Gravitational energy engine

Through the design of the gravity energy engine, the potential energy and inertial force of the gravity ball are utilized, combined with the electromagnetic coil and the rotary adjustment component, the high cost and pollution problems of fuel engines are solved, and low-cost and low-pollution power output is achieved, which is suitable for a variety of mechanical equipment.

CN223434439UActive Publication Date: 2025-10-14洪建军
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Patent Information

Application Number
CN202421956983.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-08-15
Filing Date
2024-08-13
Publication Date
2025-10-14
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

Existing fuel engines are expensive and pollute the environment, and a low-cost, environmentally friendly alternative is needed.

Method used

It adopts a gravity energy engine, and through the design of a power plate, a gravity ball energy storage cylinder and an extended leaf spring cylinder, it uses the potential energy and inertial force of the gravity ball to achieve power output. Combined with the electromagnetic coil and the rotary adjustment component, it optimizes the power transmission and energy storage process.

Benefits of technology

It realizes low-cost and low-pollution power output. The power disc rotates continuously and outputs power through the power output part. It has a simple structure and high energy conversion efficiency and is suitable for a variety of mechanical equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a gravitational energy engine, which is characterized in that a first gravity piston quickly descends through the adjustment of a motor by utilizing the gravity of the first gravity piston, compresses an extension plate spring barrel and then transmits to a gravity ball energy storage spring barrel, and meanwhile, the air pressure on the opposite side is reduced, and a gravity ball in the gravity ball energy storage spring barrel quickly ascends; solenoid coils are arranged on the gravity ball from the lower energy storage barrel to the upper energy storage barrel and in the middle to accelerate the gravity ball upwards, so that the gravity ball can move to the highest required position of the upper energy storage barrel and is locked, the gravity ball descends under the action of gravity, gravitational potential energy is converted into kinetic energy, the gravity ball has inertia while the gravity ball ascends upwards quickly, and the kinetic energy is converted into kinetic energy. At the moment, inertia of the gravity ball enables counter-acting force borne by the extension plate spring barrel to be exerted on the engine, the extension plate spring barrel serves as a fulcrum for launching the gravity ball, the extension plate serves as a lengthened lever, therefore, larger counter-acting force can be generated, and the power output part connected with the power large disc achieves power output at the same time.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of engine, and particularly relates to gravity energy engine. BACKGROUND

[0002] The existing fuel engine generates power by consuming fuel, and in the process of consuming fuel, the cost needed for generating power is relatively high, and a large amount of tail gas is generated in the process of using fuel, thereby polluting the environment. With the development of society, new energy developed for the purpose of protecting the environment, improving power conversion efficiency and reducing power cost gradually enters the public's field of vision. In order to overcome the above-mentioned shortcomings of the fuel engine, it is necessary to provide an engine with low operating cost and low carbon environmental protection. SUMMARY

[0003] The utility model aims at providing gravity energy engine, has the effect that operating cost is low, environmental protection.

[0004] The utility model discloses a above-mentioned technical purpose is through following technical scheme can be realized: gravity energy engine, including support spare, setting on the support spare power part, the power part includes rotatable power big dish, with power big dish link's power output part, power big dish's four launch tube's movable part's center position is in a square four corners, four corners to engine center axis's distance can increase or decrease according to need, the appearance of power big dish can be any shape, be equipped with first gravity piston and at least two groups energy storage assembly, a gravity ball on the power big dish, the energy storage assembly includes install first gravity cylinder on the power big dish, two gravity ball energy storage cylinder that rotate and be connected with power big dish, two rotation adjusting components one that adjust two gravity ball energy storage cylinder rotation respectively, two gravity ball energy storage spring cylinder that install on two gravity ball energy storage cylinder respectively, have two groups gravity ball energy storage cylinder, and the center position of power big dish is arranged 90 degrees, install two groups extension plate that are symmetrical on the power big dish up and down left and right, two groups extension plate spring cylinder that install on two groups extension plate respectively, and extension plate spring cylinder is the spring cylinder that is far away from engine center axis position, two first gravity cylinder reciprocating activity seal in has first gravity piston respectively, two first pipes that are communicated respectively have on the first gravity cylinder two ends, and the air inlet of extension plate spring cylinder on the left and right sides on the extension plate is communicated respectively with the first pipe up and down, and first gravity piston passes through adjusting motor three up and down adjustment, to change the air pressure in the left and right sides extension plate spring cylinder, it is need to explain that the weight of first gravity piston is the weight of engine gravity ball about twice, and first gravity cylinder is at engine center position, and the maximum stroke of first gravity piston in first gravity cylinder is the 1 / 3 of first gravity cylinder total length, when first gravity piston is in the middle of first gravity cylinder, the air pressure in the left and right sides extension plate spring cylinder of extension plate is basically consistent, and the air pressure is basically consistent with the weight of gravity ball, when the engine works, first gravity piston is at the highest vertical height of first gravity cylinder, at this moment, the air pressure in the air gravity ball energy storage cylinder on the left and right sides of first gravity cylinder is greater on the right than on the left, when the engine needs to work, first gravity piston has adjusting motor three drive under the action of first gravity piston gravity, first gravity piston makes the air pressure in the gravity ball energy storage cylinder of engine right lower corner gravity ball that first gravity piston fast downward rises rapidly, simultaneously suddenly opens the brake device or fixing device of this gravity ball energy storage cylinder, at this moment, gravity ball is pushed up by gravity ball energy storage cylinder piston and is launched, since the launch position of gravity ball is a certain distance from engine center axis, so when launching to the farthest engine right upper corner, gravity ball is locked in gravity ball energy storage cylinder, at this moment, gravity ball is at engine top dead center after about 1:30 o'clock position, since the gravity ball gravity is downward to engine work, downward work is about 4:30 o'clock, that is, gravity ball downward work is about 90 degrees, during this gravity ball work, the distance of gravity ball from engine center axis position is far greater than,The distance of the gravity ball weight from the center axis, that is, the gravity potential energy formed by the gravity ball downward to the engine, is much greater than the resistance formed by the gravity ball upward to the engine with only one gravity ball weight, so as to make the engine continue to run. When the gravity ball is launched, the first gravity piston lower air pipe is first connected to the extended plate spring cylinder bottom air inlet, and then connected to the third gravity ball energy storage cylinder air spring bottom air inlet from the extended plate spring cylinder upper air outlet. The direction of the gravity ball energy storage cylinder is consistent with that of the extended plate spring cylinder, so the force direction is also consistent. In the process of launching the gravity ball, the inertia of the gravity ball forms a huge reaction force to the bottom of the extended plate spring cylinder, which serves as the fulcrum for launching the gravity ball. This fulcrum is far away from the center axis of the engine, and under the action of the lever principle, it will generate greater torque to the engine. Before the launch of the gravity ball, the gravity ball energy storage cylinder port at the upper right corner of the engine is aligned with the launch port at the lower right corner of the engine under the drive of the motor. In the launching process, the electromagnetic coil or magnetic coil outside the gravity ball energy storage cylinder will simultaneously accelerate the gravity ball upward, and the air pressure of the air spring of the gravity ball energy storage cylinder above is much smaller than that of the air spring of the launch gravity ball energy storage cylinder below, so that the gravity ball is more easily pushed to a position farther away from the center axis of the engine, forming a greater gravity potential energy to the engine. The engine launches once every 90 degrees, that is, it works once. The engine works 4 times in one revolution. This gravity energy engine is similar to the old 4-cylinder diesel engine that I repaired more than 20 years ago. The gravity piston of the gravity energy engine is similar to the high-pressure oil pump plunger of the diesel engine. When the gravity piston works downward, it injects air pressure into the air spring of the extended plate spring cylinder and the third gravity ball energy storage cylinder, just like the high-pressure oil pump plunger of the diesel engine injecting high-pressure diesel oil into the high-pressure oil nozzle. When the gravity energy engine launches the gravity ball, it is like the high-pressure oil nozzle of the diesel engine spraying high-pressure diesel oil into the combustion chamber. The fulcrum under the extended plate spring cylinder produces a large gravity potential energy to the gravity energy engine in an instant when the gravity ball is launched upward due to the huge reaction force caused by the inertia of the gravity ball, just like the huge torque generated by the diesel engine crankshaft when the diesel fuel explodes. The diesel engine crankshaft completes a working cycle in two revolutions, and the 4-cylinder diesel engine crankshaft sprays oil 4 times and works 4 times in two revolutions. The gravity energy engine crankshaft completes a working cycle in one revolution, and also works 4 times, which is considered as a 4-cylinder gravity energy engine. Increasing one set of the same 4-cylinder gravity energy engine on the same engine center axis is a 8-cylinder gravity energy engine, and increasing two sets of the same gravity energy engine is a 12-cylinder gravity energy engine. In this way, the output power of the gravity energy engine can be increased. The distance from the extended plate spring cylinder to the power disc center axis is greater than the distance from the gravity ball energy storage cylinder to the power disc center axis.It can also be more than several times a distance. The working principle of the second gravity cylinder is basically the same as that of the first gravity cylinder. The extension plate spring cylinder is provided with a second air spring piston, the first pipeline is communicated in the extension plate spring cylinder, the second pipeline is also communicated in the extension plate spring cylinder, the second pipeline is communicated with the gravity ball energy storage spring cylinder, the gravity ball energy storage spring cylinder is provided with a first air spring piston, the first air spring piston is connected with a first top rod, the first top rod extends into the gravity ball energy storage cylinder, the first top rod is connected with a gravity ball piston, the gravity ball piston is provided with a containing groove and a gravity ball fixing device, the containing groove is used for containing the gravity ball, and the gravity ball fixing device is used for locking or unlocking the position of the gravity ball in the containing groove.

