realizes the constantly process of motion thereby repeat above-mentioned process again.
One of its control system is the control device that the control magnetic barrier connects, the distance of regulating control magnetic barrier and movable magnetic barrier, thus the realization of the size of magnetic thrust is to the control of this motor speed between regulating.Two be between control magnetic barrier and movable magnetic barrier, movably an iron plate or a magnetic isolation plate to be arranged, its separated magnetic effect makes two plugs not produce active force and reach control when it moves between two plugs.
Its electric power system is: many group conductive coils are arranged around movable magnetic barrier, thereby the magnetic line of force constantly cuts conductive coil generation electric energy when movable magnetic barrier moves; Also can on bent axle, connect a generator and provide electric energy for the external world by large and small gear graduation.
Beneficial effect:
The present invention is many rotor structures because of using no stator structure, cooperate each other mutually with fast transmission by the interconnective a plurality of rotors of gear, every pair of epitrochanterian magnet all can have only identical face mutually close, thereby reach solution when only utilizing repulsion or suction or mixing force, be not subjected to the shortcoming of the influence of the non-power of utilization in the time of can effectively avoiding between on-stream period any position; Its dynamical system by the active force that when meeting, produces homopolar-repulsion between the like pole end of every magnet and another epitrochanterian every magnet on the rotor, and be installed on the back springing type magnetic swing arm, in power and resistance that magnet produces, change the distance of the arm of force and fulcrum, make it always remain on the state of the power arm of force, thereby reach power and resistance always is in poised state when a certain position the failure scheme that solves greater than the resistance arm of force; Its control system is to be finished by control magnet between the adjusting rotor and the distance between the rotor magnet, has reached controllable purpose.
The basic principle that the present invention is applied to is:
One: " energy neither can produce without foundation, also can not disappear without foundation, and it can only be converted into another kind of form from a kind of form, perhaps transfers to other object from an object." be law of conservation of energy.The present invention is converted in the process of kinetic energy at magnetic energy, and its magnetic force can weaken gradually when the same magnetic pole of magnet was relative for a long time, so meet law of conservation of energy.
Its two: used that " homopolar-repulsion between the magnet, heteropole is inhaled mutually." principle.It is the source that the present invention produces power.
Its three: the basic principle of having used lever.This machine has adopted the particular design method, make the arm of force of power end in operation process, always be far longer than the arm of force of resistance end,, always be in the state of seeking balance so keep power to be far longer than resistance, the normal operation that engine is kept, thus realization is converted to the process of kinetic energy by magnetic energy.
Its four: used Newton's third law.When the same magnetic pole strength of magnet was relative, two power of the active force of generation and reaction force were that a pair of direction is opposite, equal and opposite in direction, act on collinear two power.Used this principle in the present invention, thereby made the present invention produce power.
