Smoke gathering assembly and smoke stove all-in-one machine

By designing a rotatable connected smoke-collapse component and telescopic structure, the problem that the traditional smoke-collapse structure cannot effectively prevent oil smoke from escaping and occupying space is solved, and a better smoking effect and user experience is achieved.

CN223204423UActive Publication Date: 2025-08-08ZHEJIANG SUPOR KITCHEN & BATHROOM APPLIANCE CO LTD
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Patent Information

Application Number
CN202422449335.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-08
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

The smoke-collapse structure of traditional range hoods cannot effectively prevent the smoke from escaping from above or on the side, and it occupies a large countertop space, affecting the cooking space and user experience.

Method used

A smoke-collapse component is designed, including a mounting body, a top smoke blocker and a side smoke blocker. The side smoke blocker is rotatably connected, and the size of the smoke-collapse cavity is accurately adjusted through the drive part, and equipped with a telescopic structure to save space. It is used in combination with a range hood to improve the smoking effect.

Benefits of technology

Effectively prevent the fume from dissipating, improve the smoking effect of the range hood, reduce the diffusion of the fume, save counter space, and improve user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The smoke gathering assembly comprises an installation body, a top smoke blocking piece and two side smoke blocking pieces, the top smoke blocking piece is connected to the top of the installation body, and a smoke gathering cavity is defined by the two side smoke blocking pieces and the top smoke blocking piece; the side smoke blocking piece is rotationally connected with the installation body and can rotate around the first axis relative to the installation body at least between a first angle position and a second angle position. According to the smoke gathering assembly, the side smoke blocking piece is rotationally connected with the mounting body, when the smoke gathering assembly is used, the side smoke blocking piece can be rotated to the needed angle, the expected smoke gathering cavity size is obtained, and therefore the expected smoke gathering effect is achieved, when the smoke gathering assembly is not used, the side smoke blocking piece can be rotationally stored to be parallel to the mounting body, and the space of a table top is saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of kitchenware, in particular to a smoke collecting component and a smoke and stove integrated machine. Background Art

[0002] As people's quality of life improves, their expectations for kitchen cooking environments are also increasing. Range hoods, installed above stoves, draw cooking fumes into the appliance, reducing their spread indoors and thus minimizing their harmful effects on the human body. This has made range hoods an essential appliance in modern homes. As range hood adoption increases, so too does their effectiveness. The exhaust port of traditional ceiling-mounted range hoods is located far from the source of fumes. This long inhalation path and duration of fumes makes it easy for fumes to escape during cooking. Some range hoods are installed lower, bringing the exhaust port as close as possible to the source of fumes. While this improves the hood's extraction efficiency, it reduces the cooking space, making it easy for pots and pans on the stove to collide with the range hood during cooking. This also obscures the user's view and detracts from the overall appearance of the kitchen.

[0003] Currently, to avoid the problem of reduced cooking space caused by lowering the range hood's installation height, a smoke-collecting structure is installed to improve the range hood's extraction efficiency. However, existing smoke-collecting structures only collect smoke from a portion of the side of the cooker, causing some smoke to escape from above or to the side. Some smoke-collecting structures are also large in size, occupying a large amount of countertop space and reducing the user experience. Utility Model Content

[0004] In order to at least partially solve the problems existing in the prior art, according to one aspect of the present invention, a smoke collecting assembly is provided, and the technical solution is as follows.

[0005] The smoke-collecting assembly includes a mounting body, a top smoke barrier and two side smoke barriers. The top smoke barrier is connected to the top of the mounting body, and the two side smoke barriers and the top smoke barrier form a smoke-collecting chamber. The side smoke barriers are rotatably connected to the mounting body and can be rotated around a first axis relative to the mounting body at least between a first angular position and a second angular position.

[0006] The smoke collecting assembly of the present invention, on the one hand, has side smoke shields that can effectively prevent oil smoke from escaping from both sides. When the rising rate of oil smoke is too fast, the top smoke shield can buffer the oil smoke, thereby preventing the oil smoke from escaping from the top due to the oil smoke rising too fast and not being completely sucked away by the range hood. On the other hand, the side smoke shields are rotatably connected to the mounting body. When the smoke collecting assembly is used, the user can rotate the side smoke shields to a desired angle to obtain the desired smoke collecting cavity size, thereby achieving the desired smoke collecting effect. When the smoke collecting assembly is not in use, the side smoke shields can be rotated and stored to be parallel to the mounting body, saving countertop space. In this way, when used with a range hood, the range hood's suction effect can be improved, the spread of oil smoke in the room can be reduced, thereby reducing the harm of oil smoke to the human body, and thus improving the user experience.

[0007] For example, the side smoke shield is rotatably connected to the mounting body via a first connecting assembly, which includes a first bracket, a driving member, and a first connecting rod. The driving member is fixed to the mounting body via the first bracket, one end of the first connecting rod is connected to the driving member, and the end of the first connecting rod away from the driving member is hinged to the side smoke shield. With this arrangement, the side smoke shield can be precisely rotated relative to the mounting body by controlling the driving member, thereby obtaining the desired size of the smoke collecting chamber and achieving the desired smoke collecting effect. This also avoids the side smoke shield from colliding with the mounting body and causing damage, thus simplifying the operation process and improving the user experience. In addition, fixing the driving member by the first bracket can enhance the firmness of the connection between the driving member and the mounting body.

