Oven stove

By employing a retractable and rotatable connection structure in the oven stove, an integrated stove-oven design is achieved, solving the problem of large space occupation of existing oven stoves and improving cooking performance and user experience.

CN223882389UActive Publication Date: 2026-02-06VATTI CORP LTD
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Patent Information

Application Number
CN202520515968.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-06
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

In existing oven and cooktop designs, the oven and cooktop are integrated into separate systems, occupying countertop space. Users cannot adjust the oven's position as needed, resulting in insufficient operational convenience and user experience.

Method used

The oven assembly is mounted on the upper part of the cooktop using a retractable and rotatable connection structure, sharing a burner to achieve an integrated cooktop and oven design. The sliding and flipping structure optimizes space utilization and reduces storage volume.

Benefits of technology

It improves cooking performance and practicality, saves kitchen space, enhances user convenience and experience, and achieves compact use of the stove.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an oven, which belongs to the technical field of kitchen appliances and comprises an oven assembly, a stove assembly comprises a panel and a burner, the oven assembly comprises an upper box body and a lower box body, the upper box body is sleeved on the periphery of the lower box body and can slide in the direction away from or close to the lower box body, and the burner is arranged on the lower box body. The lower oven body is connected to the area, close to the periphery of the combustor, of the panel in an overturning mode, so that the oven assembly is configured to be at a non-working position or a working position. Wherein a first through hole corresponding to the burner is formed in the bottom of the lower box body, when the oven assembly is arranged at the working position, the lower box body drives the upper box body to turn over to the position above the burner, and the burner is inserted into the first through hole. According to the utility model, by adopting the stove and baking integrated design and sharing the combustor, the combustion characteristic is fully played, the use scene is optimized, the space of a kitchen is fully utilized, the utilization rate of products is improved, and the cooking performance and the practicability of the equipment are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to kitchen appliance technical field, especially a kind of oven stove. BACKGROUND

[0002] In modern family, kitchen appliance is indispensable component, oven and stove are commonly used kitchen appliance, with the progress of technology and the improvement of life quality, kitchen appliance demand continues to grow, integration becomes important direction.Integrated cooking center aims to improve kitchen space utilization and use efficiency, meet compact kitchen demand by integrating multiple cooking equipment (such as oven, stove, etc.) into single equipment.The existing oven stove mainly integrates oven and stove, realizes upper stove and lower oven, this design can make full use of the space of kitchen, so that the whole device is more compact.However, this design is near-sighted simple module superposition, each adopts independent system parts, its system is huge and complex and fixed structure, user cannot adjust the position of oven according to own needs, occupies the space of counter top, which limits the operation convenience and experience of user. SUMMARY

[0003] The first technical problem to be solved by the utility model is to provide an oven stove which realizes integrated oven and stove, the oven assembly is telescopic and rotatable, can share the burner, fully play the characteristics of combustion, optimize the use scene, improve the utilization rate of product, improve the cooking performance and practicality of equipment, can also reduce the storage volume of the oven assembly, rotate away from the burner after storing the oven assembly to create interactive space, so that the whole device is more compact, save the space of kitchen, improve the operation convenience and experience of user.

[0004] The technical scheme adopted by the utility model to solve the first technical problem is as follows: an oven stove, the oven stove comprises:

[0005] Stove assembly, comprising panel and burner;

[0006] Oven assembly, comprising upper box body and lower box body, the upper box body is sleeved on the outer periphery of the lower box body and can slide away from or close to the lower box body, the lower box body is reversely connected to the area of the panel close to the outer periphery of the burner, so that the oven assembly is configured with non-working position or working position;

[0007] Wherein, the bottom of the lower box body is provided with first through hole corresponding to the burner, when the oven assembly is configured in working position, the lower box body drives the upper box body to reverse above the burner, and the burner is inserted into the first through hole.

[0008] According to an embodiment of the utility model, wherein, the upper box body includes:

[0009] First shell;

[0010] First inner shell, the first inner shell is sleeved in the inside of the first shell, and the first heat insulation cavity for heat insulation is formed between the first inner shell and the first shell;

[0011] First limiting structure, be connected to the first shell, for the limiting of first inner shell;

[0012] First heat insulation cotton, install in the first heat insulation cavity.

[0013] According to an embodiment of the utility model, wherein, the first shell and the first inner shell bottom are equipped with first opening, the first limiting structure includes by the bottom of first shell inwardly upward bending and forms first flanging, the free end of first flanging outwardly bends and forms limiting step, the bottom of first inner shell is inserted and is connected to the limiting step.

[0014] According to an embodiment of the utility model, wherein, the lower box body includes:

[0015] Second shell, bottom is equipped with the first through -hole, the top of first through -hole is equipped with the second flanging extending to its inside;

[0016] Second inner shell, insert the inside of second shell, and its bottom is butted to the second flanging, so that the second heat insulation cavity is formed between the second shell and second inner shell;

[0017] Second heat insulation cotton, install in the second heat insulation cavity.

[0018] According to an embodiment of the utility model, wherein, the burner includes furnace head and pot support, the second inner shell includes bottom wall at its bottom, the bottom wall is connected to the pot support and is equipped with the second through -hole corresponding to the furnace head, wherein, the inner diameter of first through -hole is greater than the outer diameter of pot support, and the second through -hole is greater than the outer diameter of furnace head.

[0019] According to an embodiment of the utility model, wherein, the pot support includes support main body and support leg, the bottom wall is recessed to form the limiting slot corresponding to the support main body in its inside near one side of second through -hole, the inner slot wall of limiting slot is equipped with the opening slot corresponding to the support leg, the support main body is inserted into the limiting slot, and the support leg is inserted and passes through the opening slot.

[0020] According to one embodiment of the present invention, the top of the second outer shell and the second inner shell are provided with a second opening, the top of the second inner shell is first bent outward and then downward to form a mounting groove with the opening facing downward, and the top of the second outer shell is inserted into the mounting groove.

