Wave-transparent plate assembly structure and vehicle-mounted microwave oven

By centrally setting up filter brackets and wave-transmitting plates on the cavity roof of the vehicle microwave oven, and fixing them by fastener connection, bonding and clamping, the problem of insufficient compact layout of components of the vehicle microwave oven is solved, and space utilization and component connection strength are improved.

CN222836921UActive Publication Date: 2025-05-06GUANGDONG GALANZ ENTERPRISES CO LTD +1
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Patent Information

Application Number
CN202421527715.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-03-27
Filing Date
2024-07-01
Publication Date
2025-05-06
Estimated Expiration
2034-07-01

AI Technical Summary

Technical Problem

The existing automotive microwave ovens have poor compact layout, resulting in low space utilization and occupying more vehicle space.

Method used

The wave-transmissive plate assembly structure is adopted, and the filter bracket and wave-transmissive plate are centrally arranged at the top plate of the cavity and fixed through specific connection methods, including fastener connection, bonding and clamping, improving the compactness of the arrangement of parts and connection strength.

Benefits of technology

It improves the compact layout of internal components of the vehicle-mounted microwave oven, improves space utilization, and enhances the connection strength of the components, avoiding the separation or fall off of the components due to vehicle bumps or vibrations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wave-transparent plate assembly structure and a vehicle-mounted microwave oven, the wave-transparent plate assembly structure comprises a cavity top plate, a wave-transparent plate and a filtering support, the filtering support is connected with the cavity top plate, the lower side of the cavity top plate is provided with the wave-transparent plate, the wave-transparent plate is connected with the cavity top plate in a fastener connection and / or bonding mode, and the filtering support is connected with the cavity top plate. The wave-transparent plate is connected with the filtering bracket in a clamping manner; according to the vehicle-mounted microwave oven, the filtering bracket and the wave-transparent plate are intensively arranged at the top plate of the cavity and are specifically connected and fixed, so that on one hand, related parts in the vehicle-mounted microwave oven are more compactly arranged, the space utilization rate of the vehicle-mounted microwave oven is improved, on the other hand, the connection strength of the related parts is favorably improved, and the service life of the vehicle-mounted microwave oven is prolonged. Therefore, the situation that parts are separated or fall off due to bumping or vibration of a vehicle is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of microwave ovens, in particular to a wave-transmitting plate assembly structure and a vehicle-mounted microwave oven. Background Art

[0002] Microwave ovens are an indispensable electrical appliance in people's daily life, with various structural forms. With the continuous improvement of industrial design level and the application of new technology, new materials and new shapes in microwave ovens, not only a variety of microwave ovens have been developed, but also the corresponding structural optimization of microwave ovens has been carried out.

[0003] Taking a vehicle-mounted microwave oven as an example, due to the limited space in the vehicle, the existing vehicle-mounted microwave ovens often have poor compactness in the arrangement of components. For example, the waveguide box, filter plate, wave-transmitting plate and other components in the vehicle-mounted microwave oven. The prior art often sets the waveguide box and filter plate in the microwave oven electrical room, and sets the wave-transmitting plate at the bottom of the microwave oven cavity, which makes the space utilization rate of the vehicle-mounted microwave oven itself low, resulting in the vehicle-mounted microwave oven often occupying more vehicle space. Utility Model Content

[0004] In view of this, the utility model aims to propose a wave-transmitting plate assembly structure and a vehicle-mounted microwave oven to solve the problem of poor compactness of vehicle-mounted microwave oven components in the prior art, so as to improve the space utilization of the vehicle-mounted microwave oven itself.

[0005] In order to achieve the above object, the technical solution of the utility model is implemented as follows:

[0006] A wave-transmitting plate assembly structure comprises a cavity top plate, a wave-transmitting plate, and a filter bracket, wherein the filter bracket is connected to the cavity top plate, a wave-transmitting plate is arranged on the lower side of the cavity top plate, the wave-transmitting plate is connected to the cavity top plate by fastener connection and / or bonding, and the wave-transmitting plate is connected to the filter bracket by snap-fitting.

[0007] Furthermore, the cavity top plate is provided with an assembly area, and the wave-transmitting plate is connected to the assembly area by fastener connection and / or bonding.

[0008] Furthermore, a screw column is provided on the outer edge of the wave-transmitting plate, and the screw column passes through the assembly area and is connected to the assembly area through a fastener.

[0009] Furthermore, the wave-transmitting plate is bonded to the lower surface of the assembly area.

