Integrated cooker host
By splitting the side panel of the integrated stove main machine into detachable plates and connecting them with positioning grooves, the high cost problem caused by the fixed side panel length is solved, and mold cost savings and automatic mass production efficiency are achieved.
Patent Information
- Application Number
- CN202420638983.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-29
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-03-29
AI Technical Summary
The length of the existing integrated stove host is fixed, resulting in the need to produce molds of different lengths, which increases production costs and is not conducive to automated mass production.
The side panels of the integrated stove main unit are split into removable plates, and the removable connection is achieved through positioning grooves and positioning plates to adapt to different length requirements, uniformly produce basic plates and add additional plates according to needs.
It saves mold development costs, improves production efficiency, facilitates automated mass production, and reduces production costs.
Smart Images

Figure CN223165608U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kitchen appliances, in particular to an integrated stove main body. Background Art
[0002] An integrated stove, also called an environmental protection stove or an integrated environmental protection stove, is a kitchen appliance integrating functions such as a smoke exhaust machine, a gas stove, a disinfection cabinet, and a storage cabinet, and has the advantages of saving space, good smoke exhaust effect, energy saving, low consumption, and environmental protection.
[0003] In the prior art, an integrated stove generally includes an integrated stove main body and a machine head and other structures. Among them, for the integrated stove main body, the housing of the integrated stove main body includes a group of side plates, and a group of side plates is composed of two relatively arranged side plates. A disinfection cabinet, a storage cabinet, and other functional modules are installed between the two side plates. In the prior art, the length of a single side plate is fixed, that is, the space depth between a group of side plates is fixed. Therefore, to meet different product requirements, side plates of different lengths need to be produced to meet different space depth requirements. For this reason, manufacturers need to develop different molds, resulting in higher production costs and being not conducive to automated mass production.
[0004] Therefore, the above problems need to be solved urgently. Summary of the Utility Model
[0005] The purpose of the utility model is to provide an integrated stove main body to save the development cost of molds, thereby reducing the production cost and being conducive to automated mass production.
[0006] To achieve the above purpose, the utility model adopts the following technical solutions:
[0007] An integrated stove main body, comprising:
[0008] A first side plate, including a first plate portion, and a second plate portion is detachably installed on one side of the first plate portion along a first direction; and
[0009] A second side plate, including a third plate portion, and a fourth plate portion is detachably installed on one side of the third plate portion along the first direction. The first plate portion and the third plate portion are arranged opposite to each other along a second direction, the second direction is perpendicular to the first direction, and the third plate portion and the fourth plate portion are arranged opposite to each other along the second direction. The cooking range of the integrated stove is installed on the tops of the first side plate and the second side plate.
[0010] Preferably, a plurality of first positioning grooves are provided on one of the first plate portion and the second plate portion, and a plurality of first positioning plates are provided on the other of the first plate portion and the second plate portion. The plurality of first positioning plates can be respectively clamped into the plurality of first positioning grooves one by one;
[0011] One of the third plate portion and the fourth plate portion is provided with a plurality of second positioning grooves, and the other of the third plate portion and the fourth plate portion is provided with a plurality of second positioning plates, and the plurality of second positioning plates can be respectively clamped in the plurality of second positioning grooves.
[0012] Preferably, the integrated cooking range main body further includes a bottom plate, the first side plate abuts against one side of the bottom plate along the second direction, and the second side plate abuts against the other side of the bottom plate along the second direction.
[0013] Preferably, the bottom plate is turned up to form a first flanging, the first flanging is turned up toward the side away from the bottom plate along the first direction to form a second flanging, the first side plate is provided with a third flanging and a fourth flanging, the third flanging abuts against the side of the first flanging close to the bottom plate, the fourth flanging abuts against the top of the second flanging, the second side plate is provided with a fifth flanging and a sixth flanging, the fifth flanging abuts against the side of the first flanging close to the bottom plate, and the sixth flanging abuts against the top of the second flanging.
[0014] Preferably, a perforation is formed in the first flanging, and the perforation is configured to pass a wire for electrically connecting the integrated cooking range to an external power supply.
[0015] Preferably, the integrated cooking range main body further includes a back plate, the back plate abuts between the first plate portion and the third plate portion and is placed on the second flanging, a ventilation pipeline is formed inside the back plate, one end of the ventilation pipeline communicates with the space above the cooking stove, and the other end of the ventilation pipeline communicates with the fan assembly of the integrated cooking range.
[0016] Preferably, the side of the second flanging away from the first flanging is turned up to form a seventh flanging, both sides of the back plate along the second direction are turned up to form an eighth flanging, the eighth flanging is located on the side of the back plate along the first direction away from the bottom plate, the seventh flanging abuts between the two eighth flangings, and the bottom of the back plate is turned up toward the side close to the bottom plate along the first direction to form a ninth flanging, and the ninth flanging fits against the top of the second flanging.
[0017] Preferably, the first plate portion is turned up toward the side close to the third plate portion along the second direction to form a tenth flanging, and the tenth flanging abuts against the side of the back plate along the first direction close to the bottom plate;
[0018] The third plate portion is turned up toward the side close to the first plate portion along the second direction to form an eleventh flanging, and the eleventh flanging abuts against the side of the back plate along the first direction close to the bottom plate.
[0019] Preferably, both the first side plate and the second side plate are inserted into the bottom plate.
[0020] Preferably, a groove is provided at the bottom of the bottom plate, a first floor bolt is screwed to the bottom of the groove, and a second floor bolt is screwed to the part of the bottom plate located outside the periphery of the groove.
