Integrated cooker with adjustable furnace end
The furnace adjustable integrated stove designed with lifting and rotating mechanisms solves the problem of the furnace occupying countertop space, realizes flexible adjustment of the furnace and efficient utilization of countertop space, and meets the multifunctional and intelligent needs of modern kitchens.
Patent Information
- Application Number
- CN202510517124.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2025-08-01
AI Technical Summary
The stove of the existing integrated stove is fixed to the countertop, occupying a large space, resulting in limited countertop functions and the inability to flexibly make room for other cooking utensils, especially inconvenient operation in limited kitchen space.
The lifting mechanism and the rotating mechanism are designed in a coordinated manner. The servo motor drives the sleeve to rotate, so that the furnace head can be lifted and hidden, combined with the auxiliary components of the rotating mechanism to achieve the table leveling, and the servo motor controls the position of the furnace head with one button, and cooperates with the sealing function to release the table space.
It realizes adjustable stove head, improves countertop utilization, provides a flat operating surface, enhances practicality, meets the multi-functional integration and intelligence needs of modern kitchens, and is especially suitable for kitchens with limited area.
Smart Images

Figure CN120402938A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of integrated stoves, and particularly to an integrated stove with an adjustable burner head. Background Art
[0002] As a kitchen appliance integrating functions such as gas stoves, range hoods, and disinfection cabinets, the integrated stove optimizes the utilization of kitchen space through modular design, improving cooking efficiency and environmental cleanliness. However, the burner heads of existing integrated stoves are usually fixed to the countertop, occupying a large operating area. In actual use, the fixed burner heads can only place cookware and cannot flexibly vacate space to place commonly used cooking utensils such as cutting boards and seasoning bottles, resulting in limited countertop functions.
[0003] Especially in the context of the accelerating urbanization process and the tightening of living space in our country, the kitchen area is generally small. How to efficiently utilize the limited countertop space has become an urgent problem to be solved. Although some integrated stoves try to improve functionality by adding induction cookers or storage cabinets, the problem of fixed burner heads has not been effectively improved, and the pain points of low countertop utilization and inconvenient operation still exist. Therefore, there is an urgent need for an integrated stove design that can flexibly adjust the position of the burner head and release the countertop space to meet the needs of modern kitchens for efficient space management. Summary of the Invention
[0004] The purpose of the present invention is to propose an integrated stove with an adjustable burner head to solve the problem that most of the burner heads of existing integrated stoves are fixed on the countertop of the integrated stove, occupying a large countertop space.
[0005] To achieve the above purpose, the present invention adopts the following technical solutions: An integrated stove with an adjustable burner head, including a stove top body, on the top of the stove top body, a burner head and a burner rack are symmetrically arranged, and a lifting mechanism capable of lifting the burner head to increase the area of the top of the stove top body is assembled inside the stove top body; The lifting mechanism includes a circular ring symmetrically installed at the bottom end of the inner wall of the stove top body, the top end of the circular ring is rotatably connected with a sleeve, a servo motor is fixedly installed on the outer surface of the circular ring, and an output end of the servo motor is assembled with a rotating component capable of rotating the sleeve; It further includes a rotating mechanism assembled on the sleeve, the rotating mechanism includes through grooves symmetrically opened on the sleeve, sliders are slidably connected inside the through grooves, and an auxiliary component capable of sealing the gap after the burner head descends is assembled on the sleeve.
[0006] Through the collaborative design of the lifting mechanism and the rotating mechanism, this technical solution realizes the core functions of adjustable stove heads and flexible switching of the countertop, and has the advantages of high space utilization rate, convenient operation, and compact structure, meeting the requirements of modern kitchens for multi-functional integration. Specifically, the servo motor of the lifting mechanism drives the rotating component to drive the sleeve to rotate, enabling the stove head to be lifted into the sleeve. This design hides the stove head when it is not in use, releasing the space at the top of the stove body, facilitating the placement of cooking utensils such as cutting boards and seasoning bottles, and significantly improving the utilization rate of the countertop. After the stove head descends, the auxiliary component in the rotating mechanism drives the sealing notch through the slider, forming a complete plane on the countertop, preventing dust or debris from entering the sleeve, and at the same time providing a flat operating surface, enhancing practicality. The symmetrically installed rings are rotationally connected to the sleeve, cooperating with the servo motor and the rotating component to ensure a stable and reliable lifting process; the overall mechanism is built into the stove body, without the need for external complex devices, saving kitchen space. The servo motor is driven by an electric control signal to control the lifting of the stove head with one key, without manual adjustment, meeting the intelligent requirements of modern kitchens. By combining the lifting and sealing functions, the problem of traditional fixed stove heads occupying countertop space is solved, especially suitable for kitchens with limited area, optimizing the space layout.
