Wire arrangement structure of induction cooker shell

By setting adjustable movable parts and fixing parts in the induction cooker housing to form an adjustable pore in the induction cooker housing, the problem that the conductor tubes in the prior art cannot adapt to the conductors of multiple specifications is solved, and the stable passage of the conductors and simplified production and use process is achieved.

CN222839948UActive Publication Date: 2025-05-06AIDIBAO ELECTRIC APPLIANCES NANHAI CITY
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Patent Information

Application Number
CN202421386516.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-17
Publication Date
2025-05-06
Estimated Expiration
2034-06-17

AI Technical Summary

Technical Problem

The conduits of existing induction cookers cannot be adapted to the threading of multiple specifications of conductors at the same time, resulting in the need to replace the conduits in different models of induction cookers, which increases the complexity of production and use.

Method used

A line structure for induction cooker housing is designed, including a movable member and a fixing member that can be adjusted in the x-direction in the housing, and the movable member and the fixing member are fixed through locking members to form a hole with adjustable distances to adapt to conducting wires of different specifications.

Benefits of technology

This structure can adjust the distance of the pores according to the wires of different specifications, ensure that the wires pass through stably, avoid loosening, and simplify the production and use of the induction cooker.

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Abstract

The utility model relates to the technical field of induction cookers, and particularly discloses an induction cooker shell wire arrangement structure, which comprises a shell and a wire arrangement structure, and is characterized in that the shell is provided with a through hole penetrating along the z direction; the wire arranging structure comprises a fixed part installed in the through hole, a movable part arranged in the fixed part and capable of adjusting the position in the x direction, and a locking part used for fixing the movable part and the fixed part, the movable part and the fixed part are matched to form a hole capable of adjusting the distance in the x direction, and the hole is used for a wire to penetrate through; the movable part capable of adjusting the position in the x direction is arranged in the fixed part, the movable part and the fixed part are matched to form the hole capable of adjusting the distance in the x direction, and after wires of different specifications penetrate through the hole, the position of the movable part in the x direction is adjusted according to the diameter or number of the penetrating wires, so that the distance of the hole in the x direction is adjusted; and the movable part and the fixed part are fixed through the locking part, and the movable part is used for pressing the wire to avoid loosening of the wire, so that the structure is ingenious.
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Description

Technical Field

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

[0002] An induction cooker is an electrical cooking appliance made based on the principle of electromagnetic induction heating. It mainly uses a coil disk to generate a low-frequency alternating magnetic field under the action of a control circuit, which generates a large amount of dense eddy current through the magnetic pot and converts the induced current into heat to heat food.

[0003] The shell of the induction cooker usually needs to have a threading hole for the wire to pass through. In order to prevent the wire from loosening and adjust the extension length of the wire, some wire tubes are usually used to cover the wire. This type of structure can refer to a solar induction cooker disclosed in Chinese patent announcement number CN107606656A, which includes an induction cooker body, a battery, a socket, a plug, a solar charging device, and the solar charging device includes a solar cell assembly, a charge and discharge controller, and a plurality of detachable wire tubes; the two ends of the detachable wire tube are respectively a metal external threaded tube and a metal internal threaded tube, and wires are inserted into the detachable wire tubes, and the wires are electrically connected to the metal external threaded tubes and the metal internal threaded tubes at the two ends; multiple detachable wire tubes are connected end to end through the mutual cooperation of the metal external threaded tube and the metal internal threaded tube, and the setting of the detachable wire tube allows the user to adjust the length of the wire as needed.

[0004] The structure of the wire tube is adopted, and one wire tube can only be used for the threading of wires of one size. For induction cooker manufacturers, since different models of induction cookers use wires of different sizes, one specification of wire tube cannot be used for the threading of wires of multiple specifications at the same time.

[0005] Therefore, the prior art still needs to be improved and developed. Utility Model Content

[0006] In view of the above-mentioned deficiencies of the prior art, the purpose of the present invention is to provide a wire management structure for an induction cooker housing to solve the problem that the induction cooker of the prior art adopts a wire tube which cannot be adapted to the threading of wires of various specifications.

[0007] A wire management structure for an induction cooker shell comprises a shell and a wire management structure. The shell is provided with a through hole penetrating along the z direction. The wire management structure comprises a fixing part installed in the through hole, a movable part arranged in the fixing part and capable of adjusting the position along the x direction, and a locking part for fixing the movable part and the fixing part. The movable part cooperates with the fixing part to form a gap whose distance can be adjusted along the x direction, and the gap is used to pass the wire.

