CN205001131U - Whirlpool spring power generator - Google Patents
Whirlpool spring power generator Download PDFInfo
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- CN205001131U CN205001131U CN201520511153.2U CN201520511153U CN205001131U CN 205001131 U CN205001131 U CN 205001131U CN 201520511153 U CN201520511153 U CN 201520511153U CN 205001131 U CN205001131 U CN 205001131U
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- gear
- belt pulley
- overdrive
- overdrive gear
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Abstract
The utility model relates to a generator, in particular to whirlpool spring power generator. This whirlpool spring power generator, including engine and the generator that is connected, characterized by: the engine is connected with decelerator, and decelerator is connected with main shaft one end, installs the whirlpool spring on the main shaft, and the main shaft other end is connected with the generator through speed increase unit. The beneficial effects of the utility model are that: with energy storage in the spring of whirlpool, the time spent can be generated electricity, the time spent does not store can, simple structure, efficient, convenient operation, with low costs, little to environmental pollution have made huge contribution for electric power system's development.
Description
(1) technical field
The utility model relates to a kind of generator, particularly a kind of whirlpool spring power electric generator.
(2) background technique
At present, the energy storage technology that electric power system adopts, has four classes such as physics energy storage, Power Flow, electrochemical energy storage and phase-change accumulation energy.But, above several energy storage mode have cannot use in a wider context, cost is higher, environmental pollution is serious, system complex, maintenance rate are high shortcoming.Safety, high-quality, economy are the basic demands to electric power system, how to carry out good adjustment to electric power system, and make electric power system carry out economy according to network load or according to generating capacity, effectively regulate, be problem be absorbed in the industry always.For large-scale power grid, power transmission network is equivalent to an electric energy and concentrates container, in system, all power station inject electric energy to this container, user takes electric energy by distribution network from this container, it generally adopts generator capacity mode for subsequent use to mediate, and in emergency circumstances adopts cutting load or excision generator to maintain the stable of system.
(3) summary of the invention
The utility model, in order to make up the deficiencies in the prior art, provides the whirlpool spring power electric generator that a kind of structure is simple, efficiency is high, easy to operate, cost is low, environmental pollution is little.
The utility model is achieved by the following technical solution:
A kind of whirlpool spring power electric generator, comprise the motor and generator that are connected, it is characterized in that: described motor is connected with speed reducer, speed reducer is connected with main shaft one end, main shaft is provided with whirlpool spring, the main shaft the other end is connected with generator by speeder.
Described speeder is provided with braking device.
Described speed reducer comprises the first deceleration belt pulley be installed on motor, first deceleration belt pulley is connected with the second deceleration belt pulley, second deceleration belt pulley is coaxially installed with the first reduction gear, first reduction gear engages with the second reduction gear, second reduction gear is coaxially installed with the 3rd reduction gear, 3rd reduction gear engages with the 4th reduction gear, and the 4th reduction gear is installed on main shaft left end.
Described speeder comprises the first overdrive gear being installed on main shaft right-hand member, first overdrive gear is meshed with the second overdrive gear, second overdrive gear is coaxially installed with the 3rd overdrive gear, 3rd overdrive gear is meshed with the 4th overdrive gear, 4th overdrive gear is coaxially installed with the 5th overdrive gear, 5th overdrive gear is meshed with the 6th overdrive gear, 6th overdrive gear is coaxially installed with the first speedup belt pulley, and the first speedup belt pulley is connected with the second speedup belt pulley be installed on generator.
Described first deceleration belt pulley is Φ 65mm, second deceleration belt pulley is Φ 160mm, the modulus of the first reduction gear is 3, the number of teeth is 70, the modulus of the second reduction gear is 3, the number of teeth is 20, the modulus that the modulus of the 3rd reduction gear is 6, the number of teeth is the 13, four reduction gear is 6, the number of teeth is 67.
The modulus of described first overdrive gear is 6, the number of teeth is 67, the modulus of the second overdrive gear is 6, the number of teeth is 13, the modulus of the 3rd overdrive gear is 5, the number of teeth is 20, the modulus of the 4th overdrive gear is 5, the number of teeth is 96, the modulus of the 5th overdrive gear is 3, the number of teeth is 159, the modulus of the 6th overdrive gear is 3, the number of teeth be the 20, first speedup belt pulley is Φ 350mm, and the second speedup belt pulley is Φ 100mm.
Described braking device is be installed on the trig loop inside the 5th overdrive gear.
Described trig loop sectional uniform is provided with three snubber blocks.
Described main shaft and whirlpool spring are installed in casing, and bottom half is provided with supporting leg.
The beneficial effects of the utility model are: by energy storage in the spring of whirlpool, and the used time can generate electricity, and the used time does not store; Structure is simple, efficiency is high, easy to operate, cost is low, environmental pollution is little, and tremendous contribution has been made in the development for electric power system.
