Multifunctional cooking range for kitchen
The design, featuring multi-point support and interlocking connections, solves the problem of cookware instability on the stove, achieving stable installation and efficient heat utilization. This multi-functional stove is suitable for various cookware sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-04-03
AI Technical Summary
The existing cookware on the stove is not stably connected to the stove, which poses a risk of slipping, and the way the cookware is fixed is not convenient for disassembly and replacement.
The furnace adopts a multi-point, multi-directional support structure, which supports the pots through the boss and fixed blocks on the top of the furnace cover. The furnace cover and furnace platform are stably installed by using the connection method of interlocking blocks and interlocking grooves, eliminating the need for bolt fixing. The thermal efficiency is improved by combining the heat-conducting structure of metal and insulation layer.
It provides stable support for cookware, prevents slippage, is easy to install and replace, has high heat radiation efficiency, improves heat utilization efficiency, and is suitable for various cookware sizes.
Smart Images

Figure CN224080247U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stove technology, and in particular to a multifunctional stove for kitchens. Background Technology
[0002] A stove is a cooking appliance. Currently, stoves on the market have the following disadvantages: the cookware is connected to the stove by being placed directly on the stove.
[0003] The invention disclosed in application number CN202310422861.8 is an energy-saving stove. The technical solution is as follows: an energy-saving stove includes a stove body, a burner plate installed in the stove body, a spiral channel provided in the stove body, a flue provided on the stove body, the burner plate is connected to the middle of the spiral channel, and the flue is connected to the outer side of the spiral channel.
[0004] When cookware is placed on the stove, the connection between the cookware and the stove's circular surface is not stable enough and there is a risk of the cookware sliding. Utility Model Content
[0005] The purpose of this invention is to provide a multi-functional stove for the kitchen that addresses the shortcomings of existing technologies.
[0006] To achieve the above objectives, the technical solution of this utility model is as follows:
[0007] A multi-functional stove for kitchens includes a stove head, which includes a table made of stainless steel. The table has two stove platforms and a stove cover installed on the stove platforms. The stove cover has a protrusion and a fixing block for supporting cookware. The stove platforms are formed with concave guide grooves. The top of the stove cover is formed with a top positioning outer ring. The bottom of the top positioning outer ring is formed with a raised interlocking block. The top of the stove platform is formed with a bottom positioning outer ring that is coaxially aligned with the top positioning outer ring. The bottom positioning outer ring is formed with a concave interlocking groove for guiding the interlocking block into place.
[0008] Furthermore: the furnace hood is formed with a concave combustion groove, and an inner shell is set inside the combustion groove. A circular groove is formed in the center of the inner shell, and the inner shell is provided with a layered heat-conducting structure, which includes a metal layer and an insulation layer stacked from bottom to top.
[0009] Furthermore: a rear seat is also provided on the back of the table, and a water pipe is installed inside the rear seat. The water pipe is equipped with a pipe connector, and the pipe connector is equipped with a faucet.
[0010] Furthermore: the bottom of the furnace platform is provided with a furnace base and a furnace core installed on top of the furnace base. A furnace groove is formed on the top of the furnace base, and a through top fire hole is formed in the furnace groove.
[0011] Furthermore: a ring-shaped support ring is detachably installed inside the furnace trough, an internal fire chamber is formed inside the support ring, and a bottom guide hole is formed at the bottom of the support ring to match the top fire hole.
[0012] Furthermore: the bottom ignition hole is connected to the internal fire chamber, and the top and inner sidewall of the support ring are respectively formed with top ignition holes that are connected to the internal fire chamber.
[0013] Furthermore, the inner shell is formed with multiple through-type top vent holes.
[0014] Furthermore: the bottom of the inner shell is formed with a bottom fire inlet hole, the bottom of which is connected to the furnace slot.
[0015] Furthermore: the inner shell has a fire path groove that communicates with the bottom fire inlet and the top fire exhaust hole.
[0016] The beneficial effects of this utility model are as follows: When the cookware is placed in, the protrusion on the top of the stove cover provides linear support for the cookware, and multiple fixed blocks provide point support for the cookware. This multi-point and multi-directional support can prevent the cookware from sliding. In addition, when the stove cover is damaged, it can be directly removed and replaced. During installation, the top positioning outer ring of the stove cover is fitted with the fitting groove on the top of the stove platform through the fitting block to achieve a fitting connection. The installed stove cover will not shift and does not require bolt installation and fixation, making disassembly and replacement convenient. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of a multi-functional stove.
