Microwave oven provided with microwave diverter

By configuring a microwave diverter and a baffle plate in the microwave oven, multiple cooking cavities in the microwave oven can be heated independently or simultaneously, solving the problem that existing technologies cannot heat multiple cooking cavities simultaneously or individually, improving heating flexibility and reducing the size of the microwave oven.

CN223460502UActive Publication Date: 2025-10-21ZHEJIANG TIANXI KITCHEN APPLIANCE CO LTD
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Patent Information

Application Number
CN202520121616.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-10-21
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing microwave ovens cannot heat multiple cooking cavities simultaneously or individually, making it impossible to heat different types of food at once.

Method used

A microwave splitter is configured, which is connected to the microwave generator and the waveguide channel between at least two cooking cavities. The microwaves are split to different cooking cavities by using microwave blocking plates and motors to achieve individual or simultaneous heating.

Benefits of technology

It enables independent or simultaneous heating of different cooking cavities, reduces the number of microwave generators, and lowers the size and makes the microwave oven more compact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a microwave oven provided with a microwave shunt, and aims to solve the problem that a microwave oven in the prior art does not have the function of independently heating a certain cooking cavity or simultaneously heating two cooking cavities through a set of microwave heating system. A microwave oven equipped with a microwave splitter includes: an oven body; the at least two cooking cavities are arranged on the oven body; the microwave generator is arranged on the furnace body; and the microwave diverter is arranged in the oven body and is used for guiding the microwaves generated by the microwave generator into at least one cooking cavity. The microwave diverter can be used for guiding microwaves generated by the microwave generator into one cooking cavity to enable a single cooking cavity to work or guiding the microwaves into two or more cooking cavities, and therefore more food can be heated at a time. Different cooking cavities can be heated only by arranging one microwave generator in the oven body, so that the size of the whole microwave oven is smaller.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of microwave oven, specifically related to a microwave oven with microwave shunt. BACKGROUND

[0002] The microwave oven is a commonly used cooking appliance in the kitchen, which can quickly heat and cook food and provide great convenience for people's life. It mainly utilizes the microwave generator to convert external electric energy into microwaves, and through the interaction between the substance and the microwave field to simultaneously heat the surface and the interior of the food, thereby realizing the rapid cooking of the food. The microwave oven in the prior art only has one cooking cavity, and since different foods have different heating time and temperature, such microwave oven cannot heat different foods at one time. If the cooking cavity is increased, a set of microwave heating system is used to heat a certain cooking cavity alone or to heat two cooking cavities at the same time, which becomes a problem to be solved in the prior art. SUMMARY

[0003] The utility model provides a microwave oven with microwave shunt, aims at solving the problem of the microwave oven in the prior art without the function of heating a certain cooking cavity alone or heating two cooking cavities at the same time through a set of microwave heating system.

[0004] In order to solve the above technical problems, the utility model adopts the technical scheme of:

[0005] A microwave oven with microwave shunt, comprising:

[0006] The oven body;

[0007] At least two cooking cavities are arranged on the oven body;

[0008] The microwave generator is arranged on the oven body; and

[0009] The microwave shunt is arranged in the oven body and is used to guide the microwaves generated by the microwave generator into at least one cooking cavity.

[0010] Further scheme: the cooking cavity is two, the two cooking cavities are respectively a first cooking cavity and a second cooking cavity; the microwave generator is provided with a first waveguide channel between the first cooking cavity, and the microwave generator is provided with a second waveguide channel between the second cooking cavity; the microwave shunt is used to guide the microwaves generated by the microwave generator into the first waveguide channel and / or the second waveguide channel.

[0011] According to the technical scheme, the microwave generator is communicated with the first cooking cavity through the first waveguide channel and communicated with the second cooking cavity through the second waveguide channel, so that the microwave diverter can realize microwave guiding and diverging by cutting off the first waveguide channel or the second waveguide channel.

[0012] Further, the microwave diverter is arranged between the first waveguide channel and the second waveguide channel.

[0013] According to the technical scheme, the microwave diverter can conveniently guide the microwave generated by the microwave generator into the first waveguide channel and / or the second waveguide channel.

