Bottom shell structure of stove and gas stove
By introducing a plug-in component into the bottom shell structure of the stove, the problem of adapting burners of different heights is solved, and the effects of simplifying production and reducing costs are achieved.
Patent Information
- Application Number
- CN202422417141.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In existing gas stoves, burners of different heights and sizes require different stove bottom shell molds, which leads to high production costs and complex processing, and reduces production efficiency.
A plug-in assembly is used, including a plug-in piece and a plug-in slot. By choosing whether to install the plug-in piece, it can adapt to burners of different heights. The plug-in piece only needs to be processed with the plug-in slot and the abutment part, which simplifies the production process.
The production efficiency of the stove bottom shell structure is improved, the production cost is reduced, and the structure is simple, which can adapt to the requirements of burners of different heights.
Smart Images

Figure CN223319133U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kitchen appliances, in particular to a stove bottom shell structure and a gas stove. Background Art
[0002] Existing gas stoves usually include a stove bottom shell, a panel, a burner and a water tray. The stove bottom shell has a mounting cavity for accommodating the burner, and the burner is installed on the bottom plate of the mounting cavity. The panel is installed on the stove bottom shell and covers the mounting cavity. The water tray is usually overlapped with the upper surface of the panel and connected to the burner.
[0003] However, for burners of different heights, the height of the water tray is not the same. Since the burner is installed on the bottom plate of the installation cavity, and the water tray needs to overlap the upper surface of the panel, the distance between the panel and the bottom plate of the installation cavity is also different. That is, the installation cavity depth required for burners of different heights is not the same. Therefore, different stove bottom shell molds need to be configured for burners of different heights, which not only greatly increases the production cost of the stove bottom shell, but also the production and processing of different stove bottom shell molds is more complicated and time-consuming, thereby reducing the production and processing efficiency of the stove bottom shell. Utility Model Content
[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a stove bottom shell structure that can adapt to burners of different heights and sizes, has a simple structure, is easy to manufacture and process, and is conducive to improving the production efficiency and reducing the production cost of the stove bottom shell structure.
[0005] The utility model also provides a gas cooker with the above-mentioned cooker bottom shell structure.
[0006] According to the embodiment of the present invention, the bottom shell structure of the stove includes: a bottom shell having a bottom plate and side plates, the side plates are connected to the bottom plate and enclosed with the bottom plate to form an installation cavity; a plug-in assembly includes at least one plug-in component, the plug-in component is provided with a plug-in slot that can be adapted to the side plate, the top of the plug-in component has an abutment portion that can abut against the panel, the abutment portion is located above the plug-in slot, and when the side plate is inserted into the plug-in slot, the abutment portion is located above the side plate.
[0007] The stove bottom shell structure according to the embodiment of the present invention has at least the following beneficial effects:
[0008] By adopting the stove bottom shell structure of the embodiment of the present invention, the bottom shell is equipped with a plug-in assembly, which includes at least one plug-in component. The plug-in component has a plug-in slot that can be plugged into the side panel and an abutment portion that can be abutted against the panel. Therefore, it is possible to choose whether to install the plug-in component on the side panel of the bottom shell according to the height of the burner to be installed. Compared with the existing technology that requires different stove bottom shell molds for burners of different heights, the stove bottom shell structure of the embodiment of the present invention can adapt to burners of different heights by choosing whether to install the plug-in component. During the production process, the plug-in component only needs to be processed into the plug-in slot and the abutment portion. The structure is simple and easy to produce and process, greatly improving the production efficiency of the stove bottom shell structure and reducing the production cost of the stove bottom shell structure.
[0009] According to some embodiments of the present invention, the connector includes a plug-in plate, the edge of which is bent to form a first folded edge and a second folded edge, the first folded edge and the second folded edge are arranged at intervals to form the plug-in groove, and the abutment portion is provided at the top of the plug-in plate.
[0010] According to some embodiments of the present invention, in each of the connectors, the connector plate has a first edge, a second edge, and a third edge, the first edge and the third edge are arranged opposite to each other, and the second edge is connected between the first edge and the third edge; the first folded edge is formed by bending the first edge, the second folded edge is formed by bending the second edge, and the abutment portion is arranged on the third edge.