[0021] According to one embodiment of the present invention, the outer wall of the mounting groove is provided with a limiting hole for limiting the upper housing, and the side wall of the first inner shell is provided with a limiting protrusion corresponding to the limiting hole.

[0022] According to one embodiment of the present invention, the front ends of the first outer shell, the first inner shell, the second outer shell, and the second inner shell are all open structures. The upper box body further includes an upper front plate connected between the first outer shell and the first inner shell, and the lower box body further includes a lower front plate connected between the second outer shell and the second inner shell.

[0023] According to one embodiment of the present invention, the oven assembly further includes:

[0024] The door body is hinged to the top of the first outer shell;

[0025] A smoke exhaust pipe is connected between the first inner shell and the first outer shell to exhaust the smoke inside the upper casing to the external space.

[0026] According to one embodiment of the present invention, the oven stove further includes a mounting base for mounting the oven assembly, the mounting base comprising:

[0027] The support block is fixed to the panel at its bottom;

[0028] The hinge includes a first hinge and a second hinge hinged to the first hinge. The first hinge is connected to the top of the support block, and the second hinge is connected to the bottom of the lower housing. As the oven assembly is flipped, the side wall of the lower housing abuts against the first hinge, and the oven assembly is positioned in the non-operating position.

[0029] According to one embodiment of the present invention, the oven stove further includes:

[0030] A temperature sensor includes a probe, a lead wire, and a terminal connected in sequence. The probe is connected to the lower housing and is used to detect the temperature inside the oven assembly.

[0031] A flameout protection device is connected to the burner;

[0032] A controller is connected to the cooktop assembly, the oven assembly, the temperature sensor and the flameout protection device, wherein the panel is provided with a socket for connecting the controller and the temperature sensor, and the terminal can be inserted into the socket to achieve the connection of the controller and the temperature sensor.

[0033] According to an embodiment of the utility model, wherein, the burner is a plurality, the cooktop assembly still includes the gas valve assembly of regulation and control gas, the gas valve assembly includes:

[0034] A main control valve is connected to the controller, and the gas inlet end thereof is connected to the gas outlet end of a gas supply pipe for controlling the on-off of the gas circuit.

[0035] An air outlet pipe assembly is connected to the air outlet end of the main control valve, and includes an air outlet pipe for delivering gas to each burner.

[0036] A solenoid valve group is connected to the controller and includes a solenoid valve corresponding to each air outlet pipe, the gas inlet end of the solenoid valve is connected to the air outlet end of the air outlet pipe, the gas outlet end of the solenoid valve is connected to the gas inlet end of the burner through a gas pipe, and the solenoid valve can regulate the amount of gas delivered to the corresponding burner.

[0037] Compared with the prior art, the utility model has the following advantages or beneficial effects:

[0038] The oven assembly is installed on the upper part of the cooktop assembly, and the burners are shared, realizing the integrated design of the cooktop and the oven, the burners can be used not only as the heat source of the cooktop for cooking but also as the heat source of the oven assembly for baking, fully utilizing the characteristics of the burners, optimizing the use scenario, improving the utilization of the product, and improving the cooking performance and practicality of the equipment. In addition, the oven assembly in the application adopts a telescopic rotary connection structure, which not only realizes the telescoping of the inner cavity of the oven assembly, thereby reducing the storage volume, but also can rotate the stored oven assembly away from the burners, thereby creating an interactive space, making the entire equipment more compact, this structure does not need to occupy too much counter space, restores the use of the cooktop, greatly saves the space of the kitchen, solves the problem of large floor space of the existing integrated cooking center, and improves the operation convenience and experience of the user. BRIEF DESCRIPTION OF DRAWINGS

[0039] The above and other features and advantages of the utility model will become more apparent by describing in detail example embodiments thereof with reference to the attached drawings.

[0040] Figure 1 is the first state schematic diagram of oven stove shown according to an example embodiment.

[0041] Figure 2is a second state schematic of an oven range according to an example embodiment.

[0042] Figure 3 is a third state schematic of an oven range according to an example embodiment.

[0043] Figure 4 is a first state of an oven range according to an example embodiment.

[0044] Figure 5 is a top view of an oven range according to an example embodiment.

[0045] Figure 6 is a cross-sectional view of an oven range according to an example embodiment.

[0046] Figure 7 is Figure 6 is a close-up view at A.

[0047] Figure 8 is an exploded schematic of an oven range according to an example embodiment.

[0048] Figure 9 is an exploded view of an oven assembly according to an example embodiment.

[0049] Figure 10 is a schematic of a second inner shell according to an example embodiment.

[0050] Figure 11 is a connection schematic of a range assembly and a controller according to an example embodiment.

[0051] Figure 12 is a schematic of a gas valve assembly according to an example embodiment.

[0052] Figure 13 is a front view of a gas valve assembly according to an example embodiment.

[0053] Figure 14 is Figure 13 is a cross-sectional view in direction A-A.

[0054] Figure 15 is Figure 13 is a cross-sectional view in direction B-B.

[0055] Figure 16 is a schematic of an oven range control method according to an example embodiment.

[0056] Figure 17 is a flowchart of an oven range control method according to an example embodiment.