[0008] For example, a second connecting assembly is connected between the side smoke shield and the mounting body, the second connecting assembly comprising a second bracket and a second connecting rod. The second bracket is spaced apart from the first bracket along the height direction of the mounting body and is fixed to the mounting body. One end of the second connecting rod is connected to the second bracket, and the end of the second connecting rod remote from the second bracket is hingedly connected to the side smoke shield. This arrangement, through the cooperation of the second connecting assembly with the first connecting assembly, can improve the stability of the side smoke shield during rotation. Furthermore, the spacing of the second bracket from the first bracket along the height direction of the mounting body can further improve the stability of the side smoke shield during rotation.

[0009] For example, the side smoke shield includes a first plate and a second plate. The first plate has a first side and a second side opposite the first side. The first side is hinged to the mounting body, and the second plate can be extended or retracted relative to the second side. This arrangement allows the desired smoke-collecting chamber size to be obtained by adjusting the extension or retraction of the second plate relative to the first plate, thereby achieving the desired smoke-collecting effect. It also facilitates storage of the side smoke shield, saving countertop space.

[0010] For example, the first plate has a housing cavity, a guide rail disposed within the housing cavity along the extension and retraction direction of the second plate, and the second plate has a sliding portion slidably connected to the guide rail. This arrangement ensures smooth movement of the second plate along the extension and retraction direction, reduces friction between the first and second plates, and makes extension and retraction of the second plate smoother, thereby reducing wear on the first and second plates.

[0011] For example, the second plate has a distal side that is distal to the mounting body. When the second plate is retracted relative to the second side, the distal side is flush with the second side. When the second plate is extended relative to the second side, at least a portion of the distal side is located outside the accommodating cavity. This arrangement, in which the distal side is flush with the second side, allows the second plate to be completely located within the accommodating cavity. Because the second plate is relatively thin, this prevents partial exposure of the second plate, which could result in damage to the second plate. Furthermore, when the second plate is extended relative to the second side, at least a portion of the distal side is located outside the accommodating cavity, increasing the width of the side smoke barrier and enlarging the smoke-collecting cavity, thereby improving the smoke-collecting effect.

[0012] For example, the smoke-collecting assembly further includes a telescopic member, a telescopic drive member disposed on the mounting body, one end of the telescopic member connected to the telescopic drive member, and the other end of the telescopic member extending through the side wall of the first plate and connected to the second plate. The telescopic drive member drives the second plate to extend or retract via the telescopic member. This arrangement allows the second plate to be precisely extended or retracted relative to the first plate by controlling the telescopic drive member, thereby obtaining a desired smoke-collecting chamber size and achieving a desired smoke-collecting effect. This simplifies the operation process and enhances the user experience.

[0013] For example, the end of the telescopic member away from the telescopic driving member is connected to a slider, and a slide groove is provided on the side wall of the first plate. The end of the telescopic member away from the telescopic driving member is connected to the second plate via the slider, and the slider is defined to slide along the slide groove to drive the second plate to extend or retract. In this arrangement, the telescopic driving member drives the telescopic member to drive the slider to slide relative to the slide groove, so that the second plate extends or retracts relative to the first plate, thereby obtaining a desired smoke-collecting chamber size and achieving a desired smoke-collecting effect. The structure is simple and cost-effective.

[0014] For example, the smoke trap assembly further includes a follower, which is spaced apart from the telescopic member along the height direction of the side smoke barrier. The telescopic member drives the follower to extend or retract the second plate. This arrangement, through the cooperation of the follower and the telescopic member, can improve the stability of the second plate during extension and retraction relative to the first plate. Furthermore, the spaced apart arrangement of the follower and the telescopic member along the height direction of the side smoke barrier can further improve the stability of the second plate during extension and retraction relative to the first plate.

[0015] For example, the side smoke shield has a first width D1, which is 122.8 mm to 372.8 mm. When the first width D1 of the side smoke shield is within this range, the smoke-collecting effect is ensured while preventing the side smoke shield from being too narrow, which could cause oil smoke to escape laterally, and preventing the side smoke shield from being too wide, which could cause the smoke-collecting assembly to be bulky and occupy more kitchen space.

[0016] According to another aspect of the present invention, a range hood and stove combination is provided, comprising a range cooker and the aforementioned smoke collection assembly. The range cooker is rotatable relative to a mounting body about a second axis, and when the range cooker is rotated to a predetermined angle relative to the mounting body, at least a portion of the range cooker is positioned within the smoke collection chamber. This prevents the range cooker from becoming easily contaminated by dust and dirt due to prolonged periods of non-use. Furthermore, since the aforementioned smoke collection assembly has the aforementioned beneficial effects, the range hood and stove combination including the aforementioned smoke collection assembly also has the aforementioned beneficial effects, which will not be further elaborated here.

