CN105226856B - Full energy-saving power machine - Google Patents
Full energy-saving power machine Download PDFInfo
- Publication number
- CN105226856B CN105226856B CN201510699721.0A CN201510699721A CN105226856B CN 105226856 B CN105226856 B CN 105226856B CN 201510699721 A CN201510699721 A CN 201510699721A CN 105226856 B CN105226856 B CN 105226856B
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- China
- Prior art keywords
- group
- electromagnet
- permanent magnet
- rotor
- coil group
- 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.)
- Expired - Fee Related
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Classifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/12—Stationary parts of the magnetic circuit
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K9/00—Arrangements for cooling or ventilating
- H02K9/19—Arrangements for cooling or ventilating for machines with closed casing and closed-circuit cooling using a liquid cooling medium, e.g. oil
- H02K9/197—Arrangements for cooling or ventilating for machines with closed casing and closed-circuit cooling using a liquid cooling medium, e.g. oil in which the rotor or stator space is fluid-tight, e.g. to provide for different cooling media for rotor and stator
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/12—Stationary parts of the magnetic circuit
- H02K1/20—Stationary parts of the magnetic circuit with channels or ducts for flow of cooling medium
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/22—Rotating parts of the magnetic circuit
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/22—Rotating parts of the magnetic circuit
- H02K1/32—Rotating parts of the magnetic circuit with channels or ducts for flow of cooling medium
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K11/00—Structural association of dynamo-electric machines with electric components or with devices for shielding, monitoring or protection
Landscapes
- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Motor Or Generator Cooling System (AREA)
- Permanent Magnet Type Synchronous Machine (AREA)
- Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
Abstract
Full energy-saving power machine, including housing, the interior installation stator of housing and rotor, rotor structure are as follows:Including rotating shaft, the periphery installation rotor framework of rotating shaft, several electromagnet are uniformly installed in the periphery of rotor framework, and the quantity of electromagnet is 4n, and n is positive integer;All electromagnet are divided into two groups, two adjacent electromagnet are different group, two electromagnet at interval are same group, one permanent magnetism body support frame is respectively set between per two adjacent electromagnet, the outside of each permanent magnetism body support frame is respectively installed by one piece of permanent magnet, a support member is respectively provided with the inside of each permanent magnetism body support frame to be connected with rotor framework, it utilizes the stator of permanent magnet and the rotor engagement with two groups of alternating polarities electromagnet, and coordinated with the permanent magnet on rotor and stator and deflecting force is provided, drive rotor rotation, electromagnetic conversion can more efficiently be realized and convert electrical energy into mechanical energy, it is more efficient.It can effectively ensure the normal operation of engine.The present invention also has the advantages of simple in construction, manufacturing cost is cheap and carrying and installation facilitates.
Description
Technical field
The present invention relates to a kind of motor, is exactly a kind of full energy-saving power machine.
Background technology
Present motor has following deficiency:1st, the big efficiency of energy consumption is low, and powerful motor is bulky, heavy
It is difficult to carry;2nd, radiating effect is poor, and the situation of motor overheating damage easily occurs.
The content of the invention
It is an object of the invention to provide a kind of full energy-saving power machine, the small efficiency high of its energy consumption, and there is unique water circulation
Cooling system, the situation that motor is burned can be prevented and occurred, so as to solve the problems, such as that prior art is present.