[0057] Explanation of reference numerals in the drawings

[0058] 1, Stove assembly; 11, Panel; 111, Socket; 12, Burner; 121, Burner head; 122, Pot support; 1221, Support body; 1222, Support leg; 13, Gas valve assembly; 130, Gas inlet pipe; 131, Master valve; 1311, Master valve body; 1312, Master valve stem; 1313, Master valve core; 132, Gas outlet pipe assembly; 1321, Gas outlet pipe; 133, Solenoid valve assembly; 1331, Solenoid valve; 13311, Solenoid valve body; 13312, Solenoid valve core;

[0059] 2, Oven assembly; 21, Upper box body; 210, First heat insulation cavity; 211, First outer shell; 212, First inner shell; 2121, Limiting protrusion; 213, Limiting structure; 2131, First flange; 2132, Limiting step; 214, Upper front plate; 22, Lower box body; 2200, First through hole; 2201, Second through hole; 220, Second heat insulation cavity; 221, Second outer shell; 2211, Second flange; 222, Second inner shell; 2220, Mounting groove; 22201, Limiting hole; 2221, Bottom wall; 2222, Limiting groove; 2223, Open slot; 223, Lower front plate; 23, Door body; 24, Exhaust pipe;

[0060] 3, Mounting seat; 31, Support block; 32, Hinge; 321, First hinge; 322, Second hinge

[0061] 4, Temperature sensor; 41, Probe; 42, Lead wire;

[0062] 5, Controller. DETAILED DESCRIPTION

[0063] Example embodiments now will be described more fully hereinafter with reference to the accompanying drawings; however, the example embodiments can be implemented in many different forms and should not be construed as limited to the implementations set forth herein; rather, these implementations are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the example embodiments to those skilled in the art. Like reference numerals refer to like elements throughout the drawings, and thus description of the same will be simplified or omitted.

[0064] The terms "one", "an", "the", "said", "at least one" are used to indicate the existence of one or more elements / components / etc.; the terms "include" and "has" are used to indicate an open-ended inclusion in such a way that additional elements / components / etc. can be added.

[0065] The oven stove provided by the embodiment of the present application comprises an oven assembly and a stove assembly, the oven assembly comprises an upper box body and a lower box body, the upper box body is connected to the lower box body through a door body, the upper box body comprises a first heat insulation cavity, a first outer shell, a first inner shell, a limiting structure and an upper front plate, the lower box body comprises a second heat insulation cavity, a second outer shell, a second inner shell, a limiting structure and a lower front plate, the first heat insulation cavity is connected to the second heat insulation cavity through the door body, the first outer shell is connected to the second outer shell through the door body, the first inner shell is connected to the second inner shell through the door body, the limiting structure of the upper box body is connected to the limiting structure of the lower box body through the door body, and the upper front plate is connected to the lower front plate through the door body. Figures 1-12As shown, the oven range includes a range assembly 1 and an oven assembly 2, the range assembly 1 includes a panel 11 and a burner 12, and the oven assembly 2 includes an upper box 21 and a lower box 22, the upper box 21 is sleeved on the outer periphery of the lower box 22 and can slide away from or close to the lower box 22, and the lower box 22 is reversely connected to the area of the outer periphery of the panel 11 close to the burner 12, so that the oven assembly 2 is configured with a non-working position or a working position; wherein the bottom of the lower box 22 is provided with a first through hole 2200 corresponding to the burner 12, and when the oven assembly 2 is configured in the working position, the lower box 22 drives the upper box 21 to be reversely turned above the burner 12, and the burner 12 is inserted into the first through hole 2200. In this application, the oven assembly 2 is installed on the upper part of the range assembly 1, and the burner 12 is shared, which realizes the integrated design of range and oven, especially the same set of burners 12 can not only be used as a range fire source for cooking, but also as a heat source for the oven for baking, fully utilizing the characteristics of combustion, optimizing the use scene, improving the utilization of the product, and improving the cooking performance and practicality of the equipment. In addition, in this application, the upper box 21 and the lower box 22 of the oven assembly 2 are slidingly connected, the upper box 21 is away from or close to the lower box 22, and the oven assembly 2 is telescopic, so that when the oven assembly 2 is in a non-working state, the upper box 21 and the lower box 22 can be stored in a folded state as shown Figures 1-2 , and when the oven assembly 2 needs to be used, the upper box 21 is pulled away from the lower box 22 to make the oven assembly 2 return to the normal state as shown Figures 3-4 , that is, the oven assembly 2 in this application adopts a telescopic structure design, realizing that the oven can be telescopic up and down, thereby reducing the storage volume. Finally, the rotary connection of the lower box 22 and the panel 11 can also rotate the stored oven assembly 2 away from the burner 12, thereby leaving space above the burner 12 and restoring the use of the range. This structure does not need to occupy too much countertop space, uses the space behind the range and on the wall, thereby greatly saving the space of the kitchen, solving the problem of large floor space of the existing integrated cooking center, and improving the operation convenience and experience of the user. Figures 1-4 The four states of the oven assembly 2 switched from the non-working position to the working position are shown respectively: first, the oven assembly 2 is reversely turned to the rear of the range assembly 1 and is in a folded state, at this time the oven assembly 2 is in a non-working position, and the user can normally use the range function of the burner 12; second, the oven assembly 2 is reversely turned above the burner 12 and is in a folded state, at this time the burner 12 is inserted into the interior of the oven assembly 2 through the first through hole 2200, at this time the burner 12 is the heat source of the oven assembly 2; third, the oven assembly 2 above the burner 12 returns to the normal state and the door body 23 is in an open position, at this time the oven rack, the oven tray and the cooked food can be placed on the top of the lower box 22, and then the door body 23 is closed to switch to Figure 4The working state shown, at this time the user can start ignition for food cooking. The design of the present application can make full use of the kitchen space, so that the whole device is more compact, saves the kitchen space. The integrated design of the stove and the oven, sharing the burner 12, fully utilizes the characteristics of the combustion, optimizes the use scene, improves the utilization of the product, and improves the cooking performance and practicality of the device.