[0005] By adopting the above technical scheme, the power disc rotates and outputs power through the power output part. The number of gravity balls is one, which is locked in the containing groove of the gravity ball piston by the gravity ball fixing device. The power disc rotates to drive the energy storage assembly to rotate around the center of the power disc. The engine rotates clockwise, and can also be designed to rotate counterclockwise. When the gravity ball energy storage cylinder moves to a position below the center of the power disc and is in a vertical state with the opening upward, the position is the lower right corner, and the position below the 4 o'clock and half o'clock of the engine is the lower right corner. When the gravity ball energy storage cylinder moves to a position above the center of the power disc and is in a vertical state with the opening downward, the position is the upper right corner, and the position below the 1 o'clock and half o'clock of the engine is the upper right corner. The lower right corner is located directly below the upper right corner. The rotation adjusting assembly is used for adjusting the posture of the gravity ball energy storage cylinder on the power disc, so that the gravity ball energy storage cylinder is in a vertical state with the opening upward when it is in the lower right corner. When the gravity ball energy storage cylinder is in the upper right corner, it is in a vertical state with the opening downward, so that the opening of the gravity ball energy storage cylinder in the lower right corner is aligned with the opening of the gravity ball energy storage cylinder in the upper right corner.

[0006] The gravity ball energy storage cylinder where the gravity ball is located rotates with the power disc. When the gravity ball energy storage cylinder approaches lower right cornerWhen the first gravity cylinder is in the downward position, the first gravity piston in the first gravity cylinder descends, squeezing the air inside. Since the first gravity cylinder is connected to the extension leaf spring barrel via the first pipe, the air inside the extension leaf spring barrel is compressed. The extension leaf spring barrel is then connected to the gravity ball energy storage spring barrel via the second pipe. The compressed air inside the gravity ball energy storage spring barrel increases in pressure, which is transmitted to the gravity ball piston via the first air spring piston and connecting rod. When the gravity ball energy storage cylinder is at the downward point, the gravity ball piston is lifted and moves upward. At this point, the gravity ball fixing device unlocks the position of the gravity ball, allowing the gravity ball to move upward and enter the receiving groove on the gravity ball piston in the gravity ball energy storage cylinder at the upward point. It is locked in the receiving groove by the gravity ball fixing device. During this process, the kinetic energy of the gravity ball is converted into gravitational potential energy. Simultaneously, at the moment the gravity ball piston and gravity ball move upward, the extension leaf spring barrel is also subjected to an opposing force, which is transmitted to the extension plate. The extension plate, subjected to the force, promotes the rotation of the power plate. One of the functions of the extension plate is to set the position of the extension plate spring tube away from the power disc. The point where the extension plate is subjected to the force is farther away from the power disc, which better promotes the rotation of the power disc.

[0007] As the power disc continues to rotate, the gravity ball energy storage cylinder located at the upper point moves downward to the point. At this time, the gravitational potential energy of the gravity ball is converted into kinetic energy, which can drive the power disc to rotate, and so on, to achieve continuous rotation and power output of the power disc.

[0008] The present invention is further configured as follows: the extension plate is hinged on the power disk, the power disk is equipped with a second rotation adjustment component, the second rotation adjustment component includes a second rotation adjustment motor installed on the power disk, a second drive gear installed on the output shaft of the second rotation adjustment motor, and a second driven gear meshing with the second drive gear. A mounting portion is provided on the extension plate, and the second driven gear is mounted and fixed on the mounting portion.

[0009] By adopting this technical solution, the extension plate rotates with the power disc as it rotates. Using the 1 to 12 o'clock positions as an aid to illustrate the positions and states of various features, the extension plate descends from 12 o'clock to 3 o'clock, then descends to 6 o'clock, then ascends from 6 o'clock to 9 o'clock, and finally ascends to 12 o'clock. The extension plate's descent promotes the continued rotation of the power disc. Its ascent inhibits continued rotation.

[0010] In view of this, the utility model discloses in order to reduce the inhibition effect of the continuous rotation of power big dish in the process of extension board ascending, the utility model discloses a rotation adjusting assembly two is set up, the effect of rotation adjusting assembly two is in at 9 point position, rotation adjusting assembly two adjusts extension board and turns over to the suitable angle, such as 90 degrees, relative to power big dish, makes extension board and power big dish vertical.This time, the extension board after turning over rotates with power big dish, and when ascending from 9 points to 12 points position, the ascending height of the gravity center of the extension board before turning over is less than the ascending height of the gravity center of the extension board before turning over, and the inhibition effect of the rotation movement of power big dish in the process of extension board ascending from 9 points to 12 points is reduced.The extension board after turning over descends from 12 points position to 3 points position, and rotation adjusting assembly two adjusts the reverse turning over reset of extension board.

[0011] It needs to point out that extension board is in horizontal state at 9 points position and 3 points position, and at this time, rotation adjusting assembly two needs to output smaller force to drive extension board to turn over.

[0012] The utility model discloses further provide for: two extension boards in every group energy storage component are fixed together, extension board sliding connection in power big dish, power big dish is equipped with second gravity cylinder, two second gravity pistons are reciprocatingly movably sealed in second gravity cylinder, the second gravity cylinder is rotatably connected with lead screw no.

[0013] By adopting the technical scheme, since the movement of the power disc is rotary movement, the 1 o'clock to 12 o'clock positions of the clock are used as aids to explain the positions and states of various features.

[0014] As described above, at the moment when the gravity ball piston and the gravity ball move upward, the extension plate spring cylinder is also subjected to the opposite force and is transmitted to the extension plate, and the extension plate can promote the rotation of the power disc after being subjected to the force. When the gravity ball energy storage cylinder containing the gravity ball is at the lowermost point, that is, at the 6 o'clock position, the extension plate spring cylinder is at the 3 o'clock position, and at this time, the extension plate spring cylinder is subjected to the opposite force and is transmitted to the extension plate. If the position of the force received by the extension plate is farther away from the power disc, the extension plate can better promote the rotation of the power disc.

