Oven stove
By integrating the cooktop module and oven module into one unit and utilizing gas heating, the heating system is simplified, solving the problems of complex structure, difficult cleaning, and low efficiency of existing electric ovens, and achieving rapid heating and low-cost cooking results.
Patent Information
- Application Number
- CN202422846129.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Existing electric ovens or electric steam ovens are complex and costly, and the heating elements are designed inside the cavity, making cleaning difficult, inefficient, and slow in cooking.
The cooktop and oven modules are integrated into one unit, using gas as the heat source. The gas circuit system of the cooktop module provides gas to the cooktop burner and oven burner, simplifying the heating system and eliminating the need for electric heating elements and electronic control modules.
The oven structure has been simplified, heating speed has been improved, costs have been reduced, and it is easy to clean, thus increasing cooking efficiency.
Smart Images

Figure CN223564262U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchen appliance technology, and in particular to an oven stove. Background Technology
[0002] Currently, the cooking modules of integrated products in the industry generally use electric heating tubes to generate heat to bake food or make pastries. Correspondingly, a series of control systems, such as auxiliary electronic control modules and detection systems, are required for operation.
[0003] Current electric ovens and steam ovens all use electricity to heat food, resulting in complex systems and numerous components, thus increasing costs. Furthermore, the heating elements are located inside the cavity, making them prone to accumulating grease and grime over time, which is difficult to clean. Additionally, the electric heating elements are relatively slow in actual cooking due to limitations in the overall power and low efficiency of the appliance. Summary of the Invention
[0004] This utility model aims to at least partially solve one of the problems existing in the existing related technologies. To this end, this utility model proposes an oven stove that simplifies the heating system, has a simple structure, and heats up quickly.
[0005] The oven stove described above is achieved through the following technical solution:
[0006] An oven stove includes: an oven module comprising an oven body and two oven burners, the oven body having a front-opening cavity and an upward-opening receiving cavity, the two oven burners being disposed on the oven body and respectively located on the upper and lower sides or the left and right sides of the cavity; and a stove module comprising a stove housing, at least one stove burner, and a gas supply system, the lower end of the stove housing being inserted into the receiving cavity and detachably connected to the oven body, the stove burner being mounted on the stove housing, and the gas supply system being installed inside the stove housing for supplying gas to the stove burner and the two oven burners.
[0007] In some embodiments, the oven module is further provided with a support assembly, which is disposed in the receiving cavity and its top abuts against the bottom of the cooktop housing. The support assembly is connected to the cooktop housing and / or the oven body.
[0008] In some embodiments, the support assembly includes two support plates, which are respectively disposed on the left and right sides of the bottom of the stove housing. Each support plate includes a horizontal plate and a vertical plate fixedly connected to each other. The horizontal plate is connected to the bottom of the stove housing, and the vertical plate is connected to the oven body. Alternatively, the support assembly includes two transverse profiles. The left and right sides of the cavity wall of the receiving cavity are provided with transverse profiles extending inward thereto. The left and right sides of the bottom of the stove housing abut against and are connected to the two transverse profiles.
[0009] In some embodiments, an installation port communicating with the cavity is provided at the top of the cavity, a smoke inlet group is provided at the bottom of the cavity, and a lower combustion chamber located below the cavity is provided on the oven body, the lower combustion chamber communicating with the cavity through the smoke inlet group; one oven burner is installed at the installation port, and the other oven burner is installed in the lower combustion chamber.
[0010] In some embodiments, the oven body has two side combustion chambers located on the left and right outer sides of the cavity, and side openings are respectively provided on the left and right side walls of the cavity at positions corresponding to the side combustion chambers; two oven burners are respectively installed in the two side combustion chambers, and the smoke outlet of the oven burner is connected to the cavity through the corresponding side opening, or the smoke outlet of the oven burner extends into the cavity through the corresponding side opening.
[0011] In some embodiments, an opening and an exhaust port are respectively provided at the bottom and top of the stove housing, and at least one smoke exhaust port is provided at the top of the oven body. A smoke exhaust assembly is provided above the smoke exhaust port. The lower end of the smoke exhaust assembly is connected to the oven body, and the upper end passes through the opening and extends into the stove housing. The exhaust port is connected to the corresponding smoke exhaust port through the smoke exhaust assembly.
