CN205385333U - Energy -saving motor - Google Patents
Energy -saving motor Download PDFInfo
- Publication number
- CN205385333U CN205385333U CN201620170780.9U CN201620170780U CN205385333U CN 205385333 U CN205385333 U CN 205385333U CN 201620170780 U CN201620170780 U CN 201620170780U CN 205385333 U CN205385333 U CN 205385333U
- Authority
- CN
- China
- Prior art keywords
- energy
- module
- motor
- coil
- stator
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn - After Issue
Links
Landscapes
- Control Of Eletrric Generators (AREA)
Abstract
The utility model relates to an energy -saving motor, including top cap, casing, rotor, stator, bottom and electric energy recovery circuit. Magnetic induction electricity generation coil is established in the magnetic field that the electromechanical sub - commutation in -process pulse current of the ingenious favourable terrain power consumption of energy -saving motor changes around the drive coil of motor in produced variable magnetic field 's decisive range, convert the magnetic field that changes into electric energy around the motor drive coil, again with the electrical energy storage that change in the electric energy storage unit, the storage is recycled after arriving certain volume to reach energy -conservation. The utility model provides a stator structurally is different from normal motor, and it is ingenious to have an energy -conserving design, and energy -conserving effect has obvious improvement than motor internet technology of the same kind, simple structure, the reliability is high, the energy -conserving effect of motor showing with the advantage that lasts.
Description
Technical field
This utility model relates to a kind of motor, particularly relates to a kind of energy-saving electric machine.
Background technology
The every aspect of the motor extensive use lives of the people, is applied to all trades and professions.But energy-conservation for motor, existing technology, mainly with improve motor ventilation and heat, improve motor control drive electronic circuit, reclaim the kinetic energy of motor and be converted into the modes such as power cycles utilization and realize.
Number of patent application: 201110234966.8, denomination of invention: high-power energy-saving motor.
Number of patent application: 2015206918229.9, denomination of invention: intelligent power saving motor.
Above-mentioned patent documentation is all the above-mentioned ventilation and heat to improve motor of this utility model document, improve motor control drive electronic circuit, the power-saving technology of the kinetic energy power generation recycling that reclaims motor makes electrical machine energy-saving.This utility model is intended to the New-type electric machine power-saving technology outside the electric motor energy-saving technique that exploration use is above-mentioned, explores through long-term experiment, it is provided that a kind of energy-saving motor.
It is known that there is magnetic field around electrified wire.And the driving coil driving rotor to rotate on motor stator, time in motor electronic commutation process by pulse current, drive the surrounding of coil to there is also the magnetic field of change.
Summary of the invention
In view of above-mentioned background technology, problem of the present utility model is in that pulse current in motor electronic commutation process is produced around the driving coil of motor the magnetic field of change, by technological means, magnetic field varied about for described motor drive coils is converted to electric energy, the electric energy changed is stored in electrical power storage element, after storage arrival is a certain amount of, recycling, thus reaching energy-conservation.
Realization of the present utility model is addressed mainly through following technical scheme:
Energy-saving electric machine described in the utility model, including top cover, casing, rotor, stator, bottom and energy recovery circuit for electric.Described top cover is provided with vent and rotating shaft installing hole.Described rotor is provided with rotating shaft, is provided with permanent magnet in described rotor, and described rotor is arranged on the inner periphery of described stator with certain gap;When electric energy effect is on described stator, described rotor is rotated by the interaction with stator.It is characterized in that: described stator is respectively equipped with driving coil and magnetic induction power coil, during motor electronic commutation when the pulse electric energy of change is by the driving coil on described stator, the magnetic induction power coil being arranged in the sphere of action driving coil to produce variation magnetic field produces electric energy simultaneously, the electric energy produced uses after described energy recovery circuit for electric again, thus reaching energy-conservation.
The coil that drives on stator described in the utility model also has the function carrying out kinetic energy recovery generating when allowing decelerating through motor or power-off by controlling the circuit for controlling motor of electric machine rotation simultaneously.
Described energy recovery circuit for electric includes rectification module, filtration module, storage module, the first switch module, switch control module, second switch module, power adaptation module.Stator is arranged on the input driving the electric energy that the magnetic induction power coil near coil produces to access rectification module, the outfan of rectification module is connected with the input of filtration module, the outfan of filtration module is connected with the input of storage module, the outfan of storage module and the input of the first switch module are connected, and the outfan of the first switch module is connected with follow-up load;Another road alternating current 220V or 380V accesses the input of power adaptation module, the outfan of power adaptation module is connected with the input of second switch module, the outfan of second switch module is connected with follow-up load, and switch control module is connected with the first switch module, second switch module respectively.
The electric energy of switch control module detection storage module, when storage module voltage is more than or equal to the voltage of power adaptation module, switch control module controls the first switch module conducting, and Simultaneous Switching controls module and controls second switch module and disconnect.When storage module voltage is less than the voltage of power adaptation module, switch control module controls the first switch module and disconnects, and Simultaneous Switching controls module and controls the conducting of second switch module.
