Furnace body structure with heating function

By incorporating a heat-conducting plate assembly and a fan into the stove body structure, bidirectional heat transfer is achieved, solving the safety hazards and uneven heat distribution problems of traditional soup stoves, improving heating efficiency and heat preservation effect, and meeting the multifunctional cooking needs of modern families.

CN223715560UActive Publication Date: 2025-12-26ZHUMING (XIAMEN) CATERING EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520105810.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-26
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Traditional soup stoves pose safety hazards, such as electrical leakage and short circuits, uneven heat distribution, and limited functionality, failing to meet the multifunctional cooking needs of modern families.

Method used

Design a furnace structure including a heating platform and cooking equipment. By setting a heat-conducting plate assembly between the heating platform and the cooking equipment, bidirectional heat transfer is achieved. Combined with a fan to accelerate heat transfer, heat distribution is ensured to be uniform.

Benefits of technology

It improves heating efficiency and heat preservation, reduces safety hazards, meets multifunctional cooking needs, ensures that food containers are heated evenly, and avoids local overheating or uneven heating.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223715560U_ABST
Patent Text Reader

Abstract

The utility model discloses a furnace body structure with a heating function. The furnace body structure comprises a furnace body main body and a heating assembly, the oven main body comprises a heating table and cooking equipment; the heating table is arranged at the top of the furnace main body; the height value of the heating table is smaller than that of the furnace body. A groove is formed between the top of the heating table and the bottom of the heating table; cooking equipment is arranged on the side, away from the groove, of the bottom of the heating table; the cooking equipment comprises a first panel and a second panel which are oppositely arranged; the first panel is parallel to the second panel; a cavity is formed between the first panel and the second panel; the heating assembly comprises a heat conducting plate assembly; the heat conducting plate assembly is perpendicular to the second panel; the heat conducting plate assembly is arranged between the cavity and the heating table; the side, close to the heating table, of the heat conduction plate assembly is detachably connected with the heating table. The side, close to the cavity, of the heat conduction plate assembly is detachably connected with the second panel. The heating efficiency of the furnace body structure and the heat preservation effect of the cooking equipment are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to kitchen equipment technical field especially, it is a kind of furnace body structure with heating function. BACKGROUND

[0002] With the increasing demand of people on healthy diet and convenient cooking, as an efficient and safe cooking tool, soup stove gradually becomes an important equipment in family kitchen.

[0003] Traditional soup stove usually uses electric heating or gas heating mode, but these traditional methods have some limitations, such as some traditional soup stove has safety hazards such as electric leakage and short circuit during heating process, especially when used in humid environment, the safety risk is higher;And traditional heating mode often leads to uneven heat distribution, which is easy to cause local overheating or heating deficiency;Most traditional soup stove is single function, which cannot meet the demand of modern family for multifunctional cooking. INVENTION CONTENTS

[0004] In order to solve the technical problems in the background art, the utility model provides a kind of furnace body structure with heating function, including furnace body main part and heating component;

[0005] The furnace body main part includes heating table and cooking equipment;The heating table is arranged at the top of the furnace body main part;The height value of the heating table is less than the height value of the furnace body main part;The top of the heating table and the bottom of the heating table form a groove;The bottom of the heating table is away from the side of the groove and is provided with the cooking equipment;

[0006] The cooking equipment includes oppositely arranged first panel and second panel;The first panel is parallel to the second panel;The first panel and the second panel form a cavity;

[0007] The heating component includes heat conduction plate assembly;The heat conduction plate assembly is perpendicular to the second panel;The heat conduction plate assembly is arranged between the cavity and the heating table;The side of the heat conduction plate assembly close to the heating table is detachably connected with the heating table;The side of the heat conduction plate assembly close to the cavity is detachably connected with the second panel.

[0008] Further, the first panel includes adjacently arranged first sliding door, second sliding door and control panel;

[0009] The cooking equipment includes cooking main body and control main body;The cooking main body includes the first sliding door and the second sliding door;The control main body includes the control panel;The second sliding door is arranged between the first sliding door and the control panel;The control panel is detachably connected with the second sliding door;The first sliding door and the second sliding door are detachably connected.

