WO2015032172A1 - 输送机上的圆筒发电机的发电方法及其装置 - Google Patents

输送机上的圆筒发电机的发电方法及其装置 Download PDF

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Publication number
WO2015032172A1
WO2015032172A1 PCT/CN2014/000821 CN2014000821W WO2015032172A1 WO 2015032172 A1 WO2015032172 A1 WO 2015032172A1 CN 2014000821 W CN2014000821 W CN 2014000821W WO 2015032172 A1 WO2015032172 A1 WO 2015032172A1
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Prior art keywords
cylinder
generator
hollow
power generation
cylindrical
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PCT/CN2014/000821
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English (en)
French (fr)
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罗新红
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Luo Xinhong
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Publication of WO2015032172A1 publication Critical patent/WO2015032172A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G7/00Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B17/00Other machines or engines
    • F03B17/02Other machines or engines using hydrostatic thrust
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G3/00Other motors, e.g. gravity or inertia motors
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/20Hydro energy

Definitions

  • the invention relates to a method and a device for generating electricity, and mainly relates to a cylindrical generator placed on a belt conveyor, a method for generating electricity and a device thereof.
  • the known methods of power generation use direct force to drive the generator to generate electricity. There is no need to use a labor-saving method to drive the generator to generate electricity. This leads to a large consumption of energy, and the earth's energy is about to run out...
  • the method for realizing the invention is: setting a cylindrical generator and placing it on the belt conveyor, inside the rolling large hollow cylinder: using an external force to drive the inclined belt conveyor, the large cylinder on the conveyor At the same time, the cylindrical generator rotates, the hollow cylinder inside the cylindrical generator and the solid cylinder, the buoyancy and gravity generated are converted into electric power output, and the cylindrical generator on the conveyor thus emits electric energy.
  • One of the methods and devices for generating a cylindrical generator on a conveyor in the above method is that it includes
  • a cylindrical generator is provided, which is provided with a hollow cylinder body, a solid cylinder body, a solid moon body, a power generation box, and a rotary generator placed on a belt conveyor with inclination Inside the large cylinder; its structure is to place a rollable hollow large cylinder on the belt conveyor with inclination, large cylinder
  • the cylindrical generator is placed inside, and the center of the cylindrical generator is fixed with a central shaft, which is hollow, and is connected to the power generation box through a gear set, and the power generation box is connected with the inner cylinder of the hollow cylinder and the solid moon body.
  • the fixed rod, and the solid cylinder hanging on the power generation box, are combined, the two ends of the shaft are exposed outside the two ends of the cylindrical generator, and the electric power generated by the generator passes through the collecting ring disposed on the hollow central shaft. After the cable is output, the collector ring and cable output provided by the large cylinder are output.
  • the cylindrical generator in b is a rollable closed cylinder, the center of which is a central shaft fixed thereto, the central shaft is hollow, and a collecting ring and a cable are arranged on the central shaft;
  • a power generation box is coupled, the gear set of the power generation box is connected with the central shaft of c, and the solid moon body is connected with the power generation box by connecting the fixed rod, and the solid cylinder is hung in the Bottom of the power generation box;
  • the belt conveyor is driven by an external force, and the large cylinder on the belt rotates at the same time, and the cylindrical generator inside the large cylinder also rotates at the same time, wherein the shaft rotates accordingly and drives the generator in the power generation box to generate electric energy.
  • the above method, the cylindrical generator on the conveyor, the method of generating electricity and the second device thereof are: it includes
  • a cylindrical generator is provided, which is provided with a hollow cylinder body, a solid cylinder body, a piston assembly, a high pressure pipe and a power generation box provided outside the cylinder, and the cylinder generator is placed on the belt with inclination Inside the rotatable large cylinder on the conveyor; the structure is such that a tiltable belt conveyor is placed with a rollable hollow large cylinder, and a cylindrical generator is placed in the large cylinder, and is disposed inside the cylinder of the cylinder generator.
  • the piston assembly has a plurality of solid piston bodies and a hollow cylinder body. The piston assembly is connected with a high-pressure pipe under the piston assembly, and the pipe is connected with a power generation box at the center of one end surface of the cylinder.
  • the piston valve of the piston assembly passes through the liquid, and the outlet valve passes through the power generation box outside the high pressure pipe, and a ejector rod is arranged on the solid cylinder body and the hollow cylinder body, and the ejector rod generates a high pressure when it is placed on the piston of the piston assembly.
  • the electricity generated by the generator is output through the collector ring and the cable, and then exported through the collector ring and cable provided by the large cylinder.
  • the cylindrical generator in b is a rollable closed cylinder, which has no piston assembly on the inner circumference and is connected with the high-pressure water pipe, and is connected with the high-pressure water pipe at the center of one end surface of the cylinder. box;
  • the piston assembly described in c is provided with a cylinder, a piston, a spring, a water outlet valve, a piston valve, a water outlet valve and a high pressure water pipe connection;
  • e in the sealed cylinder of c, is provided with a hollow cylinder body and a solid cylinder body, the cylinder body is provided with a ram;
  • the above-mentioned method of the cylindrical generator on the conveyor, the method of generating electricity and the device thereof are: it includes
  • a cylindrical generator is provided, which is provided with two wheelbarrows, a hollow cylinder above it, a solid cylinder body, a positioning rod, and a power generation box outside the cylinder, and the cylinder generator is placed in a large, rotatable cylinder on a belt conveyor with a slope; the structure is such that a rollable hollow large cylinder is placed on the inclined belt conveyor, and a cylindrical generator is placed in the large cylinder.
  • Inside the cylinder there is a wheelbarrow in the upper part and the lower part.
  • the gears in the power generation box are closely matched with the wheel of the wheelbarrow.
  • the hollow cylinder and the solid cylinder are placed on the plates of the two cars. on.
  • the center of the cylindrical generator is fixed with a central shaft, the central shaft is hollow, and the positioning rod connected with the central shaft fixes the hollow cylinder on the wheelbarrow, and the solid cylinder, when the cylinder generator rotates, they will not When the car falls off, the power cord coming out of the power generation box also extends to the center shaft through the positioning rod.
  • the positioning rod is coupled to the center shaft through the bearing, and the electricity generated by the generator is output through the collector ring and the cable output of the center shaft. Then, through the collector ring and cable set by the large cylinder.