[0012] In some embodiments, the smoke exhaust assembly includes a smoke exhaust hood that passes through the opening. The lower end of the smoke exhaust hood is mounted on the top of the oven body and covers the corresponding smoke exhaust port, while the upper end extends toward the exhaust port. The smoke exhaust port is connected to the exhaust port through the smoke exhaust hood.
[0013] In some embodiments, the cooktop module further includes an exhaust hood, which is fitted from top to bottom outside the rear end of the cooktop housing and covers the exhaust port. An exhaust grille is provided on the exhaust hood at the position corresponding to the exhaust port.
[0014] In some embodiments, a heat insulation layer is provided on the top and / or the left and right outer sides of the cavity.
[0015] In some embodiments, the gas system includes an intake valve body, a solenoid valve, a gas distribution valve body, and a control valve. The intake valve body has an intake channel, a first outlet, and a second outlet. The intake channel is connected to the first outlet and the second outlet, respectively. The first outlet is used to connect to at least one of the stove burners. The solenoid valve is disposed on the intake valve body to control the opening and closing of the intake channel. The gas distribution valve body is detachably installed on the intake valve body and has a gas distribution inlet and two gas distribution outlets. The gas distribution inlet is connected to the second outlet, and the two gas distribution outlets are used to connect to two oven burners, respectively. The control valve is disposed on the gas distribution valve body to control the opening and closing of the gas distribution inlet and the two gas distribution outlets.
[0016] Compared with the prior art, the present invention has at least the following beneficial effects:
[0017] This utility model of an oven stove integrates the stove module and the oven module into one unit. The gas circuit system of the stove module provides gas to the stove burner of the stove module and the two oven burners of the oven module respectively. Compared with existing electric ovens, it reduces complex components such as electric heating elements, power boards, and control boards, simplifies the heating system of the oven module, has a simple structure, and uses gas as the heat source for food cooking. The gas has a high calorific value and a faster heating speed. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the oven stove in Embodiment 1 of this utility model;
[0019] Figure 2 This is a cross-sectional view of the oven stove in Embodiment 1 of this utility model. Figure 1 ;
[0020] Figure 3 This is a cross-sectional view of the oven stove in Embodiment 1 of this utility model. Figure 2 ;
[0021] Figure 4 This is a schematic diagram of the oven module after the insulation cotton has been removed in Embodiment 1 of this utility model;
[0022] Figure 5 This is an exploded view of the oven module in Embodiment 1 of this utility model after the insulation cotton has been removed;
[0023] Figure 6 This is a schematic diagram of the oven stove in Embodiment 1 of this utility model after the stove panel and exhaust hood have been removed;
[0024] Figure 7 This is an exploded view of the stove module in Embodiment 1 of this utility model;
[0025] Figure 8 This is a schematic diagram of part of the gas path system in Embodiment 1 of this utility model;
[0026] Figure 9 This is a cross-sectional view of part of the gas path system in Embodiment 1 of this utility model;
[0027] Figure 10 This is a cross-sectional view of the oven module in Embodiment 2 of this utility model.
[0028] In the diagram: 1-Oven module, 11-Oven body, 1101-Bottom air inlet, 1102-Front air inlet, 111-Outer shell assembly, 1111-Oven bottom plate, 1112-Oven side plate, 1113-Oven back plate, 112-Inner liner assembly, 1121-Cavity, 1122-Mounting port, 1123-Exhaust vent, 113-Accommodation cavity, 114-Lower combustion chamber, 115-Side combustion chamber, 12-Oven burner, 13-Support plate, 131-Horizontal plate, 132-Vertical plate, 14-Exhaust assembly, 141-Exhaust hood, 1411-Smoke inlet section, 1412-Exhaust section, 142-Fixed bracket, 15-Insulation, 16-Reinforcing plate, 17-Door assembly;
[0029] 2-Stove module, 21-Stove housing, 211-Stove bottom shell, 2111-Opening, 212-Stove panel, 2121-Exhaust port, 22-Stove burner, 23-Gas system, 231-Intake valve body, 2310-Main intake port, 2311-Intake channel, 2312-First exhaust port, 2313-Second exhaust port, 232-Solenoid valve, 233-Gas distribution valve body, 2331-Gas distribution inlet, 2332-Gas distribution outlet, 234-Control valve, 235-Switch valve, 24-Exhaust hood, 241-Top cover, 2411-Exhaust grille, 242-Side flange, 243-Rear flange. Detailed Implementation
[0030] The following embodiments illustrate the present invention, but the present invention is not limited to these embodiments. Modifications to the specific implementation of the present invention or equivalent substitutions for some technical features, without departing from the spirit of the present invention, should all be covered within the scope of the technical solution claimed by the present invention.