[0017] For example, there are two stoves, spaced apart along the second axis, and a smoke trap assembly is provided with a partition between the two stoves. The partition divides the smoke trap chamber into a first cavity and a second cavity, and the first cavity and the second cavity correspond one-to-one with the two stoves, respectively. With this arrangement, the partition between the two stoves prevents interference and collision between pots on the two stoves, potentially leading to damage, when both stoves are used for cooking. Furthermore, the one-to-one correspondence between the two stoves and the first cavity and the second cavity facilitates the use of a single stove and prevents oil stains generated when using one stove from contaminating the other stove and the cavity in which it is located.

[0018] For example, the isolation portion has a second width D2, which is ≥ 150 mm. When the second width D2 of the isolation portion is within this range, when two cookers are used simultaneously for cooking, interference or collision between the pots on the two cookers can be avoided, thereby preventing damage.

[0019] The Summary of the Utility Model introduces a series of simplified concepts, which will be further described in detail in the Detailed Description of the Utility Model. This Summary of the Utility Model does not intend to limit the key features and essential technical features of the claimed technical solution, nor does it intend to determine the scope of protection of the claimed technical solution.

[0020] The advantages and features of the present invention are described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The following drawings of the present invention are used as part of the present invention for understanding the present invention. The drawings show the embodiments of the present invention and their descriptions, and are used to explain the principles of the present invention. In the drawings,

[0022] Figure 1 A perspective view of a smoke collecting assembly according to an exemplary embodiment of the present invention;

[0023] Figure 2 A three-dimensional diagram of a portion of a stove and range hood integrated machine according to an exemplary embodiment of the present invention;

[0024] Figure 3 for Figure 2 A perspective view of the first connecting component in FIG.

[0025] Figure 4 for Figure 2 A perspective view of the second connecting component in FIG;

[0026] Figure 5 A three-dimensional diagram of a portion of a stove-and-range integrated machine according to another exemplary embodiment of the present invention;

[0027] Figure 6 for Figure 5 A front view of a portion of the stove and range hood shown;

[0028] Figure 7 for Figure 6 A magnified view of part A in FIG;

[0029] Figure 8 for Figure 5 A partial three-dimensional view of the smoke-collecting assembly is shown.

[0030] The above drawings include the following reference numerals:

[0031] 10. Smoke collecting assembly; 110. Mounting body; 120. Side smoke shield; 121. First plate; 1211. First side; 1212. Second side; 1213. Accommodating cavity; 1214. Guide rail; 1215. Side wall; 1216. Slide; 122. Second plate; 1221. Sliding portion; 1222. Distant side; 123. First surface; 124. Second surface; 130. Top smoke shield; 140. Smoke collecting cavity; 141. First cavity; 142. Second cavity; 1 50. Hinge; 160. First connecting assembly; 161. First bracket; 162. First connecting rod; 1621. First rod; 1622. Second rod; 163. Driving member; 170. Second connecting assembly; 171. Second bracket; 172. Second connecting rod; 1721. Third rod; 1722. Fourth rod; 181. Telescopic member; 182. Telescopic driving member; 183. Slider; 184. Follower; 190. Isolating portion; 20. Cooker; D3. Third width. DETAILED DESCRIPTION

[0032] In the following description, numerous details are provided to facilitate a thorough understanding of the present invention. However, those skilled in the art will appreciate that the following description merely illustrates preferred embodiments of the present invention, and that the present invention may be practiced without one or more of these details. Furthermore, to avoid confusion with the present invention, some technical features well known in the art have not been described in detail.

[0033] To thoroughly understand the embodiments of the present invention, a detailed structure will be provided in the following description. Obviously, the implementation of the embodiments of the present invention is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of the present invention are described in detail below, but in addition to these detailed descriptions, the present invention may also have other embodiments.

[0034] To effectively prevent the escape of cooking fumes and avoid the resulting reduction in cooking space by lowering the installation height of the range hood, an embodiment of the present invention provides a smoke collection assembly. When used with a range hood, this assembly can enhance the range hood's suction efficiency, reduce the spread of fumes indoors, and thus reduce the harm of fumes to the human body, thereby improving the user experience. Furthermore, the smoke collection assembly provided by the present invention can be applied to a range hood-stove combination. The following describes a smoke collection assembly according to an embodiment of the present invention in detail, in conjunction with the accompanying drawings.

[0035] See also Figure 1 、 Figure 2 、 Figure 5 and Figure 6 The smoke collecting assembly 10 may include a mounting body 110, a top smoke barrier 130 and two side smoke barriers 120. The top smoke barrier 130 may be connected to the top of the mounting body 110. The two side smoke barriers 120 may be combined with the top smoke barrier 130 to form a smoke collecting chamber 140. The side smoke barriers 120 may be rotatably connected to the mounting body 110 and may be rotatable around a first axis X relative to the mounting body 110 at least between a first angular position and a second angular position. It should be noted that the first axis X may be located in a vertical plane.