  • the cylindrical generator described in b is a rollable closed cylinder, the center of which is a central shaft fixed thereto, the central shaft is hollow, and a collecting ring and a cable are arranged on the central shaft;
  • the hollow cylinder and the solid cylinder on the unicycle plate described in d are positioned by a positioning rod connected by a central shaft, and the positioning rod is coupled to the central shaft through a bearing;
  • the large cylinder on the belt rotates, the cylindrical generator inside the large cylinder rotates at the same time, and the inside is fixed by the hollow cylinder and the solid cylinder, and the single wheel of the two unicycles also rotates at the same time.
  • the unicycle drives the gears and generators in the power generation box, and rotates to generate electric energy and output;
  • the above methods also include:
  • the inclined belt conveyor and the large rollable cylinder are infiltrated in the liquid.
  • the large cylinder and the cylindrical generator are filled with air.
  • the liquid in the device is water or salt water or mercury or other specific gravity. Larger liquid, and the large cylinder (cylinder generator) in the liquid is in a state of rolling down on the belt of the belt conveyor.
  • the above methods also include:
  • the inclined belt conveyor has a hollow and large cylinder on the belt, and a cylindrical generator is placed inside the large cylinder.
  • the large cylinder on the belt conveyor if not needed, can be placed directly on the belt conveyor belt.
  • the above methods also include:
  • the inclined belt conveyor can also be placed on the belt to drive the generator to generate electricity by the rotation of the cylinder, a labor-saving type of generator.
  • the cylindrical generator of the two patents of the application number 2005100815516 and the application number 2008102132866 can also be rotated on the inclined belt conveyor of the device to generate electricity.
  • the large cylinder and the cylindrical generator inside it are not necessarily placed on the inclined skin. On the belt conveyor, it only needs to be placed on the slope or even placed on a special large roller for power generation.
  • the invention has the beneficial effects of using a labor-saving method to drive the generator to generate electricity, that is, using the cylindrical generator on the slope, the characteristic of rolling down the electric energy by itself, using a belt conveyor instead of the slope, continuously letting the cylinder
  • the generator itself rolls down to generate electricity.
  • the current external force is to drive the belt conveyor to rotate, instead of directly driving the generator to rotate (the cylinder generator has rolled itself down), which saves a lot of external forces, thus achieving a labor-saving method to drive the generator to generate electricity.
  • the purpose is to improve the efficiency of power generation.
  • This method has the characteristics of labor saving, labor saving, structural arrangement and low investment.
  • Figure 1 is one of the devices of the present invention, wherein 1 cylinder, 2 end caps, 3 belt rollers, 4 rotating shafts, 5 belts, 6 pulleys, 10 bearings, 17 frames, 7 low legs, 8 high legs , 9 cable 151 large cylinder, 14 belt conveyor with inclination.
  • Figure 2 is a radial cross-sectional view of Figure 1 with 11 moving directions, 13 cylinder generator.
  • Figure 3 is an axial cross-sectional view of Figure 1 with 19 collector rings and cables.
  • Figure 4 is an assembled, exploded view of Figure 1 with 12 support rings.
  • Figure 5 is a second apparatus of the present invention in which a cylinder, a two end cap, and a 13 cylinder generator.
  • Figure 6 is a radial cross-sectional view of Figure 5, wherein 4 power box, 5 generator, 7 hollow cylinder, 8 solid cylinder, 15 solid lunar body, 9 hollow central shaft, 16 hooks, 18 connecting rods, 11 top Rod.
  • Figure 7 is an axial cross-sectional view of Figure 5, wherein 3 cables, 6 gear sets, 12 collector rings.
  • Figure 8 is a schematic view of the assembly of Figure 5;
  • Figure 9 is a third apparatus of the present invention, wherein one cylinder, two end caps, three collector rings and cables, four power generation tanks, five high pressure pipes, ten reinforcements, and 13 cylinder generators.
  • Figure 10 is a radial cross-sectional view of Figure 9, wherein 5 high pressure tube, 6 piston assembly, 7 hollow cylinder, 8 solid cylinder, 9 ejector, 11 outlet valve, 12 spring, 16 piston, 17 piston valve, 18 The operation of the cylinder block, 19 connecting pipe and 21 piston assembly is shown.
  • Figure 11 is an axial cross-sectional view of Figure 9 with 14 impellers, 15 return ports, 20 generators, 22 high pressure nozzles.
  • Figure 12 is an exploded perspective view of the assembly of Figure 9.
  • Figure 13 is a fourth embodiment of the apparatus of the present invention, wherein one cylinder, two end caps, 17 collector rings, and 14 reinforcements.
  • Figure 14 is a radial cross-sectional view of Figure 13, wherein 3 cable, 4 power box, 5 plate, 6 wheelbarrow, 7 hollow cylinder, 8 solid cylinder, 9 positioning rod, 10 bearing, 12 center shaft, 15 gear, 16 power generation machine.
  • Figure 15 is an axial cross-sectional view of Figure 13 with 14 reinforcing rings, 13 cylinder generators.
  • Figure 16 is an exploded perspective view of the assembly of Figure 13;
  • Figure 17 is a view of the apparatus of the present invention with 7 stands, 4 rotating shafts, 10 bearings, 26 brackets, 151 large cylinders, 152 large rolls.
  • Figure 18 is a radial cross-sectional view of Figure 17 with a 13 cylinder generator.
  • the principle of the invention is: 1.
  • the basic knowledge of "cylinder (generator) will roll down on the slope itself", and then add a permanent slope - belt conveyor, let the cylinder generator on a permanent slope On, roll your own power down! ! ! 2.
  • the speed at which the cylinder rolls down reaches a certain speed
  • the speed at which the belt rotates upward reaches the speed
  • the cylinder rotates in the home position! ! ! 3.
  • Feasibility analysis In the liquid, a tricycle is placed on the slope, and a large cylinder of 10 kg (with a cylindrical generator inside) is placed on the flat plate of the tricycle.
  • the flat plate is 30 meters long, assuming a person carries The oxygen hood pushes the tricycle to the top of the slope.
  • a cylindrical generator is provided, and a tiltable belt conveyor (the structure and working principle of the belt conveyor is a well-known technique) is used, and a large rolling cylinder is placed on the conveyor. Place the cylinder generator inside the large cylinder (if necessary, place the cylinder generator directly on the belt conveyor instead of the large cylinder).
  • the cylinder generator injects liquid (which can also be mercury, because the specific gravity of mercury is larger, and the buoyancy is larger), and the hollow cylinder and the solid cylinder are placed in the liquid, and the hollow cylinder is placed in the liquid and
  • the solid cylinder is used to convert buoyancy and gravity into power under the action of the rotation of the cylinder, and drives the generator in the power generation box to generate electricity.