The beneficial effects of the utility model: use and a kind of be different from the New-type electric machine power-saving technology that conventional motors is energy-conservation, take full advantage of the magnetic field of change around motor drive coils, so as to be converted into electric energy, the electric energy converted carry out storage recycling.Energy-saving effect continues and notable, and structure and technique are simple, with low cost, it is easy to promote the use of, and have the value promoted the use of;
With number of patent application: 201110234966.8 and number of patent application: energy-saving technical scheme in 2015105676636.6 documents and compared with similar technique scheme, when this utility model utilizes motor electronic commutation dexterously, pulse current is by driving coil to produce to set the generating of magnetic induction power coil in the scope of variation magnetic field, and the permanent magnet of above-mentioned patent formula document utilization traditional mechanical motion produces to set in the magnetic field range of change the generating of magnetic induction power coil and utilization improves ventilation and heat and energy-conservation, design and technical scheme differ completely;In efficiency, this utility model high efficiency generation electric energy of energy, efficiency is close with the efficiency of transformator under given conditions, and above-mentioned patent documentation scheme is subject to the impact of friction and various resistances, when consuming isodose electric energy, this utility model reclaims the electric energy produced and energy-conservation effect increases significantly than above-mentioned patent documentation technology and similar technique scheme;Compared with can reclaiming, with utilizing the driving coil on motor and electromechanics moving magnetic field to change when being widely used in electric automobile, electric bicycle deceleration now, the technology that kinetic energy power generation can help again to slow down, this utility model has the advantage that electric energy continues to produce, as long as the electric energy that coil changes that drives on motor flows through, just producing to reclaim electric energy accordingly, no matter motor accelerates, slowing down all to produce electric energy.
Accompanying drawing explanation
Fig. 1 is the electric machine structure figure of this utility model energy-saving electric machine embodiment.
Fig. 2 is the stator structure figure of this utility model energy-saving electric machine embodiment.
Fig. 3 is the stator structure figure of current art motor.
Fig. 4 is the energy recovery circuit for electric theory diagram of this utility model energy-saving electric machine embodiment.
In figure, 1. rotating shaft installing hole, 2. top cover, 3. vent, 4. rotating shaft, 5. rotor, 6. stator, 7. casing, 8. bottom, 9. magnetic induction power coil, 10. drives coil, 11. rectification modules, 12. filtration module, 13. storage modules, 14. first switch modules, 15. switch control module, 16. second switch modules, 17 power adaptation module.
Detailed description of the invention
By the examples below, and in conjunction with accompanying drawing, the technical solution of the utility model is described in further detail.
Embodiment one
The energy-saving electric machine of the present embodiment, as it is shown in figure 1, include motor and energy recovery circuit for electric.Top cover (2) that motor includes being sequentially connected, rotor (5), stator (6), casing (7), bottom (8).Top cover (2) offers two vents (3) for dispelling the heat, and the center of top cover (2) offers the rotating shaft installing hole (1) for installing rotating shaft (4), and rotor (5) is provided with rotating shaft (4).
As in figure 2 it is shown, stator (6) is fixed in casing (7), stator (6) is respectively arranged with driving coil (10) and magnetic induction power coil (9).
Energy recovery circuit for electric in the energy-saving electric machine of the present embodiment, as shown in Figure 4, including rectification module (11), filtration module (12), storage module (13), the first switch module (14), switch control module (15), second switch module (16), power adaptation module (17).The electric energy that magnetic induction coil (9) produces accesses the input of rectification module (11), the outfan of rectification module (11) is connected with the input of filtration module (12), the outfan of filtration module (12) is connected with the input of storage module (13), the outfan of storage module (13) and the input of the first switch module (14) are connected, and the outfan of the first switch module (14) is connected with follow-up load;Another road alternating current 220V or 380V accesses the input of power adaptation module (17), the outfan of power adaptation module (17) is connected with the input of second switch module (16), the outfan of second switch module (16) is connected with follow-up load, and switch control module (15) is connected with the first switch module (14), second switch module (16) respectively.
Stator in this utility model energy-saving electric machine differs structurally from common electric machine (as shown in Figure 3), this utility model is supported that circuit for controlling motor utilizes and is driven coil photoelectrons slow energy-saving power generation, and the rotating speed of motor is more high, drive coil electronics commutation more fast, the generated energy of magnetic induction power coil is more big, thus motor is also more energy-conservation;The energy-conservation thinking of this utility model is ingenious, and energy-saving effect is higher by more than 90% than similar technique, simple in construction, and reliability is high, has the advantage that electrical machine energy-saving effect is notable and lasting.
For the ordinary skill in the art; this utility model is simply exemplarily described by specific embodiment in conjunction with accompanying drawing; obvious this utility model implements and is not subject to the restrictions described above; as long as have employed the improvement of the various unsubstantialities that method of the present utility model design carries out with technical scheme; or its equivalent modifications carried out or change are replaced; or not improved design of the present utility model and relevant technical scheme are directly applied to other occasion, all within protection domain of the present utility model.