[0007] As a further description of the above technical solution: The rotating component includes a threaded groove opened on the inner surface of the sleeve, a base is threadedly connected to the threaded groove, several teeth are equidistantly installed at the bottom of the sleeve, a first gear is fixedly installed at the output end of the servo motor, and a cleaning component is assembled on the base.
[0008] As a further description of the above technical solution: The stove head is fixedly installed on the base, the first gear is directly below several teeth, and the first gear meshes with several teeth.
[0009] As a further description of the above technical solution: The cleaning component includes collection boxes symmetrically placed at the bottom end of the inner wall of the stove body, and several scraping plates are equidistantly installed on the outer surface of the base.
[0010] As a further description of the above technical solution: The collection box is located inside the ring, a box door is opened on one side of the stove body, a notch is opened on one side of the ring close to the box door, and the outer surface of the base is set as an inclined surface.
[0011] As a further description of the above technical solution: The auxiliary component includes a first gear ring slidably mounted on the outer surface of the sleeve. At the top end of the inner wall of the stove body, a plurality of brackets are fixedly installed. A second gear ring is rotatably installed between the plurality of brackets. A plurality of placement grooves are formed inside the stove body. A rotating shaft is rotatably connected to the inside of each placement groove. The bottom end of the rotating shaft extends to the outside of the stove body. A second gear is fixedly connected to the bottom end of the rotating shaft. A sealing plate is fixedly installed on the surface of the rotating shaft, and the sealing plate is located inside the placement groove. The sealing plate is also equipped with a support component.
[0012] As a further description of the above technical solution: The slider is located at the bottom end of the base. One side of the slider is rotatably connected to the base. The other side of the slider is adsorbed to the bottom end of the first gear ring through a magnet. The second gear meshes with the second gear ring. The top end of the second gear and the bottom end of the tooth part on the first gear ring are both set to be conical.
[0013] As a further description of the above technical solution: The support component includes a convex block arranged on one side of the sealing plate and an arc-shaped groove formed at the bottom end of the other side of the sealing plate.
[0014] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: 1. Through the collaborative design of the lifting mechanism and the rotating mechanism, the core functions of adjustable burner heads and flexible countertop switching are achieved. It has the advantages of high space utilization rate, convenient operation, and compact structure, meeting the requirements of modern kitchens for multi-functional integration. Specifically, the servo motor of the lifting mechanism drives the rotating component to drive the sleeve to rotate, enabling the burner head to be lifted into the sleeve. This design hides the burner head when not in use, releasing the space at the top of the stove body, facilitating the placement of cooking utensils such as cutting boards and seasoning bottles, and significantly improving the utilization rate of the countertop. After the burner head descends, the auxiliary component in the rotating mechanism drives the sealing notch through the slider, making the countertop form a complete plane, preventing dust or debris from entering the inside of the sleeve, and at the same time providing a flat operating surface, enhancing practicality. The symmetrically installed rings are rotatably connected to the sleeve, cooperating with the servo motor and the rotating component to ensure a stable and reliable lifting process; the overall mechanism is built into the stove body, without the need for external complex devices, saving kitchen space. The servo motor is driven by an electric control signal to control the lifting of the burner head with one key, without manual adjustment, meeting the intelligent requirements of modern kitchens. By combining the lifting and sealing functions, the problem of traditional fixed burner heads occupying countertop space is solved, especially suitable for kitchens with limited area, optimizing the space layout.