Description of drawings
The present invention is further described below in conjunction with the drawings and specific embodiments
Note:
Figure S2007101822751D00051
Expression magnets N utmost point represents that the S pole marks of magnet has the label of this piece of letter representation magnet
Fig. 1 is last minute cross-sectional diagrammatic sketch of rotor magnet distributed architecture of a pair of rotor of first kind of execution mode
Fig. 2 is the cross-sectional diagrammatic sketch of structure of slideway between the rotor of first kind of execution mode
Fig. 3 is the back springing type magnetic swing arm of first kind of execution mode and the cross-sectional diagrammatic sketch of armature spindle structural relation
Fig. 4 is the structural representation of the magnetic swing arm tooth bar of first kind of execution mode
Fig. 5 is the cross-sectional diagrammatic sketch of structure of the clutch tooth flywheel of first kind of execution mode
Fig. 6 is the structural representation of the clutch dog of first kind of execution mode
Fig. 7 is the structure vertical profile diagrammatic sketch of the clutch tooth flywheel of first kind of execution mode
Fig. 8 is the back springing type magnetic swing arm of first kind of execution mode and the vertical profile diagrammatic sketch of armature spindle structural relation
Fig. 9 is the complete machine and the inner rotor shaft syndeton schematic diagram of first kind of execution mode
Figure 10 is the another kind of mode schematic diagram of the inner gear shaft transmission of first kind of execution mode
Figure 11 is the cross-sectional diagrammatic sketch of control system structure of first kind of execution mode
Figure 12 is the control system structure vertical profile diagrammatic sketch of first kind of execution mode
Figure 13 is the cross-sectional diagrammatic sketch of another part rotor magnet distributed architecture on the rotor of first kind of execution mode
Figure 14 is the cross-sectional diagrammatic sketch of a pair of rotor upper rotor part magnet overall distribution of first kind of execution mode
Figure 15 is the vertical profile diagrammatic sketch of each magnet initial position and other parts in the complete machine of second kind of execution mode
Figure 16 is Figure 15 cross-sectional diagrammatic sketch behind each magnet and magnetic isolation plate change in location on latter two movable magnetic barrier that does work
Figure 17 is the cross-sectional diagrammatic sketch of a kind of control structure of square magnetic isolation plate in second kind of execution mode
Figure 18 is the cross-sectional diagrammatic sketch of another kind of control structure of square magnetic isolation plate in second kind of execution mode
Figure 19 is the vertical profile diagrammatic sketch that has the movable magnetic barrier structure of spring in second kind of execution mode
Figure 20 is the cross-sectional diagrammatic sketch that has the movable magnetic barrier structure of spring in second kind of execution mode
Figure 21 is the vertical face diagrammatic sketch of square magnetic isolation plate structure in second kind of execution mode
Figure 22 is the plane of structure diagrammatic sketch of circular magnetic isolation plate structure in second kind of execution mode
Figure 23 is the side cut-away view when control system is closed in second kind of execution mode
Figure 24 is the control system of Figure 23 side cut-away view when open
Embodiment
First kind of design side of the present invention by the structure of rotor be by rotor magnet 9, buffering magnet 8 and magnet pulley 79 are installed on the back springing type magnetic swing arm 80 as shown in Figure 1, back springing type magnetic swing arm 80 indirectly with the external tooth flywheel sleeve 6 mutual transmissions that are installed on the armature spindle 3, external tooth flywheel sleeve 6 and the internal tooth flywheel sleeve 5 mutual transmissions that are connected on the inner gear shaft 4, magnet slideway 76 is installed between two rotors, and forms and control magnet 10 to accompany connecting plate 12 in the middle of relatively with magnetic pole strength by magnet 11,13.
Slideway between the rotor 76 is installed between casing 55 and the control slideway 75 as shown in Figure 2, is positioned on rotor gear 1 and the inverted rotor gear 2.
Back springing type magnetic swing arm is made up of with magnetic swing arm tooth bar 7 two large divisions magnetic swing arm shell 26 as shown in Figure 3.The fixed-wing 28 usefulness screws 29 of magnetic swing arm shell 26 are fixed on the armature spindle 3, and the auxiliary spring 27 of establishing main spring 18 and its afterbody between the magnet fixed mount 16 of magnet pulley 79 and the magnetic swing arm shell is installed on the magnetic swing arm tooth bar 7.Magnetic swing arm tooth bar is made up of the body of rod 7, transmission tooth 15, magnet fixed mount 16 its internal fixation rotor magnets 9 and connecting plate 14 and buffering magnet 8, magnet pulley 79, main spring 18, spring shim 17 and inclined slip 19 as shown in Figure 4.The gear wheel 24 that external tooth flywheel sleeve 6 is installed in the magnetic swing arm shell 26 and is connected on the external tooth flywheel core is formed back springing type magnetic swing arms jointly.The outer internal tooth flywheel sleeve 5 of external tooth flywheel sleeve 6 and the internal tooth flywheel core 31 on being fixed on inner gear shaft 4 is meshed.Gear wheel 24 is meshed with denticle wheel 25 and clutch tooth flywheel sleeve 23 on being fixed on armature spindle 3.Be not in contact with one another during the initial position of the inclined slip 19 on the roller 21 of drive link 20 front ends on the clutch tooth flywheel core 22 and the magnetic swing arm tooth bar 7 as shown in Figure 4.
