CN109548216A - Coaxial antenna battle array microwave oven - Google Patents

Coaxial antenna battle array microwave oven Download PDF

Info

Publication number
CN109548216A
CN109548216A CN201811380172.0A CN201811380172A CN109548216A CN 109548216 A CN109548216 A CN 109548216A CN 201811380172 A CN201811380172 A CN 201811380172A CN 109548216 A CN109548216 A CN 109548216A
Authority
CN
China
Prior art keywords
heating chamber
axis
microwave
coaxial antenna
along
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201811380172.0A
Other languages
Chinese (zh)
Inventor
王清源
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.)
Chengdu Saina Technology Co Ltd
Original Assignee
Chengdu Saina 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 Chengdu Saina Technology Co Ltd filed Critical Chengdu Saina Technology Co Ltd
Priority to CN201811380172.0A priority Critical patent/CN109548216A/en
Publication of CN109548216A publication Critical patent/CN109548216A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/64Heating using microwaves
    • H05B6/72Radiators or antennas
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/64Heating using microwaves
    • H05B6/70Feed lines
    • H05B6/707Feed lines using waveguides

Landscapes

  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Constitution Of High-Frequency Heating (AREA)

Abstract

The present invention uses one to two radiating curtain as often as possible to motivate higher mode TEn0 mode (n for integer, to be more than or equal to 2), to form standing wave in the heating chamber at the rear of the heating chamber of coaxial antenna battle array microwave oven or top.The present invention includes heating chamber, at least one radiating curtain.At least one described radiating curtain includes at least two row radiators 1 along Z axis.Any radiator is coaxial antenna.Compared with multiple modes of resonance that microwave source in traditional micro-wave oven motivates respective energy uncontrollable simultaneously by waveguide and coupling aperture in heating chamber, the field distribution of operating mode of the invention is determining and can be controlled.In order to further improve the uniformity of heating, we used can with transverse translation or can be around the rotating circular disk of the vertical axis precession of heating chamber.The present invention passes through the microwave mode in the cavity of control coaxial antenna battle array microwave oven to improve the uniformity of the heating of coaxial antenna battle array microwave oven in three dimensions.The present invention can be used for the heating to a variety of materials, or the speed for accelerating chemical reaction.

