Microcrystal panel structure for induction cooker

By setting up waterproof parts between the microcrystal plate of the induction cooker and the second connecting shell, and using the alignment and extrusion of the connecting part and the concave holes, the three are bonded to each other, and combined with the tightening mechanism of the connecting structure, sealing and waterproofing is achieved, solving the problem of water entering the interior caused by vibration of the induction cooker, and the installation is more convenient.

CN222978188UActive Publication Date: 2025-06-13ZHONGSHAN HONGCANG ELECTRIC CO LTD
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Patent Information

Application Number
CN202421585864.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-06-13
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

During use, existing induction cookers are prone to vibration to cause water and oil to enter the inside of the induction cooker, causing the risk of short circuit damage to the circuit.

Method used

A microcrystal panel structure for induction cooker is designed. By setting a waterproof member between the microcrystal panel and the second connecting shell, and aligning and extruding the connection part and the concave holes, the three are bonded to each other, and combined with the tightening mechanism of the connecting structure, sealing and waterproofing is achieved.

Benefits of technology

Effectively prevent water from entering the interior from the edge of the induction cooker, avoiding damage to the circuits in the induction cooker, and making installation more convenient.

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Abstract

The microcrystal panel structure comprises a first connecting shell, a second connecting shell is connected to the first connecting shell, a microcrystal plate is embedded in the second connecting shell, a waterproof piece is arranged between the microcrystal plate and the second connecting shell, and a plurality of concave holes are formed in the side, close to the waterproof piece, of the microcrystal plate. The second connecting shell is provided with a connecting part which can penetrate through the waterproof piece and extend into the concave hole, and when the connecting part extends into the concave hole, the connecting part is attached to the side wall of the concave hole. The second connecting shell is connected with a connecting structure which can stretch into the connecting part and can expand the connecting part outwards so that the second connecting shell, the waterproof piece and the microcrystalline plate can be connected and fixed. The utility model aims to overcome the problems in the prior art, and provides the microcrystal panel structure for the induction cooker, which is waterproof and convenient to install.
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Description

Technical Field

[0001] The utility model relates to the field of induction cookers, in particular to a microcrystalline panel structure for an induction cooker. Background Art

[0002] When an induction cooker is used for stir-frying, due to vibration generated during use, water and oil are likely to enter the interior of the induction cooker from the edge of the induction cooker, resulting in short circuits and damage to the circuit, posing a risk of damage to the induction cooker.

[0003] The present utility model is precisely generated based on the above deficiencies. Summary of the Utility Model

[0004] The purpose of the present utility model is to overcome the problems of the prior art and provide a microcrystalline panel structure for an induction cooker that can prevent water and is convenient to install.

[0005] In order to achieve the above purpose, the present utility model adopts the following solutions:

[0006] A microcrystalline panel structure for an induction cooker, including a first connection shell, a second connection shell is connected to the first connection shell, a microcrystalline plate is embedded in the second connection shell, a waterproof member is provided between the microcrystalline plate and the second connection shell, a plurality of concave holes are provided on one side of the microcrystalline plate close to the waterproof member, a connection portion is provided on the second connection shell that can penetrate the waterproof member and extend into the concave holes, and when the connection portion extends into the concave holes, the connection portion fits with the side wall of the concave holes, and a connection structure is connected to the second connection shell that can extend into the connection portion and can expand the connection portion outward to fix the second connection shell, the waterproof member and the microcrystalline plate.

[0007] The connection structure includes a mounting seat, a sliding seat that can slide vertically therein is connected in the mounting seat, a plurality of tensioning blocks that can move horizontally relative to the mounting seat are further provided outside the mounting seat, a linkage member is provided between the sliding seat and the tensioning blocks that can drive the tensioning blocks to move horizontally when the sliding seat slides vertically, and a locking component is provided between the sliding seat and the mounting seat that can fix the two.

[0008] The mounting seat includes a mounting post that can extend into the connection portion, a sliding groove for the sliding seat to slide therein is provided in the mounting post, a first connection ring is connected to the end of the mounting post, a second connection ring is connected to the first connection ring at intervals, and the second connection ring is connected to the first connection ring by screws.

[0009] A plurality of first protrusions are provided around the outer circumference of the sliding seat, second protrusions are provided on each of the tensioning blocks, and the linkage member is rotatably connected between the second protrusions and the first protrusions.

