Gravity limit conversion power machine
By using a gravity-limit conversion power machine and a pull-down gear and chain system to perform multiple gravity conversions, the problems of existing power machines relying on fossil fuels and occupying large areas of land are solved, and a pollution-free, efficient, and flexible power generation solution is achieved.
Patent Information
- Application Number
- CN202510600009.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-02
- Publication Date
- 2025-10-21
AI Technical Summary
Existing power plants mainly rely on fossil fuels, occupy large areas, are limited by climate and geographical regions, and cause environmental pollution problems, making them inflexible in layout and inefficient in generating electricity.
This machine employs a gravity limit conversion power mechanism. By using a large gear and chain system, and employing chains of varying lengths to perform multiple gravity conversions on the counterweight cabinet, it achieves power limit conversion. The machine has a simple structure, occupies a small area, and is suitable for various geographical environments.
It achieves high-efficiency power generation that is pollution-free, occupies little space, requires low investment, and allows for flexible layout. It is suitable for various electricity needs and can generate electricity anywhere with gravity, reducing the cost of electrolysis for hydrogen and oxygen production.
Smart Images

Figure CN120819486A_ABST
Abstract
Description
[0001] The present invention does not require any fossil energy or self-generated energy (water, light, wind, chemical (battery)), but is a machine that utilizes gravity (gravitational) energy (it is a power machine that does not consume the energy currently known to people (coal, oil, gas, uranium, water, wind, light, chemical)).
[0002] Existing power machines include renewable energy power machines (hydroelectric generators, photovoltaic panels, wind turbines, etc.) and non-renewable energy power machines (thermal power generators, nuclear power generators, oil-fired power generators, etc.). Renewable energy power machines are significantly restricted by weather, climate, and geographical location. Non-renewable energy power machines primarily consume fossil fuels, pollute the air, and require significant distances between power generators and users. Furthermore, power generation requires significant land and capital investment. This machine, a third type of energy source, "gravity energy," occupies a relatively small area and is less restricted by geographical constraints. It can generate electricity anywhere and requires no long-distance power transmission and distribution equipment (poles, wires, substations). The machine utilizes only gravity (water, sand, etc.), with water and sand acting as the medium (gravity carrier).
[0003] This gravity limit conversion power machine utilizes the force of the downward pulling large gear and chain on the downward pulling small gear, and then pulls the counterweight cabinet downward and upward through the equidistant length chains on the square ring connecting rod, transfers the gravity point of the counterweight cabinet on the circular wheel, and then horizontally pulls the counterweight cabinet away from the axis (heavy) on one side of the circular wheel and releases the counterweight cabinet close to the axis (light) on the other side, and then achieves the purpose of gravity limit conversion power through the action of the outer cliff track and the inner cliff track of the circular wheel.
[0004] The advantages of this invention over existing technologies are as follows: 1. The power machine of this invention does not utilize any fossil energy or other self-generated energy (such as wind, solar power, water, oil, gas, and uranium), but rather uses gravity (gravitational) energy, resulting in zero pollution. 2. Compared to existing power plants (stations), which require a large footprint, this machine is simpler and occupies a very small area. It does not require other energy sources and does not require a large upstream and downstream industrial chain. 4. This machine is not restricted by climate or geography; it can be built anywhere on Earth with gravity and generate electricity. 5. This machine can be built once and generate electricity for the rest of its life. 6. This machine's gravity-conversion power reaches its limit, allowing it to be scaled down to its limit, significantly increasing its power. 7. This machine requires a small investment and allows for quick construction. 8. Depending on the amount of electricity consumed, this machine can be sized or scaled; it can be used as a single unit in a group or as a single unit in several groups. 9. This machine can be used by a single household, a single unit in a residential complex, a factory, a mine, a work unit, a railway, a school, a hospital, a military camp, or even an entire city. 10. This machine can replace renewable energy and is the most suitable substitute for non-renewable energy. 11. This machine generates electricity cheaply and can reduce the cost of electrolytic hydrogen and oxygen production.
[0005] The specific solution of the gravity limit conversion power machine of the present invention is realized as follows: the greatest advantage of this machine is that it can convert gravity to power by using two technical means.
