CN206399292U - A kind of laser weapon - Google Patents
A kind of laser weapon Download PDFInfo
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- CN206399292U CN206399292U CN201621346310.XU CN201621346310U CN206399292U CN 206399292 U CN206399292 U CN 206399292U CN 201621346310 U CN201621346310 U CN 201621346310U CN 206399292 U CN206399292 U CN 206399292U
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- energy storage
- laser
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- rotor
- flywheel
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/16—Mechanical energy storage, e.g. flywheels or pressurised fluids
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Abstract
The utility model discloses a kind of laser weapon, including:Radar-probing system, for detecting target of attack;Tracking system is aimed at, the target detected to the radar-probing system is communicated to connect with the radar-probing system and carries out aiming tracking;Laser, is converted electrical energy into as laser beam;Beam management system, is connected respectively with the aiming tracking system and laser, and the operation of laser is controlled according to the data for aiming at tracking system;Flywheel energy storage system, the flywheel energy storage system electrically connects as the laser with the laser and provides electric energy.The technical problem that the utility model is solved is to overcome the energy accumulating device structure of existing laser weapon to be not sufficiently stable and energy storage density is low, energy storage capacity is low causes moment power output low, so that the small technical problem of the laser heat flow density of laser weapon, moment power output can be improved by providing one kind, so as to improve the laser weapon of laser heat flow density.
Description
Technical field
The utility model relates to the use of the weapon of the laser beam target of attack of directional transmissions.Specially a kind of laser weapon.
Background technology
The principle of laser weapon is that electric energy is transformed into laser beam target of attack in a short period of time, its target of attack
It is more accurate than conventional weapon, and the interference of electromagnetism can be resisted, while it is using also more flexible, in photoelectronic warfare, air defense
With great effect can be played in strategic defensive.The energy storage device structure of current laser weapon battery is not sufficiently stable and energy storage is close
Small, energy storage is low causes moment power output than relatively low for degree so that the laser heat flow density of laser weapon is relatively low, as restriction laser
The key factor that weapon further develops.
Utility model content
The technical problem that the utility model is solved is the skill for overcoming the laser heat flow density of existing laser weapon small
Art problem is there is provided a kind of laser weapon, and its energy storage device can improve moment power output to improve laser heat flow density.
Laser weapon of the present utility model, including:
Radar-probing system, for detecting target of attack,
Tracking system is aimed at, the target detected to the radar-probing system is communicated to connect with the radar-probing system
Aiming tracking is carried out,
Laser, is converted electrical energy into as laser beam,
Beam management system, is connected, according to the number for aiming at tracking system respectively with the aiming tracking system and laser
According to the operation of control laser;
Flywheel energy storage system, the flywheel energy storage system electrically connects as the laser with the laser and provides electric energy,
The flywheel energy storage system includes energy storage device, and the energy storage device includes housing, flywheel energy storage rotor, magnetic levitation system and energy
Measure conversion equipment,
The housing includes cylindrical lateral wall, the upper end cover fixed and be tightly connected with the side wall and solid with the side wall
Bottom end cover that is fixed and being tightly connected, the housing is provided with aspirating hole,
The flywheel energy storage rotor is located in the housing, and the flywheel energy storage rotor includes,
Rotary shaft, for the solid steel shaft being vertically arranged,
First wheel, the first wheel is made up of spring steel, be enclosed in the rotary shaft can the rotary shaft band
The dynamic lower and rotary shaft synchronous rotary, the first wheel has discoid body, and the outer rim of the discoid body is rolled over to one lateral bending
Abutting part is formed, groove, the plate-like of the first wheel are slowed down in the position that the abutting part is connected with the discoid body provided with stress
Body from middle part to edge relative to the vertical plane inclination perpendicular to the rotary shaft, and towards the side for forming the abutting part
Tilt,
Foreign steamer, the foreign steamer is tubbiness, is enclosed on the first wheel, and its inwall is outer with the first wheel abutting part
Wall is engaged;
The magnetic levitation system, which is located at, to be used for the upper end for supporting the rotary shaft of the flywheel and allows described in the housing
Rotary shaft rotates relative to the magnetic levitation system,
The energy conversion device is located in the housing and positioned at the lower section of the flywheel, the energy conversion device bag
Include the stator formed by magnetic pole circuit coiling, the rotor that can be rotated relative to the stator and the biography that rotation is driven by the rotor
Moving axis, the power transmission shaft is fixedly connected and synchronous rotary with the rotating shaft coaxle of the flywheel, and the energy conversion device is also wrapped
Include cooling duct;
The flywheel energy storage system also includes,
Vacuum extractor, the vacuum extractor is connected with the aspirating hole of the housing of the energy storage device can be to the housing
The closing space surrounded is vacuumized;
Cooling device, the cooling device includes the fluid reservoir of storage coolant, turned with the fluid reservoir and the energy
Connecting tube and providing power for the coolant makes the coolant logical in the cooling that the cooling duct of changing device is connected
The cooling pump of road interior circulation.
