CN204794402U - High -effect energy -saving motor - Google Patents

High -effect energy -saving motor Download PDF

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Publication number
CN204794402U
CN204794402U CN201520287327.1U CN201520287327U CN204794402U CN 204794402 U CN204794402 U CN 204794402U CN 201520287327 U CN201520287327 U CN 201520287327U CN 204794402 U CN204794402 U CN 204794402U
Authority
CN
China
Prior art keywords
cavity
stator
vacuum seal
vacuum
seal cover
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
Application number
CN201520287327.1U
Other languages
Chinese (zh)
Inventor
王京生
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BEIJING HUA RUI AN TAI SCIENCE AND TECHNOLOGY Co Ltd
Original Assignee
BEIJING HUA RUI AN TAI SCIENCE AND TECHNOLOGY Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by BEIJING HUA RUI AN TAI SCIENCE AND TECHNOLOGY Co Ltd filed Critical BEIJING HUA RUI AN TAI SCIENCE AND TECHNOLOGY Co Ltd
Priority to CN201520287327.1U priority Critical patent/CN204794402U/en
Application granted granted Critical
Publication of CN204794402U publication Critical patent/CN204794402U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a high -effect energy -saving motor, including shell, stator and rotor, the shell inboard is provided with the vacuum seal cover, and stator and rotor all set up in the vacuum seal cover, and the rotor stretches out vacuum seal cover and shell at stator center rotation, stator output shaft, and is sealed through the sealing washer between stator output shaft and the vacuum seal cover, still includes the shock insulation piece and the water cooling plant that set up between shell and vacuum seal cover, the water cooling plant includes that the cladding is in stator outlying cavity, the cavity drives the mouth of a river and delivery port into, is provided with the isolation rib in the cavity, it cuts apart into the chamber way that a plurality of head and the tail in proper order switched on with the cavity to keep apart the rib. This high -effect energy -saving motor's rotor is rotatory in the vacuum, has consequently eliminated the aerodynamic drag power consumption. The cooling tube can reduce the temperature of stator core and permanent -magnet steel to avoid the stator core temperature to rise and reduce motor efficiency, avoid the permanent -magnet steel temperature to rise and the demagnetization simultaneously.