[0021] Advantages of the present utility model: In the present utility model, the second plate part can be installed on the first plate part or removed from the first plate part according to requirements, and the fourth plate part can be installed on the third plate part or removed from the third plate part according to requirements. Moreover, the present utility model can replace the second plate part and the fourth plate part with different lengths according to actual requirements. Compared with developing a mold for manufacturing corresponding side plates for each requirement, in the present utility model, both the first side plate and the second side plate are split into two plate members. Although the number of types of molds to be developed remains unchanged, the size of each mold is reduced, thereby saving mold development costs. In addition, for different product requirements, the required first plate part and third plate part remain the same, and the difference lies only in whether the second plate part and the fourth plate part need to be installed and the sizes of the second plate part and the fourth plate part. Therefore, for different product requirements, the manufacturer can uniformly produce the first plate part and the third plate part, and at the same time produce the second plate part and the fourth plate part according to needs. Compared with producing large-sized plate members, producing small-sized plate members takes less time, thereby improving production efficiency and facilitating automated mass production. Description of the Drawings
[0022] Figure 1 is a schematic structural view of the integrated stove in the embodiment of the present utility model;
[0023] Figure 2 is a cross-sectional view of the integrated stove in the embodiment of the present utility model;
[0024] Figure 3 is Figure 2 a partial enlarged view at A in
[0025] Figure 4 is Figure 2 a partial enlarged view at B in
[0026] Figure 5 is one of the schematic structural views of the integrated stove main body in the embodiment of the present utility model;
[0027] Figure 6 is another schematic structural view of the integrated stove main body in the embodiment of the present utility model;
[0028] Figure 7 is one of the exploded views of the integrated stove main body and the air outlet seat in the embodiment of the present utility model;
[0029] Figure 8 is Figure 7 The partial enlarged view at position C in
[0030] Figure 9 is the second exploded view of the integrated stove main body and the air outlet base in the embodiment of the present utility model;
[0031] Figure 10 is Figure 9 The partial enlarged view at position D in
[0032] Figure 11 is the third exploded view of the integrated stove main body and the air outlet base in the embodiment of the present utility model;
[0033] Figure 12 is Figure 11 The partial enlarged view at position E in
[0034] Figure 13 is Figure 11 The partial enlarged view at position F in
[0035] Figure 14 is the first exploded view of the first side plate in the embodiment of the present utility model;
[0036] Figure 15 is the second exploded view of the first side plate in the embodiment of the present utility model;
[0037] Figure 16 is the first exploded view of the second side plate in the embodiment of the present utility model;
[0038] Figure 17 is the first exploded view of the second side plate in the embodiment of the present utility model;
[0039] Figure 18 is the structural schematic diagram of the back plate and the flow guide plate in the embodiment of the present utility model;
[0040] Figure 19 is the first exploded view of the back plate, the flow guide plate, the ventilation base, the funnel and the air outlet base in the embodiment of the present utility model;
[0041] Figure 20 is Figure 19 The partial enlarged view at position G in
[0042] Figure 21 is Figure 19 The partial enlarged view at position H in
[0043] Figure 22 is Figure 19 The partial enlarged view at position I in
[0044] Figure 23 is the second exploded view of the back plate, the flow guide plate, the ventilation base, the funnel and the air outlet base in the embodiment of the present utility model;
[0045] Figure 24 is the bottom view of the back panel, flow guide plate, ventilation base, funnel and air outlet base in the embodiment of the present utility model;
[0046] Figure 25 is along Figure 24 the sectional view taken along line J-J in
[0047] Figure 26 is the structural schematic diagram of the exhaust duct in the embodiment of the present utility model;
[0048] Figure 27 is Figure 26 the partial enlarged view at K in
[0049] In the figure:
[0050] 1. Integrated cooking stove main unit; 11. First side plate; 111. First plate part; 1111. First positioning groove; 112. Second plate part; 1121. First positioning plate; 113. Third flanging; 114. Fourth flanging; 115. Tenth flanging; 116. Mounting hole; 117. Second hemming; 12. Second side plate; 121. Third plate part; 1211. Second positioning groove; 122. Fourth plate part; 1221. Second positioning plate; 123. Fifth flanging; 124. Sixth flanging; 125. Eleventh flanging; 13. Bottom plate; 131. First flanging; 1311. Perforation; 132. Second flanging; 133. Avoidance groove; 134. Seventh flanging; 135. Groove; 136. First foot; 137. Second foot; 138. Oil receiving box; 14. Back panel; 141. Eighth flanging; 142. Ninth flanging; 143. First plate member; 1431. Positioning sunk table; 1432. Third hemming; 144. Second plate member; 145. First opening; 146. Second opening; 147. First chamber; 148. Second chamber; 15. Flow guide plate; 151. Through hole; 152. First hemming; 16. Ventilation base; 161. Third plate member; 162. Fourth plate member; 163. Fifth plate member; 164. Sixth plate member; 17. Funnel;
[0051] 2. Integrated cooking stove exhaust system; 21. First cabinet; 211. Second cabinet body; 212. Third cabinet door; 213. Partition; 22. Fan assembly; 23. Exhaust duct; 231. First boss; 232. Second boss; 233. First joint; 234. Vent pipe part; 235. Second joint; 24. Second cabinet; 241. First cabinet body; 242. Second cabinet door; 25. Air outlet base; 251. First pressing part; 252. First sealing ring; 26. Air inlet base; 261. Second pressing part; 262. Second sealing ring; 271. First slot; 281. Second plug board;
[0052] 3. Machine head; 31. Air suction port. Detailed implementation manners
[0053] The present utility model will be further described in detail below in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present utility model, rather than limiting the present utility model. In addition, it should be noted that for the convenience of description, only the parts related to the present utility model rather than all the structures are shown in the drawings.
[0054] In the description of the present utility model, unless otherwise clearly defined and limited, the terms "connected", "connected", and "fixed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0055] In the present utility model, unless otherwise clearly defined and limited, the first feature being "above" or "below" the second feature may include the direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through other features therebetween. Moreover, the first feature being "above", "above", and "on" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "below", and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is lower than that of the second feature.
[0056] In the description of this embodiment, the orientation or positional relationships such as "above", "below", "left", and "right" are based on the orientation or positional relationships shown in the drawings. It is only for the convenience of description and simplifying the operation, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meanings.