[0015] Therefore, when the gravity ball energy storage cylinder containing the gravity ball approaches the lowermost point, the first gravity piston of the first gravity cylinder descends, and the second gravity piston in the second gravity cylinder also descends. After the second gravity piston descends, the air in the adjusting air cylinder is compressed. Since the third pipeline connects the second gravity cylinder and the first chamber, the air in the first chamber is compressed, the auxiliary adjusting piston moves under the force and moves the extension plate through the second top rod. The extension plate spring cylinder at the 3 o'clock position is away from the power disc, the position of the force received by the extension plate is farther away from the power disc, and the extension plate can better promote the rotation of the power disc. At the same time, the extension plate spring cylinder at the 9 o'clock position is close to the power disc.

[0016] The extension plate spring cylinder comprises an outer cylinder fixed to the extension plate, a suspended movable inner tube located in the outer cylinder, and a buffer spring assembly fixed to the end of the outer cylinder. The buffer spring assembly comprises a tube body, a movable seat reciprocally movably sealed in the tube body, a fixed seat fixed to the tube body, an active connection pipe fixed to the movable seat, and an energy storage spring with two ends abutting against the movable seat and the fixed seat. The fixed seat is provided with a movable hole, and the active connection pipe and the movable hole are movably sealed. One end of the active connection pipe is connected with the first pipeline, and the other end of the active connection pipe is connected with the inside of the suspended movable inner tube. The end of the suspended movable inner tube is fixed to the movable seat. The fixed seat, the movable seat, and the inner wall of the suspended movable inner tube form an energy storage cavity, the energy storage cavity is filled with gas, and the second air spring piston reciprocally movably seals in the suspended movable inner tube.

[0017] By adopting the technical scheme, when the first gravity piston in the first gravity cylinder descends, the second air spring piston moves and compresses air, the compressed air drives the first air spring piston, the gravity ball piston and the gravity ball to move upward, and the second air spring piston is impacted on the movable seat after being subjected to the reaction force, the movable seat is close to the fixed seat, and the suspension movable inner tube is moved.

[0018] The utility model further provides: one end of outer tube away from buffer spring assembly is equipped with installation pipe, suspension movable inner tube away from buffer spring assembly's one end inserts installation pipe, suspension movable inner tube with installation pipe is sealed between activity, installation pipe with second pipeline is linked together.

[0019] By adopting the technical scheme, the suspension movable inner tube can move relative to the installation pipe and the outer tube, and the sealing state between the suspension movable inner tube and the installation pipe can be maintained.

[0020] The utility model further provides: the gravity ball energy storage cylinder side wall is equipped with two pin shafts, pin shaft rotation is connected on power big dish, rotation adjusting component one includes fixed in power big dish's rotation adjusting motor one, fixed in rotation adjusting motor one output shaft's drive gear one, meshes in drive gear one's driven gear one, driven gear one is fixed in one of pin shaft.

[0021] By adopting the technical scheme, the rotation adjusting motor makes the drive gear one rotate, and the drive gear one drives the driven gear, the pin shaft and the gravity ball energy storage cylinder to rotate in turn, so that the rotation of the gravity ball energy storage cylinder is adjusted.

[0022] The utility model further provides: second pipeline includes pipe section one, pipe section two, pin shaft is formed with connecting channel, the outer wall of connecting channel is covered with rotating barrel, rotating barrel with connecting channel between rotation activity seal, one end of pipe section one with connecting channel is linked together, the other end of pipe section one with gravity ball energy storage spring cylinder inside is linked together, one end of pipe section two with rotating barrel is linked together, the other end of pipe section two with extension plate spring cylinder inside is linked together.

[0023] By adopting the technical scheme, the pipe section one and the pipe section two can move relative to each other and maintain the internal sealing state.

[0024] The utility model discloses a further setting for: rotating connection has lead screw one on the first gravity cylinder, the lead screw one passes the first gravity cylinder inside, the lead screw one is equipped with two nut assemblies one, two nut assemblies one are fixed on two first gravity pistons respectively, the both ends of first gravity cylinder are equipped with rotation adjusting motor three, and two rotation adjusting motor three output shafts are connected at the both ends of lead screw one respectively, the inside wall of first gravity cylinder is equipped with the axial limit groove one, and first gravity piston is fixed with limit axle one, limit axle one is equipped with limit bearing one, and limit bearing one is embedded in limit groove one, when one of first gravity pistons moves to the stroke endpoint, the middle part of another first gravity piston is aligned with the middle part of first gravity cylinder, the diameter of first gravity cylinder is two times and above of gravity ball energy storage spring cylinder diameter, and the mass of first gravity piston is one times and above of gravity ball mass.

[0025] By adopting the above technical scheme, the cross section of the inner wall of the first gravity cylinder and the cross section of the inner wall of the gravity ball energy storage spring cylinder are both circular, the diameter of the first gravity cylinder is two times and above of the diameter of the gravity ball energy storage spring cylinder, and the mass of the first gravity piston is one times and above of the mass of the gravity ball, when the first gravity cylinder is in a vertical state, the first gravity piston has a downward movement tendency under the action of gravity, and the rotation adjusting motor three only needs to output a small power to drive the first gravity piston to descend, so that the gravity ball can be well driven to ascend.

[0026] The number of the rotation adjusting motor one is two, and the rotation adjusting motor one has at least the following two functions, one is that the both ends of the first gravity cylinder are equipped with the rotation adjusting motor three, which plays a role of counterweight and balance, so that the mass of the whole formed by the first gravity cylinder, the lead screw one and the rotation adjusting motor three is symmetrically balanced, and the rotation of the power disc is more stable, and the other is that the lead screw one is driven by the two rotation motors three, the motor power can be set to a small value, the motor volume is small, and the overall structure can be more compact.

[0027] The utility model discloses a further setting for: the gravity ball energy storage cylinder is equipped with first electromagnetic coil, second electromagnetic coil, and first electromagnetic coil is used to accelerate the gravity ball that separates the gravity ball energy storage cylinder, and second electromagnetic coil is used to accelerate the gravity ball that enters the gravity ball energy storage cylinder, and a plurality of guide tubes are fixed on the power disc, and the guide tube is used to guide the gravity ball to move from one gravity ball energy storage cylinder to another gravity ball energy storage cylinder, and the guide tube is equipped with third electromagnetic coil, and third electromagnetic coil is used to accelerate the gravity ball in the guide tube.

[0028] By adopting the technical scheme, the gravity ball moves upward from the gravity ball energy storage cylinder at the lower point into the gravity ball energy storage cylinder at the upper point, the first electromagnetic coil of the gravity ball energy storage cylinder at the lower point accelerates the gravity ball, the third electromagnetic coil in the guide cylinder accelerates the gravity ball, the second electromagnetic coil of the gravity ball energy storage cylinder at the upper point accelerates the gravity ball, so that the gravity ball can move upward from the gravity ball energy storage cylinder at the lower point to the gravity ball energy storage cylinder at the upper point, and is embedded into the containing groove of the gravity ball piston in the gravity ball energy storage cylinder at the upper point, and is locked by the gravity ball fixing device, and can also push the first top rod and the first air spring piston to move.

[0029] The utility model discloses can use electromagnetic force to increase gravity ball speed, also can use permanent magnet force to increase gravity ball speed.

[0030] The utility model discloses further provide as: power big dish is provided with rotation adjusting component three, rotation adjusting component three is used for adjusting first gravity cylinder relative power big dish rotation, energy storage component is three groups or four groups or more.