Description

High-efficiency energy-saving motor
Technical field
The utility model relates to a kind of motor, particularly relates to a kind of high-efficiency energy-saving motor.
Background technology
In the prior art, general industry equipment drives equipment operation by motor, and motor is commonly called as motor, is a kind of electric energy conversion to be become mechanical energy, and can re-use mechanical energy and produce kinetic energy, is used for driving the electric equipment of other devices.It is a kind of machine of mechanical energy by converting electric energy.Motor drives corollary equipment to turn spinning, motor runs up for a long time and must drive the bearing heating at two ends, heat gathers certainly will cause damage to equipment at device interior, prior art generally adopts blower fan to rotate with the flowing increasing air, device interior heat is driven to shed with this, but the use of blower fan is only by heat away, device interior is especially still in the condition of high temperature near motor, and internal heat more cannot fully be scattered by the use of device housings.In addition the rotor of existing motor is all rotate in atmosphere, and the power consumption of air drag is a lot, and this problem is particularly evident on high-speed electric expreess locomotive and large-size machine.
Utility model content
For above-mentioned shortcoming and defect of the prior art, the purpose of this utility model be to provide a kind of can fully circulation cooling and good can be few high-efficiency energy-saving motor.
The purpose of this utility model is achieved through the following technical solutions:
A kind of high-efficiency energy-saving motor, comprise shell, stators and rotators, vacuum seal cover is provided with inside described shell, described stators and rotators is all arranged in described vacuum seal cover, described rotor rotates in described stator center, described stator output shaft stretches out described vacuum seal cover and shell, and described stator output shaft and vacuum seal are sealed by sealing ring between overlapping, also comprise be arranged on shell and vacuum seal overlap between shock insulation block.
Preferably, described shock insulation block is elastomer block, and described shock insulation block has the concave station corresponding to elastic seal cartridge end wall changeover portion and the boss corresponding with housing inner end walls changeover portion.
Preferably, also comprise vacuum pipe, described vacuum pipe is vacuum hose, and described vacuum hose one end is communicated with vacuum seal cover, and the other end is communicated with outer side, and one end that described vacuum hose is communicated with outer side is sealed by vacuum pumping sealing port machine.
Preferably, described shock insulation block is 6 or 8, and often end arranges 3 or 4.
Preferably, also comprise water cooling plant, described water cooling plant comprises the cavity being coated on described stator peripheral, and cavity drives the mouth of a river and delivery port into, is provided with isolation rib in cavity, and cavity is divided into the cavity of multiple head and the tail successively conducting by described isolation rib.
Preferably, described isolation rib is parallel with chamber axis.
Preferably, the homonymy of described cavity, the outer ring, top of isolation rib sets out the mouth of a river, and the outer ring, bottom of isolation rib arranges water inlet.
Compared with prior art, the utility model embodiment at least has the following advantages:
In the utility model embodiment, the rotor of high-efficiency energy-saving motor rotates in a vacuum, because this eliminating air drag power consumption.Water cooling plant can reduce the temperature of stator core and permanent-magnet steel, motor efficiency is reduced to avoid stator core temperature to raise, avoid permanent-magnet steel temperature raise and demagnetize, water cooling plant adopts coated mode and stator structurally not to tangle relation, for convenience detach simultaneously.Water cooling plant can meet the endothermic heat demand producing heat in motor operation process, guarantee the stability that equipment runs, high-temperature water after being heated can be transferred to heat exchanger again, hot water in heat exchanger may be used for the thermal water source of other equipment, realize the recycling of waste heat in production process, significantly reduce energy consumption, save production cost.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model high-efficiency energy-saving motor;
Fig. 2 is the structural representation of the water cooling plant of the utility model high-efficiency energy-saving motor;
Fig. 3 is that the B-B of Fig. 2 is to generalized section;
Fig. 4 is the structural representation of the shock insulation block of the utility model high-efficiency energy-saving motor.
Embodiment
Below in conjunction with Fig. 1-Fig. 4 and embodiment, the utility model is described in further detail, and following examples are descriptive, are not determinate, can not limit protection range of the present utility model with this.
A kind of high-efficiency energy-saving motor, comprise shell 8, stator 9 and rotor 10, vacuum seal cover 11 is provided with inside described shell 8, described stator 9 and rotor 10 are all arranged in described vacuum seal cover 11, described rotor 10 is at described stator 9 central rotation, described stator 9 output shaft stretches out described vacuum seal cover 11 and shell 8, and described stator 9 output shaft and vacuum seal are sealed by sealing ring between overlapping 11, also comprises being arranged on shell 8 and vacuum seal and overlapping shock insulation block 12 between 11.
Described shock insulation block 12 is elastomer block, and described shock insulation block 12 has the concave station corresponding to elastic seal cartridge end wall changeover portion and the boss corresponding with shell 8 inner end wall changeover portion.Described shock insulation block 12 is 6 or 8, and often end arranges 3 or 4.Shock insulation block 12 1 can alleviate the rigidity vibrations caused when stator 9 rotates, and the part life of motor is extended greatly, also largely eliminates the noise that engine vibration sends simultaneously.Shock insulation block 12 avoids the contact between vacuum seal cover 11 and shell 8, avoids the vacuum seal collision of overlapping between 11 and shell 8 to cause vacuum seal to overlap 11 breakages and leaks.
Also comprise vacuum pipe, described vacuum pipe is vacuum hose 7, and described vacuum hose 7 one end is communicated with vacuum seal cover 11, and the other end is communicated with outside shell 8, and one end that described vacuum hose 7 is communicated with outside shell 8 is sealed by vacuum pumping sealing port machine.Adopt vacuum hose 7 as connection shell 8 outside and vacuum seal overlap the pipeline between 11 instead of adopt rigid conduit, be the vibrations operationally produced in order to avoid motor cause vacuum hose 7 generation bend even break.
Also comprise water cooling plant, described water cooling plant comprises the cavity 4 being coated on described stator peripheral, cavity 4 drives the mouth of a river 5 and delivery port 6 into, in cavity 4, be provided with isolation rib (3,3a), cavity 4 is divided into the cavity of multiple head and the tail successively conducting by described isolation rib (3,3a).
At the middle part of cavity 4, arrange one with the isolation rib of cavity 4 axis being parallel (3,3a), isolation rib (3,3a) is fixedly connected with the inwall of outer ring 2 and the outer wall of inner ring 1, isolation rib (3,3a) two ends are fixedly connected on the two ends of cavity 4, at the homonymy of cavity 4, the outer ring, top 2 of isolation rib (3,3a) sets out the mouth of a river 6, the outer ring, bottom 2 of isolation rib (3,3a) arranges water inlet 5.
In actual applications, because current are restricted to unique flow direction by the existence of isolation rib (3,3a), even if water inlet 5 hydraulic pressure is little like this, water also will flow through whole S type passage just can go out, the S type passage in whole cavity 4 can be flowed through, heat on shell cavity is all taken away, cooling effect during low hydraulic pressure is improved greatly.
The rotor of high-efficiency energy-saving motor rotates in a vacuum, because this eliminating air drag power consumption.Cooling device can reduce the temperature of stator core and permanent-magnet steel, reduces motor efficiency to avoid stator core temperature to raise, and avoids permanent-magnet steel temperature raise and demagnetize simultaneously.Cooling device can meet the endothermic heat demand producing heat in motor operation process, guarantee the stability that equipment runs, high-temperature water after being heated can be transferred to heat exchanger again, hot water in heat exchanger may be used for the thermal water source of other equipment, realize the recycling of waste heat in production process, significantly reduce energy consumption, save production cost.
The above; be only the utility model preferably embodiment; but protection range of the present utility model is not limited thereto; anyly be familiar with those skilled in the art in the technical scope that the utility model discloses; the change that can expect easily or replacement, all should be encompassed within protection range of the present utility model.Therefore, protection range of the present utility model should be as the criterion with the protection range of claims.