[0066] In addition, the oven assembly 2 can be rotated and stored to the rear of the stove assembly 1 to form a state as shown Figure 1 The state diagram shown, in some embodiments, the oven assembly 2 can be rotated and stored to the left or right side of the stove assembly 1, again the present application is not limited, as long as it can make full use of the kitchen space. It should be noted that the orientation words "top", "bottom", "upper", "lower", "left", "front" and "rear" in the present application are described based on the oven assembly 2 being in the working position, that is Figures 3-4 The state shown, wherein,

[0067] In a preferred embodiment of the present application, as shown in Figures 1-9 The upper box 21 includes a first outer shell 211, a first inner shell 212, and a limiting structure 213. The first inner shell 212 is sleeved inside the first outer shell 211, and a first heat insulation cavity 210 for heat insulation is formed between the first inner shell 212 and the first outer shell 211. The limiting structure 213 is connected to the first outer shell 211 and used for limiting the first inner shell 212. The first heat insulation cotton is installed in the first heat insulation cavity 210. In the present application, the limiting structure 213 not only realizes the assembly and fixation of the first outer shell 211 and the first inner shell 212, but also forms a preset distance between the first outer shell 211 and the first inner shell 212, so that the first heat insulation cavity 210 for heat insulation is formed between the first inner shell 212 and the first outer shell 211. After the assembly of the first outer shell 211 and the first inner shell 212, the first heat insulation cotton is inserted into the first heat insulation cavity 210 to form the upper box 21 with heat preservation effect. The whole structure is simple and convenient to operate, and the processing and production efficiency of the upper box 21 is effectively improved.

[0068] In a preferred embodiment of the present application, as shown in Figures 1-10 The first outer shell 211 and the first inner shell 212 are both provided with a first opening at the bottom. The limiting structure 213 includes a first flange 2131 formed by bending inward and upward from the bottom of the first outer shell 211. The free end of the first flange 2131 is bent outward to form a limiting step 2132. The bottom of the first inner shell 212 is inserted into and connected to the limiting step 2132. In the present application, the first outer shell 211 and the first inner shell 212 are both cuboid structures. The front end and the bottom of the first outer shell 211 and the first inner shell 212 are open structures, so as to facilitate the cooperation of the lower box 22 to form an oven structure with an expandable inner cavity volume. Figures 6-9As shown in the schematic first shell 211, the first flange 2131 is an L-shaped structure which is folded inwardly and upwardly at the bottom of the first inner shell 212, and the first flange 2131 and the first inner shell 212 jointly form a groove structure for defining the thickness of the upper cabinet 21 or the thickness of the first heat insulation cavity 210; then a limiting step 2132 is processed on the inner side of the first flange 2131, and the first inner shell 212 is inserted into the limiting step 2132 to realize the assembly of the first shell 211 and the first inner shell 212, and the whole structure is simple, accurate in positioning, fast in installation, and can also ensure the heat preservation effect of the whole upper cabinet 21.

[0069] In one preferred embodiment of the present application, as shown in Figures 1-10 The lower cabinet 22 includes a second shell 221, a second inner shell 222 and a second heat insulation cotton, the bottom of the second shell 221 is provided with a first through hole 2200, and the top of the first through hole 2200 is provided with a second flange 2211 extending into the interior thereof; the second inner shell 222 is inserted into the interior of the second shell 221, and the bottom thereof abuts against the second flange 2211, so that a second heat insulation cavity 220 is formed between the second shell 221 and the second inner shell 222; and the second heat insulation cotton is installed in the second heat insulation cavity 220. As shown in the drawings, the overall structure of the upper cabinet 21 and the lower cabinet 22 is the same, and both are formed by surrounding the inner and outer shells, and the difference lies in that in the lower cabinet 22, the bottom of the second shell 221 is provided with the first through hole 2200 and the second flange 2211, the height of the second flange 2211 is the thickness of the second heat insulation cotton, the limiting and supporting effect is realized, the whole structure is simple, accurate in positioning, fast in installation, and can also ensure the heat preservation effect of the whole upper cabinet 21.

[0070] In one preferred embodiment of the present application, as shown in Figures 1-10 The burner 12 includes a burner head 121 and a pot support 122, and the second inner shell 222 includes a bottom wall 2221 at the bottom thereof, the bottom wall 2221 is connected to the pot support 122 and is provided with a second through hole 2201 corresponding to the burner head 121, wherein the inner diameter of the first through hole 2200 is greater than the outer diameter of the pot support 122, and the second through hole 2201 is greater than the outer diameter of the burner head 121, and the purpose of the design is that the burner head 121 is inserted into the interior of the lower cabinet 22 through the first through hole 2200 and the second through hole 2201, and the bottom wall of the second inner shell 222 is stably placed on the pot support 122, so as to ensure the combustion efficiency and improve the stability of the oven assembly 2.

[0071] In one preferred embodiment of the present application, as shown in Figures 1-10The shown pot support 122 includes a support body 1221 and a supporting leg 1222, the bottom wall 2221 is recessed towards the inside of the second through hole 2201 on one side thereof to form a limiting groove 2222 corresponding to the support body 1221, the inner groove wall of the limiting groove 2222 is provided with an opening groove 2223 corresponding to the supporting leg 1222, the support body 1221 is inserted into the limiting groove 2222, and the supporting leg 1222 is inserted and passes through the opening groove 2223. With the lower box body 22 being flipped from the non-working position to the working position, the bottom wall 2221 is stably placed on the pot support 122, and the structure that the limiting groove 2222 and the supporting leg 1222 are inserted and pass through the opening groove 2223 can not only improve the stability of the connection between the second shell 222 and the pot support 122, but also can avoid the safety problems such as side turning and displacement of the oven assembly 2 caused by external force impact during cooking, and improve the safety performance of the product. In addition, since the supporting leg 1222 passes through the opening groove 2223 and enters the inside of the lower box body 22, some cooking utensils can also be supported, and the use range of the product is improved.