Preferably, the flywheel energy storage system also includes:
Vacuum control unit, is connected to control the operation of the vacuum extractor with the vacuum extractor;
Cooling controller, is connected to control the cooling device with the cooling device;
Energy conversion control device, is connected with the energy conversion device, can control the energy conversion device and is in and fills
Electricity or power supply state, when the magnetic pole circuit and charging circuit, which are connected, to be disconnected with the power supply circuit simultaneously, the energy
The rotor of conversion equipment rotates to drive the flywheel energy storage rotor to revolve by the power transmission shaft under the magneticaction of stator
Turn, the rotating mechanical energy that the energy conversion device converts electrical energy into the flywheel energy storage rotor as motor is stored
Come, the energy conversion device is in charged state, when the magnetic pole circuit and charging circuit disconnection with described while supply
When circuit is connected, the flywheel energy storage rotor by the power transmission shaft drive the rotor rotation of the energy conversion device so as to
The magnetic pole circuit is set to produce electric current, the energy conversion device is as generator by the rotating machinery of the flywheel energy storage rotor
Electric energy can be converted into and supply the power supply circuit, the energy conversion device is in power supply state.
Preferably, each energy storage device of the flywheel energy storage system sets detection energy conversion device temperature
Temperature sensor, the temperature sensor is also connected to transmit the temperature of the temperature sensor with the cooling controller
To the cooling controller, the cooling controller controls the operation of the cooling device to make according to the Temperature numerical received
The temperature control of the energy storage device is within the temperature range of setting.
Preferably, each energy storage device of the flywheel energy storage system is provided for detecting the air pressure of enclosure interior air pressure
Sensor, the baroceptor also is connected to send the data of the baroceptor to institute with the vacuum control unit
Vacuum control unit is stated, the vacuum control unit controls the operation of the vacuum extractor to make institute according to the Temperature numerical received
The air pressure stated in the housing of energy storage device is controlled in the air pressure range of setting.
Preferably, by round-corner transition between the abutting part and the discoid body, the stress slows down groove positioned at institute
State on the outer wall of fillet.
Preferably, the inwall of the foreign steamer is provided with the position that the outer wall with the first wheel abutting part is engaged
The first fitting projection circumferentially, in a state where mounting is completed, the abutting part of the first wheel are matched somebody with somebody with described first
Raised tight fit is closed, at least one end of first fitting projection, which is provided with, guides the first wheel in the foreign steamer along axis
The installation guiding slope of relative motion, one end that the abutting part is first contacted when at least one end of the first fitting projection is installs.
Preferably, the first wheel also include be enclosed on can be with the rotary shaft synchronous axial system in the rotary shaft peace
Axle sleeve is filled, the discoid body is located at the outside of the mounting sleeve and is integrally formed with the mounting sleeve.
Preferably, the flywheel also include be located at the first wheel above the second wheel hub, second wheel hub by
Spring steel is made, and is enclosed in the rotary shaft, and can under the drive of the rotary shaft with the rotary shaft synchronous rotary, it is described
The planform of second wheel hub is identical with the planform of the first wheel, and in the state of assembling is completed, described first
The discoid body of wheel hub is identical with the incline direction of the discoid body of second wheel hub, and the abutting part of second wheel hub is with being arranged on
The second fitting projection tight fit on foreign steamer inwall, the flywheel also includes positioning shaft sleeve, and the positioning shaft sleeve is enclosed on the rotation
In rotating shaft, and positioned between the first wheel and the second wheel hub, the lower end of the rotary shaft, which has, to be used for the first round
The shaft shoulder that the lower end of hub is positioned.
Preferably, the magnetic levitation system includes at least one magnetic suspension bearing, each magnetic suspension bearing includes fixing
In the rotary shaft and can with the rotor magnet of the rotary shaft synchronous rotary and with the relatively-stationary stator magnet of the housing
Body, the rotor magnet is relative up and down with the stator magnet, and the rotor magnet face relative with the stator magnet is
Heteropole.
Preferably, the rotor magnet is embedded on rotor carrier, the rotor carrier is fixed in the rotary shaft,
The stator magnet is embedded on stator carrier, and the stator carrier is fixed on the mounting bracket fixed with the housing, described
The rotor carrier of magnetic suspension bearing is threadedly secured in the rotary shaft.
Laser weapon of the present utility model compared with prior art, has the advantages that:
1st, the flywheel energy storage rotor of the flywheel energy storage system of laser weapon of the present utility model, the discoid body of its first wheel
Outer rim be bent to form abutting part to one side, abutting part offsets in the presence of pretightning force with the inwall of foreign steamer.First wheel
Discoid body from middle part to edge relative to the vertical planar tilt perpendicular to rotary shaft, and towards formed abutting part an inclination
Tiltedly.When first wheel and foreign steamer rotate at a high speed, foreign steamer can produce outside displacement under the influence of centrifugal force, first wheel by
Although to centrifugal force less than the centrifugal force that foreign steamer is subject to, because the outer rim of first wheel has been bent into abutting part, and plate-like
Body inclined design, discoid body and abutting part produce the dilatating and deformable of radial direction after by centrifugal force.So as to finally produce and foreign steamer
Consistent radial deformation, abutting part can be adjacent to the inwall of foreign steamer, keep the pretightning force with foreign steamer.By keeping higher pretension
Power improves the rated speed of flywheel, the stability and security of flywheel energy storage system structure is added, while improving moment
Power output, can within the shorter time high-power release electric energy, so as to improve laser heat flow density.Abutting part and discoid body
Junction slow down groove provided with stress, stress, which slows down groove, can reduce stress, prevent herein because stress is too big and damages.Meanwhile,
Flywheel energy storage system is additionally provided with vacuum extractor and cooling device, the sky that vacuum extractor is surrounded to the housing of energy accumulation device for fly wheel
Between vacuumize so that flywheel energy storage rotor rotates in vacuum environment, reduces the resistance of rotation, thus improve flywheel storage
Kinetic energy.Cooling device is cooled down to energy storage device, the temperature of the energy conversion device of energy storage device is reduced, to ensure it just
Normal operation.