[0031] By adopting the technical scheme, the 1 o'clock to 12 o'clock positions of the clock are used as auxiliary to explain the positions and states of various features. The specific working conditions of the utility model can be adjusted as required. The gravity ball energy storage cylinder moves to the 6 o'clock position, i.e. the lower point position, along with the power big dish. At this time, the gravity ball energy storage cylinder is in a vertical state and opens upward. At the same time, the position at 12 o'clock, i.e. the upper point position, also has a gravity ball energy storage cylinder, which is also in a vertical state and opens downward. The first gravity cylinder is in a vertical state. The gravity ball can be driven to rise when the gravity ball energy storage cylinder where the gravity ball is located is at the 6 o'clock position. The gravity ball can also be driven to rise at a suitable position after the gravity ball energy storage cylinder where the gravity ball is located passes through the 6 o'clock position. Taking the 7 o'clock position as an example, when the gravity ball energy storage cylinder below moves to the 7 o'clock position, the gravity ball energy storage cylinder above moves to the 1 o'clock position. At this time, the first gravity cylinder is in an inclined state after rotating with the power big dish. In order to better utilize the gravity of the first gravity piston, the rotation adjusting component three adjusts the rotation of the first gravity cylinder by a certain angle, so that the first gravity cylinder is in a vertical state again. In this way, the weight of the first gravity piston can be better utilized to press the air in the first gravity cylinder

[0032] The utility model discloses an advantageous effect is: 1, the first gravity piston is under the action of self -gravity and screw -down one of rotating adjustment motor, compresses the air in the first gravity cylinder and passes to gravity ball energy storage spring cylinder, the gravity ball piston in the gravity ball energy storage spring cylinder and the gravity ball rise, the first electromagnetic coil of the gravity ball energy storage cylinder in below, the third electromagnetic coil of guide cylinder, the second electromagnetic coil of the gravity ball energy storage cylinder in above is used for accelerating the gravity ball, promotes the kinetic energy of gravity ball, makes the gravity ball from below gravity ball energy storage cylinder motion to above gravity ball energy storage cylinder, and under the gravity, falls, converts the potential energy of gravity into kinetic energy, simultaneously, the extension plate spring cylinder is subjected to the reaction force and is passed to the extension plate, through the extension plate effect on power big dish, makes power big dish can continue rotating, and the power output part connected with power big dish realizes power output.

[0033] 2, the reaction force that extension plate spring cylinder received acts on the extension plate, to drive power big dish rotation, according to lever principle, the extension plate spring cylinder is subjected to the reaction force and the force that applies to the extension plate is power, and the vertical distance of extension plate spring cylinder to power big dish center is power arm, and the resistance in lever principle can promote power big dish rotation.

[0034] 3, the utility model discloses through rotating adjustment motor two to drive the extension plate horizontal position overturn, thereby reduces the height that power big dish rotation process drives the extension plate gravity center rises, realizes reducing the resistance effect that power big dish rotation received.

[0035] 4, the gravity ball of the utility model can move from the gravity ball energy storage cylinder in below to the gravity ball energy storage cylinder in above, also can according to need, the gravity ball from the gravity ball energy storage cylinder below through below to the gravity ball energy storage cylinder above through above, before this, use rotating adjustment assembly three to adjust the attitude of first gravity cylinder, makes first gravity cylinder from the inclination state rotation to vertical state, to be better with the gravity of first gravity piston.

[0036] 5, the number of energy storage assembly can be two or three or four or more, similar to the four cylinder engine, six cylinder engine, eight cylinder engine in prior art, can select according to use demand.

[0037] 6, the specific form of power output part of the utility model can select various specific structure forms according to use need, and the scope of application is wide, and the operating cost is low, low carbon environmental protection, to energy industry and relevant industry, has great significance.

[0038] 7. The utility model discloses low operating cost, zero pollution, simple structure, high energy conversion efficiency, large output power, and is suitable for small generator, large power station, cruise ship, ship, aircraft carrier, car, moped, bicycle and other mechanical equipment.

[0039] 8. On the basis of the technical principle, the gravity energy engine has unlimited upgrade space. BRIEF DESCRIPTION OF DRAWINGS

[0040] Figure 1 is the structure diagram of example 1 Figure 1 .

[0041] Figure 2 is the structure diagram of example 1 Figure 2 .

[0042] Figure 3 is the structure diagram of the energy storage assembly of example 1.

[0043] Figure 4 is the connection relationship between the first gravity cylinder, the gravity ball energy storage spring cylinder, the extension plate spring cylinder, the gravity ball energy storage cylinder, the first pipeline and the second pipeline of example 1.

[0044] Figure 5 is the structure relationship between the first gravity cylinder, the first screw and the first gravity piston of example 1.

[0045] Figure 6 is the structure diagram of the first gravity cylinder of example 1.

[0046] Figure 7 is the cross-sectional structure diagram of the gravity ball energy storage cylinder and the gravity ball energy storage spring cylinder of example 1.

[0047] Figure 8 is the structure relationship between the connection channel and the rotating cylinder of example 1.

[0048] Figure 9 is the cross-sectional structure diagram of the extension plate spring cylinder of example 1.

[0049] Figure 10 is the position relationship between the gravity ball piston and the gravity ball of example 1.

[0050] Figure 11 is the state diagram of the extension plate after turning over of example 2.

[0051] Figure 12 is the connection relationship between the extension plate and the power disc of example 2.

[0052] Figure 13is Figure 12 enlarged view of A.

[0053] Figure 14 is a schematic diagram of the structural relationship between the extension plate and the power disc of embodiment 3.

[0054] Figure 15 is a schematic diagram of the connection relationship between the main second gravity cylinder and the auxiliary second gravity cylinder of embodiment 3.

[0055] Figure 16 is a schematic diagram of the connection relationship between the main second gravity cylinder, the second screw rod, and the second gravity piston of embodiment 3.

[0056] Figure 17 is a schematic diagram of the cross-sectional structure of the auxiliary second gravity cylinder and the buffer chamber.

[0057] In the figure, 1 is a support; 2 is a power component; 3 is a power disc; 31 is a page sheet two; 4 is a power output; 41 is an output shaft; 42 is an output gear; 5 is an energy storage assembly; 51 is a first gravity cylinder; 511 is a first gravity piston; 512 is a first screw rod; 513 is a rotary adjustment motor three; 514 is a first pipeline; 515 is a limiting groove one; 516 is a limiting shaft one; 517 is a limiting bearing one; 518 is a skirt; 52 is a gravity ball energy storage cylinder; 521 is a pin shaft; 522 is a connection channel; 523 is a rotary cylinder; 524 is a first electromagnetic coil; 525 is a second electromagnetic coil; 53 is a rotary adjustment assembly one; 531 is a rotary adjustment motor one; 532 is a drive gear one; 533 is a driven gear one; 54 is an extension plate; 541 is a mounting part; 542 is a page sheet one; 55 is an extension plate spring cylinder; 551 is a second air spring piston; 552 is an outer cylinder; 553 is a suspended movable inner tube; 554 is a buffer spring assembly; 5541 is a tube body; 5542 is a movable seat; 5543 is a fixed seat; 5544 is a movable connecting tube; 555 is an energy storage spring; 556 is an energy storage cavity; 557 is a mounting tube; 56 is a gravity ball energy storage spring cylinder; 561 is a first air spring piston; 562 is a second pipeline; 5621 is a tube segment one; 5622 is a tube segment two; 57 is a first jacking rod; 58 is a gravity ball piston; 581 is a containing groove; 6 is a gravity ball; 7 is a rotary adjustment assembly two; 71 is a rotary adjustment motor two; 72 is a drive gear two; 73 is a driven gear two; 8 is a second gravity cylinder; 81 is a second gravity piston; 82 is a second screw rod; 83 is a rotary adjustment motor four; 84 is a limiting groove two; 85 is a limiting shaft two; 86 is a limiting bearing two; 9 is a fourth cylinder; 91 is an auxiliary adjustment piston; 92 is a second jacking rod; 93 is a buffer chamber; 94 is a first chamber; 95 is a second chamber; 96 is a third pipeline; 10 is a guide cylinder; 101 is a third electromagnetic coil. DETAILED DESCRIPTION

[0058] Embodiment 1: gravity energy engine, as shown in Figures 1 to 10 The embodiment 1 comprises a support 1, a power component 2 arranged on the support 1, the support 1 is a bracket, the power component 2 comprises a power disc 3 and a power output part 4, the power output part 4 comprises an output shaft 41 and a power output gear 42 fixed on the output shaft 41, the output shaft 41 is installed on the bracket through at least two bearings, the power disc 3 is fixed on the output shaft 41, so that the power disc 3 and the output shaft 41 can rotate on the bracket.