[0006] 1. Use the pull-down gear and the pull-down gear chain to pull down the gear on the opposite link chain rod, and then lift the counterweight cabinet at each location through the equidistant length chain.
[0007] 2. When the equidistant length chain lifts the counterweight cabinet at the 12 o'clock position of the circular wheel, four forces can be utilized: (1) When the equidistant length chain is at the 12 o'clock position, it is 50 cm away from the axis (the diameter of the circular wheel is 21 meters). It pulls down and lifts up a group of two counterweight cabinets at the same time, pulling down (pressing down) the circular wheel for the first time; (2) The equidistant length chain passes around the lifting gear and is tied to a boom 1 meter away from the axis horizontally. While the equidistant length chain pulls up the counterweight cabinet, it also applies a second downward pulling force to the circular wheel; (3) When the equidistant length chain pulls up the counterweight cabinet to the 3 o'clock position of the circular wheel, the outer support groove roller carries the counterweight cabinet and presses it on the edge of the circular wheel, which is the farthest horizontally from the axis, and the gravity (power) is the largest (heaviest); (4) At the same time, the inner support groove roller carries the counterweight cabinet and presses it on the closest horizontal distance to the axis of the circular wheel, and the gravity (power) is the smallest (lightest). This is equivalent to the two counterweight cabinets in this group being pressed on the right half of the circular wheel, and there is no weight on the other side (the left half). This is the ultimate solution and method for converting gravity into power.
[0008] The accompanying drawings are as follows:
[0009] Figure 1 It is a schematic front view of the entire gravity limit conversion power machine (1), base converter (2), and working machine (generator) (3) of the present invention.
[0010] Figure 2 It is a schematic top view of the entirety of the circular wheel of the gravity limit conversion power machine.
[0011] Figure 3 It is a side view schematic diagram of a gravity limit conversion power machine pulling down a large gear to pull down a small gear.
[0012] Figure 4 It is a schematic diagram of the angle position of the outer spoke and the inner spacer spoke plate of the gravity limit conversion power machine, the position of the large gear pulled down, the position of the horizontal middle gear pulled up, and the side view of the braking device.
[0013] Figure 5 The invention is a side view schematic diagram of the positions of all outer cliff type base convex angle irons and inner cliff type base convex angle irons of the gravity limit conversion power machine.
[0014] Figure 6The invention is a side view schematic diagram of the extreme positions of an outer fulcrum groove roller and an inner fulcrum groove roller of a gravity limit conversion power machine on an outer cliff track and an inner cliff track.
[0015] Figure 7 The present invention is a front view schematic diagram of an outer fulcrum groove roller of a gravity limit conversion power machine on an outer cliff track.
[0016] Figure 8 It is a gravity limit conversion power machine: the upper picture is a side view schematic diagram of the positions of the boom edge gears and the outer and inner edge guide gears on the long and short booms and the equidistant length and short chains in the direction of the two gears; the lower picture is a top view schematic diagram of the upper picture.
[0017] Figure 9 、 Figure 10 、 Figure 11 、 Figure 12 、 Figure 13 It is a side view schematic diagram of the positions of the inner fulcrum groove roller and the outer fulcrum groove roller under pressure on the circular wheel at various positions of the gravity limit conversion power machine counterweight cabinet, as well as the positions of the water inlet and outlet valves and the air inlet and outlet valves.
[0018] Figure 14 It is a side view schematic diagram of the gravity limit conversion power machine counterweight cabinet assembly, the positions of the air inlet and outlet valves and the water inlet and outlet valves, and the shape of the counterweight cabinet shaft hole.
[0019] Figure 15 It is a top view schematic diagram of the gravity limit conversion power machine counterweight cabinet, the counterweight cabinet connecting pipes, the water inlet and outlet valves, and the air inlet and outlet valves.
[0020] Figure 16 This diagram shows an inner spacer wheel, an inner cliff-shaped angle iron with front and back sides intersecting at 45 degrees, an inner cliff track, and a fixed screw. The top diagram is a side view, and the bottom diagram is a top view.