[0057] Please refer to Figures 1 to 27 , this embodiment provides an integrated range hood, which includes an integrated range hood main body 1, a cooking range, and an integrated range hood exhaust system 2. The cooking range is integrated on the integrated range hood main body 1, and the integrated range hood exhaust system 2 is configured to discharge the cooking fumes generated during the cooking process of the cooking range to the outside of the room.
[0058] In this embodiment, the integrated range hood exhaust system 2 includes a first cabinet 21, a fan assembly 22, and an exhaust duct 23. The first cabinet 21 is arranged at an interval from the integrated range hood main body 1. An air inlet (not shown in the figure) and an air outlet (not shown in the figure) are provided on the first cabinet 21. The fan assembly 22 is installed inside the first cabinet 21. The air inlet of the fan assembly 22 is communicated with the air inlet, and the air outlet of the fan assembly 22 is communicated with the air outlet. One end of the exhaust duct 23 is communicated with the space above the cooking range, and the other end of the exhaust duct 23 is communicated with the air inlet.
[0059] Based on the above, in this embodiment, the fan assembly 22 is placed outside the integrated range hood main body 1 and away from the integrated range hood main body 1. On the one hand, there is no need to arrange the fan assembly 22 inside the integrated range hood main body 1, which is convenient for the multi-functional integration of the integrated range hood. On the other hand, since the fan assembly 22 is far away from the integrated range hood main body 1, during the cooking process, the user is far away from the noise source, so that the noise generated by the fan assembly 22 can be avoided from affecting the user experience.
[0060] It can be understood that the fan assembly 22 in this embodiment is a centrifugal fan. Of course, in other alternative embodiments, the fan assembly 22 can also be an axial flow fan or an inclined flow fan, etc. There is no specific limitation in this embodiment. In addition, since the specific structure and working principle of the fan assembly 22 are both prior arts, they will not be elaborated in this embodiment.
[0061] Preferably, the integrated range hood exhaust system 2 further includes a second cabinet 24. The second cabinet 24 is installed between the integrated range hood main body 1 and the first cabinet 21. The exhaust duct 23 is installed inside the second cabinet 24, so as to avoid affecting the user's perception due to the exposure of the exhaust duct 23. In addition, the second cabinet 24 can also protect the exhaust duct 23, so as to avoid the exhaust duct 23 being damaged by external objects due to exposure.
[0062] Further, the integrated range hood exhaust system 2 further includes a ventilation pipeline. The ventilation pipeline is arranged on the integrated range hood main body 1. One end of the ventilation pipeline is communicated with the space above the cooking range, and the other end of the ventilation pipeline is communicated with the exhaust duct 23, so as to suck away the generated cooking fumes and discharge them outdoors during the cooking process. Based on the above, in this embodiment, only the ventilation pipeline of the integrated range hood exhaust system 2 is arranged inside the integrated range hood main body 1, which is convenient for the multi-functional integration of the integrated range hood.
[0063] In this embodiment, the integrated range hood main unit 1 includes a first cabinet door (not shown in the figure), a first side plate 11, and a second side plate 12. The first side plate 11 and the second side plate 12 are arranged opposite to each other in the second direction. The cooking range is installed on the tops of the first side plate 11 and the second side plate 12. The first cabinet door is installed on one side of the first side plate 11 and the second side plate 12 in the first direction, and the first direction is perpendicular to the second direction. The ventilation pipeline is arranged between the first side plate 11 and the second side plate 12 and on the other side of the first side plate 11 and the second side plate 12 in the first direction, so as to provide sufficient space for installing other functional modules such as a disinfection cabinet and a storage cabinet, and further facilitate the multi-functional integration of the integrated range hood.
[0064] It can be understood that the above-mentioned first cabinet door is the cabinet door of the disinfection cabinet, the storage cabinet and other cabinets.
[0065] Further, in this embodiment, the first side plate 11 includes a first plate portion 111, and a second plate portion 112 is detachably installed on one side of the first plate portion 111 in the first direction. The second side plate 12 includes a third plate portion 121, and a fourth plate portion 122 is detachably installed on one side of the third plate portion 121 in the first direction. The first plate portion 111 and the third plate portion 121 are arranged opposite to each other in the second direction, and the second direction is perpendicular to the first direction. The third plate portion 121 and the fourth plate portion 122 are arranged opposite to each other in the second direction. The cooking range of the integrated range hood is installed on the tops of the first side plate 11 and the second side plate 12.
[0066] Based on the above, the first side plate 11 and the second side plate 12 form a group of side plates. Both the first side plate 11 and the second side plate 12 are of a split structure, so that the lengths of the first side plate 11 and the second side plate 12 in the first direction can be adaptively selected according to requirements, and further the space depth between the first side plate 11 and the second side plate 12 can be adaptively adjusted.
[0067] In this embodiment, the second plate portion 112 can be installed on the first plate portion 111 or removed from the first plate portion 111 according to requirements, and the fourth plate portion 122 can be installed on the third plate portion 121 or removed from the third plate portion 121 according to requirements. Moreover, in this embodiment, the second plate portion 112 and the fourth plate portion 122 with different lengths can be replaced according to actual requirements. Compared with developing a mold for manufacturing the corresponding side plate for each requirement, in this embodiment, both the first side plate 11 and the second side plate 12 are split into two plate members. Although the number of types of molds to be developed remains the same, the size of each mold is reduced, thereby saving the mold development cost. In addition, for different product requirements, the required first plate portion 111 and third plate portion 121 remain the same, and the difference lies only in whether the second plate portion 112 and the fourth plate portion 122 need to be installed and the sizes of the second plate portion 112 and the fourth plate portion 122. Therefore, for different product requirements, the manufacturer can uniformly produce the first plate portion 111 and the third plate portion 121, and simultaneously produce the second plate portion 112 and the fourth plate portion 122 according to needs. Compared with producing large-sized plate members, producing small-sized plate members takes less time, thereby improving production efficiency and facilitating automated mass production.