[0010] Further, the cooking main body further comprises a third panel; the third panel is perpendicular to the second sliding door; the third panel is arranged between the second sliding door and the second panel; one side of the third panel is fixedly connected to the side of the second sliding door close to the control panel; the other side of the third panel is fixedly connected to the second panel.

[0011] Further, the second panel comprises a first area and a second area; the first area is fixedly connected to the second area; the sum of the length values of the first sliding door and the second sliding door is the same as the length value of the first area;

[0012] The first area is provided with a first through hole; the shape of the first through hole matches the shape of the fan; the fan is detachably connected to the second panel through the first through hole.

[0013] Further, the heat-conducting plate assembly comprises a first heat-conducting plate, a second heat-conducting plate and a third heat-conducting plate; the second heat-conducting plate is arranged between the first heat-conducting plate and the third heat-conducting plate; the first heat-conducting plate is provided with the heating table on the side away from the second heat-conducting plate; the third heat-conducting plate is provided with the cavity on the side away from the second heat-conducting plate.

[0014] Further, the first heat-conducting plate comprises a bottom plate and a side plate; the bottom plate is perpendicular to the side plate; the bottom plate is detachably connected to the second heat-conducting plate; the side plate is arranged close to the first panel; the side plate is parallel to the first panel.

[0015] Further, the heating assembly further comprises a plurality of heating units; the first heat-conducting plate is provided with the plurality of heating units on the side away from the second heat-conducting plate; the plurality of heating units are distributed at equal intervals on the first heat-conducting plate;

[0016] The side plate is provided with a plurality of clamping grooves; the plurality of clamping grooves are distributed at equal intervals on the side plate; the number of the heating units is the same as the number of the clamping grooves; the positions of the clamping grooves correspond to the positions of the heating units one by one; the heating units are detachably connected to the side plate through the clamping grooves.

[0017] Further, each of the heating units comprises a heating pipe and a fixing element; the fixing element is arranged on the side of the side plate close to the first panel; the fixing element is detachably connected to the clamping groove;

[0018] The heating pipe is arranged on the side of the bottom plate away from the second heat-conducting plate; the heating pipe comprises a heating pipe body and an insulating joint; the heating pipe body is fixedly connected to the insulating joint;

[0019] The fixed element is provided with a second through hole; the insulating joint penetrates through the second through hole away from the heating pipe body.

[0020] Further, each of the heating units further comprises a fastening part; the fastening part is arranged on the side of the fixed element away from the side plate; the shape of the fastening part matches the shape of the insulating joint; the fixed element is detachably connected with the insulating joint through the fastening part.

[0021] Further, the bottom of the furnace body main part is provided with pulleys at four corners respectively; each of the pulleys is movably connected with the furnace body main part.

[0022] The utility model discloses a beneficial effect is:

[0023] The utility model discloses a kind of furnace body structures with heating function, including furnace body main part and heating assembly;The furnace body main part includes heating platform and cooking equipment;The heating platform is set up in the top of the furnace body main part;The height value of the heating platform is less than the height value of the furnace body main part;The top of the heating platform and the bottom of the heating platform form recess;The bottom of the heating platform is provided with the cooking equipment away from the side of the recess;The cooking equipment includes oppositely arranged first panel and second panel;The first panel is parallel with the second panel;Cavity is formed between the first panel and the second panel;The heating assembly includes heat conducting plate assembly;The heat conducting plate assembly is perpendicular to the second panel;The heat conducting plate assembly is set up between the cavity and the heating platform;The side of the heat conducting plate assembly close to the heating platform is detachably connected with the heating platform;The side of the heat conducting plate assembly close to the cavity is detachably connected with the second panel.By setting heating platform in the top of furnace body main part, cooking equipment is set in the bottom of furnace body main part, heat conducting plate assembly is set between heating platform and cooking equipment, heat conducting plate assembly can heat upwards, heat heating platform, and can heat downwards, heat cooking equipment, so that user can heat food container placed in recess through the heating platform of top, and can heat or keep warm food container through the cooking equipment of bottom, improve the heating efficiency of furnace body structure and improve the keeping warm effect of cooking equipment. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the technical scheme of the utility model, the following will be to the embodiment or prior art description needed to use the drawing briefly introduced, obviously, the following description in the drawing is only some embodiments of the utility model, for those skilled in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.