[0011] According to some embodiments of the present invention, the plug-in plate also has a third folded edge, which is formed by bending the third edge, and the abutment portion is provided on the third folded edge; the upper edge of the side panel has an extension portion that can cooperate with the plug-in slot, and when the extension portion is plugged into the plug-in slot, the third folded edge is located above the first folded edge and the second folded edge.
[0012] According to some embodiments of the present invention, the extension portion is formed by bending the upper edge of the side panel outward or inward; when the extension portion is inserted into the plug-in slot, the opening of the plug-in slot is arranged in the horizontal direction, the plug-in plate is arranged in the up and down directions, the third folded edge is arranged in the horizontal direction and is located above the first folded edge and the second folded edge, and the abutment portion is located on the upper surface of the third folded edge.
[0013] According to some embodiments of the present invention, the extension portion is formed by bending the upper peripheral edge of the side panel outward; the first folded edge and the second folded edge both extend in a direction close to the installation cavity, and the third folded edge extends in a direction away from the installation cavity.
[0014] According to some embodiments of the present invention, at least one recessed portion is provided on the surface of the extension portion, and when the extension portion is inserted into the insertion groove, the outer periphery of the recessed portion can abut against the first folded edge or the second folded edge.
[0015] According to some embodiments of the present invention, the extension portion is located at the upper edge of the side panel and is arranged upward; when the extension portion is inserted into the plug-in slot, the opening of the plug-in slot is arranged downward, the plug-in plate is arranged in a horizontal direction, the first folded edge and the second folded edge are both extended downward, the third folded edge is extended upward, and the abutment portion is located at the upper edge of the third folded edge.
[0016] According to some embodiments of the present invention, in each group of the plug-in components, there is a height difference a between the abutting portion and the inner top wall of the plug-in slot, where a>0; wherein the number of the plug-in components is at least two groups, and the height difference a in any one of the plug-in components is not equal to the height difference a in other of the plug-in components.
[0017] According to an embodiment of the present invention, the gas stove includes: the stove bottom shell structure described in any of the above embodiments; a panel, arranged above the bottom shell, and provided with a mounting hole; a burner, installed on the bottom plate and passed through the mounting hole; a water receiving tray, installed on the burner and abutting against the upper surface of the panel; wherein the lower surface of the panel can abut against the side panel, or when the side panel is inserted into the insertion slot, the lower surface of the panel can abut against the abutting portion.
[0018] The gas cooker according to the embodiment of the present invention has at least the following beneficial effects:
[0019] By adopting the stove bottom shell structure of any of the above-mentioned embodiments, the bottom shell is configured with a plug-in assembly, which includes at least one plug-in component. Therefore, it is possible to adapt to burners of different heights and sizes by choosing whether to install the plug-in component. During the production process, the plug-in component only needs to process the plug-in groove and the abutment portion. The structure is simple and easy to produce and process, which is beneficial to improving the production efficiency of the gas stove and reducing the production cost of the gas stove.
[0020] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0022] Figure 1This is a schematic diagram of a stove bottom shell structure according to an embodiment of the present invention;
[0023] Figure 2 This is a partially enlarged schematic diagram of the bottom shell structure of a cooker according to an embodiment of the present invention;
[0024] Figure 3 This is another partially enlarged schematic diagram of the bottom shell structure of a cooker according to an embodiment of the present invention;
[0025] Figure 4 This is a structural diagram of a connector according to an embodiment of the present invention;
[0026] Figure 5 for Figure 4 Front view of the middle connector;
[0027] Figure 6 This is a structural diagram of a connector according to another embodiment of the present invention;
[0028] Figure 7 for Figure 6 Front view of the middle connector.
[0029] Reference numerals:
[0030] Bottom shell 100, bottom plate 110, side plate 120, extension portion 121, recessed portion 122, mounting cavity 130;
[0031] Connector 200 , plug board 300 , first edge 301 , second edge 302 , third edge 303 , first folded edge 310 , second folded edge 320 , third folded edge 330 , plug slot 340 , and abutting portion 350 . DETAILED DESCRIPTION
[0032] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0033] In the description of the present invention, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.
[0034] In the description of this utility model, "several" means one or more, "many" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The use of "first" and "second" in the description is solely for the purpose of distinguishing technical features and is not to be construed as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.
[0035] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.