[0068] Specifically, the first plate portion 111 and the third plate portion 121 are basic plate members, the second plate portion 112 is an additional plate member attached to the first plate portion 111, and the fourth plate portion 122 is an additional plate member attached to the third plate portion 121. Since the first side plate 11 and the second side plate 12 have the same principle, only the first side plate 11 is described in this embodiment. Specifically, five product requirements are taken as examples in this embodiment, that is, the manufacturer needs to produce five sizes of the first side plate 11. Based on the content described above, the manufacturer needs to develop a first mold for producing the first plate portion 111 and four second molds for producing the second plate portion 112. The four second molds are respectively used to produce the second plate portion 112 of four sizes, so that five sizes of the first side plate 11 can be obtained. One of the first side plates 11 only includes the first plate portion 111, and the other four first side plates 11 are the first plate portion 111 paired with the second plate portion 112 of different sizes. Although the number of types of molds to be developed remains the same, the size of each mold is reduced, thereby saving the mold development cost.
[0069] In addition, for mass production, the manufacturer uniformly produces the first plate portion 111 and produces the second plate portion 112 of different sizes according to actual requirements. The production quantities of the second plate portion 112 of different sizes are specifically determined according to actual requirements. Compared with producing large-sized plate members, producing small-sized plate members takes less time, thereby improving production efficiency and facilitating automated mass production.
[0070] Preferably, a plurality of first positioning grooves 1111 are provided on one of the first plate portion 111 and the second plate portion 112, and a plurality of first positioning plates 1121 are provided on the other of the first plate portion 111 and the second plate portion 112. The plurality of first positioning plates 1121 can be respectively clamped into the plurality of first positioning grooves 1111, so that the second plate portion 112 can be assembled to one side of the first plate portion 111 along the first direction or the second plate portion 112 can be removed from the first plate portion 111. The first positioning grooves 1111 and the first positioning plates 1121 can cooperate together to position the second plate portion 112.
[0071] Correspondingly, a plurality of second positioning grooves 1211 are provided on one of the third plate portion 121 and the fourth plate portion 122, and a plurality of second positioning plates 1221 are provided on the other of the third plate portion 121 and the fourth plate portion 122. The plurality of second positioning plates 1221 can be respectively clamped into the plurality of second positioning grooves 1211, so that the fourth plate portion 122 can be assembled to one side of the third plate portion 121 along the first direction or the fourth plate portion 122 can be removed from the third plate portion 121. The second positioning grooves 1211 and the second positioning plates 1221 can cooperate together to position the fourth plate portion 122.
[0072] It can be understood that, to ensure that the second plate portion 112 can be stably installed on the first plate portion 111, after the second plate portion 112 is assembled to the first plate portion 111, the second plate portion 112 can be fixed to the first plate portion 111 by means of bolt connection or the like. Correspondingly, to ensure that the fourth plate portion 122 can be stably installed on the third plate portion 121, after the fourth plate portion 122 is assembled to the third plate portion 121, the fourth plate portion 122 can be fixed to the third plate portion 121 by means of bolt connection or the like.
[0073] In addition, the integrated cooking range main body 1 further includes a bottom plate 13. The first side plate 11 abuts against one side of the bottom plate 13 along the second direction, and the second side plate 12 abuts against the other side of the bottom plate 13 along the second direction, so that during the assembly process of the integrated cooking range main body 1, the first side plate 11 and the second side plate 12 are positioned in the second direction.
[0074] Furthermore, both the first side plate 11 and the second side plate 12 are inserted into the bottom plate 13, which facilitates the disassembly and assembly of the first side plate 11 and the second side plate 12, and can also position the first side plate 11 and the second side plate 12 in the first direction.
[0075] Preferably, in this embodiment, the bottom plate 13 is turned up to form a first flanging 131, and the first flanging 131 is turned away from the bottom plate 13 along a first direction to form a second flanging 132. A third flanging 113 and a fourth flanging 114 are provided on the first side plate 11. The third flanging 113 abuts against the side of the first flanging 131 close to the bottom plate 13, and the fourth flanging 114 abuts against the top of the second flanging 132. That is, the third flanging 113 and the fourth flanging 114 cover the inner sides of the first flanging 131 and the second flanging 132. A fifth flanging 123 and a sixth flanging 124 are provided on the second side plate 12. The fifth flanging 123 abuts against the side of the first flanging 131 close to the bottom plate 13, and the sixth flanging 124 abuts against the top of the second flanging 132. That is, the fifth flanging 123 and the sixth flanging 124 also cover the inner sides of the first flanging 131 and the second flanging 132, so that the first side plate 11, the second side plate 12 and the bottom plate 13 form an integral body, thereby improving the rigidity of the integrated cooking stove main body 1 to prevent the frame of the integrated cooking stove main body 1 from deforming during movement and prevent the bottom plate 13 from deforming due to the pressure of the functional modules of the integrated cooking stove installed on its top.
[0076] Moreover, based on the above, an avoidance groove 133 is formed on the outer sides of the first flanging 131 and the second flanging 132, so that pipes such as gas pipes can be arranged when the integrated cooking stove is installed against the wall.
[0077] Further, a perforation 1311 is formed on the first flanging 131, and the perforation 1311 is configured to pass a wire for electrically connecting the integrated cooking stove to an external power supply. That is, a perforation 1311 for wire routing is formed on the first flanging 131, so that there is no need to additionally install a power connection box structure on the integrated cooking stove, reducing costs.
[0078] Based on the foregoing, the integrated cooking stove main body 1 further includes a back plate 14. The back plate 14 abuts between the first plate portion 111 and the third plate portion 121 and is placed on the second flanging 132. A ventilation pipeline is formed inside the back plate 14. Based on the above, one end of the ventilation pipeline communicates with the space above the cooking range, and the other end of the ventilation pipeline communicates with the fan assembly 22 of the integrated cooking stove, so as to draw away and discharge the generated cooking fumes outdoors during cooking. In this embodiment, the ventilation pipeline is integrated on the back plate 14. On the one hand, it saves occupied space, which is conducive to the multi-functional integration of the integrated cooking stove. On the other hand, it is also convenient for disassembly and maintenance.