Description

Coaxial antenna battle array microwave oven
Technical field
The present invention relates to micro-wave ovens.In particular it relates to a kind of micro-wave oven for being evenly heated material using higher mode high efficiency.
Background technique
Microwave energy is substituted for various traditional heating modes.Micro-wave oven utilizes the various foods of Microwave Heating and material Material, in microwave chemical field, microwave energy be used to accelerate various chemical reactions.Microwave energy is also used for nano material, artificial The production of a variety of materials such as diamond.
During traditional heating, heat by conducting inside it, belonging to surface heating outside heating object, cause by It is uneven to heat object internal and external temperature.In Microwave Heating, microwave is material-to-be-heated by electric field action, leads to wherein polar molecule Damping vibration generate heat, belong to body heating.Therefore it is heated simultaneously inside and outside heating object.
But there is the whole homogeneity question of heating in conventional microwave oven.
In any confined space of heating chamber etc, electromagnetic wave by because covibration with the various intrinsic of the cavity The form of mode of resonance exists.In wherein any one mode of resonance, electromagnetic wave all exists with standing wave form, leads to space The amplitude of the electric field of a little fixed positions is maximum, and in addition the amplitude of certain fixed positions is zero.It is micro- in the typical case of 2450MHz Wave energy applying frequency, these electric fields concentrate between distance be operational microwave used wavelength half or slightly larger, substantially exist Between 61 ~ 100 millimeters, cause material-to-be-heated uneven on corresponding scale.
The size of common household microwave oven is 5 ~ 10 times bigger than above-mentioned scale.It can near the working frequency in these cavitys With the mode of resonance number that motivates for several to dozens of.There's a widespread conviction that by people, is conducive to using the heating chamber that height spends mould The uniformity of microwave heating.But any superposition of plurality of mode of resonance may be generated in certain positions of heating chamber Electric field much larger than other positions is concentrated, and causes the extreme of microwave heating uneven.
In order to solve the homogeneity question of Microwave Heating, international and domestic technical staff has carried out unremitting effort.People Attempt by increase operational microwave feedback mouth number, change feedback mouth-shaped, change the feedback mouth of operational microwave in heating chamber appearance The position in face perhaps changes the polarization direction of the feedback mouth of operational microwave or changes above-mentioned several variables at random simultaneously, passes through meter It calculates or the method for improving heating uniformity is found in actual measurement.But up to the present, add in micro-wave oven, especially large size micro-wave oven The homogeneity question of heat is not well solved.
Let us understands we face in micro-wave oven heating uniformity technical problem.In the frequency of operational microwave Rate, for a certain microwave present mouth, after selecting its position, shape, polarization direction, in heating chamber several to dozens of modes respectively by The determination of the intensity of excitation be all computationally it is very difficult, it is in actual measurement and extremely complex.And large-scale microwave It is needed in furnace using multiple magnetrons as microwave source, therefore the number of corresponding microwave feedback mouth is also multiple, microwave stove heating The complexity of problem exceeds the imagination of people.
Summary of the invention
The present invention passes through the operating mode controlled in mould heating chamber, provides a kind of micro-wave oven of homogeneous heating.
To achieve the goals above, the technical solution adopted by the present invention are as follows:
A kind of coaxial antenna battle array microwave oven, including heating chamber and at least one radiating curtain.At least one described radiation battle array Column include at least two row radiators along Z axis.The radiating curtain passes through floor to the heating chamber microwave radiation energy.General In logical micro-wave oven, magnetron is by waveguide and a coupling aperture to heating chamber radiation energy.The present invention is by using along Z-direction Multirow radiator, in heating chamber microwave distribution more effectively controlled, improve the uniformity of heating.
Can also include multiple row radiator in X direction: at least one described radiating curtain includes at least two column along X-axis Radiator 1.The radiating curtain passes through floor to the heating chamber microwave radiation energy.
In order to allow microwave field the communication process being distributed in heating chamber in remain unchanged as far as possible, any radiating curtain On radiator be all uniformly distributed in X direction and along Z-direction.Meanwhile the spoke in all radiators on same radiating curtain The microwave penetrated is coherent wave.Belong to the microwave of all radiators radiation of same a line along X-axis arrangement on same radiating curtain Amplitude it is identical and phase is identical.Along the two of the arbitrary neighborhood for belonging to same row of Z axis arrangement on same radiating curtain The amplitude of the microwave of a radiator radiation is identical, opposite in phase.Above-mentioned arrangement, it is therefore an objective to motivated in heating chamber to heating chamber Some higher mode for the waveguide defined by the cross section vertical with the direction of the heating chamber that certain interior direction is propagated, and its Its mode is not motivated as far as possible.
In order to simplify structure, we can also set on same radiating curtain belong to along adjacent two of Z axis it is same The amplitude of the microwave of the radiator radiation of column is identical, and phase is identical.