[0015] 2. At the same time, when the base drives the burner to rotate and descend, through the connection part between the base and the threaded groove, the threaded groove can be cleaned, and the dust and impurities inside the threaded groove can be scraped off. At the same time, through the scraper on the outer surface of the base, the inner surface of the sleeve is cleaned. By setting the outer surface of the base as an inclined surface, the scraped impurities can fall into the collection box for collection. By opening the box door on one side, the collection box can also be taken out from the ring for cleaning.
[0016] 3. By providing a rotating mechanism, when the base rotates and descends, it will also squeeze the slider to make the slider descend. The slider drives the first gear ring to descend through the adsorption of the magnet. When the burner descends to the middle of the sleeve, the first gear ring meshes with the second gear. Through the conical settings at the top of the second gear and the bottom of the rack on the first gear ring, it plays a guiding role for the first gear ring and the second gear to prevent misalignment and non-engagement. The slider is continuously squeezed by the base and descends. At this time, the slider is no longer adsorbed to the first gear ring. When the first gear ring rotates with the sleeve, the corresponding second gear rotates through meshing. Through meshing, the second gear ring drives the other second gears to rotate, and then the rotating shaft drives the sealing plate to rotate out of the placement groove and be spliced together to seal the circular hole formed when the burner descends, making the top of the stove body form a flat surface and improving the practicality.
[0017] 4. At the same time, after several sealing plates are spliced, the convex blocks on the sealing plate will correspond to the arc grooves on another sealing plate, so that the front ends of several sealing plates can support each other, improving the bearing capacity of the sealing plate. At the same time, the spliced sealing plates can also prevent dust from entering the corresponding sleeve interior. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is the overall schematic diagram of the present invention.
[0019] Figure 2 is the cross-sectional view of the stove body of the present invention.
[0020] Figure 3 is of the present invention Figure 2 is the perspective view after the stove body is sectioned in the present invention.
[0021] Figure 4 is the cross-sectional view of the sleeve of the present invention.
[0022] Figure 5 is of the present invention Figure 4 is another perspective view.
[0023] Figure 6 is the positional relationship diagram of the scraper and the base of the present invention.
[0024] Figure 7 is of the present invention Figure 3 is the enlarged view of area A in the present invention.
[0025] Figure 8 is the effect diagram after the sealing plates of the present invention are combined.
[0026] Figure 9 is the effect diagram of the second gear of the present invention.
[0027] Legend: 10, cooking range body; 11, burner head; 12, burner grate; 20, lifting mechanism; 21, ring; 22, sleeve; 23, servo motor; 24, rotating assembly; 241, thread groove; 242, base; 243, teeth; 244, first gear; 245, cleaning component; 2451, collection box; 2452, scraper; 30, rotating mechanism; 31, through groove; 32, slider; 33, auxiliary component; 331, first gear ring; 332, second gear ring; 333, rotating shaft; 334, second gear; 335, sealing plate; 336, supporting component; 3361, convex block; 3362, arc groove. Detailed implementation manners
[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0029] As Figure 1 - Figure 9 shown, the present invention provides an integrated stove with adjustable burner heads, including a cooking range body 10. The cooking range body 10 is the cooking range on an existing integrated stove. A burner head 11 and a burner grate 12 are symmetrically arranged on the top of the cooking range body 10. An internal part of the cooking range body 10 is equipped with a lifting mechanism 20 that can lift the burner head 11 to increase the area of the top of the cooking range body 10.
[0030] The lifting mechanism 20 includes rings 21 symmetrically installed at the bottom end of the inner wall of the cooking range body 10. The top end of the ring 21 is rotatably connected to a sleeve 22. The outer surface of the ring 21 is fixedly installed with a servo motor 23. The output end of the servo motor 23 is equipped with a rotating assembly 24 that can rotate the sleeve 22.
[0031] It further includes a rotating mechanism 30 assembled on the sleeve 22. The rotating mechanism 30 includes through grooves 31 symmetrically opened on the sleeve 22. A slider 32 is slidably connected inside the through groove 31. An auxiliary component 33 that can seal the gap after the burner head 11 is lowered is assembled on the sleeve 22.