  • the generator box is a generator and a gear or a hydroelectric generator.
  • the structure and working principle are Known technology).
  • the inclined belt conveyor 14 of the apparatus and the hollow large cylinder 151 above thereof are composed of a cylinder 1 and an end cover 2, and the end cover 2 seals the cylinder 1
  • a large cylinder 151 is formed, which is provided with a slip ring and a cable 19, a balance ring 12, and a cylindrical generator 13, which refers to any of the cylindrical generators 13 of FIG. 5, FIG.
  • the support ring 12 has a cylindrical generator that maintains a balance when rotating, and the cable 9 in the slip ring and the cable 19 extends from the center point of the end cover 2 on one side.
  • the belt roller 3, the belt 5, the bearing 10, the rotating shaft 4, the pulley 6, the high leg 8 and the low leg 7 placed in the frame 17 are formed with a belt conveyor 14 having an inclination (i.e., slope).
  • the cylindrical generator 13 may not be placed inside the large cylinder 151 as necessary, and the cylindrical generator 13 may be placed directly on the belt conveyor. In operation, the cylindrical generator 13 is placed inside the hollow large cylinder 151 above the belt conveyor 14, and the large cylinder and the cylindrical generator in the liquid are rolled down on the belt.
  • the pulley 6 is driven by an external force, and the rotating shaft 4, the belt roller 3, and the belt 5 (in the direction of the moving direction 11) on the bearing 10 are simultaneously rotated, and the large cylinder 151 is also oriented in the direction of the movement direction 11.
  • Rotating when the rolling speed of the large cylinder that rolls down reaches a certain rotational speed, the large cylinder rotates in the home, and the cylindrical generator inside thereof emits electric energy, and passes through the slip ring and the cable 19 provided on the large cylinder 151. And cable 9 output.
  • the cylindrical generator 13 of the device is composed of a cylinder 1 and an end cover 2.
  • the end cover 2 seals the cylinder 1, and a hollow cylinder 7 and a solid cylinder 8 are disposed therein.
  • the hollow cylinder 7, the solid cylinder 8 is in the innermost circle, and the power generating box 4 is passed through the ejector 11 Combined in the inner hole of the hollow cylinder 7, their combination is softly connected by means of screws or the like, and the solid cylinder 8 hung on the hook 16 is also a soft connection, and the hollow central shaft 9 passes through the gear set 6 and the generator.
  • the cylindrical generator 13 is filled with liquid, the hollow cylinder 7 generates buoyancy, and the solid cylinder 8 and the solid lunar body 15 still generate gravity, under the action of these two forces (the cylindrical generator 13 rotates)
  • the power generating box 4 which is to be rotated together with the hollow central shaft 9 is fixed in the home position, and the rotation of the hollow central shaft 9 is Moving the rotary gear set 6, the generator 5 is connected thereto so that the emitted power, the power cable 3 is connected through a slip ring 12, and then through the cable 9 in the hollow axis 3, the current collector of an outer cylindrical ring 12 outputs.
  • the cylindrical generator 13 of the device is placed inside the large cylinder 151 above the belt conveyor 14, and the belt is rotated by an external force, and the large cylinder 151 and the cylindrical generator 13 are simultaneously rotated, and the central axis in the same follows.
  • Rotation which drives the rotation of the gear set and generator in the power generation box, and the generator emits electric energy.
  • the middle shaft rotates and the power generation box is fixed, and the buoyancy and gravity are thus converted into electric energy output, and then output through the large cylinder cable and the slip ring 19.
  • the cylindrical generator 13 of the apparatus is composed of a cylinder 1 and an end cover 2, and the end cover 2 seals the cylinder 1, and a hollow cylinder 7 and a solid cylinder 8 are disposed therein.
  • the operation 21 of the piston assembly 6 shows the state of its structure when it is pressurized and not pressurized.
  • the collector ring and the cable 3, the power generation box 4, the high pressure pipe 5, the reinforcing body 10, and the power generation box 4 are provided on the outside thereof, and are composed of a high pressure nozzle 22, an impeller 14, a generator 20, and a water return port 15.
  • the piston assembly 6 is composed of a cylinder block 18, a piston 16, a water discharge valve 11 (opened when the piston 16 is pressurized), a piston valve 17 (opened when the cylinder is filled with water), a spring 12, and a connecting pipe 19.
  • the water outlet valve 11 and the piston valve 17 are equivalent to the valve of the diesel engine, and the gas distribution system of the diesel engine is a well-known technology, and the present invention will not be described in detail.
  • a ejector rod 9 is disposed on the cylinder body of the hollow cylinder body 7 and the solid cylinder body 8. When the cylinder generator 13 rotates, the ejector rod 9 is pressed against the corresponding piston disposed inside the reinforcement body 10.
  • the piston 16 (the piston valve 17 is simultaneously closed) is thus pressed into the lower portion of the cylinder block 18.
  • the liquid in the cylinder block 18 is generated by the pressure, and the opened outlet valve 11, the connecting pipe 19, and the high pressure pipe are opened. 5 and the high pressure nozzle 22, sprayed to the impeller 14 in the power generation box, the impeller 14 rotates, the connected generator 20 thus rotates to generate electricity, and the liquid returns to the inside of the cylindrical generator 13 via the water return port 15, the hollow cylinder 7 and the solid
  • the cylinder 8 is simultaneously pressed to the next corresponding piston assembly 6 - the high pressure liquid is again injected to the impeller to continuously generate power of the engine, the newly pressed piston assembly 6, at the spring 12, Under the action of the piston valve 17 (opened when the water is replenished in the cylinder), the piston 16 is reset, and the cylinder 18 is refilled with liquid, waiting for the circulation to be pressed to generate the power to drive the generator to rotate.
  • the cylindrical generator 13 of the device is placed inside the large cylinder 151 above the belt conveyor 14, and the belt is rotated by an external force, and the large cylinder and the cylindrical generator 13 are simultaneously rotated, and the hollow cylinder 7 therein is hollow.
  • the solid cylinder 8 also rotates at the same time, and the ejector rod 9 on the cylinder body is pressed against the piston assembly 6, the liquid is injected by the pressure, and the generator 20 is rotated to generate electric energy.