Further, we allow each radiator to be located at same by the mode and field distribution of microwave in each radiator of control Belong to center line along Z axis one side of the microwave in each radiator of the radiator radiation of same a line on radiating curtain along X-axis arrangement On the Z-direction component of electric field be zero.
Any radiator is coaxial antenna.Here the coaxial antenna uses coaxial line feed-in microwave energy.Institute The medium stated between the outer conductor of coaxial line and outer conductor and inner conductor is cut off, but its inner conductor reaches in free space. In order to improve radiation effect, the height of radiator is reduced, we are connected to a rosette or pros on the top of inner conductor Shape conductor sheet.The characteristics of this coaxial antenna is in certain two vertical direction of its coaxial line, and electromagnetic field is all mirror image pair Claim.It is described along X-axis is adjacent and spacing between the adjacent coaxial antenna center of Z axis is the wavelength of operational microwave free space 3/5 ~ 9/10.Belong to the microwave of the radiator radiation of same row along Z axis arrangement on same radiating curtain in each radiator The center line along X-axis on electric field component in the X-axis direction be zero.Belong on same radiating curtain along X-axis arrangement The Z-direction component of electric field of the microwave on the center line along Z axis of each radiator radiated with the radiator of a line is zero.
A kind of design scheme, the number of the radiating curtain are 1.One radiating curtain is located at the coaxial antenna battle array Above the heating chamber of microwave oven, from the top down to the heating chamber microwave radiation energy.The shape of the heating chamber is square Body.The a line from back to front of the Z-direction and the heating chamber is parallel.
Another design scheme, the number of the radiating curtain are 1.It is micro- that the radiating curtain is located at the coaxial antenna battle array Behind the heating chamber of Wave heating furnace, it is located at from back to front to heating chamber microwave radiation energy or the radiating curtain Before the heating chamber of the coaxial antenna battle array microwave oven, from front to back to heating chamber microwave radiation energy.It is described The shape of heating chamber is cuboid.The a line from front to back of the Z-direction and the heating chamber is parallel.
The third design scheme, the number of the radiating curtain are 2.One of radiating curtain is located at the coaxial antenna Behind the heating chamber of battle array microwave oven, from back to front to heating chamber microwave radiation energy, another radiating curtain position Before the heating chamber of the coaxial antenna battle array microwave oven, from front to back to heating chamber microwave radiation energy.Institute The shape for stating heating chamber is cuboid.The a line from front to back of the Z-direction and the heating chamber is parallel.With above-mentioned two Kind design scheme is compared, and the design scheme is slightly complicated.But we can allow two radiating curtains to be formed in the heating chamber The electric field maximal point of microwave of standing wave form be mutually staggered in the heating chamber, to further improve micro- in the heating chamber The uniformity of wave field.Here the microwave source of two radiating curtains can be it is relevant each other, can also be from two mutually Independent microwave source.
The electric field maximal point of the electromagnetic field for the standing wave form that above-mentioned each scheme has motivated is being the period in the heating chamber Property dot matrix distribution.It further include the turntable positioned at heating chamber bottom to further improve the uniformity of heating.The coaxial day When linear array microwave oven works, center axis rotation vertically of the turntable around the turntable.
In general existing scheme, position of the axis of the turntable in the heater is fixed.Positioned at the axis On it is material-to-be-heated can not by the turntable around the center axis rotation of the turntable vertically reach uniformly plus Heat.
For this purpose, the present invention allows the central axis vertically of the turntable simultaneously in the middle front and back pendulum of the heating chamber (3) It is dynamic.The amplitude of oscillation of the swing in the heating chamber of central axis vertically of the turntable is equal to operational microwave along front and back The integral multiple of the distance between the adjacent electric field maximum point in direction.
In order to realize the turntable the swing in the heating chamber of central axis vertically function, this hair Three schemes are devised in bright:
The first string is provided with cylindrical body on the axis of the vertical direction of the turntable, is arranged in the heating chamber bottom There is the rectangular block for being fixed on the heating chamber bottom.The cylindrical body outer edge contacts on one side with the rectangular block.The circle Cylinder outer edge along the rectangular block rolling on one side, to drive the turntable while rotation around own axes along the square The translation on one side of shape block.Here the cylindrical body can directly be connect with the shaft of motor.The motor is with the cylindrical body Mobile and its rotation direction is periodically reversed.Motor can also be fixed on the coaxial antenna battle array microwave oven, Torque is sent to the cylindrical body by soft rod or soft stick.
Another scheme is provided with cylindrical body A and rectangular block A in the heating chamber bottom.A side of the rectangular block A Face contacts with the side of the cylindrical body A and contacts with the side of the cylindrical body.When the cylindrical body A is around the cylindrical body A Axis rotation when, by driving the rectangular block A to translate along the side of the rectangular block A and driving the turntable to rotate and put down It moves.Here the cylindrical body A can directly be connect with the shaft of motor.