[0008] Specifically, the fixed part is provided with a wire passing hole that passes through along the z direction, and the movable part moves in the wire passing hole along the x direction and the z direction. The fixed part is also provided with an inclined first guide surface, which is located on one side of the wire passing hole along the x direction, and the movable part is provided with a second guide surface that slides with the first guide surface.

[0009] Specifically, the movable part is provided with a waist hole along the x-direction, and the locking part passes through the waist hole and is fixed to the fixing part.

[0010] Specifically, a boss is provided on the first guide surface, a screw hole is provided on the boss, and the locking member has a threaded portion, which passes through the waist hole and is threadedly connected with the screw hole.

[0011] Specifically, the fixing member includes a lower frame, and a plurality of reinforcing ribs along the x-direction are arranged on the lower surface of the lower frame, and the reinforcing ribs are located at the periphery of the wire passing hole.

[0012] Specifically, the fixing member further comprises an upper frame connected to the upper end of the lower frame, a plurality of ribs are formed on the outer surface of the upper frame, and an inclined third guide surface is formed on the outer side of the upper end of the rib.

[0013] Specifically, an elastic buckle is connected to the outer side surface of the upper frame, and after the fixing piece is installed in the through hole, the upper surface of the shell is clamped by the elastic buckle.

[0014] Specifically, the fixed part and the movable part are connected via a connecting part.

[0015] Specifically, the fixed part, the movable part and the connecting part are integrally formed by injection molding.

[0016] Beneficial effects of the utility model:

[0017] The utility model discloses an induction cooker shell wire management structure, in which a movable part whose position can be adjusted along the x-direction is arranged inside a fixed part, and the movable part cooperates with the fixed part to form a gap whose distance can be adjusted along the x-direction. After wires of different specifications pass through the gap, the position of the movable part along the x-direction is adjusted according to the diameter or number of the wires passed through the gap, thereby adjusting the size of the gap distance along the x-direction, and then fixing the movable part and the fixed part by a locking part, and using the movable part to press the wire to prevent the wire from loosening, and the structure is ingenious. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 The three-dimensional structure of the wire management structure of the induction cooker housing of this embodiment is shown in FIG. Figure 1 ;

[0019] Figure 2 The three-dimensional structure of the wire management structure of the induction cooker housing of this embodiment is shown in FIG. Figure 2 ;

[0020] Figure 3 An exploded view of the wiring management structure of the induction cooker housing of this embodiment;

[0021] Figure 4This is a front view of the wiring management structure of the induction cooker housing of this embodiment;

[0022] Figure 5 for Figure 4 The cross-sectional view of the middle AA plane shows that the adjustment range of the movable part along the x-direction is not large, and the distance between the holes is large, which is suitable for threading large-size wires;

[0023] Figure 6 The schematic diagram of the cross-sectional structure of the wire management structure of the induction cooker shell of the utility model shows that after the movable part is adjusted along the x-direction, the distance between the holes becomes smaller, which is suitable for threading small-sized wires.

[0024] The accompanying drawings are marked as: shell 10, wire management structure 20, through hole 11, fixing part 21, movable part 22, locking part 23, gap 201, wire hole 211, first guide surface 212, second guide surface 221, waist hole 222, boss 213, screw hole 214, lower frame 215, reinforcing rib 2151, upper frame 216, rib 2161, third guide surface 2162, elastic buckle 2163, connecting part 24. DETAILED DESCRIPTION

[0025] The utility model provides a wire management structure for an induction cooker housing. To make the purpose, technical solution and effect of the utility model clearer and more specific, the utility model is further described in detail with reference to the accompanying drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model and are not used to limit the utility model.

[0026] In the description of the present invention, it should be understood that descriptions involving orientation, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0027] like Figures 1 to 6 The present embodiment discloses a wire management structure of an induction cooker shell, including a shell 10 and a wire management structure 20. The shell 10 is provided with a through hole 11 penetrating along the z direction. The wire management structure 20 includes a fixing member 21 installed in the through hole 11, a movable member 22 arranged in the fixing member 21 and capable of adjusting its position along the x direction, and a locking member 23 for fixing the movable member 22 and the fixing member 21. The movable member 22 cooperates with the fixing member 21 to form a pore 201 capable of adjusting a distance along the x direction, and the pore 201 is used to pass the wire.