[0018] Figure 2 This is a schematic diagram of the structure when the furnace platform and furnace cover are separated.
[0019] Figure 3 This is a cross-sectional view of the furnace hood.
[0020] Figure 4 This is a schematic diagram of the furnace base and furnace core.
[0021] Figure 5 This is a cross-sectional view of the furnace core.
[0022] The reference numerals in the figures include:
[0023] 1-Stove head,
[0024] 11-Table, 12-Furnace platform, 13-Furnace hood, 14-Top positioning outer ring, 15-Matching block
[0025] 16-Bottom positioning outer ring, 17-Matching groove, 18-Combustion groove, 19-Water storage tank,
[0026] 2-Inner shell,
[0027] 21-Circular groove, 22-Heat-conducting structure, 23-Top vent hole, 24-Bottom vent hole, 25-Fire path groove, 26-Protrusion, 27-Fixing block, 28-Rear seat, 29-Water tap
[0028] 3-Furnace base,
[0029] 31-Furnace core, 32-Furnace slot, 33-Top flame hole, 34-Flame suppressor cover, 35-Support ring,
[0030] 36-Internal fire chamber, 37-Bottom fire hole, 38-Top fire hole, 39-Side fire hole. Detailed Implementation
[0031] The present invention will now be described in detail with reference to the accompanying drawings.
[0032] like Figure 1-5 As shown, a multi-functional stove for kitchens includes a stove head 1. The stove head 1 includes a table 11 made of stainless steel. The table 11 is provided with two stove plates 12 and a stove cover 13 installed on the stove plates 12. A rear seat 28 is also provided on the rear side of the table 11. A water pipe is provided in the rear seat 28. The water pipe is equipped with a pipe connector and a faucet 29. A water storage tank 19 installed on the table 11 is provided below the faucet 29. The water storage tank 19 can be used to store water and cool the stove head 1.
[0033] The furnace cover 13 is provided with a boss 26 and a fixed block 27 for supporting the pot. The furnace platform 12 is formed with a concave guide groove. The top of the furnace cover 13 is formed with a top positioning outer ring 14. The bottom of the top positioning outer ring 14 is formed with a protruding fitting block 15. The top of the furnace platform 12 is formed with a bottom positioning outer ring 16 that is coaxially aligned with the top positioning outer ring 14. The bottom positioning outer ring 16 is formed with a concave fitting groove 17 for the fitting block 15 to be guided and inserted.
[0034] When the cookware is placed in, the protrusion 26 on the top of the stove cover 13 provides linear support for the cookware, and multiple fixed blocks 27 provide point support for the cookware. This multi-point and multi-directional support can prevent the cookware from sliding. In addition, when the stove cover 13 is damaged, it can be directly removed and replaced. During installation, the top positioning outer ring 14 of the stove cover 13 is engaged with the fitting groove 17 on the top of the stove platform 12 through the fitting block 15 to achieve a fitting connection. The installed stove cover 13 will not shift and does not require bolt installation and fixation, making disassembly and replacement convenient.
[0035] Specifically, the furnace hood 13 has a concave combustion groove 18, within which an inner shell 2 is installed. A circular groove 21 for the flame path is formed in the center of the inner shell 2. The inner shell 2 is equipped with a layered heat-conducting structure 22, which includes a metal layer and an insulation layer stacked sequentially from bottom to top. The use of metal and insulation layers results in high heat radiation efficiency, increases heat recovery, improves the heat utilization efficiency of the gas stove, simplifies manufacturing, facilitates installation, and ensures durability.
[0036] Preferably, the insulation layer is one or a combination of zirconium-containing high-temperature resistant insulation layer, aluminum silicate insulation layer, and chromium-containing high-temperature resistant insulation layer, used to improve radiation efficiency.
[0037] The bottom of the inner shell 2 has a bottom fire inlet hole 24, the bottom of which communicates with the furnace slot 32. Inside the inner shell 2, a fire path slot 25 is formed, communicating with the bottom fire inlet hole 24 and the top fire exhaust hole 23. In this embodiment, a portion of the fire path enters the fire path slot 25 inside the inner shell 2 through the bottom fire inlet hole 24 and is discharged through the top fire exhaust hole 23, thus achieving combustion and heat conduction in the off-center area of the cookware, resulting in better heat conduction.
