Panel assembly and induction cooker device

By connecting a rectangular microcrystalline plate to a long rectangular tempered glass plate on an induction cooker and using strip splicing parts to eliminate gaps, the problem of high cost and monotonous visual effect of microcrystalline plates for induction cookers is solved, achieving the effect of reducing costs and enriching display effects.

CN223755421UActive Publication Date: 2026-01-02CHINABEST HOME APPLIANCE
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Patent Information

Application Number
CN202520133478.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-01-02
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

The existing microcrystalline panels of induction cookers are expensive and have a monotonous visual effect, with limited display options and insufficient aesthetic appeal in the touch button area and digital display area.

Method used

A rectangular microcrystalline panel is connected to a long rectangular tempered glass panel, and strip splicing parts are used to eliminate gaps. The tempered glass panel replaces part of the microcrystalline panel to reduce costs and improve light transmittance, thus enriching the display effect.

Benefits of technology

It reduces costs, improves aesthetics, and enriches display effects. The light transmittance of the tempered glass panel allows various colors of light to pass through, enhancing the visual appeal of the induction cooker.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a panel assembly and an induction cooker device, which both comprise a rectangular microcrystalline plate and a strip rectangular toughened glass plate which is arranged on the edge of the front side of the microcrystalline plate and extends along the left-right direction of the microcrystalline plate, the microcrystal plate and the toughened glass plate are connected through a strip-shaped splicing piece so as to eliminate a gap between the microcrystal plate and the toughened glass plate. According to the panel assembly of the structure, the rectangular microcrystalline plate and the strip-shaped rectangular tempered glass plate are connected through the strip-shaped splicing pieces to form the panel assembly, the microcrystalline plate is a heating panel, the tempered glass plate is an operation panel with touch keys, and the tempered glass plate replaces part of the microcrystalline plate, so that the cost can be reduced; and the light transmittance of the tempered glass plate is better, so that light of various colors can penetrate through the tempered glass plate, the display effect is enriched, and the attractiveness is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a panel assembly and an electromagnetic oven device. BACKGROUND

[0002] The panel of the electromagnetic oven is generally a whole piece of microcrystalline plate, the middle part of the microcrystalline plate is used to place the pot to be heated, and the front side part of the microcrystalline plate is the touch button area and the digital color display area. The microcrystalline plate has high strength and wear resistance, is suitable for long-time high-temperature use, and has strong scratch resistance and stain resistance, but its cost is relatively high, and the use of the microcrystalline plate in the touch button area and the digital color display area causes unnecessary cost waste, and the whole piece of microcrystalline plate is also very monotonous in visual effect and has poor aesthetic degree. In addition, the material color of the general microcrystalline plate is dark, in order to enable the display unit below the microcrystalline plate to transmit light through the microcrystalline plate, the display unit of most electromagnetic ovens adopts a red light source, which leads to single display effect and insufficient aesthetic degree. SUMMARY

[0003] The utility model aims at at least solving one of the technical problems existing in the prior art. For this purpose, one of the purposes of the utility model is to provide a low-cost panel assembly for an electromagnetic oven that can penetrate multiple color light; and the other purpose is to provide an electromagnetic oven device using the above panel assembly.

[0004] According to the panel assembly of the first aspect of the utility model, the rectangular microcrystalline plate and the long-strip rectangular tempered glass plate arranged along the left-right direction of the microcrystalline plate are connected by the strip-shaped splicing piece to eliminate the gap between the microcrystalline plate and the tempered glass plate.

[0005] The panel assembly according to the utility model embodiment has at least the following beneficial effects:

[0006] The panel assembly with the above structure is connected by the strip-shaped splicing piece, the rectangular microcrystalline plate is the heating panel, and the long-strip rectangular tempered glass plate is the operation panel of the touch button, so that the tempered glass plate replaces part of the microcrystalline plate to reduce the cost, and the light transmission of the tempered glass plate is better to enable multiple color light to penetrate, thereby enriching the display effect and improving the aesthetic degree.