[0036] Reference Figures 1 to 7 One embodiment of the present invention provides a stove bottom shell structure, including a bottom shell 100 and a plug-in assembly. The bottom shell 100 has a bottom plate 110 and side plates 120. The side plates 120 are connected to the bottom plate 110 and enclose the bottom plate 110 to form a mounting cavity 130. The plug-in assembly includes six plug-in components 200. The plug-in components 200 have plug-in slots 340 that are compatible with the side plates 120. The tops of the plug-in components 200 have abutment portions 350 that can abut against the panel. The abutment portions 350 are located above the plug-in slots 340, so that when the side plates 120 are inserted into the plug-in slots 340, the abutment portions 350 are located above the side plates 120.
[0037] By adopting the bottom shell structure of the stove according to the embodiment of the present invention, the bottom shell 100 is provided with a plug-in assembly, which includes at least one plug-in component 200. The plug-in component 200 is provided with a plug-in slot 340 that can be plugged into the side panel 120 and an abutment portion 350 that can be abutted against the panel. Therefore, it is possible to choose whether to install the plug-in component 200 on the side panel 120 of the bottom shell 100 according to the height size of the burner to be installed. Specifically, the height of the burner to be installed that matches the depth of the installation cavity 130 is a preset height. When the height of the burner to be installed is equal to the preset height, that is, the burner to be installed is compatible with the bottom shell 100, then there is no need to install the plug-in component 200. After the burner is installed on the bottom plate 110, the panel can be directly overlapped on the bottom shell 100. The side panel 120 can now abut the water collecting pan installed on the burner against the upper surface of the panel; when the height of the burner to be installed is greater than the preset height, that is, the burner to be installed is not compatible with the bottom shell 100, then the connector 200 can be installed on the bottom shell 100, and the side panel 120 of the bottom shell 100 can be inserted into the connector slot 340 of the connector 200, so that the abutting portion 350 of the connector 200 is located above the side panel 120, thereby increasing the depth of the installation cavity 130, so that the burner to be installed can be compatible with the bottom shell structure of the stove after the connector 200 is installed, thereby allowing the panel to be overlapped on the abutting portion 350 of the connector 200 after the burner is installed on the bottom plate 110, and then the water collecting pan installed on the burner can be abutted against the upper surface of the panel.
[0038] From the above, it can be seen that compared with the existing technology that requires different stove bottom shell molds to be configured for burners of different heights, the stove bottom shell structure of the embodiment of the utility model can adapt to burners of different heights by choosing whether to install the plug-in component 200. The plug-in component 200 only needs to process the plug-in groove 340 and the abutment portion 350 during the production process. The structure is simple and easy to produce and process, which greatly improves the production efficiency of the stove bottom shell structure and reduces the production cost of the stove bottom shell structure.
[0039] It is understood that the top of the plug connector 200 has an abutment portion 350 that can abut against the panel. Specifically, the abutment portion 350 can be an integrally formed structure with the plug connector 200. In this case, during the production process of the plug connector 200, only the insertion groove 340 needs to be processed, thereby making the plug connector 200 structure simpler and more convenient to produce and process. Of course, in addition to this, the abutment portion 350 can also be a separate component installed on the plug connector 200, and this utility model does not make specific restrictions on this.
[0040] It is understandable that, referring to Figure 1The plug assembly includes six plug connectors 200, which are arranged in a sequentially spaced manner along the circumference of the bottom shell 100, thereby more stably supporting the panel. Of course, the number of plug connectors 200 in the plug assembly can be one, two, three, four, five, seven, eight, or more, in addition to six, and this utility model does not impose a specific limitation on this.
[0041] Reference Figures 1 to 7 In some embodiments, the connector 200 includes a plug-in board 300 , the edge of which is bent to form a first folded edge 310 and a second folded edge 320 . The first folded edge 310 and the second folded edge 320 are arranged at intervals to form a plug-in groove 340 , and the abutment portion 350 is provided at the top of the plug-in board 300 .
[0042] By adopting the above structure, the connector 200 includes a connector plate 300, and the connector slot 340 is defined by a first folded edge 310 and a second folded edge 320 formed by bending the edge of the connector plate 300. Therefore, during the production process of the connector 200, the connector slot 340 can be formed by simply bending the edge of the connector plate 300. Not only is the structure simple, but the production and processing are more convenient. At the same time, the provision of the first folded edge 310 and the second folded edge 320 is also beneficial to improving the structural strength of the connector 200, reducing the risk of the connector 200 being compressed and deformed during use, and thus helping to improve the stability and reliability of the bottom shell structure of the stove.