The concrete structure of clutch tooth flywheel shown in Fig. 5,7 by tooth flywheel core 22, and core on clutch dog 37, tooth flywheel sleeve 23, and cover tooth 38, tapered rod 34, awl bar fixed mount 32, ball 33, spring 18, drive link 20, and awl bar fixed mount 32 on roller 21 common clutch tooth flywheels of forming on the drive link (20) that connects by fixed axis 35.Clutch dog is by the expansion link 41 that has spring 40 as shown in Figure 6, at its expansion link tooth 39 that can be meshed with the flywheel sleeve tooth near the shape of the head of an end of flywheel sleeve tooth, the other end of expansion link 41 is inlayed as in the clutch dog shell 42, returns to initial position after the spring 40 of expansion link 41 can move it.The gag lever post 43 that extends through the free longitudinally-moving of shell external enwergy is arranged in clutch dog shell 42, get back to initial position after having spring 44 that housing is moved together with expansion link 41 between gag lever post 43 and the clutch dog shell 43, ball free to rotate 33 is arranged at the other end of housing.Ball 33 and tapered rod 34 initial positions are not for contacting, when tapered rod 34 moves when moving, overstocking the whole clutch dog of ball 33 drives moves to flywheel sleeve tooth 38 directions, the expansion link tooth 39 of clutch dog front end contacts with flywheel sleeve tooth 38 and is meshed, the one direction of flywheel sleeve 23 will drive flywheel core 22 and rotate when rotating, when flywheel sleeve 23 when other direction rotates, because expansion link tooth 39 is parallel with the inclined-plane of flywheel sleeve tooth 38, so overstock expansion link 41 phase medial movement, can not drive clutch core 22 rotates, when tapered rod 34 leaves ball 33, clutch dog 37 integral body move inward expansion link 41 because the effect of spring 40 will return to initial position.The tapered rod 34 of clutch tooth flywheel connects drive link 20, the other end of drive link 20 is connected with a roller 21, do not contact with the magnetic swing arm tooth bar initial position of back springing type magnetic swing arm, when the tooth bar moves to certain position, inclined slip on it touches roller 21 and moves up, roller 21 is moved tapered rod 34 by drive link 20 to clutch tooth flywheel core 22, extruding clutch dog 37 makes clutch tooth flywheel sleeve 23 drive its core and rotates, and finishes clutch tooth flywheel.
Fig. 8 is the vertical profile diagrammatic sketch of back springing type magnetic swing arm and armature spindle structural relation.Be fixed on by screw 29 to be provided with between each face of back springing type magnetic swing arm shell 26 on the armature spindle 3 and magnetic swing arm tooth bar 7 to roll and hold 66 and reduce friction, magnetic swing arm tooth bar 7 and gear wheel 24 mutual transmissions, gear wheel is fixed on the core of external tooth flywheel sleeve 6, external tooth flywheel sleeve 6 is meshing with each other with internal tooth flywheel sleeve 5, gear wheel 24 and the last one group of intermeshing clutch tooth of back springing type magnetic swing arm gear wheel flywheel 77 coaxial denticle wheels 78 are meshed, and be meshed with clutch tooth flywheel sleeve 23 simultaneously, roller 21 on the drive link 20 of clutch tooth flywheel core 22 is positioned at magnetic swing arm tooth bar 7 tops, leaves to make roller 21 move up and down the groove 56 in space on back springing type magnetic swing arm shell 26.Clutch tooth flywheel sleeve 23 connects another denticle wheel 57 by clutch shaft 36 and is meshed with next group gear wheel 60 gear wheel, clutch shaft 36 by fixed lever 51 fixing with armature spindle 3 on, the external tooth flywheel sleeve 61 that gear wheel connects is meshed with internal tooth flywheel sleeve 58, with the internal tooth flywheel sleeve 5,58,59 of last one group of identical engagement fixing with same inner gear shaft 4 on, the rest may be inferred all back springing type swing arm is all with identical connected mode transmission.Inner gear shaft 4 passes rotor gear 1 and not transmission mutually, and the interior bevel wheel 45 that the lower end connects is meshed with first bevel wheel 46, and first bevel wheel 46 is by inclined-plane wheel shaft 47 and the 52 mutual transmissions of second bevel wheel.