[0007] In some embodiments of this utility model, the strip splicing component includes a caulking rib embedded in the gap between the microcrystalline plate and the tempered glass plate. The upper end of the caulking rib is connected to an upper clamping strip that abuts against the upper surface of the microcrystalline plate and the upper surface of the tempered glass plate. The length of the caulking rib and the upper clamping strip are consistent with the length of the tempered glass plate, so that the upper clamping strip can completely cover the gap between the microcrystalline plate and the tempered glass plate.

[0008] In some embodiments of this utility model, the strip splicing component further includes a lower clamping strip connected to the lower end of the joint filler strip. The cross-section of the whole consisting of the lower clamping strip, the joint filler strip, and the upper clamping strip is "I" shaped. The lower clamping strip and the upper clamping strip together clamp the microcrystalline plate and the tempered glass plate.

[0009] In some embodiments of this utility model, the dimension of the lower clamping strip along the width direction of the microcrystalline plate is larger than the dimension of the upper clamping strip along the width direction of the microcrystalline plate, so that the lower clamping strip can support the microcrystalline plate and the tempered glass plate upward.

[0010] In some embodiments of this utility model, the upper clamping strip protrudes by an dimension A along the thickness direction of the filler strip, where 1mm < A < 5mm, and the lower clamping strip protrudes by an dimension B along the thickness direction of the filler strip, where 5mm < B < 20mm.

[0011] In some embodiments of this utility model, at least one of the upper clamping strip, the joint filling strip, and the lower clamping strip is bonded to the microcrystalline plate and the tempered glass plate by an adhesive.

[0012] In some embodiments of this utility model, the upper surface of the lower clamping strip is provided with a long groove facing the lower surface of the microcrystalline plate and the tempered glass plate, the long groove extending along the left and right direction of the microcrystalline plate and accommodating the colloid.

[0013] In some embodiments of this utility model, there are clearance spaces between the left end of the lower clamping strip and the left edge of the microcrystalline plate and the tempered glass plate, and between the right end of the lower clamping strip and the right edge of the microcrystalline plate and the tempered glass plate. A support beam orthogonal to the lower clamping strip and passing through the clearance space is installed on the left and right sides of the lower end face of the microcrystalline plate and the tempered glass plate, respectively.

[0014] In some embodiments of this utility model, the upper surface of the upper clamping strip has a first inclined surface that is inclined toward the microcrystalline plate and a second inclined surface that is inclined toward the tempered glass plate.

[0015] According to the second aspect of the utility model discloses an electromagnetic oven device, including the panel subassembly of any one of the above technical schemes. The electromagnetic oven device adopts the toughened glass board to replace part's microcrystalline board not only can reduce cost, and the light transmittance of toughened glass board is better to can supply multiple color light to penetrate, thereby rich display effect, improve the aesthetic degree.

[0016] The additional aspects and advantages of the utility model will be partly given in the following description, some will become obvious from the following description, or be understood by the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0017] The above and / or additional aspects and advantages of the utility model will become apparent and more readily understood from the following description, taken in conjunction with the accompanying drawings, in which:

[0018] Figure 1 It is structural schematic diagram of one embodiment of the panel subassembly of the utility model;

[0019] Figure 2 It is Figure 1 It is the local section schematic drawing of embodiment at bar splicing piece;

[0020] Figure 3 It is Figure 1 It is structural exploded schematic drawing of embodiment;

[0021] Figure 4 It is structural schematic diagram of one embodiment of the electromagnetic oven device of the utility model.

[0022] Reference signs:

[0023] Microcrystalline board 100;Toughened glass board 200;Bar splicing piece 300;Filling joint rib 310;Upper clamping strip 320;First inclined surface 321;Second inclined surface 322;Lower clamping strip 330;Long strip sink groove 331;Support beam 400. DETAILED DESCRIPTION

[0024] The embodiments of the utility model are described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the utility model, and cannot be understood as limiting the utility model.