[0059] The power disc 3 is provided with two groups of energy storage assemblies 5 and one gravity ball 6, each group of energy storage assemblies 5 comprises a first gravity cylinder 51, two gravity ball energy storage cylinders 52 rotatably connected to the power disc 3, two rotation adjusting assemblies one 53 for adjusting the rotation of the two gravity ball energy storage cylinders 52 respectively, two gravity ball energy storage spring cylinders 56 installed on the two gravity ball energy storage cylinders 52 respectively, two extension plate spring cylinders 55 installed on two extension plates 54 respectively.

[0060] The first gravity cylinder 51 is fixedly installed on the power disc 3, the inner wall diameter of the first gravity cylinder 51 is twice or more than the inner wall diameter of the gravity ball energy storage spring cylinder 56. Two first gravity pistons 511 are reciprocally movably sealed in the first gravity cylinder 51, and the mass of each first gravity piston 511 is one time or more than the mass of the gravity ball 6. The outer wall of each first gravity piston 511 is fixed with two skirts 518, and a sealing ring is installed between the two skirts 518, so that the first gravity piston 511 can reciprocally move relative to the first gravity cylinder 51, and the sealing state between them can be maintained at the same time.

[0061] A rotatable lead screw one 512 is installed on the first gravity cylinder 51, both ends of the lead screw one 512 are located outside the two ends of the first gravity cylinder 51, and the middle part of the lead screw one 512 penetrates the inside of the first gravity cylinder 51. Rotating adjusting motors three 513 are installed at the two ends of the first gravity cylinder 51, the two rotating adjusting motors three 513 correspond to the two ends of the lead screw one 512 respectively, and the output shaft 41 of the rotating adjusting motor three 513 is connected with the end part of the lead screw one 512. Two nut assemblies one are installed on the lead screw one 512, and the two nut assemblies one are connected with the two first gravity pistons 511 respectively. Limiting grooves one 515 are arranged on the inner wall of the first gravity cylinder 51 in the axial direction, the number of the limiting grooves one 515 is two, the first gravity pistons 511 are fixed with limiting shafts one 516, the limiting shafts one 516 are installed with limiting bearings one 517, the limiting bearings one 517 are arc-shaped bearings, the number of the limiting shafts one 516 and the limiting bearings one 517 is two, and the two limiting bearings one 517 are embedded in the two limiting grooves one 515 respectively. The rotating adjusting motor three 513 drives the lead screw one 512 to rotate, and the lead screw one 512 drives the nut assemblies one and the first gravity pistons 511 to move.

[0062] Two first pipes 514 are communicated with two ends of the first gravity cylinder 51 respectively, and the two first pipes 514 are respectively used for communicating with the extension plate spring cylinder 55. The extension plate spring cylinder 55 comprises an outer cylinder 552 fixed on the extension plate 54, a suspended movable inner tube 553 located in the outer cylinder 552, a buffer spring assembly 554 fixed on an end of the outer cylinder 552, a second air spring piston 551 reciprocally movably sealed in the suspended movable inner tube 553, the buffer spring assembly 554 comprises a pipe body 5541, a movable seat 5542 reciprocally movably sealed in the pipe body 5541, a fixed seat 5543 fixed on the pipe body 5541, a movable connecting pipe 5544 fixed on the movable seat 5542, an energy storage spring 555 with two ends respectively abutting against the movable seat 5542 and the fixed seat 5543, the fixed seat 5543 is provided with a movable hole, the movable connecting pipe 5544 is movably sealed with the movable hole, one end of the movable connecting pipe 5544 is connected with the first pipe 514, the other end of the movable connecting pipe 5544 is communicated with the inside of the suspended movable inner tube 553, an end of the suspended movable inner tube 553 is fixed with the movable seat 5542, the fixed seat 5543, the movable seat 5542 and the inner wall of the suspended movable inner tube form an energy storage cavity 556, the energy storage cavity 556 is filled with gas, and the second air spring piston 551 is reciprocally movably sealed in the suspended movable inner tube 553. An installation pipe 557 is arranged on an end of the outer cylinder 552 away from the buffer spring assembly 554, an end of the suspended movable inner tube 553 away from the buffer spring assembly 554 is inserted into the installation pipe 557, the suspended movable inner tube 553 is movably sealed with the installation pipe 557, and the installation pipe 557 is connected with a second pipe 562.

[0063] The second pipeline 562 comprises a pipe segment one 5621 and a pipe segment two 5622, two pin shafts 521 are fixed on the side wall of the gravity ball energy storage cylinder 52, the pin shafts 521 are rotationally connected to the power disc 3, the rotation adjusting assembly one 53 comprises a rotation adjusting motor one 531 fixed on the power disc 3, a driving gear one 532 fixed on the output shaft 41 of the rotation adjusting motor one 531, a driven gear one 533 engaged with the driving gear one 532, and the driven gear one 533 is fixed on one of the pin shafts 521. A connecting channel 522 is formed on the pin shaft 521, a rotating cylinder 523 is sleeved on the outer wall of the connecting channel 522, and the rotating cylinder 523 and the connecting channel 522 are rotationally and sealingly connected. One end of the pipe segment one 5621 is connected to the connecting channel 522, and the other end of the pipe segment one 5621 is connected to the inside of the gravity ball energy storage spring cylinder 56. One end of the pipe segment two 5622 is connected to the rotating cylinder 523, and the other end of the pipe segment two 5622 is connected to the inside of the extension plate spring cylinder.

[0064] The gravity ball energy storage spring cylinder 56 is provided with a first air spring piston 561, the first air spring piston 561 is connected with a first top rod 57, the first top rod 57 extends into the gravity ball energy storage cylinder 52, the first top rod 57 is connected with a gravity ball piston 58, the gravity ball piston 58 is provided with a containing groove 581 for containing the gravity ball 6 and a gravity ball fixing device for locking or unlocking the position of the gravity ball 6 in the containing groove 581. The gravity ball fixing device is an electromagnet.

[0065] Working principle: the number of gravity balls 6 is one, which is locked in the containing groove 581 of the gravity ball piston 58 by the gravity ball fixing device. When the power disc 3 rotates to drive the energy storage assembly 5 to rotate around the center of the power disc 3, the gravity ball energy storage cylinder 52 moves to a certain position below the center of the power disc 3, and is in a vertical state with the opening upward, which is the lowermost point. When the gravity ball energy storage cylinder 52 moves to a certain position above the center of the power disc 3, it is in a vertical state with the opening downward, which is the uppermost point. The lowermost point is directly below the uppermost point. The rotation adjusting assembly one 53 is used to adjust the posture of the gravity ball energy storage cylinder 52 on the power disc 3, so that the gravity ball energy storage cylinder 52 is in a vertical state with the opening upward at the lowermost point. When the gravity ball energy storage cylinder 52 is at the uppermost point, it is in a vertical state with the opening downward, so that the opening of the gravity ball energy storage cylinder 52 at the lowermost point is aligned with the opening of the gravity ball energy storage cylinder 52 at the uppermost point.

[0066] The gravity ball energy storage cylinder 52 where the gravity ball 6 is located rotates with the power disk 3. When the gravity ball energy storage cylinder 52 is close to the bottom point, the first gravity piston 511 in the first gravity cylinder 51 descends, squeezing the air in the first gravity cylinder 51. Since the first gravity cylinder 51 is connected to the extension plate spring cylinder 55 through the first pipe 514, the air in the extension plate spring cylinder 55 is compressed, and the extension plate spring cylinder 55 is connected to the gravity ball energy storage spring cylinder 56 through the second pipe 562. The air in the gravity ball energy storage spring cylinder 56 is compressed. After the squeeze, the pressure increases and is transmitted to the gravity ball piston 58 through the first air spring piston 561 and the connecting rod. When the gravity ball energy storage cylinder 52 is at the bottom point, the gravity ball piston 58 is lifted and moves upward. At this time, the gravity ball fixing device unlocks the position of the gravity ball 6, and the gravity ball 6 moves upward and enters the receiving groove 581 on the gravity ball piston 58 in the gravity ball energy storage cylinder 52 at the top point. It is locked in the receiving groove 581 by the gravity ball fixing device. During this process, the kinetic energy of the gravity ball 6 is converted into gravitational potential energy. At the same time, at the moment when the gravity ball piston 58 and the gravity ball 6 move upward, the extension plate spring cylinder 55 will also be subjected to an opposite force and transmitted to the extension plate 54. After being subjected to the force, the extension plate 54 can promote the rotation of the power disk 3. One of the functions of the extension plate 54 is to set the position of the extension plate spring tube 55 away from the power disc 3. The point where the extension plate 54 is subjected to the force is far away from the power disc 3, which better promotes the rotation of the power disc 3.