2nd, the flywheel energy storage system of laser weapon of the present utility model also includes vacuumizing control device, cooling controller
With energy conversion control device, realize vacuumize, cool down and energy conversion automatically control so that the fortune of flywheel energy storage system
Row is more intelligent and more accurate.
Brief description of the drawings
Fig. 1 is the composition schematic diagram of the laser weapon of the utility model one embodiment.
Fig. 2 is the structural representation of the flywheel energy storage system of the laser weapon of the utility model one embodiment.
Fig. 3 is the sectional structure of the energy storage device of the flywheel energy storage system of the laser weapon of the utility model one embodiment
Schematic diagram.
Fig. 4 is the cross section structure diagram of the flywheel energy storage rotor of the energy storage device shown in Fig. 3.
Fig. 5 is the enlarged diagram of part A in Fig. 4.
Fig. 6 be Fig. 4 in energy storage device magnetic levitation system and the enlarged diagram of axial direction positioning device.
Reference
1 radar-probing system;
2 flywheel energy storage systems,
21 energy storage devices,
211 flywheel energy storage rotors, 2111 rotary shafts, 21,111 first shaft shoulders, 21,112 second shaft shoulders, 2112 first wheels,
21121 discoid bodies, 21122 abutting parts, 21123 mounting sleeves, 21124 stress slow down groove, 2113 foreign steamers, 21,131 first cooperations
Projection, 21132 installation guiding slopes, 21133 fillets, 21,134 second fitting projections, 2,114 second wheel hubs, 21141 discoid bodies,
21142 abutting parts, 21143 mounting sleeves, 2115 vertical planes, 2116 positioning shaft sleeves,
212 housings, 2121 side walls, 2122 upper end covers, 2123 bottom end covers, 2124 aspirating holes,
213 magnetic levitation systems, 2131 magnetic suspension bearings, 21311 rotor magnets, 21312 stator magnets, 21313 rotors are carried
Body, 21314 stator carriers, 21315 mounting brackets, 2132 safety bearings, 2133 axial direction positioning devices, 21331 thimbles,
214 energy conversion devices, 2141 power transmission shafts,
215 damping mechanisms,
22 vacuum extractors,
23 vacuum control units,
24 cooling devices,
25 cooling controllers,
26 energy conversion control devices;
3 aim at tracking system;
4 lasers;
5 beam management systems.
Embodiment
Fig. 1 is the structural representation of the laser weapon of the utility model one embodiment, as shown in figure 1, laser weapon bag
Include power supply (not shown), radar-probing system 1, aim at tracking system 3, laser 4, beam management system 5 and flywheel storage
Can system 2.Wherein, radar-probing system 1 is used for scanning probe target of attack, determines the correlation of target of attack after target of attack
Data, send aiming tracking system 3 to such as position, shape.Tracking system 3 is aimed to communicate with the radar-probing system 1
Connection, receives the data of the transmission of radar-probing system 1, and the radar-probing system 1 is detected according to the data of reception
Target carries out aiming tracking.Laser 4 converts electrical energy into the laser beam as high-energy and emitted to target of attack, laser
Beam can cause perforation or slabbing to target of attack, so as to damage target of attack.Beam management system 5 aims at tracking system with described
System 3 and laser 4 are connected respectively, and the operation of laser 4 is controlled according to the data for aiming at tracking system 3.The flywheel energy storage system
System 2 electrically connects as the laser 4 with the laser 4 and provides electric energy, and the flywheel energy storage system 2 is constituted with power electric connection
Charging circuit.
Fig. 2 is the structural representation of the flywheel energy storage system of the laser weapon of the utility model one embodiment, such as Fig. 2 institutes
Show, flywheel energy storage system 2 includes energy storage device 21, vacuum extractor 22 and cooling device 24, wherein energy storage device 21 is used to store up
The electric energy of the offer of power supply 1 is deposited, the flywheel energy storage system 2 preferably comprises the 2-16 energy storage devices 21, in the present embodiment
In, flywheel energy storage system 2 includes 12 energy storage devices 21, and energy storage device 21 can be embedded in underground.Vacuum extractor 22 is used for
Energy storage device 21 is vacuumized, cooling device 24 is used to cool down energy storage device 21.
