Embedded gas stove
By installing a lifting mechanism inside the bottom shell of the embedded gas stove, and using a telescopic rod and drive device to separate the overlapping plate from the countertop, the problem of difficult-to-remove stains under the panel is solved, enabling convenient cleaning and maintenance operations.
Patent Information
- Application Number
- CN202210087635.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-25
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2042-01-25
AI Technical Summary
In existing built-in gas stoves, stains on the countertop below the control panel are difficult to remove.
A lifting mechanism, including a telescopic rod and a drive device, is installed inside the bottom shell. The drive device drives the telescopic rod to move along the axis of the through hole, so that it partially passes under the overlapping plate, thereby separating the overlapping plate from the tabletop and forming a cleaning gap.
It makes it easy for users to clean stains between the panel and the countertop, and helps maintenance personnel to inspect and adjust the gas stove.
Smart Images

Figure CN116538538B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of gas stove technology, specifically to an embedded gas stove. Background Technology
[0002] Built-in gas stoves are gas stoves that are embedded in cabinets. Because built-in gas stoves save space, are easy to clean, and have a certain decorative effect, they are loved by many consumers.
[0003] In related technologies, built-in gas stoves include a bottom shell and a panel. The bottom shell has a receiving groove with the groove opening facing upwards. The top of the groove wall is bent outwards to form an overlapping plate, which is used to overlap the countertop of the cabinet. The panel covers the top of the bottom shell to close the receiving groove and cover the overlapping plate.
[0004] When cleaning built-in gas cooktops and countertops, users can only clean the outer surface of the countertop, making it difficult to remove stains covering the countertop beneath the panel. Summary of the Invention
[0005] The main objective of this invention is to provide an embedded gas stove to solve the problem of difficult-to-remove stains on the countertop covered by the embedded gas stove panel.
[0006] To achieve the above objectives, this invention provides an embedded gas stove, comprising: a bottom shell and a lifting mechanism. The bottom shell has a receiving groove with its opening facing upwards. The top of the groove wall is bent outwards to form an overlapping plate, which is used to overlap the countertop of a kitchen cabinet. A through hole is provided on the overlapping plate, penetrating through the overlapping plate. The lifting mechanism includes a telescopic rod and a driving device. The driving device is connected to the bottom shell and is kinetically connected to the telescopic rod. The telescopic rod is located above the overlapping plate, and its axis is collinear with the axis of the through hole. The driving device drives the telescopic rod to move along the axis of the through hole, so that a portion of the telescopic rod moves through the through hole to below the overlapping plate.
[0007] In the preferred embodiment of the above-mentioned built-in gas stove, the driving device includes a worm gear and a motor. The axis of the worm gear is parallel to the axis of the telescopic rod. The worm gear is rotatably connected to the bottom shell. The telescopic rod has helical teeth, and the worm gear meshes with the telescopic rod. The motor is drivenly connected to the worm gear and is used to drive the worm gear to rotate around its own axis.
[0008] In the preferred embodiment of the above-mentioned built-in gas stove, the driving device further includes a driving gear and a driven gear. The motor has a motor shaft, the axis of which is parallel to the axis of the telescopic rod. The motor shaft passes through the driving gear. The driven gear passes through the top end of the worm gear, and the axis of the driven gear is collinear with the axis of the worm gear. The driven gear meshes with the driving gear. The bottom end of the worm gear is rotatably connected to the bottom shell.
[0009] In the preferred embodiment of the above-mentioned built-in gas stove, the built-in gas stove further includes a mounting bracket, which is disposed inside the bottom shell, and the drive device and the telescopic rod are both mounted on the mounting bracket.
[0010] In the preferred embodiment of the above-mentioned built-in gas stove, the mounting bracket has a first mounting slot and a second mounting slot. The bottom of the first mounting slot abuts against the bottom of the receiving slot, and the motor is received in the first mounting slot. The bottom of the second mounting slot abuts against the top of the overlapping plate, and the driven gear, the worm gear, and the telescopic rod are installed in the second mounting slot.
[0011] In the preferred embodiment of the above-mentioned built-in gas stove, there are multiple lifting mechanisms, which are spaced apart; there are multiple first mounting slots, and two adjacent first mounting slots are connected by a first fixing plate, the first fixing plate is in contact with the bottom of the receiving slot, and the first fixing plate is connected to the bottom of the receiving slot.