[0025] In the description of the utility model, need understanding, if relate to the direction description, for example the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and so on the direction or position relation indicated is based on the direction or position relation shown in the drawing, just is for the convenience of describing the utility model and simplifying the description, and not indicate or imply the device or element indicated must have a particular direction, with a particular direction configuration and operation, therefore can not be understood as the restriction of the utility model.

[0026] In the description of the utility model, several meanings are one or more, and the meaning of multiple is more than two, greater than, less than, more than and the like are not included in the number, and above, below, within and the like are included in the number.If the first, second is described, it is only used for distinguishing technical features for the purpose, and can not be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.

[0027] In the description of the utility model, it needs to be explained that, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or it can be indirectly connected through an intermediate medium, it can be the communication inside two elements.For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0028] Referring to Figures 1 to 3 The utility model discloses a kind of panel assemblies, comprising: rectangular microcrystalline plate 100 and long strip rectangular toughened glass plate 200 being arranged along the left and right direction of the rectangular microcrystalline plate 100 and being arranged at the front side edge of the rectangular microcrystalline plate 100, the rectangular microcrystalline plate 100 and the toughened glass plate 200 are connected by strip splicing piece 300 to eliminate the gap between the rectangular microcrystalline plate 100 and the toughened glass plate 200.

[0029] The panel assembly of the above structure is connected by strip splicing piece 300 with rectangular microcrystalline plate 100 and long strip rectangular toughened glass plate 200, microcrystalline plate 100 is heating panel, toughened glass plate 200 is the operating panel of touch button, toughened glass plate 200 replaces part of microcrystalline plate 100 not only can reduce cost, and the light transmittance of toughened glass plate 200 is better to be able to supply multiple color light penetration, to enrich display effect, improve aesthetic degree.

[0030] Referring to Figure 1 And Figure 2In some embodiments of this utility model, the strip splicing component 300 includes a caulking rib 310 embedded in the gap between the microcrystalline plate 100 and the tempered glass plate 200. The upper end of the caulking rib 310 is connected to an upper clamping strip 320 that abuts against the upper surface of the microcrystalline plate 100 and the upper surface of the tempered glass plate 200. The length of the caulking rib 310 and the upper clamping strip 320 are consistent with the length of the tempered glass plate 200, so that the upper clamping strip 320 can completely cover the gap between the microcrystalline plate 100 and the tempered glass plate 200. Understandably, the grouting strip 310 extends along the length of the tempered glass plate 200 and the microcrystalline plate 100 to fill the gap between the microcrystalline plate 100 and the tempered glass plate 200, reducing the chance of dirt accumulating. The upper clamping strip 320 covers the gap between the microcrystalline plate 100 and the tempered glass plate 200, restricting the inflow of foreign matter and also serving a decorative purpose.

[0031] Furthermore, it is conceivable that the tempered glass panel 200 can be in a completely different color from the microcrystalline panel 100. The tempered glass panel 200 is not limited to a transparent style, and users can choose according to their personal preferences, making the product more personalized and with a high degree of freedom in appearance.

[0032] See Figure 2 In some embodiments of this utility model, to prevent the strip splicing component 300 from moving vertically, the strip splicing component 300 further includes a lower clamping strip 330 connected to the lower end of the filler rib 310. The cross-section of the whole formed by the lower clamping strip 330, the filler rib 310, and the upper clamping strip 320 is "I" shaped. The lower clamping strip 330 and the upper clamping strip 320 together clamp the microcrystalline plate 100 and the tempered glass plate 200, thereby achieving a stable connection between the microcrystalline plate 100 and the tempered glass plate 200. It can be imagined that the microcrystalline plate 100 and the tempered glass plate 200 are respectively embedded between the lower clamping strip 330 and the upper clamping strip 320 from opposite sides of the strip splicing component 300, forming a tight fit. In this embodiment, the strip splicing component 300 is an aluminum profile; of course, the strip splicing component 300 can also be selected as a rubber component.