  • the hollow cylinder 7 and the solid cylinder 8 are continuously pressed into the piston assembly in the in-situ direction, and the buoyancy and gravity are thus continuously converted into electric energy, and the electric energy is passed through the slip ring and the cable 3 After output, it is output through the collector ring and cable of the large cylinder 151.
  • the cylindrical generator 13 of the apparatus is composed of a cylinder 1 and an end cover 2, and the end cover 2 seals the cylinder 1, and a central shaft 12 is disposed between the center points of the end covers.
  • a bearing 10 on the shaft and two unicycles 6 are arranged therein, and the flat plate 5 of the unicycle 6 is provided with a hollow cylinder 7 and a solid cylinder 8 , and the unicycle 6 is also provided with a power generation box 4 , a gear 15 , and a generator 16 .
  • the positioning rod 9 has a fixed hollow cylinder 7 and a solid cylinder 8, and two unicycles, even if the cylinder engine 13 is integrally rotated, the wheelbarrow and the hollow cylinder, The solid cylinder remains in place.
  • the outer circumference of the cylindrical generator 13 is provided with a reinforcing body 14 to ensure that the pressure generated by the wheelbarrow 6 does not damage the outer circumference of the cylinder.
  • the cylindrical generator 13 of the device is placed inside the large cylinder 151 above the belt conveyor 14, and the belt is rotated by an external force, and the large cylinder 151 and the cylindrical generator 13 are simultaneously rotated to drive the two inside.
  • the unicycle of the unicycle rotates, and the gears and generators connected to the unicycle also rotate at the same time. The generator thus emits electric energy and outputs it, and then outputs the cable through the large cylinder 151 and the collector ring 19.
  • the cylindrical generator in the above device can also be placed on a large roller.
  • the large cylinder 151 and the cylindrical generator 13 of the device are placed on the large roller 152, which is large.
  • the roller 152 is fixed on the bearing 10 of the frame 7, and the bracket 26 functions as a support.
  • the large cylinder 151 and the cylindrical generator 13 are rotated in situ to generate electricity.
  • the principle is the same as rotating on a belt conveyor.
  • the large roller 152 can also be placed with other types of labor-saving generators that drive the generator to generate electricity by the rotation of the cylinder.
  • a cylindrical generator of the two patents No. 2005100815516 and Application No. 2008102132866 can also be placed. In operation, the rotating shaft 4 on the bearing 10 is driven by an external force, and the large roller rotates at the same time, and the cylindrical generator in the large cylinder thereon emits electric energy.