[0014] Further, the microwave diverter comprises a microwave blocking piece arranged between the first waveguide channel and the second waveguide channel.

[0015] When the microwave blocking piece is located at a first position for cutting off the first waveguide channel, the microwave generator is communicated with the second waveguide channel.

[0016] When the microwave blocking piece is located at a second position for cutting off the second waveguide channel, the microwave generator is communicated with the first waveguide channel.

[0017] When the microwave blocking piece is located at a third position between the first waveguide channel and the second waveguide channel, the first waveguide channel and the second waveguide channel are respectively communicated with the microwave generator.

[0018] According to the technical scheme, the microwave blocking piece is arranged at three different positions, so that the microwave generated by the microwave generator is diverged into different cooking cavities, and the structure of the microwave diverter is simplified.

[0019] Further, the microwave blocking piece is rotationally connected with the oven body and switched between the first position, the second position and the third position by rotating relative to the oven body.

[0020] According to the technical scheme, the microwave blocking piece is rotationally connected, which is easy to realize and convenient to switch between the three positions, and the structure is simplified.

[0021] Further, the microwave diverter further comprises a motor arranged on the oven body, and an output shaft of the motor is connected with the microwave blocking piece.

[0022] According to the technical scheme, the microwave blocking piece is switched between the three positions by the motor, so that the user is convenient to operate.

[0023] Further scheme: the first cooking cavity and the second cooking cavity are arranged side by side in up-down direction, and the first cooking cavity is located on the upper side of the second cooking cavity.

[0024] Based on the above technical scheme: the two cooking cavities are arranged side by side in up-down direction, so that the microwave oven occupies less space in the horizontal direction, thereby facilitating placement in the kitchen.

[0025] Further scheme: a main channel is arranged between the microwave generator and the microwave diverter, the end of the main channel close to the microwave diverter is upwardly diverged with a first channel and downwardly diverged with a second channel.

[0026] The first waveguide channel comprises the main channel and the first channel, and the second waveguide channel comprises the main channel and the second channel.

[0027] Based on the above technical scheme: the microwave blocking piece in the microwave generator is conveniently rotated to achieve microwave diversion.

[0028] Further scheme: the motor is arranged on the outer side wall of the end of the main channel away from the microwave generator, and the output shaft of the motor is connected with one end of the microwave blocking piece after penetrating through the outer side wall of the main channel.

[0029] When the motor drives the other end of the microwave blocking piece to rotate to abut against the upper wall of the main channel, the microwave blocking piece is located at the first position.

[0030] When the motor drives the other end of the microwave blocking piece to rotate to abut against the lower wall of the main channel, the microwave blocking piece is located at the second position.

[0031] When the motor drives the other end of the microwave blocking piece to rotate to be located between the lower wall and the upper wall of the main channel, the microwave blocking piece is located at the third position.

[0032] Based on the above technical scheme: the microwave blocking piece is arranged to abut against the upper wall of the main channel at the first position, abut against the lower wall of the main channel at the second position, and be located between the upper wall and the lower wall at the third position, so as to achieve microwave diversion and effectively block the microwave from entering the cut-off waveguide channel at the first position or the second position.

[0033] Further scheme: the main channel extends in the horizontal direction, and the first channel and the second channel extend in the vertical direction.

[0034] The microwave oven has the following beneficial effects:

[0035] The utility model discloses a microwave oven with microwave shunt, which comprises a furnace body, at least two cooking cavities, a microwave generator and a microwave shunt.

[0036] The utility model discloses a microwave shunt is set up, and thereby only needs to set up a microwave generator in the furnace body and can heat different cooking cavities, reduces the quantity of microwave generator, makes the whole microwave oven volume smaller, and the structure is more compact. BRIEF DESCRIPTION OF DRAWINGS

[0037] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be needed to use the drawing in the embodiment briefly introduces, and should understand, the following drawing only shows some embodiment of the utility model, therefore should not be regarded as the limited scope, for ordinary skilled person in the art, under the premise of not paying the creative labor, can also obtain other related drawings according to these drawings.