The present invention to achieve the above object, is achieved through the following technical solutions:Full energy-saving power machine, including housing, housing
Interior installation stator and rotor, it is characterised in that:Rotor structure is as follows:Including rotating shaft, the periphery installation rotor framework of rotating shaft, rotor
Several electromagnet are uniformly installed in the periphery of skeleton, and the quantity of electromagnet is 4n, and n is positive integer;All electromagnet are divided into two groups,
Two adjacent electromagnet are different group, and two electromagnet at interval are same group, each between every two adjacent electromagnet to set one
One piece of second permanent magnet, each second permanent magnet are respectively installed in individual second permanent magnet bracket, the outside of each second permanent magnet bracket
It is respectively provided with a support member on the inside of support to be connected with rotor framework, the second permanent magnet bracket and support member are NULL;
First annular water pipe and the second annular conduit are installed in the periphery of rotating shaft, and second water pipe and first are respectively provided with each heat dissipation box
Water pipe, the second all water pipes communicate with the second annular conduit, and the first all water pipes communicates with first annular water pipe, in rotating shaft
Provided with the second water channel and the first water channel, one end of the second water channel and the second annular conduit UNICOM, one end of the first water channel and first
Annular conduit UNICOM;Each electromagnet is by one group of magnetic conduction sheet, a heat dissipation box, a first coil group and a second coil group
Connect and compose, every group of magnetic conduction sheet is arranged in order by several pieces magnetic conduction sheets to be formed, and one group of magnetic conduction sheet, heat dissipation box are installed in the periphery of heat dissipation box
Coordinate with the hole of all magnetic conduction sheets with group, the magnetic conduction sheet periphery with group curls first coil group and the second coil group, First Line
The winding direction of circle group and the second coil group is opposite;Installation multi-path conducting slip ring in rotating shaft, one of multi-path conducting slip ring
Path is connected by wire with the first coil group of first group of electromagnet and the second coil group of second group of electromagnet, and multi-path is led
The first coil of the second coil group and second group of electromagnet that another path of electric slip ring passes through wire and first group of electromagnet
Group connection;Rotating disk is installed, the periphery of rotating disk is uniformly provided with several projections, and the quantity of projection is 2n, and any two are adjacent in rotating shaft
A groove is respectively formed between projection;Stator is the first permanent magnet, the second permanent magnet go to the first permanent magnet to it is corresponding when it is same
Extremely relative, install sensor and controller in housing, sensor, which detects to signal during projection, is transmitted to controller, controller control
The first coil group and second group of the second coil group of first group of electromagnet obtain electric, the second coil group and of first group of electromagnet
The first coil group power-off of two groups of electromagnet, now, first group of electromagnet is corresponding with the first permanent magnet;Sensor detects groove
When signal and be transmitted to controller, controller controls the first coil group of second group of electromagnet and first group of the second coil group to obtain
Electricity, the first coil group power-off of the second coil group of second group of electromagnet and first group of electromagnet, now, second group of electromagnet with
First permanent magnet is corresponding;When first coil group is powered, the polarity of electromagnet is identical with the polarity of the first permanent magnet, is installed in housing
Cooling water tank, the second annular water tank and first annular tank, the second annular water tank communicate with the other end of the second water channel, the first ring
Shape tank communicates with the other end of the first water channel, cooling water tank by the 4th water pipe and the 3rd water pipe respectively with the second annular water tank
It is corresponding with first annular tank to communicate, water pump is installed on cooling water tank and realizes water circulation.
Further to realize the purpose of the present invention, following technical scheme can also be used:Dividing plate is provided with the heat dissipation box.
Radiator fan is installed in the rotating shaft.Water pump driving wheel is installed, water pump driving wheel passes through transmission belt and water pump in the rotating shaft
Power input wheel connects.The upper end of the magnetic conduction sheet sets rectangular portion, and lower end sets trapezoidal portion.The midpoint of first permanent magnet
Distance H to rotor center is more than or equal to rotor radius 2/3rds.Respectively set positioned at the second annular water tank both sides in the rotating shaft
Put second sealing ring;One the first sealing ring is respectively set positioned at first annular tank both sides in the rotating shaft.It is described every magnetic
Material is iron or stainless steel.First permanent magnet face corresponding with rotor is cambered surface.The quantity of first permanent magnet is 2n,
First permanent magnet can correspond with one group of electromagnet.
The advantage of the invention is that:It is using the stator of the first permanent magnet and with two groups of alternating polarities electromagnet
Rotor engagement, and coordinated with the second permanent magnet on rotor and stator and deflecting force is provided, driving rotor rotation can be more efficiently
Realize electromagnetic conversion and convert electrical energy into mechanical energy, it is more efficient.Simple in construction and radiating effect pole is provided with its rotor
High cooling system, it is difficult effectively to solve the problems, such as to radiate in motor operation course, can effectively ensure the normal fortune of engine
OK.The present invention also has the advantages of simple in construction, manufacturing cost is cheap and carrying and installation facilitates.
Brief description of the drawings
Fig. 1 is the main structure diagram of full energy-saving power machine of the present invention, and sensor 22 is eliminated in figure;Fig. 2 is
Fig. 1 A-A section view mplifying structure schematic diagrams;Fig. 3 is the dimensional structure diagram that magnetic conduction sheet 3 coordinates with heat dissipation box 4;Fig. 4 is institute
State the mplifying structure schematic diagram of rotating disk 27.