[0012] In the preferred embodiment of the above-mentioned built-in gas stove, there are multiple second mounting slots, and two adjacent second mounting slots are connected by a second fixing plate. The second fixing plate is attached to the top of the overlapping plate and is connected to the overlapping plate.
[0013] In the preferred embodiment of the above-mentioned built-in gas stove, the mounting bracket further includes a cover plate, which covers the top of the first mounting slot, the second mounting slot and the second fixing plate, and the cover plate is connected to the second fixing plate.
[0014] In the preferred embodiment of the above-mentioned built-in gas stove, the built-in gas stove further includes a panel, which is parallel to the horizontal plane and covers the top of the bottom shell.
[0015] In the preferred embodiment of the above-mentioned built-in gas stove, the outer edge of the overlapping plate is bent upward to form a first stop plate, the outer edge of the panel is bent downward to form a second stop plate, the second stop plate is arranged around the outside of the first stop plate, and an abutment block is provided on the inner side of the second stop plate, the abutment block abuts against the outside of the first stop plate.
[0016] Those skilled in the art will understand that the embedded gas stove of this embodiment of the invention has a lifting mechanism installed inside the bottom shell. The lifting mechanism includes a telescopic rod and a driving device. The driving device is connected to the bottom shell and is kinetically connected to the telescopic rod. The telescopic rod is located above the overlapping plate, and the axis of the telescopic rod is collinear with the axis of the through hole. The driving device is used to drive the telescopic rod to move along the axis of the through hole, so that part of the telescopic rod passes through the through hole and moves to below the overlapping plate. With the above configuration, when it is necessary to clean the stains in the gap between the overlapping plate and the countertop, the driving device is activated, and the driving device moves the telescopic rod downward along the axis of the through hole, so that part of the telescopic rod passes through the through hole and moves to below the overlapping plate. During this process, since the position of the countertop is fixed, the bottom shell moves upward relative to the countertop under the support of the telescopic rod, so that the overlapping plate is separated from the countertop and there is a certain gap between the overlapping plate and the countertop. The user can easily clean the stains in the gap between the panel and the countertop through this gap. In addition, moving part of the telescopic rod between the overlapping plate and the countertop makes it easier for maintenance personnel to lift the bottom shell from the countertop to inspect and adjust the built-in gas stove. Attached Figure Description
[0017] A preferred embodiment of the built-in gas stove according to the present invention will now be described with reference to the accompanying drawings. The drawings are as follows:
[0018] Figure 1 This is a schematic diagram of the bottom shell and mounting bracket of the embedded gas stove according to an embodiment of the present invention;
[0019] Figure 2 This is a schematic diagram of the structure of the embedded gas stove in this embodiment of the invention when the overlapping plate is attached to the countertop;
[0020] Figure 3 This is a partial cross-sectional view of the embedded gas stove according to an embodiment of the present invention;
[0021] Figure 4 This is a schematic diagram of the bottom shell structure of the embedded gas stove according to an embodiment of the present invention;
[0022] Figure 5 This is a schematic diagram of the lifting mechanism in the embedded gas stove according to an embodiment of the present invention;
[0023] Figure 6 This is a schematic diagram of the structure of the embedded gas stove in an embodiment of the present invention after the bottom shell is lifted;
[0024] Figure 7 This is a schematic diagram of the lifting mechanism and mounting bracket in the embedded gas stove according to an embodiment of the present invention. Figure 1 ;
[0025] Figure 8This is a schematic diagram of the lifting mechanism and mounting bracket in the embedded gas stove according to an embodiment of the present invention. Figure 2 .
[0026] In the attached image:
[0027] 100. Base shell; 200. Lifting mechanism;
[0028] 300, Panel; 400, Mounting bracket;
[0029] 500. Countertop; 101. Receiving slot;
[0030] 102. Overlap plate; 103. Through hole;
[0031] 104. First stop plate; 201. Telescopic rod;
[0032] 202. Worm gear; 203. Motor;
[0033] 204. Driving gear; 205. Driven gear;
[0034] 301. Second stop plate; 302. Abutment block;
[0035] 401. First mounting slot; 402. Second mounting slot;
[0036] 403. First fixing plate; 404. Second fixing plate;
[0037] 405. Cover plate; 406. Reserved hole. Detailed Implementation
[0038] First, those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art can make adjustments as needed to adapt to specific application scenarios.