The third scheme is provided with cylindrical body A and rectangular block A, rectangular block B and fixing axle in the heating chamber bottom.Institute The axis that cylindrical body A is stated around the cylindrical body A rotates, and drives the rectangular block A to translate by the fixing axle and rectangular block B, To drive the turntable to rotate and translate.Here the cylindrical body A can directly be connect with the shaft of motor.
We can also allow the center axis rotation vertically of the turntable while around the vertical of the heating chamber The center line precession in direction.The central axis vertically of the turntable around the vertical direction of the heating chamber center line into Dynamic diameter is equal to 1.414 times of the integer of operational microwave the distance between certain adjacent electric field maximum point along the longitudinal direction Times.
In order to realize the turntable along the center axis rotation of its vertical direction while around the heating chamber Vertical Square To center line precession, we are there are two scheme:
The first string is provided with cylindrical body on the axis of the vertical direction of the turntable, is arranged in the heating chamber bottom There is the cylindrical body B for being fixed on the heating chamber bottom.The cylindrical body outer edge is contacted with the outer edge of the cylindrical body B.Institute The outer edge for stating cylindrical body is rolled along the outer edge of the cylindrical body B, so that it is same to drive the turntable to rotate around own axes When around the cylindrical body B axis precession.Here the cylindrical body can directly be connect with the shaft of motor.The motor with The cylindrical body is circumferentially moved around the axis of the cylindrical body B.
Second scheme, is provided with cylindrical body on the axis of the vertical direction of the turntable, in the heating chamber bottom It is provided with cylindrical body A and round-meshed fixed plate is opened in inside.The outer edge of the cylindrical body outside with the cylindrical body A respectively The inside edge of the circular hole of edge and the fixed plate contacts.The cylindrical body A is rotated around the axis of the cylindrical body A, described in drive While turntable is around the axis rotation of the turntable, the axis precession of the axis of the turntable around the cylindrical body A.Here institute Stating cylindrical body A can directly connect with the shaft of motor.
The above-mentioned axis for allowing the turntable is mobile or each scheme of precession in, the edge and rectangle of the cylinder to contact with each other The side of block is generally mutually twisted with dentalation realization and transmits torque.Under normal circumstances, all turntables in the present invention, circle Cylinder, cylindrical body A, B, rectangular block, rectangular block A, B, fixing axle, fixed plate are all low-loss nonmetallic materials.
Coaxial antenna battle array microwave oven of the invention can also increase separately charging in the front and back of its heating chamber Mouth and discharge port and the conveyer belt through feed inlet, heating chamber and discharge port.It is material-to-be-heated to be sent by feed inlet by conveyer belt It is taken out after entering into heating chamber heating from discharge port.It is material-to-be-heated in order to prevent to infect the coaxial antenna battle array microwave oven Other parts or component, in the heating chamber can using various low lossy microwaves partition carry out subregion.
In the present invention, we are using one to two radiating curtain in the heating chamber of coaxial antenna battle array microwave oven The higher mode of a certain waveguide has as often as possible been motivated, and has formed standing wave in the heating chamber.With it is micro- in traditional micro-wave oven Wave source is compared by waveguide with multiple modes of resonance that coupling aperture motivates respective energy uncontrollable simultaneously in heating chamber, this hair The field distribution of bright operating mode is determining and can be controlled.In order to further improve the uniformity of heating, I Used can with anterior-posterior translation or can be around the rotating circular disk of the vertical axis precession of heating chamber.
The feeding network of radiating curtain of the invention can use for reference the feeding network of common aerial array, using waveguide, Micro-strip or splitter with wire realize the distribution of power and the feed to each radiator.
Detailed description of the invention
Attached drawing described herein is used to provide to further understand the embodiment of the present invention, constitutes one of the application Point, do not constitute the restriction to the embodiment of the present invention.
Fig. 1 is the schematic diagram of the radiating curtain of embodiment 1.
Fig. 2 is the AA direction schematic diagram of Fig. 1.
Fig. 3 is the schematic diagram of the radiating curtain of embodiment 2.
Fig. 4 is the AA direction schematic diagram of Fig. 3.
Fig. 5 is the schematic diagram of the radiating curtain of embodiment 3.
Fig. 6 is the AA direction schematic diagram of Fig. 5.
Fig. 7 is the schematic diagram of the radiating curtain of embodiment 4.
Fig. 8 is the AA direction schematic diagram of Fig. 7.
Fig. 9 is the schematic diagram of the radiating curtain of embodiment 5.
Figure 10 is the AA direction schematic diagram of Fig. 9.
Figure 11 is the schematic diagram of the radiating curtain of embodiment 6.
Figure 12 is the AA direction schematic diagram of Figure 11.
Figure 13 is the AA direction schematic diagram of embodiment 7.
Figure 14 is the schematic diagram of embodiment 8.
Figure 15 is the AA direction schematic diagram of Figure 14.
Figure 16 is the schematic diagram of embodiment 9.
Figure 17 is the AA direction schematic diagram of Figure 16.
Figure 18 is the schematic diagram of embodiment 10.
Figure 19 is the AA direction schematic diagram of Figure 18.
Label and corresponding parts title in attached drawing: 1- radiator, the floor 2-, 3- heating chamber, 4- turntable, 5- cylinder Body, 5A- cylindrical body A, 5B- cylindrical body B, 6- rectangular block, 6A- rectangular block A, 6B- rectangular block B, 6C- fixing axle, 7- fixed plate.
