CN116812156A - Two-precession power technology infinite endurance power system of robot warfare foam weapon fighter helicopter - Google Patents

Two-precession power technology infinite endurance power system of robot warfare foam weapon fighter helicopter Download PDF

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Publication number
CN116812156A
CN116812156A CN202210808552.XA CN202210808552A CN116812156A CN 116812156 A CN116812156 A CN 116812156A CN 202210808552 A CN202210808552 A CN 202210808552A CN 116812156 A CN116812156 A CN 116812156A
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power
wind
technology
precession
charging
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钟炽昌
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Qingyuan Jierjinkuo Technology R&d Co ltd
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Qingyuan Jierjinkuo Technology R&d Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64DEQUIPMENT FOR FITTING IN OR TO AIRCRAFT; FLIGHT SUITS; PARACHUTES; ARRANGEMENT OR MOUNTING OF POWER PLANTS OR PROPULSION TRANSMISSIONS IN AIRCRAFT
    • B64D27/00Arrangement or mounting of power plants in aircraft; Aircraft characterised by the type or position of power plants
    • B64D27/02Aircraft characterised by the type or position of power plants
    • B64D27/24Aircraft characterised by the type or position of power plants using steam or spring force

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  • Aviation & Aerospace Engineering (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

The two precession power technology infinite endurance power system of the robot war foam weapon fighter helicopter comprises the following components: the foam weapon is a weapon for blocking the robot information to enable the robot to lose fight, and the fight helicopter two-precession power technology infinite endurance power system is to manufacture a light wind driven generator by using foam plastic light material, graphene aerogel magnetic material, foam light material and a magnetic powder structure which is 100 times stronger than a common magnetic material, so that the weight of the wind driven generator is reduced, and the load of the fight helicopter is reduced. The wind driven generator arranged in the wind pipe is provided with a wind power cooling accelerator with a two-inlet power technology, so that the wind speed of the fighter helicopter is increased by 1 time per second by 100 meters of wind power per second by 55 meters of wind speed, and the powerful power of the fighter helicopter is created; the fight helicopter uses a two-precession power technology infinite endurance power system, the volume of a battery is reduced by 200 times, and 2, the fight helicopter nano carbon film solar energy shell; 3, a two-precession power technology wind power cooling accelerator layer; and 8, a plastic foam injection box.

Description

Two-precession power technology infinite endurance power system of robot warfare foam weapon fighter helicopter
Technical field:
the invention relates to helicopter technology; flying car technology; unmanned aerial vehicle technology; foam technology; solar power generation technology; wind power generator technology; a battery rapid charging technique; an infinite endurance power technology; a lightweight material technology for a stator and a rotor of a generator;
the background technology is as follows:
the future war is the war of the robot to replace life to protect home and guard state-! The development of scientific technology creates a tangible robot and develops a stealth robot; the steel structure of the robot increases the fight strength by ten hundred times; to win a war of a robot, a lot of robots are consumed, a lot of bombs are consumed, and the winning result of the robot can be created by the robot and the robot being in the same tactic as the full tactic-!
The prior art, helicopter technology; flying car technology; unmanned aerial vehicle technology; foam technology; solar power generation technology; wind power generator technology; a battery rapid charging technique; providing a basic technique for creating a weapon that reduces the cost of war and quickly wins the robot.
Helicopter technology, aerocar technology and unmanned plane technology have moved to the popular mature technology stage, but in terms of power, the continuous voyage contradiction and space weight contradiction are generated-!
In the prior art of automobile power endurance, the current maximum endurance is 1000 km, the larger the endurance is, the larger the battery volume is, and the weight of the battery reaches the jack; endurance is proportional to battery weight ≡!
The existing rapid charging technology can reach 90Ma/h 6 min full technology;
the existing battery manufacturing technology can reach the technology of 10 times of quick charging time;
the prior art of Ru-Fe-B wind driven generator is known as the king in the field of magnetism. The advantage of high energy density makes neodymium iron boron permanent magnet materials widely applied in modern industry and electronic technology. Under the state of bare magnetic, the magnetic force can reach 3500 gauss.
Wind power generation utilizes natural energy. Compared with diesel power generation, the method is much better. Can be used for a long time. The principle of wind power generation is that wind power is utilized to drive windmill blades to rotate, and then the rotating speed is increased through a speed increaser so as to promote a generator to generate electricity. According to the current windmill technology, the generation of electricity can be started at a breeze speed (breeze degree) of about three meters per second. On modern wind generators, the maximum power output is typically 500 to 1500 kw.
