Leak-proof gas stove

By using a sealing rubber gasket between the gas stove casing and the stove plate, and by using a rotating adjusting rod and locking block to fix the gas stove, the problems of liquid corrosion and shaking are solved, thus achieving the stability and sealing of the gas stove.

CN224551591UActive Publication Date: 2026-07-24FOSHAN SHUNDE RIDAXIN ELECTRICAL APPLIANCES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN SHUNDE RIDAXIN ELECTRICAL APPLIANCES CO LTD
Filing Date
2025-09-09
Publication Date
2026-07-24

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    Figure CN224551591U_ABST
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Abstract

The utility model provides a kind of gas stove of leakage prevention, it is related to the technical field of gas stove of leakage prevention, including gas stove body;The gas stove body is provided with gas stove shell, and the left and right ends of the top end face of gas stove shell are provided with semicircular head block with front and rear through holes, and the middle of the left and right sides of the bottom end face of gas stove shell is provided with vertical plate with left and right through holes, and the periphery of the bottom end face of gas stove shell is bonded with sealing rubber pad, and the whole sealing rubber pad is rectangular frame pad structure, and the corners of sealing rubber pad are provided with round corners, to facilitate sealing rubber pad installation on gas stove shell and contact with the top end face of bearing cooktop plate, to facilitate the stress deformation of sealing rubber pad to seal the gap between gas stove shell and bearing cooktop plate, to solve the liquid on the top of cooktop plate, easy to flow from the gap between gas stove and cooktop plate to the bottom of gas stove, to cause the problem of corrosion of the bottom of gas stove.
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Description

Technical Field

[0001] This utility model belongs to the field of gas stove technology for leak-proof gas stoves, and in particular relates to a gas stove for leak-proof gas stoves. Background Technology

[0002] A leak-proof gas stove is a modern kitchen appliance designed with multiple safety technologies to prevent gas leaks. Its core objective is to prevent accidental gas leaks at the source, such as due to accidental flameout, loose connections, or valve malfunctions, or to quickly cut off the gas supply and sound an alarm when a leak occurs, thereby avoiding the risk of fire, explosion, or poisoning.

[0003] Based on the above, the inventors have discovered the following shortcomings in existing leak-proof gas stoves:

[0004] 1. Liquid on the top of the stovetop can easily flow from the gap between the gas stove and the stovetop to the bottom of the gas stove, causing corrosion to the bottom of the gas stove.

[0005] 2. The rectangular hole on the stovetop is larger than the gas stove insertion part, causing the gas stove to easily wobble inside the rectangular hole on the stovetop during use. Utility Model Content

[0006] To solve the above-mentioned technical problems, this utility model provides a leak-proof gas stove to address the issues of liquid easily flowing from the top of the existing stove plate to the bottom of the gas stove through the gap between the gas stove and the stove plate, causing corrosion of the bottom of the gas stove; and the rectangular hole on the stove plate being larger than the gas stove insertion part, causing the gas stove to easily shake inside the rectangular hole of the stove plate during use.

[0007] The purpose and effect of this leak-proof gas stove are achieved by the following specific technical means:

[0008] A leak-proof gas stove includes a gas stove body; the gas stove body is provided with a gas stove shell, and semi-circular head blocks with front and rear through holes are provided at both the left and right ends of the top end face of the gas stove shell, and vertical plates with left and right through holes are provided in the middle of both the left and right ends of the bottom end face of the gas stove shell. A sealing rubber gasket is bonded to the outer periphery of the bottom end face of the gas stove shell. The sealing rubber gasket is a rectangular frame structure, and the four corners of the sealing rubber gasket are rounded.

[0009] Furthermore, a rocking locking button is threadedly installed on the bearing plate of the movable locking block. A threaded post is provided on the upper part of the rocking locking button, and a rotating circular plate with anti-slip groove is provided on the bottom end face of the threaded post of the rocking locking button.

[0010] Furthermore, a movable locking block is threadedly installed on the threaded rod of the rotary adjusting rod. The lower end of the movable locking block has a left-right through adjusting screw hole, and the upper part of the outer end face of the movable locking block is provided with a bearing plate with a top-bottom through threaded hole.

[0011] Furthermore, a rotating adjustment rod is installed between the upright plates of the gas stove outer shell via bearings. A fixing post is provided on both the left and right ends of the rotating adjustment rod, and a threaded rod is provided on the outer end of each fixing post of the rotating adjustment rod.