[0010] The mounting column is provided with a clearance groove in which the first protrusion can slide. The first protrusion includes a first protrusion connected to the sliding seat and able to slide in the clearance groove. The first protrusion is provided with a second protrusion. One end of the linkage is rotatably connected to the second protrusion.

[0011] The linkage parts are arranged in an I-shape.

[0012] The sliding seat comprises a sliding column, a plurality of first protrusions are arranged around the outer circumference of the sliding column, one end of the sliding column away from the first protrusion is connected to a rotating member, and the locking assembly is arranged between the rotating member and the mounting seat.

[0013] The locking assembly comprises an external thread arranged on the rotating member and an internal thread arranged on the mounting seat.

[0014] The side of the tensioning block is tilted, and the outer side of the tensioning block is arc-shaped.

[0015] The waterproof component is an annular sealing strip, and a mounting groove for mounting the waterproof component is provided in the second connecting shell.

[0016] Compared with the existing technology, the utility model has the following advantages: when adopting this structure, the waterproof part is arranged between the microcrystalline board and the second connecting shell, and then the connecting part on the second connecting shell is aligned with the concave hole on the microcrystalline board, and then the second connecting shell and the microcrystalline board are squeezed so that the three are fitted with each other, and then the connecting structure is extended into the connecting part, and then the connecting structure is operated to make the connecting structure expand outward, and the three are locked to achieve sealing and waterproofing; during the use of the induction cooker, water can be effectively prevented from entering the induction cooker from the edge of the induction cooker, avoiding water from damaging the circuit in the induction cooker. At the same time, a first connecting shell is arranged, so that the second connecting shell can be connected to the first connecting shell by snapping or sticking, and installation is more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the structure of the microcrystalline panel for the induction cooker of the utility model;

[0018] Figure 2 This is an exploded view of the microcrystalline panel structure for an induction cooker of the utility model;

[0019] Figure 3 It is a cross-sectional view of the microcrystalline panel structure for an induction cooker of the utility model;

[0020] Figure 4 It is a structural schematic diagram of the connection structure in the microcrystalline panel structure for an induction cooker of the utility model;

[0021] Figure 5 This is an exploded view of the connection structure in the microcrystalline panel structure for an induction cooker of the utility model;

[0022] Figure 6 This is a cross-sectional view of the tensioning block in a tensioned state in the microcrystalline panel structure for an induction cooker of the present utility model;

[0023] Figure 7 This is a schematic diagram of the microcrystalline panel in the microcrystalline panel structure for an induction cooker of the present utility model.

[0024] Reference numerals: first connection shell 1; second connection shell 2, connection part 21, installation groove 22; microcrystalline panel 3, concave hole 31; waterproof member 4; connection structure 5, installation seat 51, installation post 511, relief groove 5111, sliding groove 512, first connection ring 513, second connection ring 514, screw 515, sliding seat 52, first protrusion 521, first convex block 5211, second convex block 5212, sliding post 522, rotating member 523, tensioning block 53, second protrusion 531, linkage member 54, locking assembly 55. Specific embodiments

[0025] The following further describes the present utility model in detail with reference to embodiments:

[0026] The following further describes in detail the specific embodiments of the present utility model with reference to the accompanying drawings and embodiments. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0027] As Figures 1 to 7 shown, a microcrystalline panel structure for an induction cooker includes a first connection shell 1, a second connection shell 2 is connected to the first connection shell 1, a microcrystalline panel 3 is embedded in the second connection shell 2, a waterproof member 4 is provided between the microcrystalline panel 3 and the second connection shell 2, a plurality of concave holes 31 are provided on one side of the microcrystalline panel 3 close to the waterproof member 4, a connection part 21 capable of passing through the waterproof member 4 and extending into the concave holes 31 is provided on the second connection shell 2, and when the connection part 21 extends into the concave holes 31, the connection part 21 is in contact with the side walls of the concave holes 31, and a connection structure 5 capable of extending into the connection part 21 and capable of expanding the connection part 21 outward to connect and fix the second connection shell 2, the waterproof member 4 and the microcrystalline panel 3 is connected to the second connection shell 2.