The structure of the energy storage device 21 is as shown in figure 3, including housing 212, flywheel energy storage rotor 211, magnetic levitation system
213 and energy conversion device 214.The housing 212 includes cylindrical lateral wall 2121, fixes with the side wall 2121 and seal company
The upper end cover 2122 connect, the bottom end cover 2123 fixed and be tightly connected with the side wall 121, the housing 212 are provided with aspirating hole
2124.In the present embodiment, aspirating hole 2124 is located on bottom end cover 2123.In the state of the operation of energy storage device 21, housing 212
It is inside vacuum, prevents the rotation for the flywheel energy storage 211 that air is pointed in the housing 212 from producing resistance, so that flywheel
Energy storage rotor 211 obtains rotating speed as high as possible.
As shown in figure 4, flywheel energy storage rotor 211 includes rotary shaft 2111, first wheel 2112 and foreign steamer 2113.Wherein,
Rotary shaft 2111 is the solid steel shaft being vertically arranged.The first wheel 2112 is made up of spring steel, is enclosed on the rotary shaft
On 2111, the first wheel 2112 can under the drive of the rotary shaft 2111 with the synchronous rotary of rotary shaft 2111.Institute
First wheel 2112 is stated with discoid body 21121, the outer rim of the discoid body 21121 is bent to form abutting part to one side
21122, the inwall of the outer wall of abutting part 21122 with foreign steamer 2113 in the presence of pretightning force offsets.As shown in figure 5, in bending
Place is to set stress to slow down groove 21124 at the position that abutting part 21122 is connected with discoid body 21121, and stress slows down groove 21124 can
Reduce stress, prevent herein because stress is too big and damages.
The discoid body 21121 of first wheel 2112 is from middle part to edge relative to the vertical plane perpendicular to rotary shaft 2111
Tilt, and tilted towards the side for forming abutting part 21122, it is tapered.The inclined design of discoid body 21121 is not compared to tilting
Situation, can more play the resiliency characteristics of spring steel.In the state of assembling or at a high speed rotation, if without inclined design, bullet
The discoid body that spring steel is made only does flexible motion, and can not play the advantage of the anti-surrender of its elastic force.Preferably, the plate-like
Body 21121 is 5 ° -15 ° relative to the inclined angle of vertical plane 2115 perpendicular to the rotary shaft 2111.In the present embodiment
In, discoid body 21121 is 10 ° relative to the inclined angle of vertical plane 2115 perpendicular to the rotary shaft 2111.
When first wheel 2112 and foreign steamer 2113 rotate at a high speed, foreign steamer 2113 can be produced outwards under the influence of centrifugal force
Displacement, although the centrifugal force that first wheel 2112 is subject to is less than the centrifugal force that foreign steamer 2113 is subject to, due to first wheel
2112 outer rim has been bent into abutting part, and discoid body inclined design, and discoid body and abutting part produce footpath after by centrifugal force
To dilatating and deformable, so as to finally produce the radial deformation consistent with foreign steamer, the inwall patch that abutting part 21122 can be with foreign steamer 2113
Tightly, the pretightning force with foreign steamer 2113 is kept.
Compared to existing aircraft carrier ejector, the flywheel energy storage rotor of the energy storage device of laser weapon of the present utility model
211 wheel hub increases the adhesion with foreign steamer 2113, makes the moment of torsion of transmission bigger.First wheel 2112 set abutting part and
The material that first wheel 2112 is used i.e. spring steel supports the deformation of the radial direction of the generation of first wheel 2112 well, so that
Realize under the rotation of high speed, big pretightning force can be still kept between first wheel 2112 and foreign steamer 2113, revolving force is prevented
Decay from wheel hub into the transmittance process of foreign steamer 2113, and prevent first wheel 2112 from being produced with foreign steamer 2113 in high rotating speed
Slide or come off, be flywheel energy storage rotor speed so as to improve the synchronism that first wheel 2112 is moved with foreign steamer 2113
Further improve the condition of providing.Flywheel energy storage rotor of the present utility model can still be protected when rotating speed reaches 10000 revs/min
Demonstrate,prove the pretightning force between its wheel hub and foreign steamer 2113, it is ensured that the stability and security of structure.Energy storage dress is also improved simultaneously
The energy storage density and energy storage capacity put so as to improve laser heat density, that is, are improved sharp so as to improve moment power output
The attack performance of light weapon.
As shown in figure 3, magnetic levitation system 213 is located in the housing 212 and positioned at the upper end of flywheel energy storage rotor 211,
For the rotary shaft 2111 that supports the flywheel energy storage rotor 211 upper end and allow the rotary shaft 2111 relative to the magnetic
Levitation device 213 rotates.Magnetic levitation system 213 can use various existing bearings, can hereafter be discussed in detail in the present embodiment and adopt
The structure of magnetic levitation system 213.
Energy conversion device 214 is located in the housing 212 and positioned at the lower section of the flywheel energy storage rotor 211, described
Energy conversion device 214 include formed by magnetic pole circuit coiling stator (not shown), can be rotated relative to the stator
Rotor (not shown) and the power transmission shaft 2141 of rotation is driven by the rotor, the power transmission shaft 2141 and the flywheel are stored up
The rotating shaft coaxle of energy rotor 211 is fixedly connected and synchronous rotary, and the energy conversion device 214 also includes cooling duct (figure
Not shown in), there is coolant circulation in cooling duct, energy conversion device can be cooled down.