[0039] Secondly, it should be noted that in the description of the embodiments of the present invention, the terms "inner" and "outer", etc., which indicate the direction or positional relationship, are based on the direction or positional relationship shown in the drawings. This is only for the convenience of description and is not intended to indicate or imply that the device or component must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation on the embodiments of the present invention.
[0040] Furthermore, it should be noted that, in the description of the embodiments of the present invention, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of the present invention according to the specific circumstances.
[0041] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0042] Gas stoves can be divided into countertop gas stoves and built-in gas stoves depending on the installation method. Countertop gas stoves are placed directly on the stovetop using the four burner feet on the stove. Built-in gas stoves are embedded in the cabinet. Compared with countertop gas stoves, built-in gas stoves take up less space above the countertop, and soup overflowing from the pot is less likely to leak into the bottom shell, making them easier to clean.
[0043] In related technologies, built-in gas stoves include a bottom shell and a panel. The bottom shell has a receiving groove with the opening of the receiving groove facing upward. The receiving groove is used to accommodate the gas inlet pipe, valve body, gas distribution pipe, injector pipe, etc. The top of the groove wall is bent outward to form an overlapping plate.
[0044] The cabinet countertop has mounting holes, the bottom shell passes through the mounting holes, the receiving groove is located below the countertop, and the overlapping plate overlaps the countertop.
[0045] The panel covers the top of the bottom shell, and the bottom edge of the panel fits against the overlapping plate to close the receiving groove and cover the overlapping plate. The panel has burner holes and valve stem holes, with the burner passing through the burner holes and the burner cap seat located above the panel; the valve body has a valve stem that passes through the valve stem hole, with the top of the valve stem extending above the panel, and a knob connected to the top of the valve stem.
[0046] When cleaning built-in gas stoves and countertops, users can usually only clean the surface of the panel and the countertop, but it is often difficult to remove the stains in the gaps between the panel and the countertop.
[0047] This embodiment provides an embedded gas stove. By setting a telescopic rod and a driving device on the bottom shell, the driving device is used to drive the telescopic rod to move downward. After the bottom end of the telescopic rod abuts against the countertop, the telescopic rod continues to move downward. With the support of the telescopic rod, the bottom shell moves upward relative to the countertop, and the overlapping plate separates from the countertop with a certain gap between them, which makes it convenient for users to clean the stains in the gap between the panel and the countertop.
[0048] The principles and features of the embodiments of the present invention are described below with reference to the accompanying drawings. The examples given are only used to explain the embodiments of the present invention and are not intended to limit the scope of the embodiments of the present invention.
[0049] The embedded gas stove provided in this embodiment of the invention includes a base shell 100, a lifting mechanism 200, and a panel 300, such as... Figure 1 As shown, the bottom shell 100 has a receiving groove 101 with the opening of the receiving groove 101 facing upwards. The center line of the receiving groove 101 can be perpendicular to the horizontal plane. The receiving groove 101 is used to accommodate the valve body and pipes of the built-in gas stove. The receiving groove 101 has a groove wall and a groove bottom, which together form the receiving groove 101. The receiving groove 101 can be approximately a cuboid groove. Figure 1 As shown in the figure), or a cylindrical groove, etc., the shape of the receiving groove 101 is not limited in this embodiment. The top of the groove wall is bent outward to form an overlapping plate 102. The overlapping plate 102 can be annular and parallel to the horizontal plane.
[0050] Built-in gas cooktops are typically installed in kitchen cabinets. The top of the cabinet has a countertop 500 with mounting holes whose shape matches the shape of the receiving groove 101. For example... Figure 2 As shown, when installing a built-in gas stove, insert the bottom shell 100 into the mounting hole from top to bottom, and overlap the connecting plate 102 onto the countertop 500 (e.g., Figure 3 (As shown).
[0051] like Figure 4 As shown, the overlapping plate 102 is provided with a through hole 103, which penetrates the overlapping plate 102. The projection of the through hole 103 on the horizontal plane can be a circle, a square, etc., and the axis of the through hole 103 is perpendicular to the horizontal plane.
[0052] like Figure 5 As shown, the lifting mechanism 200 includes a telescopic rod 201 and a driving device. The axis of the telescopic rod 201 is collinear with the axis of the through hole 103. Normally, the telescopic rod 201 is located above the overlapping plate 102 so that the overlapping plate 102 fits against the table surface 500.