The low-speed shaft of the low-speed shaft wind driven generator connects the rotor shaft center with the gear box. On modern 600 kw wind turbines, the rotor speed is quite slow, approximately 19 to 30 revolutions per minute. The shaft has a conduit therein for a hydraulic system to activate operation of the pneumatic brake. To the left of the gearbox is a low speed shaft which can increase the rotational speed of the high speed shaft to 50 times that of the low speed shaft.
Existing solar power generation technologies; the wind power generator technology is a technology suitable for military use, but a solar power generation technology; the weight of the materials used in the wind driven generator technology is too heavy to be suitable for helicopters, aerocars and unmanned aerial vehicles to use ≡!
The existing light material is as follows: the foam plastic and the graphene aerogel magnetic material are 100 times stronger than the common magnetic material, so that conditions are created for manufacturing light equipment.
The secondary power is that the sun system earth and the eight planets revolve around the sun and move along with the sun ring around the silver river system; the solar system eight planets thus produce movement that both encircles the sun and follows the movement of the sun around the silvery system; the eight-major planet moves around the sun, and the eight-major planet moves around the sun with a radius as a center, so that the eight-major planet can be called as planet radius power movement around; the solar system moves around the Galaxy system, which is a circular movement taking the black hole in the center of the Galaxy system as the center, so the solar system moves around the Galaxy system, and can also be called as star radial power circular movement;
the living on the earth, the nerve is the living nerve formed by the movement of the planet of the earth around the sun, the air breathed by the human body is the air generated by the movement of the planet of the earth around the sun and the movement of the following solar system around the lunar system-! The survival of the earth and human beings is that the earth planet revolves around the sun and moves along with the sun around the lunar system to generate two radius dynamic revolution movement forms;
the motion forms of the two radius dynamic revolution of the earth generate the conservation power of the whole power of the universe, and the space is divided into the space of local individuals of the star system and the star system by the motion of the substance, so that the individual substances generate the non-conservation power of the mass distinction; the earth's non-conserved energy motion produces the result of increased velocity and increased kinetic energy: the earth is rotated by an operating speed of 3 km of energy of 309 m per second, producing an operating speed of 30 km per second increased around the revolution of the sun; the earth generates an operating speed which increases to 300 km per second along with the revolution of the solar system around the lunar system from the operating speed of 3 km per se; the natural science of earth's bi-precession is the science of increasing speed and increasing kinetic energy-!
The natural science of the earth's two-precession power creates everything and life of the earth, and the civilization of human beings also creates various two-precession power cultures and two-precession power science technologies under the control of the natural scientific strength of the earth's two-precession power;
human hunting before history, have created the wood and thrown the rifle, later use two precessional force science to create the javelin of the two precessional force structures of stone gun head and stick; the bow and arrow of the two-precession power structure are created later;
in the sealing war age, gunpowder is synthesized by two elements of carbon and nitrate; the Chinese people use fire to draw and wrap up the medicine to make the firecracker, the western people use the secondary power of the firecracker to create the rifle of bullet and firing bullet, and the two-power technical weapon of the shell and firing shell is invented.
The present generation of human beings invents invisible materials, and the invention of the invisible materials changes the form of present and future war: the present and future forms of war are the forms of war which are matched with the shadowless and intangible two-precession dynamic science technology weapon on the visible and tangible battlefield to effectively strike and destroy the enemy military strength and then create the winner!
PCT/CN2021/000016 motor combination accelerating engine second charging load power infinite endurance system is an electric engine structure which is composed of four dual-purpose motor generators, two-precession power technology structure, and is charged while running, and replaces a fuel engine; the four battery packs are structured into the international patent application of the load power infinite endurance system.
The invention comprises the following steps:
the two precession power technology infinite endurance power system of the robot war foam weapon fighter helicopter comprises the following components:
the fight force of the robot is very strong, the reinforced iron skeleton of the robot is difficult to destroy-! To eliminate the robot enemy, a large number of bombs are consumed, and the robot wars tend to produce the same results as the full-! To win the warfare of the robot, the best weapon and method is to use plastic foam as the weapon, close the information command of the robot, make the robot lose the activity information, then eliminate-!