[0010] Furthermore, filter brackets are provided on both sides of the assembly area, and the wave-transmitting plate is respectively engaged with each filter bracket.

[0011] Furthermore, a card interface is provided on one side of the filter bracket close to the assembly area, and a card connection column is provided on the outer edge of the wave-transmitting plate. The card connection column passes through the assembly area and is card-connected with the card interface.

[0012] Furthermore, card slots are provided on both sides of the card connection column, and the card slots are card-connected with the card interface.

[0013] A vehicle-mounted microwave oven comprises a magnetron, a waveguide box and the wave-transmitting plate assembly structure; the magnetron is arranged in the electrical cavity of the vehicle-mounted microwave oven, one side of the waveguide box is connected to the magnetron, and the other side extends above the assembly area, so that the microwave outlet of the waveguide box is connected to the inner cavity of the vehicle-mounted microwave oven.

[0014] Furthermore, a driving device and a stirring plate are arranged at the microwave outlet of the waveguide box, the driving device is connected to the waveguide box, the assembly area has an upper protrusion, a cavity is formed between the wave-transmitting plate and the upper protrusion, the stirring plate is arranged in the cavity, and the output shaft of the driving device passes through the upper protrusion and is connected to the stirring plate.

[0015] Furthermore, the vehicle-mounted microwave oven includes a front panel, the front panel is provided with an air outlet corresponding to the filter bracket, a gas flow channel is formed between the cavity top plate and the upper top plate of the vehicle-mounted microwave oven shell, the filter bracket is located in the gas flow channel, and the gas flow channel is respectively connected to the electrical cavity and the air outlet.

[0016] Compared with the prior art, the wave-transmitting plate assembly structure and the vehicle-mounted microwave oven described in the utility model have the following advantages:

[0017] The utility model discloses a wave-transmitting plate assembly structure and a vehicle-mounted microwave oven, wherein the filter bracket and the wave-transmitting plate are centrally arranged on the cavity top plate and are specifically connected and fixed. On the one hand, the relevant components in the vehicle-mounted microwave oven are arranged more compactly, thereby improving the space utilization rate of the vehicle-mounted microwave oven itself; on the other hand, it is beneficial to improve the connection strength of the relevant components, thereby preventing the components from being separated or falling off due to vehicle bumps or vibrations.

[0018] At the same time, for the vehicle-mounted microwave oven, on the basis of centrally arranging the filter bracket and the wave-transmitting plate on the top plate of the cavity, the waveguide box and the wave stirring related devices are also centrally arranged on the top plate of the cavity, which further improves the compactness of the arrangement of related components in the vehicle-mounted microwave oven, which is beneficial to improving the space utilization of the vehicle-mounted microwave oven itself. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The accompanying drawings constituting a part of the present invention are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation on the present invention. In the accompanying drawings:

[0020] Figure 1 This is an axonometric view of the vehicle-mounted microwave oven according to an embodiment of the utility model (without the upper top plate of the shell);

[0021] Figure 2 This is a schematic diagram of the rear side of the vehicle-mounted microwave oven according to an embodiment of the utility model (without the rear plate of the housing);

[0022] Figure 3 The vehicle-mounted microwave oven described in the embodiment of the utility model is Figure 2 Exploded view of the foundation (magnetron omitted);

[0023] Figure 4 The vehicle-mounted microwave oven described in the embodiment of the utility model is Figure 2 Schematic cross section of the foundation;

[0024] Figure 5 This is a schematic structural diagram of a wave-transmitting plate of a vehicle-mounted microwave oven according to an embodiment of the utility model;

[0025] Figure 6 The figure is a schematic structural diagram of a filter bracket of a vehicle-mounted microwave oven according to an embodiment of the utility model.

[0026] Description of reference numerals:

[0027] 1. Cavity top plate; 2. Waveguide box; 3. Driving device; 4. Filtering device; 5. Magnetron; 6. Inner cavity; 7. Electrical cavity; 8. Gasket; 9. Transparent plate; 10. U-shaped plate; 11. Filter bracket; 12. Assembly area; 13. Upper convex part; 14. Stirring plate; 15. Front panel; 16. Air outlet; 17. Chamber; 18. Screw column; 19. Snap-on column; 20. Slot; 21. Assembly column; 22. Flanging; 23. Shrinkage; 24. Card interface; 25. Fixing hole. DETAILED DESCRIPTION

[0028] The following will use the terms commonly used by those skilled in the art to convey the essence of their work to other technical personnel in the art to describe the utility model concepts of the present disclosure. However, these utility model concepts can be embodied in many different forms and should not be considered as limited to the embodiments described herein.