[0043] It is understandable that the plug slot 340 is defined by the first folded edge 310 and the second folded edge 320 formed by bending the edge of the plug board 300. Figures 1 to 7 As an exemplary illustration, in some embodiments, the plug slot 340 may also be formed by cutting the side wall of the connector 200, or the plug slot 340 may also be formed by other structural limitations, which is not specifically limited in the present invention.
[0044] Reference Figures 1 to 7 In some embodiments, in each connector 200, the connector board 300 has a first edge 301, a second edge 302 and a third edge 303, the first edge 301 and the third edge 303 are arranged opposite to each other, and the second edge 302 is connected between the first edge 301 and the third edge 303; wherein the first folded edge 310 is formed by bending the first edge 301, the second folded edge 320 is formed by bending the second edge 302, and the abutment portion 350 is arranged on the third edge 303.
[0045] By adopting the above structure, the second edge 302 is connected between the first edge 301 and the third edge 303, that is, the first edge 301 and the second edge 302 are arranged adjacent to each other, and the first folded edge 310 and the second folded edge 320 are respectively formed by bending the first edge 301 and the second edge 302 adjacent to the plug-in board 300, thereby making the bending processing of the first folded edge 310 and the second folded edge 320 simpler and more convenient.
[0046] It can be understood that, in addition to being formed by bending two adjacent edges of the plug board 300, in some embodiments, the first folded edge 310 and the second folded edge 320 can also be formed by bending two opposite edges of the plug board 300 or by bending any other two edges, and the present invention does not make specific limitations on this.
[0047] Reference Figures 1 to 5 In some embodiments, the plug-in board 300 further has a third folded edge 330, which is formed by bending the third edge 303, and the abutment portion 350 is provided on the third folded edge 330; the upper edge of the side panel 120 has an extension portion 121 that can cooperate with the plug-in slot 340. When the extension portion 121 is plugged into the plug-in slot 340, the third folded edge 330 is located above the first folded edge 310 and the second folded edge 320.
[0048] By adopting the above structure, the third fold 330 is provided at the third edge 303 of the plug plate 300, and the abutment portion 350 is provided on the third fold 330. This further improves the structural strength of the plug connector 200, reduces the risk of compression deformation of the plug connector 200 during use, and further helps to improve the stability and reliability of the stove bottom shell structure. In addition, by providing the extension portion 121 on the upper edge of the side panel 120, the side panel 120 can be easily inserted into the plug slot 340 of the plug connector 200. Since the abutment portion 350 is provided on the third folded edge 330, the insertion groove 340 is defined by the first folded edge 310 and the second folded edge 320, when the extension portion 121 is inserted into the insertion groove 340, the third folded edge 330 is located above the first folded edge 310 and the second folded edge 320. Therefore, when the extension portion 121 of the side panel 120 is inserted into the insertion groove 340, the abutment portion 350 can be located above the extension portion 121, thereby increasing the depth of the mounting cavity 130 of the bottom shell 100, so that the bottom shell structure of the stove after the installation of the plug-in component 200 can be adapted to the burner to be installed with a larger height dimension, thereby making the bottom shell structure of the stove of the embodiment of the utility model adaptable to burners of different height dimensions by selecting whether to install the plug-in component 200. The structure is simple and the production and processing are convenient, which greatly improves the production efficiency of the bottom shell structure of the stove and reduces the production cost of the bottom shell structure of the stove.
[0049] Reference Figures 1 to 5In some embodiments, the extension portion 121 is formed by bending the upper edge of the side panel 120 outward. When the extension portion 121 is inserted into the insertion slot 340, the opening of the insertion slot 340 is arranged horizontally, the insertion board 300 is arranged in the vertical direction, the third folded edge 330 is arranged horizontally and located above the first folded edge 310 and the second folded edge 320, and the abutment portion 350 is located on the upper surface of the third folded edge 330.