[0012] Furthermore, a support plate is provided below the outer shell of the gas stove, and a rectangular hole running vertically through the middle of the support plate is provided.

[0013] Furthermore, a transport gripper is installed on the semi-circular head block of the gas stove shell via a fixed shaft. The transport gripper is a U-shaped plate structure, and both ends of the transport gripper are provided with through-holes.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] The convenient sealing rubber gasket is installed on the gas stove shell and contacts the top end face of the supporting stove plate. The sealing rubber gasket can easily seal the gap between the gas stove shell and the supporting stove plate through the deformation of the sealing rubber gasket under force. This solves the problem that liquid on the top of the stove plate can easily flow from the gap between the gas stove and the stove plate to the bottom of the gas stove, causing corrosion to the bottom of the gas stove.

[0016] The adjustable rod is mounted on the gas stove housing via a bearing to support the moving locking block and the wobbling locking button. This allows the gas stove housing to be easily fixed inside the rectangular hole of the supporting stove plate using the moving locking block and the wobbling locking button. This solves the problem that the rectangular hole on the stove plate is larger than the gas stove insertion part, causing the gas stove to wobble inside the rectangular hole of the stove plate during use. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0018] Figure 2 This is a bottom view of the structure of this utility model.

[0019] Figure 3 This is a disassembled structural diagram of the present invention.

[0020] Figure 4 This is a top view of the assembled gas stove casing and sealing rubber gasket of this utility model.

[0021] Figure 5 This is a schematic diagram of the inward movement state of the movable locking block of this utility model.

[0022] Figure 6 This is a schematic diagram of the flipping and standing up of the handling grip of this utility model.

[0023] In the picture: 1. Gas stove body; 2. Gas stove outer shell; 3. Sealing rubber gasket; 4. Handling grip; 5. Supporting stove plate; 6. Rotary adjustment rod; 7. Moving locking block; 8. Shaking locking button. Detailed Implementation

[0024] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0025] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown:

[0026] This utility model provides a leak-proof gas stove, including a gas stove body 1; the gas stove body 1 is provided with a gas stove shell 2, which facilitates the support of various components. The top end face of the gas stove shell 2 is provided with semi-circular head blocks with through holes at both ends, front and back, to facilitate the installation of the handling handle 4 via a fixed shaft. The bottom end face of the gas stove shell 2 is provided with upright plates with through holes at both ends, to facilitate the installation of the rotating adjustment rod 6 via bearings. A sealing rubber gasket 3 is bonded to the outer periphery of the bottom end face of the gas stove shell 2, which can be deformed under force to seal. The sealing rubber gasket 3 has a rectangular frame structure to facilitate mutual fitting with the gas stove shell 2. The four corners of the sealing rubber gasket 3 are rounded to prevent scratches. The handling handle 4 is installed on the semi-circular head block of the gas stove shell 2 via a fixed shaft, which facilitates the flipping and flattening of the handling handle 4. The handling handle 4 has a U-shaped plate structure to facilitate hand gripping. The two ends of the handling handle 4 are provided with through holes, front and back, to facilitate the flipping of the handling handle 4 via the fixed shaft.

[0027] The gas stove outer shell 2 is supported by a support plate 5 at its bottom. The support plate 5 has a through rectangular hole in the middle for inserting the gas stove outer shell 2. A rotating adjustment rod 6 is mounted between the upright plates of the gas stove outer shell 2 via bearings, allowing the rod to rotate. The left and right ends of the rotating adjustment rod 6 are each equipped with a fixing post for bearing installation. The outer ends of the fixing posts of the rotating adjustment rod 6 are each equipped with a threaded rod for threaded installation of a movable locking block 7. The threaded rod of the rotating adjustment rod 6 is threaded with a movable locking block 7 for threaded engagement. The moving locking block 7 has an adjustment screw hole that runs through the left and right sides at the lower end, which facilitates the installation of the threaded rod of the rotating adjustment rod 6. The upper part of the outer end face of the moving locking block 7 is provided with a bearing plate with threaded holes running through the upper and lower sides, which facilitates the installation of the shaking locking button 8 by thread. The shaking locking button 8 is installed on the bearing plate of the moving locking block 7 by thread, which facilitates the shaking locking button 8 to press against the bottom end face of the bearing stove plate 5 to prevent the gas stove shell 2 from shaking. The upper part of the shaking locking button 8 is provided with a threaded post, which facilitates the installation of the shaking locking button 8 by thread. The bottom end face of the threaded post of the shaking locking button 8 is provided with a rotating round plate with anti-slip grooves, which facilitates the rotation of the shaking locking button 8 to prevent slipping.