The magnetic material of the generator is a high-density weight material, and the infinite endurance power system of the two-precession power technology of the fighter helicopter aims to solve the contradiction of spaceflight weight.
The power of the two-precession power technology infinite endurance power system of the warship helicopter of the warship foam weapon is the nano carbon film solar power, the power of the wind power cooling accelerator wind power generator of the two-precession power technology, and the infinite endurance power battery pack forms the two-precession power technology infinite endurance power system of the warship helicopter.
The foamed plastic is a light material, the graphene aerogel material is a lighter material, and the graphene aerogel magnetic material, the foamed light material and the magnetic powder structure which is 100 times stronger than the common magnetic material can be structured into a light generator magnetic material, so that the weight of the generator is reduced.
The light wind driven generator can be installed on an airplane, a helicopter or a flying car for use.
The wind speed of the common wind driven generator is required to be 1-3M per second, the speed of a helicopter and a flying car is 200 km per second, and the speed is 55M per second; the common wind driven generator is arranged on a helicopter and a flying car, the rotating speed of the generator generated by wind power can reach 20 times, and the generating capacity can be improved by 20 times; the weight of the generator is reduced by 20 times.
The light wind driven generator is arranged in the wind pipe, and the wind pipe can keep the wind speed and stabilize the wind power; 4 wind driven generators can be arranged on one wind pipe; 20 wind pipes can be arranged on one circle of the helicopter and the aerocar, more than 80 wind generators can be assembled on the helicopter and the aerocar, and the wind generators can be directly used for the power of the helicopter and the aerocar.
Two precession power technology wind power cooling accelerators are arranged in front of each light wind driven generator in the wind pipe:
the air inlet of the two-inlet power technology wind power cooling accelerator is designed as an air flow split two-inlet power technology air inlet, the second air inlet is an accelerating air inlet, the second air inlet has the acceleration function and the function of separating cold and hot air flow, only cold air flow passes through, and hot air flow is led out of the air pipe through the first air inlet row; the third air inlet is a two-precession wind power diversion accelerator, the central tube of the three-precession wind power diversion accelerator only passes 40% of wind power, 60% of wind power is discharged by the outer tube of the central tube of the diversion accelerator, the wind speed of the central tube of the two-precession wind power diversion accelerator is higher than that of the outer tube of the wind power, and the wind speed of the central tube drives the air flow of the outer tube of the wind power to form inertial air flow, so that the wind power acceleration effect is generated;
the wind speed of the wind power cooling accelerator with the two-precession power technology can be increased by more than 1 time; the rotating speed of the generator can be increased by 20 times to 40 times; the generating capacity is improved by 40 times; the weight of the generator is reduced by 40 times; if the weight of the common equipment is 1 ton, the weight of the fight helicopter two-precession power technology infinite endurance power system provided with the two-precession power technology wind power cooling accelerator is only 25 kg.
The wind power cooling accelerator with the two-precession power technology can relieve the structure of the axis of the rotor of the low-speed shaft of the wind driven generator and the gear box, and further lighten the weight of the wind driven generator.
In the prior art PCT/CN2021/000016, the international patent application of the motor combined acceleration engine second charging second load power infinite endurance system is only that a motor and four groups of structure battery packs are adopted, and a two-precession technology quick charger and a slow charger charging structure technology are not adopted, and an energy non-conservation and energy conservation two-precession technology structure battery pack quick charging time program infinite endurance method and a slow charging time program infinite endurance method are not adopted;
the two-precession power technology of the robot war foam weapon fight helicopter comprises the two-precession power charging structure technology of a quick charger and a slow charger of an infinite endurance power system:
the prior art fast charger and slow charger are single separately used chargers.
The power consumption and energy consumption output enable the battery to generate an energy non-conservation state, and if the rapid charging technology is not adopted, infinite endurance cannot be generated; the energy conservation of the rechargeable battery is also required to be maintained when the battery is used for charging; the battery capacity generates contradiction between energy consumption and charge time of capacity conservation;
therefore, the charging technology uses two-way power technology, namely fast charging and slow charging, and uses two types of power charging: 1, charging a wind power generator of a wind power cooling accelerator of a two-precession power technology infinite endurance power system and charging solar power of a combat helicopter shell, and 2, charging an auxiliary charging high-capacity battery in cooperation with the wind power generator; creating a charging technology of energy conservation two-precession power technology;
the two-way power structure technology of the fast charger and the slow charger comprises the following steps: the quick charger is a high-voltage charger; the slow charger is a low voltage charger.