[0038] The stove base 12 has a stove seat 3 at its bottom and a stove core 31 installed on top of the stove seat 3. A fire groove 32 is formed on the top of the stove seat 3, and a through-hole top fire hole 33 is formed within the fire groove 32. Gas enters the fire groove 32. A fire suppressor 34 is inserted into the top fire hole 33 to cover it. An opening hole is formed on the side of the fire suppressor 34. The fire suppressor 34 can cover and suppress the fire within the top fire hole 33, allowing the fire to spread outwards. This increases the area for the cookware to burn and improves heat conduction.
[0039] A ring-shaped support ring 35 is detachably installed inside the furnace trough 32. The furnace trough 32 also has longitudinally arranged side flame holes 39. Part of the fire path enters the furnace trough 32 through the top flame hole 33, and part through the side flame holes 39. An internal fire chamber 36 is formed inside the support ring 35, and a bottom guide hole 37, which mates with the side flame holes 39, is formed at the bottom of the support ring 35. The bottom guide hole 37 communicates with the internal fire chamber 36. Top guide holes 38, communicating with the internal fire chamber 36, are formed on the top and inner wall of the support ring 35, respectively. After the support ring 35 is installed, the fire path enters the internal fire chamber 36 of the support ring 35 through the side flame holes 39 and exits through the top guide holes 38 on the top and inner wall, allowing the firepower to be concentrated within the support ring 35. Furthermore, the support ring 35 can be removed and replaced with different sizes and structures to suit different scenarios and improve practicality.
[0040] In one embodiment, the inner shell 2 can be removed and replaced with a closed inner shell 2, and the fire path is only sprayed from the furnace slot 32. At this time, a small pot can be placed at the bottom, and the small pot is supported by the support ring 35, realizing multi-functional use.
[0041] In summary, this utility model possesses the aforementioned excellent characteristics, enabling it to achieve unprecedented efficiency in use and thus become a highly practical product.
[0042] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A multi-functional stove for a kitchen, comprising a stove head, the stove head including a table made of stainless steel, the table having two stove platforms and a stove cover installed on the stove platforms, characterized in that: The furnace cover is provided with a boss and a fixed block for supporting the pot. The furnace platform is formed with a concave guide groove. The top of the furnace cover is formed with a top positioning outer ring. The bottom of the top positioning outer ring is formed with a protruding fitting block. The top of the furnace platform is formed with a bottom positioning outer ring that is coaxially aligned with the top positioning outer ring. The bottom positioning outer ring is formed with a concave fitting groove for the fitting block to be guided and inserted.
2. A multi-functional stove for kitchens according to claim 1, characterized in that: The furnace hood is formed with a concave combustion groove, and an inner shell is provided inside the combustion groove. A circular groove is formed in the center of the inner shell, and the inner shell is provided with a layered heat-conducting structure, which includes a metal layer and a heat-insulating layer stacked from bottom to top.
3. A multi-functional stove for kitchens according to claim 1, characterized in that: The table is also equipped with a rear seat, and a water pipe is installed inside the rear seat. The water pipe is fitted with a pipe connector, and the pipe connector is fitted with a faucet.
4. A multi-functional stove for kitchens according to claim 2, characterized in that: The furnace platform is provided with a furnace base at the bottom and a furnace core installed on the top of the furnace base. A furnace groove is formed on the top of the furnace base, and a through top fire hole is formed in the furnace groove.
5. A multi-functional stove for a kitchen according to claim 4, characterized in that: A ring-shaped support ring is detachably installed inside the furnace trough. An internal fire chamber is formed inside the support ring, and a bottom guide hole is formed at the bottom of the support ring to cooperate with the top fire hole.
6. A multi-functional stove for a kitchen according to claim 5, characterized in that: The bottom ignition hole is connected to the internal fire chamber, and the top and inner sidewall of the support ring are respectively formed with top ignition holes that are connected to the internal fire chamber.
7. A multi-functional stove for a kitchen according to claim 4, characterized in that: The inner shell is formed with multiple through-holes at the top for fire venting.
8. A multi-functional stove for a kitchen according to claim 7, characterized in that: The bottom of the inner shell is formed with a bottom fire inlet hole, and the bottom of the bottom fire inlet hole is connected to the furnace slot.
9. A multi-functional stove for a kitchen according to claim 8, characterized in that: The inner shell has a fire channel groove that communicates with the bottom fire inlet and the top fire exhaust hole.
Citation Information
Patent Citations
Energy-saving cooking range
CN116428618A