Arrow in each radiator radiation port or near radiation port indicates the power line direction of microwave.The front of heating chamber Refer to that the slave paper of heating chamber is directed toward the direction of reader.The rear of heating chamber refers to the direction that paper is directed toward from reader of heating chamber.
Specific embodiment
To make the objectives, technical solutions, and advantages of the present invention clearer, below with reference to embodiment and attached drawing, to this Invention is described in further detail.Exemplary embodiment and its explanation of the invention for explaining only the invention, is not made For limitation of the invention.
Embodiment 1
Such as Fig. 1 and 2.
One radiating curtain, including 4 rows along Z axis, the 8 column radiators 1 along X-axis.The radiating curtain passes through floor 2 to institute State heating chamber microwave radiation energy.
Radiator 1 on the radiating curtain is all uniformly distributed in X direction and along Z-direction.Meanwhile being located at the radiating curtain On all radiators 1 in the microwave that radiates be coherent wave.Belong to all of same a line along X-axis arrangement on the radiating curtain The amplitude for the microwave that radiator 1 radiates is identical and phase is identical.Along any two that Z axis is adjacent on same radiating curtain The amplitude for belonging to the microwave of the radiation of radiator 1 of same row is identical, opposite in phase.
The microwave that all radiators 1 on the radiating curtain radiate is in each radiator 1 along the center line on Z axis one side Direction of an electric field is directed toward X-direction.
Any radiator 1 is rectangular waveguide.The operating mode of microwave is basic mode TE10 mode in the rectangular waveguide.
The length Lz of the rectangular waveguide opening's edge Z axis is the 3/5 ~ 9/10 of the wavelength of operational microwave free space.The square The length Lx of shape waveguide opening's edge X-axis is less than the half of the wavelength of operational microwave free space.
Embodiment 2
As shown in Figures 3 and 4.
Compared with embodiment 1, the difference is that only: radiator 1 is coaxial antenna.Here the coaxial antenna Using coaxial line feed-in microwave energy.Medium between the outer conductor and outer conductor and inner conductor of the coaxial line is cut off, but Its inner conductor reaches in free space.A rosette is connected on the top of inner conductor.
It is described adjacent along X-axis and spacing between the adjacent coaxial antenna center of Z axis is operational microwave free space Wavelength 3/5 ~ 9/10.Belong to the microwave of the radiation of radiator 1 of same row along Z axis arrangement on same radiating curtain each The component of electric field in the X-axis direction on the center line along X-axis of radiator 1 is zero.It is arranged on same radiating curtain along X-axis The Z-direction component for electric field of the microwave on the center line along Z axis of each radiator 1 that dependent of dead military hero is radiated in the radiator 1 of same a line It is zero.
Different from the rectangular waveguide of TE10 mould is propagated in embodiment 1, coaxial antenna here passes through its metal disk Even circumferential radiates same-phase microwave energy.Belong to the two of the arbitrary neighborhood of same a line along X-axis arrangement on the radiating curtain The amplitude of the microwave of a coaxial antenna radiation is identical and opposite in phase.The belonging to along Z axis arrangement on same radiating curtain The amplitude of the microwave of two adjacent coaxial aerial radiations of the arbitrary neighborhood of same row is identical, opposite in phase.
Embodiment 3
As illustrated in Figures 5 and 6.
It compared with embodiment 2, the difference is that only: belonging to same a line along X-axis arrangement on the radiating curtain The amplitude of the microwave of two coaxial antennas radiation of arbitrary neighborhood is identical and phase is identical.Along Z on same radiating curtain The amplitude of the microwave of two adjacent coaxial aerial radiations of the arbitrary neighborhood for belonging to same row of axis arrangement is identical, phase also phase Together.It is described along X-axis is adjacent and spacing between the adjacent coaxial antenna center of Z axis is the wavelength of operational microwave free space 6/10 ~ 19/10.
Embodiment 4
As shown in FIG. 7 and 8.
A kind of coaxial antenna battle array microwave oven, including heating chamber 3 and a radiating curtain.The radiating curtain is along Z 4 rows of axis, along 8 column radiators 1 of X-axis.The radiating curtain is placed in the top of the heating chamber 3, by floor 2 on to It is lower to 3 microwave radiation energy of heating chamber.Heating chamber 3 is cuboid.Z axis and the cuboid heating chamber 3 are from back to front A line it is parallel.
Radiator 1 on any radiating curtain is all uniformly distributed in X direction and along Z-direction.Meanwhile being located at same spoke Penetrating the microwave radiated in all radiators 1 on array is coherent wave.On same radiating curtain along X-axis arrangement belong to it is same The amplitude for the microwave that capable all radiators 1 radiate is identical and phase is identical.Along Z axis arrangement on same radiating curtain The amplitude for belonging to the microwave of two radiators 1 radiation of the arbitrary neighborhood of same row is identical, opposite in phase.
The Z-direction component of electric field along the center line on Z axis one side on of the microwave that each radiator 1 radiates in each radiator 1 It is zero.
Any radiator 1 is rectangular waveguide.The mode of microwave is basic mode TE10 in the rectangular waveguide radiator Mode.
The rectangular waveguide radiator along Z axis length Lz be operational microwave free space wavelength 3/5 ~ 9/10.Institute State the half that rectangular waveguide radiator is less than the wavelength of operational microwave free space along the length Lx of X-axis.
It further include the turntable 4 positioned at 3 bottom of heating chamber.When the coaxial antenna battle array microwave oven works, the turntable 4 Around the center axis rotation vertically of the turntable 4.