Abstract

一种在皮带输送机(14)上设置圆筒发电机(13)的发电方法及其装置,其中,该发电装置包括具有倾斜度的皮带输送机(14)、大辊筒(152)、空心大圆筒(151)、圆筒发电机(13)、空心筒体(7)、实心筒体(8)、发电箱(4)等,圆筒发电机(13)设置在皮带输送机(14)上的可滚动的空心大圆筒(151)里面,在圆筒发电机(13)内注满液体,空心筒体(7)和实心筒体(8)安置在液体中。用外力带动皮带输送机(14)转动,进而使得空心大圆筒(151)和圆筒发电机(13)同时转动,此时,圆筒发电机(13)里面的空心筒体(7)和实心筒体(8)所产生的重力和浮力就被转换成动力,以驱动发电箱(4)内的发电机(16)发电。

Description

输送机上的圆筒发电机的发电方法及其装置 技术领域
本发明涉及发电的方法及其装置,主要是指一种放置在皮带输送机上的圆筒发电机,发电的方法及其装置。
背景技术
已知的发电方法,都是直接用力去带动发电机发电,不存在用省力的方法去带动发电机发电的情况,这导致能源大量的消耗,地球的能源即将耗尽……。而申请号2005100815516和申请号2008102132866,这两项专利也都没使用省力的方法去带动发电机发电,这是不足之处。风力发电、地热发电、海洋潮汐发电、太阳能发电,核发电等,用省力的方法去带动发电机发电的话,发电效率将大大的提高。
发明内容
本发明的目的是提供一种,利用带倾斜度的皮带输送机上的圆筒发电机的转动,发出电能的方法及其装置,以便克服现有的发电方法中存在的不用省力的方法去带动发电机发电的情况。
实现本发明的方法是:设置一圆筒发电机,并把它放置在,皮带输送机上的,可滚动的空心大圆筒里面:用外力带动有倾斜度的皮带输送机工作,输送机上的大圆筒及圆筒发电机同时转动,圆筒发电机内部的空心筒体及实心筒体,所产生的浮力和重力被转换成电力输出,输送机上的圆筒发电机因此发出电能。
上述方法中输送机上的圆筒发电机,发电的方法及其装置之一是:它包括
a、设置一圆筒发电机,其内设有空心筒体,实心筒体,实心月镰体,发电箱,并把该圆筒发电机,放置在带倾斜度的皮带输送机上的可转动的大圆筒里面;其结构是,有倾斜度的皮带输送机上放置一可滚动的空心大圆筒,大圆筒 内放置圆筒发电机,圆筒发电机的中心固定有一中轴,该中轴为空心,其通过齿轮组接发电箱,该发电箱与空心筒体的内筒,以及实心月镰体通过连接固定杆,还有挂在发电箱的实心筒体,结合在一起,该轴的两端露在圆筒发电机两端盖的外面,发电机发出的电通过设置在空心中轴的集电环及电缆输出后,再经过大圆筒设置的集电环及电缆输出。
b、在a所述的一带倾斜度的皮带输送机上,放置可滚动的空心大圆筒,并在大圆筒里面放置圆筒发电机,该圆筒发电机内充满了液体;
c、在b所述圆筒发电机,是一可滚动的密闭圆筒,其中心是一与之固定在一起的中轴,该中轴为空心,中轴上设有集电环及电缆;
d、在c所述密闭圆筒内设有空心筒体,实心筒体,实心月镰体;
e、在d所述空心筒体的内筒里结合有发电箱,该发电箱的齿轮组与c所述中轴连接,实心月镰体通过连接固定杆结合发电箱,实心筒体则挂在发电箱底部;
f、用外力带动皮带输送机,皮带上的大圆筒同时转动,大圆筒内部的圆筒发电机也同时转动,其中轴随之转动并带动发电箱内的发电机发出电能。
上述方法中输送机上的圆筒发电机,发电的方法及其装置之二是:它包括
a、设置一圆筒发电机,其内设有空心筒体,实心筒体,活塞总成,高压管和筒外设置的发电箱,并把该圆筒发电机,放置在带倾斜度的皮带输送机上的可转动的大圆筒里面;其结构是,有倾斜度的皮带输送机上放置一可滚动的空心大圆筒,大圆筒内放置圆筒发电机,在圆筒发电机的筒体内圆周设有活塞总成若干,活塞总成上面是实心筒体及空心筒体,活塞总成下面是相连的高压管,该管与圆筒一侧端面中心的发电箱连接。活塞总成的活塞阀门通液体,出水阀门通过高压管接筒外的发电箱,在实心筒体及空心筒体上设有顶杆,该顶杆顶在活塞总成的活塞上时,产生高压喷射的液体,液体通过高压管及高压喷嘴,喷射叶轮,转动的叶轮带动发电机发电,液体再通过发电箱的回水口流回密闭 圆筒内,循环使用。发电机发出的电,通过集电环及电缆输出后,再通过大圆筒设置的集电环及电缆导出。
b、在a所述的一带倾斜度的皮带输送机上,放置一可滚动的空心大圆筒并在大圆筒里面放置圆筒发电机,该圆筒发电机内充满了液体;
c、在b所述圆筒发电机,是一可滚动的密闭圆筒,其内圆周没有活塞总成若干,并与高压水管连接,在圆筒一侧端面中心设有与高压水管连接的发电箱;
d、在c所述的活塞总成设有缸体,活塞,弹簧,出水阀门,活塞阀门,出水阀门和高压水管连接;
e、在c所述密闭圆筒内,设有空心筒体及实心筒体,筒体上设有顶杆;
f、用外力带动皮带输送机,皮带上的大圆筒转动,大圆筒内部的圆筒发电机同时转动,其内的空心筒体及实心筒体也同时转动,压向活塞总成,产生高压水流,水流经高压管冲击发电箱内的叶轮,发电机因而发出电能并输出。
上述方法中输送机上的圆筒发电机,发电的方法及其装置之三是:它包括
a、设置一圆筒发电机,其内设有两部独轮车,及其上面的空心筒体,实心筒体,定位杆,以及圆筒外的发电箱,并把该圆筒发电机,放置在带倾斜度的皮带输送机上的可转动的大圆筒里面;其结构是,在有倾斜度的皮带输送机上放置一可滚动的空心大圆筒,大圆筒内放置圆筒发电机,在圆筒发电机的筒体内部,上部和下部各有一部独轮车,车的平板上设有发电箱,发电箱内的齿轮和独轮车的独轮紧密配合,空心筒体,实心筒体各安放在两部车的平板上。圆筒发电机的中心固定有一中轴,该中轴为空心,与中轴相连的定位杆,固定住独轮车上的空心筒体,实心筒体,在圆筒发电机转动时,它们不会从车上掉下来,从发电箱出来的电源线也通过定位杆延伸至中轴,定位杆通过轴承结合在中轴上,发电机发出的电,通过设置在中轴的集电环及电缆输出后,再经过大圆筒设置的集电环及电缆导出。
b、在a所述的一带倾斜度的皮带输送机上,放置可滚动的空心大圆筒,并 在大圆筒里面放置圆筒发电机,该圆筒发电机内充满了液体;
c、在b所述的圆筒发电机是一可滚动的密闭圆筒,其中心是一与之固定在一起的中轴,该中轴为空心,中轴上设有集电环和电缆;