[0038] Figure 1 It is a kind of microwave oven of the utility model configuration with the structure schematic diagram of microwave shunt.

[0039] Figure 2 It is the structure schematic diagram when microwave blocking piece is located first position.

[0040] Figure 3 It is the structure schematic diagram when microwave blocking piece is located second position.

[0041] Figure 4 It is the structure schematic diagram when microwave blocking piece is located third position.

[0042] Figure 5 It is the structure schematic diagram of microwave shunt.

[0043] Mark explanation in drawing:

[0044] 1-furnace body;11-first cooking cavity;12-second cooking cavity;13-waveguide;14-microwave generator;15-microwave shunt;151-motor;152-microwave blocking piece;2-first waveguide channel;3-second waveguide channel. DETAILED DESCRIPTION

[0045] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. It should be understood that the specific embodiments described herein are only used to explain the present application and should not be used to limit the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0046] As shown in Figures 1 to 5 , the present embodiment provides a microwave oven configured with a microwave shunt, comprising:

[0047] an oven body 1;

[0048] at least two cooking cavities, each arranged on the oven body 1;

[0049] a microwave generator 14 arranged on the oven body 1; and

[0050] a microwave shunt 15 arranged in the oven body 1 and used to guide the microwaves generated by the microwave generator 14 into at least one cooking cavity.

[0051] In some specific embodiments, as shown in Figures 1 to 4 , the number of cooking cavities is preferably two, and the two cooking cavities can be arranged in which one is used for quickly heating food, and the other cooking cavity is used for thawing food, or more function modes are arranged according to specific needs, and the two cooking cavities can be arranged in an up-down parallel manner or a left-right parallel manner, and the two cooking cavities are respectively a first cooking cavity 11 and a second cooking cavity 12; the microwave generator 14 is provided with a first waveguide channel 2 between the first cooking cavity 11, that is, the microwaves generated by the microwave generator 14 need to enter the first cooking cavity 11 through the first waveguide channel 2, the microwave generator 14 is provided with a second waveguide channel 3 between the second cooking cavity 12, that is, the microwaves generated by the microwave generator 14 need to enter the second cooking cavity 12 through the second waveguide channel 3, and the microwave shunt 15 is used to guide the microwaves generated by the microwave generator 14 into the first waveguide channel 2 and / or the second waveguide channel 3. Specifically, the microwave shunt 15 separately guides the microwaves generated by the microwave generator 14 into the first waveguide channel 2 or the second waveguide channel 3, or simultaneously and separately shunts into the first waveguide channel 2 and the second waveguide channel 3.

[0052] In some specific embodiments, in order to facilitate the work of the microwave shunt 15, the microwave shunt 15 is arranged between the first waveguide channel 2 and the second waveguide channel 3.

[0053] Specifically, as a specific structure of the microwave shunt 15, the microwave shunt 15 comprises a microwave blocking sheet 152 arranged between the first waveguide channel 2 and the second waveguide channel 3, which functions to block microwaves;

[0054] When the microwave blocking sheet 152 is located at a first position to cut off the first waveguide channel 2, i.e. the first waveguide channel 2 is cut off, the microwaves generated by the microwave generator 14 cannot enter the first cooking cavity 11, at the same time, the microwave generator 14 is in communication with the second waveguide channel 3, and the microwaves generated by the microwave generator 14 enter the second waveguide channel 3;

[0055] When the microwave blocking sheet 152 is located at a second position to cut off the second waveguide channel 3, i.e. the second waveguide channel 3 is cut off, the microwaves generated by the microwave generator 14 cannot enter the second cooking cavity 12, at the same time, the microwave generator 14 is in communication with the first waveguide channel 2, and the microwaves generated by the microwave generator 14 enter the first waveguide channel 2;

[0056] When the microwave blocking sheet 152 is located at a third position between the first waveguide channel 2 and the second waveguide channel 3, the first waveguide channel 2 and the second waveguide channel 3 are in communication with the microwave generator 14 respectively, and the microwaves generated by the microwave generator 14 enter the first waveguide channel 2 and the second waveguide channel 3 respectively, and enter the first cooking cavity 11 through the first waveguide channel 2 and enter the second cooking cavity 12 through the second waveguide channel 3.