Claims (6)

1. a high-efficiency energy-saving motor, it is characterized in that, comprise shell, stators and rotators, vacuum seal cover is provided with inside described shell, described stators and rotators is all arranged in described vacuum seal cover, described rotor rotates in described stator center, the output shaft of described stator stretches out described vacuum seal cover and shell, described stator output shaft and vacuum seal are sealed by sealing ring between overlapping, also comprise be arranged on shell and vacuum seal overlap between shock insulation block and water cooling plant, described water cooling plant comprises the cavity being coated on described stator peripheral, cavity drives the mouth of a river and delivery port into, isolation rib is provided with in cavity, cavity is divided into the cavity of multiple head and the tail successively conducting by described isolation rib.
2. high-efficiency energy-saving motor according to claim 1, is characterized in that, described shock insulation block is elastomer block, and described shock insulation block has the concave station corresponding to elastic seal cartridge end wall changeover portion and the boss corresponding with housing inner end walls changeover portion.
3. high-efficiency energy-saving motor according to claim 1, it is characterized in that, also comprise vacuum pipe, described vacuum pipe is vacuum hose, described vacuum hose one end is communicated with vacuum seal cover, the other end is communicated with outer side, and one end that described vacuum hose is communicated with outer side is sealed by vacuum pumping sealing port machine.
4. high-efficiency energy-saving motor according to claim 2, is characterized in that, described shock insulation block is 6 or 8, and often end arranges 3 or 4.
5., according to the arbitrary described high-efficiency energy-saving motor of claim 1-4, it is characterized in that, described isolation rib is parallel with chamber axis.
6. high-efficiency energy-saving motor according to claim 5, is characterized in that, the homonymy of described cavity, and the outer ring, top of isolation rib sets out the mouth of a river, and the outer ring, bottom of isolation rib arranges water inlet.
CN201520287327.1U 2015-05-06 2015-05-06 High -effect energy -saving motor Expired - Fee Related CN204794402U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520287327.1U CN204794402U (en) 2015-05-06 2015-05-06 High -effect energy -saving motor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520287327.1U CN204794402U (en) 2015-05-06 2015-05-06 High -effect energy -saving motor

Publications (1)

Publication Number Publication Date
CN204794402U true CN204794402U (en) 2015-11-18

Family

ID=54534379

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520287327.1U Expired - Fee Related CN204794402U (en) 2015-05-06 2015-05-06 High -effect energy -saving motor

Country Status (1)

Country Link
CN (1) CN204794402U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106233947A (en) * 2016-08-04 2016-12-21 贵州民康生态牧业有限公司 Cutter sweep for the ensilage of sheep raising

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106233947A (en) * 2016-08-04 2016-12-21 贵州民康生态牧业有限公司 Cutter sweep for the ensilage of sheep raising

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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: 20151118

Termination date: 20180506