[0036] The smoke collecting assembly 10 of the present invention, on the one hand, the side smoke shields 120 can effectively prevent the oil smoke from escaping from both sides. When the rising rate of the oil smoke is too fast, the top smoke shield 130 can buffer the oil smoke, thereby preventing the oil smoke from escaping from the top due to the oil smoke rising too fast and not being completely sucked away by the range hood. On the other hand, the side smoke shields 120 are rotatably connected to the mounting body 110. When the smoke collecting assembly 10 is used, the user can rotate the side smoke shields 120 to a desired angle to obtain the desired size of the smoke collecting chamber 140, thereby achieving the desired smoke collecting effect. When the smoke collecting assembly 10 is not in use, the side smoke shields 120 can be rotated and stored to be parallel to the mounting body 110, saving countertop space. In this way, when used with a range hood, the range hood's suction effect can be improved, the diffusion of oil smoke in the room can be reduced, thereby reducing the harm of oil smoke to the human body, and thus improving the user experience.

[0037] It should be noted that the mounting body 110 can be set on a vertical plane, and the mounting body 110 can also be set at an angle relative to the vertical plane. The mounting body 110 can be a mounting wall or a mounting plate, etc. The side smoke barrier 120 and the top smoke barrier 130 can be a plate-like structure. The plate-like structure has a better smoke-guiding effect, high stability, and is easy to process. Optionally, the side smoke barrier 120 can be rotated between 0° and 180° relative to the mounting body 110, for example, 0°, 90°, 180°, etc. The side smoke barrier 120 can have a first surface 123 and a second surface 124. The first angular position can be the position of the side smoke barrier 120 when the angle between the side smoke barrier 120 and the mounting body 110 is 0°. At this time, the side smoke barrier 120 is parallel to the mounting body 110 and the first surface 123 is closer to the mounting body 110. The second angular position may be the position of the side smoke shield 120 when the angle between the side smoke shield 120 and the mounting body 110 is 180°. At this time, the side smoke shield 120 is parallel to the mounting body 110 and the second surface 124 is closer to the mounting body 110 .

[0038] Furthermore, the top smoke barrier 130 can also be rotatably connected to the mounting body 110. The angle of rotation of the top smoke barrier 130 relative to the mounting body 110 can be adjusted based on the rising speed of the oil smoke, effectively buffering the oil smoke and thereby improving the extraction efficiency of the range hood. Optionally, the top smoke barrier 130 can be rotated relative to the mounting body 110 between 0° and 180°, for example, 0°, 90°, 180°, etc.

[0039] The smoke trap assembly 10 may also have a limiting structure (not shown) to limit the angular position of the side smoke blockers 120 and the top smoke blocker 130. The limiting structure may be a buckle structure or the like.

[0040] In one embodiment of the present invention, Figures 1 to 3The side smoke barrier 120 can be rotatably connected to the mounting body 110 through a first connecting assembly 160. The first connecting assembly 160 may include a first bracket 161, a driving member 163 and a first connecting rod 162. The driving member 163 may be fixed to the mounting body 110 through the first bracket 161. One end of the first connecting rod 162 may be connected to the driving member 163, and the end of the first connecting rod 162 away from the driving member 163 may be hinged to the side smoke barrier 120. The force output by the driving member 163 is converted to act on the side smoke barrier 120 through the first connecting rod 162, so that the side smoke barrier 120 rotates relative to the mounting body 110. Specifically, the first connecting rod 162 may include a first rod 1621 and a second rod 1622. One end of the first rod 1621 may be hinged to the side smoke barrier 120, and the other end of the first rod 1621 may be connected to the driving member 163 through the second rod 1622. The double-link structure has good stability, high conversion efficiency, and is easy to process. Of course, the first connecting rod 162 can also be a single-link structure or a multi-link structure. The first connecting rod 162 can also be other connecting structures, such as a hinge, etc. The smoke collecting component 10 can also be provided with an input component (not shown in the figure) and a controller (not shown in the figure). The input component can be a button, a knob, a touch screen, etc. The user can input control information to the controller through the input component, and then control the working state of the driver 163. By controlling the driver 163, the side smoke guard 120 can be accurately rotated relative to the mounting body 110, so as to obtain the desired size of the smoke collecting chamber 140, thereby achieving the desired smoke collecting effect, and avoiding the side smoke guard 120 from bumping into the mounting body 110 and causing damage, thereby simplifying the operation process and improving the user experience. In addition, by fixing the driver 163 through the first bracket 161, the firmness of the connection between the driver 163 and the mounting body 110 can be enhanced. The first bracket 161 can surround the outside of the driving member 163, so that the first bracket 161 can also protect the driving member 163, thereby preventing the driving member 163 from being damaged by oil interference.

[0041] See also Figure 2 and Figure 4, a second connecting assembly 170 can be connected between the side smoke shield 120 and the mounting body 110. The second connecting assembly 170 may include a second bracket 171 and a second connecting rod 172. The second bracket 171 may be spaced apart from the first bracket 161 along the height direction of the mounting body 110 and may be fixed to the mounting body 110. One end of the second connecting rod 172 may be connected to the second bracket 171. The end of the second connecting rod 172 away from the second bracket 171 may be hinged to the side smoke shield 120. Specifically, the second connecting rod 172 may include a third rod 1721 and a fourth rod 1722. One end of the third rod 1721 may be hinged to the side smoke shield 120, and the other end of the third rod 1721 may be connected to the second bracket 171 via the fourth rod 1722. The double-link structure has good stability and is easy to process. Of course, the second connecting rod 172 may also be a single-link structure or a multi-link structure. The second connecting rod 172 may also be other connecting structures, such as a hinge. In this way, by cooperating with the first connecting component 160, the stability of the side smoke shield 120 during rotation can be improved, and the second bracket 171 and the first bracket 161 are spaced apart along the height direction of the mounting body 110, which can further improve the stability of the side smoke shield 120 during rotation.