First, four groups of structure energy conservation and energy conservation two-precession power technology infinitely continue the journey group battery:
the prior art battery pack is a battery pack that is assembled as a unitary group.
The battery pack of the two-precession power technology infinite endurance power system of the robot war foam weapon fight helicopter is a four-group structure energy non-conservation and energy conservation two-precession power technology infinite endurance battery pack; two groups of the secondary batteries are basic charging secondary batteries with the secondary power technology, one group of the secondary batteries with the secondary power technology is an output power supply battery, and the other group of the secondary batteries with the secondary power technology is an auxiliary charging high-capacity battery; the four groups of battery packs have a conservation capacity of 50% or 60% of rated charging capacity, and the batteries are never fully charged and only used in one-time charging, so that the service life of the batteries can be prolonged; the battery pack with four-group structure and infinite endurance uses a battery combination with the charging speed 10 times faster than that of a lithium battery; the use of the two-step power technique can create a technique that charges 100 times faster than current charging techniques.
According to the current rapid charging technology, the charging time is calculated by filling 90mA/h for 6 minutes: 6 minutes equals 360 seconds, reducing the battery volume by 200 times, i.e. 1.8 seconds can be full; the volume of the battery is reduced by 100 times, and only 3.6 seconds is needed; the battery volume was reduced by a factor of 50 and only 7.2 seconds was used.
The four-group structure energy non-conservation and energy conservation two-procession power technology has the advantages that the capacity of the infinitely continuous battery pack is small, and the volume of the battery can be reduced by 200 times; continuous power supply creates infinite endurance power.
Secondly, an infinite endurance method of a fast charging time program and an infinite endurance method of a slow charging time program of the battery pack with the structure of energy conservation and energy conservation two-power technology are adopted;
the infinite endurance method comprises the following steps: the power consumption output is 1, the rapid charging design is 3, and the charging speed is 2 times greater than the consumption.
According to the figure number, the charger 25, the fast charger is 25A, the slow charger is 25B; the four groups of battery packs are numbered 26, the power consumption output battery is 26A, the two groups of rechargeable batteries are 26B and 26C respectively, and the auxiliary charging high-capacity battery is 26D; the generator number is number 23.
The infinite endurance method of the charging time program two-step power technology comprises the following steps: the charging time is determined to be at least 3 seconds in proportion to the charging speed, for example, the charging speed is 3 times of the energy consumption, and the charging time can be determined to be at least 3 seconds; it can also be determined to be 6 seconds, 9 seconds.
The rapid charging time program infinite endurance method and the slow charging time program infinite endurance method of the energy conservation and energy conservation two-precession power technology comprise the following steps:
1, starting: output battery 26A is output and started, and meanwhile, the 23-generator and auxiliary charging high-capacity battery 26D quickly charges the output battery to keep conservation of energy of the output battery;
2 the rechargeable battery 26B charges the output battery rapidly for 3 seconds; the output battery is kept under the condition of super energy conservation for 9 seconds;
the 3-generator 23 and the auxiliary charging high-capacity battery 26D supplement the rechargeable battery 26B with energy conservation quick charge for 3 seconds;
the 4-generator 23 rapidly charges the auxiliary charging large-capacity battery 26D for 3 seconds;
at this time, the output battery consumes 9 seconds, and energy conservation is generated;
5 the rechargeable battery 26C is charged rapidly to the output battery for 3 seconds, and simultaneously, the generator 23 and the auxiliary charging high-capacity battery 26D assist the rapid charging; the output battery consumes 3 seconds and the super energy is conserved for 6 seconds;
the 6-generator 23 and the auxiliary charging high-capacity battery 26D supplement the rechargeable battery 26C with energy conservation quick charge for 3 seconds; the output battery consumes 3 seconds and the super energy is conserved for 3 seconds;
7 the generator 23 rapidly charges the auxiliary charging large-capacity battery 26D for 3 seconds; the output battery consumes 3 seconds to generate energy conservation;
8 the rechargeable battery 26B charges the output battery rapidly for 3 seconds; the output battery is kept under the condition of super energy conservation for 6 seconds;
the 9 generator 23 and the auxiliary charging high-capacity battery 26D supplement the rechargeable battery 26B with energy conservation quick charge for 3 seconds; the output battery is kept under the condition of super energy conservation for 3 seconds;
the 10 generator 23 rapidly charges the auxiliary charging large-capacity battery 26D for 3 seconds; at this time, the output battery consumes 3 seconds, resulting in conservation of energy.