d、在c所述的可滚动的密闭圆筒,其内圆周上部和下部各设有一部独轮车,在独轮车的平板上设有发电箱,以及空心筒体和实心筒体;
e、在d所述的独轮车平板上的空心筒体和实心筒体,通过由中轴连接的定位杆定位,定位杆通过轴承结合在中轴上;
f、用外力带动皮带输送机,皮带上的大圆筒转动,大圆筒内部的圆筒发电机同时转动,其内部由空心筒体及实心筒体固定的,两部独轮车的独轮也同时转动,独轮带动发电箱内的齿轮和发电机,转动发出电能并输出;
上述方法还包括:
所述有倾斜度的皮带输送机及可滚动的大圆筒都侵泡在液体中大圆筒和圆筒发电机之间则充满空气,本装置中所述的液体为水或盐水或水银或其他比重较大的液体,并且,液体中的大圆筒(圆筒发电机),在皮带输送机的皮带上处在自己往下滚动的状态。
上述方法还包括:
所述有倾斜度的皮带输送机,皮带上是空心可滚动的大圆筒,大圆筒里面放置一圆筒发电机。其皮带输送机上的大圆筒,必要时不用,可以把圆筒发电机直接放在皮带输送机的皮带上。
上述方法还包括:
所述有倾斜度的皮带输送机,其皮带上还可以放置其它的,以圆筒的转动带动发电机发电的,这种省力类型的发电机。申请号2005100815516和申请号2008102132866这两项专利的圆筒发电机,同样可以放置在本装置上的,有倾斜度的皮带输送机上转动发电。
所述的大圆筒及其里面的圆筒发电机,并不是一定要放置在有倾斜度的皮 带输送机上,它只需要放置在斜坡上甚至还可以放置在特制的大辊筒上面,进行转动发电。
所述有倾斜度的皮带输送机的皮带上,以及大辊筒上面,除放置本装置中的圆筒发电机外,还可以放置其它的,以圆筒的转动带动发电机发电的,这种省力类型的发电机。
本发明具有的有益效果:使用了省力的方法去带动发电机发电,即利用圆筒发电机在斜坡上,会自己向下滚动发出电能这个特性,采用皮带输送机代替斜坡,持续的让圆筒发电机自己向下滚动发电。现在的外力是带动皮带输送机转动,而不是直接带动发电机转动(圆筒发电机已经自己向下滚动发电),这省了很多的外力,从而达到了用省力的方法去带动发电机发电的目的,提高了发电效率。这种方法具有省力、省功、结构筒单和投资少等特点。
附图说明
图1是本发明的装置之一,其中1筒体、2端盖、3皮带辊筒、4转动轴、5皮带、6皮带轮、10轴承、17机架、7低支腿、8高支腿、9电缆151大圆筒、14有倾斜度的皮带输送机。
图2是图1的径向剖视图,其中11运动方向、13圆筒发电机。
图3是图1的轴向剖视图,其中19集电环和电缆。
图4是图1的组装分解示意图,其中12承托圈。
图5是本发明的装置之二,其中1筒体、2端盖、13圆筒发电机。
图6是图5的径向剖视图,其中4发电箱、5发电机、7空心筒体、8实心筒体、15实心月镰体、9空心中轴、16挂钩、18连接固定杆、11顶杆。
图7是图5的轴向剖视图,其中3电缆、6齿轮组、12集电环。
图8是图5的组装公解示意图。
图9是本发明的装置之三,其中1筒体、2端盖、3集电环及电缆、4发电箱、5高压管、10加强体、13圆筒发电机。
图10是图9的径向切面图,其中5高压管、6活塞总成、7空心筒体、8实心筒体、9顶杆、11出水阀门、12弹簧、16活塞、17活塞阀门、18缸体、19连接管、21活塞总成的工作示意。
图11是图9的轴向剖视图,其中14叶轮、15回水口、20发电机、22高压喷嘴。
图12是图9的组装分解示意图。
图13是本发明的装置之四,其中1筒体、2端盖、17集电环、14加强体。
图14是图13的径向剖视图,其中3电缆、4发电箱、5平板、6独轮车、7空心筒体、8实心筒体、9定位杆、10轴承、12中轴、15齿轮、16发电机。
图15是图13的轴向剖视图,其中14加强圈、13圆筒发电机。
图16是图13的组装分解示意图。
图17是本发明的装置,其中7机架、4转动轴、10轴承、26支架、151大圆筒、152大辊筒。
图18是图17的径向剖视图,其中13圆筒发电机。
具体实施方式
本发明的原理是:1.“圆筒(发电机)在斜坡上自己会向下滚动发出电能”这个基本常识,再增加永久的斜坡——皮带输送机,让圆筒发电机在永久的斜坡上,自己向下滚动发电!!!2.当圆筒向下滚动的速度达到某一速度时,皮带向上转动的速度也达到该速度时,圆筒在原位转动!!!3.可行性分析:液体中,一部三轮车放置在斜坡上,一个10斤重的大圆筒(其内是圆筒发电机)放置在三轮车的平板上,平板长30米,假设一个人带着氧气罩推着三轮车往坡顶上跑,圆筒发电机有没有在平板上向下转动发电?如果有,是不是证明一个人的力量(相当于300瓦的马达),就可以带动圆筒发电机发电1圆筒发电机在斜坡上利用惯性,本来会自己向下滚动发电,只因液体的阻力及大圆筒不转动,导致圆筒发电机向下滚动受阻,此时,只要大圆筒转动,圆筒发电机在惯性的作用下, 自行转动,而无需外力。所以,只要斜坡上的大圆筒转动,其内的圆筒发电机肯定会自己向下滚动发电!所以,外力只需要带动皮带输送机上的,接近悬浮的,10斤重的大圆筒转动!警告:如果圆筒发电机放置在平地上,即使其重量只有2斤重,我们也无法让它转动发电,只有在斜坡上,圆筒发电机有向下滚动的惯性的情况下,整个发电过程才可以实现……。
在以上这些常识的基础上,设置一圆筒发电机……,利用有倾斜度的皮带输送机(皮带输送机的结构和工作原理属公知技术),在输送机上放置一个可滚动的大圆筒,大圆筒里面再放进圆筒发电机(必要时可以把圆筒发电机直接放在皮带输送机上,而不使用大圆筒)。圆筒发电机里注入液体(也可以是水银,因为水银的比重更大,产生的浮力也更大),同时在液体中安置空心筒体和实心筒体,安置在液体中的空心筒体和实心筒体,是在圆筒转动的作用下,将浮力及重力转变成动力,驱动发电箱内的发电机发电(发电箱内是发电机和变速齿轮或水力发电装置,其结构和工作原理属公知技术)。
下面结合实施例对本发明做进一步说明:
实施例1
如图1——图4所示,本装置的有倾斜度的皮带输送机14及其上面的空心大圆筒151,是由筒体1、端盖2组成,端盖2将筒体1密封,形成大圆筒151,其里面设置有集电环和电缆19、平衡圈12,圆筒发电机13,该圆筒发电机指的是图5图9图13中的任一款圆筒发电机13,承托圈12有令圆筒发电机,在转动时保持平衡的作用,集电环和电缆19中的电缆9,则从一边的端盖2中心点延伸出来。皮带辊筒3、皮带5、轴承10、转动轴4、皮带轮6、放置在机架17中的高支腿8和低支腿7上面,形成有倾斜度(即坡度)的皮带输送机14。圆筒发电机13,在必要时可以不放进大圆筒151里面,可以把圆筒发电机13直接放在皮带输送机上。工作时,把圆筒发电机13,放置在皮带输送机14上面的空心大圆筒151里面,液体中的大圆筒及圆筒发电机,在皮带上处在自己往下滚 动发电的省力状态,用外力带动皮带轮6转动,轴承10上的转动轴4、皮带辊筒3、皮带5(按运动方向11的方向)同时转动,大圆筒151,同样按运动方向11的方向转动,当向下滚动的大圆筒的滚动速度达到一定的转速时,大圆筒在原位转动,其里面的圆筒发电机因而发出电能,并通过大圆筒151上设置的集电环和电缆19及电缆9输出。下面,让本装置的皮带输送机14,及其上面的空心大圆筒151,结合实施例2、实施例3、实施例4中的任一款圆筒发电机13,转动并发出电能。