[0025] Figure 1 It is a kind of furnace body structure's schematic diagram provided by the utility model.

[0026] Figure 2 is a schematic view of a cooking equipment provided by the utility model;

[0027] Figure 3 is a schematic view of a fan provided by the utility model;

[0028] Figure 4 is a schematic view of a heating assembly provided by the utility model;

[0029] Figure 5 is a schematic view of a heating plate assembly provided by the utility model;

[0030] Figure 6 is a schematic view of a heating unit provided by the utility model;

[0031] In the figure, the reference signs correspond to: 1 - furnace body main body, 2 - heating assembly, 3 - heating table, 4 - cooking equipment, 5 - first panel, 6 - second panel, 7 - heat conduction plate assembly, 8 - first sliding door, 9 - second sliding door, 10 - control panel, 11 - third panel, 12 - fan, 13 - first heat conduction plate, 14 - second heat conduction plate, 15 - third heat conduction plate, 16 - bottom plate, 17 - side plate, 18 - heating unit, 19 - heating pipe, 20 - fixing element, 21 - heating pipe body, 22 - insulating joint, 23 - pulley. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0033] In the description of the utility model, it is understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, since the disclosed embodiments of the utility model can be arranged in different directions, so these directional terms are only as an illustration and should not be regarded as a limitation, for example, "upper", "lower" are not necessarily limited to the direction opposite or consistent with the direction of gravity. In addition, the features limited by "first", "second" can explicitly or implicitly include one or more features.

[0034] As Figures 1-6 The utility model provides a kind of furnace body structure with heating function, including furnace body main body 1 and heating assembly 2;

[0035] The above-mentioned furnace body main body 1 includes heating table 3 and cooking equipment 4;The above-mentioned heating table 3 is set to the top of the above-mentioned furnace body main body 1;The height value of the above-mentioned heating table 3 is less than the height value of the above-mentioned furnace body main body 1;The top of the above-mentioned heating table 3 and the bottom of the above-mentioned heating table 3 form groove;The bottom of the above-mentioned heating table 3 is set with the above-mentioned cooking equipment 4 away from the side of the above-mentioned groove;

[0036] The above-mentioned cooking equipment 4 includes oppositely arranged first panel 5 and second panel 6;The above-mentioned first panel 5 is parallel with the above-mentioned second panel 6;The cavity is formed between the above-mentioned first panel 5 and the above-mentioned second panel 6;

[0037] The above-mentioned heating assembly 2 includes heat conducting plate assembly 7;The above-mentioned heat conducting plate assembly 7 is perpendicular to the above-mentioned second panel 6;The above-mentioned heat conducting plate assembly 7 is set between the above-mentioned cavity and the above-mentioned heating table 3;The side of the above-mentioned heat conducting plate assembly 7 close to the above-mentioned heating table 3 is detachably connected with the above-mentioned heating table 3;The side of the above-mentioned heat conducting plate assembly 7 close to the above-mentioned cavity is detachably connected with the above-mentioned second panel 6.