[0028] The induction cooker shell wire management structure disclosed in this embodiment has a movable part 22 whose position can be adjusted along the x-direction arranged inside the fixing part 21. The movable part 22 cooperates with the fixing part 21 to form a pore 201 whose distance can be adjusted along the x-direction. After wires of different specifications pass through the pore 201, the position of the movable part 22 along the x-direction is adjusted according to the diameter or number of the wires passed through, thereby adjusting the size of the distance of the pore 201 along the x-direction. The movable part 22 and the fixing part 21 are then fixed by the locking part 23, and the movable part 22 is used to press the wire to prevent the wire from loosening. The structure is ingenious.

[0029] Please refer to Figures 1 to 3 The fixed member 21 is provided with a wire hole 211 that passes through along the z direction, and the movable member 22 moves in the wire hole 211 along the x direction and the z direction. The fixed member 21 is also provided with a first guide surface 212 that forms an inclined angle with the z-axis direction. The first guide surface 212 is located on one side of the wire hole 211 along the x direction. The movable member 22 is provided with a second guide surface 221 that slidably cooperates with the first guide surface 212. When the movable member 22 moves along the Figure 3 After the state shown is turned 180°, the movable member 22 is inserted into the wire hole 211, and the structure after insertion is as shown in FIG. Figure 4 and Figure 5 As shown, the movable member 22 cooperates with the fixed member 21 to form a gap 201 that can adjust the distance along the x-direction. When the operator needs to adjust the position of the movable member 22 in the wire hole 211 along the x-direction, as shown in FIG. Figure 6 As shown, by moving the movable part 22, the second guide surface 221 of the movable part 22 slides along the first guide surface 212. While sliding, the x-direction and z-direction positions of the movable part 22 are adjusted. Due to the adjustment of the x-direction position, the distance of the gap 201 is also adjusted. Through the sliding cooperation of the first guide surface 212 and the second guide surface 221, it can be ensured that the end face of the movable part 22 facing the gap 201 always remains parallel to the plane formed by the yz axis, thereby increasing the contact area between the movable part 22 and the wire, increasing friction, and preventing the wire from loosening.

[0030] Furthermore, since the movable part 22 can be adjusted in position along the x-direction, and the installation position of the locking part 23 on the fixed part 21 is fixed, in order to ensure that the movable part 22 can be adjusted in position along the x-direction, the present embodiment is provided with a waist hole 222 along the x-direction on the movable part 22. The locking part 23 is fixed to the fixed part 21 after passing through the waist hole 222. When the position of the movable part 22 along the x-direction needs to be adjusted, the locking part 23 is first loosened so that the movable part 22 can be adjusted in position along the x-direction. After the adjustment is completed, the locking part 23 is used to lock and fix the movable part 22 and the fixed part 21 to prevent the movable part 22 from loosening and reduce the difficulty of adjustment.

[0031] Please refer to Figure 3A boss 213 is provided on the first guide surface 212, and a screw hole 214 is provided on the boss 213. The locking member 23 has a threaded portion, which passes through the waist hole 222 and is threadedly connected with the screw hole 214. The threaded portion is threadedly matched to achieve loose and tight fixation, thereby reducing the difficulty of adjusting the fixing member 21 along the x-direction.

[0032] For further information, please refer to Figure 3 The fixing member 21 includes a lower frame 215. After the wire passes through the aperture 201, the movable member 22 presses the wire along the x-direction. In order to prevent the fixing member 21 from being deformed or damaged due to excessive pressure, the present embodiment provides a plurality of reinforcing ribs 2151 along the x-direction on the lower surface of the lower frame 215. The reinforcing ribs 2151 are located at the periphery of the wire passing hole 211. By providing the reinforcing ribs 2151 along the x-direction, the structural strength of the fixing member 21 along the x-direction is improved, and the fixing member 21 is prevented from being deformed or damaged.

[0033] For further information, please refer to Figure 3 and Figure 5 The fixing member 21 also includes an upper frame 216 connected to the upper end of the lower frame 215. A plurality of ribs 2161 are formed on the outer surface of the upper frame 216. The outer side of the upper end of the rib 2161 has an inclined third guide surface 2162. The upper frame 216 is guided upward into the through hole 11 by the third guide surface 2162. After installation, the friction between the ribs 2161 and the inner wall of the through hole 11 is utilized to improve the structural stability of the fixing member 21 and the housing 10, so that the fixing member 21 is not easy to loosen.