[0028] When adopting this structure, the waterproof member 4 is arranged between the microcrystalline plate 3 and the second connection shell 2. Then, the connection part 21 on the second connection shell 2 is aligned with the concave hole 31 on the microcrystalline plate 3. Then, the second connection shell 2 and the microcrystalline plate 3 are squeezed so that the three fit together. Then, the connection structure 5 is inserted into the connection part 21. Then, the connection structure 5 is operated to make the connection structure 5 expand outwards and tighten, locking the three to achieve waterproof sealing. During the use of the induction cooker, it can effectively prevent water from entering the interior of the induction cooker from the edge of the induction cooker, avoiding damage to the internal circuit of the induction cooker caused by water. At the same time, the first connection shell 1 is provided, which facilitates the second connection shell 2 to be connected to the first connection shell 1 by clamping or gluing, making the installation more convenient.

[0029] As Figures 3 to 6 shown, the connection structure 5 includes a mounting seat 51. A sliding seat 52 that can slide vertically therein is connected inside the mounting seat 51. A plurality of tensioning blocks 53 that can move horizontally relative to it are also provided outside the mounting seat 51. A linkage member 54 is provided between the sliding seat 52 and the tensioning blocks 53, which can drive the tensioning blocks 53 to move horizontally when the sliding seat 52 slides vertically. A locking assembly 55 is provided between the sliding seat 52 and the mounting seat 51 to fix the two. Operating the locking assembly 55 drives the sliding seat 52 to slide relative to the mounting seat 51. When the sliding seat 52 slides, the linkage member 55 is driven, and then the tensioning blocks 53 move horizontally relative to the mounting seat 51, expanding outwards or contracting inwards to leave the connection part 21.

[0030] As Figures 3 to 6 shown, the mounting seat 51 includes a mounting post 511 that can extend into the connection part 21. A chute 512 for the sliding seat 52 to slide therein is provided inside the mounting post 511. The end of the mounting post 511 is connected with a first connection ring 513. A second connection ring 514 is connected to the first connection ring 513 at intervals. The second connection ring 514 is connected to the first connection ring 513 by screws 515. The mounting post 511 is used to be clamped into the connection part 21 for fixation. The chute 512 inside the mounting post 511 is used for the sliding seat 52 to slide, for guiding, so that the sliding seat 52 can slide more smoothly when sliding.

[0031] As Figures 3 to 6 shown,

[0032] A plurality of first protrusions 521 are provided on the outer periphery of the sliding seat 52. Second protrusions 531 are provided on each of the tensioning blocks 53. The linkage member 54 is rotatably connected between the second protrusions 531 and the first protrusions 521. When the sliding seat 52 slides relative to the mounting seat 51, it can drive a plurality of first protrusions 521 to follow and slide. The plurality of first protrusions 521 drive a plurality of linkage members 54 to move. When the linkage members 54 move, they drive the second protrusions 531 to move, and then push the tensioning blocks 53 to move horizontally.

[0033] As shown Figures 3 to 6 in the figure, a relief groove 5111 capable of allowing the first protrusion 521 to slide therein is provided on the mounting post 511. The first protrusion 521 includes a first bump 5211 connected to the sliding seat 52 and capable of sliding in the relief groove 5111. A second bump 5212 is provided on the first bump 5211. One end of the linkage member 54 is rotatably connected to the second bump 5212. The relief groove 5111 and the first bump 5211 are used to cooperate and guide the sliding.

[0034] As shown Figure 5 in the figure, the linkage member 54 is arranged in an I-shape, which is convenient for workers to process.

[0035] As shown Figure 5 in the figure, the sliding seat 52 includes a sliding column 522. A plurality of the first protrusions 521 are arranged around the outer periphery of the sliding column 522. One end of the sliding column 522 away from the first protrusion 521 is connected with a rotating member 523. The locking assembly 55 is arranged between the rotating member 523 and the mounting seat 51. The rotating member 523 and the sliding column 522 are rotatably connected, which is convenient for users to operate.

[0036] As shown Figure 4 in the figure, the locking assembly 55 includes an external thread provided on the rotating member 523 and an internal thread provided on the mounting seat 51. The rotating member 523 is locked by the thread, and the locking effect is better. At the same time, the rotating member 523 can adjust its position relative to the mounting seat 51 through the thread.

[0037] As shown Figure 4 in the figure, the side of the tensioning block 53 is inclined, so that when each tensioning block 53 retracts, they can abut against each other. The connecting portion 21 is an annular sheet, and the outer side surface of the tensioning block 53 is arc-shaped, which is convenient for abutting against the inner wall surface of the connecting portion 21 and is fixed more firmly.