[0053] The drive unit is connected to the base shell 100 and is drive-connected to the telescopic rod 201. When it is necessary to clean the stains in the gap between the overlapping plate 102 and the countertop 500, the drive unit is activated. The drive unit moves the telescopic rod 201 downward along the axis of the through hole 103, so that part of the telescopic rod 201 passes through the through hole 103 and moves to below the overlapping plate 102 (e.g., Figure 6 As shown in the diagram, during this process, since the position of the countertop 500 is fixed, the bottom shell 100 moves upward relative to the countertop 500 under the support of the telescopic rod 201, so that the overlapping plate 102 separates from the countertop 500 and there is a certain gap between the overlapping plate 102 and the countertop 500. Users can use this gap to clean stains in the gap between the panel 300 and the countertop 500, making it easier to remove stains. Furthermore, moving part of the telescopic rod 201 between the overlapping plate 102 and the countertop 500 also facilitates maintenance personnel in lifting the bottom shell 100 from the countertop 500 to inspect and adjust the built-in gas stove.
[0054] After cleaning the stains in the gap between panel 300 and countertop 500, activate the drive device to move the telescopic rod 201 upward along the axis of the through hole 103, so that the telescopic rod 201 returns to its original position above the overlapping plate 102. Figure 2 As shown, the overlapping plate 102 can then be attached to the countertop 500.
[0055] Continue to refer to Figure 2 , Figure 3 and Figure 6 Panel 300 is parallel to the horizontal plane and covers the top of the base shell 100 to close the receiving groove 101 and cover the overlapping plate 102. When part of the telescopic rod 201 passes through the through hole 103 and moves to below the overlapping plate 102, the overlapping plate 102 and panel 300 move upward relative to the tabletop 500 at the same time to expose the surface of the tabletop 500 below the panel 300 for easy cleaning by the user.
[0056] In some embodiments, the driving device includes a worm gear 202 and a motor 203. The axis of the worm gear 202 is parallel to the axis of the telescopic rod 201. The bottom end of the worm gear 202 is rotatably connected to the bottom shell 100. The telescopic rod 201 has helical teeth. The worm gear 202 and the telescopic rod 201 mesh. The motor 203 is driven to rotate around its own axis. Since the telescopic rod 201 meshes with the worm gear 202, the telescopic rod 201 moves downward around its own axis during the rotation of the worm gear 202.
[0057] In some implementations, the motor 203 can directly drive the worm 202 to rotate. Specifically, the motor 203 has a motor shaft, the axis of which is collinear with the axis of the worm 202. The motor shaft passes through the worm 202 so that the motor 203 drives the worm 202 to rotate.
[0058] Continue to refer to Figure 5 In some other implementations, the motor 203 can also indirectly drive the worm 202 to rotate. For example, the driving device can also include a driving gear 204 and a driven gear 205. The motor 203 has a motor shaft, the axis of which is parallel to the axis of the telescopic rod 201. The motor shaft passes through the driving gear 204. The driven gear 205 passes through the top end of the worm 202, and the axis of the driven gear 205 is collinear with the axis of the worm 202. The driven gear 205 meshes with the driving gear 204. The bottom end of the worm 202 is rotatably connected to the bottom shell 100.
[0059] Since the driving gear 204 and the driven gear 205 mesh, and the driven gear 205 and the worm 202 are coaxially fixed, the motor 203 drives the driving gear 204 to rotate, which in turn causes the drive motor 203 to indirectly drive the worm 202 to rotate.
[0060] In other embodiments, the driving device may include a motor and a worm gear, the axis of which is perpendicular to the axis of the telescopic rod 201. The telescopic rod 201 has helical teeth, and the worm gear meshes with the telescopic rod 201. The motor is fixed on the bottom shell 100 and has a motor shaft. The axis of the motor shaft is collinear with the axis of the worm gear and passes through the worm gear. The motor drives the worm gear to rotate, thereby driving the telescopic rod 201 to move downward or upward around its own axis.
[0061] Continue to refer to Figure 1 In some embodiments, the built-in gas stove may also include a mounting bracket 400, on which the drive device and the telescopic rod 201 are mounted. The mounting bracket 400 is detachably disposed inside the bottom shell 100 so that the lifting mechanism 200 is detachably connected to the bottom shell 100, which facilitates the installation and maintenance of the lifting mechanism 200.