[0038] In some embodiments, the furnace body structure can be a stewing soup furnace for heating or keeping warm a food container; the cooking device 4 can be a steam oven or other device for keeping warm a food container; the heating table 3 is concavely arranged on the top of the furnace body 1, wherein the height of the heating table 3 is less than the height of the furnace body 1, a groove is formed between the top and the bottom of the heating table 3, and a food container can be placed on the platform of the groove to be heated; the cooking device 4 is arranged on the bottom of the heating table 3 away from the groove, i.e. on the bottom of the furnace body 1; the cooking device 4 comprises a first panel 5 and a second panel 6 arranged oppositely, both the first panel 5 and the second panel 6 can be arranged in a vertical direction, and the first panel 5 is parallel to the second panel 6, forming a cavity therebetween, which is divided into two areas, one being a cooking body and the other being a control body. The heating assembly 2 comprises a heat-conducting plate assembly 7 arranged horizontally, which is perpendicular to the second panel 6, and is arranged between the heating table 3 and the cavity, wherein the heating table 3 is also arranged in a vertical direction, the size of the bottom plate 16 of the heating table 3 can be the same as that of the heat-conducting plate of the heat-conducting plate assembly 7 close to the heating table 3, and the side of the heat-conducting plate assembly 7 close to the heating table 3 is detachably connected with the heating table 3, the side of the heat-conducting plate assembly 7 close to the cavity is combined with other side plates of the cavity to form a sealed space, and the side of the heat-conducting plate assembly 7 close to the cavity is detachably connected with the second panel 6. By arranging the heat-conducting plate assembly 7, heat can be transmitted upward to heat the food container placed on the heating table 3, and downward to the cooking body to keep or heat the food container in the cooking body. It can be seen that the heat-conducting plate assembly can uniformly distribute heat to ensure that the food container in the cooking device is evenly heated, avoiding local overheating or uneven heating, and quickly conducting heat to reduce heat loss, thereby improving the heating efficiency and the keeping warm effect of the cooking device.

[0039] In other embodiments, the cooking device 4 can be arranged according to actual conditions.

[0040] In the utility model, the first panel 5 comprises first and second sliding doors 8 and 9 and a control panel 10 arranged adjacently.

[0041] The cooking device 4 comprises a cooking body and a control body; the cooking body comprises the first and second sliding doors 8 and 9; the control body comprises the control panel 10; the second sliding door 9 is arranged between the first sliding door 8 and the control panel 10; the control panel 10 is detachably connected with the second sliding door 9; and the first and second sliding doors 8 and 9 are detachably connected.

[0042] In some embodiments, as Figures 1-2As shown, the cooking main body is a closed cabinet for placing food containers; the control main body is used to control the cooking main body to heat or other operations on the food containers placed in the cooking main body; the first sliding door 8, the second sliding door 9 and the control panel 10 are combined to form the first panel 5, and the three are arranged adjacent along the horizontal direction; the cooking main body includes the first sliding door 8 and the second sliding door 9 arranged along the vertical direction, and the user can place the food container into the cooking main body by pulling out the first sliding door 8 or the second sliding door 9; the control main body includes the control panel 10 arranged along the vertical direction, wherein the control panel 10 is provided with a plurality of adjustment buttons, which can be used to adjust the heating temperature and heating time of the cooking main body and realize automatic control of the temperature inside the cooking main body, so that the temperature value inside the cooking main body is within a safe range. By arranging the cooking main body, the high temperature and steam in the heating process are effectively isolated, the influence on the user and the surrounding environment is reduced, and the overall safety is improved; the design of the control panel realizes accurate control of the heating temperature and time of the food container, and ensures that the cooking process is safely carried out; the arrangement of the first sliding door and the second sliding door enables the user to place or take out the food container by simply pulling out any one of the sliding doors, which is simple and convenient to operate.

[0043] In the utility model, the cooking main body further includes a third panel 11; the third panel 11 is perpendicular to the second sliding door 9; the third panel 11 is arranged between the second sliding door 9 and the second panel 6; one side of the third panel 11 is fixedly connected to the side of the second sliding door 9 close to the control panel 10; the other side of the third panel 11 is fixedly connected to the second panel 6.

[0044] In some embodiments, as shown in Figure 2 As shown, the third panel 11 is a panel for isolating the cooking main body and the control main body, and one side of the third panel 11 close to the second sliding door 9 is fixedly connected to the side of the second sliding door 9 close to the control panel 10, and the other side of the third panel 11 close to the second panel 6 is fixedly connected to the second panel 6; the furnace body main body 1 further includes a furnace body frame, and the cooking main body forms a cavity in combination with the first sliding door 8, the second sliding door 9, the third panel 11, the second panel 6 and the furnace body frame, and is used to place food containers. By arranging the third panel, the cooking main body and the control main body are effectively isolated, and the overall safety of the furnace structure is improved; meanwhile, the combination of the third panel and other panels forms a cavity with good sealing, which helps to maintain the stability of the temperature inside the cooking main body, improves the heat preservation effect and prolongs the service life of the furnace structure.