Reference:The permanent magnet 7 of 1 housing, 2 electromagnet, 3 magnetic conduction sheet, 4 heat dissipation box, 5 second permanent magnet bracket 6 second
One permanent magnet, 8 rotor framework, 9 rotating shaft, 10 key, 11 support member, the 12 first annular controller 15 of 13 cooling water tank of water pipe 14
The groove 22 of first water pipe, 16 radiator fan, 17 first coil group, 18 second 19 second water pipe of coil group, 20 dividing plate 21 senses
23 first sealing ring of device, the 24 first annular annular of 25 first 27 rotating disk of the 3rd water pipe of water channel 26,28 projection of tank 29 second
The multi-path of 30 33 second 34 second sealing ring of annular water tank of water pump driving wheel the 4th water pipe of 31 second water channel 32 of water pipe 35
The water pump of 38 keyway of trapezoidal 37 rectangular portion of portion, 39 axis hole of conducting slip ring 36,40 hole o midpoints 41.
Embodiment
As shown in figure 1, full energy-saving power machine of the present invention, including housing 1, the interior installation stator of housing 1 and rotor.Turn
Minor structure is as follows:Including rotating shaft 9, the periphery installation rotor framework 8 of rotating shaft 9, several electromagnetism are uniformly installed in the periphery of rotor framework 8
Iron 2.The quantity of electromagnet 2 is 4n, and n is positive integer, i.e. the quantity of electromagnet 2 is at least 4, can also be 8,12,16,20,24,
28、32......Learnt according to practice for many years, when the quantity of electromagnet 2 is 8, its engine is in manufacturing cost identical situation
Lower efficiency highest.All electromagnet 2 are divided into two groups, and adjacent two electromagnet 2 are different group, and two electromagnet 2 at interval are
Same group.Per respectively setting second permanent magnet bracket 5 between two adjacent electromagnet 2, each second permanent magnet bracket 5 it is outer
One piece of second permanent magnet 6 is respectively installed in side, and the inner side of each second permanent magnet bracket 5 is respectively provided with a support member 11 and rotor framework
8 connections.The position of second permanent magnet bracket 5 and support member 11 is set, and is not only to realize the necessary design of rotor rotation, meanwhile,
Can also secondary rotor skeleton 8 electromagnet 2 is further reinforced, it is ensured that electromagnet 2 and rotor framework 8 further turn into organically whole
Body.Second permanent magnet bracket 5, rotor framework 8 and support member 11 are NULL.The NULL is iron or stainless steel.
As shown in Fig. 2 the first annular annular conduit 29 of water pipe 12 and second is installed in the periphery of rotating shaft 9.One is respectively provided with each heat dissipation box 4
Root the second water pipe 19 and the first water pipe 15, the second all water pipes 19 communicate with the second annular conduit 29, the first all water pipes
15 communicate with first annular water pipe 12.Rotating shaft 9 is provided with the second water channel 31 and the first water channel 25, one end of the second water channel 31 and the
The UNICOM of second ring water pipe 29, one end of the first water channel 25 and the first annular UNICOM of water pipe 12.
Each electromagnet 2 is by one group of first coil group 17 of heat dissipation box 4, one of magnetic conduction sheet 3, one and a second coil group
18 are connected and composed, and every group of magnetic conduction sheet 3 is arranged in order by several pieces magnetic conduction sheets 3 and formed.The periphery of heat dissipation box 4 is installed by one group of magnetic conduction sheet 3.
As shown in figure 3, the hole 40 of heat dissipation box 4 and all magnetic conduction sheets 3 with group coordinates.As depicted in figs. 1 and 2, outside the magnetic conduction sheet 3 with group
Curl the coil group 18 of first coil group 17 and second week, the winding direction of the coil group 18 of first coil group 17 and second on the contrary, from
And when can ensure that the coil group 18 of first coil group 17 and second is separately energized, the opposite polarity of electromagnet 2.Installed in rotating shaft 9 more
Path conducting slip ring 35.
The first coil group 17 and second that one path of multi-path conducting slip ring 35 passes through wire and first group of electromagnet 2
Second coil group 18 of group electromagnet 2 connects.Another path of multi-path conducting slip ring 35 passes through wire and first group of electromagnetism
Second coil group 18 of iron 2 and the first coil group 17 of second group of electromagnet 2 connect.With the First Line organized on all electromagnet 2
It is series connection between circle group 17, is series connection between same the second coil group 18 organized on all electromagnet 2, also, with group electromagnet 2
First coil group 17 connected with the second coil group 18 on different group of electromagnet 2.