[0079] Further, the side of the second flanging 132 away from the first flanging 131 is folded upward to form a seventh flanging 134. Both sides of the back plate 14 along the second direction are folded to form an eighth flanging 141. The eighth flanging 141 is located on the side of the back plate 14 away from the bottom plate 13 along the first direction. The seventh flanging 134 abuts between the two eighth flangings 141. The bottom of the back plate 14 is folded toward the side close to the bottom plate 13 along the first direction to form a ninth flanging 142. The ninth flanging 142 fits against the top of the second flanging 132, so that the back plate 14 and the bottom plate 13 form an integral body, thereby further improving the rigidity of the integrated cooking stove main body 1.
[0080] In addition, the first plate portion 111 is folded toward the side close to the third plate portion 121 along the second direction to form a tenth flanging 115. The tenth flanging 115 abuts against the side of the back plate 14 close to the bottom plate 13 along the first direction. The third plate portion 121 is folded toward the side close to the first plate portion 111 along the second direction to form an eleventh flanging 125. The eleventh flanging 125 abuts against the side of the back plate 14 close to the bottom plate 13 along the first direction, so that the first side plate 11, the second side plate 12, the back plate 14 and the bottom plate 13 form an integral body, thereby further improving the rigidity of the integrated cooking stove main body 1.
[0081] Preferably, a groove 135 is provided at the bottom of the bottom plate 13. A first floor foot 136 is screwed to the bottom of the groove 135. A second floor foot 137 is screwed to the portion of the bottom plate 13 outside the groove 135. That is, the screwing position of the first floor foot 136 and the bottom plate 13 is higher than the screwing position of the second floor foot 137 and the bottom plate 13. Both the first floor foot 136 and the second floor foot 137 can be used to adjust the height of the integrated cooking stove main body 1, so that the height adjustment range of the integrated cooking stove main body 1 can be increased, thereby meeting the needs of different users.
[0082] In addition, based on the content described above, in this embodiment, the integrated stove main body 1 further includes a back plate 14. A ventilation pipeline is formed inside the back plate 14. Specifically, the back plate 14 is hollow and includes a first plate member 143 and a second plate member 144 that are oppositely arranged in a first direction. The first direction is perpendicular to the second direction. A first opening 145 is formed at the top of the back plate 14, and a second opening 146 is formed at one side of the back plate 14 along the second direction. The first opening 145 communicates with the space above the cooking stove, and the second opening 146 communicates with the fan assembly 22 of the integrated stove. The integrated stove main body 1 further includes a diversion plate 15. The diversion plate 15 abuts between the first plate member 143 and the second plate member 144 and divides the internal cavity of the back plate 14 into a first chamber 147 and a second chamber 148. Both the first opening 145 and the second opening 146 communicate with the first chamber 147. The diversion plate 15, together with the first plate member 143 and the second plate member 144, jointly encloses a ventilation pipeline. The ventilation pipeline is located on the side of the diversion plate 15 close to the first opening 145 and the second opening 146. In this embodiment, a plurality of through holes 151 are uniformly distributed on the diversion plate 15, thereby forming a microporous noise reduction structure on the diversion plate 15.
[0083] Based on the above, in this embodiment, the cooking fume can enter the first chamber 147 through the first opening 145 and flow out through the second opening 146. The cooking fume flowing out from the second opening 146 can flow to the fan assembly 22 and then be discharged outdoors. The diversion plate 15 is used to divert the cooking fume entering the first chamber 147 through the first opening 145. During the flow of the cooking fume, the cooking fume will impact the diversion plate 15 that encloses the ventilation pipeline. Since a microporous noise reduction structure is formed on the diversion plate 15, the noise generated by the cooking fume impacting the diversion plate 15 is relatively small, thus avoiding affecting the user experience.
[0084] Furthermore, the diversion plate 15 is arc-shaped and bends toward the side away from the first opening 145 and the second opening 146. Since the cross-section of the diversion plate 15 is a curved surface, the flow resistance of the surface of the diversion plate 15 in contact with the cooking fume can be reduced, thereby improving the flow efficiency. That is, in this embodiment, the cooking fume generated during the cooking process can be quickly discharged outdoors, further avoiding affecting the user experience.
[0085] Furthermore, the second plate member 144 is located inside the integrated stove main body 1. A positioning sunk platform 1431 is provided on the side of the first plate member 143 close to the second plate member 144. A first folded edge 152 is provided on one side of the diversion plate 15 along the first direction. The first folded edge 152 sinks into the positioning sunk platform 1431 and fits with the bottom wall of the positioning sunk platform 1431, and the side of the diversion plate 15 away from the first opening 145 and the second opening 146 abuts against the side wall of the positioning sunk platform 1431, thereby being able to position the diversion plate 15, facilitating the assembly of the diversion plate 15 and conveniently fixing the diversion plate 15.
[0086] In addition, an air outlet seat 25 is installed on the back panel 14, one end of the air outlet seat 25 is connected to the second opening 146, and the other end of the air outlet seat 25 is inserted into the first side panel 11 and connected to the fan assembly 22, so that the fan assembly 22 is arranged outside the integrated stove host 1 to avoid the noise generated by the fan assembly 22 affecting the user's experience.
[0087] Based on the above content, a mounting hole 116 is provided on the first side panel 11, and the first side panel 11 is mounted on the outer periphery of the air outlet seat 25 through the mounting hole 116. The hole wall of the mounting hole 116 is folded along the second direction toward the side close to the back panel 14 to form a second folded edge 117. The second folded edge 117 extends into the air outlet seat 25 and fits with the inner wall of the air outlet seat 25, thereby preventing the oil attached to the air outlet seat 25 from leaking from the connection between the first side panel 11 and the mounting seat.