[0042] See also Figures 1 to 4, the first connecting component 160 can be installed on one end of the side smoke barrier 120 and the mounting body 110 close to the top smoke barrier 130. The second connecting component 170 can be installed on one end of the side smoke barrier 120 and the mounting body 110 away from the top smoke barrier 130. Furthermore, one or more hinges 150 can be provided between the side smoke barrier 120 and the mounting body 110. When there are multiple hinges 150, the multiple hinges 150 can be spaced apart along the height direction of the side smoke barrier 120. In this way, when cooking, the side smoke barrier 120 can automatically rotate relative to the mounting body 110, which simplifies the operating process, and the side smoke barrier 120 can be rotated to the required angle with higher accuracy, so that the desired size of the smoke collecting chamber 140 can be better obtained, thereby better achieving the desired smoke collecting effect. In addition, a first connecting component 160 can be provided on one end of the top smoke barrier 130 close to the side smoke barrier 120. A second connecting component 170 may be provided on one end of the top smoke barrier 130 close to the other side smoke barrier 120. One or more hinges 150 may be provided between the top smoke barrier 130 and the mounting body 110. When there are multiple hinges 150, the multiple hinges 150 may be spaced apart along the length direction of the top smoke barrier 130. In this way, when cooking, the top smoke barrier 130 can automatically rotate relative to the mounting body 110, which simplifies the operating process, and the top smoke barrier 130 can be rotated to the required angle with higher accuracy, thereby effectively buffering the oil smoke and improving the smoking effect of the range hood. Of course, other connecting structures such as a rotating shaft can also be used between the side smoke barrier 120 and the mounting body 110, and between the top smoke barrier 130 and the mounting body 110 to achieve relative rotation.

[0043] In another embodiment of the present invention, only hinges 150 may be provided between the side smoke guard 120 and the mounting body 110. The user can manually rotate the side smoke guard 120 relative to the mounting body 110. Alternatively, only hinges 150 may be provided between the top smoke guard 130 and the mounting body 110. The user can manually rotate the top smoke guard 130 relative to the mounting body 110. This simplifies the structure and saves costs. Of course, other connecting structures such as rotating shafts may also be used between the side smoke guard 120 and the mounting body 110, and between the top smoke guard 130 and the mounting body 110, to achieve relative rotation.

[0044] In another embodiment of the present invention, Figure 1 、 Figure 5 、 Figure 6 and Figure 8The side smoke barrier 120 may include a first plate 121 and a second plate 122. The first plate 121 may have a first side 1211 and a second side 1212 opposite to the first side 1211. The first side 1211 may be hinged to the mounting body 110. The second plate 122 may be extended or retracted relative to the second side 1212. It is understandable that by extending or retracting the second plate 122 relative to the second side 1212, the width of the side smoke barrier 120 may vary within a certain range. The user may obtain the desired size of the smoke collecting chamber 140 by adjusting the second plate 122 to extend or retract relative to the first plate 121, thereby achieving the desired smoke collecting effect, and facilitating the storage of the side smoke barrier 120, saving countertop space. Of course, the side smoke barrier 120 can also be a multi-plate telescopic structure, for example, it can also include a third plate (not shown in the figure) that can be extended and retracted relative to the second plate 122, so that the width variation range of the side smoke barrier 120 can be larger, the smoke-collecting effect of the side smoke barrier 120 can be better, and the desired width of the side smoke barrier 120 can be selected within a larger range, providing more options.

[0045] See also Figure 5 、 Figure 6 、 Figure 7 and Figure 8 , the first plate body 121 may have a receiving cavity 1213. The first plate body 121 may be provided with a guide rail 1214 in the receiving cavity 1213 along the extension and contraction direction of the second plate body 122, and the second plate body 122 may have a sliding portion 1221 slidably connected to the guide rail 1214. Specifically, the receiving cavity 1213 may be enclosed by the first plate body 121, and the first plate body 121 may be sleeved on the outside of the second plate body 122. The second side 1212 may have an opening so that the second plate body 122 can extend from the receiving cavity 1213 or retract into the receiving cavity 1213 through the opening. The guide rail 1214 is provided by the inner wall surface of the side wall 1215 of the first plate body 121 facing the receiving cavity 1213, and the outer wall surface of the second plate body 122 may be recessed to form a sliding portion 1221 that cooperates with the guide rail 1214. The shape of the guide rail 1214 can be, for example, an I-beam. This application does not impose any specific restrictions on the shape of the guide rail 1214; any shape that allows the sliding portion 1221 of the second plate 122 to slide along the guide rail 1214 within the accommodating cavity 1213 will suffice. This ensures that the second plate 122 moves smoothly along the extension and retraction direction, and reduces friction between the first and second plates 121, 122, making the extension and retraction of the second plate 122 smoother, thereby reducing wear on the first and second plates 121, 122. Of course, it is not ruled out that the guide rail 1214 can be provided on the second plate 122, and the sliding portion 1221 can be provided on the first plate 121.