[0032] Further in detail, the rotating assembly 24 includes a threaded groove 241 formed on the inner surface of the sleeve 22. A base 242 is threadedly connected to the threaded groove 241. A plurality of teeth 243 are equidistantly installed at the bottom of the sleeve 22. The output end of the servo motor 23 is fixedly installed with a first gear 244. A cleaning component 245 is assembled on the base 242. A button is provided on one side of the stove top body 10. By pressing the button, an electrical signal is sent out, causing the corresponding servo motor 23 to start operating.
[0033] Further in detail, the burner head 11 is fixedly installed on the base 242. The first gear 244 is located directly below the plurality of teeth 243. The first gear 244 meshes with the plurality of teeth 243. During use, the servo motor 23 drives the first gear 244 to rotate. The first gear 244 meshes with the teeth 243 at the bottom of the sleeve 22, thereby driving the sleeve 22 to rotate around the ring 21. When the sleeve 22 rotates, the base 242 drives the burner head 11 to rotate and descend through the threaded groove 241, realizing the flexible switching between the burner head 11 and the tabletop. It has strong versatility. At the same time, the operating space of the tabletop of the stove top body 10 is increased, facilitating the placement of cooking utensils such as cutting boards and vegetable baskets, improving the utilization rate of the integrated stove tabletop, and saving kitchen space.
[0034] As Figure 5 - Figure 6 shown, the cleaning component 245 includes collection boxes 2451 symmetrically placed at the bottom end of the inner wall of the stove top body 10. A plurality of scraping plates 2452 are equidistantly installed on the outer surface of the base 242. One side of the scraping plate 2452 is in contact with the inner surface of the sleeve 22.
[0035] Further in detail, the collection box 2451 is located inside the ring 21. A box door is provided on one side of the stove top body 10. A notch is provided on one side of the ring 21 close to the box door. The outer surface of the base 242 is set as an inclined surface. After the burner head 11 descends, a round hole will be formed between the burner head 11 and the stove top body 10, and air will also enter the round hole, causing dust to adhere to the inner surface of the sleeve 22. Therefore, when the base 242 rotates and descends, the part of the base 242 connected to the threaded groove 241 will also clean the threaded groove 241, scraping off the dust inside the threaded groove 241. At the same time, due to the setting of the inclined surface on the outer surface of the base 242, the dust will not be blocked and can directly fall into the collection box 2451 for collection. At the same time, a plurality of scraping plates 2452 on the outer surface of the base 242 will also clean the inner surface of the sleeve 22.
[0036] As Figure 7 - Figure 8As shown, the auxiliary component 33 includes a first gear ring 331 slidably mounted on the outer surface of the sleeve 22. At the top end of the inner wall of the stove body 10, a number of brackets are fixedly installed. A second gear ring 332 is rotatably installed between the brackets. A number of placement grooves are formed inside the stove body 10. A rotating shaft 333 is rotatably connected to the inside of each placement groove. The bottom end of the rotating shaft 333 extends outside the stove body 10. A second gear 334 is fixedly connected to the bottom end of the rotating shaft 333. A sealing plate 335 is fixedly installed on the surface of the rotating shaft 333 and is located inside the placement groove. The sealing plate 335 is also equipped with a support component 336.
[0037] More specifically, the slider 32 is located at the bottom end of the base 242. One side of the slider 32 is rotatably connected to the base 242. A magnet is installed on the other side of the slider 32 and is adsorbed to the bottom end of the first gear ring 331 through the magnet. The first gear ring 331 is made of metal. The second gear 334 meshes with the second gear ring 332. The top end of the second gear 334 (as Figure 9 shown) and the bottom end of the tooth part on the first gear ring 331 (as Figure 7 shown) are both set to be conical.