[0088] Since the side of the first plate 143 away from the second plate 144 is the rear wall of the integrated stove main unit 1, and the integrated stove main unit 1 is generally placed against the wall, that is, the side of the first plate 143 away from the second plate 144 is generally placed against the wall, therefore, in order to facilitate the arrangement of the exhaust duct 23 connected between the air outlet seat 25 and the fan assembly 22, in this embodiment, the distance between the second opening 146 and the first plate 143 in the second direction is smaller than the distance between the mounting hole 116 and the first plate 143 in the second direction, so that the side of the air outlet seat 25 away from the back panel 14 is offset relative to the side of the air outlet seat 25 close to the back panel 14 toward the side away from the first plate 143, thereby facilitating the arrangement of the exhaust duct 23.
[0089] In addition, the integrated stove further includes a machine head 3, which is installed on the top of the back plate 14. An air suction port 31 is provided on the machine head 3. The air suction port 31 is located above the cooking range, and the first opening 145 is communicated with the air suction port 31. Specifically, the integrated stove main body 1 further includes a ventilation base 16, which is installed on the top of the back plate 14. The machine head 3 of the integrated stove is inserted into the top of the ventilation base 16. One end of the ventilation base 16 is communicated with the first opening 145, and the other end of the ventilation base 16 is communicated with the air suction port 31 provided on the machine head 3, so that the first opening 145 is communicated with the space above the cooking range. The ventilation base 16 includes a third plate member 161 and a fourth plate member 162 arranged oppositely along the first direction. Both the third plate member 161 and the fourth plate member 162 are abutted between the first side plate 11 and the second side plate 12. The fourth plate member 162 is located on the side of the third plate member 161 away from the first plate member 143. The top of the first plate member 143 is folded downwards to form a third folded edge 1432, and the third folded edge 1432 covers the side of the third plate member 161 away from the first plate member 143 along the first direction, so that the back plate 14 and the ventilation base 16 form an integral body, thereby improving the rigidity of the integrated stove main body 1 and at the same time preventing oil fume from leaking between the back plate 14 and the ventilation base 16.
[0090] Furthermore, the ventilation base 16 further includes a fifth plate member 163 and a sixth plate member 164 arranged oppositely along the second direction. The fifth plate member 163 and the sixth plate member 164 are respectively fixedly connected to the first side plate 11 and the second side plate 12. Both the fifth plate member 163 and the sixth plate member 164 are abutted between the third plate member 161 and the fourth plate member 162, so as to fix the ventilation base 16 between the first side plate 11 and the second side plate 12.
[0091] It can be understood that in this embodiment, the third plate member 161, the fourth plate member 162, the fifth plate member 163 and the sixth plate member 164 are fixed together by welding. Since the second direction affects the dimensional accuracy of the integrated stove main body 1, and in this embodiment, both the fifth plate member 163 and the sixth plate member 164 are abutted between the third plate member 161 and the third plate member 161, that is, the welding method of long side wrapping short side is adopted in this embodiment, so as to ensure the stability of the dimensional chain of the integrated stove main body 1 in the first direction.
[0092] Preferably, a funnel 17 is installed at the bottom of the back plate 14. Based on the above, the integrated stove main body 1 further includes a bottom plate 13. The first side plate 11, the second side plate 12 and the back plate 14 are all installed on the bottom plate 13. An oil receiving box 138 is provided on the bottom plate 13. The oil receiving box 138 is installed below the funnel 17. The oil liquid adhering to the flow guide plate 15, the first side plate 11 and the second side plate 12 can drip into the oil receiving box 138 through the funnel 17, so as to collect the oil liquid.
[0093] Based on the content mentioned above, the integrated range hood exhaust system 2 in this embodiment includes a ventilation pipeline, an air outlet base 25, an exhaust pipeline 23, and a fan assembly 22. In addition, the integrated range hood exhaust system 2 further includes an air inlet base 26, a first positioning structure, and a second positioning structure. The ventilation pipeline and the air outlet base 25 are both arranged on the integrated range hood main body 1. One end of the ventilation pipeline is communicated with the space above the cooking range, and the other end of the ventilation pipeline is communicated with the air outlet base 25. The upstream end of the exhaust pipeline 23 is communicated with the end of the air outlet base 25 away from the ventilation pipeline, and the downstream end of the exhaust pipeline 23 is communicated with the air inlet base 26. The fan assembly 22 is communicated with the end of the air inlet base 26 away from the exhaust pipeline 23. The fan assembly 22 is configured to discharge the lampblack conveyed along the exhaust pipeline 23 to the outside. The first positioning structure is configured to determine the relative position between the exhaust pipeline 23 and the air outlet base 25, and the second positioning structure is configured to determine the relative position between the exhaust pipeline 23 and the air inlet base 26.
[0094] Based on the above, in this embodiment, the first positioning structure can ensure that when the staff docks the exhaust pipeline 23 with the air outlet base 25, the exhaust pipeline 23 is aligned with the air outlet base 25, and the second positioning structure can ensure that when the staff docks the exhaust pipeline 23 with the air inlet base 26, the exhaust pipeline 23 is aligned with the air inlet base 26, thereby avoiding the leakage at the connection position between the exhaust pipeline 23 and the air outlet base 25 and / or between the exhaust pipeline 23 and the air inlet base 26 due to misalignment after docking.
[0095] Preferably, one of the end of the exhaust pipeline 23 and the air outlet base 25 is provided with a first slot 271, and the other of the end of the exhaust pipeline 23 and the air outlet base 25 is provided with a first plug board (not shown in the figure). One end of the exhaust pipeline 23 is inserted into the air outlet base 25, and the first plug board is inserted into the first slot 271. The first plug board and the first slot 271 form the first positioning structure, so as to be able to position the exhaust pipeline 23 when the exhaust pipeline 23 is inserted into the air outlet base 25, and further ensure that the exhaust pipeline 23 is aligned with the air outlet base 25.