(4) accompanying drawing explanation
Below in conjunction with accompanying drawing, the utility model is further described.
Accompanying drawing 1 is structural representation of the present utility model;
Accompanying drawing 2 is brake device structure schematic diagram of the present utility model;
In figure, 1 motor, 2 generators, 3 speed reducer, 4 main shafts, 5 whirlpool springs, 6 speeders, 7 braking device, 8 first deceleration belt pulley, 9 second deceleration belt pulley, 10 first reduction gear, 11 second reduction gear, 12 the 3rd reduction gear, 13 the 4th reduction gear, 14 first overdrive gears, 15 second overdrive gears, 16 the 3rd overdrive gears, 17 the 4th overdrive gears, 18 the 5th overdrive gears, 19 the 6th overdrive gears, 20 first speedup belt pulleys, 21 second speedup belt pulleys, 22 trig loops, 23 snubber blocks, 24 casings, 25 supporting legs.
(5) embodiment
Accompanying drawing is a kind of specific embodiment of the present utility model.This embodiment comprises the motor 1 and generator 2 that are connected, and motor 1 is connected with speed reducer 3, and speed reducer 3 is connected with main shaft 4 one end, main shaft 4 is provided with whirlpool spring 5, and main shaft 4 the other end is connected with motor 1 by speeder 6.Speeder 6 is provided with braking device 7.Speed reducer 3 comprises the first deceleration belt pulley 8 be installed on motor 1, first deceleration belt pulley 8 is connected with the second deceleration belt pulley 9, second deceleration belt pulley 9 is coaxially installed with the first reduction gear 10, first reduction gear 10 engages with the second reduction gear 11, second reduction gear 11 is coaxially installed with the 3rd reduction gear 12,3rd reduction gear 12 engages with the 4th reduction gear 13, and the 4th reduction gear 13 is installed on main shaft 4 left end.Speeder 6 comprises the first overdrive gear 14 being installed on main shaft 4 right-hand member, first overdrive gear 14 is meshed with the second overdrive gear 15, second overdrive gear 15 is coaxially installed with the 3rd overdrive gear 16,3rd overdrive gear 16 is meshed with the 4th overdrive gear 17,4th overdrive gear 17 is coaxially installed with the 5th overdrive gear 18,5th overdrive gear 18 is meshed with the 6th overdrive gear 19,6th overdrive gear 19 is coaxially installed with the first speedup belt pulley 20, first speedup belt pulley 20 and is connected with the second speedup belt pulley 21 be installed on generator 2.First deceleration belt pulley 8 is Φ 65mm, second deceleration belt pulley 9 is Φ 160mm, the modulus of the first reduction gear 10 is 3, the number of teeth is 70, the modulus of the second reduction gear 11 is 3, the number of teeth is 20, the modulus that the modulus of the 3rd reduction gear 12 is 6, the number of teeth is the 13, four reduction gear 13 is 6, the number of teeth is 67.The modulus of the first overdrive gear 14 is 6, the number of teeth is 67, the modulus of the second overdrive gear 15 is 6, the number of teeth is 13, the modulus of the 3rd overdrive gear 16 is 5, the number of teeth is 20, the modulus of the 4th overdrive gear 17 is 5, the number of teeth is 96, the modulus of the 5th overdrive gear 18 is 3, the number of teeth is 159, the modulus of the 6th overdrive gear 19 is 3, the number of teeth be the 20, first speedup belt pulley 20 is Φ 350mm, and the second speedup belt pulley 21 is Φ 100mm.Braking device 7 is for being installed on the trig loop 22 inside the 5th overdrive gear 18.Trig loop 22 sectional uniform is provided with three snubber blocks 23.Main shaft 4 and whirlpool spring 5 are installed in casing 24, are provided with supporting leg 25 bottom casing 24.
Adopt a kind of whirlpool of the present utility model spring power electric generator, motor 1 drives the first deceleration belt pulley 8 successively, second deceleration belt pulley 9, first reduction gear 10, second reduction gear 11, 3rd reduction gear 12, 4th reduction gear 13 is rotated, thus drive main shaft 4 to rotate, and then as winding up, whirlpool spring 5 is reversed storage elasticity potential energy, open braking device 7, the elastic potential energy of whirlpool spring 5 can discharge, main shaft 4 can be driven to rotate, and then drive the first overdrive gear 14 successively, second overdrive gear 15, 3rd overdrive gear 16, 4th overdrive gear 17, 5th overdrive gear 18, 6th overdrive gear 19, first speedup belt pulley 20, second speedup belt pulley 21 rotates, and then drive electrical generators 2 generates electricity.During without the need to generating electricity, close braking device 7, opening braking device can generate electricity immediately.The principle of braking device 7 is that trig loop 22 holds the 5th overdrive gear 18 tightly, can brake, and three snubber blocks 23 are installed on its cross section in man type, vibrations when effectively can be reduced in braking and noise.The motor 1 of the 2.2KW of this device to wind up to whirlpool spring 5 by slowing down and tightens, and the elastic potential energy of whirlpool spring 5 can be generated electricity for the generator 2 of 7.5KW by speedup.