[0046] See also Figure 1 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 8 , the second plate body 122 may have a distal side 1222 distal to the mounting body 110. When the second plate body 122 is retracted relative to the second side 1212, the distal side 1222 may be flush with the second side 1212; when the second plate body 122 is extended relative to the second side 1212, it may be at least partially located outside the accommodating cavity 1213. The distal side 1222 being flush with the second side 1212 allows the second plate body 122 to be completely located within the accommodating cavity 1213. Since the second plate body 122 is relatively thin, it avoids the situation where the second plate body 122 is partially exposed and thus easily damaged. Moreover, when the second plate body 122 is extended relative to the second side 1212, it is at least partially located outside the accommodating cavity 1213, which increases the width of the side smoke barrier 120 and enlarges the smoke collecting cavity 140, thereby improving the smoke collecting effect. Specifically, the width of the second plate 122 can be slightly smaller than the width of the first plate 121 to ensure that the distal side 1222 can be completely located in the accommodating cavity 1213, thereby better avoiding the situation where the second plate 122 is partially located outside the accommodating cavity 1213 and is easily damaged.

[0047] In some embodiments, the distal side 1222 may be partially located outside the accommodating cavity 1213, allowing a user to manually extend or retract the second plate 122 relative to the first plate 121. A pull ring or handle may be provided on the distal side 1222, located outside the accommodating cavity 1213, to facilitate manual extension or retraction of the second plate 122 relative to the first plate 121.

[0048] In some embodiments, in conjunction with Figure 1 、 Figure 5 、 Figure 6 and Figure 8 The smoke collecting component 10 may further include a telescopic member 181. A telescopic drive member 182 may be provided on the mounting body 110. One end of the telescopic member 181 may be connected to the telescopic drive member 182. The other end of the telescopic member 181 may pass through the side wall 1215 of the first plate body 121 and be connected to the second plate body 122. The telescopic drive member 182 may drive the second plate body 122 to extend or retract through the telescopic member 181. Specifically, the telescopic member 181 may be a telescopic rod or a push rod, etc. Of course, the telescopic member 181 may also be other structures. The user may input control information to the controller through the input component, thereby controlling the working state of the telescopic drive member 182. The degree of automation of the smoke collecting component 10 is effectively improved. By controlling the telescopic drive member 182, the second plate body 122 can be accurately extended or retracted relative to the first plate body 121, thereby obtaining the desired size of the smoke collecting chamber 140, thereby achieving the desired smoke collecting effect, and simplifying the operation process, thereby improving the user experience.

[0049] Again, refer to Figure 1 、 Figure 5 、 Figure 6 and Figure 8 , the end of the telescopic member 181 away from the telescopic driving member 182 can be connected to a slider 183. A slide groove 1216 can be provided on the side wall 1215 of the first plate body 121. The end of the telescopic member 181 away from the telescopic driving member 182 can be connected to the second plate body 122 through the slider 183. The slider 183 is defined to slide along the slide groove 1216 to drive the second plate body 122 to extend or retract. Of course, the slider 183 and the slide groove 1216 can also be other sliding connection structures, such as a linear guide rail and a sliding member matched therewith. The slider 183 and the second plate body 122 can be detachably connected or the slider 183 and the second plate body 122 can be an integrally formed structure. The telescopic driving member 182 drives the telescopic member 181 to drive the slider 183 to slide relative to the slide groove 1216, so that the second plate body 122 extends or retracts relative to the first plate body 121, thereby obtaining the desired size of the smoke collecting chamber 140, thereby achieving the desired smoke collecting effect, and the structure is simple, saving costs.

[0050] See also Figure 1 、 Figure 5 and Figure 6 The smoke collecting assembly 10 may further include a follower 184. The follower 184 may be spaced apart from the telescopic member 181 along the height direction of the side smoke barrier 120. The telescopic member 181 may drive the follower 184 to extend or retract the second plate 122. One end of the follower 184 may be connected to the slider 183, and the other end of the follower 184 may be connected to the mounting body 110. The follower 184 may be a telescopic rod or a push rod, etc. Of course, the follower 184 may also be other structures. By cooperating with the telescopic member 181, the stability of the second plate 122 during the extension and retraction process relative to the first plate 121 can be improved, and the follower 184 and the telescopic member 181 are spaced apart along the height direction of the side smoke barrier 120, which can further improve the stability of the second plate 122 during the extension and retraction process relative to the first plate 121. Specifically, the telescopic member 181 can be installed on one end of the side smoke barrier 120 and the mounting body 110 close to the top smoke barrier 130 , and the follower 184 can be installed on one end of the side smoke barrier 120 and the mounting body 110 away from the top smoke barrier 130 .

[0051] In some embodiments, the top smoke shield 130 may also have a retractable plate that can be retracted manually or automatically. In this way, the smoke can be effectively buffered, and the range hood has a better suction effect.

[0052] Furthermore, the side smoke shields 120 and the top smoke shield 130 of the smoke trap assembly 10 can be rotated manually or automatically, thereby improving the oil suction effect of the range hood.