[0096] In addition, one of the other end of the exhaust pipeline 23 and the air inlet base 26 is provided with a second slot (not shown in the figure), and the other of the other end of the exhaust pipeline 23 and the air inlet base 26 is provided with a second plug board 281. The other end of the exhaust pipeline 23 is inserted into the air inlet base 26, and the second plug board 281 is inserted into the second slot. The second plug board 281 and the second slot form the second positioning structure, so as to be able to position the exhaust pipeline 23 when the exhaust pipeline 23 is inserted into the air inlet base 26, and further ensure that the exhaust pipeline 23 is aligned with the air inlet base 26.
[0097] Further, at least two first slots 271 are provided at one end of the exhaust duct 23 and the air outlet seat 25, and at least two first plug plates are provided at the other end of the exhaust duct 23 and the air outlet seat 25. The at least two first plug plates are respectively inserted into the at least two first slots 271, so as to ensure more effective positioning of the exhaust duct 23 when the exhaust duct 23 is inserted into the air outlet seat 25.
[0098] In addition, at least two second slots are provided at one end of the exhaust duct 23 and the air inlet seat 26, and at least two second plug plates 281 are provided at the other end of the exhaust duct 23 and the air inlet seat 26. The at least two second plug plates 281 are respectively inserted into the at least two second slots, so as to ensure more effective positioning of the exhaust duct 23 when the exhaust duct 23 is inserted into the air inlet seat 26.
[0099] In this embodiment, a first boss 231 and a second boss 232 are respectively provided at both ends of the exhaust duct 23. The end wall of the air outlet seat 25 abuts against the first boss 231. Specifically, in this embodiment, the air outlet seat 25 abuts against the first boss 231 through the first side plate 11, so as to limit the exhaust duct 23 when the exhaust duct 23 is inserted into the air outlet seat 25, thereby avoiding damage to the air outlet seat 25 and / or the exhaust duct 23 caused by excessive insertion of the exhaust duct 23. The end wall of the air inlet seat 26 abuts against the second boss 232, so as to limit the exhaust duct 23 when the exhaust duct 23 is inserted into the air inlet seat 26, thereby avoiding damage to the air inlet seat 26 and / or the exhaust duct 23 caused by excessive insertion of the exhaust duct 23.
[0100] Based on the foregoing, the air inlet seat 26 is installed on the first cabinet 21. An air inlet is provided at one end of the air inlet seat 26, and the other end of the air inlet seat 26 is communicated with the air inlet. The exhaust duct 23 is connected in series with the air inlet seat 26, and the connection between the exhaust duct 23 and the air inlet seat 26 is sealed. In addition, the exhaust duct 23 is also connected in series with the air outlet seat 25. In other words, the exhaust duct 23 is connected in series between the air outlet seat 25 and the air inlet seat 26, and the connection between the exhaust duct 23 and the air outlet seat 25 is also sealed, thereby avoiding oil fume leakage.
[0101] In this embodiment, the outer peripheries of the joints between the air outlet seat 25 and the first boss 231 and between the air inlet seat 26 and the second boss 232 are both coated with tapes (not shown in the figure), so as to seal the joints between the air outlet seat 25 and the first boss 231 and between the air inlet seat 26 and the second boss 232, thereby avoiding oil fume leakage from the joints between the air outlet seat 25 and the first boss 231 and / or between the air inlet seat 26 and the second boss 232.
[0102] Further, a first pressing portion 251 and a second pressing portion 261 are respectively provided in the air outlet seat 25 and the air inlet seat 26. The first pressing portion 251 is annular and extends along the circumferential direction of the air outlet seat 25, and the second pressing portion 261 is annular and extends along the circumferential direction of the air inlet seat 26. Two ends of the exhaust duct 23 are respectively pressed against the first pressing portion 251 and the second pressing portion 261, and a sealed setting is adopted between the exhaust duct 23 and the first pressing portion 251 and between the exhaust duct 23 and the second pressing portion 261, thereby further avoiding oil fume leakage.
[0103] Preferably, in this embodiment, a first sealing ring 252 is defined by pressing between the exhaust duct 23 and the first pressing portion 251, and a second sealing ring 262 is defined by pressing between the exhaust duct 23 and the second pressing portion 261, so that a sealed setting is adopted between the exhaust duct 23 and the first pressing portion 251 and between the exhaust duct 23 and the second pressing portion 261.
[0104] Further, the exhaust duct 23 includes a first joint 233, a ventilation pipe portion 234, and a second joint 235. Two ends of the ventilation pipe portion 234 are respectively inserted into the first joint 233 and the second joint 235, and the first joint 233 and the second joint 235 are respectively communicated with the air outlet seat 25 and the air inlet seat 26, thereby facilitating disassembly and maintenance of the exhaust duct 23.
[0105] Based on the above, the outer peripheries of the joints between the first joint 233 and the ventilation pipe portion 234 and between the second joint 235 and the ventilation pipe portion 234 are both coated with tapes (not shown in the figure), thereby sealing the joints between the first joint 233 and the ventilation pipe portion 234 and between the second joint 235 and the ventilation pipe portion 234, and further avoiding oil fume leakage from the joints between the first joint 233 and the ventilation pipe portion 234 and / or between the second joint 235 and the ventilation pipe portion 234.
[0106] Based on the content described above, the exhaust duct 23 is installed in the second cabinet 24. In this embodiment, the second cabinet 24 includes a first cabinet body 241 and a second cabinet door 242. The exhaust duct 23 is installed in the first cabinet body 241 and is located on the side away from the second cabinet door 242, thereby avoiding affecting the user's storage of items in the second cabinet 24.