Claims (9)
1. a whirlpool spring power electric generator, comprise the motor (1) and generator (2) that are connected, it is characterized in that: described motor (1) is connected with speed reducer (3), speed reducer (3) is connected with main shaft (4) one end, main shaft (4) is provided with whirlpool spring (5), main shaft (4) the other end is connected with generator (1) by speeder (6).
2. a kind of whirlpool according to claim 1 spring power electric generator, is characterized in that: described speeder (6) is provided with braking device (7).
3. a kind of whirlpool according to claim 1 spring power electric generator, it is characterized in that: described speed reducer (3) comprises the first deceleration belt pulley (8) be installed on motor (1), first deceleration belt pulley (8) is connected with the second deceleration belt pulley (9), second deceleration belt pulley (9) is coaxially installed with the first reduction gear (10), first reduction gear (10) engages with the second reduction gear (11), second reduction gear (11) is coaxially installed with the 3rd reduction gear (12), 3rd reduction gear (12) engages with the 4th reduction gear (13), 4th reduction gear (13) is installed on main shaft (4) left end.
4. a kind of whirlpool according to claim 1 spring power electric generator, it is characterized in that: described speeder (6) comprises the first overdrive gear (14) being installed on main shaft (4) right-hand member, first overdrive gear (14) is meshed with the second overdrive gear (15), second overdrive gear (15) is coaxially installed with the 3rd overdrive gear (16), 3rd overdrive gear (16) is meshed with the 4th overdrive gear (17), 4th overdrive gear (17) is coaxially installed with the 5th overdrive gear (18), 5th overdrive gear (18) is meshed with the 6th overdrive gear (19), 6th overdrive gear (19) is coaxially installed with the first speedup belt pulley (20), first speedup belt pulley (20) is connected with the second speedup belt pulley (21) be installed on generator (2).
5. a kind of whirlpool according to claim 3 spring power electric generator, it is characterized in that: described first deceleration belt pulley (8) is Φ 65mm, second deceleration belt pulley (9) is Φ 160mm, the modulus of the first reduction gear (10) is 3, the number of teeth is 70, the modulus of the second reduction gear (11) is 3, the number of teeth is 20, the modulus that the modulus of the 3rd reduction gear (12) is 6, the number of teeth is the 13, four reduction gear (13) is 6, the number of teeth is 67.
6. a kind of whirlpool according to claim 4 spring power electric generator, it is characterized in that: the modulus of described first overdrive gear (14) is 6, the number of teeth is 67, the modulus of the second overdrive gear (15) is 6, the number of teeth is 13, the modulus of the 3rd overdrive gear (16) is 5, the number of teeth is 20, the modulus of the 4th overdrive gear (17) is 5, the number of teeth is 96, the modulus of the 5th overdrive gear (18) is 3, the number of teeth is 159, the modulus of the 6th overdrive gear (19) is 3, the number of teeth is 20, first speedup belt pulley (20) is Φ 350mm, second speedup belt pulley (21) is Φ 100mm.
7. a kind of whirlpool according to claim 2 spring power electric generator, is characterized in that: described braking device (7) is for being installed on the trig loop (22) of the 5th overdrive gear (18) inner side.
8. a kind of whirlpool according to claim 7 spring power electric generator, is characterized in that: described trig loop (22) sectional uniform is provided with three snubber blocks (23).
9. a kind of whirlpool according to claim 1 spring power electric generator, is characterized in that: described main shaft (4) and whirlpool spring (5) are installed in casing (24), and casing (24) bottom is provided with supporting leg (25).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520511153.2U CN205001131U (en) | 2015-07-15 | 2015-07-15 | Whirlpool spring power generator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520511153.2U CN205001131U (en) | 2015-07-15 | 2015-07-15 | Whirlpool spring power generator |
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CN205001131U true CN205001131U (en) | 2016-01-27 |
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CN201520511153.2U Expired - Fee Related CN205001131U (en) | 2015-07-15 | 2015-07-15 | Whirlpool spring power generator |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN118659581A (en) * | 2024-08-20 | 2024-09-17 | 中国海洋大学 | Energy conversion system and test method of wave energy equipment |
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2015
- 2015-07-15 CN CN201520511153.2U patent/CN205001131U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN118659581A (en) * | 2024-08-20 | 2024-09-17 | 中国海洋大学 | Energy conversion system and test method of wave energy equipment |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160127 Termination date: 20180715 |