The swing in the heating chamber 3 of the central axis vertically of the turntable 4.The amplitude of oscillation of the swing is equal to The integral multiple of operational microwave the distance between certain adjacent electric field maximum point along the longitudinal direction.
For this purpose, being provided with cylindrical body 5 on the axis of the vertical direction of the turntable 4, it is arranged in 3 bottom of heating chamber There is the rectangular block 6 for being fixed on 3 bottom of heating chamber.5 outer edge of cylindrical body contacts on one side with the rectangular block 6.Institute 5 outer edge of cylindrical body is stated along the rolling on one side of the rectangular block 6, thus while driving the turntable 4 to rotate around own axes Along the translation on one side of the rectangular block 6.Here the cylindrical body 5 can directly be connect with the shaft of motor.The motor with The cylindrical body 5 is mobile and its rotation direction is periodically reversed.It is micro- that motor can also be fixed on to the coaxial antenna battle array On Wave heating furnace, the cylindrical body 5 to is sent torque by soft rod or soft stick.
Embodiment 5
As shown in Figures 9 and 10.
It compared with embodiment 4, the difference is that only, radiator here is coaxial antenna.It is described adjacent along X-axis And the spacing between the adjacent coaxial antenna center of Z axis is the 3/5 ~ 9/10 of the wavelength of operational microwave free space.Positioned at same Belong to center line along X-axis of the microwave in each radiator 1 of the radiation of radiator 1 of same row on one radiating curtain along Z axis arrangement On electric field component in the X-axis direction be zero.Belong to the radiator 1 of same a line along X-axis arrangement on same radiating curtain The Z-direction component of electric field of the microwave of radiation on the center line along Z axis of each radiator 1 is zero.On the radiating curtain Belong to that the amplitude of microwave of two coaxial antennas radiation of arbitrary neighborhood with a line is identical and opposite in phase along X-axis arrangement. Along the microwave of two adjacent coaxial aerial radiations of the arbitrary neighborhood for belonging to same row of Z axis arrangement on same radiating curtain Amplitude is identical and opposite in phase.
Embodiment 6
As shown in FIG. 11 and 12.
It compared with embodiment 5, the difference is that only, 3 bottom of heating chamber be provided with cylindrical body A 5A and square Shape block A 6A.A side of the rectangular block A 6A contacted with the side of the cylindrical body A 5A and with the cylindrical body 5 Side contact.When axis rotation of the cylindrical body A 5A around the cylindrical body A 5A, by driving the rectangular block A 6A It is translated along the side of the rectangular block A 6A and drives the turntable 4 to rotate and translate.Here the cylindrical body A 5A can be with Directly it is connect with the shaft of motor.
Embodiment 7
As shown in figure 13.
It compared with embodiment 6, the difference is that only, 3 bottom of heating chamber be provided with cylindrical body A 5A and square Shape block A 6A, rectangular block B 6B and fixing axle 6C.The cylindrical body A 5A is rotated around the axis of the cylindrical body A 5A, passes through institute It states fixing axle 6C and rectangular block B 6B and drives the rectangular block A 6A translation, to drive the turntable 4 to rotate and translate.Here The cylindrical body A 5A can directly be connect with the shaft of motor.
Embodiment 8
As shown in FIG. 14 and 15.
It compared with embodiment 4, the difference is that only, be provided with circle on the axis of the vertical direction of the turntable 4 Cylinder 5 is provided with the cylindrical body B 5B for being fixed on 3 bottom of heating chamber in 3 bottom of heating chamber.Outside the cylindrical body 5 Edge is contacted with the outer edge of the cylindrical body B 5B.Outer edge of the outer edge of the cylindrical body 5 along the cylindrical body B 5B It rolls, to drive axis precession of the turntable 4 while rotation around own axes around the cylindrical body B 5B.Here institute Stating cylindrical body 5 can directly connect with the shaft of motor.The motor is with the cylindrical body 5 around the axis of the cylindrical body B 5B Circumferentially move.
Embodiment 9
As shown in FIG. 16 and 17.
It compared with embodiment 8, the difference is that only, radiator here is coaxial antenna.It is described adjacent along X-axis And the spacing between the adjacent coaxial antenna center of Z axis is the 3/5 ~ 9/10 of the wavelength of operational microwave free space.Positioned at same Belong to center line along X-axis of the microwave in each radiator 1 of the radiation of radiator 1 of same row on one radiating curtain along Z axis arrangement On electric field component in the X-axis direction be zero.Belong to the radiator 1 of same a line along X-axis arrangement on same radiating curtain The Z-direction component of electric field of the microwave of radiation on the center line along Z axis of each radiator 1 is zero.On the radiating curtain Belong to that the amplitude of microwave of two coaxial antennas radiation of arbitrary neighborhood with a line is identical and opposite in phase along X-axis arrangement. Along the microwave of two adjacent coaxial aerial radiations of the arbitrary neighborhood for belonging to same row of Z axis arrangement on same radiating curtain Amplitude is identical and opposite in phase.
Embodiment 10
As shown in Figures 18 and 19.
It compared with embodiment 9, the difference is that only, be provided with circle on the axis of the vertical direction of the turntable 4 Cylinder 5 is provided with cylindrical body A 5A in 3 bottom of heating chamber and round-meshed fixed plate 7 is opened in inside.The cylindrical body 5 Outer edge is contacted with the inside edge of the outer edge of the cylindrical body A 5A and the circular hole of the fixed plate 7 respectively.The cylindrical body A 5A is rotated around the axis of the cylindrical body A 5A, while driving axis rotation of the turntable 4 around the turntable 4, described turn Axis precession of the axis of disk 4 around the cylindrical body A 5A.Here the cylindrical body A 5A can directly with the shaft of motor Connection.