Because the auxiliary charging large-capacity battery is more than ten times larger than the energy consumption, the energy-consuming 6-time charging amount can be generated, and the auxiliary charging large-capacity battery can be charged by using a time program method of more than 6 seconds: the quick charge time is 6 times of the energy consumption time, and 36 seconds of energy consumption energy can be generated;
1, the output battery 26A is started for 6 seconds, the generator 23 and the auxiliary charging high-capacity battery 26D are simultaneously charged for 6 seconds to the output battery, and the output battery is kept under the condition of super energy conservation for 30 seconds;
2, the generator 23 performs hybrid charging for 30 seconds to the auxiliary charging high-capacity battery 26D by fast charging and slow charging; energy conservation is generated;
at this time, the output battery 26A is conservation of energy;
3, the rechargeable battery 26B rapidly charges the output battery for 6 seconds; the output battery is kept under the condition of super energy conservation for 30 seconds;
4, the generator 23 and the auxiliary charging large-capacity battery 26D charge the rechargeable battery 26B rapidly for 6 seconds,
at this time, the output battery 26A is super-energy-conserving for 24 seconds
5, the generator 23 performs hybrid charging for 24 seconds to the auxiliary charging high-capacity battery 26D by fast charging and slow charging; energy conservation is generated;
6, the rechargeable battery 26C rapidly charges the output battery for 6 seconds; the output battery is kept under the condition of super energy conservation for 30 seconds;
7, the generator 23 and the auxiliary charging high-capacity battery 26D rapidly charge the rechargeable battery 26C for 6 seconds, so that energy conservation is generated;
at this time, the output battery 26A is super-energy-conserving for 24 seconds
8, the generator 23 performs hybrid charging for 24 seconds to the auxiliary charging high-capacity battery 26D by fast charging and slow charging; conservation of energy of the four groups of batteries;
repeated cyclic charging, rapid charging and slow charging by the energy conservation and energy non-conservation two-precession power technology are created to reduce the volume of the battery by 200 times, and infinite endurance power by the two-precession power technology is created.
Drawings
Description drawings fig. 1A and B are front views of a robot warfare foam weapon fight helicopter two-precession power technology infinite endurance power system helicopter and a power structure:
1, a foam weapon fight helicopter cockpit; 2, a nano carbon film solar power shell of a fighter helicopter; 3, a power layer of the wind power generator of the wind cooling accelerator by a two-precession power technology; 4, lifting the electric fan of the foam weapon fighter helicopter; 5, a fight helicopter radar tracks the missile; 6, a fighter helicopter radar tracks the missile; 7, a foam weapon fighter helicopter landing seat; 8, a plastic foam injection box; 9, a power layer air pipe of the wind power cooling accelerator wind power generator adopting a two-inlet power technology; 10, a light wind power generator; 11, a two-precession power technology wind power cooling accelerator;
description figure 2 is an explanatory diagram of a wind power cooling accelerator of a wind power generator of a two-precession power system of a two-precession power technology of a warship foam weapon combat helicopter of a robot:
description drawings figure 2A is a side cross-sectional view of a two-precession technology wind powered cooling accelerator:
11, a two-precession power technology wind power cooling accelerator; 12, an air inlet of the wind power cooling accelerator with the two-inlet power technology; 13, a split air inlet of the wind power cooling accelerator adopting the two-inlet power technology; 14, a radiator at an air inlet of the wind cooling accelerator by a two-inlet power technology; 15, a second cold and hot air flow separation accelerating air inlet of the two-inlet power technology wind power cooling accelerator; 16, a wind outlet pipe of the wind cooling accelerator with the two-inlet power technology; 17, a wind power cooling accelerator air outlet adopting a two-inlet power technology;
fig. 2B of the drawings is an air intake front view of a two-inlet power technology wind cooling accelerator:
13, a split air inlet of the wind power cooling accelerator adopting the two-inlet power technology; 17, a wind power cooling accelerator air outlet adopting a two-inlet power technology;
fig. 2C of the drawings is an air intake front view of a two-inlet power technology wind cooling accelerator:
12, an air inlet of the wind power cooling accelerator with the two-inlet power technology; 13, a split air inlet of the wind power cooling accelerator adopting the two-inlet power technology; 14, a radiator at an air inlet of the wind cooling accelerator by a two-inlet power technology;
fig. 2D of the drawings is an air outlet front view of the wind cooling accelerator of the two-inlet power technology:
11, a two-precession power technology wind power cooling accelerator; 16, a wind outlet pipe of the wind cooling accelerator with the two-inlet power technology; 17, a wind power cooling accelerator air outlet adopting a two-inlet power technology;
fig. 3 of the accompanying drawings of the specification is an infinite endurance battery pack adopting four groups of structural energy conservation and energy conservation two-precession power technology: schematic of charging procedure (see pages 4, 9, 5)
The specific embodiment is as follows:
is developed by the company of limited responsibility for developing technology of Ji two-way advanced in Qing Yuan city of Guangdong province together with the technical sector of military.