[0031] Example 1
[0032] refer to Figure 1-7This embodiment provides an oven stove, including an oven module 1 and a cooktop module 2 detachably mounted on the oven module 1. The oven module 1 includes an oven body 11, two oven burners 12, and a door assembly 17. The oven body 11 has a front-opening cavity 1121 and an upward-opening receiving cavity 113. The two oven burners 12 are both disposed on the oven body 11 and are located on the upper and lower sides or left and right sides of the cavity 1121, respectively. In this embodiment, the two oven burners 12 are located on the upper and lower sides of the cavity 1121, respectively. The door assembly 17 is rotatably connected to the oven body 11 and is used to open or close the front opening of the cavity 1121.
[0033] The cooktop module 2 includes a cooktop housing 21, at least one cooktop burner 22, and a gas system 23. The lower end of the cooktop housing 21 is inserted into the receiving cavity 113 from top to bottom and is detachably connected to the oven body 11. The cooktop burner 22 is installed on the cooktop housing 21, and the gas system 23 is installed inside the cooktop housing 21 to provide gas to the cooktop burner 22 and the two oven burners 12.
[0034] As can be seen, by integrating the stove module 2 and the oven module 1 into one unit, and by providing gas to the stove burner 22 and the two oven burners 12 through the gas circuit system 23 of the stove module 2, compared with the existing electric oven, complex components such as electric heating elements, power boards, and control boards are reduced, simplifying the heating system of the oven module 1. The structure is simple, and by using gas as the heat source for food cooking, the high calorific value of the gas results in faster heating, which is beneficial to improving cooking efficiency.
[0035] refer to Figure 1-7 The oven body 11 includes an outer shell assembly 111 and an inner liner assembly 112. The inner liner assembly 112 is disposed inside the outer shell assembly 111 and has a cavity 1121 with a forward opening. The upper end of the outer shell assembly 111 and the top of the inner liner assembly 112 enclose each other to form an upward-opening receiving cavity 113. In addition, reinforcing plates 16 are respectively provided on the left and right outer sides of the front end of the inner liner assembly 112. The reinforcing plates 16 are respectively connected to the back of the inner liner front plate of the inner liner assembly 112 and the side wall of the outer shell assembly 111, so that the inner liner assembly 112 and the outer shell assembly 111 are reliably connected as one unit, which helps to strengthen the overall strength of the oven module. The lower end of the cooker housing 21 is inserted into the receiving cavity 113 from top to bottom and is detachably connected to the upper end of the outer shell assembly 111. Specifically, the cooker housing 21 includes a cooker bottom shell 211 and a cooker panel 212. The lower end of the cooker bottom shell 211 is inserted into the receiving cavity 113 from top to bottom and is detachably connected to the upper end of the outer shell assembly 111 by fasteners. The cooker panel 212 covers the top of the cooker bottom shell 211 and is located around the cooker burner 22.
[0036] Specifically, the outer casing assembly 111 is formed by the oven base plate 1111, two oven side plates 1112, and an oven back plate 111. Multiple external mounting holes 1103 are respectively provided at the upper ends of the two oven side plates 1112 and the upper end of the oven back plate 111 (see...). Figure 4 An inner mounting hole 2112 is provided on the side wall of the cooktop bottom shell 211 at the position corresponding to the outer mounting hole 1113. During installation, fasteners are used to pass horizontally through the outer mounting hole 1103 and the inner mounting hole 2112, so as to detachably connect the oven shell 111 and the cooktop bottom shell 211 into one unit, which is convenient for transportation and after-sales disassembly and maintenance.
[0037] refer to Figure 3-4 Furthermore, the oven module 1 is also provided with a support assembly (not shown in the figure). The support assembly is disposed in the receiving cavity 113 and its top abuts against the bottom of the stove housing 21. The support assembly is connected to the stove housing 21 and / or the oven body 11, thereby achieving better fixation of the two modules and improving the overall strength of the machine. In this embodiment, the support assembly includes two support plates 13, which are respectively disposed on the left and right sides of the bottom of the stove base shell 211 of the stove housing 21. The support plate 13 includes a horizontal plate 131 and a vertical plate 132 fixedly connected to each other. The horizontal plate 131 is connected to the bottom of the stove base shell 211 of the stove housing 21 by screws or clips, and the vertical plate 132 is connected to the outer shell assembly 11 of the oven body 11 by welding, screws or other means.