[0053] See also Figure 2 and Figure 5 The side smoke barrier 120 may have a first width D1. The first width D1 may be 122.8 mm to 372.8 mm. For example, the first width D1 may be 122.8 mm, 247.8 mm, 372.8 mm, etc. When the first width D1 of the side smoke barrier 120 is within this range, the smoke collection effect is ensured, while preventing the side smoke barrier 120 from being too narrow, causing the oil smoke to escape from the side, and preventing the side smoke barrier 120 from being too wide, resulting in a larger volume of the smoke collection assembly 10 and occupying a larger kitchen space.

[0054] In some embodiments, the first width D1 may be the width of the first plate body 121 , or the total width of the first plate body 121 and the second plate body 122 .

[0055] According to another aspect of the present invention, a smoke and stove integrated machine is provided. The smoke and stove integrated machine may include a stove 20 and the smoke collection assembly 10 as described above. The stove 20 is rotatable around the second axis Y relative to the mounting body 110, and when the stove 20 is rotated to a predetermined angle relative to the mounting body 110, at least part of the stove 20 may be located in the smoke collection chamber 140. It should be noted that the second axis Y may be located in a horizontal plane. Specifically, the mounting body 110 may be a box, a cabinet, or the like. In this way, the situation in which the stove 20 is easily contaminated by dust due to long periods of non-use of the stove 20 is avoided. Since the smoke collection assembly 10 as described above has the above-mentioned beneficial effects, the smoke and stove integrated machine including the smoke collection assembly 10 as described above also has the above-mentioned beneficial effects, which will not be described in detail here.

[0056] Further, refer to Figure 2 、 Figure 5 and Figure 6, the cooker 20 may have a third width D3. Understandably, when the third width D3 of the stove 20 is 250 mm, when the first width D1 of the side smoke barrier 120 is 122.8 mm, the rotation of the stove 20 relative to the mounting body 110 and the rotation of the side smoke barrier 120 relative to the mounting body 110 do not affect each other, and the two can be rotated simultaneously; when the first width D1 of the side smoke barrier 120 is greater than 122.8 mm and less than or equal to 372.8 mm, the rotation of the stove 20 relative to the mounting body 110 and the rotation of the side smoke barrier 120 relative to the mounting body 110 will interfere with each other. At this time, the rotation of the two needs to have a sequence, that is, when using the smoke and stove integrated machine for cooking, the side smoke barrier 120 must be rotated away from the first angle position first, and then the stove 20 must be rotated out of the smoke chamber 140; after cooking using the smoke and stove integrated machine is finished, the stove 20 must be rotated into the smoke chamber 140 first, and then the side smoke barrier 120 is rotated to the first angle position. Of course, it is not ruled out that the size of the stove and range hood is large enough. At this time, when the first width D1 of the side smoke shield 120 is greater than 122.8 mm and less than or equal to 372.8 mm, the rotation of the stove 20 relative to the mounting body 110 and the rotation of the side smoke shield 120 relative to the mounting body 110 do not affect each other, and the two can be rotated at the same time.

[0057] Again, refer to Figure 2 、 Figure 5 and Figure 6 The number of stoves 20 can be two. The two stoves 20 can be spaced apart along the second axis Y, and a partition 190 can be provided between the two stoves 20 in the smoke trap assembly 10. The smoke trap chamber 140 can be divided into a first chamber 141 and a second chamber 142 by the partition 190. The first chamber 141 and the second chamber 142 correspond one-to-one to the two stoves 20. When there are two stoves 20, cooking can be performed using either stove 20, or both stoves 20 can be used simultaneously. When cooking with both stoves 20 simultaneously, multiple cooking tasks can be performed simultaneously, such as frying vegetables and making soup at the same time. This significantly saves cooking time and improves cooking efficiency. As can be understood, a partition 190 is provided between the two stoves 20. This prevents interference or collision between the pots on the two stoves 20, which could cause damage, when both stoves 20 are used for cooking. Furthermore, the two stoves 20 correspond one-to-one with the first cavity 141 and the second cavity 142, respectively, facilitating the use of a single stove 20 and preventing grease generated when using one stove 20 from contaminating the other stove 20 and the cavity in which it is located. Furthermore, when cleaning the first cavity 141 or the second cavity 142 is necessary, this can be done separately, eliminating the need to clean the entire smoke chamber 140, reducing workload and improving the user experience.

[0058] Again, refer to Figure 2 、 Figure 5 and Figure 6 , the isolation portion 190 may have a second width D2. The second width D2 is ≥ 150mm. It is understandable that the second width D2 of the isolation portion 190 is to ensure that when two stoves 20 are used to cook with pots of the largest size at the same time, the two pots do not interfere with or collide with each other. Based on the diameter of the largest pot being 400mm, that is, the center distance between the two stoves 20 needs to be greater than or equal to 400mm, when the width of a single stove 20 is 250mm, the second width D2 of the isolation portion 190 needs to be greater than or equal to 150mm. Therefore, when the second width D2 of the isolation portion 190 is within this range, when two stoves 20 are used for cooking at the same time, interference and collision between the pots on the two stoves 20, which may cause damage, can be avoided.