[0028] The specific usage and function of this embodiment are as follows:

[0029] In this utility model, such as Figure 1 As shown, the supporting stove plate 5 is in a cut-off state, and the gas stove outer shell 2 is fixed inside the rectangular hole of the supporting stove plate 5, as shown in the figure. Figure 2 As shown, at this time, the outer end face of the movable locking block 7 is tightly supported inside the rectangular hole of the supporting stove plate 5, and the top end face of the locking button 8 is shaken to press against the bottom end face of the supporting stove plate 5. This prevents the gas stove outer shell 2 from shaking inside the rectangular hole of the supporting stove plate 5, solving the problem that the rectangular hole on the stove plate is larger than the gas stove insertion part, causing the gas stove to easily shake inside the rectangular hole of the stove plate during use. At the same time, the sealing rubber gasket 3 is fixed to the bottom periphery of the gas stove outer shell 2 by adhesive, as shown in the figure. Figure 4 As shown, this allows the gas stove outer shell 2 to contact the top end face of the supporting stove plate 5 through the sealing rubber gasket 3. The elastic deformation characteristics of the rubber material in the sealing rubber gasket 3 fill all gaps between the gas stove outer shell 2 and the supporting stove plate 5, effectively sealing the gaps. This prevents liquids overflowing during cooking from seeping through the gaps to the bottom of the gas stove body 1, preventing corrosion of the internal circuitry or metal components of the gas stove body 1. It also solves the problem of liquids on the top of the stove plate easily flowing from the gap between the gas stove and the stove plate to the bottom of the gas stove, causing corrosion.

[0030] Example 2: Unlike Example 1, the surface of the handling grip 4 can also be set as a frosted surface, thereby increasing the friction between the surface of the handling grip 4 and the hand, and preventing the surface of the handling grip 4 from slipping when gripped.

[0031] Example 3: The difference from Example 1 is that the outer circumferential surface of the rotating plate of the shaking locking button 8 can also be set as a frosted surface, thereby increasing the friction between the outer circumferential surface of the rotating plate of the shaking locking button 8 and the hand, and preventing the hand from slipping when rotating the outer circumferential surface of the rotating plate of the shaking locking button 8.

Claims

1. A leak-proof gas stove, characterized in that: The gas stove body (1) is provided with a gas stove shell (2). The top end face of the gas stove shell (2) is provided with semi-circular head blocks with front and rear through holes at both ends. The bottom end face of the gas stove shell (2) is provided with upright plates with left and right through holes in the middle of both sides. A sealing rubber pad (3) is bonded to the outer periphery of the bottom end face of the gas stove shell (2). The sealing rubber pad (3) is a rectangular frame pad structure. The four corners of the sealing rubber pad (3) are rounded.

2. The leak-proof gas stove as described in claim 1, characterized in that: The gas stove outer shell (2) has a transport gripping handle (4) installed on the semi-circular head block via a fixed shaft. The transport gripping handle (4) is a U-shaped plate structure, and both ends of the transport gripping handle (4) have through-holes.

3. The leak-proof gas stove as described in claim 2, characterized in that: The gas stove outer shell (2) is provided with a supporting stove plate (5) below it, and a rectangular hole that runs through the middle of the supporting stove plate (5) is provided.

4. A leak-proof gas stove as described in claim 3, characterized in that: A rotating adjustment rod (6) is installed between the upright plates of the gas stove outer shell (2) via bearings. The left and right ends of the rotating adjustment rod (6) are provided with fixing posts, and the outer ends of the fixing posts of the rotating adjustment rod (6) are provided with threaded rods.

5. A leak-proof gas stove as described in claim 4, characterized in that: The rotating adjusting rod (6) has a movable locking block (7) installed on its threaded rod. The lower end of the movable locking block (7) has an adjusting screw hole that passes through from left to right. The upper part of the outer end face of the movable locking block (7) is provided with a bearing plate with threaded holes that pass through from top to bottom.

6. A leak-proof gas stove as described in claim 5, characterized in that: The movable locking block (7) has a rocking locking button (8) threadedly installed on its bearing plate. The rocking locking button (8) has a threaded post on its upper part and a rotating circular plate with anti-slip groove on the bottom end face of the threaded post of the rocking locking button (8).