[0038] In other embodiments, two transverse moldings can be used instead of two support plates 13. Specifically, transverse moldings extending inward are provided on the left and right sides of the cavity wall of the receiving cavity 113. That is, transverse moldings extending to the bottom of the stove housing 21 are provided on the upper ends of the two oven side plates 1112. The left and right ends of the bottom of the stove bottom shell 211 of the stove housing 21 abut against the two transverse moldings and are connected to the transverse moldings, thereby strengthening the strength of the outer shell assembly 111 and reliably supporting the stove module 2 while simplifying the parts.
[0039] refer to Figure 1-5Furthermore, an installation port 1122 communicating with the cavity 1121 is provided at the top of the cavity 1121, and a smoke inlet group is provided at the bottom of the cavity 1121. A lower combustion chamber 114 located below the cavity 1121 is provided on the oven body 11. In this embodiment, the lower combustion chamber 114 is formed between the bottom of the inner liner assembly 112 and the oven bottom plate 1111 of the outer shell assembly 111. The lower combustion chamber 114 is connected to the cavity 1121 through the smoke inlet group. One oven burner 12 is installed at the installation port 1122, and the other oven burner 12 is installed in the lower combustion chamber 114, thus forming a "bottom + top combined combustion system". Compared with existing electric ovens, using gas as the heat source for food cooking, the oven module no longer needs an electric heating element, and the gas has a high calorific value and a fast heating speed.
[0040] An air inlet group is provided at the bottom or lower front of the oven body 11 to allow secondary air to pass through. The air inlet group is connected to the lower combustion chamber 114, thereby supplementing the secondary air required for combustion of the lower oven burner 12 installed in the lower combustion chamber 114 through the air inlet group, ensuring more complete combustion. In this embodiment, the air inlet group includes multiple bottom air inlets 1101 and / or multiple front air inlets 1102. The multiple bottom air inlets 1101 are located on the oven bottom plate 1111 of the outer shell assembly 11, and the multiple front air inlets 1102 are located at the lower end of the inner liner front plate of the inner liner assembly 112 and are lower than the cavity.
[0041] refer to Figure 1-7 Furthermore, an opening 2111 and an exhaust port 2121 are respectively provided at the bottom and top of the cooktop housing 21. In this embodiment, the opening 2111 is located at the bottom of the cooktop bottom shell 211, while the exhaust port 2121 is located at the rear end of the cooktop panel 212 and behind the cooktop burner 22. The oven module 1 also includes a smoke exhaust assembly 14. At least one smoke exhaust port 1123 is provided at the top of the oven body 11. In this embodiment, there are two smoke exhaust ports 1123. A smoke exhaust assembly 14 is provided above each of the two smoke exhaust ports 1123. The lower end of the smoke exhaust assembly 14 is connected and fixed to the top of the inner liner assembly 112 of the oven body 11, and the upper end passes through the opening 2111 and extends into the cooktop housing 21. The exhaust port 2121 is connected to the corresponding smoke exhaust port 1123 through the smoke exhaust assembly 14. Thus, through the two smoke exhaust assemblies 14, the oil fumes generated during cooking and the smoke and exhaust gases generated during combustion can be discharged outside the cavity.
[0042] The fume extraction assembly includes a fume hood 141 and a fixing bracket 142. The fume hood 141 passes through the opening 2111. The lower end of the fume hood 141 is mounted on the top of the inner cavity assembly 112 of the oven body 11 via the fixing bracket 142 and covers the corresponding fume vent 1123. The upper end of the fume hood 141 extends toward the exhaust port 2121. The exhaust port 1123 is connected to the exhaust port 2121 via the fume hood 141. The fume hood 141 includes a smoke inlet section 1411 and a smoke exhaust section 1412 that are fixedly connected and arranged at an obtuse angle. The smoke inlet section 1411 is arranged vertically and its lower end is mounted on the top of the inner cavity assembly 112 of the oven body 11 via the fixing bracket 142. The fume hood 141 is arranged at an angle to the rear and its upper end extends toward the exhaust port 2121.