The vacuum extractor 22 is connected with the aspirating hole 2124 of the housing 212 of the energy storage device 21 can be to the housing
212 closing spaces surrounded are vacuumized, so that flywheel energy storage rotor 211 rotates in the environment of vacuum, reduce air
The resistance caused is rotated to flywheel energy storage rotor 211, so as to reduce the waste of the energy.In the present embodiment, vacuum extractor 2
For vavuum pump, vacuum extractor 2 can be with the housing 212 of multiple energy storage devices 21 by exhaust tube (not shown)
Aspirating hole 2124 connects to vacuumize multiple energy storage devices 21 simultaneously.
The rotor rotation of energy conversion device is inevitably generated heat energy, causes energy conversion device temperature to raise, cold
But device reduces the temperature of energy conversion device, so as to ensure that the normal operation of energy conversion device.The cooling device
24 include the fluid reservoir (not shown) of storage coolant, the cooling duct with the fluid reservoir and the energy conversion device
The connecting tube (not shown) of connection and provide power for the coolant and make the coolant in the cooling duct
The cooling pump (not shown) of circulation, coolant can be water.Cooling device 4 can be connected with multiple energy storage devices 1 with
Multiple energy storage devices 21 are cooled down.
As preferred scheme, flywheel energy storage system also includes vacuum control unit 23, cooling controller 25 and energy
Conversion control device 26.Wherein, vacuum control 23 is connected to control the vacuum extractor 22 with the vacuum extractor 22
Operation.Cooling controller 25 is connected to control the cooling device 4 with the cooling device 24.
Energy conversion control device 26 is connected with the energy conversion device 214 of the energy storage device 21, can control the energy
Measure the magnetic pole circuit and charging circuit and the on off operating mode of power supply circuit of turning device 26.When the magnetic pole circuit and the charging
Circuit is connected, while when being disconnected with the power supply circuit, i.e., charge switch is closed, while during power switch disconnection, the energy
The rotor of conversion equipment 214 rotates to drive the flywheel energy storage rotor by the power transmission shaft under the magneticaction of stator
211 rotations.Now, the energy conversion device 214 converts electrical energy into the rotation of the flywheel energy storage rotor 211 as motor
Turn mechanical energy to store.When the magnetic pole circuit and the charging circuit, which disconnect, to be connected with the power supply circuit simultaneously, i.e.,
The charge switch disconnects, while during power switch closure, the flywheel energy storage rotor 211 is driven by the power transmission shaft 2141
The rotor rotation of the energy conversion device 214 is so that the magnetic pole circuit produces electric current.The now energy conversion device
The rotating mechanical energy of the flywheel energy storage rotor 211 is converted into electric energy by 214 as generator supplies the power supply circuit.
In the present embodiment, the flywheel energy storage system also includes the TEMP of the detection temperature of energy conversion device 214
Device (not shown), the temperature sensor is also connected with the cooling controller 25 with by the temperature of the temperature sensor
Degree sends the cooling controller 25 to, and the cooling controller 25 is filled according to the Temperature numerical control cooling received
Putting 24 operation makes the temperature control of the energy storage device within the temperature range of setting.Temperature sensor can detect that energy turns
The temperature of coolant in the cooling duct of changing device 214, and it is used as using this temperature the temperature of energy conversion device 214.
In the present embodiment, the flywheel energy storage system also includes detecting inside the housing 212 of the energy storage device 21
The baroceptor (not shown) of air pressure, the baroceptor is also connected with the vacuum control unit 23 with by described in
The data of baroceptor send the vacuum control unit 23 to, and the vacuum control unit 23 is according to the Temperature numerical received
Controlling the operation of the vacuum extractor 22 makes the air pressure in the housing 212 of the energy storage device 21 control the air pressure model in setting
In enclosing.
As preferred scheme, in the present embodiment, as shown in figure 5, the abutting part 21122 and the discoid body
By the transition of fillet 21133 between 21121, fillet 21133 can make the stress distribution of generation evenly, prevent stress concentration.
In the present embodiment, stress slows down groove 21124 and is arranged on fillet 21133 and its neighbouring outer wall, and surround outer wall one week.
As shown in Figure 4 and Figure 5, the foreign steamer 2113 is tubbiness, and the material that foreign steamer 2113 is used is more tough and tensile than wheel hub, can
Centrifugal force is resisted, without being torn.2 foreign steamers 113 are enclosed on the first wheel 2112, its inwall with the first wheel
Coordinate prominent projection 21131 provided with first circumferentially at the position that the outer wall of 2112 abutting parts 21122 coordinates.Complete peace
In the state of dress, the outer wall of the abutting part 21122 of the first wheel 2112 coordinates raised 21131 close-fitting of dashing forward with described first
Close.First coordinate prominent projection 21131 add the abutting part 21122 of first wheel 2112 with the cooperation of the inwall of foreign steamer 2113
When the deflection that produces so that the tight fit between foreign steamer 2113 and first wheel 2112 is relatively reliable.