[0045] In the utility model, the second panel 6 includes a first area and a second area; the first area is fixedly connected to the second area; the sum of the length values of the first sliding door 8 and the second sliding door 9 is the same as the length value of the first area;

[0046] The first area is provided with a first through hole; the shape of the first through hole matches the shape of the fan 12; the fan 12 is detachably connected with the second panel 6 through the first through hole.

[0047] In some embodiments, as shown in Figures 2-3 The first area is an area of the second panel 6 opposite to the first sliding door 8 and the second sliding door 9, and the sum of the lengths of the first sliding door 8 and the second sliding door 9 is equal to the length of the first area, so that the cooking body forms a cavity through the first sliding door 8, the second sliding door 9, the third panel 11, the first area and the oven body frame; the second area is the remaining area of the second panel 6 except the first area. At the same time, the first area is provided with at least one first through hole, for example, two first through holes can be provided, and the shape of each first through hole matches the shape of the fan 12, so that the fan 12 is detachably connected with the second panel 6 through the first through hole, so that the fan 12 can absorb heat from the heat conducting plate assembly 7 and accelerate heat transfer of the heat conducting plate assembly 7. It can be seen that by providing the first through hole on the second panel and cooperating with the fan, the heat from the heat conducting plate assembly can be effectively absorbed, the heat transfer is accelerated, and the heat preservation effect of the cooking body is improved; at the same time, when the cooking body needs to be heated, the heat conducting plate assembly can quickly conduct heat, reduce heat loss and improve heating efficiency.

[0048] In the utility model, the heat conducting plate assembly 7 includes a first heat conducting plate 13, a second heat conducting plate 14 and a third heat conducting plate 15; the second heat conducting plate 14 is arranged between the first heat conducting plate 13 and the third heat conducting plate 15; the first heat conducting plate 13 is provided with the heating table 3 on the side away from the second heat conducting plate 14; and the third heat conducting plate 15 is provided with the cavity on the side away from the second heat conducting plate 14.

[0049] In some embodiments, as shown in Figure 4 The heat conducting plate assembly 7 includes a first heat conducting plate 13, a second heat conducting plate 14 and a third heat conducting plate 15, wherein the first heat conducting plate 13, the second heat conducting plate 14 and the third heat conducting plate 15 are arranged adjacent in the vertical direction, the sizes of the first heat conducting plate 13, the second heat conducting plate 14 and the third heat conducting plate 15 in the horizontal direction are the same, the first heat conducting plate 13 is used for placing the heating unit 18, the second heat conducting plate 14 is used as an intermediate layer for heat transfer, and the third heat conducting plate 15 is used for heat transfer to the cooking body. By arranging the heat conducting plate assembly with a multi-layer structure, it is ensured that the heat can be uniformly distributed, the problems of local overheating or uneven heating are avoided, the heat can be quickly transferred, the heat loss is reduced, the heating efficiency of the heating table and the cooking equipment is improved, and the heat preservation effect of the cooking equipment is improved.

[0050] The first heat-conducting plate 13 comprises a bottom plate 16 and a side plate 17; the bottom plate 16 is perpendicular to the side plate 17; the bottom plate 16 is detachably connected with the second heat-conducting plate 14; the side plate 17 is arranged close to the first panel 5; and the side plate 17 is parallel to the first panel 5.