Claims (8)

1. a kind of coaxial antenna battle array microwave oven, which is characterized in that including heating chamber (3), at least one radiating curtain;Institute Stating at least one radiating curtain includes at least two row radiators (1) along Z axis;Any radiator (1) is coaxial antenna;Institute It states radiating curtain and passes through floor (2) Xiang Suoshu heating chamber microwave radiation energy;X-axis, Y-axis and Z axis form right angle coordinate system.
2. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that at least one described radiating curtain It further include at least two column radiators (1) along X-axis;Belong to any of same row along Z axis arrangement on same radiating curtain The amplitude of the microwave of adjacent two radiators (1) radiation is identical and opposite in phase.
3. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that be located at edge on same radiating curtain X-axis arrangement belongs to electricity along the center line on Z axis one side on of the microwave in each radiator (1) of radiator (1) radiation of same a line The Z-direction component of field is zero.
4. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that any radiator (1) is Coaxial antenna;It is described adjacent along X-axis and spacing between the adjacent coaxial antenna center of Z axis is operational microwave free space The 3/5 ~ 9/10 of wavelength;Belong to the microwave of radiator (1) radiation of same row along Z axis arrangement on same radiating curtain each The component of electric field in the X-axis direction on the center line along X-axis of radiator (1) is zero;Along X-axis on same radiating curtain Arrangement belongs to the side Z of electric field of the microwave of radiator (1) radiation of same a line on the center line along Z axis of each radiator (1) It is zero to component.
5. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that the shape of the heating chamber (3) For cuboid;The number of the radiating curtain is 1;One radiating curtain is located at the coaxial antenna battle array microwave oven Above heating chamber (3), from the top down to the heating chamber (3) microwave radiation energy;The Z-direction and the heating chamber (3) A line from back to front it is parallel.
6. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that the shape of the heating chamber (3) For cuboid;One radiating curtain is located at behind the heating chamber (3), radiates microwave energy to heating chamber (3) from back to front Amount, can also have another radiating curtain to be located at before the heating chamber (3) simultaneously, radiate from front to back to heating chamber (3) Microwave energy;The a line from front to back of the Z-direction and the heating chamber (3) is parallel.
7. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that further include being located at heating chamber (3) The turntable (4) of bottom;When the coaxial antenna battle array microwave oven works, the turntable (4) is around the turntable (4) along vertical The center axis rotation in direction;The central axis vertically of the turntable (4) simultaneously put in the heating chamber (3) by front and back It is dynamic;The amplitude of oscillation of the swing in the heating chamber (3) of central axis vertically of the turntable (4) is equal to operational microwave The integral multiple of the distance between certain adjacent electric field maximum point along the longitudinal direction.
8. coaxial antenna battle array microwave oven according to claim 1, which is characterized in that further include being located at heating chamber (3) The turntable (4) of bottom;Around the vertical of the heating chamber (3) while the center axis rotation vertically of the turntable (4) The center line precession in direction;Hanging down around the heating chamber (3) while the center axis rotation vertically of the turntable (4) Histogram to the diameter of center line precession be operational microwave the distance between certain adjacent electric field maximum point along the longitudinal direction 1.414 integral multiple again.
CN201811380172.0A 2018-11-20 2018-11-20 Coaxial antenna battle array microwave oven Withdrawn CN109548216A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811380172.0A CN109548216A (en) 2018-11-20 2018-11-20 Coaxial antenna battle array microwave oven