[0072] In a preferred embodiment of the present application, as shown in Figures 1-10 The top of the second inner shell 222 is first bent outwardly and then downwardly to form an installation groove 2220 with the opening downwardly, and the top of the second outer shell 221 is inserted into and mounted in the installation groove 2220. Figure 3 、 7 As can be seen, the top of the second inner shell 222 is bent outwardly and downwardly, on one hand, to cooperate with the second outer shell 221 to form the shell structure of the lower box body 22, and on the other hand, the groove bottom of the installation groove 2220 can be used as a support for mounting a baking tray or a baking net. When the oven assembly 2 is moved to the working position as shown in 3-4, the baking tray and the baking net can be directly placed at the bent portion, that is, the top of the lower box body 22, without the need of machining a convex bump on the inner wall of the lower box body 22, that is, the second outer shell 222, for mounting the baking tray and the baking net. The entire inner wall is a smooth planar structure, which is convenient to clean and will not cause the problem that some products are prone to ceramic explosion at the convex bump.

[0073] In a preferred embodiment of the present application, as shown in Figures 1-10The outer groove wall of the mounting groove 2220 is provided with a limiting hole 22201 for limiting the upper box body 21, and the side wall of the first inner shell 212 is provided with a limiting protrusion 2121 corresponding to the limiting hole 22201. When the oven assembly 2 is used, the upper box body 21 is pulled upwards, and when the upper box body 21 moves upwards to the designed maximum position, the limiting protrusion 2121 is inserted into the limiting hole 22201, so that the upper box body 21 is stably limited at the set working position, and the smooth operation of the entire oven assembly 2 is ensured. When the oven assembly 2 is not used, the upper box body 21 is pushed downwards, and when the inner wall of the upper box body 21, that is, the first inner shell 212, abuts against the outside of the groove bottom of the mounting groove 2220, the storage of the oven assembly 2 is completed. Through the up-down telescoping of the oven assembly, the storage volume is reduced, and then the oven assembly 2 is turned over, so that the space is further released to restore the use of the stove. This structure does not need to occupy too much countertop space, uses the space behind the stove and on the wall, thereby greatly saving the space of the kitchen, solves the problem of large occupied space of the existing integrated cooking center, and improves the operation convenience and experience of the user.

[0074] In a preferred embodiment of the present application, as shown in Figures 1-10 The front ends of the first outer shell 211, the first inner shell 212, the second outer shell 221 and the second inner shell 222 are all open structures, the upper box body 21 further comprises an upper front plate 214 connected between the first outer shell 211 and the first inner shell 212, and the lower box body 22 further comprises a lower front plate 223 connected between the second outer shell 221 and the second inner shell 222. After the first heat insulation cotton is inserted into the first heat insulation cavity 210, the upper front plate 214 is connected with the first outer shell 211 and the first inner shell 212 to realize the sealing of the first heat insulation cavity 210; similarly, the lower front plate 223 is connected with the second outer shell 221 and the second inner shell 222 after the second heat insulation cotton is inserted into the first heat insulation cavity 220 to realize the sealing of the second heat insulation cavity 220, that is, the upper front plate 214 and the lower front plate 223 can improve the sealing performance and the aesthetic appearance of the oven assembly 2.

[0075] In a preferred embodiment of the present application, as shown in Figures 1-10 The oven assembly 2 further comprises a door body 23 and an exhaust pipe 24, the door body 23 is hinged to the top of the first outer shell 211, and the exhaust pipe 24 is connected between the first inner shell 212 and the first outer shell 211 to exhaust the smoke in the upper box body 21 to the outside space. Figures 1-5The door body 23 is hinged at the top of the first shell 211, the door body 23 can be turned over by 270 degrees, when the oven is used, the door body 23 is turned down by 270 degrees, so that it can just cover the cavity, when the oven assembly 2 is stored, the door body 23 can be turned to the top of the first shell 211 and stored. In addition, the top of the first shell 211 and the first shell 212 is provided with a smoke exhaust port corresponding to the smoke exhaust pipe 24, preferably 2-6 smoke exhaust ports, the smoke exhaust port is outwardly turned up, and the smoke exhaust pipe 24 is welded on the smoke exhaust port of the first shell 211 and the first shell 212, realizing the smoke exhaust function in the cavity.

[0076] In a preferred embodiment of the present application, as shown in Figure 1 、 6 , the oven stove further comprises a mounting seat 3 for mounting the oven assembly 2, the mounting seat 3 comprises a supporting block 31 and a hinge 32, the hinge 32 comprises a first hinge 321 and a second hinge 322 hinged to the first hinge 321, the supporting block 31 is fixedly connected to the bottom of the panel 11, the first hinge 321 is connected to the top of the supporting block 31, and the second hinge 322 is connected to the bottom of the lower box body 22, with the turning of the oven assembly 2, the side wall of the lower box body 22 abuts against the first hinge 321, and the oven assembly 2 is arranged in a non-working position. Figures 1-4 As can be seen, when the oven assembly 2 is used, the first hinge 321 and the second hinge 322 are parallel, so that the oven assembly 2 can be placed horizontally on the pot support 122; when the oven assembly 2 is not used, the second hinge 322 is turned by 90 degrees relative to the first hinge 321, so that the oven assembly 2 is placed vertically at the rear space of the cooktop surface, and at the same time, the gas stove on the cooktop can still be used. The first hinge 321 and the second hinge 322 are hinged, so that the oven assembly 2 is rotated from the non-working position of the stove as shown in 1 to the working position above the burner 12, the whole process is simple to operate, the space can be switched freely, and the space utilization efficiency and the cooking efficiency are improved.