As shown in Fig. 2 rotating disk 27 is installed in rotating shaft 9, as shown in figure 4, the periphery of rotating disk 27 is uniformly provided with several projections 28,
The quantity of projection 28 is 2n.A groove 21 is formed between any two adjacent projections 28.Projection 28 and first group of electromagnet 2 one
One correspondence, groove 21 correspond with second group of electromagnet 2.The magnetic conduction sheet can be made up of non-crystaline amorphous metal or silicon steel
Piece, but silicon steel sheet heat production is excessive, and its electric utilization rate is less than a quarter of non-crystaline amorphous metal.To reduce the resistance that rotating shaft 9 rotates, turn
Bearing can be installed on axle 9.
Stator is the first permanent magnet 7, the second permanent magnet 6 go to the first permanent magnet 7 to it is corresponding when homopolarity it is relative.Such as Fig. 1
It is shown, for eight electromagnet 2, coordinate four the first permanent magnets 7 of installation, can more effectively increase power and mechanical energy conversion ratio have it is defeated
Go out power.
Install sensor 22 and controller 14 in housing 1, sensor 22, which detects to signal during projection 28, is transmitted to controller
14, the first coil group 17 and second group of the second coil group 18 of the first group of electromagnet 2 of control of controller 14 obtain electric, first group of electricity
Second coil group 18 of magnet 2 and the first coil group 17 of second group of electromagnet 2 power off, now, first group of electromagnet 2 and first
The correspondence of permanent magnet 7;
Sensor 22, which detects to signal during groove 21, is transmitted to controller 14, the second group of electromagnet 2 of control of controller 14
First coil group 17 and first group of the second coil group 18 obtain electric, the second coil group 18 and first group of electricity of second group of electromagnet 2
The first coil group 17 of magnet 2 powers off, and now, second group of electromagnet 2 is corresponding with the first permanent magnet 7;
When first coil group 17 is powered, the polarity of electromagnet 2 is identical with the polarity of the first permanent magnet 7.The controller 14
Can be PLC or direct current generator control device.After the machine leads to direct current, controller 14 coordinates with sensor 22, it can be ensured that when some electricity
When magnet 2 is gone to the first 7 correspondence position of permanent magnet, as shown in figure 1, the polarity certainty and the first permanent magnet 7 of the electromagnet 2
Polarity is identical, so as to produce powerful repulsion, simultaneously, on the one hand, the second adjacent permanent magnet 6 and first of the left side of electromagnet 2
The repulsion of permanent magnet 7 produces tangential component, and on the other hand, the polarity of another group of electromagnet 2 is with the first permanent magnet 7 on the contrary, producing
Attraction, tangential component is superimposed with attraction makes rotor produce initial starting power, once rotor deflection, with the first permanent magnet 7
Powerful repulsion caused by just corresponding electromagnet 2 will further produce rotary power, rotor is rotated at a high speed.The sensing
Device 22 can be proximity switch.
Installation cooling water tank 13, the second annular water tank 33 and first annular tank 24 in housing 1, the second annular water tank 33 with
The other end of second water channel 31 communicates, and first annular tank 24 communicates with the other end of the first water channel 25, and cooling water tank 13 passes through
4th water pipe 32 and the 3rd water pipe 26 respectively with the second annular water tank 33 and first annular tank 24 is corresponding communicates.
As depicted in figs. 1 and 2, cooling water tank 13, the 4th water pipe 32, the second annular water tank 33, the second water channel 31, the second ring
Shape water pipe 29, the second water pipe 19, heat dissipation box 4, the first water pipe 15, first annular water pipe 12, the first water channel 25, first annular tank
24 heat dissipation circulating system with the 3rd water pipe 26 successively UNICOM into closure, water pump 41 is installed on cooling water tank 13, is above-mentioned radiating
The circulatory system provides power and realizes cooling circulation.Heat dissipation box 4 can be made up of copper or aluminium.
As shown in Fig. 2 being provided with dividing plate 20 in the heat dissipation box 4, dividing plate 20 can extend the road of water flowing in heat dissipation box 4
Footpath, to increase endothermic effect.To further enhance radiating effect, radiator fan 16 is installed in the rotating shaft 9.
To reduce the number of the mechanism of the engine, its volume and weight is reduced, as shown in Fig. 2 installing water pump in the rotating shaft 9
Driving wheel 30, water pump driving wheel 30 are connected by transmission belt with the power input wheel of water pump 41.