[0021] Figure 17 It is a side view schematic diagram of the structure of the downward pulling and upward pulling position of the pulling gear by the downward pulling large gear chain and the upward lifting horizontal middle gear chain of the gravity limit conversion power machine.
[0022] Figure 18 This is a side view diagram of the three forces (the weight force of the double counterweight cabinets; the pulling force of two points on a chain away from the axis; and the additional power of the large gear and chain that pull down and lift up the counterweight cabinet on the round wheel) when the counterweight cabinet of the gravity limit conversion power machine is at the 12 o'clock position on the round wheel.
[0023] Figure 19 It is a top-down schematic diagram of the interlaced connection structure of the components on the outer side of the circular wheel of the gravity limit conversion power machine, including the long and short extension arms of the circular wheel, the equidistant length chains, the inner and outer square rings, the downward pull-down large gear and chain and small gear, the upward pull-up horizontal middle gear, and the upward pull-up horizontal chain.
[0024] The gravity limit conversion power machine generally includes a power machine (1) (gravity limit conversion power machine), (2) a transmission, and (3) a generator. The power machine mainly includes an outer wheel, an interval wheel, a counterweight cabinet, a pull-down gear, a pull-down gear chain, a pull-down pinion, an equidistant length chain, an inner and outer square ring, a square ring connecting rod, an outer and inner spoke plate of the round wheel, an outer cliff-type base convex angle iron, an outer cliff track, an inner cliff-type base convex angle iron, an inner cliff track, an outer fulcrum groove roller, an inner fulcrum groove roller, a long and short extension arm, an extension arm edge gear, an interval wheel edge gear, an outer and inner edge guide gear, a pulling gear, and a chain gear. These parts constitute the power machine.
[0025] Specific parts of the power machine are as follows: 1. Outer wheel, 2. Inner spacer wheel, 3. Counterweight cabinet, 4. Equal length chain, 5. Pull-down gear, 6. Pull-down pinion, 7. Pull-down gear chain, 8. Gear adjustment frame, 9. Lift-up horizontal middle gear, 10. Lift-up horizontal pinion, 11. Lift-up horizontal chain, 12. Lift-up horizontal gear frame, 13. Outer spoke plate, 14. Spacer spoke plate, 15. Outer cliff-type base angle iron, 16. Outer cliff track, 17. Outer roller fixing frame, 18. Outer fulcrum groove roller, 19. Inner cliff-type 45-degree base angle iron, 20. Inner cliff track, 21. Inner fulcrum roller fixing price, 22. Inner fulcrum groove roller, 23. Long and short extension arm, 24. Extension arm edge gear, 25. Spacer edge gear, 26. Inner square ring, 27. Outer square ring, 28. Square ring connecting rod, 29. Lifting rod, 30. Lifting bolt, 31. Counterweight cabinet chain bolt pile, 32. Axle beam, 33. Chain 90-degree steering knuckle, 34. Counterweight cabinet track groove, 35. Round wheel outer and inner wheel connecting rod, 36. Round wheel outer and inner wheel serial plate, 37. Outer round wheel flange, 38. Inner spacer fixing screw, 39. Bracket, 40. Counterweight cabinet water inlet valve, 41. Air outlet valve, 42. Water outlet valve, 43. Air inlet valve, 44. Brake pad, 45. Brake screw, 46. Brake clamp, 47. Brake crank, 48. Counterweight cabinet connecting pipe, 49. Counterweight cabinet combined shaft hole, 50. Shift chain gear, 51. Outer and inner edge guide gear, 52. Pulling gear.
[0026] The position, structure, function, role of each component of the power machine (1) on the machine body and the scheme and method for converting gravity to power when the gravity reaches the limit; the outer wheel 1 and the inner spacer wheel 2 (mainly important components for converting gravity into power, which are basic wheels. All activities of converting gravity into power must be carried out on the round wheels. The outer cliff-type base convex angle iron 15 and the inner cliff-type angle iron 19 must be fixed on the spoke plates of the outer and inner spacer wheels. They are also connected to the axle beam 32 to output power outward).