[0077] In a preferred embodiment of the present application, as shown in Figure 2 、 8The oven stove shown in Figure 11 also includes a temperature sensor 4, a flameout protection device, and a controller 5. The temperature sensor 4 includes a probe 41, a lead wire 42, and a plug connected in sequence. The probe 41 is connected to the lower housing 22 and is used to detect the temperature inside the oven assembly 2. The flameout protection device is connected to the burner 12 and is used to detect the combustion status of the flame. The controller 5 is connected to the stove assembly 1, the oven assembly 2, the temperature sensor 4, and the flameout protection device. The panel 11 has a socket 111 for connecting the controller 5 and the temperature sensor 4. The plug can be inserted into the socket 111 to connect the controller 5 and the temperature sensor 4. Specifically, there are two scenarios. Since this application adopts an integrated stove and oven design, the user can choose between the stove function and the oven function according to their needs. When using the stove function, the flameout protection device can detect whether the burner 12 is ignited and send a signal to the controller 5. If there is no flame, the controller 5 shuts off the entire oven stove, and can emit sound or light to remind the user to check for faults. If there is a flame, the burner 12 works, and the user can continue cooking. When selecting the oven function, the user first needs to place the oven in the oven... Figure 1 The oven assembly 2, in its non-working position, rotates to... Figure 2 Above the pot support 122 shown, pull the upper housing 21 upwards to the maximum movement position. At this time, the oven assembly 2 is in the position... Figure 3 As shown, the baking tray or rack is then placed on top of the lower oven body 22. The door 23 is then rotated to cover the front of the oven assembly 2, forming a relatively sealed cooking cavity. The burner 12 is then ignited. The flameout protection device monitors the ignition and flame status of the burner 12 in real time. If flameout occurs, the controller 5 shuts off the oven and issues an audible or visual warning, along with an error code for user troubleshooting. Simultaneously, the temperature sensor 4 monitors the cooking temperature inside the oven assembly 2 in real time and sends the signal to the controller 5. The controller 5 can adjust the heat of the burner 12, thereby precisely controlling the temperature inside the oven assembly 2, dynamically adjusting the heat load, improving the product's intelligence and cooking effect, and enhancing the user experience.

[0078] Furthermore, in this application, the temperature sensor 4 can be an NTC sensor assembly with a detachable connection structure, requiring the temperature sensor 4 to be connected in place. Since the oven assembly 2 of this application needs to be frequently rotated, if the temperature sensor 4 uses a conventional connection method, the lead wire 42 would need to be frequently extended and retracted, which could easily lead to damage. Therefore, this application designs the structure as a detachable structure, i.e., a corresponding interface 111 is designed on the panel 11, and the probe 41 connects to the lead wire 42 and the plug. The connection of the temperature sensor 4 is completed when the plug is inserted into the socket 111. When the oven assembly 2 is in use, the plug and interface 111 are connected; when the oven assembly 2 is not in use, the plug and interface 111 are disconnected.

[0079] In a preferred embodiment of this utility model, such as Figures 12-15 The burner 12 shown is multiple, and the stove assembly 1 also includes a gas valve assembly 13 for regulating gas supply. The gas valve assembly 13 includes a main control valve 131, a gas outlet pipe assembly 132, and a solenoid valve group 133. The gas outlet pipe assembly 132 includes a gas outlet pipe 1321 for supplying gas to each burner 12; the solenoid valve group 133 includes a solenoid valve 1331 corresponding to each gas outlet pipe 1321. The main control valve 131 and the solenoid valve group 133 are respectively connected to the controller 5. The inlet end of the main control valve 131 is connected to the outlet end of the gas supply pipe for controlling the opening and closing of the gas path. The inlet end of the gas outlet pipe assembly 132 is connected to the outlet end of the main control valve 131, and the inlet end of the solenoid valve 1331 is connected to the outlet end of the gas outlet pipe 1321. The outlet end of the solenoid valve 1331 is connected to the inlet end of the burner 12 via a gas pipe. The solenoid valve 1331 can regulate the amount of gas supplied to the corresponding burner 12. Figures 12-15 The main control valve 131 shown includes a main control valve body 1311, a main control valve stem 1312, and a main control valve core 1313. The solenoid valve 1331 mainly includes a solenoid valve body 13311 and a solenoid valve core 13312 for controlling the gas flow rate. The inlet end of the main control valve body 1311 is connected to the gas supply pipe via an inlet pipe 130, and the outlet end of the main control valve body 1311 is connected to the outlet pipe assembly 132. The outlet end of each outlet pipe 1321 is connected to the inlet end of the corresponding solenoid valve body 13311. The controller 5 can cut off and connect the gas flow between the entire gas valve assembly 13 and the gas supply pipe by driving the main control valve stem 1312 and the main control valve core 1313. By driving the solenoid valve core 13312, it can open or close each outlet pipe 1321 to deliver gas to the corresponding burner 12, thereby achieving precise control of the flame intensity. The cooktop assembly 1 and oven assembly 2 of this application share the same burner 12 and controller 5, realizing an integrated gas cooktop and oven function, effectively reducing the number, size, and cost of hardware, and improving operational convenience.

[0080] This utility model embodiment provides a control method for an oven stove, such as... Figures 16-17 As shown, the control method includes:

[0081] Step S100: Power on and obtain the function mode selected by the user. The function modes include stove function and oven function. The user can connect the oven and stove to the power supply and enter the standby state through the power button on the panel 11, remote control or smart APP. At this time, the user can select the desired function from the operation area of ​​the panel 11. The controller 5 obtains and saves the function mode selected by the user, such as stove function, oven function, lighting, etc.

[0082] Step S200: if the hob function is selected, the ignition is started, and the electromagnetic valve 1331 adjusts the fire size according to the gear selected by the user; if the hob function is selected, the user needs to operate and select the corresponding fire gear on the panel 11, and after the controller 5 receives the corresponding user setting, it can control the main control valve 131 to open the gas and ignite. Since the hob cooking process is relatively complex, different foods or different cooking time periods require different fire, so the user needs to manually select the current required fire gear, and the controller 5 can adjust the electromagnetic valve 1331 to the corresponding opening degree according to the user's selection of the fire gear, thereby improving the automation and intelligence level of the hob.