[0067] As the power disc 3 continues to rotate, the gravity ball energy storage cylinder 52 located at the upper point moves downward to the point. At this time, the gravitational potential energy of the gravity ball 6 is converted into kinetic energy, which can drive the power disc 3 to rotate, and so on, to achieve continuous rotation and power output of the power disc 3.

[0068] Example 2: Gravity Energy Engine, which differs from Example 1 in that: Figures 11 to 13 As shown, the extension plate 54 is hingedly connected to the power disk 3. The power disk 3 is equipped with a second rotation adjustment assembly 7. The second rotation adjustment assembly 7 includes a second rotation adjustment motor 71 mounted on the power disk 3, a second drive gear 72 mounted on the output shaft 41 of the second rotation adjustment motor 71, and a second driven gear 73 meshing with the second drive gear 72. The extension plate 54 is provided with a mounting portion 541, and the second driven gear 73 is mounted and fixed to the mounting portion 541. All or part of the first pipe 514 is a hose, and all or part of the second pipe 562 is a hose.

[0069] The hinge structure is composed of a hinge sheet one 542 fixed on the extension plate 54, a hinge sheet two 31 fixed on the power disc 3, a shaft core fixed on the hinge sheet one 542, and the hinge sheet two 31 is provided with two core holes, and the shaft core is inserted into the two core holes respectively.

[0070] Working principle: when the power disc 3 rotates, the extension plate 54 rotates with the power disc 3. Taking the 1 o'clock to 12 o'clock position of the clock as an auxiliary, the position and state of each feature are explained, the extension plate 54 is lowered from the 12 o'clock position to the 3 o'clock position, and then is lowered to the 6 o'clock position, and then is raised from the 6 o'clock position to the 9 o'clock position, and then is raised to the 12 o'clock position. The continuous rotation of the extension plate 54 in the lowering process promotes the continuous rotation of the power disc 3. The rising of the extension plate 54 inhibits the continuous rotation of the power disc 3.

[0071] Therefore, in order to reduce the inhibitory effect of the extension plate 54 on the continuous rotation of the power disc 3 in the rising process, the utility model is provided with a rotation adjusting assembly two 7, which adjusts the extension plate 54 to be flipped to a suitable angle, such as 90 degrees, relative to the power disc 3 when the extension plate 54 is at the 9 o'clock position, so that the extension plate 54 is perpendicular to the power disc 3. At this time, the flipped extension plate 54 rotates with the power disc 3, and the rising height of the gravity center of the flipped extension plate 54 is less than that of the unflipped extension plate 54 when rising from the 9 o'clock position to the 12 o'clock position, thereby reducing the inhibitory effect of the extension plate 54 on the rotation of the power disc 3 in the process of rising from the 9 o'clock position to the 12 o'clock position. When the flipped extension plate 54 is lowered from the 12 o'clock position to the 3 o'clock position, the rotation adjusting assembly two 7 adjusts the extension plate 54 to be flipped back to the original position.

[0072] It should be pointed out that the extension plate 54 is in a horizontal state at the 9 o'clock position and the 3 o'clock position, and at this time the rotation adjusting assembly two 7 needs to output a smaller force to drive the extension plate 54 to flip.

[0073] Embodiment 3: gravity energy engine, which is different from embodiment 1 in that, Figures 14 to 17As shown, two extension plates 54 in each of the energy storage assemblies 5 are fixed together and slidingly connected to the power disc 3. Two sliding grooves are formed on the power disc 3, and the two sides of the middle part of the two extension plates 54 are respectively embedded in the two sliding grooves. The power disc 3 is provided with a second gravity cylinder 8, two second gravity pistons 81 are reciprocatingly and sealingly arranged in the second gravity cylinder 8, a second lead screw 82 is rotatably connected in the second gravity cylinder 8, the second lead screw 82 penetrates through the inside of the second gravity cylinder 8, two nut assemblies two are installed on the second lead screw 82, the two nut assemblies two are respectively installed on the two second gravity pistons 81, a limiting groove two 84 is formed on the inner wall of the second gravity cylinder 8 and arranged in the axial direction, the number of the limiting groove two 84 is two, the second gravity piston 81 is installed with a limiting shaft two 85, the limiting shaft two 85 is installed with a limiting bearing two 86, the number of the limiting shaft two 85 and the limiting bearing two 86 is two, the two limiting bearing two 86 are respectively embedded in the two limiting groove two 84, the two ends of the second gravity cylinder 8 are respectively installed with a rotary adjusting motor four 83, the output shaft 41 of the two rotary adjusting motor four 83 is respectively connected with the two ends of the second lead screw 82, when one of the second gravity pistons 81 moves to the stroke end point, the middle part of the other second gravity piston 81 is aligned with the middle part of the second gravity cylinder 8, the energy storage assembly 5 further comprises two fourth cylinders 9, the two fourth cylinders 9 correspond to the two extension plates 54 respectively, the fourth cylinder 9 is fixedly installed on the power disc 3, a sub-adjusting piston 91 is arranged in the fourth cylinder 9, the sub-adjusting piston 91 reciprocatingly and sealingly arranged in the fourth cylinder 9, the sub-adjusting piston 91 is fixed with a second top rod 92, the second top rod 92 is reciprocatingly and sealingly arranged between the fourth cylinder 9, the fourth cylinder 9 is further connected with a buffer chamber 93, the fourth cylinder 9 is divided into a first chamber 94 and a second chamber 95 by the sub-adjusting piston 91, the two ends of the second gravity cylinder 8 are respectively connected with a third pipeline 96, the third pipeline 96 is connected with the first chamber 94, the buffer chamber 93 is connected with the second chamber 95, all or part of the first pipeline 514 is a hose, all or part of the second pipeline 562 is a hose.

[0074] Since the movement of the power disc 3 is a rotary movement, the 1 o'clock to 12 o'clock positions of the clock are used as an auxiliary to illustrate the positions and states of various features.

[0075] As mentioned above, at the moment when the gravity ball piston 58 and the gravity ball 6 move upward, the extension plate spring cylinder 55 will also be subjected to an opposite force and transmitted to the extension plate 54, and the extension plate 54 can promote the rotation of the power disc 3 after being subjected to the force. When the gravity ball energy storage cylinder 52 containing the gravity ball 6 is at the lowermost point, i.e., at the 6 o'clock position, the extension plate spring cylinder is at the 3 o'clock position, and will be subjected to an opposite force and transmitted to the extension plate 54. If the extension plate 54 is subjected to a force at a position farther away from the power disc 3, it can better promote the rotation of the power disc 3.

[0076] Therefore, when the gravity ball energy storage cylinder 52 containing the gravity ball 6 approaches the lowermost point, the first gravity piston 511 of the first gravity cylinder 51 descends, and the second gravity piston 81 in the second gravity cylinder 8 also descends, and the second gravity piston 81 presses the air in the adjusting cylinder after descending. Since the third pipeline 96 connects the second gravity cylinder 8 and the first chamber 94, the air in the first chamber 94 is compressed, the auxiliary adjusting piston 91 moves after being subjected to the force and moves the extension plate 54 through the second top rod 92, the extension plate spring cylinder at the 3 o'clock position moves away from the power disc 3, the position of the force acting on the extension plate 54 is farther away from the power disc 3, and the extension plate 54 can better promote the rotation of the power disc 3. At the same time, the extension plate spring cylinder at the 9 o'clock position approaches the power disc 3.