[0051] In some embodiments, as shown in Figure 5 The bottom plate 16 is a metal plate arranged at the bottom of the first heat-conducting plate 13, the bottom plate 16 is arranged adjacent to the second heat-conducting plate 14, and the bottom plate 16 is detachably connected with the second heat-conducting plate 14; the side plate 17 is a metal plate arranged on the first heat-conducting plate 13 close to the first panel 5, and the side plate 17 is parallel to the first panel 5; the first heat-conducting plate 13 is composed of the side plate 17, other side plates and the bottom plate 16, and forms a small recess for placing the heating pipe 19; the bottom plate is arranged adjacent to the second heat-conducting plate and is detachably connected, so that heat can be quickly transferred from the heating pipe to the first heat-conducting plate, and then to the third heat-conducting plate through the second heat-conducting plate; through the combination of the bottom plate, the side plate and other heat-conducting plates, a heat-conducting plate assembly with compact structure and integrated functions is formed, which can adapt to different cooking requirements and improve the overall compactness and aesthetics of the furnace structure.

[0052] In the utility model, the heating assembly 2 further comprises a plurality of heating units 18; the first heat-conducting plate 13 is provided with the plurality of heating units 18 on the side away from the second heat-conducting plate 14; and the plurality of heating units 18 are distributed at equal intervals on the first heat-conducting plate 13.

[0053] The side plate 17 is provided with a plurality of clamping grooves; the plurality of clamping grooves are distributed at equal intervals on the side plate 17; the number of the heating units 18 is the same as that of the clamping grooves; the positions of the clamping grooves correspond to those of the heating units 18 one by one; and the heating units 18 are detachably connected with the side plate 17 through the clamping grooves.

[0054] In some embodiments, as shown in Figure 5 For example, five heating units 18 can be arranged, and the heating units 18 are distributed at equal intervals on the first heat-conducting plate 13; five clamping grooves can be arranged on the side plate 17, and the clamping grooves are distributed at equal intervals on the side plate 17; the position of each clamping groove corresponds to that of each heating unit 18 one by one, a part of the heating unit 18 penetrates through the clamping groove, and the heating unit 18 is detachably connected with the side plate 17 through the clamping groove. By arranging the same number of heating units and clamping grooves, each heating unit is detachably connected with the side plate through the clamping groove corresponding to it, so that the position of the heating unit is accurately fixed, and uneven heating caused by inaccurate position is avoided; meanwhile, the design of equal-interval distribution enables the heating units to be evenly distributed on the first heat-conducting plate, further ensuring uniform heat transfer.

[0055] In other embodiments, the number of heating units 18 and card slots can be set according to actual conditions.

[0056] In the utility model, each heating unit 18 comprises a heating pipe 19 and a fixing element 20; the fixing element 20 is arranged on the side of the side plate 17 close to the first panel 5; the fixing element 20 is detachably connected with the card slot;

[0057] The heating pipe 19 is arranged on the side of the bottom plate 16 away from the second heat-conducting plate 14; the heating pipe 19 comprises a heating pipe body 21 and an insulating connector 22; the heating pipe body 21 is fixedly connected with the insulating connector 22;

[0058] The fixing element 20 is provided with a second through hole; the side of the insulating connector 22 away from the heating pipe body 21 penetrates the second through hole.

[0059] In some embodiments, as shown in FIG. Figures 5-6 The shape of the fixing element 20 matches the shape of the card slot, and the fixing element 20 is detachably connected with the card slot; the heating pipe 19 is arranged on the side of the bottom plate 16 away from the second heat-conducting plate 14, and the heating pipe 19 comprises a heating pipe body 21 and an insulating connector 22; the heating pipe body 21 is U-shaped, and the insulating connector 22 can have two, respectively at both ends of the U-shaped heating pipe body; the second through hole can have two, and the positions of the second through holes correspond to the positions of the insulating connectors 22 one by one; the side of the insulating connector 22 away from the heating pipe body 21 penetrates the second through hole. The design of the U-shaped heating pipe provides a larger heating area, so that the heat can be uniformly distributed on the heating pipe body, further ensuring the uniform conduction of heat on the first heat-conducting plate, thereby improving the heat transfer efficiency; the design of the insulating connector effectively reduces the risk of direct contact with high temperature, and improves the overall safety of the furnace structure.

[0060] In the utility model, each heating unit 18 further comprises a fastening part; the fastening part is arranged on the side of the fixing element 20 away from the side plate 17; the shape of the fastening part matches the shape of the insulating connector 22; and the fixing element 20 is detachably connected with the insulating connector 22 through the fastening part.