[0083] Step S300: if the oven function is selected, the oven assembly 2 is first rotated to the working position, and then it is detected whether the temperature sensor 4 is operating normally; when the oven function is selected, the oven assembly 2 in the non-working position as shown in FIG. 2 is first rotated to the position above the pot support 122 as shown in FIG. 3, and then the upper oven body 21 is pulled up to the maximum movement position, at which time the oven assembly 2 is in the working position as shown in FIG. 4. Figure 1 Figure 2 The oven assembly 2 is rotated to the position above the pot support 122 as shown in FIG. 3, and then the upper oven body 21 is pulled up to the maximum movement position, at which time the oven assembly 2 is in the working position as shown in FIG. 4. Figure 3 The oven assembly 2 is rotated to the position above the pot support 122 as shown in FIG. 3, and then the upper oven body 21 is pulled up to the maximum movement position, at which time the oven assembly 2 is in the working position as shown in FIG. 4.

[0084] Step S400: if the temperature sensor 4 is not operating normally, the oven hob enters the standby state; if the temperature sensor 4 is operating normally, the ignition is started, and the temperature sensor 4 detects the temperature inside the oven assembly 2 in real time and transmits the signal to the controller 5; if the temperature sensor 4 is not operating normally, generally the interface 111 and the joint connection are not normal, at which time the oven hob will be closed, and an alarm signal will be sent out, which can be sound and light reminders, which are not limited herein. After the temperature sensor 4 works normally, the cooking work is performed again to ensure high cooking performance.

[0085] ​Step S500: The controller 5 controls the opening degree of the electromagnetic valve 1331 according to the preset temperature and the detected temperature, so as to realize automatic adjustment of the firepower. The structure of the gas valve assembly 13 in the application, the cooperation of the temperature sensor 4 and the controller 5 enable the controller 5 to monitor the temperature inside the oven assembly 2 in real time, dynamically adjust the heat load of the oven assembly 2, and realize precise control of the temperature. Specifically, when the oven function is needed, the gas valve assembly 13 enters the temperature automatic mode, at this time, the controller 5 only needs to adjust the amount of gas output by the electromagnetic valve 1331 according to the temperature signal, and the gas heat load can change with the temperature, so as to ensure that the preset cooking temperature can be reached inside the oven assembly 2, precise temperature control is realized, and the utilization efficiency and the cooking effect are improved.

[0086] In one preferred embodiment of the application, as shown in Figure 17 The step of controlling the opening degree of the electromagnetic valve 1331 according to the preset temperature and the detected temperature in step S500 includes:

[0087] Step S5001, the obtained preset temperature and the detected temperature are compared; if the preset temperature set by the user is T, and the real-time detected temperature of the temperature sensor 4 is T1. When the oven function is needed, the user selects the oven function on the control area of the panel 11 and sets the preset temperature as T, then the controller 5 saves the preset temperature as T and compares the received detected temperature T1, and further judges whether the firepower of the burner 12 needs to be increased or decreased.

[0088] Step S5002, when the detected temperature is less than the preset temperature, the firepower is increased by one level; that is, when the detected temperature T1 is greater than the preset temperature T by more than 15%, it indicates that the real-time temperature inside the oven assembly 2 is too low to meet the baking requirements, at this time, the firepower needs to be increased by one level until the detected temperature T1 is greater than the preset temperature T by more than 0 and less than or equal to 15%.

[0089] Step S1003, when the detected temperature is greater than or equal to 85% of the preset temperature and less than the preset temperature, the current firepower is kept unchanged; that is, when the detected temperature T1 is greater than the preset temperature T by more than 0 and less than or equal to 15%, it indicates that the real-time temperature inside the oven assembly 2 meets the baking requirements, and the current firepower can be kept unchanged.

[0090] Step S1004, when the detected temperature is greater than or equal to the preset temperature and less than 115% of the preset temperature, the current firepower is decreased by one level. When the detected temperature T1 is greater than the preset temperature T and the increase is greater than 0 and less than or equal to 15%, it indicates that the real-time temperature inside the oven assembly 2 is too high, at this time, the current firepower needs to be decreased by one level until it meets the preset temperature range.

[0091] Through the above steps, the controller 5 can monitor the temperature inside the oven assembly 2 in real time, dynamically adjust the heat load, realize accurate temperature control, and improve utilization efficiency and cooking effect.

[0092] In one preferred embodiment of the present application, the control method as shown in Figure 17 The control method as shown in

[0093] Specifically, the step of selecting the oven function as shown in Figure 17 The step of selecting the oven function as shown in

[0094] In the embodiments of the present application, the term "a plurality of" refers to two or more, unless otherwise explicitly limited. The terms "mounting", "connecting", "fixing" and the like should be understood in a broad sense, for example, "connecting" can be fixed connection, can also be detachable connection, or integral connection. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0095] In the description of the embodiments of the present application, it should be understood that the orientation or position relationship indicated by the terms "upper", "lower" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the embodiments of the present application and simplifying the description, and does not indicate or imply that the device or unit referred to must have a particular direction, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the embodiments of the present application.

[0096] In the description of the present specification, the description of the terms "one embodiment", "one preferred embodiment" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0097] The above are only preferred embodiments of the embodiments of the present application and are not intended to limit the embodiments of the present application. For those skilled in the art, the embodiments of the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the embodiments of the present application shall be included in the protection scope of the embodiments of the present application.

Claims

1. An oven range, characterized in that, Comprise: A stove assembly (1) comprising a panel (11) and a burner (12); An oven assembly (2) comprising an upper box (21) and a lower box (22), the upper box (21) is sleeved on the outer periphery of the lower box (22) and can slide away from or close to the lower box (22), the lower box (22) is reversely connected to the area of the panel (11) close to the outer periphery of the burner (12), so that the oven assembly (2) is configured with a non-working position or a working position; Wherein, the bottom of the lower box (22) is provided with a first through hole (2200) corresponding to the burner (12), when the oven assembly (2) is configured in the working position, the lower box (22) drives the upper box (21) to be reversely turned above the burner (12), and the burner (12) is inserted into the first through hole (2200).