Fig. 9 is for being complete machine and inner gear shaft syndeton, and the armature spindle 3 of rotor is installed on cover 53 and the gear box 52 by bearing 54, and wherein rotor gear 1,2 is positioned at gear box 52, and casing 55 is fixed on cover 53 and the gear box 52 by screw 29.Between the inner gear shaft inclined- plane gear 45,63 on the rotor inner gear shaft 4 by first bevel wheel 46 on the inclined-plane wheel shaft 47 that coexists and the 52 mutual transmissions of second bevel wheel.Or as shown in figure 10 between the inner gear shaft 4 of rotor, by being separately fixed at the transmission that is meshing with each other of rotor bevel wheel 64,65 on the rotor gear 1,2 and inner gear shaft inclined-plane gear 45,63.Its change-speed gearing 48 is meshed with inverted rotor gear 2, provides power in the external world mutually by coaxial output gear 50.
Figure 11,12 is depicted as the cross-sectional diagrammatic sketch of control system structure, control magnet 10 between the rotor gear 1,2 is installed on the control lever 68,71 that has teeth 73, control magnet 10 parts are positioned at control magnetic slideway 75 on the casing 55, control lever 68 parts are positioned at control frame 74, on control frame 74, the control gear 67,70 that is connected on the control gear axle 69 is installed, dwang 72 is arranged on the control gear axle 69, and dwang 72 rotates the mobile controlled function that reaches that will drive control magnet 10.
Figure 13 be on the rotor except that rotor magnet shown in Figure 1 the initial position of other rotor magnet, rotor magnet B, b, D, d are positioned at magnet slideway 76, and rotor magnet F, f and H, h are positioned at outside the magnet slideway, control magnet 10 closest approaches do not have rotor magnet.The initial position of two group rotor magnets constitutes the initial condition of the magnet of rotor jointly.
Figure 14 is the initial position of whole rotor magnets on the rotor, because rotor magnet A, a are nearest apart from control magnet 10, rotor gear 1 and inverted rotor gear 2 is rotated in the opposite direction.Rotor magnet B, b will be positioned at the position of rotor magnet A, a after rotating, and promote rotor gear 1 and inverted rotor gear 2 again with opposite direction rotation, thereby circulation makes commentaries on classics gear rotation generation power continuously so successively, provides kinetic energy to the needs powered device.