[0050] By adopting the above structure, the extension portion 121 is formed by bending the upper edge of the side panel 120 outward, specifically, the extension portion 121 is formed by bending the upper edge of the side panel 120 in a direction away from the installation cavity 130, thereby increasing the structural strength of the bottom shell 100 and improving the structural stability of the bottom shell 100. And because the extension portion 121 is extended outward, the opening of the plug-in slot 340 needs to be arranged horizontally and toward the installation cavity 130. At this time, the plug-in board 300 is arranged in the up-down direction, and the third folded edge 330 is arranged horizontally and located above the first folded edge 310 and the second folded edge 320, that is, the first folded edge 310 is arranged at the lower edge of the plug-in board 300, the third folded edge 330 is arranged at the upper edge of the plug-in board 300, and the second folded edge 320 is located between the first folded edge 310 and the second folded edge 320 and is spaced apart from the first folded edge 310 to form the plug-in slot 340. As a result, the abutting portion 350 located on the upper surface of the third folded edge 330 can be located above the plug-in slot 340, and with reference to Figure 4 and Figure 5 There is a height difference a between the abutting portion 350 and the inner top wall of the plug-in slot 340. At this time, the inner top wall of the plug-in slot 340 is specifically the lower edge of the second folded edge 320. Therefore, when the extension portion 121 of the side panel 120 is inserted into the plug-in slot 340 and the extension portion 121 can abut against the inner top wall of the plug-in slot 340, the abutting portion 350 can be located above the extension portion 121 of the side panel 120, and there is a height difference a between the two.
[0051] Specifically, the height of the burner head that matches the depth of the installation cavity 130 is a preset height. When the height of the burner head to be installed is equal to the preset height, there is no need to install the connector 200. After the burner head is installed on the bottom plate 110, the panel can be directly overlapped on the side plate 120 of the bottom shell 100. When the height of the burner head to be installed is greater than the preset height and the difference between the two is a, the connector 200 can be installed on the bottom shell 100, and the side plate 120 of the bottom shell 100 can be plugged into the plug-in slot of the connector 200. 340, so that the abutment portion 350 of the connector 200 is located above the side panel 120, thereby increasing the depth of the installation cavity 130, so that the burner to be installed can be adapted to the bottom shell structure of the stove after the connector 200 is installed, so that the panel can be overlapped with the abutment portion 350 of the connector 200 after the burner is installed on the bottom plate 110, thereby making the bottom shell structure of the stove of the embodiment of the utility model adaptable to burners of different heights by choosing whether to install the connector 200.
[0052] It is understandable that the extension portion 121 is formed by bending the upper edge of the side plate 120 outwards, which is only for Figures 1 to 5 As an exemplary illustration, in some embodiments, the extension portion 121 can also be configured to be formed by bending the upper edge of the side panel 120 inward, that is, the extension portion 121 is formed by bending the upper edge of the side panel 120 toward the direction close to the installation cavity 130. This can also increase the structural strength of the bottom shell 100 and improve the structural stability of the bottom shell 100. In this case, when the extension portion 121 is inserted into the insertion slot 340, the opening of the insertion slot 340 is arranged horizontally and faces the installation cavity 130, the insertion board 300 is arranged in the vertical direction, the third folded edge 330 is arranged horizontally and is located above the first folded edge 310 and the second folded edge 320, and the abutment portion 350 is located on the upper surface of the third folded edge 330.
[0053] Reference Figures 1 to 5 In some embodiments, the extension portion 121 is formed by bending the upper peripheral edge of the side panel 120 outward; the first fold edge 310 and the second fold edge 320 both extend in a direction close to the installation cavity 130, and the third fold edge 330 extends in a direction away from the installation cavity 130.
[0054] By adopting the above structure, the extension portion 121 is formed by bending the upper peripheral edge of the side panel 120 outward. Specifically, the extension portion 121 is formed by bending the upper edge of the side panel 120 in a direction away from the installation cavity 130. The first folded edge 310 and the second folded edge 320 both extend in a direction close to the installation cavity 130. As a result, the insertion slot 340 is arranged horizontally and opens toward the installation cavity 130, making it easier to insert the extension portion 121 into the insertion slot 340. By extending the third folded edge 330 in a direction away from the installation cavity 130, that is, the bending direction of the third folded edge 330 is opposite to the bending directions of the first folded edge 310 and the second folded edge 320, the abutment portion 350 located on the upper surface of the third folded edge 330 can support a panel with a larger area.