[0033] See Figure 1 In some embodiments of this utility model, the dimension of the lower clamping strip 330 along the width direction of the microcrystalline plate 100 is larger than the dimension of the upper clamping strip 320 along the width direction of the microcrystalline plate 100, so that the lower clamping strip 330 can support the microcrystalline plate 100 and the tempered glass plate 200 upwards. It is understood that a pot to be heated is generally placed on the microcrystalline plate 100, and only when the above conditions are met can the lower clamping strip 330 provide greater support to the microcrystalline plate 100.

[0034] In some embodiments of the utility model, the size of the upper clamping strip 320 protruding along the thickness direction of the joint filling bar 310 is A, 1mm < A < 5mm, and the size of the lower clamping strip 330 protruding along the thickness direction of the joint filling bar 310 is B, 5mm < B < 20mm. It should be noted that if the width of the upper clamping strip 320 is too small, it may not be able to block the gap between the microcrystalline plate 100 and the tempered glass plate 200, and if the width of the upper clamping strip 320 is too large, it will affect the overall aesthetics of the panel assembly. When 1mm < A < 5mm, the functionality and aesthetics can be satisfied at the same time. When 5mm < B < 20mm, the lower clamping strip 330 can provide greater support to the microcrystalline plate 100.

[0035] In some embodiments of the utility model, in order to prevent the strip-shaped splicing piece 300 from moving relatively, at least one of the upper clamping strip 320, the joint filling bar 310 and the lower clamping strip 330 is bonded to the microcrystalline plate 100 and the tempered glass plate 200 by a colloid. Specifically, the upper clamping strip 320, the joint filling bar 310 and the lower clamping strip 330 define two U-shaped grooves arranged opposite each other on the sides, and the colloid is pre-coated in the two U-shaped grooves. The microcrystalline plate 100 and the tempered glass plate 200 are respectively embedded in the two U-shaped grooves to complete the assembly.

[0036] Referring to Figure 2 In some embodiments of the utility model, the upper surface of the lower clamping strip 330 is provided with a long groove 331 facing the lower surface of the microcrystalline plate 100 and the tempered glass plate 200, the long groove 331 is arranged along the left-right direction of the microcrystalline plate 100 and contains the colloid, which is beneficial to further improve the reliability of the adhesion between the colloid and the lower clamping strip 330.

[0037] Referring to Figure 3 In some embodiments of the utility model, in order to further improve the load capacity of the panel assembly in the direction of gravity and ensure that the microcrystalline plate 100 and the tempered glass plate 200 do not fall off during use of the electromagnetic oven, the left end of the lower clamping strip 330 and the left side edge of the microcrystalline plate 100 and the tempered glass plate 200, and the right end of the lower clamping strip 330 and the right side edge of the microcrystalline plate 100 and the tempered glass plate 200, all have a clearance 332, and the left and right sides of the lower end surface of the microcrystalline plate 100 and the tempered glass plate 200 are respectively provided with a support beam 400 which is orthogonal to the lower clamping strip 330 and passes through the clearance 332.

[0038] Referring to Figure 2In some embodiments of the present application, the upper surface of the upper clamping strip 320 has a first inclined surface 321 inclined towards the microcrystalline plate 100 and a second inclined surface 322 inclined towards the tempered glass plate 200. It can be understood that the dust or water falling on the upper clamping strip 320 can be discharged along the first inclined surface 321 and the second inclined surface 322 towards both sides, reducing accumulation. In addition, it can be understood that the upper clamping strip 320 is a part protruding from the upper surface of the microcrystalline plate 100 and the tempered glass plate 200. The upper clamping strip 320 can also function as a water baffle to separate the microcrystalline plate 100 and the tempered glass plate 200. When the water in the pot on the microcrystalline plate 100 boils and spills, the water will not enter the tempered glass plate 200 to affect the touch button.