[0057] Specifically, the oven body 1 is provided with a waveguide tube 13 for specifically communicating the microwave generator 14 with the first cooking cavity 11 and the second cooking cavity 12, the first waveguide channel 2 and the second waveguide channel 3 are located in the waveguide tube 13, and the microwave blocking sheet 152 is located in the waveguide tube 13 and its width is adapted to the width inside the waveguide tube 13.

[0058] In some specific embodiments, as shown in Figures 1 to 5 In order to facilitate the switching of the microwave blocking sheet 152 between the first position, the second position and the third position, the microwave blocking sheet 152 is rotationally connected with the oven body 1 and is switched between the first position, the second position and the third position by rotating relative to the oven body 1. In order to further facilitate the operation, the microwave shunt 15 further comprises a motor 151 arranged on the oven body 1, and the output shaft of the motor 151 is connected with the microwave blocking sheet 152. Specifically, a button is arranged on the oven body 1 and is electrically connected with the motor 151, and the button is used to drive the motor 151 to rotate the microwave blocking sheet 152 to the first position, the second position or the third position.

[0059] In some specific embodiments, the first cooking cavity 11 and the second cooking cavity 12 are arranged side by side, and the first cooking cavity 11 is located above the second cooking cavity 12. Specifically, a main channel is provided between the microwave generator 14 and the microwave diverter 15. The end of the main channel near the microwave diverter 15 is divided into a first channel upward and a second channel downward.

[0060] The first waveguide channel 2 includes the main channel and the first channel, and the second waveguide channel 3 includes the main channel and the second channel.

[0061] In some embodiments, Figures 1 to 4 As shown, the motor 151 is disposed on the outer wall of the main channel at one end away from the microwave generator 14, specifically on the outer wall of the waveguide 13, and the output shaft of the motor 151 passes through the outer wall of the main channel and is connected to one end of the microwave blocking sheet 152; when the motor 151 rotates, the microwave blocking sheet 152 is driven to rotate;

[0062] When the motor 151 drives the other end of the microwave blocking plate 152 to rotate and abut against the upper wall of the main channel, the microwave blocking plate 152 is located in the first position; the end of the microwave blocking plate 152 abuts against the upper wall of the main channel, thereby ensuring that it rotates to the first position to cut off the first waveguide channel 2, thereby preventing microwaves from entering the first waveguide channel 2;

[0063] When the motor 151 drives the other end of the microwave blocking plate 152 to rotate until it abuts against the lower wall of the main channel, the microwave blocking plate 152 is located in the second position; the specific principle is the same as above;

[0064] When the motor 151 drives the other end of the microwave blocking plate 152 to rotate to between the lower wall and the upper wall of the main channel, the microwave blocking plate 152 is located at a third position, which is preferably the middle position between the upper wall and the lower wall of the main channel.

[0065] The main channel extends transversely, and the first channel and the second channel both extend longitudinally.

[0066] Working principle description:

[0067] like Figure 2 As shown, when the second cooking cavity 12 needs to work alone, the motor 151 drives the microwave blocking plate 152 to rotate to the first position for cutting off the first waveguide channel 2. At this time, the first waveguide channel 2 is cut off, the microwave generator 14 is connected to the second waveguide channel 3, and the microwave generated by the microwave generator 14 enters the second waveguide channel 3 and enters the second cooking cavity 12 through the second waveguide channel 3.

[0068] As Figure 3 shown, when the first cooking cavity 11 needs to be operated alone, the microwave blocking piece 152 is rotated to the second position to cut off the second waveguide channel 3 by operating the motor 151, at this time, the second waveguide channel 3 is cut off, the microwave generator 14 is communicated with the first waveguide channel 2, and the microwave generated by the microwave generator 14 enters the first waveguide channel 2 and then enters the first cooking cavity 11 through the first waveguide channel 2;

[0069] As Figure 4 shown, when the first cooking cavity 11 and the second cooking cavity 12 need to be operated simultaneously, the microwave blocking piece 152 is rotated to the third position between the first waveguide channel 2 and the second waveguide channel 3 by operating the motor 151, at this time, the microwave generator 14 is communicated with the first waveguide channel 2 and the second waveguide channel 3 respectively, and the microwave generated by the microwave generator 14 enters the first waveguide channel 2 and the second waveguide channel 3 respectively, and then enters the first cooking cavity 11 through the first waveguide channel 2 and enters the second cooking cavity 12 through the second waveguide channel 3.