Claims (3)

1. The two precession power technology infinite endurance power system of the robot war foam weapon fighter helicopter comprises the following components:
the technical characteristics of the two-precession power technology infinite endurance power system of the robot war foam weapon fighter helicopter are as follows: the infinite endurance power of the second-precession technology is obtained by adopting nano carbon film solar power, the wind power of the wind power cooling accelerator wind power generator of the second-precession technology, and the infinite endurance power battery pack forms the infinite endurance power system power of the second-precession technology of the robot war foam weapon fighter helicopter; 2, a nano carbon film solar power shell of a fighter helicopter; 3, a power layer of the wind power generator of the wind cooling accelerator by a two-precession power technology; 8, a plastic foam injection box;
(1) According to claim 1, the technical characteristics of the light wind driven generator are that: the lightweight wind driven generator stator and rotor are manufactured by using a foamed plastic light material, a graphene aerogel magnetic light material and a magnetic powder material structure which is 100 times stronger than a common magnetic material, so that the load weight of a fighter helicopter is reduced;
(2) According to claim 1, the wind pipe wind driven generator is characterized in that: a wind cooling accelerator with two precession power technology is arranged in front of each light wind driven generator in the wind pipe;
(3) According to the description of claim 1, the two-precession power technology wind cooling accelerator is characterized in that: the air inlet of the two-inlet power technology wind power cooling accelerator is designed as an air flow split two-inlet power technology air inlet, the second air inlet is an accelerating air inlet, the second air inlet has the acceleration function and the function of separating cold and hot air flow, only cold air flow passes through, and hot air flow is led out of the air pipe through the first air inlet row; the third air inlet is a two-precession wind power shunt accelerator, the central tube of the three-precession wind power shunt accelerator only passes 40% of wind power, 60% of wind power is discharged by the outer tube of the central tube of the shunt accelerator, the wind speed of the central tube of the two-precession wind power shunt accelerator is higher than that of the outer tube of the wind power, and the high wind speed of the central tube drives the air flow of the outer tube of the wind power to form inertial acceleration air flow, so that the wind power acceleration effect is generated;
(4) According to the description of claim 1, the four-group structure energy conservation and energy conservation two-precession power technology infinite endurance battery pack is technically characterized in that: two groups of the secondary batteries are basic charging secondary batteries with the secondary power technology, one group of the secondary batteries with the secondary power technology is an output power supply battery, and the other group of the secondary batteries with the secondary power technology is an auxiliary charging high-capacity battery; the four groups of battery packs have a conservation capacity of 50% or 60% of rated charging capacity, and the batteries are never fully charged and only used in one-time charging, so that the service life of the batteries can be prolonged;
(5) According to the description of claim 1, the battery pack rapid charging time program infinite endurance method and the slow charging time program infinite endurance method of the two-way power technology structure of energy conservation and energy conservation are characterized in that: the power consumption is output to be 1, the rapid charging design is 3, and the charging speed is 2 times greater than the consumption;
(one), the output battery 26A is started for 6 seconds, the generator 23 and the auxiliary charging high-capacity battery 26D are charged rapidly to the output battery for 6 seconds at the same time, and the output battery is kept under the condition of super-energy conservation for 30 seconds;
(II) the generator 23 performs hybrid charging for 30 seconds on the auxiliary charge large-capacity battery 26D by fast charging and slow charging; energy conservation is generated;
at this time, the output battery 26A is conservation of energy;
(III) rechargeable battery 26B charges the output battery rapidly for 6 seconds; the output battery is kept under the condition of super energy conservation for 30 seconds;
(IV) the generator 23 and the auxiliary charging large capacity battery 26D charge the rechargeable battery 26B for 6 seconds;
at this time, the output battery 26A is super-energy conserving for 24 seconds;