[0055] It can be understood that in some embodiments, the bending direction of the third fold edge 330 can also be set to be the same as the bending direction of the first fold edge 310 and the second fold edge 320, that is, the third fold edge 330 also extends in the direction close to the installation cavity 130. Therefore, when the connector 200 is plugged into the extension portion 121 of the side panel 120, the abutment portion 350 located on the upper surface of the third fold edge 330 can also support the panel.
[0056] It is understood that the upper edge of the side panel 120 has an extension portion 121, wherein the extension portion 121 can be formed by bending the upper edge of the side panel 120 outward or inward. In some embodiments, the extension portion 121 can also be directly provided on the upper edge of the side panel 120 and arranged upward. In this case, referring to Figure 6 and Figure 7 The bending direction of the third folding edge 330 is opposite to the bending directions of the first folding edge 310 and the second folding edge 320. When the extension portion 121 is inserted into the plug-in slot 340, the opening of the plug-in slot 340 is arranged downward, the plug-in board 300 is arranged in the horizontal direction, the first folded edge 310 and the second folded edge 320 are both extended downward, the third folded edge 330 is extended upward, the abutting portion 350 is located at the upper edge of the third folded edge 330, and the plug-in slot 340 is defined by the first folded edge 310 and the second folded edge 320. At this time, there is a height difference a between the abutting portion 350 and the inner top wall of the plug-in slot 340. At this time, the inner top wall of the plug-in slot 340 is specifically the lower surface of the plug-in board 300 located between the first folded edge 310 and the third folded edge 330. Therefore, when the extension portion 121 abuts against the inner top wall of the plug-in slot 340, the abutting portion 350 can be located above the extension portion 121, and there is a height difference a between the two.
[0057] Specifically, the height of the burner head that matches the depth of the installation cavity 130 is a preset height. When the height of the burner head to be installed is equal to the preset height, there is no need to install the connector 200. After the burner head is installed on the bottom plate 110, the panel can be directly overlapped on the side plate 120 of the bottom shell 100. When the height of the burner head to be installed is greater than the preset height and the difference between the two is a, the connector 200 can be installed on the bottom shell 100, and the side plate 120 of the bottom shell 100 can be plugged into the plug-in slot of the connector 200. 340, so that the abutment portion 350 of the connector 200 is located above the side panel 120, thereby increasing the depth of the installation cavity 130, so that the burner to be installed can be adapted to the bottom shell structure of the stove after the connector 200 is installed, so that the panel can be overlapped with the abutment portion 350 of the connector 200 after the burner is installed on the bottom plate 110, thereby making the bottom shell structure of the stove of the embodiment of the utility model adaptable to burners of different heights by choosing whether to install the connector 200.
[0058] Reference Figures 1 to 3 In some embodiments, two recessed portions 122 are provided on the surface of the extension portion 121. When the extension portion 121 is inserted into the insertion groove 340, the outer periphery of the recessed portion 122 can abut against the first folded edge 310 or the second folded edge 320.
[0059] By adopting the above structure, the provision of the recessed portion 122 is conducive to increasing the structural strength of the extending portion 121 and reducing the risk of the extending portion 121 being deformed by pressure, thereby making the structure of the bottom shell 100 more stable.
[0060] It is understandable that the number of the recessed portions 122 is two, which is only for Figures 1 to 3 As an exemplary illustration, the number of the recessed portions 122 may be two, or may be one, three, four or more.
[0061] It is understandable that, referring to Figures 1 to 3 The recessed portion 122 may be a ring-shaped groove arranged along the circumference of the bottom shell 100. Of course, in addition to this, the recessed portion 122 may also be a circular groove or a groove of other shapes, which is not specifically limited in the present invention.
[0062] It is understandable that, referring to Figures 1 to 7 In some embodiments, in each group of plug-in components, there is a height difference a between the abutment portion 350 and the inner top wall of the plug-in slot 340, wherein the number of plug-in components is at least two groups, and the height difference a in any plug-in component is not equal to the height difference a in other plug-in components.
[0063] By adopting the above structure, the height difference a in any plug-in component is not equal to the height difference a in other plug-in components, that is, the height increased by the installation cavity 130 after the plug-in component 200 in each group of plug-in components is inserted into the side panel 120 is different, so that it can be adapted to more burners with different heights and sizes, which is beneficial to increasing the applicability of the bottom shell structure of the stove.