First coordinates prominent projection 21131 around circumferentially extending one week, and described first coordinates at least one end of prominent projection 21131 to set
There is the installation for guiding the axially opposed motion in the foreign steamer 2113 of first wheel 2112 to guide slope 21132, installation is drawn
Lead slope 21132 i.e. first and coordinate the transition structure dashed forward between projection 21131 and the inwall of foreign steamer 2113.First coordinates prominent projection
One end that the abutting part is first contacted when 21131 at least one end is installs.Guiding slope 21132 is installed and may be such that first wheel
2112 are easily installed in foreign steamer 2113, and realize and the first tight fit for coordinating prominent projection 21131.In the present embodiment, institute
State close-fitting and be combined into interference fit, as shown in figure 5, first coordinates the upper and lower ends of prominent projection 21131 to be respectively provided with installation guiding slope
21132。
As preferred scheme, as shown in figure 4, also include being enclosed on can in the rotary shaft 2111 for the first wheel 2112
With the mounting sleeve 21123 of the synchronous axial system of rotary shaft 2111, the discoid body 21121 is located at the mounting sleeve 21123
Outside and be integrally formed with the mounting sleeve 21123.Mounting sleeve 21123 is more than discoid body in the size of above-below direction
21121 size in the vertical direction, the contact area of mounting sleeve 21123 and rotary shaft 2111 is bigger, can prevent the first round
Hub 2112 is produced and rocked.
In the present embodiment, the flywheel energy storage rotor 211 also includes being located at the second of the top of first wheel 2112
Wheel hub 2114, second wheel hub 2114 is made up of spring steel, is enclosed in the rotary shaft 2111, and can be in the rotary shaft
With the synchronous rotary of rotary shaft 2111 under 2111 drive, planform and the first wheel of second wheel hub 2114
2112 planform is identical, and in the state of assembling is completed, the discoid body 21121 of the first wheel 2112 and described the
The incline direction of the discoid body 21141 of two wheel hubs 2114 is identical, and the abutting part 21142 of second wheel hub 2114 is with setting outside
Take turns the tight fit of the second fitting projection 21134 on 2113 inwalls.This provides condition, the foreign steamer of lengthening for the lengthening of foreign steamer 2113
2113 improve quality, that is, increase the rotary inertia J of flywheel, so as to improve the energy storage capacity of flywheel.
As preferred scheme, second wheel hub 2114 also includes that be enclosed in the rotary shaft 2111 can be with the rotation
The mounting sleeve 211143 of the synchronous axial system of axle 2111, the discoid body 21141 be located at the mounting sleeve 211143 outside and
It is integrally formed with the mounting sleeve 211143.Mounting sleeve 211143 exists in the size of above-below direction more than discoid body 21141
Size on above-below direction, the contact area of mounting sleeve 211143 and rotary shaft 2111 is bigger, can prevent the second wheel hub 2114
Generation is rocked.
As further preferably, the flywheel energy storage rotor 211 also includes positioning shaft sleeve 2116, the positioning shaft sleeve
2116 are enclosed in the rotary shaft 2111, and between the wheel hub 2114 of first wheel 2112 and second so that the first round
It is spaced a distance between the wheel hub 2114 of hub 2112 and second, this provides condition for the further lengthening of foreign steamer 2113.
In the present embodiment, the positioning shaft sleeve 2116 is made up of 40Cr.The lower end of positioning shaft sleeve 2116 and the installation of first wheel 2112
The upper end of axle sleeve 21123 offsets, the upper end of positioning shaft sleeve 2116 and the lower end phase of the mounting sleeve 211143 of the second wheel hub 2114
Support.In the present embodiment, positioning shaft sleeve 2 can synchronous rotary with the rotary shaft 2111.
The lower end of the rotary shaft 2111 has the first axle for being used for being positioned to the lower end of the first wheel 2112
Shoulder 21111.In the present embodiment, the lower surface of the mounting sleeve 21123 of first wheel 2112 and the first axle of rotary shaft 2111
The upper surface of shoulder 21111 offsets and realizes positioning.
Preferably, the magnetic levitation system 213 of the energy storage device of flywheel energy storage system of the present utility model includes at least one
Magnetic suspension bearing 2131.As shown in fig. 6, each magnetic suspension bearing 2131 includes being fixed in the rotary shaft 2111 and can be with institute
State the rotor magnet 21311 of the synchronous rotary of rotary shaft 2111, and with the relatively-stationary stator magnet 21312 of the housing 212, institute
State rotor magnet 21311 and the stator magnet relative about 21312, and the rotor magnet 21311 and the stator magnet
21312 relative faces are heteropole.Rotor magnet 21311 and the permanent magnet that stator magnet 21312 is annular.Rotor magnet
21311 faces relative with stator magnet 21312 are heteropole, produce the power attracted each other so that flywheel obtains suction up, supports
Disappear the most gravity of flywheel energy storage rotor 211, so as to reach the effect of off-load, mitigates the pressure of damper mechanism 26.Due to
It is not in contact between rotor magnet 21311 and stator magnet 21312, so as to avoid the brought power loss that rubs.