[0027] Five schemes for converting gravity limit into power and five methods for converting gravity into power;
[0028] 1. The scheme and method for the downward pulling power of a group of two counterweight cabinets to the 12 positions of the circular wheel; 2. The scheme and method for converting the power of the 50-centimeter gravity limit when pulling down the counterweight cabinet; 3. The scheme and method for converting the power of the 1-meter gravity limit when pulling down; 4. The scheme and method for converting the power of the outer fulcrum groove roller and the track gravity limit; 5. The scheme and method for converting the power of the inner fulcrum groove wheel and the track gravity limit (circular wheel diameter is 21 meters).
[0029] (1) The scheme and method of turning two pieces of the counterweight cabinet to the 12-position pull-down force of the round wheel: see Figure 10 、 Figure 17 、 Figure 18 When the counterweight cabinet 3 rotates to the 12th position of the circular wheel, the pull-down gear 5 and the pull-down gear chain 7 pull the two pieces of the counterweight cabinet (the counterweight cabinet is connected) upward through the lifting gear 52 and the equidistant length chain 4, exerting downward pressure on the spacer wheel 2 in the circular wheel 1, achieving the purpose of the first gravity limit power conversion.
[0030] (2) The scheme and method of pulling down the counterweight cabinet 50 cm to achieve the ultimate power: see Figure 13 、 Figure 14 、 Figure 17 、 Figure 19 As shown, refer to other drawings. The large gear 5 is pulled down through the equidistant length chain 4 (the misalignment of the inner and outer square rings 26 and 27 creates the long and short extension arms 23, and the long and short extension arms create the equidistant length chain 4. If you want to pull the counterweight cabinet 3 in an even manner, you must have the equidistant length chain 4 to make up for this misalignment, and you can solve the problem of pulling the counterweight cabinet 3 in an even manner). The pull-down of the small gear 6 is then exerted through the inner and outer square ring connecting rods 28, and the force of the lifting gear 52 on the connecting rod is then exerted through the equidistant length chain 4 (one end is tied to the hanging bolt 30 of the hanging rod 29, and the other end is tied to the counterweight cabinet chain bolt pile 31. The equidistant length chain 4 passes around the extension arm edge gear 24, Then, it passes around the outer and inner edge guide gears 51 and connects to the counterweight cabinet chain bolts 31. The pull-down gear 5 pulls all the counterweight cabinets 3 through the above-mentioned device, and the counterweight cabinets 3 are precisely positioned at each location according to the user's will (because all chains are aligned by equal-length chains, that is, although they appear to be of different lengths, they are actually aligned when pulling the counterweight cabinets 3 into place). When the counterweight cabinets 3 are pulled to the 12 o'clock position on the circular wheel, the equal-length chains 4 generate a second downward force for the extension arm edge gear 24 (because it is 50 cm horizontally away from the axis), and the downward force is also considerable. If each counterweight cabinet (containing water) weighs 100 kg, a group of two counterweight cabinets will have a total force of 200 kg (0.5 m × 9.8 N × 200 kg = 980 N m of force). The purpose of converting the third 50 cm gravity limit into power is achieved.
[0031] (III) Pull down 1 meter gravity limit conversion power scheme and method: see Figure 13 、 Figure 14 、 Figure 17 、 Figure 19 As shown in the figure, refer to the other figures. The secondary power applied to the counterweight cabinet 3 at position 12 of the circular wheel is: When the equal-length chain 4 pulls up the counterweight cabinet 3, the other end is tied to the bolt 30 of the suspension rod 29. This pulls up the counterweight cabinet 3 while also applying a downward force (1.0 m x 9.8 N x 200 kg = 1960 N m) of gravity to the suspension rod 29. This achieves the goal of converting gravity into power at a distance of one meter.
[0032] The actual wheel diameter is 21 meters, and the counterweight cabinet (filled with water) is 3 meters thick (combined). The actual weight is: 820,000 kg (0.5 m × 9.8 N × 820,000 kg = 4,018,000 Nm) (1.0 m × 9.8 N × 820,000 kg = 8,036,000 Nm). The combined forces are: 4,018,000 + 8,036,000 = 1,205,4000 Nm. The counterweights at two other positions on the upper half of the wheel: at the 10:30 and 1:30 positions, while the downward tension and compression forces of counterweight cabinets 3 decrease, still provide considerable power. This achieves the third extreme of power conversion.