[0077] Example 4: The gravity energy engine differs from example 1 in that the first gravity cylinder 51 is rotatably connected to the power disc 3, and the power disc 3 is provided with a rotation adjusting assembly three for adjusting the rotation of the first gravity cylinder 51 relative to the power disc 3.

[0078] Example 5: The gravity energy engine differs from example 1 in that the energy storage assembly 5 is three or more than four groups.

[0079] Example 6: The gravity energy engine includes example 1, and the working principle is as follows: the diameter of the first gravity cylinder 51 is several times the diameter of the outer cylinder 552, the diameter of the gravity ball energy storage spring cylinder 56 of the gravity ball energy storage cylinder 52 is the same as the diameter of the outer cylinder 552, and the piston stroke is also the same. The weight of the first gravity piston 511 in the first gravity cylinder 51 is twice the weight of the gravity ball 6 in the launch port of the gravity ball energy storage cylinder 52. The internal height of the first gravity cylinder 51 is assumed to be 90 cm, and the side length of the power disc 3 is basically 90 cm. The power disc 3 is a power square disc, which is in a horizontal state, the first gravity cylinder 51 is in a vertical state, and the sum of the heights of the two first gravity pistons 511 in the first gravity cylinder 51 is 60 cm, which is two-thirds of the internal height of the first gravity cylinder 51.

[0080] Two first gravity pistons 511 are in the position of the center of the first gravity cylinder 51, the upper first gravity piston 511 is 15 cm away from the inner wall of the upper end of the first cylinder, and the lower first gravity piston 511 is 15 cm away from the inner wall of the lower end of the first cylinder. The first pipe 514 above the first gravity cylinder 51 is only an air transmission pipe, the inner diameter is slightly thin, and is connected to the internal pressure of the first air spring of the gravity ball energy storage cylinder 52 and the internal pressure of the outer cylinder 552. The first pipe 514 below the first gravity cylinder 51 is connected to the internal pressure of the first air spring of the diagonal gravity ball energy storage cylinder 52 and the diagonal outer cylinder 552. The air pressure in the first air spring of the gravity ball energy storage cylinder 52 is basically equal to the gravity of the gravity ball 6.

[0081] Before the engine works, the first gravity piston 511 is located at the top of the engine (the upper end of the movement stroke), 30 centimeters downstroke, the weight of the first gravity piston 511 is twice the weight of the gravity ball 6, which can naturally balance the gravity ball 6 to a height of about 60 centimeters through the principle of leverage. The above is the basic principle of this section. When it starts to work, the gravity ball 6 in the gravity ball energy storage cylinder 52 is located at the lowermost position of the gravity ball energy storage cylinder 52. At this time, the gravity ball 6 is locked, the motor drives the first gravity piston 511 with more than twice the weight of the gravity ball 6, and the downward gravitational potential energy of the first gravity piston 511 can make the first gravity piston 511 quickly descend to form a great impact force. The first gravity piston 511 is installed with a sealing ring and can reciprocate and seal in the first gravity cylinder 51. At this time, the motor consumes less energy. The air in the first gravity cylinder 51 quickly enters the air pressure in the outer cylinder 552 and the gravity ball energy storage spring cylinder 56 in the gravity ball energy storage cylinder 52. The gravity ball energy storage spring cylinder 56, the first air spring piston 561 inside it and the gas inside it form the first air spring. The launch port of the gravity ball energy storage cylinder 52 at 1 point and the launch port of the gravity ball energy storage cylinder 52 at 5 points correspond. At this time, the pressure in the first air spring of the gravity ball energy storage cylinder 52 is very large, and the gravity ball 6 fixing device is suddenly released, and the gravity ball 6 is quickly launched upward under the action of the large air pressure spring. At the moment of launching, because of the air pressure force of the first air spring of the gravity ball energy storage cylinder 52 at the bottom of the extension plate spring cylinder 55, the bottom of the extension plate spring cylinder 55 has a buffer spring assembly 554. At this time, the bottom of the buffer spring assembly 554 is a fulcrum for launching the gravity ball 6. The upward reaction force of the launched gravity ball 6 is concentrated at the fulcrum at the bottom of the extension plate spring cylinder 55. The fulcrum position at the bottom of the extension plate spring cylinder 55 is farther away from the center of the engine, so that the bottom of the extension plate spring cylinder 55 can generate a large downward gravitational potential energy to the engine under the inertia reaction force of the launched gravity ball 6 at the moment of launching. The buffer spring at the bottom of the outer cylinder 552 is located far away from the center shaft of the engine (i.e. the center shaft of the power disc 3), so it can generate a large downward gravitational potential energy. Taking one week of engine work as an example, there will be four times of reaction to generate a large gravitational potential energy to the engine.

[0082] Embodiment 7: gravity energy engine, including embodiment 3, the working principle is as follows, the second gravity cylinder 8 is in horizontal position, at this time, the rotating adjusting motor four 83 drives the screw rod two 82 to rotate, drives the second gravity piston 81 to move fast, increases the air pressure in one of the fourth cylinder 9, and reduces the air pressure in the other fourth cylinder 9. The third piston in the fourth cylinder 9 with the air pressure increased and the second top rod 92 drive the extension plate 54 to move, so that the bottom support point position of the extension plate spring cylinder 55 on one of the extension plate 54 is farther away from the center position of the engine, so that the bottom of the extension plate spring cylinder 55 can generate a large downward gravity potential energy under the inertial reaction force of the gravity ball 6 at the moment of launching, the buffer spring at the bottom of the outer cylinder 552 is far away from the center shaft of the engine (i.e. the center shaft of the power disc 3), so a large downward gravity potential energy can be generated, for example, the engine works for a week, there will be four times of reaction to generate a larger gravity potential energy to the engine.

Claims

1. A gravity energy engine, characterized in that: The invention comprises a support member (1), a power member (2) arranged on the support member (1), the power member (2) comprising a rotatable power disk (3), a power output part (4) connected to the power disk (3), at least two groups of energy storage components (5) and a gravity ball (6) are provided on the power disk (3), the energy storage component (5) comprises a first gravity cylinder (51) installed on the power disk (3), two gravity ball energy storage cylinders (52) rotatably connected to the power disk (3), two rotation adjustment components (53) for respectively adjusting the rotation of the two gravity ball energy storage cylinders (52), two gravity ball energy storage spring cylinders (56) respectively installed on the two gravity ball energy storage cylinders (52), two extension plates (54) installed on the power disk (3), and two extension plate spring cylinders (55) respectively installed on the two extension plates (54), two first gravity pistons (511) are sealed in a reciprocating manner in the first gravity cylinder (51), and the first gravity cylinder ( 51) are respectively connected to two first pipes (514), the second air spring piston (551) is provided in the extension plate spring cylinder (55), the first pipe (514) is connected to the extension plate spring cylinder (55), the extension plate spring cylinder (55) is further connected to a second pipe (562), the second pipe (562) is connected to the gravity ball energy storage spring cylinder (56), the first air spring piston (561) is provided in the gravity ball energy storage spring cylinder (56), the first air spring piston (561) is provided in the first air spring cylinder (56), the second air spring piston (561) is provided in the second air spring cylinder (56), the first ... An air spring piston (561) is connected to a first push rod (57), the first push rod (57) extends into the gravity ball energy storage cylinder (52), the first push rod (57) is connected to a gravity ball piston (58), the gravity ball piston (58) is provided with a receiving groove (581) and a gravity ball fixing device, the receiving groove (581) is used to receive the gravity ball (6), and the gravity ball fixing device is used to lock or unlock the position of the gravity ball (6) in the receiving groove (581).