Second kind of execution mode of the present invention is:
Its dynamical system is by having two magnetic with cooling water tank 106 to push away cylinder 112 in the casing 103 as shown in figure 15, each magnetic pushes away has two with magnetic pole relative magnet A, a or magnet B, b in the cylinder 112, wherein magnet a, b are installed in the movable magnetic barrier 113 of composition in the piston shell 114 that has spring 118,120 of corresponding size; Magnet A, B are installed in and form control magnetic barrier 111 in the control plug shell 110 that has spring 119 of corresponding size, propelling movement arm 87 on the control plug shell 110 passes the hollow of cored screw 102, cored screw 102 is fixing by screw thread and casing 103, pushes arm 87 and is connected with pusher.Each magnetic pushes away between two magnets of cylinder 112 a mobilizable magnetic isolation plate 99, between magnetic isolation plate 99 and control magnetic barrier 111, a mobilizable control board 95 is arranged, magnetic is pushed away cylinder be divided into three parts, magnetic isolation plate 99 is connected power transmission shaft 100, on power transmission shaft 100, be connected with inclined-plane gear 115 or as the live roller 97 of Figure 17, with inclined-plane gear on the bent axle or concavo-convexly take turns 98 mutual transmissions, the another kind of kind of drive is that the transmission arm 107 transmission magnetic isolation plates 99 on the bent axle 108 have been formed the dynamical system of present embodiment at the bent axle 108 that is installed in by gear drive on the bent axle 101 on the casing 103.Control magnetic barrier 111 upper magnet A in Figure 15, the initial position of B is positioned on the same horizontal line, close together can not play separated magnetic effect for non-magnet material 105 between therefore at this moment between the initial position of movable magnetic barrier 113 upper magnet a and the magnet A, the spring 118 that is in compressive state simultaneously produces resilience force, and they are with the relative mode of magnetic pole strength, therefore produce the thrust of repelling mutually, magnet a and the transmission arm 107 on it are moved down promote bent axle 101 rotations, and every disk 99 by inclined-plane gear or live roller as shown in figure 17 97 on its power transmission shaft 100, take turns 98 mutual transmissions with inclined-plane gear on the bent axle 101 or as shown in figure 17 concavo-convex, the transmission arm 107 transmission magnetic isolation plates of bent axle 108 as shown in figure 18 again, make magnetic isolation plate 99 along with the rotation of bent axle 101 shift position, the initial position fixed distance magnet B of movable magnetic barrier 113 upper magnet b is far away simultaneously, and between have and between the separated magnetic effect of disk 99, do not produce active force, move up because of the effect of magnet a makes bent axle 101 rotations drive magnet b again.
Figure 16 shows that Figure 15 post exercise result, the position of magnet a is become and magnet A between have every disk 99 and play separated magnetic effect, therefore when this position, do not produce dynamic action; And the position of magnet b becomes and magnet B between the position of non-magnet material 105 of no separated magnetic effect, spring 120 on the movable magnetic barrier is compressed simultaneously, again because of the same magnetic pole strength close together of these two magnets, produce the power that repels mutually so have, make bent axle 101 continue rotation by transmission arm 107, simultaneously magnetic isolation plate 99 also corresponding mobile so circulate and produce kinetic energy and by being connected the gear 116 outside output kinetic energies on the bent axle 101.
Piston shell 114 1 ends that movable magnetic barrier resilient mounting shown in Figure 19,20 is installed on the movable magnetic barrier 113 upper magnet b of parcel are provided with the groove that groove inwall 126 and groove outer wall 125 constitute, can put into spring 120 and be attached thereto the bumper 124 that connects, the roller 85 of the effect of reducing friction has been arranged on the piston shell 114.
Square as shown in figure 21 magnetic isolation plate is equipped with magnet by the both sides of the iron plate 81 of the roller 85 that has been provided with the effect of reducing friction at two ends, according to arranging with opposite magnetic pole strength with magnet 121 as magnet 83, on be added with one deck magnet, according to arranging with 128 modes of inhaling mutually with the different pole face as magnet 127, be enclosed with fixed head 82 at outermost layer and form, do not have permeability magnetic material and magnet arrangements in the non-position that utilizes.
Circular as shown in figure 22 magnetic isolation plate is equipped with the magnet 83 and 121 that magnet arrangements mode is as shown in figure 21 formed by reducing friction and increasing in the effect bearing 123 of its stability, rearranges at remaining position 122 no magnet and permeability magnetic material.
Its control system be by: as shown in figure 23 roller 85 and control lever 105 transmission are mutually arranged on the propelling movement arm 87 of the control plug shell 110 on magnet A, the B as shown in figure 15, Control Shaft 91 mutual transmissions on fixing and the casing 103, Control Shaft 91 is connected on the travelling gear 88, travelling gear 88 is meshed with transducing gear 94, by the notched plate 96 of control with 94 engagements of transducing gear, realize regulating distance between control magnetic barrier 111 and the movable magnetic barrier, thereby the variation of magnetic force between having regulated reaches the purpose of regulating machine speed.