The upper end of the magnetic conduction sheet 3 sets rectangular portion 37, and lower end sets trapezoidal portion 36.The row of magnetic conduction sheet 3 of the given shape
Row may make up coil groove, can stably fixed coil group.
The midpoint o of first permanent magnet 7 is more than or equal to rotor radius 2/3rds to the distance H of rotor center.
To strengthen close effect, it is ensured that radiating water circulation system can never leak, as shown in Fig. 2 being located in the rotating shaft 9
The both sides of second annular water tank 33 respectively set second sealing ring 34;It is each positioned at the first annular both sides of tank 24 in the rotating shaft 9
One the first sealing ring 23 is set.
First permanent magnet 7 face corresponding with rotor is cambered surface.
The stability rotated for increase, while strengthen the efficiency of electromagnetism work done, improve the power output of the engine, institute
The quantity for stating the first permanent magnet 7 is 2n, and the first permanent magnet 7 can correspond with one group of electromagnet 2.Such as:Electromagnet 2 is 4
When, the first permanent magnet 7 is 2, or as shown in figure 1, when electromagnet 2 is 8, the first permanent magnet 7 is four.
Technical scheme is not restricted in the range of embodiment of the present invention.
Claims (7)
1. full energy-saving power machine, including housing (1), the interior installation stator of housing (1) and rotor, it is characterised in that:Rotor structure is such as
Under:Including rotating shaft (9), the periphery installation rotor framework (8) of rotating shaft (9), several electromagnetism are uniformly installed in the periphery of rotor framework (8)
Iron (2), the quantity of electromagnet (2) is 4n, and n is positive integer;All electromagnet (2) are divided into two groups, adjacent two electromagnet
(2) it is different group, two electromagnet (2) at interval are same group, each between every two adjacent electromagnet (2) to set one second forever
One piece of second permanent magnet (6), each second permanent magnet are respectively installed in magnet holder (5), the outside of each second permanent magnet bracket (5)
It is respectively provided with a support member (11) on the inside of support (5) to be connected with rotor framework (8), the second permanent magnet bracket (5) and support member
(11) it is NULL;The periphery of rotating shaft (9) is installed by first annular water pipe (12) and the second annular conduit (29), each radiating
Second water pipe (19) and the first water pipe (15), all the second water pipes (19) and the second annular conduit are respectively provided with box (4)
(29) communicate, all the first water pipes (15) communicate with first annular water pipe (12), rotating shaft (9) be provided with the second water channel (31) and
First water channel (25), one end of the second water channel (31) and the second annular conduit (29) UNICOM, one end of the first water channel (25) and the
One annular conduit (12) UNICOM;Each electromagnet (2) is by one group of magnetic conduction sheet (3), a heat dissipation box (4), a first coil group
(17) connected and composed with a second coil group (18), every group of magnetic conduction sheet (3) is arranged in order by several pieces magnetic conduction sheets (3) and formed, and is dissipated
One group of magnetic conduction sheet (3) is installed in the periphery of hot box (4), and the hole (40) of heat dissipation box (4) and all magnetic conduction sheets (3) with group coordinates, together
Magnetic conduction sheet (3) periphery of group curls first coil group (17) and the second coil group (18), first coil group (17) and the second coil
The winding direction of group (18) is opposite;Installation multi-path conducting slip ring (35) in rotating shaft (9), one of multi-path conducting slip ring (35)
Second coil group of first coil group (17) and second group of electromagnet (2) that path passes through wire and first group of electromagnet (2)
(18) connect, another path of multi-path conducting slip ring (35) passes through wire and the second coil group of first group of electromagnet (2)
(18) and second group of electromagnet (2) first coil group (17) connection;Rotating disk (27) is installed in rotating shaft (9), rotating disk (27) it is outer
It is uniformly provided with several projections (28) week, the quantity of projection (28) is 2n, each between any two adjacent projections (28) to form one
Groove (21);
Stator is the first permanent magnet (7), the second permanent magnet (6) go to the first permanent magnet (7) to it is corresponding when homopolarity it is relative, housing
(1) interior install sensor (22) and controller (14), signaled when sensor (22) detects projection (28) and be transmitted to controller
(14), the first coil group (17) of first group of electromagnet (2) of controller (14) control and second group of the second coil group (18) obtain
Electricity, first coil group (17) power-off of the second coil group (18) of first group of electromagnet (2) and second group of electromagnet (2), now,
First group of electromagnet (2) is corresponding with the first permanent magnet (7);Signaled when sensor (22) detects groove (21) and be transmitted to controller
(14), the first coil group (17) of second group of electromagnet (2) of controller (14) control and first group of the second coil group (18) obtain
Electricity, first coil group (17) power-off of the second coil group (18) of second group of electromagnet (2) and first group of electromagnet (2), now,
Second group of electromagnet (2) is corresponding with the first permanent magnet (7);When first coil group (17) is powered, the polarity and first of electromagnet (2)
The polarity of permanent magnet (7) is identical, installation cooling water tank (13), the second annular water tank (33) and first annular tank in housing (1)
(24), the second annular water tank (33) communicates with the other end of the second water channel (31), first annular tank (24) and the first water channel
(25) the other end communicates, cooling water tank (13) by the 4th water pipe (32) and the 3rd water pipe (26) respectively with the second annular water tank
(33) correspond to and communicate with first annular tank (24), water pump (41) is installed on cooling water tank (13) and realizes water circulation;The radiating
Dividing plate (20) is provided with box (4);Radiator fan (16) is installed on the rotating shaft (9).