[0029] It should be noted that, in the absence of conflict, the embodiments of the present invention and the features in the embodiments can be combined with each other.

[0030] The present invention will be described in detail below with reference to the accompanying drawings and in combination with embodiments.

[0031] In order to solve the problem that the parts of the vehicle-mounted microwave oven in the prior art are poorly arranged in a compact manner, this embodiment provides a vehicle-mounted microwave oven, as shown in the attached Figure 1-6As shown, the vehicle-mounted microwave oven includes a cavity top plate 1, a U-shaped plate 10, and a filter bracket 11. The filter bracket 11 is arranged on the upper surface of the cavity top plate 1. A wave-transmitting plate 9 is arranged on the lower side of the cavity top plate 1. The filter bracket 11, the cavity top plate 1, and the side walls of the U-shaped plate 10 are connected. The wave-transmitting plate 9 is connected to the cavity top plate 1 by fasteners, and is connected to the filter bracket 11 by snap-fitting. It should be noted that the side walls of the filter bracket 11, the cavity top plate 1, and the U-shaped plate 10 can be connected by two adjacent ones, or the three can be connected at the same time. The present application preferably configures the filter bracket 11, the cavity top plate 1, and the side walls of the U-shaped plate 10 to be connected by the same fasteners, which can be regarded as the fasteners connecting the three together at the same time.

[0032] Therefore, the present application arranges the filter bracket 11 and the wave-transmitting plate 9 together on the cavity top plate 1 and performs specific connection and fixation. On the one hand, the relevant components in the vehicle-mounted microwave oven are arranged more compactly, thereby improving the space utilization rate of the vehicle-mounted microwave oven itself. On the other hand, it is beneficial to improve the connection strength of the relevant components to avoid the separation or falling off of the components due to vehicle bumps or vibrations.

[0033] The cavity top plate 1 and the two side walls of the U-shaped plate 10 are connected to form the inner pot structure of the microwave oven. Correspondingly, the cavity top plate 1, the U-shaped plate 10 and the shell rear plate (not shown) together form the inner cavity 6 of the microwave oven.

[0034] The cavity top plate 1 is provided with an assembly area 12, and the wave-transmitting plate 9 is connected to the assembly area 12 by fastener connection; for the connection between the wave-transmitting plate 9 and the cavity top plate 1, a screw column 18 is provided on the outer edge of the wave-transmitting plate 9, and the screw column 18 passes through the assembly area 12 and is connected to the assembly area 12 by fasteners. Above the assembly area 12, a washer 8 is sleeved on the outer edge of the screw column 18, and the wave-transmitting plate 9 is fixedly connected to the cavity top plate 1 by screws.

[0035] Filter brackets 11 are provided on both sides of the assembly area 12, and any filter bracket 11 can be provided with a filter device 4, so as to improve the compatibility of related parts in the production and assembly process, so that one part can meet the assembly requirements of different models, and the cavity top plate 1 can be correctly assembled with the U-shaped plate 10 without orientation in the left and right directions, which is conducive to reducing the difficulty of assembly. At the same time, the wave-transmitting plate 9 can be connected to the filter brackets 11 on both sides of the assembly area 12 respectively, which is also conducive to improving the assembly stability of the wave-transmitting plate 9 and other parts, so as to avoid the separation or falling off of parts due to vehicle bumps or vibrations.

[0036] The filter bracket 11 has an assembly column 21, and the filter device 4 is connected to the assembly column 21 by a fastener connection. As a preferred embodiment of the present application, the filter device 4 is connected to the filter bracket 11 away from the side of the electrical cavity 7 of the vehicle-mounted microwave oven to minimize the high temperature interference and EMC interference of the electrical cavity 7 on the filter device 4. At the same time, it is also convenient to directly connect the filter device 4 to the power line on one side of the vehicle-mounted microwave oven to filter the current.

[0037] Among them, the two filter brackets 11 located on both sides of the assembly area 12 correspond to the two side walls of the U-shaped plate 10 one by one, so that the filter bracket 11 can be located above the side wall of the U-shaped plate 10 in spatial orientation; accordingly, the filter bracket 11, the cavity top plate 1, and the side wall of the U-shaped plate 10 are arranged in sequence from top to bottom and fixedly connected by fasteners. Specifically, the filter bracket 11 is provided with a fixing hole 25, and the cavity top plate 1 and the side wall of the U-shaped plate 10 are both provided with corresponding assembly holes, and the three hole structures are aligned and fixed by the same screw.