[0061] In some embodiments, the heating pipe 19 can be a U-shaped heating pipe, the insulation joint 22 can be a joint at both ends of the heating pipe 19, each heating unit 18 can include two fastening parts, the shape of each fastening part matches the shape of the insulation joint 22, and the fixing element 20 is detachably connected with the fastening part and the insulation joint 22 at both ends of the heating pipe 19. By arranging the fastening part to detachably connect the fixing element with the insulation joint, the position of the heating pipe is stable, and uneven heating caused by inaccurate position is avoided, so that the heating pipe can maintain a stable heating state, and the overall structural stability and reliability of the furnace body structure are improved.

[0062] In the utility model, the bottom of the furnace body main body 1 is provided with pulleys 23 at four corners respectively; each pulley 23 is movably connected with the furnace body main body 1.

[0063] In some embodiments, as shown in Figure 1 The bottom of the furnace body main body 1 is provided with pulleys 23 at four corners respectively, and the pulleys 23 can be movably connected with the furnace body main body 1, so that the furnace body main body 1 is convenient to move; the design of the pulleys makes the furnace body main body easily slide on the ground, reduces the resistance when the furnace body structure moves, and the user can easily move the furnace body structure from one position to another position, increases the flexibility of the furnace body structure movement, and improves the work efficiency.

[0064] In some embodiments, each pulley 23 can be fixedly connected with the furnace body main body 1.

[0065] The furnace body structure with a heating function has the following working principle:

[0066] When the food container needs to be heated, the heating pipe 19 is heated, the heat conduction plate assembly 7 is heated upward, the heating table 3 is heated by the heat, and the food container placed on the heating table 3 is heated; when the food container in the cooking main body needs to be heated, the adjustment button on the adjustment control panel 10 is adjusted to adjust the temperature value and the heating time required to be heated, the fan 12 accelerates the heat conduction of the heat conduction plate assembly 7, and the cooking main body heats the food container placed in the cooking main body.

[0067] The utility model has the advantages of:

[0068] The utility model discloses a furnace body structure with heating function, including furnace body main part and heating assembly, furnace body main part includes heating platform and cooking equipment, heating platform sets up at the top of furnace body main part, the height value of heating platform is less than the height value of furnace body main part, the recess is formed between the top of heating platform and the bottom of heating platform, and the bottom of heating platform is provided with cooking equipment on the side away from the recess, cooking equipment includes first panel and second panel of opposite setting, first panel is parallel with second panel, and the cavity is formed between first panel and second panel, heating assembly includes heat conducting plate component, heat conducting plate component is perpendicular with second panel, heat conducting plate component sets up between cavity and heating platform, and one side of heat conducting plate component close to heating platform is detachably connected with heating platform, and one side of heat conducting plate component close to cavity is detachably connected with second panel. Through setting heat conducting plate component between heating platform and cooking main body, heating platform and cooking main body can all heat food container, or utilize cooking main body to keep food container warm, and the heat transfer of heat conducting plate component is accelerated through setting fan, and the heating efficiency is improved.

[0069] The above is the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled person in the art, without departing from the principle of the utility model, a number of improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the utility model.

Claims

1. A furnace body structure with heating function, characterized in that, The stove body (1) and the heating assembly (2) are included. The stove body (1) includes a heating table (3) and a cooking device (4); the heating table (3) is arranged on the top of the stove body (1); the height of the heating table (3) is less than the height of the stove body (1); a groove is formed between the top of the heating table (3) and the bottom of the heating table (3); the bottom of the heating table (3) is provided with the cooking device (4) away from the groove; The cooking device (4) includes a first panel (5) and a second panel (6) arranged oppositely; the first panel (5) is parallel to the second panel (6); a cavity is formed between the first panel (5) and the second panel (6); The heating assembly (2) includes a heat-conducting plate assembly (7); the heat-conducting plate assembly (7) is perpendicular to the second panel (6); the heat-conducting plate assembly (7) is arranged between the cavity and the heating table (3); the side of the heat-conducting plate assembly (7) close to the heating table (3) is detachably connected with the heating table (3); the side of the heat-conducting plate assembly (7) close to the cavity is detachably connected with the second panel (6).