(fifth), the generator 23 performs hybrid charging for 24 seconds to the auxiliary charge large-capacity battery 26D fast charge and slow charge; energy conservation is generated;
(six) the rechargeable battery 26C charges the output battery rapidly for 6 seconds; the output battery is kept under the condition of super energy conservation for 30 seconds;
(seventh), the generator 23 and the auxiliary charging large-capacity battery 26D rapidly charge the rechargeable battery 26C for 6 seconds, resulting in conservation of energy;
at this time, the output battery 26A is super-energy-conserving for 24 seconds
(eight), the generator 23 performs hybrid charging for 24 seconds to the auxiliary charge large-capacity battery 26D fast charge and slow charge; conservation of energy of the four groups of batteries;
repeated cyclic charging, rapid charging and slow charging by the energy conservation and energy non-conservation two-precession power technology are created to reduce the volume of the battery by 200 times, and infinite endurance power of the two-precession power technology is created;
1, a foam weapon fight helicopter cockpit; 2, a nano carbon film solar power shell of a fighter helicopter; 3, a power layer of the wind power generator of the wind cooling accelerator by a two-precession power technology; 4, lifting the electric fan of the foam weapon fighter helicopter; 5, a fight helicopter radar tracks the missile; 6, a fighter helicopter radar tracks the missile; 7, a foam weapon fighter helicopter landing seat; 8, a plastic foam injection box; 9, a power layer air pipe of the wind power cooling accelerator wind power generator adopting a two-inlet power technology; 10, a light wind power generator; 11, a two-precession power technology wind power cooling accelerator.
2. Two precession power technology wind-force cooling accelerator:
the wind power cooling accelerator with the two-precession power technology is technically characterized in that: the air inlet of the wind power cooling accelerator with the second inlet power technology is designed to be an air flow split air inlet with the second inlet power technology and a heat exhausting and conducting air inlet, the second air inlet is an accelerating air inlet, and the second air inlet is an accelerating functional air inlet and a cold and hot air flow separating functional air inlet; the third air inlet is a two-precession wind power diversion accelerator, the central tube of the two-precession wind power diversion accelerator only passes 40% of wind power, 60% of wind power is discharged by the outer tube of the central tube of the diversion accelerator, the wind speed of the central tube of the two-precession wind power diversion accelerator is higher than that of the outer tube of the wind power, and the high wind speed of the central tube drives the air flow of the outer tube of the wind power to form inertial acceleration air flow, so that the wind power acceleration effect is generated;
11, a two-precession power technology wind power cooling accelerator; 12, an air inlet of the wind power cooling accelerator with the two-inlet power technology; 13, a split air inlet of the wind power cooling accelerator adopting the two-inlet power technology; 14, a radiator at an air inlet of the wind cooling accelerator by a two-inlet power technology; 15, a second cold and hot air flow separation accelerating air inlet of the two-inlet power technology wind power cooling accelerator; 16, a wind outlet pipe of the wind cooling accelerator with the two-inlet power technology; 17, a wind power cooling accelerator air outlet adopting a two-inlet power technology;
3. the battery pack rapid charging time program infinite endurance method and the slow charging time program infinite endurance method of the energy conservation and energy conservation two-precession power technology structure are adopted;
the infinite endurance method of the two-precession power technology is technically characterized in that: two power charges were used: 1, charging a wind power generator of a wind power cooling accelerator of a two-precession power technology infinite endurance power system and charging solar power of a shell of a combat helicopter; 2, auxiliary charging of a large-capacity battery matched with charging of a wind driven generator; the charging technology of the energy conservation two-precession power technology comprises the following steps of: the power consumption is output by 1 time, the quick charge capacity is 3 times, the charge speed is 2 times greater than the consumption, and a scientific charge method of an infinite endurance power system is created;
the 6 second charging time method comprises the following steps: (one) (two) (three) (four) (five) (six) (seven) (eight). (the same as in claim 1 (5)).
CN202210808552.XA 2022-06-29 2022-06-29 Two-precession power technology infinite endurance power system of robot warfare foam weapon fighter helicopter Pending CN116812156A (en)

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