实施例2
如图5——图8所示,本装置的圆筒发电机13由筒体1、端盖2组成,端盖2将筒体1密封,其里面设置有空心筒体7、实心筒体8、实心月镰体15、挂钩16、发电箱4、空心中轴9、发电机5、连接固定杆18、顶杆11、齿轮组6、集电环12,其中实心月镰体15在最外圈,其通过连接固定杆18和发电箱4相结合,它们的结合是通过焊接或紧配的方法硬连接;空心筒体7、实心筒体8在最里圈,发电箱4通过顶杆11结合在空心筒体7的内孔里,它们的结合是通过螺丝等配件的方法软连接,挂在挂钩16上的实心筒体8也属于软连接,空心中轴9通过齿轮组6和发电机5连接;圆筒发电机13内注满液体,空心筒体7产生浮力,实心筒体8、实心月镰体15仍旧产生重力,在这两种力的作用下(圆筒发电机13转动的情况下),本来要跟随空心中轴9一起转动的发电箱4,被固定在原位,而空心中轴9的转动,带动了齿轮组6转动,使与其连接的发电机5发出电能,电能经过电缆3接集电环12,再经空心中轴9内的电缆3、筒体外的集电环12输出。工作时,把本装置的圆筒发电机13,放置在皮带输送机14上面的大圆筒151里面,用外力带动皮带转动,大圆筒151及圆筒发电机13同时转动,其内的中轴跟随转动,带动了发电箱内的齿轮组及发电机的转动,发电机发出电能。中轴转动而发电箱固定,浮力及重力因此被转换成电能输出,再通过大圆筒的电缆及集电环19输出。
实施例3
如图9——图12所示,本装置的圆筒发电机13由筒体1和端盖2组成、端盖2将筒体1密封,其里面设置有空心筒体7、实心筒体8、顶杆9、出水阀门11、高压管5、活塞总成6。活塞总成6的工作示意21,显示其结构在受压和没受压时的状态。其外面设置集电环及电缆3、发电箱4、高压管5、加强体10、发电箱4里面由高压喷嘴22、叶轮14、发电机20、回水口15组成。活塞总成6由缸体18、活塞16、出水阀门11(活塞16受压时打开)、活塞阀门17(缸内补水时打开)、弹簧12、连接管19组成。注:出水阀门11及活塞阀门17相当于柴油机的气门,而柴油机的配气系统属公知技术,本发明不做详细的描述。本装置中,在空心筒体7和实心筒体8的筒体上设置有顶杆9,在圆筒发电机13转动时,顶杆9压向相对应的,设置在加强体10里面的活塞总成6,活塞16(活塞阀门17同时关闭)因此被压进缸体18的低部,缸体18内的液体因受压产生喷射力,经打开的出水阀门11、连接管19、高压管5和高压喷嘴22,喷射向发电箱内的叶轮14,叶轮14转动,相连的发电机20因此转动发电,液体再经由回水口15,返回到圆筒发电机13里面,空心筒体7和实心筒体8在各自压完一个活塞总成后,同时压向下一个对应的活塞总成6——高压液体再次喷射向叶轮使发动机连续发电,刚压过的活塞总成6,在弹簧12,活塞阀门17(缸内补水时打开)的作用下,活塞16复位,缸体18内重新充满液体,等待循环被压产生推动发电机转动的动力。工作时,把本装置的圆筒发电机13,放置在皮带输送机14上面的大圆筒151里面,用外力带动皮带转动,大圆筒及圆筒发电机13同时转动,其内的空心筒体7、实心筒体8也同时转动,筒体上的顶杆9压向活塞总成6,液体因受压产生喷射力,另发电机20转动发出电能。在浮力及重力的作用下,空心筒体7、实心筒体8在原位转动不停地压向活塞总成……,浮力及重力因此被连续转换成电能,电能通过集电环及电缆3输出后,再通过大圆筒151的集电环及电缆输出。
实施例4
如图13——图16所示,本装置的圆筒发电机13由筒体1和端盖2组成,端盖2将筒体1密封,两端盖的中心点之间设有一中轴12、轴上有轴承10,其里面设置有两部独轮车6、独轮车6的平板5上各设置有空心筒体7、实心筒体8,独轮车6还放置有发电箱4、齿轮15、发电机16、电缆3、定位杆9,其中,独轮车6的独轮,和发电箱4的齿轮15、发电机16紧密配合:独轮转动,带动发电箱的齿轮15同时转动,齿轮也同时带动发电机16转动发电,其发出的电能经定位杆9内的电缆3、中轴12上的集电环17及电缆3输出。中轴12上的轴承10,与定位杆9连接,定位杆9具有固定空心筒体7和实心筒体8,以及两部独轮车的作用,即使圆筒发动机13整体转动,独轮车和空心筒体,实心筒体仍保持原位。圆筒发电机13的外圆周设置加强体14,保证独轮车6产生的压力不破坏圆筒的外圆周。工作时,把本装置的圆筒发电机13,放置在皮带输送机14上面的大圆筒151里面,用外力带动皮带转动,大圆筒151及圆筒发电机13同时转动,带动了其内部的两部独轮车的独轮转动,和独轮连接的齿轮及发电机也同时转动,发电机因而发出电能并输出,再通过大圆筒151的电缆及集电环19输出。
上述装置中的圆筒发电机,还可以放置在大辊筒上,如图17——图18所示,本装置的大圆筒151及圆筒发电机13,放置在大辊筒152上,大辊筒152固定在机架7的轴承10上,支架26起到支撑的作用,当大辊筒的转速达到要求时,大圆筒151及圆筒发电机13,就会在原位转动发电,其原理和在皮带输送机上转动是相同的。大辊筒152上还可以放置其它的,以圆筒的转动带动发电机发电的,这种省力类型的发电机。申请号2005100815516和申请号2008102132866这两项专利的圆筒发电机,同样可以放置。工作时,用外力带动轴承10上的转动轴4转动,大辊筒同时转动,其上的大圆筒内的圆筒发电机因此发出电能。
上述装置中,凡需要密封的地方都加有密封胶圈。

Claims (8)

  1. 一种输送机上的圆筒发电机的发电方法,其特征是所述方法包括
    设置一圆筒发电机,并把它放置在,皮带输送机上的,可滚动的空心大圆筒里面;用外力带动有倾斜度的皮带输送机工作,输送机上的大圆筒及圆筒发电机同时转动,圆筒发电机内部的空心筒体及实心筒体,所产生的浮力和重力被转换成电力输出,输送机上的圆筒发电机因此发出电能。