[0070] The utility model is not limited to the above optional implementation, under the premise of not contradicting each other, any combination between schemes can be combined; anyone can derive other various forms of products under the enlightenment of the utility model, but no matter any change in shape or structure, any technical scheme falling within the scope defined by the claims of the utility model falls within the protection scope of the utility model.

Claims

1. A microwave oven configured with a microwave shunt, characterized by, The application relates to a microwave oven comprising: a furnace body; at least two cooking cavities, each arranged on the furnace body; a microwave generator arranged on the furnace body; and a microwave shunt arranged in the furnace body and used for guiding microwaves generated by the microwave generator into at least one cooking cavity. The cooking cavities are two, and the two cooking cavities are respectively a first cooking cavity and a second cooking cavity; a first waveguide channel is arranged between the microwave generator and the first cooking cavity, a second waveguide channel is arranged between the microwave generator and the second cooking cavity, and the microwave shunt is used for guiding microwaves generated by the microwave generator into the first waveguide channel and / or the second waveguide channel.

2. A microwave oven provided with a microwave shunt according to claim 1, characterized in that, The microwave shunt is arranged between the first waveguide channel and the second waveguide channel.

3. A microwave oven provided with a microwave shunt as claimed in claim 2, characterized in that The microwave shunt comprises a microwave blocking sheet arranged between the first waveguide channel and the second waveguide channel.

4. A microwave oven provided with a microwave shunt according to claim 2 or 3, characterized in that, When the microwave blocking sheet is located at a first position for cutting off the first waveguide channel, the microwave generator is in communication with the second waveguide channel. When the microwave blocking sheet is located at a second position for cutting off the second waveguide channel, the microwave generator is in communication with the first waveguide channel. When the microwave blocking sheet is located at a third position between the first waveguide channel and the second waveguide channel, the first waveguide channel and the second waveguide channel are respectively in communication with the microwave generator. The microwave blocking sheet is rotationally connected to the furnace body and is switched between the first position, the second position and the third position by rotating relative to the furnace body.

5. A microwave oven provided with a microwave shunt as defined in claim 4, characterized in that The microwave shunt further comprises a motor arranged on the furnace body, and an output shaft of the motor is connected to the microwave blocking sheet.

6. A microwave oven provided with a microwave shunt as defined in claim 5, characterized in that The first cooking cavity and the second cooking cavity are arranged in parallel and the first cooking cavity is located on the upper side of the second cooking cavity.

7. A microwave oven provided with a microwave shunt according to claim 6, characterized in that, A main channel is arranged between the microwave generator and the microwave shunt, an upper end of the main channel is branched into a first channel and a lower end of the main channel is branched into a second channel.

8. A microwave oven provided with a microwave shunt according to claim 7, characterized in that, The first waveguide channel comprises the main channel and the first channel, and the second waveguide channel comprises the main channel and the second channel. The motor is arranged on an outer side wall of an end of the main channel away from the microwave generator, and an output shaft of the motor is connected to one end of the microwave blocking sheet after penetrating through the outer side wall of the main channel.

9. A microwave oven provided with a microwave shunt as defined in claim 8, characterized in that When the motor drives the other end of the microwave blocking sheet to abut against an upper wall of the main channel, the microwave blocking sheet is located at the first position. When the motor drives the other end of the microwave blocking sheet to abut against a lower wall of the main channel, the microwave blocking sheet is located at the second position. When the motor drives the other end of the microwave blocking sheet to be located between the lower wall and the upper wall of the main channel, the microwave blocking sheet is located at the third position. The main channel extends laterally, and the first channel and the second channel extend longitudinally.

10. A microwave oven provided with a microwave shunt according to claim 8, characterized in that, ​