Figure 23 is the another kind of mode of control system, on the control board between magnet B, the b 95, there is dentalation to be meshed with shutdown gear 93, its control board 95 also is connected with a connecting rod 92 that has sliding shoe 90, this sliding shoe 90 can with the travelling arm 89 mutual transmissions on the Control Shaft.
When shutdown gear 93 shown in Figure 24 is connected with as shown in Figure 1 motor gear 87 rotation, shutdown gear 93 drives control board 95 and moves between magnet B, the b, because of control board 95 is iron plate or magnetic isolation plate, so play separated magnetic effect this machine is quit work, control lever 105 drives Control Shaft 91 rotations along with travelling arm 89 and moves up simultaneously, and the propelling movement arm 87 that drives on the control plug shell moves up.
Its electric power system be by: be shown in as Figure 15,16 and connect a generator (109) by large and small gear graduation on the bent axle 101 and provide electric energy for the external world.

Claims (9)

1. method that adopts no stator technology to be converted to the engine kind equipment of kinetic energy by magnetic energy, by magnet, rotor, the control magnet, the magnet slideway, gear, back springing type magnetic swing arm, the tooth flywheel, clutch tooth flywheel, casing, cover, gear box is formed, it is characterized in that: dynamical system of the present invention has adopted the design of no stator structure, realize being converted to the process of kinetic energy by cooperate mutually method that magnetic energy is converted to kinetic energy of one or more epitrochanterian magnets by magnetic energy, the dynamical system of this machine is to finish by cooperating mutually between the corresponding rotor magnet (9) on one or more rotors, each rotor is outside by institute's magnetic pole strength that utilizes of one or more rotor magnet (9), and it is arranged evenly circular with the unified even angle that tilts clockwise or counterclockwise, every rotor magnet (9) is installed on the magnetic axis linking arm (80), magnetic axis linking arm (80) is connected according to the opposite position of rotor magnet (9) and has gear (1,2) on the armature spindle (3), be provided with inner gear shaft (4) in the armature spindle (3) with its concentric, be connected with on the inner gear shaft (4) and the corresponding internal gear of back springing type magnetic swing arm (80) (5), between magnetic axis linking arm (80) and the armature spindle (3) a plurality of wheel-shaped bodies (5 are arranged, 6,23,24,25) transmission mutually, gear (1 on the armature spindle (3), 2) transmission mutually, between the inner gear shaft (4) or with rotor gear (1,2) mutual transmission is formed dynamical system, the gear (1 on the armature spindle (3) jointly between, 2) be positioned at gear box (52) and provide power with the mutual transmission of change pulley (48) to the external world; Control system is made up of one or more magnet (11,13) at position between rotor, control magnet (10) is installed on the control lever (68,71) that has teeth (73), control magnet (10) part is positioned at casing (55) and goes up control magnetic slideway (75), control lever (68) part is positioned at control frame (74), the control gear (67,70) that is connected on control tooth (69) wheel shaft is being installed on the control frame (74), dwang (72) is arranged on the control gear axle (69), and dwang (72) rotates the mobile controlled function that reaches that will drive control magnet (10).
2. a kind ofly adopt no stator technology to be converted to the method for the engine kind equipment of kinetic energy by magnetic energy according to claim 1 is described, it is characterized in that: be provided with the slideway (76) of limit magnet running track between the described rotor, slideway 76 is installed on the casings (55).