[0062] like Figure 7 As shown, specifically, the mounting bracket 400 may have a first mounting groove 401 and a second mounting groove 402. The bottom of the first mounting groove 401 abuts against the bottom of the receiving groove 101. The motor 203 is housed in the first mounting groove 401 with the end of the motor shaft facing upward. The bottom of the second mounting groove 402 abuts against the top of the overlapping plate 102. The driven gear 205, the worm gear 202, and the telescopic rod 201 are installed in the second mounting groove 402. The bottom end of the worm gear 202 is rotatably connected to the bottom of the second mounting groove 402. The bottom of the second mounting groove 402 is also provided with a reserved hole 406 for the telescopic rod 201 to pass through.
[0063] The aforementioned lifting mechanism 200 can be multiple, and the multiple lifting mechanisms 200 are arranged at intervals. The multiple lifting mechanisms 200 can make the bottom shell 100 and the panel 300 more stable, so that the overlapping plate 102 and the panel 300 are as parallel as possible to the horizontal plane, so that the height of the gap between the overlapping plate 102 and the panel 300 is consistent, which facilitates the cleaning of the panel 300 below the overlapping plate 102.
[0064] In the implementation of the accommodating groove 101 as a cuboid groove, the bottom of the accommodating groove 101 is rectangular. There can be four lifting mechanisms 200, which can be arranged at the corners of the bottom of the accommodating groove 101. Since the valve body and pipeline are usually installed in the middle of the accommodating groove 101, installing the lifting mechanisms 200 at the corners of the accommodating groove 101 avoids the valve body and pipeline, and avoids the impact on the valve body and pipeline when the lifting mechanism 200 is installed with the bottom shell 100. It can also improve the utilization rate of the space inside the accommodating groove 101.
[0065] like Figure 8 As shown, in the implementation of multiple lifting mechanisms 200, there are also multiple first mounting slots 401. Each first mounting slot 401 contains a corresponding motor 203. In the direction perpendicular to the wall, two adjacent first mounting slots 401 are connected by a first fixing plate 403. The first fixing plate 403 is attached to the bottom of the receiving slot 101 and is connected to the bottom of the receiving slot 101. The first fixing plate 403 can be connected to the bottom of the receiving slot 101 by fastening bolts or by adhesive, as long as it can fix the first fixing plate 403 and the bottom shell 100.
[0066] In the implementation where there are multiple first mounting slots 401, there are also multiple second mounting slots 402. Two adjacent second mounting slots 402 are connected by a second fixing plate 404. The second mounting slot 402 at the end closer to the user may not be connected to avoid affecting the valve body.
[0067] Continue to refer to Figure 1 The second fixing plate 404 is attached to the top of the overlapping plate 102, and the second fixing plate 404 is connected to the overlapping plate 102. The second fixing plate 404 can be connected to the overlapping plate 102 by fastening bolts or by adhesive, as long as the second fixing plate 404 and the overlapping plate 102 can be fixedly connected.
[0068] Continue to refer to Figure 1 and Figure 8The aforementioned mounting bracket 400 may further include a cover plate 405, which covers the top of the first mounting groove 401, the second mounting groove 402, and the second fixing plate 404. The cover plate 405 is connected to the second fixing plate 404. The cover plate 405 can be connected to the second fixing plate 404 by fastening bolts or by adhesive, as long as the cover plate 405 and the second fixing plate 404 can be fixedly connected.
[0069] Continue to refer to Figure 3 In some embodiments, the outer edge of the overlapping plate 102 is bent upward to form a first stop plate 104, and the outer edge of the panel 300 is bent downward to form a second stop plate 301. The second stop plate 301 is arranged around the outside of the first stop plate 104 so that the panel 300 completely covers the overlapping plate 102, thereby improving the decorative effect of the built-in gas stove.
[0070] A stop block 302 is provided on the inner side of the second stop plate 301. The stop block 302 abuts against the outer side of the first stop plate 104. The stop block 302 increases the gap between the first stop plate 104 and the second stop plate 301, making it easier for maintenance personnel to lift the panel 300 upwards to facilitate the disassembly of the panel 300 and the overlapping plate 102.