[0038] As shown Figure 2 in the figure, the waterproof member 4 is an annular sealing strip. An installation groove 22 for installing the waterproof member 4 is provided in the second connecting shell 2, which is used to fix the waterproof member 4 and is more convenient for installation.

[0039] The above has generally described the present invention in detail. However, based on the present invention, some modifications or improvements can be made, which are obvious to those of ordinary skill in the technical field. Therefore, the modifications or improvements made without departing from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A microcrystalline panel structure for an induction cooker, characterized in that: The invention comprises a first connection shell (1), the first connection shell (1) is connected to a second connection shell (2), a microcrystalline board (3) is embedded in the second connection shell (2), a waterproof component (4) is provided between the microcrystalline board (3) and the second connection shell (2), a plurality of recessed holes (31) are provided on a side of the microcrystalline board (3) close to the waterproof component (4), the second connection shell (2) is provided with a connection portion (21) capable of passing through the waterproof component (4) and extending into the recessed hole (31), and when the connection portion (21) extends into the recessed hole (31), the connection portion (21) is fitted with a side wall of the recessed hole (31), and the second connection shell (2) is connected to a connection structure (5) capable of extending into the connection portion (21) and tightening the connection portion (21) outward so that the second connection shell (2), the waterproof component (4) and the microcrystalline board (3) are connected and fixed.

2. The microcrystalline panel structure for an induction cooker according to claim 1, characterized in that: The connection structure (5) comprises a mounting seat (51), the mounting seat (51) is internally connected with a sliding seat (52) capable of vertically sliding therein, the mounting seat (51) is also externally provided with a plurality of tensioning blocks (53) capable of horizontally moving relative thereto, a linkage member (54) is provided between the sliding seat (52) and the tensioning blocks (53) capable of driving the tensioning blocks (53) to horizontally move when the sliding seat (52) vertically slides, and a locking assembly (55) capable of fixing the sliding seat (52) and the mounting seat (51) is provided between the sliding seat (52) and the mounting seat (51).

3. The microcrystalline panel structure for an induction cooker according to claim 2, characterized in that: The mounting seat (51) includes a mounting column (511) that can extend into the connecting portion (21), and a sliding groove (512) is provided in the mounting column (511) for the sliding seat (52) to slide therein, and a first connecting ring (513) is connected to the end of the mounting column (511), and a second connecting ring (514) is connected to the first connecting ring (513) at intervals, and the second connecting ring (514) is connected to the first connecting ring (513) by a screw (515).

4. The microcrystalline panel structure for an induction cooker according to claim 3, characterized in that: A plurality of first protrusions (521) are arranged around the outer periphery of the sliding seat (52), a second protrusion (531) is arranged on each of the tensioning blocks (53), and the linkage member (54) is rotatably connected to the second protrusion (531) and the first protrusion (521).

5. The microcrystalline panel structure for an induction cooker according to claim 4, characterized in that: The mounting column (511) is provided with a clearance groove (5111) in which the first protrusion (521) can slide, and the first protrusion (521) includes a first protrusion (5211) connected to the sliding seat (52) and able to slide in the clearance groove (5111), and the first protrusion (5211) is provided with a second protrusion (5212), and one end of the linkage member (54) is rotatably connected to the second protrusion (5212).

6. The microcrystalline panel structure for an induction cooker according to claim 2, characterized in that: The linkage member (54) is arranged in an I-shape.

7. The microcrystalline panel structure for an induction cooker according to claim 5, characterized in that: The sliding seat (52) includes a sliding column (522), a plurality of first protrusions (521) are arranged around the outer circumference of the sliding column (522), one end of the sliding column (522) away from the first protrusion (521) is connected to a rotating member (523), and the locking assembly (55) is arranged between the rotating member (523) and the mounting seat (51).

8. The microcrystalline panel structure for an induction cooker according to claim 2, characterized in that: The locking assembly (55) comprises an external thread provided on the rotating member (523) and an internal thread provided on the mounting seat (51).

9. The microcrystalline panel structure for an induction cooker according to claim 2, characterized in that: The side edge (532) of the tensioning block (53) is arranged obliquely, and the outer side surface (533) of the tensioning block (53) is arranged in an arc shape.

10. The microcrystalline panel structure for an induction cooker according to claim 1, characterized in that: The waterproof component (4) is an annular sealing strip, and a mounting groove (22) for mounting the waterproof component (4) is provided in the second connecting shell (2).