[0039] Referring to Figure 4 The present application also discloses an electromagnetic oven device comprising the panel assembly of any of the above technical solutions. The electromagnetic oven device uses the tempered glass plate 200 to replace part of the microcrystalline plate 100, which not only reduces the cost, but also has better light transmission to allow various color lights to penetrate, thereby enriching the display effect and improving the aesthetic appearance.

[0040] The technical features of the above embodiments can be combined arbitrarily. To make the description concise, all possible combinations of the technical features in the above embodiments are not described, but as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present application.

[0041] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application. The scope of the present application is defined by the claims and their equivalents.

Claims

1. A panel assembly, characterized by include: A rectangular microcrystalline plate (100) and a long rectangular tempered glass plate (200) arranged on the front edge of the microcrystalline plate (100) and extending along the left and right directions of the microcrystalline plate (100). The microcrystalline plate (100) and the tempered glass plate (200) are connected by a strip splicing member (300) to eliminate the gap between the microcrystalline plate (100) and the tempered glass plate (200).

2. A panel assembly according to claim 1, characterized in that: The strip splicing component (300) includes a caulking strip (310) embedded in the gap between the microcrystalline plate (100) and the tempered glass plate (200). The upper end of the caulking strip (310) is connected to an upper clamping strip (320) that abuts against the upper surface of the microcrystalline plate (100) and the upper surface of the tempered glass plate (200). The length of the caulking strip (310) and the upper clamping strip (320) are consistent with the length of the tempered glass plate (200) so that the upper clamping strip (320) can completely cover the gap between the microcrystalline plate (100) and the tempered glass plate (200).

3. A panel assembly according to claim 2, characterized in that: The strip splicing component (300) also includes a lower clamping strip (330) connected to the lower end of the filler strip (310). The cross-section of the whole consisting of the lower clamping strip (330), the filler strip (310) and the upper clamping strip (320) is "I". The lower clamping strip (330) and the upper clamping strip (320) together clamp the microcrystalline plate (100) and the tempered glass plate (200).

4. A panel assembly according to claim 3, characterized in that: The lower clamping strip (330) is larger in the width direction of the microcrystalline plate (100) than the upper clamping strip (320) is in the width direction of the microcrystalline plate (100), so that the lower clamping strip (330) can support the microcrystalline plate (100) and the tempered glass plate (200) upward.

5. A panel assembly according to claim 4, characterized in that: The upper clamping strip (320) protrudes by an dimension A along the thickness direction of the filler strip (310), where 1mm < A < 5mm, and the lower clamping strip (330) protrudes by an dimension B along the thickness direction of the filler strip (310), where 5mm < B < 20mm.

6. A panel assembly according to claim 3, characterized in that: At least one of the upper clamping strip (320), the joint filling strip (310), and the lower clamping strip (330) is bonded to the microcrystalline plate (100) and the tempered glass plate (200) by an adhesive.

7. A panel assembly according to claim 6, characterized in that: The upper surface of the lower clamping strip (330) is provided with a long groove (331) facing the lower surface of the microcrystalline plate (100) and the tempered glass plate (200), the long groove (331) is arranged along the left-right direction of the microcrystalline plate (100) and contains the glue.

8. The panel assembly of claim 3, wherein: The left end of the lower clamping strip (330) and the right end of the lower clamping strip (330) are provided with a clearance (332) between the left side edge of the microcrystalline plate (100) and the tempered glass plate (200), and the right side edge of the microcrystalline plate (100) and the tempered glass plate (200), respectively, and the lower end surface of the microcrystalline plate (100) and the tempered glass plate (200) is respectively provided with a support beam (400) orthogonal to the lower clamping strip (330) and passing through the clearance (332).

9. The panel assembly of claim 2, wherein: The upper surface of the upper clamping strip (320) has a first inclined surface (321) inclined to the microcrystalline plate (100) and a second inclined surface (322) inclined to the tempered glass plate (200).

10. An electromagnetic cooking device, characterized by The panel assembly according to any one of claims 1-9.