[0043] refer to Figure 1-2 and Figure 6-7 The cooktop module 2 also includes an exhaust hood 24, which is fitted from top to bottom onto the rear end of the cooktop panel 212 of the cooktop housing 21 and covers the exhaust port 2121. An exhaust grille 2411 is provided at the position of the exhaust hood 24 corresponding to the exhaust port 2121. In this embodiment, the exhaust hood 24 includes an upper cover plate 241, which is disposed on the rear end of the cooktop panel 212 and covers the exhaust port 2121. The left and right ends of the upper cover plate 241 are bent downwards to form side flanges 242. The two side flanges 242 are respectively disposed on the left and right outer sides of the rear end of the cooktop panel 212 and together clamp the cooktop panel 212. The rear end of the upper cover plate 241 is bent downwards to form a rear flange 243, which is located behind the cooktop panel 212 and abuts against the rear side wall of the cooktop panel 212.
[0044] refer to Figure 2-3 The oven module 1 also includes insulation cotton 15, and an insulation layer is provided on the top and / or left and right sides of the cavity 1121. The insulation layer is preferably insulation cotton 15, so as to better keep the heat warm and control the heat from causing excessive temperature to other components.
[0045] refer to Figure 5-9The gas system 23 of the cooktop module 2 includes an intake valve body 231, a solenoid valve 232, a gas distribution valve body 233, and a control valve 234. The intake valve body 231 has a main intake port 2310, an intake channel 2311, a first outlet 2312, and a second outlet 2313. The main intake port 2310 is connected to the first outlet 2312 and the second outlet 2313 through the intake channel 2311. The first outlet 2312 is used to connect to the cooktop burner 22 through a stopcock valve 235. The solenoid valve 232 is located on the intake valve body 231 and is used to control the opening and closing of the intake channel 2311. The gas distribution valve body 233 is detachably installed on the intake valve body 231, and it has a gas distribution inlet 2331 and two gas distribution outlets 2332. The gas distribution inlet 2331 is connected to the second outlet 2313 of the intake valve body 231, and the two gas distribution outlets 2332 are respectively used to connect to the two oven burners 12. The control valve 234 is provided on the gas distribution valve body 233 and is used to control the opening and closing of the gas distribution inlet 2331 and the two gas distribution outlets 2332.
[0046] Example 2
[0047] refer to Figure 10 The difference between this embodiment and Embodiment 1 lies in the specific installation positions of the two oven burners 12. In this embodiment, the two oven burners 12 are located on the left and right sides of the cavity 1121, respectively. Specifically, the oven body 11 has two side combustion chambers 115 located on the left and right outer sides of the cavity 1121. Side openings (not shown in the figure) are respectively opened on the left and right sides of the cavity wall corresponding to the positions of the side combustion chambers 115. The side combustion chambers 115 are connected to the cavity 1121 through the side openings. The two oven burners 12 are respectively installed in the two side combustion chambers 115. The smoke outlet of the oven burner 12 is connected to the cavity 1121 through the corresponding side opening, or the smoke outlet of the oven burner 12 extends into the cavity 1121 through the corresponding side opening. In addition, an air inlet group is provided at the bottom or lower front of the oven body 11, and an air inlet channel is provided on the oven body 11. The air inlet group is connected to the side combustion chamber 115 through the air inlet channel to supplement secondary air to the oven burner 12 installed in the side combustion chamber 115.
[0048] As can be seen, by placing the two oven burners 12 on the left and right sides of the cavity 1121 respectively, the heating system is simplified, reducing complex components such as electric heating elements, power boards, and control boards. At the same time, it avoids oil or cleaning water accumulating at the bottom of the cavity and seeping into the lower part through the smoke inlet group, which would make it difficult to clean. It effectively prevents the area below the inner liner assembly 112 from being contaminated and makes cleaning easier.
[0049] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.
Claims
1. An oven stove, characterized in that, include: The oven module (1) includes an oven body (11) and two oven burners (12). The oven body (11) has a cavity (1121) that opens to the front and a receiving cavity (113) that opens to the top. The two oven burners (12) are both disposed on the oven body (11) and are located on the upper and lower sides or the left and right sides of the cavity (1121), respectively. as well as The cooktop module (2) includes a cooktop housing (21), at least one cooktop burner (22), and a gas system (23). The lower end of the cooktop housing (21) is inserted into the receiving cavity (113) and is detachably connected to the oven body (11). The cooktop burner (22) is mounted on the cooktop housing (21), and the gas system (23) is mounted inside the cooktop housing (21) to provide gas to the cooktop burner (22) and the two oven burners (12).