[0038] Regarding the connection between the wave-transmitting plate 9 and the filter bracket 11, a card interface 24 is provided on one side of the filter bracket 11 close to the assembly area 12, and a card connection column 19 is provided on the outer edge of the wave-transmitting plate 9 close to the filter bracket 11. The card connection column 19 penetrates the assembly area 12 and is carded with the card interface 24. Since the filter brackets 11 are provided on both sides of the assembly area 12, the wave-transmitting plate 9 can be carded with two filter brackets 11 at the same time, thereby improving the assembly reliability of the wave-transmitting plate 9. Among them, card slots 20 are provided on both sides of the card connection column 19, so that the card slots 20 are carded with the card interface 24.

[0039] In addition, the wave-transmitting plate 9 is also connected to the lower surface of the assembly area 12 in an adhesive manner, and the wave-transmitting plate 9 can be made of PP material.

[0040] The vehicle-mounted microwave oven includes a magnetron 5 and a waveguide box 2. The magnetron 5 is arranged in the electrical cavity 7 of the vehicle-mounted microwave oven. One side of the waveguide box 2 is connected to the magnetron 5, and the other side extends to above the assembly area 12, so that the microwave outlet of the waveguide box 2 is connected to the inner cavity 6 of the vehicle-mounted microwave oven.

[0041] The microwave outlet of the waveguide box 2 is provided with a driving device 3 and a stirring plate 14, the driving device 3 is connected to the waveguide box 2, the assembly area 12 has an upper convex portion 13, a chamber 17 is formed between the wave-transmitting plate 9 and the upper convex portion 13, the stirring plate 14 is arranged in the chamber 17, and the output shaft of the driving device 3 passes through the upper convex portion 13 and is connected to the stirring plate 14 to drive the stirring plate 14 to rotate. Therefore, the present application not only centrally arranges the filter bracket 11 and the wave-transmitting plate 9 at the cavity top plate 1, but also centrally arranges the waveguide box 2 and the stirring-related devices at the cavity top plate 1 on this basis, further improving the compactness of the arrangement of the relevant components in the vehicle-mounted microwave oven, which is conducive to improving the space utilization rate of the vehicle-mounted microwave oven itself.

[0042] Since the assembly area 12 is provided with an upper convex portion 13, a flange 22 is provided on the side of the filter bracket 11 close to the assembly area 12, and a constriction 23 is provided on the flange 22, and the constriction 23 is connected to the card interface 24. A plurality of constrictions 23 and card interfaces 24 may also be provided, and the two correspond to each other. On the one hand, the filter bracket 11 avoids the upper convex portion 13 through the flange 22 to avoid spatial interference, and also enables the filter bracket 11 to extend a greater distance toward the assembly area 12, which is conducive to fully meeting the space requirements for the assembly of the filter device 4. On the other hand, the constriction 23 provided on the flange 22 enables the clamping column 19 to be more smoothly clamped into the card interface 24 when the filter bracket 11 is clamped with the wave-transmitting plate 9, which facilitates the clamping assembly between the two and reduces the difficulty of the assembly operation. It should be noted that in the direction gradually approaching the card interface 24, the opening size of the constriction 23 gradually decreases, forming a gradually shrinking opening until it is smoothly connected with the card interface 24.

[0043] At the same time, the vehicle-mounted microwave oven includes a front panel 15, and the front panel 15 is provided with an air outlet 16 corresponding to the filter bracket 11, so that the heat dissipation airflow in the vehicle-mounted microwave oven can flow from the air outlet 16 to the outside of the vehicle-mounted microwave oven when passing near the filter bracket 11, and take away the heat of the filter device 4, thereby realizing the heat dissipation of the filter device 4.