2. The furnace structure according to claim 1, characterized in that The first panel (5) includes a first sliding door (8), a second sliding door (9) and a control panel (10) arranged adjacently; The cooking device (4) includes a cooking body and a control body; the cooking body includes the first sliding door (8) and the second sliding door (9); the control body includes the control panel (10); the second sliding door (9) is arranged between the first sliding door (8) and the control panel (10); the control panel (10) is detachably connected with the second sliding door (9); the first sliding door (8) is detachably connected with the second sliding door (9).

3. The furnace structure according to claim 2, characterized in that The cooking body further includes a third panel (11); the third panel (11) is perpendicular to the second sliding door (9); the third panel (11) is arranged between the second sliding door (9) and the second panel (6); one side of the third panel (11) is fixedly connected with the side of the second sliding door (9) close to the control panel (10); the other side of the third panel (11) is fixedly connected with the second panel (6).

4. The furnace structure according to claim 2, characterized in that The second panel (6) includes a first area and a second area; the first area is fixedly connected with the second area; the sum of the length of the first sliding door (8) and the length of the second sliding door (9) is the same as the length of the first area; The first area is provided with a first through hole; the shape of the first through hole matches the shape of a fan (12); the fan (12) is detachably connected with the second panel (6) through the first through hole.

5. The furnace structure according to claim 1, characterized by The heat-conducting plate assembly (7) comprises a first heat-conducting plate (13), a second heat-conducting plate (14) and a third heat-conducting plate (15); the second heat-conducting plate (14) is arranged between the first heat-conducting plate (13) and the third heat-conducting plate (15); the first heat-conducting plate (13) is provided with the heating table (3) on the side away from the second heat-conducting plate (14); and the third heat-conducting plate (15) is provided with the cavity on the side away from the second heat-conducting plate (14).

6. The furnace structure according to claim 5, wherein The first heat-conducting plate (13) comprises a bottom plate (16) and a side plate (17); the bottom plate (16) is perpendicular to the side plate (17); the bottom plate (16) is detachably connected with the second heat-conducting plate (14); and the side plate (17) is arranged close to the first panel (5) and parallel to the first panel (5).

7. The furnace structure according to claim 6, characterized in that The heating assembly (2) further comprises a plurality of heating units (18); the first heat-conducting plate (13) is provided with the plurality of heating units (18) on the side away from the second heat-conducting plate (14); and the plurality of heating units (18) are equidistantly distributed on the first heat-conducting plate (13). A plurality of clamping grooves are arranged on the side plate (17); the plurality of clamping grooves are equidistantly distributed on the side plate (17); the number of the heating units (18) is the same as that of the clamping grooves; the positions of the clamping grooves correspond to those of the heating units (18) one by one; and the heating units (18) are detachably connected with the side plate (17) through the clamping grooves.

8. The furnace structure according to claim 7, characterized in that Each heating unit (18) comprises a heating pipe (19) and a fixing element (20); the fixing element (20) is arranged on the side of the side plate (17) close to the first panel (5); and the fixing element (20) is detachably connected with the clamping groove. The heating pipe (19) is arranged on the side of the bottom plate (16) away from the second heat-conducting plate (14); the heating pipe (19) comprises a heating pipe body (21) and an insulating connector (22); and the heating pipe body (21) is fixedly connected with the insulating connector (22). A second through hole is arranged on the fixing element (20); and the side of the insulating connector (22) away from the heating pipe body (21) penetrates through the second through hole.

9. The furnace structure according to claim 8, characterized in that Each heating unit (18) further comprises a fastening part; the fastening part is arranged on the side of the fixing element (20) away from the side plate (17); the shape of the fastening part matches that of the insulating connector (22); and the fixing element (20) is detachably connected with the insulating connector (22) through the fastening part.

10. The furnace structure according to claim 1, characterized by Four pulleys (23) are arranged at the four corners of the bottom of the furnace body (1) respectively; each pulley (23) is movably connected with the furnace body (1).