As shown in fig. 6, the rotor magnet 21311 is embedded on rotor carrier 21313, the rotor carrier 21313 is consolidated
It is scheduled in the rotary shaft 2111, the stator magnet 21312 is embedded on stator carrier 21314, the stator carrier 21314
It is fixed on the mounting bracket 21315 fixed with the housing 212.In the present embodiment, rotor carrier 21313 and stator carrier
21314 be also annular, and mounting bracket 21315 is cylindrical shape.As shown in fig. 6, the magnetic levitation system 213 includes three magnetic
Suspension bearing 2131, the rotor carrier 21313 of each magnetic suspension bearing 2131 is threadedly secured to the rotary shaft
On 2111.The upper end axle journal part of rotary shaft 2111 is provided with least three second shaft shoulders 21112, with respectively to three magnetic suspension shafts
The rotor carrier 21313 for holding 2131 is positioned.
In the present embodiment, the magnetic levitation system 213 also includes safety bearing 2132, and the safety bearing 2132 is machine
Tool bearing.Mechanical bearing provides support force, such as rolling bearing by way of being contacted with rotary shaft 2111 for rotary shaft 2111.Peace
Holoaxial, which holds 2132, to provide support force to rotary shaft 2111 when magnetic suspension bearing 2131 goes wrong.
The magnetic levitation system 213 also includes the axial direction positioning device fixed with the housing 212 or mounting bracket 21315
2133, the axial direction positioning device 2133 and the upper end of the rotary shaft 2111 are mutually pushed up in the axial direction of the rotary shaft 2111.
In the present embodiment, as shown in fig. 6, axial direction positioning device 2133 is bolted with mounting bracket 21315, axial direction positioning device
2133 thimble 21331 being fixedly arranged in the middle of towards rotary shaft 2111, thimble 21331 and the depression of the upper end of rotary shaft 2111 are matched somebody with somebody
Close, apply axial power to rotary shaft 2111, so as to be positioned to rotary shaft 2111.
The energy storage device of flywheel energy storage system of the present utility model also includes the damping mechanism being located in the housing 212
2156, the lower end of the power transmission shaft 2141 of the energy conversion device 214 is connected to absorb the biography with the damping mechanism 2156
The vibrations of moving axis 2141.
Above example is only exemplary embodiment of the present utility model, is not used in limitation the utility model, and this practicality is new
The protection domain of type is defined by the claims.Those skilled in the art are right in essence of the present utility model and protection domain
The various modifications or equivalent substitution that the utility model is made also fall in protection domain of the present utility model.
Claims (10)
1. a kind of laser weapon, it is characterised in that including:
Radar-probing system, for detecting target of attack,
Tracking system is aimed at, the target detected to the radar-probing system is communicated to connect with the radar-probing system and is carried out
Aim at tracking,
Laser, is converted electrical energy into as laser beam,
Beam management system, is connected, according to the data control for aiming at tracking system respectively with the aiming tracking system and laser
The operation of laser processed;
Flywheel energy storage system, the flywheel energy storage system electrically connects as the laser with the laser and provides electric energy, described
Flywheel energy storage system includes energy storage device, and the energy storage device includes housing, and flywheel energy storage rotor, magnetic levitation system and energy turn
Changing device,
The housing include cylindrical lateral wall, the upper end cover fixed and be tightly connected with the side wall and fixed with the side wall and
The bottom end cover being tightly connected, the housing is provided with aspirating hole,
The flywheel energy storage rotor is located in the housing, and the flywheel energy storage rotor includes,
Rotary shaft, for the solid steel shaft being vertically arranged,
First wheel, the first wheel is made up of spring steel, and being enclosed in the rotary shaft can be under the drive of the rotary shaft
With the rotary shaft synchronous rotary, the first wheel has discoid body, and the outer rim of the discoid body is bent to form to one side
Groove is slowed down in abutting part, the position that the abutting part is connected with the discoid body provided with stress, and the discoid body of the first wheel is certainly
Middle part to edge relative to the vertical plane inclination perpendicular to the rotary shaft, and towards the inclination for forming the abutting part
Tiltedly,
Foreign steamer, the foreign steamer is tubbiness, is enclosed on the first wheel, the outer wall phase of its inwall and the first wheel abutting part
Coordinate;
The magnetic levitation system, which is located in the housing, to be used to support the upper end of the rotary shaft of the flywheel and allows the rotation
Axle rotates relative to the magnetic levitation system,
The energy conversion device be located at the housing in and positioned at the flywheel lower section, the energy conversion device include by
Stator, the rotor that can be rotated relative to the stator and the transmission rotated by rotor drive that the coiling of magnetic pole circuit is formed
Axle, the power transmission shaft is fixedly connected and synchronous rotary with the rotating shaft coaxle of the flywheel, and the energy conversion device also includes
Cooling duct;
The flywheel energy storage system also includes,
Vacuum extractor, the vacuum extractor is connected with the aspirating hole of the housing of the energy storage device to be surrounded to the housing
Closing space vacuumize;
Cooling device, the cooling device includes the fluid reservoir and the fluid reservoir and the energy converting means of storage coolant
The connecting tube for the cooling duct connection put and provide power for the coolant and make the coolant in the cooling duct
The cooling pump of circulation.