[0059] In the description of the present invention, it should be understood that the directions or positional relationships indicated by directional words such as "front", "back", "up", "down", "left", "right", "horizontal", "vertical", "vertical", "horizontal", "top", "bottom", etc. are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of the present invention; the directional words "inside" and "outside" refer to the inside and outside relative to the outline of each component itself.

[0060] For ease of description, area-relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used here to describe the regional positional relationship between one or more components or features shown in the figures and other components or features. It should be understood that area-relative terms include not only the orientation of the components as described in the figures, but also different orientations in use or operation. For example, if the components in the drawings are inverted as a whole, the situation where the components are "above other components or features" or "above other components or features" will include the situation where the components are "below other components or structures" or "below other components or structures". Thus, the exemplary term "above" may include both the orientations "above" and "below". In addition, these components or features may also be positioned at other different angles (e.g., rotated 90 degrees or other angles), and this document is intended to include all of these situations.

[0061] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, parts, components and / or combinations thereof.

[0062] It should be noted that the terms "first," "second," and the like in the specification and claims of this application and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0063] The present invention has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative and illustrative purposes only and are not intended to limit the present invention to the described embodiments. Furthermore, those skilled in the art will appreciate that the present invention is not limited to the above embodiments and that various variations and modifications may be made based on the teachings of the present invention, all of which fall within the scope of the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A smoke collection component, characterized in that: It includes a mounting body, a top smoke barrier and two side smoke barriers, wherein the top smoke barrier is connected to the top of the mounting body, and the two side smoke barriers and the top smoke barrier enclose a smoke collecting cavity; The side smoke shield is rotatably connected to the mounting body and is rotatable relative to the mounting body around a first axis at least between a first angular position and a second angular position.

2. The smoke collecting assembly according to claim 1, characterized in that: The side smoke shield is rotatably connected to the mounting body via a first connecting assembly, the first connecting assembly comprising a first bracket, a driving member and a first connecting rod, the driving member is fixed to the mounting body via the first bracket, one end of the first connecting rod is connected to the driving member, and the end of the first connecting rod away from the driving member is hinged to the side smoke shield.

3. The smoke collecting assembly according to claim 2, characterized in that: A second connecting assembly is connected between the side smoke shield and the mounting body, and the second connecting assembly includes a second bracket and a second connecting rod. The second bracket and the first bracket are spaced apart along the height direction of the mounting body and are fixed to the mounting body. One end of the second connecting rod is connected to the second bracket, and the end of the second connecting rod away from the second bracket is hinged to the side smoke shield.

4. The smoke collecting assembly according to claim 1, characterized in that: The side smoke shield includes a first plate body and a second plate body. The first plate body has a first side and a second side opposite to the first side. The first side is hinged to the mounting body. The second plate body can be extended or retracted relative to the second side.

5. The smoke collecting assembly according to claim 4, characterized in that: The first plate body has an accommodating cavity, a guide rail is provided in the accommodating cavity along the extension and contraction direction of the second plate body, and the second plate body has a sliding portion slidably connected to the guide rail.

6. The smoke collecting assembly according to claim 5, characterized in that: The second plate has a distal side away from the mounting body. When the second plate is retracted relative to the second side, the distal side is flush with the second side. When the second plate is extended relative to the second side, at least a portion of the distal side is located outside the accommodating cavity.

7. The smoke collecting assembly according to claim 4, characterized in that: The smoke-collecting assembly also includes a telescopic part, and a telescopic driving part is provided on the mounting body. One end of the telescopic part is connected to the telescopic driving part, and the other end of the telescopic part passes through the side wall of the first plate body and is connected to the second plate body. The telescopic driving part drives the second plate body to extend or retract through the telescopic part.

8. The smoke collecting assembly according to claim 7, characterized in that: The end of the telescopic member away from the telescopic driving member is connected to a slider, and a sliding groove is provided on the side wall of the first plate body. The end of the telescopic member away from the telescopic driving member is connected to the second plate body through the slider, and the slider is limited to sliding along the sliding groove to drive the second plate body to extend or retract.

9. The smoke collecting assembly according to claim 7, characterized in that: The smoke collecting assembly further includes a follower, which is spaced apart from the telescopic member along the height direction of the side smoke blocking member. The telescopic member drives the follower to extend or retract the second plate.

10. The smoke collecting assembly according to claim 1, characterized in that: The side smoke shield has a first width D1, and the first width D1 is 122.8 mm to 372.8 mm.

11. A smoke and stove integrated machine, characterized in that: The smoke collecting assembly comprises a cooker and the smoke collecting assembly as claimed in any one of claims 1 to 10, wherein the cooker is rotatable around a second axis relative to the mounting body, and when the cooker is rotated to a predetermined angle relative to the mounting body, at least a portion of the cooker is located in the smoke collecting chamber.

12. The smoke and stove integrated machine according to claim 11, characterized in that: There are two cookers, which are spaced apart along the second axis. The smoke collection assembly is provided with an isolation portion between the two cookers. The smoke collection chamber is divided into a first chamber and a second chamber by the isolation portion. The first chamber and the second chamber correspond to the two cookers one-to-one, respectively.

13. The smoke and stove integrated machine according to claim 12, characterized in that: The isolation portion has a second width D2, and the second width D2 is greater than or equal to 150 mm.