2. The gravity energy engine according to claim 1, characterized in that: The extension plate (54) is hinged on the power disk (3), and the power disk (3) is equipped with a second rotation adjustment component (7). The second rotation adjustment component (7) includes a second rotation adjustment motor (71) installed on the power disk (3), a second driving gear (72) installed on the output shaft (41) of the second rotation adjustment motor (71), and a second driven gear (73) meshing with the second driving gear (72). The extension plate (54) is provided with a mounting portion (541), and the second driven gear (73) is mounted and fixed on the mounting portion (541).

3. The gravity energy engine according to claim 1, characterized in that: The two extension plates (54) in each group of the energy storage components (5) are fixed together, and the extension plates (54) are slidably connected to the power disk (3). The power disk (3) is provided with a second gravity cylinder (8), and two second gravity pistons (81) are sealed and reciprocated in the second gravity cylinder (8). A second lead screw (82) is rotatably connected in the second gravity cylinder (8), and the second lead screw (82) passes through the interior of the second gravity cylinder (8). The second lead screw (82) is installed with two nut assemblies (2), and the two nut assemblies (2) are respectively installed in the two second gravity pistons ( 81), the inner wall of the second gravity cylinder (8) is provided with a limiting groove 2 (84) arranged in the axial direction, the second gravity piston (81) is installed with a limiting shaft 2 (85), the limiting shaft 2 (85) is installed with a limiting bearing 2 (86), the limiting bearing 2 (86) is embedded in the limiting groove 2 (84), and the two ends of the second gravity cylinder (8) are respectively installed with a rotating adjustment motor 4 (83), and the output shafts (41) of the two rotating adjustment motors 4 (83) are respectively connected to the two ends of the screw 2 (82), and one of the second gravity pistons (81) moves to the end of the stroke. When the second gravity piston (81) is at the point, the middle of the other second gravity piston (81) is aligned with the middle of the second gravity cylinder (8), the energy storage assembly (5) further comprises two fourth cylinders (9), the two fourth cylinders (9) respectively corresponding to the two extension plates (54), the fourth cylinders (9) are mounted and fixed on the power disk (3), the fourth cylinder (9) is provided with a secondary regulating piston (91), the secondary regulating piston (91) is reciprocating and sealed inside the fourth cylinder (9), the secondary regulating piston (91) is fixed with a second push rod (92), the second push rod (92) and The fourth cylinder (9) is sealed in a reciprocating manner, and the fourth cylinder (9) is also connected to a buffer chamber (93). The auxiliary regulating piston (91) separates the fourth cylinder (9) into a first chamber (94) and a second chamber (95). The second gravity cylinder (8) is connected to a third pipe (96) at both ends. The third pipe (96) is connected to the first chamber (94), and the buffer chamber (93) is connected to the second chamber (95). All or part of the first pipe (514) is a hose, and all or part of the second pipe (562) is a hose.

4. The gravity energy engine according to any one of claims 1 to 3, characterized in that: The extension plate spring tube (55) comprises an outer tube (552) fixed to the extension plate (54), a suspended movable inner tube (553) located in the outer tube (552), and a buffer spring assembly (554) fixed to the end of the outer tube (552). The buffer spring assembly (554) comprises a tube body (5541), a movable seat (5542) reciprocatingly sealed to the tube body (5541), a fixed seat (5543) fixed to the tube body (5541), a movable connecting tube (5544) fixed to the movable seat (5542), and an energy storage spring (555) with its two ends respectively abutting against the movable seat (5542) and the fixed seat (5543). The fixed seat (554 3) A movable hole is provided, and a movable seal is formed between the movable connecting tube (5544) and the movable hole. One end of the movable connecting tube (5544) is connected to the first pipe (514), and the other end of the movable connecting tube (5544) is communicated with the interior of the suspended movable inner tube (553). The end of the suspended movable inner tube (553) is fixed to the movable seat (5542). An energy storage cavity (556) is formed between the fixed seat (5543), the movable seat (5542), and the inner wall of the suspended movable inner tube. The energy storage cavity (556) is filled with gas, and the second air spring piston (551) is reciprocatingly sealed in the suspended movable inner tube (553).

5. The gravity energy engine according to claim 4, characterized in that: An end of the outer tube (552) away from the buffer spring assembly (554) is provided with a mounting tube (557), and an end of the suspended movable inner tube (553) away from the buffer spring assembly (554) is inserted into the mounting tube (557). A movable seal is formed between the suspended movable inner tube (553) and the mounting tube (557), and the mounting tube (557) is connected to the second pipe (562).

6. The gravity energy engine according to any one of claims 1 to 3, characterized in that: Two pins (521) are fixed to the side wall of the gravity ball energy storage cylinder (52), and the pins (521) are rotatably connected to the power disk (3). The rotation adjustment component (53) includes a rotation adjustment motor (531) fixed to the power disk (3), a driving gear (532) fixed to the output shaft (41) of the rotation adjustment motor (531), and a driven gear (533) meshed with the driving gear (532). The driven gear (533) is fixed to one of the pins (521).

7. The gravity energy engine according to claim 6, characterized in that: The second pipe (562) includes a pipe section 1 (5621) and a pipe section 2 (5622). A connecting channel (522) is formed on the pin shaft (521). A rotating cylinder (523) is sleeved on the outer wall of the connecting channel (522). A rotating movable seal is formed between the rotating cylinder (523) and the connecting channel (522). One end of the pipe section 1 (5621) is connected to the connecting channel (522), and the other end of the pipe section 1 (5621) is connected to the interior of the gravity ball energy storage spring cylinder (56); one end of the pipe section 2 (5622) is connected to the rotating cylinder (523), and the other end of the pipe section 2 (5622) is connected to the interior of the extension plate spring cylinder.

8. The gravity energy engine according to any one of claims 1 to 3, characterized in that: The first gravity cylinder (51) is rotatably connected to a lead screw 1 (512), which passes through the interior of the first gravity cylinder (51). The lead screw 1 (512) is installed with two nut assemblies 1, and the two nut assemblies 1 are respectively fixed on the two first gravity pistons (511). Rotational adjustment motors 3 (513) are installed at both ends of the first gravity cylinder (51), and the output shafts (41) of the two rotational adjustment motors 3 (513) are respectively connected to the two ends of the lead screw 1 (512); when one of the first gravity pistons (511) moves to the end point of the stroke, the other The middle of the first gravity piston (511) is aligned with the middle of the first gravity cylinder (51); an axially arranged limiting groove (515) is provided on the inner wall of the first gravity cylinder (51); a limiting shaft (516) is fixed to the first gravity piston (511); a limiting bearing (517) is installed on the limiting shaft (516); and the limiting bearing (517) is embedded in the limiting groove (515); the diameter of the first gravity cylinder (51) is twice or more than the diameter of the gravity ball energy storage spring cylinder (56); and the mass of the first gravity piston (511) is twice or more than the mass of the gravity ball (6).

9. The gravity energy engine according to any one of claims 1 to 3, characterized in that: The gravity ball energy storage cylinder (52) is equipped with a first electromagnetic coil (524) and a second electromagnetic coil (525). The first electromagnetic coil (524) is used to accelerate the gravity ball (6) that has left the gravity ball energy storage cylinder (52), and the second electromagnetic coil (525) is used to accelerate the gravity ball (6) that has entered the gravity ball energy storage cylinder (52). A plurality of guide cylinders (10) are fixed on the power disk (3). The guide cylinders (10) are used to guide the gravity ball (6) to move from one of the gravity ball energy storage cylinders (52) to another of the gravity ball energy storage cylinders (52). The guide cylinders (10) are equipped with a third electromagnetic coil (101). The third electromagnetic coil (101) is used to accelerate the gravity ball (6) in the guide cylinders (10).

10. The gravity energy engine according to any one of claims 1 to 3, characterized in that: The power disk (3) is provided with a rotation adjustment component three, and the rotation adjustment component three is used to adjust the rotation of the first gravity cylinder (51) relative to the power disk (3). The energy storage components (5) are three groups or four groups or more than four groups.