2. The oven stove according to claim 1, characterized in that, The oven module (1) is also provided with a support component, which is disposed in the receiving cavity (113) and its top abuts against the bottom of the stove housing (21). The support component is connected to the stove housing (21) and / or the oven body (11).
3. An oven stove according to claim 2, characterized in that, The support assembly includes two support plates (13), which are respectively disposed on the left and right sides of the bottom of the stove housing (21). Each support plate (13) includes a horizontal plate (131) and a vertical plate (132) fixedly connected to each other. The horizontal plate (131) is connected to the bottom of the stove housing (21), and the vertical plate (132) is connected to the oven body (11); or The support assembly includes two transverse profiles. The left and right sides of the cavity wall of the receiving cavity (113) are provided with transverse profiles extending into it. The left and right sides of the bottom of the stove housing (21) respectively abut against the two transverse profiles and are connected to the transverse profiles.
4. An oven stove according to claim 1, characterized in that, An installation port (1122) communicating with the cavity (1121) is provided at the top of the cavity (1121), and a smoke inlet group is provided at the bottom of the cavity (1121). A lower combustion chamber (114) located below the cavity (1121) is provided on the oven body (11). The lower combustion chamber (114) is connected to the cavity (1121) through the smoke inlet group. One of the oven burners (12) is installed at the installation port (1122), and the other oven burner (12) is installed in the lower combustion chamber (114).
5. An oven stove according to claim 1, characterized in that, The oven body (11) is provided with two side combustion chambers (115) located on the left and right outer sides of the cavity (1121). Side openings are respectively provided on the left and right side walls of the cavity (1121) at the positions corresponding to the side combustion chambers (115). Two oven burners (12) are respectively installed in the two side combustion chambers (115). The smoke outlet of the oven burner (12) is connected to the cavity (1121) through the corresponding side opening, or the smoke outlet of the oven burner (12) extends into the cavity (1121) through the corresponding side opening.
6. An oven stove according to claim 1, characterized in that, An opening (2111) and an exhaust port (2121) are respectively provided at the bottom and top of the stove housing (21). At least one smoke exhaust port (1123) is provided at the top of the oven body (11). A smoke exhaust assembly (14) is provided above the smoke exhaust port (1123). The lower end of the smoke exhaust assembly (14) is connected to the oven body (11), and the upper end passes through the opening (2111) and extends into the stove housing (21). The exhaust port (2121) is connected to the corresponding smoke exhaust port (1123) through the smoke exhaust assembly (14).
7. An oven stove according to claim 6, characterized in that, The smoke exhaust assembly includes a smoke exhaust hood (141), which passes through the opening (2111). The lower end of the smoke exhaust hood (141) is installed on the top of the oven body (11) and covers the corresponding smoke exhaust port (1123). The upper end extends toward the exhaust port (2121). The smoke exhaust port (1123) is connected to the exhaust port (2121) through the smoke exhaust hood (141).
8. An oven stove according to claim 6 or 7, characterized in that, The stove module (2) also includes an exhaust hood (24), which is fitted from top to bottom outside the rear end of the stove housing (21) and covers the exhaust port (2121). An exhaust grille (2411) is provided on the exhaust hood (24) at the position corresponding to the exhaust port (2121).
9. An oven stove according to claim 1, characterized in that, A heat insulation layer is provided on the top and / or the left and right outer sides of the cavity (1121).
10. An oven stove according to claim 1, characterized in that, The gas system (23) includes an intake valve body (231), a solenoid valve (232), a gas distribution valve body (233), and a control valve (234). The intake valve body (231) is provided with an intake channel (2311), a first outlet (2312), and a second outlet (2313). The intake channel (2311) is connected to the first outlet (2312) and the second outlet (2313) respectively. The first outlet (2312) is used to connect to at least one of the stove burners (22). The solenoid valve (232) is provided on the intake valve body to control the opening and closing of the intake channel (2311). The gas distribution valve body (233) is detachably installed on the air intake valve body (231), and it is provided with a gas distribution inlet (2331) and two gas distribution outlets (2332). The gas distribution inlet (2331) is connected to the second air outlet (2313), and the two gas distribution outlets (2332) are respectively used to connect to the two oven burners (12). The control valve (234) is provided on the gas distribution valve body (233) and is used to control the opening and closing of the gas distribution inlet (2331) and the two gas distribution outlets (2332).