[0107] Further, the first cabinet 21 includes a second cabinet body 211 and a third cabinet door 212. A partition 213 is installed inside the second cabinet body 211. The partition 213 is disposed opposite to the third cabinet door 212 and divides the inner cavity of the second cabinet body 211 into an outer cavity and an inner cavity. The outer cavity is located on the side of the partition 213 close to the third cabinet door 212, and the inner cavity is located on the side of the partition 213 away from the third cabinet door 212. The fan assembly 22 is installed in the inner cavity. The partition 213 can effectively isolate, absorb, and attenuate the transmission of sound waves to reduce the noise transmitted to the external environment, thereby further avoiding affecting the user experience.
[0108] Further, a sound insulation layer (not shown in the figure) is provided on the surface of the partition 213. The sound insulation layer is made of sound-absorbing material, so as to further effectively isolate, absorb, and attenuate the transmission of sound waves to further reduce the noise transmitted to the external environment, thereby further avoiding affecting the user experience.
[0109] In addition, based on the content described above, in this embodiment, the machine head 3 is plugged into the integrated cooking stove main body 1. Specifically, the machine head 3 is plugged into the ventilation base 16, which is convenient for disassembly and maintenance. A suction port 31 is provided on the machine head 3. The suction port 31 is located above the cooking range and is communicated with the exhaust duct 23 through a first opening 145.
[0110] Obviously, the above embodiments of the present invention are only examples for clearly explaining the present invention, and are not intended to limit the implementation manners of the present invention. For those of ordinary skill in the art, various obvious changes, re-adjustments, and substitutions can be made without departing from the protection scope of the present invention. It is not necessary and impossible to enumerate all the implementation manners here. Any modifications, equivalent substitutions, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the claims of the present invention.
Claims
1. Integrated stove main unit, characterized in that, Comprising: A first side plate (11), including a first plate portion (111), and a second plate portion (112) is detachably mounted on one side of the first plate portion (111) along a first direction; and A second side plate (12), including a third plate portion (121), and a fourth plate portion (122) is detachably mounted on one side of the third plate portion (121) along the first direction. The first plate portion (111) and the third plate portion (121) are disposed opposite to each other along a second direction, the second direction being perpendicular to the first direction. The third plate portion (121) and the fourth plate portion (122) are disposed opposite to each other along the second direction. The cooking top of the integrated stove is mounted on the tops of the first side plate (11) and the second side plate (12).
2. The integrated stove main unit according to claim 1, characterized in that, A plurality of first positioning grooves (1111) are provided on one of the first plate portion (111) and the second plate portion (112), and a plurality of first positioning plates (1121) are provided on the other of the first plate portion (111) and the second plate portion (112). The plurality of first positioning plates (1121) can be respectively clamped into the plurality of first positioning grooves (1111); A plurality of second positioning grooves (1211) are provided on one of the third plate portion (121) and the fourth plate portion (122), and a plurality of second positioning plates (1221) are provided on the other of the third plate portion (121) and the fourth plate portion (122). The plurality of second positioning plates (1221) can be respectively clamped into the plurality of second positioning grooves (1211).
3. The integrated stove main unit according to claim 1, wherein The integrated stove main body further includes a bottom plate (13). The first side plate (11) abuts against one side of the bottom plate (13) along the second direction, and the second side plate (12) abuts against the other side of the bottom plate (13) along the second direction.
4. The integrated stove main unit according to claim 3, characterized in that, The bottom plate (13) is turned up to form a first flanging (131), and the first flanging (131) is turned up towards one side away from the bottom plate (13) along the first direction to form a second flanging (132). A third flanging (113) and a fourth flanging (114) are provided on the first side plate (11). The third flanging (113) abuts against the side of the first flanging (131) close to the bottom plate (13), and the fourth flanging (114) abuts against the top of the second flanging (132). A fifth flanging (123) and a sixth flanging (124) are provided on the second side plate (12). The fifth flanging (123) abuts against the side of the first flanging (131) close to the bottom plate (13), and the sixth flanging (124) abuts against the top of the second flanging (132).
5. The integrated stove main body according to claim 4, characterized in that, A perforation (1311) is formed on the first flanging (131), and the perforation (1311) is configured to pass a wire for electrically connecting the integrated stove to an external power source.
6. The integrated stove main unit according to claim 4, characterized in that, The integrated stove main body further includes a back plate (14), the back plate (14) abuts between the first plate portion (111) and the third plate portion (121), and is placed on the second flanging (132). A ventilation pipeline is formed inside the back plate (14). One end of the ventilation pipeline communicates with the space above the stove top, and the other end of the ventilation pipeline communicates with the fan assembly (22) of the integrated stove.
7. The integrated cooking range main body according to claim 6, wherein One side of the second flanging (132) away from the first flanging (131) is folded upward to form a seventh flanging (134). Both sides of the back plate (14) along the second direction are folded to form eighth flangings (141). The eighth flangings (141) are located on the side of the back plate (14) away from the bottom plate (13) along the first direction. The seventh flanging (134) abuts between the two eighth flangings (141). The bottom of the back plate (14) is folded toward the side close to the bottom plate (13) along the first direction to form a ninth flanging (142), and the ninth flanging (142) fits on the top of the second flanging (132).
8. The integrated range hood main body according to claim 7, characterized in that, The first plate portion (111) is folded toward the side close to the third plate portion (121) along the second direction to form a tenth flanging (115), and the tenth flanging (115) abuts on the side of the back plate (14) close to the bottom plate (13) along the first direction; The third plate portion (121) is folded toward the side close to the first plate portion (111) along the second direction to form an eleventh flanging (125), and the eleventh flanging (125) abuts on the side of the back plate (14) close to the bottom plate (13) along the first direction.
9. The integrated stove main unit according to claim 3, wherein, Both the first side plate (11) and the second side plate (12) are inserted into the bottom plate (13).
10. The integrated stove main unit according to claim 3, characterized in that, A groove (135) is provided at the bottom of the bottom plate (13). A first floor foot (136) is screwed to the bottom of the groove (135), and a second floor foot (137) is screwed to the portion of the bottom plate (13) outside the groove (135).