Claims (4)
1. an energy-saving electric machine, including top cover (2), casing (7), rotor (5), stator (6), bottom (8) and energy recovery circuit for electric;Described top cover (2) is provided with vent (3) and rotating shaft installing hole (1);Described rotor (5) is provided with rotating shaft (4), is provided with permanent magnet in described rotor (5), and described rotor (5) is arranged on the inner periphery of described stator (6) with certain gap;When electric energy effect is when described stator (6) is upper, described rotor (5) is rotated by the interaction with stator (6);It is characterized in that: described stator (6) is provided with driving coil (10) and magnetic induction power coil (9), magnetic induction power coil (9) is located at and drives in the sphere of action that coil (10) produces variation magnetic field;The pulse electric energy of motor electronic commutation change is by the driving coil (10) on described stator (6), and magnetic induction power coil (9) produces electric energy, and the electric energy of generation uses after described energy recovery circuit for electric again.
2. energy-saving electric machine according to claim 1, it is characterised in that magnetic induction power coil (9) is located at the position driving coil (10) adjacent.
3. energy-saving electric machine according to claim 1, it is characterized in that, described energy recovery circuit for electric includes rectification module (11), filtration module (12), storage module (13), the first switch module (14), switch control module (15), second switch module (16), power adaptation module (17).
4. energy-saving electric machine according to claim 3, it is characterized in that, the electric energy that described magnetic induction power coil (9) produces accesses the input of rectification module (11), the outfan of rectification module (11) is connected with the input of filtration module (12), the outfan of filtration module (12) is connected with the input of storage module (13), the outfan of storage module (13) and the input of the first switch module (14) are connected, and the outfan of the first switch module (14) is connected with follow-up load;Another road alternating current 220V or 380V accesses the input of power adaptation module (17), the outfan of power adaptation module (17) is connected with the input of second switch module (16), the outfan of second switch module (16) is connected with follow-up load, and switch control module (15) is connected with the first switch module (14), second switch module (16) respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620170780.9U CN205385333U (en) | 2016-03-07 | 2016-03-07 | Energy -saving motor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620170780.9U CN205385333U (en) | 2016-03-07 | 2016-03-07 | Energy -saving motor |
Publications (1)
Publication Number | Publication Date |
---|---|
CN205385333U true CN205385333U (en) | 2016-07-13 |
Family
ID=56351279
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620170780.9U Withdrawn - After Issue CN205385333U (en) | 2016-03-07 | 2016-03-07 | Energy -saving motor |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN205385333U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105576871A (en) * | 2016-03-07 | 2016-05-11 | 高彰 | Energy-saving motor |
-
2016
- 2016-03-07 CN CN201620170780.9U patent/CN205385333U/en not_active Withdrawn - After Issue
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105576871A (en) * | 2016-03-07 | 2016-05-11 | 高彰 | Energy-saving motor |
WO2017152729A1 (en) * | 2016-03-07 | 2017-09-14 | 高彰 | Energy saving motor |
CN105576871B (en) * | 2016-03-07 | 2017-12-01 | 高彰 | A kind of motor |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN105576871B (en) | A kind of motor | |
CN203788115U (en) | Dual-stator and dual-rotor energy-saving motor and high-efficiency magnetic cycle mechanical-and-electrical-integrated energy-saving motor | |
CN101005226A (en) | Magnetic conversion motor | |
CN205385333U (en) | Energy -saving motor | |
CN204886620U (en) | Double-excitation winding energy-saving direct current motor | |
CN211239622U (en) | Permanent magnet brushless motor capable of recovering back electromotive force | |
CN202566790U (en) | Energy-saving hair drier without carbon brush | |
CN104084934A (en) | Novel intelligent control direct-current brushless electric pick | |
CN204652275U (en) | A kind of permagnetic synchronous motor direct torque control device based on constant switching frequency space vector modulation | |
CN209217918U (en) | A kind of engine direct drive generator with flywheel | |
CN203667772U (en) | Energy storage type elevator | |
CN202160083U (en) | Permanent-magnet direct current motor capable of being operated and controlled synchronously | |
CN2683678Y (en) | Brushless DC motor driving controller for sewing machine | |
CN201616755U (en) | Continuously running wind generator suitable for being started under low wind speed | |
CN105065313B (en) | A kind of alternating current-direct current fan control device | |
CN107240998B (en) | Four phases, 32/24 pole structure switch magnetic resistance motor polarity distribution method and its application | |
CN202334159U (en) | High-efficiency fan motor | |
CN202374145U (en) | Electronic alternating current asynchronous motor | |
CN103208896A (en) | Permanent magnet brushless direct current motor | |
CN102170259B (en) | Multi-stator wind power generation and ventilation dual-purpose machine controller | |
CN101865026A (en) | High-efficiency magnetic piston power machine | |
CN106452271A (en) | Switched reluctance motor driver | |
CN201507287U (en) | Walking-beam oil sucking machine driven by switch reluctance motor | |
CN207621055U (en) | A kind of elevator direct-current wind turbine | |
CN203967943U (en) | Electric motor car efficient permanent magnet direct current machine |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20160713 Effective date of abandoning: 20171201 |