[0071] In summary, the embedded gas stove of this embodiment of the invention has a lifting mechanism 200 provided in the bottom shell 100. The lifting mechanism 200 includes a telescopic rod 201 and a driving device. The driving device is connected to the bottom shell 100 and is pulsatorically connected to the telescopic rod 201. The telescopic rod 201 is located above the overlapping plate 102, and the axis of the telescopic rod 201 is collinear with the axis of the through hole 103. The driving device is used to drive the telescopic rod 201 to move along the axis of the through hole 103 so that part of the telescopic rod 201 passes through the through hole 103 and moves to below the overlapping plate 102. With the above setup, when it is necessary to clean the stains in the gap between the overlapping plate 102 and the countertop 500, the drive device is activated. The drive device moves the telescopic rod 201 downward along the axis of the through hole 103, so that part of the telescopic rod 201 passes through the through hole 103 and moves to below the overlapping plate 102. During this process, since the position of the countertop 500 is fixed, the bottom shell 100 moves upward relative to the countertop 500 under the support of the telescopic rod 201, so that the overlapping plate 102 is separated from the countertop 500 and there is a certain gap between the overlapping plate 102 and the countertop 500. Through this gap, the user can more easily clean the stains in the gap between the panel 300 and the countertop 500. In addition, moving part of the telescopic rod 201 between the overlapping plate 102 and the countertop 500 also makes it easier for maintenance personnel to lift the bottom shell 100 from the countertop 500 for inspection and adjustment of the built-in gas stove.
[0072] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. An embedded gas stove, characterized in that, include: The bottom shell, lifting mechanism, and mounting bracket are provided. The bottom shell has a receiving groove with the groove opening facing upward. The top of the groove wall is bent outward to form an overlapping plate. The overlapping plate is used to overlap the countertop of the cabinet. The overlapping plate is provided with a through hole that passes through the overlapping plate. The lifting mechanism includes a telescopic rod and a driving device. The driving device is connected to the bottom shell and is pulsatorically connected to the telescopic rod. The telescopic rod is located above the overlapping plate, and the axis of the telescopic rod is collinear with the axis of the through hole. The driving device is used to drive the telescopic rod to move along the axis of the through hole so that part of the telescopic rod moves through the through hole to the bottom of the overlapping plate. The mounting bracket is disposed inside the bottom shell, and the drive device and the telescopic rod are both mounted on the mounting bracket; the drive device includes a worm gear, a motor, a driving gear, and a driven gear; The mounting bracket has a first mounting slot and a second mounting slot. The bottom of the first mounting slot abuts against the bottom of the receiving slot, and the motor is received in the first mounting slot. The bottom of the second mounting slot abuts against the top of the overlapping plate, and the driven gear, the worm gear, and the telescopic rod are installed in the second mounting slot.
2. The built-in gas stove according to claim 1, characterized in that, The axis of the worm is parallel to the axis of the telescopic rod. The worm is rotatably connected to the bottom shell. The telescopic rod has helical teeth. The worm meshes with the telescopic rod. The motor is connected to the worm gear drive, and the motor is used to drive the worm gear to rotate around its own axis.
3. The built-in gas stove according to claim 2, characterized in that, The motor has a motor shaft, the axis of which is parallel to the axis of the telescopic rod, and the motor shaft passes through the drive gear; The driven gear passes through the top end of the worm, and the axis of the driven gear is collinear with the axis of the worm. The driven gear meshes with the driving gear, and the bottom end of the worm is rotatably connected to the bottom shell.
4. The built-in gas stove according to claim 3, characterized in that, There are multiple lifting mechanisms, and the multiple lifting mechanisms are arranged at intervals; There are multiple first mounting slots, and two adjacent first mounting slots are connected by a first fixing plate. The first fixing plate is attached to the bottom of the receiving slot and is connected to the bottom of the receiving slot.
5. The built-in gas stove according to claim 4, characterized in that, There are multiple second mounting slots, and two adjacent second mounting slots are connected by a second fixing plate. The second fixing plate is attached to the top of the overlapping plate and is connected to the overlapping plate.
6. The built-in gas stove according to claim 5, characterized in that, The mounting bracket also includes a cover plate that covers the top of the first mounting slot, the second mounting slot, and the second fixing plate, and the cover plate is connected to the second fixing plate.
7. The built-in gas stove according to any one of claims 1-6, characterized in that, The built-in gas stove also includes a panel that is parallel to the horizontal plane and covers the top of the bottom shell.
8. The built-in gas stove according to claim 7, characterized in that, The outer edge of the overlapping plate is bent upward to form a first stop plate, and the outer edge of the panel is bent downward to form a second stop plate. The second stop plate is arranged around the outside of the first stop plate, and an abutment block is provided on the inner side of the second stop plate. The abutment block abuts against the outside of the first stop plate.
Citation Information
Patent Citations
Household gas stove with liftable structure
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Gas stove bottom shell and embedded gas stove
CN214791274U