[0038] When the base 242 rotates and descends, it will also squeeze the slider 32, causing the slider 32 to descend. The slider 32 drives the first gear ring 331 to descend through the adsorption of the magnet. When the burner 11 descends to the middle of the sleeve 22, the first gear ring 331 meshes with the second gear 334. Through the conical settings of the top of the second gear 334 and the bottom of the rack on the first gear ring 331, it plays a guiding role for the first gear ring 331 and the second gear 334, preventing misalignment of teeth and inability to mesh. The slider 32 is continuously squeezed by the base 242 and descends and separates from the first gear ring 331. At this time, the base 242 is no longer adsorbed to the first gear ring 331. When the first gear ring 331 rotates following the sleeve 22, it makes the corresponding second gear 334 rotate through meshing. Through meshing, the second gear ring 332 drives the other second gears 334 to rotate. Furthermore, a number of rotating shafts 333 drive the sealing plates 335 to rotate out of the placement grooves and be spliced together, sealing the circular holes formed when the burner 11 descends, making the top of the stove body 10 form a flat surface and improving the practicality.
[0039] When it is necessary to raise the burner 11, at this time, the servo motor 23 and the first gear 244 drive a number of teeth 243 to drive the sleeve 22 to rotate in the reverse direction, so that the base 242 drives the burner 11 to rotate and rise. At the same time, while the sleeve 22 is rotating, through the cooperation of the first gear ring 331, the second gear 334 and the second gear ring 332, a number of rotating shafts 333 drive the sealing plate 335 to rotate back into the placement groove. At this time, the sliders 32 on both sides of the base 242 will contact and adsorb to the first gear ring 331 again after rising to the middle, and at the same time drive the first gear ring 331 to rise and disengage from the second gear 334, and then the burner 11 and the first gear ring 331 rotate and rise to reset.
[0040] Further in detail, the support member 336 includes a convex block 3361 provided on one side of the sealing plate 335 and an arc-shaped groove 3362 opened at the bottom end of the other side of the sealing plate 335. After a number of sealing plates 335 are spliced, the convex block 3361 on the sealing plate 335 will correspond to the arc-shaped groove 3362 on another sealing plate 335 (as Figure 8 shown), and so on, so that a number of sealing plates 335 are fitted with the arc-shaped grooves 3362 of adjacent sealing plates through the convex blocks 3361 to form a mutually supporting structure, improving the bearing capacity of the sealing plate 335.
[0041] Working principle: When in use, the output end of the servo motor 23 drives the first gear 244 to rotate, and when the first gear 244 rotates, a number of teeth 243 will also drive the sleeve 22 to start rotating through meshing, and when the sleeve 22 rotates, the base 242 will drive the burner 11 to rotate and descend through the thread groove 241.
[0042] After the burner 11 descends, a round hole will be formed between the burner 11 and the stove top body 10, and air will enter the round hole, and dust will adhere to the inner surface of the sleeve 22. Therefore, while the base 242 rotates and descends, the part of the base 242 connected to the thread groove 241 will also clean the thread groove 241, so that the dust inside the thread groove 241 is scraped off. At the same time, through the setting of the inclined surface on the outer surface of the base 242, the dust will not be blocked and can directly fall into the collection box 2451 for collection. At the same time, a number of scraping plates 2452 located on the outer surface of the base 242 will also clean the inner surface of the sleeve 22.
[0043] When the base 242 rotates and descends, it will also squeeze the slider 32, causing the slider 32 to descend, and the slider 32 will drive the first gear ring 331 to descend through the adsorption of the magnet. When the burner 11 descends to the middle of the sleeve 22, the first gear ring 331 meshes with the second gear 334. Through the tapered settings at the top of the second gear 334 and the bottom of the rack on the first gear ring 331, it plays a guiding role for the first gear ring 331 and the second gear 334 to prevent misalignment of teeth and inability to mesh.
[0044] The slider 32 is further pressed down by the base 242 and separated from the first gear ring 331. At this time, the base 242 is no longer adsorbed to the first gear ring 331. When the first gear ring 331 rotates following the sleeve 22, the corresponding second gear 334 is rotated through meshing. Through meshing, the second gear ring 332 drives the remaining second gears 334 to rotate. Furthermore, a plurality of rotating shafts 333 drive the sealing plates 335 to rotate out of the placement groove and be spliced together to seal the circular hole formed when the burner head 11 descends.