[0064] It is understandable that, referring to Figure 4 and Figure 5 In some embodiments, the opening of the plug-in slot 340 is arranged in the horizontal direction, the plug-in plate 300 is arranged in the up-down direction, the third fold 330 is arranged in the horizontal direction and is located above the first fold 310 and the second fold 320, the abutting portion 350 is located on the upper surface of the third fold 330, and there is a height difference a between the abutting portion 350 and the inner top wall of the plug-in slot 340, wherein the inner top wall of the plug-in slot 340 specifically refers to the lower edge of the second fold 320. Therefore, when the extension portion 121 of the side panel 120 is inserted into the plug-in slot 340 and the extension portion 121 can abut against the inner top wall of the plug-in slot 340, the abutting portion 350 can be located above the extension portion 121 of the side panel 120, and there is a height difference a between the two. Alternatively, referring to Figure 6 and Figure 7 In some embodiments, the opening of the plug-in slot 340 is arranged downward, the plug-in board 300 is arranged in a horizontal direction, the first folded edge 310 and the second folded edge 320 are both extended downward, the third folded edge 330 is extended upward, and the abutting portion 350 is located at the upper edge of the third folded edge 330. There is a height difference a between the abutting portion 350 and the inner top wall of the plug-in slot 340. At this time, the inner top wall of the plug-in slot 340 is specifically the lower surface of the plug-in board 300 located between the first folded edge 310 and the third folded edge 330. Therefore, when the extension portion 121 abuts against the inner top wall of the plug-in slot 340, the abutting portion 350 can be located above the extension portion 121, and there is a height difference a between the two.
[0065] One embodiment of the present invention further provides a gas cooker comprising a bottom shell structure according to any of the above embodiments, a panel, a burner, and a water tray. The panel is disposed above the bottom shell 100 and defines a mounting hole for the burner. The burner is mounted on the bottom plate 110 and extends through the mounting hole. The water tray is mounted on the burner and abuts the upper surface of the panel. The lower surface of the panel can abut the side panel 120, or, when the side panel 120 is inserted into the insertion slot 340, the lower surface of the panel can abut the abutment portion 350.
[0066] In the gas cooker of the embodiment of the present invention, by adopting the cooker bottom shell structure of any of the above-mentioned embodiments, the bottom shell 100 is provided with a plug-in assembly, which includes at least one plug-in component 200. Thus, burners of different heights can be adapted by choosing whether to install the plug-in component 200. During the production process, the plug-in component 200 only needs to process the plug-in groove 340 and the abutment portion 350. The structure is simple and easy to produce and process, which is beneficial to improving the production efficiency of the gas cooker and reducing the production cost of the gas cooker.
[0067] Specifically, the height of the burner that matches the depth of the installation cavity 130 is a preset height. When the height of the burner to be installed is equal to the preset height, that is, the burner to be installed is adapted to the bottom shell 100, then there is no need to install the connector 200. After the burner is installed on the bottom plate 110, the panel can be directly overlapped on the side plate 120 of the bottom shell 100. At this time, the water receiving tray installed on the burner can be abutted against the upper surface of the panel. When the height of the burner to be installed is greater than the preset height, that is, the burner to be installed is not adapted to the bottom shell 100, then the bottom shell can be installed. 100, and the side panel 120 of the bottom shell 100 is inserted into the insertion groove 340 of the connector 200, so that the abutment portion 350 of the connector 200 is located above the side panel 120, thereby increasing the depth of the installation cavity 130, so that the burner to be installed can be adapted to the bottom shell structure of the stove after the connector 200 is installed, thereby making it possible to overlap the panel with the abutment portion 350 of the connector 200 after the burner is installed on the bottom plate 110, and at this time, the water tray installed on the burner can be abutted against the upper surface of the panel.
[0068] In some embodiments, the panel may be made of stainless steel. Of course, in addition to this, the panel may also be made of glass or other structures, which is not specifically limited in the present invention.
[0069] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by ordinary technicians in the relevant technical field without departing from the purpose of the present invention.