2. full energy-saving power machine according to claim 1, it is characterised in that:Water pump driving wheel is installed on the rotating shaft (9)
(30), water pump driving wheel (30) is connected by transmission belt with the power input wheel of water pump (41).
3. full energy-saving power machine according to claim 1, it is characterised in that:The upper end of the magnetic conduction sheet (3) sets rectangle
Portion (37), lower end set trapezoidal portion (36).
4. full energy-saving power machine according to claim 1, it is characterised in that:The midpoint (o) of first permanent magnet (7) is arrived
The distance H of rotor center is more than or equal to rotor radius 2/3rds.
5. full energy-saving power machine according to claim 1, it is characterised in that:It is located at the second annular water on the rotating shaft (9)
Groove (33) both sides respectively set second sealing ring (34);Respectively set positioned at first annular tank (24) both sides on the rotating shaft (9)
Put first sealing ring (23).
6. full energy-saving power machine according to claim 1, it is characterised in that:First permanent magnet (7) is corresponding with rotor
Face be cambered surface.
7. full energy-saving power machine according to claim 1, it is characterised in that:The quantity of first permanent magnet (7) is 2n,
First permanent magnet (7) can correspond with one group of electromagnet (2).
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510699721.0A CN105226856B (en) | 2015-10-26 | 2015-10-26 | Full energy-saving power machine |
PCT/CN2015/093759 WO2017070976A1 (en) | 2015-10-26 | 2015-11-04 | Power saving power machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510699721.0A CN105226856B (en) | 2015-10-26 | 2015-10-26 | Full energy-saving power machine |
Publications (2)
Publication Number | Publication Date |
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CN105226856A CN105226856A (en) | 2016-01-06 |
CN105226856B true CN105226856B (en) | 2017-12-19 |
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CN201510699721.0A Expired - Fee Related CN105226856B (en) | 2015-10-26 | 2015-10-26 | Full energy-saving power machine |
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CN (1) | CN105226856B (en) |
WO (1) | WO2017070976A1 (en) |
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CN111550728B (en) * | 2020-04-22 | 2022-02-01 | 湖南城市学院 | Household induction type solar street lamp |
CN114552934B (en) * | 2021-10-27 | 2024-08-16 | 厦门腾威胜检测科技有限公司 | Electromagnetic control type high-frequency fatigue testing machine |
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- 2015-10-26 CN CN201510699721.0A patent/CN105226856B/en not_active Expired - Fee Related
- 2015-11-04 WO PCT/CN2015/093759 patent/WO2017070976A1/en active Application Filing
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CH640089A5 (en) * | 1980-11-26 | 1983-12-15 | Forces Motrices Neuchateloises | Alternating electric current generator and method of manufacturing same |
CN1057551A (en) * | 1990-06-15 | 1992-01-01 | 通用电气公司 | The liquid cools of rotor |
JP2010093906A (en) * | 2008-10-06 | 2010-04-22 | Fuji Electric Systems Co Ltd | Permanent magnet type rotating machine |
CN205051463U (en) * | 2015-10-26 | 2016-02-24 | 刘庆华 | Complete energy -conserving engine |
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CN105226856A (en) | 2016-01-06 |
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