[0034] For further information, please refer to Figure 4 The outer side of the upper frame 216 is also connected to an elastic buckle 2163. After the fixing member 21 is installed in the through hole 11, the elastic buckle 2163 clamps the upper surface of the shell 10 to prevent the fixing member 21 from falling off after installation.

[0035] Please refer to Figure 3 Before the fixed part 21 passes through the wire, the movable part 22 is not installed in the fixed part 21. If the fixed part 21 and the movable part 22 adopt a separate structure, in actual application, the movable part 22 is easy to be lost. In order to avoid this problem, in this embodiment, the fixed part 21 and the movable part 22 are connected by a connecting part 24.

[0036] Furthermore, in order to facilitate production, the fixing member 21, the movable member 22 and the connecting member 24 are integrally formed by injection molding. The fixing member 21, the movable member 22 and the connecting member 24 are all made of plastic materials. The connecting member 24 can be bent and deformed for easy operation by users.

[0037] The preferred implementation methods of the present invention are specifically described above, but the present invention is not limited to the described embodiments. Those skilled in the art may make various equivalent modifications or substitutions without violating the spirit of the present invention, and these equivalent modifications or substitutions are all included in the scope defined by the claims of the present invention.

Claims

1. A wire management structure for an induction cooker housing, characterized in that: The invention comprises a shell (10) and a wire management structure (20), wherein the shell (10) is provided with a through hole (11) penetrating along the z direction, and the wire management structure (20) comprises a fixing part (21) installed in the through hole (11), a movable part (22) arranged in the fixing part (21) and capable of adjusting its position along the x direction, and a locking part (23) for fixing the movable part (22) and the fixing part (21), wherein the movable part (22) cooperates with the fixing part (21) to form a pore (201) whose distance can be adjusted along the x direction, and the pore (201) is used for passing a wire.

2. The induction cooker housing wire management structure according to claim 1, characterized in that: The fixed member (21) is provided with a wire-passing hole (211) penetrating along the z direction, and the movable member (22) moves in the wire-passing hole (211) along the x direction and the z direction. The fixed member (21) is also provided with an inclined first guide surface (212), and the first guide surface (212) is located on one side of the wire-passing hole (211) along the x direction. The movable member (22) is provided with a second guide surface (221) slidably matched with the first guide surface (212).

3. The induction cooker housing wire management structure according to claim 2, characterized in that: The movable part (22) is provided with a waist hole (222) along the x-direction, and the locking part (23) passes through the waist hole (222) and is fixed to the fixing part (21).

4. The induction cooker housing wire management structure according to claim 3, characterized in that: The first guide surface (212) is provided with a boss (213), the boss (213) is provided with a screw hole (214), and the locking member (23) has a threaded portion, which passes through the waist hole (222) and is threadedly connected to the screw hole (214).

5. The induction cooker housing wire management structure according to claim 2, characterized in that: The fixing member (21) comprises a lower frame (215), and a plurality of reinforcing ribs (2151) along the x-direction are provided on the lower surface of the lower frame (215), and the reinforcing ribs (2151) are located at the periphery of the wire passing hole (211).

6. The induction cooker housing wire management structure according to claim 5, characterized in that: The fixing member (21) further comprises an upper frame (216) connected to the upper end of the lower frame (215); a plurality of ribs (2161) are formed on the outer surface of the upper frame (216); and an inclined third guide surface (2162) is provided on the outer side of the upper end of the rib (2161).

7. The induction cooker housing wire management structure according to claim 6, characterized in that: The outer side surface of the upper frame (216) is also connected to an elastic buckle (2163); after the fixing member (21) is inserted into the through hole (11), the upper surface of the shell (10) is clamped by the elastic buckle (2163).

8. The induction cooker housing wire management structure according to claim 1, characterized in that: The fixed part (21) and the movable part (22) are connected via a connecting part (24).

9. The induction cooker housing wire management structure according to claim 8, characterized in that: The fixing part (21), the movable part (22) and the connecting part (24) are integrally formed by injection molding.

Citation Information

Patent Citations

  • Solar induction cooker

    CN107606656A