Claims
1. The bottom shell structure of the stove is characterized by: include: A bottom shell (100) having a bottom plate (110) and a side plate (120), wherein the side plate (120) is connected to the bottom plate (110) and encloses the bottom plate (110) to form a mounting cavity (130); A plug-in assembly comprises at least one plug-in connector (200), wherein the plug-in connector (200) is provided with a plug-in slot (340) capable of matching with the side panel (120), and the top of the plug-in connector (200) is provided with an abutment portion (350) capable of abutting against a panel, wherein the abutment portion (350) is located above the plug-in slot (340), and when the side panel (120) is inserted into the plug-in slot (340), the abutment portion (350) is located above the side panel (120).
2. The stove bottom shell structure according to claim 1, characterized in that: The plug connector (200) comprises a plug plate (300), the edge of the plug plate (300) being bent to form a first folded edge (310) and a second folded edge (320), the first folded edge (310) and the second folded edge (320) being arranged at intervals to form the plug slot (340), and the abutting portion (350) being provided at the top of the plug plate (300).
3. The stove bottom shell structure according to claim 2, characterized in that: In each of the plug connectors (200), the plug board (300) has a first edge (301), a second edge (302), and a third edge (303), the first edge (301) and the third edge (303) are arranged opposite to each other, and the second edge (302) is connected between the first edge (301) and the third edge (303); The first folded edge (310) is formed by bending the first edge (301), the second folded edge (320) is formed by bending the second edge (302), and the abutting portion (350) is provided on the third edge (303).
4. The stove bottom shell structure according to claim 3, characterized in that: The plug board (300) further has a third folded edge (330), the third folded edge (330) is formed by bending the third edge (303), and the abutting portion (350) is provided on the third folded edge (330); The upper edge of the side panel (120) has an extension portion (121) capable of being plugged into the plug-in slot (340); when the extension portion (121) is plugged into the plug-in slot (340), the third folded edge (330) is located above the first folded edge (310) and the second folded edge (320).
5. The stove bottom shell structure according to claim 4, characterized in that: The extension portion (121) is formed by bending the upper edge of the side plate (120) outward or inward; When the extension portion (121) is inserted into the plug-in slot (340), the opening of the plug-in slot (340) is arranged in the horizontal direction, the plug-in plate (300) is arranged in the up-down direction, the third folded edge (330) is arranged in the horizontal direction and is located above the first folded edge (310) and the second folded edge (320), and the abutting portion (350) is located on the upper surface of the third folded edge (330).
6. The stove bottom shell structure according to claim 5, characterized in that: The extension portion (121) is formed by bending the upper peripheral edge of the side plate (120) outward; The first folded edge (310) and the second folded edge (320) both extend in a direction close to the installation cavity (130), and the third folded edge (330) extends in a direction away from the installation cavity (130).
7. The stove bottom shell structure according to claim 5, characterized in that: At least one recessed portion (122) is provided on the surface of the extension portion (121); when the extension portion (121) is inserted into the insertion slot (340), the outer periphery of the recessed portion (122) can abut against the first folded edge (310) or the second folded edge (320).
8. The stove bottom shell structure according to claim 4, characterized in that: The extension portion (121) is located at the upper edge of the side plate (120) and is arranged upward; When the extension portion (121) is inserted into the plug-in slot (340), the opening of the plug-in slot (340) is arranged downward, the plug-in plate (300) is arranged in a horizontal direction, the first folded edge (310) and the second folded edge (320) are both extended downward, the third folded edge (330) is extended upward, and the abutting portion (350) is located at the upper edge of the third folded edge (330).
9. The stove bottom shell structure according to any one of claims 1 to 8, characterized in that: In each group of the plug-in components, there is a height difference a between the abutting portion (350) and the inner top wall of the plug-in slot (340), wherein a>0; There are at least two groups of plug-in components, and the height difference a in any one of the plug-in components is not equal to the height difference a in the other plug-in components.
10. A gas cooker, characterized in that: include: The stove bottom shell structure according to any one of claims 1 to 9; A panel is provided above the bottom shell (100), and the panel is provided with a mounting hole; A burner head, mounted on the bottom plate (110) and passing through the mounting hole; a water receiving tray, mounted on the burner and abutting against the upper surface of the panel; The lower surface of the panel can abut against the side panel (120), or when the side panel (120) is inserted into the insertion groove (340), the lower surface of the panel can abut against the abutment portion (350).