2. The oven range of claim 1, wherein, The upper box (21) comprises: A first outer shell (211); A first inner shell (212) sleeved on the inside of the first outer shell (211), a first heat insulation cavity (210) is formed between the first inner shell (212) and the first outer shell (211) for heat insulation; A limiting structure (213) connected to the first outer shell (211) for limiting the first inner shell (212); A first heat insulation cotton installed in the first heat insulation cavity (210).

3. The oven range as claimed in claim 2, characterized in that The bottom of the first outer shell (211) and the first inner shell (212) is provided with a first opening, the limiting structure (213) comprises a first flange (2131) formed by bending inward and upward from the bottom of the first outer shell (211), the free end of the first flange (2131) is bent outward to form a limiting step (2132), and the bottom of the first inner shell (212) is inserted into and connected to the limiting step (2132).

4. The oven range as claimed in claim 2, wherein, The lower box (22) comprises: A second outer shell (221) provided with the first through hole (2200) at the bottom, and a second flange (2211) extending inward at the top of the first through hole (2200); A second inner shell (222) inserted into the inside of the second outer shell (221), the bottom of the second inner shell (222) abuts against the second flange (2211), so that a second heat insulation cavity (220) is formed between the second outer shell (221) and the second inner shell (222); A second heat insulation cotton installed in the second heat insulation cavity (220).

5. The oven range as claimed in claim 4, characterized in that The burner (12) comprises a stove head (121) and a pot support (122), the second inner shell (222) comprises a bottom wall (2221) at the bottom, the bottom wall (2221) is connected to the pot support (122) and is provided with a second through hole (2201) corresponding to the stove head (121), wherein the inner diameter of the first through hole (2200) is greater than the outer diameter of the pot support (122), and the second through hole (2201) is greater than the outer diameter of the stove head (121).

6. The oven range of claim 5, wherein, The pot support (122) comprises a support body (1221) and a supporting leg (1222), the bottom wall (2221) is recessed inward at a side close to the second through hole (2201) to form a limiting groove (2222) corresponding to the support body (1221), an opening groove (2223) corresponding to the supporting leg (1222) is formed in the inner groove wall of the limiting groove (2222), the support body (1221) is inserted into the limiting groove (2222), and the supporting leg (1222) is inserted and passes through the opening groove (2223).

7. The oven range as claimed in claim 4, wherein, The top of the second outer shell (221) and the second inner shell (222) is provided with a second opening, the top of the second inner shell (222) is bent outward first and then downward to form an installation groove (2220) with the opening downward, and the top of the second outer shell (221) is inserted into the installation groove (2220).

8. The oven range as claimed in claim 7, characterized in that The outer groove wall of the installation groove (2220) is provided with a limiting hole (22201) for limiting the upper box body (21), and the side wall of the first inner shell (212) is provided with a limiting protrusion (2121) corresponding to the limiting hole (22201).

9. The oven range as claimed in claim 4, wherein, The front ends of the first outer shell (211), the first inner shell (212), the second outer shell (221) and the second inner shell (222) are all in an open structure, the upper box body (21) further comprises an upper front plate (214) connected between the first outer shell (211) and the first inner shell (212), and the lower box body (22) further comprises a lower front plate (223) connected between the second outer shell (221) and the second inner shell (222).

10. The oven range of claim 2 wherein, The oven assembly (2) further comprises: a door body (23) hinged to the top of the first outer shell (211); an exhaust pipe (24) connected between the first inner shell (212) and the first outer shell (211) to exhaust smoke in the upper box body (21) to an external space.

11. The oven range of claim 1, wherein, The installation seat (3) for installing the oven assembly (2) is further included, and the installation seat (3) comprises: a supporting block (31) fixedly connected to the bottom of the panel (11); a hinge (32) comprising a first hinge (321) connected to the top of the supporting block (31) and a second hinge (322) hinged to the first hinge (321), and the bottom of the lower box body (22) is connected to the second hinge (322), when the oven assembly (2) is turned over, the side wall of the lower box body (22) abuts against the first hinge (321), and the oven assembly (2) is arranged in the non-working position.

12. The oven range of claim 1, wherein, Further comprising: a temperature sensor (4) comprising a probe (41), a lead wire (42) and a plug connected in sequence, the probe (41) is connected to the lower box body (22) and used for detecting the temperature in the oven assembly (2); an extinguishing protection device connected to the burner (12); A controller (5) is connected to the cooking appliance assembly (1), the oven assembly (2), the temperature sensor (4) and the flameout protection device, wherein the panel (11) is provided with a socket (111) for connecting the controller (5) and the temperature sensor (4), and the plug can be inserted into the socket (111) to achieve the connection of the controller (5) and the temperature sensor (4).

13. The oven range as claimed in claim 12, characterized in that The burner (12) is a plurality, and the cooking appliance assembly (1) further comprises a gas valve assembly (13) for regulating gas, and the gas valve assembly (13) comprises: A main control valve (131) connected to the controller (5), the gas inlet end of which is connected to the gas outlet end of the gas supply pipe, for controlling the opening and closing of the gas circuit; An air outlet pipe assembly (132) connected to the air outlet end of the main control valve (131), comprising an air outlet pipe (1321) for delivering gas to each burner (12); A solenoid valve group (133) connected to the controller (5), comprising a solenoid valve (1331) corresponding to each air outlet pipe (1321), the gas inlet end of the solenoid valve (1331) being connected to the gas outlet end of the air outlet pipe (1321), and the gas outlet end of the solenoid valve (1331) being connected to the gas inlet end of the burner (12) through a gas pipe, and the solenoid valve (1331) can regulate the amount of gas delivered to the corresponding burner (12).