2. laser weapon according to claim 1, it is characterised in that the flywheel energy storage system also includes:
Vacuum control unit, is connected to control the operation of the vacuum extractor with the vacuum extractor;
Cooling controller, is connected to control the cooling device with the cooling device;
Energy conversion control device, is connected with the energy conversion device, can control the energy conversion device be in charging or
Person's power supply state, when the magnetic pole circuit and charging circuit connection are while when being disconnected with the power supply circuit, the energy is changed
The rotor of device is rotated under the magneticaction of stator so as to drive the flywheel energy storage rotor to rotate by the power transmission shaft, institute
The rotating mechanical energy that energy conversion device converts electrical energy into the flywheel energy storage rotor as motor is stated to store, it is described
Energy conversion device is in charged state, is connect simultaneously with the power supply circuit when the magnetic pole circuit disconnects with the charging circuit
When logical, the flywheel energy storage rotor drives the rotor of the energy conversion device to rotate so that the magnetic by the power transmission shaft
Polar circuit produces electric current, and the rotating mechanical energy of the flywheel energy storage rotor is converted into by the energy conversion device as generator
Electric energy supplies the power supply circuit, and the energy conversion device is in power supply state.
3. laser weapon according to claim 2, it is characterised in that each energy storage dress of the flywheel energy storage system
The temperature sensor of detection energy conversion device temperature is installed, the temperature sensor is also connected with the cooling controller
To send the temperature of the temperature sensor to the cooling controller, the cooling controller is according to the temperature received
The operation of cooling device described in Numerical Control makes the temperature control of the energy storage device within the temperature range of setting.
4. laser weapon according to claim 2, it is characterised in that each energy storage device of the flywheel energy storage system is set
The baroceptor for detecting enclosure interior air pressure is put, the baroceptor is also connected to incite somebody to action with the vacuum control unit
The data of the baroceptor send the vacuum control unit to, and the vacuum control unit is according to the Temperature numerical received
Controlling the operation of the vacuum extractor makes the air pressure in the housing of the energy storage device control in the air pressure range of setting.
5. laser weapon according to claim 1, it is characterised in that pass through circle between the abutting part and the discoid body
Angle transition, the stress slows down groove on the outer wall of the fillet.
6. laser weapon according to claim 1, it is characterised in that the inwall of the foreign steamer is supported with the first wheel
It is in a state where mounting is completed, described provided with the first fitting projection circumferentially at the position that the outer wall of socket part is engaged
The abutting part of first wheel and the first fitting projection tight fit, at least one end of first fitting projection is provided with guiding institute
State first wheel and guide slope along the installation of axis relative motion in the foreign steamer, at least one end of the first fitting projection is installation
One end that Shi Suoshu abutting parts are first contacted.
7. laser weapon according to claim 1, it is characterised in that the first wheel also includes being enclosed on the rotary shaft
On can be with the rotary shaft synchronous axial system mounting sleeve, the discoid body be located at the mounting sleeve outside and with the peace
Dress axle sleeve is integrally formed.
8. the laser weapon according to any one of claim 7, it is characterised in that the flywheel also includes being located at described the
The second wheel hub above one wheel hub, second wheel hub is made up of spring steel, is enclosed in the rotary shaft, and can be in the rotation
With the rotary shaft synchronous rotary under the drive of axle, the planform of second wheel hub and the planform of the first wheel
It is identical, and in the state of assembling is completed, the inclination side of the discoid body of the first wheel and the discoid body of second wheel hub
To identical, the abutting part of second wheel hub and the second fitting projection tight fit being arranged on foreign steamer inwall, the flywheel is also
Including positioning shaft sleeve, the positioning shaft sleeve is enclosed in the rotary shaft, and is located between the first wheel and the second wheel hub, institute
Stating the lower end of rotary shaft has the shaft shoulder for being used for being positioned to the lower end of the first wheel.
9. laser weapon according to claim 1, it is characterised in that the magnetic levitation system includes at least one magnetic suspension
Bearing, each magnetic suspension bearing include being fixed in the rotary shaft and can with the rotor magnet of the rotary shaft synchronous rotary and
With the relatively-stationary stator magnet of the housing, the rotor magnet is relative up and down with the stator magnet, and the rotor magnetic
The body face relative with the stator magnet is heteropole.
10. laser weapon according to claim 9, it is characterised in that the rotor magnet is embedded on rotor carrier, institute
State rotor carrier to be fixed in the rotary shaft, the stator magnet is embedded on stator carrier, the stator carrier is fixed on
On the mounting bracket fixed with the housing, the rotor carrier of the magnetic suspension bearing is threadedly secured in the rotary shaft.
Priority Applications (1)
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CN201621346310.XU CN206399292U (en) | 2016-12-08 | 2016-12-08 | A kind of laser weapon |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621346310.XU CN206399292U (en) | 2016-12-08 | 2016-12-08 | A kind of laser weapon |
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CN206399292U true CN206399292U (en) | 2017-08-11 |
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ID=59509645
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CN201621346310.XU Withdrawn - After Issue CN206399292U (en) | 2016-12-08 | 2016-12-08 | A kind of laser weapon |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106767173A (en) * | 2016-12-08 | 2017-05-31 | 国科天地科技有限公司 | A kind of laser weapon |
-
2016
- 2016-12-08 CN CN201621346310.XU patent/CN206399292U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106767173A (en) * | 2016-12-08 | 2017-05-31 | 国科天地科技有限公司 | A kind of laser weapon |
CN106767173B (en) * | 2016-12-08 | 2018-04-06 | 国科天地科技有限公司 | A kind of laser weapon |
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