[0033] (IV) Scheme and method for converting the gravity limit of the external cliff track and external fulcrum groove roller into power: see Figure 2 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 9 As shown. When the counterweight cabinet 3 is pulled to the position of the round wheel 3 by other devices under the action of the downward pull of the large gear 5 and the downward pull of the chain 7, Figure 6 、 Figure 9 The outer fulcrum groove roller 18 shown carries the counterweight cabinet 3 and is pulled to the 3 o'clock position of the round wheel, that is, the edge of the round wheel. The gravity conversion power reaches the limit, and the fourth limit purpose of the gravity conversion power is also achieved.
[0034] (V) Scheme and method for converting the gravity limit of the inner cliff track and inner fulcrum groove roller into power: see Figure 2 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 9 As shown in the figure, under the action of the pull-down gear 5 and the pull-down chain 7, the counterweight cabinet 3 is pulled to the 3 o'clock position by other devices. At the same time, the counterweight cabinet 3 at the 9 o'clock position is also pulled to the axis center position (because the two counterweight cabinets are connected). The inner fulcrum groove roller 22 carries the counterweight cabinet 3 to the axis center position 32 of the circular wheel. The gravity point also reaches the axis center and even exceeds the axis center, increasing the positive power. The gravity conversion power once again reaches the limit, which is the purpose of gravity reaching the limit for the fifth time.
[0035] from Figure 9 It can be seen that when a group of two counterweight cabinets 3 are at the 3 o'clock position and the 9 o'clock position of the circular wheel, there is a weight on one side of the circular wheel and no weight on the other side. This is the purpose of gravity conversion power limit.
[0036] Pulling down the large gear 5 as a whole, the upper half wheel pulling down has two functions, one is to pull down and lift the counterweight cabinet, the other is to apply downward pulling force to the round wheel while pulling down the counterweight cabinet. Because the two fulcrums of the upper pull chain are at a distance from the axis, the gravity limit conversion power has another power increase point.
[0037] In the above question, the gear 9 and the chain 11 as a whole play the role of lifting the square ring connecting rod 28 upward at both ends, pulling down the large gear 5 and the chain 7 in the middle to pull the square ring connecting rod 28 downward, and lifting the middle gear 9 and the chain 11 at the other end to lift the square ring connecting rod 28 upward and stabilize it horizontally.
[0038] Counterweight cabinet 3 combined, Figure 14 The purpose of separating the counterweight cabinet is to illustrate the principle of converting gravity into power, and the purpose of combining the two is to make full use of the space on the wheel and add more counterweights.
[0039] Outer ring 27 Description: See Figure 1 、 Figure 19 As shown, the equidistant length chains 4 are lifted and pulled down, and the counterweight cabinet 3 is tightened through the square ring connecting rod 28. If the chain is loose, a reaction force will be generated. If the chain is too tight, the square ring connecting rod 28 will bend. The outer square ring 27 is added to prevent the square ring connecting rod 28 from being bent.
[0040] Description of outer wheel 1 and inner spacer wheel 2: see Figure 1 、 Figure 2 、 Figure 16 、 Figure 19 As shown, the outer wheel has an outer cliff-type base convex angle iron 15 and an inner cliff-type base convex angle iron 19 ( Figure 4 The vertical dotted line in the middle is exactly), and the front and back sides of the inner spacer respectively have an outer cliff type base convex angle iron 15 and an inner cliff type base convex angle iron 19 intersecting at 45 degrees.
[0041] Counterweight cabinet 3 is best for water, as it is easy to load and unload, available everywhere, and easy to get. However, it has a disadvantage: it is susceptible to freezing. Sand is also easy to load and unload, available everywhere, and easy to get.
[0042] The rotation speed of this machine is uniform, and the falling speed of the object is constant. As long as the water and sand in the counterweight cabinets are equal in each cabinet, there will be no phenomenon of sometimes fast and sometimes slow.
[0043] The chain gear 50 can change the distance between the equidistant length chains 4 and the axis.