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811380172.0A CN109548216A (en) 2018-11-20 2018-11-20 Coaxial antenna battle array microwave oven

Publications (1)

Publication Number Publication Date
CN109548216A true CN109548216A (en) 2019-03-29

Family

ID=65848307

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811380172.0A Withdrawn CN109548216A (en) 2018-11-20 2018-11-20 Coaxial antenna battle array microwave oven

Country Status (1)

Country Link
CN (1) CN109548216A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112210974A (en) * 2019-07-11 2021-01-12 青岛海尔洗衣机有限公司 Radio frequency antenna and clothes drying equipment
CN115978785A (en) * 2022-12-19 2023-04-18 四川大学 Coaxial slotted radiator, continuous flow liquid heating system and heating method

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1392362A (en) * 2001-06-19 2003-01-22 季网宝 Movable microwave oven rotary disc
CN103974480A (en) * 2013-02-05 2014-08-06 松下电器产业株式会社 Microwave heating device
CN104272866A (en) * 2012-03-09 2015-01-07 松下电器产业株式会社 Microwave heating device
CN105379011A (en) * 2013-07-03 2016-03-02 Hrl实验室有限责任公司 Electronically steerable, artificial impedance, surface antenna
CN106099376A (en) * 2016-07-15 2016-11-09 西安电子科技大学 Miniaturization frequency based on microstrip array feed sweeps electromagnetic horn
CN205723949U (en) * 2016-05-05 2016-11-23 桂林电子科技大学 A kind of K-band Microstrip Antenna Array

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1392362A (en) * 2001-06-19 2003-01-22 季网宝 Movable microwave oven rotary disc
CN104272866A (en) * 2012-03-09 2015-01-07 松下电器产业株式会社 Microwave heating device
CN103974480A (en) * 2013-02-05 2014-08-06 松下电器产业株式会社 Microwave heating device
CN105379011A (en) * 2013-07-03 2016-03-02 Hrl实验室有限责任公司 Electronically steerable, artificial impedance, surface antenna
CN205723949U (en) * 2016-05-05 2016-11-23 桂林电子科技大学 A kind of K-band Microstrip Antenna Array
CN106099376A (en) * 2016-07-15 2016-11-09 西安电子科技大学 Miniaturization frequency based on microstrip array feed sweeps electromagnetic horn

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112210974A (en) * 2019-07-11 2021-01-12 青岛海尔洗衣机有限公司 Radio frequency antenna and clothes drying equipment
CN115978785A (en) * 2022-12-19 2023-04-18 四川大学 Coaxial slotted radiator, continuous flow liquid heating system and heating method
CN115978785B (en) * 2022-12-19 2024-03-19 四川大学 Coaxial slotting radiator, continuous flow liquid heating system and heating method

Similar Documents

Publication Publication Date Title
CN109951913A (en) Laterally uniform microwave oven
CN108567111B (en) System for cooking at least one food product
CN101772231B (en) Microwave heating device with metamaterials
JPH11506864A (en) Cylindrical microwave applicator
CN109548216A (en) Coaxial antenna battle array microwave oven
CN105357790B (en) A kind of two-tube micro-wave oven for making radiator using spiral antenna with circular polarization
CN109548213A (en) With phase feed-in type microwave oven
JP2005235732A (en) Microwave oven
CN102200373A (en) Vacuum freeze-drying tester
CN109548220A (en) Basic mode battle array presents type micro-wave heating furnace
CN109548218A (en) Patch antenna array microwave oven
CN109945250A (en) Uniform battle array presents type micro-wave heating furnace
CN102200372A (en) Micro-wave vacuum freeze-drying equipment
CN109951911A (en) Rectangle battle array presents type micro-wave heating furnace
CN101586819B (en) Microwave oven having metal sub-wavelength structure
CN109475020A (en) Array side presents type micro-wave heating furnace
CN109548219A (en) Laterally homogeneous field microwave oven
CN109519981A (en) Vertical uniform type micro-wave heating furnace
CN109600874A (en) Double array feed-in type microwave ovens
CN109587857A (en) Microwave oven with movable roundabout
CN109764367A (en) Transverse electric field microwave oven
CN109951914A (en) Microwave oven with circumference precession turntable
CN109951912A (en) Top feedback type micro-wave heating furnace
CN109595612A (en) With the microwave oven for shaking turntable
CN109548221A (en) Microwave oven with circumference movable roundabout

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WW01 Invention patent application withdrawn after publication
WW01 Invention patent application withdrawn after publication

Application publication date: 20190329