  2. 如权利要求1所述的,一种输送机上的圆筒发电机的发电方法,其特征是所述输送机上的圆筒发电机,发电的方法及其装置之一是:它包括
    a.设置一圆筒发电机,其内设有空心筒体,实心筒体,实心月镰体,发电箱,并把该圆筒发电机,放置在带倾斜度的皮带输送机上的可转动的大圆筒里面;其结构是,有倾斜度的皮带输送机上放置一可滚动的空心大圆筒,大圆筒内放置圆筒发电机,圆筒发电机的中心固定有一中轴,该中轴为空心,其通过齿轮组接发电箱,该发电箱与空心筒体的内筒,以及实心月镰体通过连接固定杆,还有挂在发电箱的实心筒体,结合在一起,该轴的两端露在圆筒发电机两端盖的外面,发电机发出的电通过设置在中轴的集电环及电缆输出后,再经大圆筒设置的集电环和电缆输出。
    b.在a所述的带倾斜度的皮带输送机上,放置一可滚动的空心大圆筒,并在大圆筒里面放置圆筒发电机,该圆筒发电机内充满了液体;
    c.在b所述圆筒发电机,是一可滚动的密闭圆筒,其中心是一与之固定在一起的中轴,该中轴为空心,中轴上设有集电环和电缆;
    d.在c所述密闭圆筒内设有空心筒体,实心筒体,实心月镰体;
    e.在d所述空心筒体的内筒里结合有发电箱,该发电箱的齿轮组与c所述中轴连接,实心月镰体通过连接固定杆结合发电箱,实心筒体则挂在发电箱底部;
    f.用外力带动皮带输送机,皮带上的大圆筒同时转动,大圆筒内部的圆筒发电机也同时转动,其中轴随之转动并带动发电箱内的发电机发电并输出。
  3. 如权利要求1所述的,一种输送机上的圆筒发电机的发电方法,其特征是所述输送机上的圆筒发电机,发电的方法及其装置之二是:它包括
    a.设置一圆筒发电机,其内设有空心筒体,实心筒体,活塞总成,高压管和筒外设置的发电箱,并把该圆筒发电机,放置在带倾斜度的皮带输送机上的可转动的大圆筒里面;其结构是,有倾斜度的皮带输送机上放置一可滚动的空心大圆筒,大圆筒内放置圆筒发电机,在圆筒发电机的筒体内圆周设有活塞总成若干,活塞总成上面是实心筒体及空心筒体,活塞总成下面是相连的高压管,该管与圆筒一侧端面中心的发电箱连接,活塞总成的活塞阀门通液体,出水阀门通过高压管接筒外的发电箱,在实心筒体及空心筒体上设有顶杆,该顶杆顶在活塞总成的活塞上时,产生高压喷射的液体,液体通过高压管及高压喷嘴,喷射叶轮,转动的叶轮带动发电机发电,液体再通过发电箱的回水口流回密闭圆筒内,循环使用。发电机发出的电,通过集电环和电缆输出后,再经过大圆筒的集电环及电缆输出。
    b.在a所述的带倾斜度的皮带输送机上,放置一可滚动的空心大圆筒,并在大圆筒里面放置圆筒发电机,该圆筒发电机内充满了液体;
    c.在b所述圆筒发电机,是一可滚动的密闭圆筒,其内圆周设有活塞总成若干,并与高压水管连接,在圆筒一侧端面中心设有与高压水管连接的发电箱
    d.在c所述的活塞总成设有缸体,活塞,弹簧,出水阀门,活塞阀门,出水阀门和高压水管连接;
    e.在c所述密闭圆筒内,设有空心筒体及实心筒体,筒体上设有顶杆;
    f.用外力带动皮带输送机,皮带上的大圆筒转动,大圆筒内部的圆筒发电机同时转动,其内的空心筒体及实心筒体也同时转动,压向活塞总成,产生高压水流,水流经高压管冲击发电箱内的叶轮,发电机因而发出电能并输出。
  4. 如权利要求1所述的,一种输送机上的圆筒发电机的发电方法,其特征是所述输送机上的圆筒发电机,发电的方法及其装置之三是:它包括
    a.设置一圆筒发电机,其内设有两部独轮车,及其上面的空心筒体,实心筒体,定位杆,以及圆筒外的发电箱,并把该圆筒发电机,放置在带倾斜度的皮带输送机上的可转动的大圆筒里面;其结构是,在有倾斜度的皮带输送机上放置一可滚动的空心大圆筒,大圆筒内放置圆筒发电机,在圆筒发电机的筒体内部,上部和下部各有一部独轮车,车的平板上设有发电箱,发电箱内的齿轮和独轮车的独轮紧密配合,空心筒体,实心筒体各安放在两部车的平板上,圆筒发电机的中心固定有一中轴,该中轴为空心,与中轴相连的定位杆,固定住独轮车上的空心筒体,实心筒体,从发电箱出来的电源线也通过定位杆延伸至中轴,定位杆通过轴承结合在中轴上,发电机发出的电,通过设置在中轴的集电环及电缆输出后,再经过大圆筒设置的集电环和电缆输出。
    b.在a所述的带倾斜度的皮带输送机上,放置一可滚动的空心大圆筒,并在大圆筒里面放置圆筒发电机,该圆筒发电机内充满了液体;
    c.在b所述的圆筒发电机是一可滚动的密闭圆筒,其中心是一与之固定在一起的中轴,该中轴为空心,中轴上设有集电环以及电缆;
    d.在c所述的可滚动的密闭圆筒,其内圆周上部和下部各设置一部独轮车,在独轮车的平板上设有发电箱,以及空心筒体和实心筒体;
    e.在d所述的独轮车平板上的空心筒体和实心筒体,通过由中轴连接的定位杆定位,定位杆则通过轴承结合在空心中轴上;
    f.用外力带动皮带输送机,皮带上的大圆筒转动,大圆筒内部的圆筒发电机同时转动,其内部由空心筒体及实心筒体固定的,两部独轮车的独轮也同时转动,独轮带动发电箱内的齿轮和发电机,转动发出电能并输出;
  5. 如权利要求1所述的,一种输送机上的圆筒发电机的发电方法,其特征是所述的大圆筒及其里面的圆筒发电机,它只需要放置在斜坡上还可以放置在特制的大辊筒上面,进行转动发电。
  6. 如权利要求1或2或3或4所述的,一种输送机上的圆筒发电机的发电方法, 其特征是所述有倾斜度的皮带输送机及可滚动的大圆筒,都侵泡在液体中,大圆筒和圆筒发电机之间则充满空气,本装置中所述的液体为水或盐水或水银或其他比重较大的液体,液体中的大圆筒(圆筒发电机),在皮带输送机的皮带上处在自己往下滚动的状态。
  7. 如权利要求1或2或3或4所述的,一种输送机上的圆筒发电机的发电方法,其特征是所述有倾斜度的皮带输送机,皮带上是空心可滚动的大圆筒,大圆筒里面放置一圆筒发电机,其皮带输送机上的大圆筒,必要时不用,可以把圆筒发电机直接放在皮带输送机的皮带上。
  8. 如权利要求1或2或3或4或5所述的,输送机上的圆筒发电机的发电方法,其特征是所述有倾斜度的皮带输送机的皮带上,以及大辊筒上面,除放置本装置中的圆筒发电机外,还可以放置其它的,以圆筒的转动带动发电机发电的,这种省力类型的发电机。
PCT/CN2014/000821 2013-09-03 2014-09-03 输送机上的圆筒发电机的发电方法及其装置 WO2015032172A1 (zh)

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