[0044] The counterweight cabinet 3 can be multiple groups. This machine has four groups of eight pieces, eight groups of sixteen pieces, or sixteen groups of thirty-two pieces. The more counterweight cabinets there are, the smaller the vibration when the wheel rotates.
[0045] The gears used in this machine are all free gears, that is, there is no ratchet gear.
[0046] Large gear adjustment frame 8 (see Figure 3 、 Figure 4 As shown), the pull-down angle of the square ring connecting rod 28 can be adjusted, and the purpose is to maximize the power.
[0047] The diameter of the circular wheel of this machine can be several meters, tens of meters, or hundreds of meters.
[0048] The counterweight can be several tons, dozens of tons, hundreds of tons, thousands of tons, tens of thousands of tons, or even hundreds of millions of tons.
[0049] Power calculation for actual wheel diameter 21 meters (counterweight cabinet thickness: 3 meters) × 4 = 12 meters (combined)
[0050] 1. Volume: Area × Thickness
[0051] 137×3m=411m 3 -1m 3 =410m 3 ,
[0052] Axial rectangular hole: 0.07m×0.45m×3m=0.0945m 3
[0053] 2. Specific gravity of water: 1000kg / m 3 , 410×1000=410000kg
[0054] 3. Weight of eight counterweights: (total weight) 410,000 × 8 = 3,280,000 kg
[0055] 4. Power calculation: Right (power): 93137240N.m; Left (power): 8156540N.m
[0056] 5. Right-Left (Total Momentum) 93137240-8156540=84980700 N.m
[0057] 6. Total momentum ÷ total weight (1 kg momentum) 84980700 ÷ 3280000 = 25.90875 (Nm)
Claims
1. A gravity limit conversion power machine characterized by It is a gravity limit conversion power composed of an outer wheel, a spacer wheel and spokes, a counterweight cabinet, a cliff track, an inner fulcrum groove roller and an outer fulcrum groove roller pulling chain, a lower pull-down gear and a lower pull-down chain, long and short arms and boom edge gears, an upper horizontal gear and chain, inner and outer square rings, and a gear chain gear.
2. The outer wheel, inner spacer and spoke according to claim 1 are characterized in that It is a very important device that supports the entire wheel's gravity conversion power activity and output power.
3. The counterweight cabinet according to claim 1 is characterized in that it is the gravity carrier of the machine and is a cabinet body for containing items such as water and sand. The machine is a four-group eight-piece cabinet, and can also be a multi-group cabinet.
4. The cliff track according to claim 1 is characterized in that It is a device that converts the limit of gravity into power, which is particularly important.
5. The outer support groove roller and the inner support groove roller according to claim 1 are characterized in that they are the most important devices for converting the gravity point of the counterweight cabinet to the gravity limit.
6. The unequal length chain according to claim 1 is characterized in that one end is tied to the counterweight cabinet bolt and the other end is tied to the hanging bolt of the hanger, with a pull-down gear and a pull-down gear chain in the middle to pull down the counterweight cabinet important device at the other end.
7. The pull-down gear and pull-down gear chain according to claim 1 are characterized in that It is a very important device for pulling down and lifting the counterweight cabinet.
8. The long and short arms and boom according to claim 1 are characterized in that It is a device set up according to the staggered stacking of the outer and inner square rings, and is also very important.
9. The arm edge gear and inner and outer edge guide gears according to claim 1 are characterized in that It is a device that changes the pulling direction of chains of equal lengths.
10. The horizontal lifting middle gear, horizontal lifting pinion and horizontal lifting chain according to claim 1 are characterized in that The purpose of the square ring connecting rod is to prevent it from being bent when it is lifted up so that the square ring connecting rod can operate horizontally.
11. The inner and outer square rings according to claim 1 are characterized in that It is a chain of equal lengths connected in the middle to lift the square ring connecting rod, and the counterweight cabinet is pulled at both ends. Since the counterweight cabinet is particularly heavy, it will bend the square ring connecting rod. The inner and outer square rings can play an inward pulling assisting role at both ends of the square ring connecting rod.
12. The sprocket according to claim 1 is characterized in that It can change the distance between the equidistant length chains and the axis, and can increase the gravity limit conversion power to add another power assist point.