[0044] Specifically, due to the upper convex portion provided in the assembly area, some areas of the cavity top plate 1 are high and some areas are low (such as high in the center and low around as shown in the figure), so that a certain cavity is formed between the cavity top plate 1 and the upper top plate of the shell (not shown), which is recorded as a gas flow channel. The gas flow channel is connected to the electrical cavity 7 and the air outlet 16 respectively, and the filter bracket 11 located on both sides of the assembly area 12 is also located in the gas flow channel. At the same time, the filter device 4 is connected to the filter bracket 11 on the side away from the electrical cavity 7 of the vehicle-mounted microwave oven. On the one hand, the heat dissipation airflow in the electrical cavity 7 can flow into the gas flow channel and flow to the filter device 4 to dissipate heat. On the other hand, since the filter device 4 is a certain distance away from the electrical cavity 7, it is beneficial to reduce the airflow velocity to a certain extent, and can effectively prevent the airflow in the electrical cavity 7 from directly impacting the filter device 4. Preferably, the assembly area 12 is located in the central area of ​​the cavity top plate 1, and an upper protrusion 13 is provided in the central area of ​​the assembly area 12, which is not only conducive to optimizing the spatial layout of related components in the vehicle-mounted microwave oven, but also allows most of the gas flow channels to surround the outer side of the upper protrusion, so that the airflow can be distributed and flow more evenly between the cavity top plate 1 and the upper top plate of the shell, which is conducive to more uniform heat dissipation of the components between the cavity top plate 1 and the upper top plate of the shell.

[0045] In the utility model, any vehicle-mounted microwave oven may include the relevant structures and assembly relationships provided in this embodiment; on this basis, the vehicle-mounted microwave oven also includes conventional components of a microwave oven including a shell, a control panel, a door body and other structures. Since they are all prior art, they will not be elaborated here.

[0046] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A wave-transmitting plate assembly structure, characterized in that: The wave-transmitting plate assembly structure comprises a cavity top plate (1), a wave-transmitting plate (9), and a filter bracket (11); the filter bracket (11) is connected to the cavity top plate (1); a wave-transmitting plate (9) is arranged on the lower side of the cavity top plate (1); the wave-transmitting plate (9) is connected to the cavity top plate (1) by fastener connection and / or bonding; and the wave-transmitting plate (9) is connected to the filter bracket (11) by snap-fitting.

2. The wave-transmitting plate assembly structure according to claim 1, characterized in that: The cavity top plate (1) is provided with an assembly area (12), and the wave-transmitting plate (9) is connected to the assembly area (12) by means of fastener connection and / or bonding.

3. The wave-transmitting plate assembly structure according to claim 2, characterized in that: A screw column (18) is arranged on the outer edge of the wave-transmitting plate (9); the screw column (18) passes through the assembly area (12) and is connected to the assembly area (12) via a fastener.

4. The wave-transmitting plate assembly structure according to claim 2, characterized in that: The wave-transmitting plate (9) is bonded to the lower surface of the assembly area (12).

5. The wave-transmitting plate assembly structure according to claim 2, characterized in that: Filter brackets (11) are arranged on both sides of the assembly area (12), and the wave-transmitting plate (9) is respectively connected to each filter bracket (11).

6. The wave-transmitting plate assembly structure according to claim 5, characterized in that: A card interface (24) is provided on one side of the filter bracket (11) close to the assembly area (12), and a card connection column (19) is provided on the outer edge of the wave-transmitting plate (9); the card connection column (19) passes through the assembly area (12) and is card-connected with the card interface (24).

7. The wave-transmitting plate assembly structure according to claim 6, characterized in that: Card slots (20) are provided on both sides of the card connection column (19), and the card slots (20) are card-connected with the card interface (24).

8. A vehicle-mounted microwave oven, characterized in that: The vehicle-mounted microwave oven comprises a magnetron (5), a waveguide box (2) and a wave-transmitting plate assembly structure according to any one of claims 1 to 7; the magnetron (5) is arranged in an electrical cavity (7) of the vehicle-mounted microwave oven, one side of the waveguide box (2) is connected to the magnetron (5), and the other side extends to above the assembly area (12), so that the microwave outlet of the waveguide box (2) is connected to the inner cavity (6) of the vehicle-mounted microwave oven.

9. The vehicle-mounted microwave oven according to claim 8, characterized in that: A driving device (3) and a stirring plate (14) are arranged at the microwave outlet of the waveguide box (2); the driving device (3) is connected to the waveguide box (2); the assembly area (12) has an upper convex portion (13); a chamber (17) is formed between the wave-transmitting plate (9) and the upper convex portion (13); the stirring plate (14) is arranged in the chamber (17); and an output shaft of the driving device (3) passes through the upper convex portion (13) and is connected to the stirring plate (14).

10. The vehicle-mounted microwave oven according to claim 8, characterized in that: The vehicle-mounted microwave oven comprises a front panel (15), the front panel (15) being provided with an air outlet (16) corresponding to the filter bracket (11), a gas flow channel being formed between the cavity top plate (1) and the upper top plate of the vehicle-mounted microwave oven housing, the filter bracket (11) being located in the gas flow channel, and the gas flow channel being respectively connected to the electrical cavity (7) and the air outlet (16).