3. according to the described a kind of method that adopts no stator technology to be converted to the engine kind equipment of kinetic energy by magnetic energy of claim 1, it is characterized in that: back springing type magnetic swing arm (80) is by spring (18 is installed, 27) the magnetic swing arm tooth bar (7) that has teeth (15), wherein one side has the inclined slip (19) of sloping sample, its spring (18,27) a end connects magnetic swing arm tooth bar (7) other end and connects magnetic swing arm shell (26), magnet fixed mount (16) internal fixation rotor magnet (9) at magnetic swing arm tooth bar (7), the edge of magnet fixed mount (16) is provided with one or more magnet pulleys (79), and the edge of magnet pulley (79) exceeds the edge of rotor magnet (9).
4. according to the described a kind of method that adopts no stator technology to be converted to the engine kind equipment of kinetic energy by magnetic energy of claim 1, it is characterized in that: the armature spindle of stating (3) has a plurality of gears (5,6,23,24,25) transmission mutually, in hollow rotor shaft (3), be provided with inner gear shaft (4) with its concentric, position and the corresponding internal tooth flywheel of quantity (5) that back springing type magnetic swing arm (80) is arranged on the inner gear shaft (4), be meshed with the external tooth flywheel sleeve (6) on being installed in armature spindle (3) or magnetic swing arm shell (26), the transmission mutually of the gear wheel that has on the external tooth flywheel core (24) and magnetic swing arm tooth bar (7), and be connected armature spindle on clutch tooth flywheel sleeve (23) and little gear wheel (25) the common armature spindle (3) of forming that is meshed.
5. describedly a kind ofly adopt no stator technology to be converted to the method for the engine kind equipment of kinetic energy according to claim 1,4, it is characterized in that by magnetic energy: described clutch tooth flywheel (23) by the flywheel core that is provided with two or more clutch dogs (37) (22), and the outer flywheel sleeve (23) of flywheel core (22), tapered rod (34), awl bar fixed mount (32), ball (33), spring (18), drive link (20), and drive link (20) on roller (21) form jointly.
6. according to the described a kind of method that adopts no stator technology to be converted to the engine kind equipment of kinetic energy by magnetic energy of claim 1, it is characterized in that: described clutch dog (37) is by the expansion link that has spring (40) (41), at it expansion link tooth (39) of oblique thread form is arranged near flywheel sleeve tooth (38) one termination portions, the other end of expansion link (41) is inlaid in the clutch dog shell (42), the gag lever post (43) that extends through the free longitudinally-moving of shell external enwergy is arranged in clutch dog shell (42), be provided with spring (44) between gag lever post (43) and the clutch dog shell (42), ball free to rotate (33) arranged at the other end of clutch dog shell (42).
7. according to the described a kind of method that adopts no stator technology to be converted to the engine kind equipment of kinetic energy by magnetic energy of claim 1, it is characterized in that: described control magnet (10) is the position between one or more magnet (11,13) installation and the rotor, institute's magnetic pole strength that utilizes of magnet (11,13) is outside, the non-magnetic pole strength that utilizes of magnet is relative, and the middle permeability magnetic material (12) of using is formed together.