[0045] Meanwhile, after a plurality of sealing plates 335 are spliced, the protrusions 3361 on the sealing plates 335 will correspond to the arc-shaped grooves 3362 on another sealing plate 335 (as Figure 8 shown), enabling the front ends of the plurality of sealing plates 335 to support each other and improving the bearing capacity of the sealing plates 335.
[0046] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes, shall be covered by the protection scope of the present invention.
Claims
1. An integrated stove with adjustable burners, comprising a stove top body (10), wherein burners (11) and burner racks (12) are symmetrically arranged at the top of the stove top body (10), and it is characterized in that, Inside the cooking range body (10), a lifting mechanism (20) is assembled, which can lift the burner (11) to increase the top area of the cooking range body (10). The lifting mechanism (20) includes a circular ring (21) symmetrically installed at the bottom end of the inner wall of the cooking range body (10). The top end of the circular ring (21) is rotatably connected to a sleeve (22). A servo motor (23) is fixedly installed on the outer surface of the circular ring (21). The output end of the servo motor (23) is assembled with a rotating component (24) that can rotate the sleeve (22). It also includes a rotating mechanism (30) assembled on the sleeve (22). The rotating mechanism (30) includes through grooves (31) symmetrically opened on the sleeve (22). A slider (32) is slidably connected inside the through grooves (31). An auxiliary component (33) is assembled on the sleeve (22) to seal the gap after the burner (11) descends.
2. The integrated stove with an adjustable burner head according to claim 1, wherein, The rotating component (24) includes a threaded groove (241) opened on the inner surface of the sleeve (22). A base (242) is threadedly connected to the threaded groove (241). A number of teeth (243) are equidistantly installed at the bottom of the sleeve (22). The output end of the servo motor (23) is fixedly installed with a first gear (244). A cleaning component (245) is assembled on the base (242).
3. The integrated stove with adjustable burner head according to claim 2, wherein The burner (11) is fixedly installed on the base (242). The first gear (244) is located directly below a number of teeth (243), and the first gear (244) meshes with a number of teeth (243).
4. The integrated stove with adjustable burner head according to claim 3, wherein, The cleaning component (245) includes collection boxes (2451) symmetrically placed on the bottom end of the inner wall of the cooking range body (10). A number of scraping plates (2452) are equidistantly installed on the outer surface of the base (242).
5. The integrated stove with adjustable burner head according to claim 4, characterized in that, The collection box (2451) is located inside the circular ring (21). A box door is opened on one side of the cooking range body (10). A gap is opened on the side of the circular ring (21) close to the box door. The outer surface of the base (242) is set as an inclined surface.
6. The integrated stove with an adjustable burner head according to claim 2, characterized in that, The auxiliary component (33) includes a first gear ring (331) slidably installed on the outer surface of the sleeve (22). A number of brackets are fixedly installed at the top end of the inner wall of the cooking range body (10). A second gear ring (332) is rotatably installed between a number of the brackets. A number of placement grooves are opened inside the cooking range body (10). A rotating shaft (333) is rotatably connected inside each placement groove. The bottom end of the rotating shaft (333) extends to the outside of the cooking range body (10). The bottom end of the rotating shaft (333) is fixedly connected to a second gear (334). A sealing plate (335) is fixedly installed on the surface of the rotating shaft (333), and the sealing plate (335) is located inside the placement groove. The sealing plate (335) is also assembled with a support component (336).
7. The integrated stove with adjustable burner head according to claim 6, characterized in that, The slider (32) is located at the bottom end of the base (242). One side of the slider (32) is rotatably connected to the base (242), and the other side of the slider (32) is adsorbed to the bottom end of the first gear ring (331) through a magnet. The second gear (334) meshes with the second gear ring (332), and the top end of the second gear (334) and the bottom end of the tooth part on the first gear ring (331) are both conical.
8. An integrated stove with adjustable burner head according to claim 7, characterized in that, The support member (336) includes a convex block (3361) provided on one side of the sealing plate (335), and an arc-shaped groove (3362) opened at the bottom end of the other side of the sealing plate (335).