8. engine kind equipment that adopts piston structure to be converted to kinetic energy by magnetic energy, it is the engine kind equipment of the piston structure composition of similar internal combustion engine, by with the casing of internal combustion engine in the similar magnetic of cylinder push away cylinder, be equivalent to the control magnetic barrier that spark-plug location is installed, with movable magnetic barrier like the piston type, the part identical with internal combustion engine is lubricating system, cooling system, gear box, bent axle, and electric power system is a generator, wherein the parts that increase than internal combustion engine have magnet, the piston resilient mounting, magnetic isolation plate constitutes the dynamical system of this machine jointly, it is characterized in that: one or more magnetic of this machine casing (103) push away in the structure of cylinder (112), the passage of the oil-feed air inlet of no carburetor class device, the passage of emission-free discharging, cooling water tank (106) or fin are arranged, and magnetic pushes away cylinder (112) and is broken as two parts or many parts; Its dynamical system is by pushing away in the cylinder (112) control magnetic barrier (111) that one or more magnet (A or B) installed and resilient mounting (119) form at each magnetic and being installed in motion stops shell (114) and resilient mounting (118 by one or more magnet (a or b), 120) go up the movable magnetic barrier of forming (113), movable magnetic barrier (113) is connected by transmission arm (107) with the bent axle that one or more wheel-shaped bodies (115) are installed (101), the magnetic isolation plate (99) that one or more mobilizable circular or other shape is arranged between control magnetic barrier (111) and movable magnetic barrier (113), magnetic isolation plate (99) is to be provided with on the permeability magnetic material (81) of roller or bearing (85) by the edge polylith magnet (83 is installed, 121,127,128), magnet (83,121) be arranged in permeability magnetic material (81) both sides, form magnetic isolation plate jointly in non-no permeability magnetic material in position (122) and the magnet arrangements utilized; Magnetic isolation plate (99) has two kinds with the kind of drive of bent axle (101), the first is by the connected drive link (100) that has gear (115) or live roller (97), gear or concavo-convex wheel the (98) transmission mutually on gear (115) on this drive link (100) or live roller (97) and the bent axle; Its two, be by the bent axle (108) on the casing (103) and bent axle (101) by wheel-shaped body (115) transmission mutually, transmission arm (107) the transmission magnetic isolation plate (99) of bent axle (108) is formed; Magnetic push away cylinder (112) around one or more permeability magnetic material plate (81) or magnetic isolation plate (99), the dynamical system of above structure mutual group cost machine arranged; One of control system is by being connected on the control magnetic barrier (111), can regulate the device of distance between control magnetic barrier (111) and the movable magnetic barrier magnetic (95) and form, two by forming control board (95) formation control system by permeability magnetic material or another piece magnetic isolation plate that can activity between control magnetic barrier (111) and the magnetic isolation plate (99); Its electric power system comes to go up the transmission after the change-speed gearing speed change that connects as for bent axle (101) and forms for generator (109).
9. according to the described a kind of engine kind equipment that adopts piston structure to be converted to kinetic energy by magnetic energy of claim 9, it is characterized in that: described magnetic isolation plate (99) is to be provided with on the permeability magnetic material (81) of roller or bearing (85) by the edge magnet (83 is installed, 121,127,128), magnet (83,121) be arranged in permeability magnetic material (81) both sides with opposite magnetic pole strength, magnet (83,121) go up the additional mode that has one deck to inhale mutually and arrange magnet (127 with the different pole face, 128), be enclosed with fixed head (82) at outermost layer, form magnetic isolation plate jointly in non-no permeability magnetic material in position (122) and the magnet arrangements utilized.
CNA2007101822751A 2006-10-19 2007-10-11 Controllable magnetic combustion machine Pending CN101252332A (en)

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CNA2007101822751A CN101252332A (en) 2006-10-19 2007-10-11 Controllable magnetic combustion machine

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CN 200610016167 CN1945955A (en) 2006-10-19 2006-10-19 Magnetic burning machine
CN200610016167.2 2006-10-19
CNA2007101822751A CN101252332A (en) 2006-10-19 2007-10-11 Controllable magnetic combustion machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102394531A (en) * 2011-06-30 2012-03-28 武光杰 Rocker arm lever flywheel rotor
CN108386449A (en) * 2018-03-30 2018-08-10 苏州容浦机电科技有限公司 A kind of magnetic suspension bearing for switched reluctance machines

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109510512A (en) * 2018-12-10 2019-03-22 徐靖 A kind of double magnetic two-stroke sides Cylinder engine
CN110556987A (en) * 2019-10-17 2019-12-10 福一开集团有限公司 Stator-free multi-loop energy-saving motor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102394531A (en) * 2011-06-30 2012-03-28 武光杰 Rocker arm lever flywheel rotor
CN102394531B (en) * 2011-06-30 2013-08-07 武光杰 Rocker arm lever flywheel rotor
CN108386449A (en) * 2018-03-30 2018-08-10 苏州容浦机电科技有限公司 A kind of magnetic suspension bearing for switched reluctance machines

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