A range hood

By using a coordinated design of the smoke baffle and baffles, the negative pressure zone is expanded, solving the problem of poor smoke collection in thin range hoods and achieving better smoke extraction and space utilization.

CN117167794BActive Publication Date: 2026-01-13NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202310765537.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2022-10-27
Filing Date
2023-06-26
Publication Date
2026-01-13
Estimated Expiration
2043-06-26

AI Technical Summary

Technical Problem

The existing thin range hoods have a small smoke collection area when the baffle is rotated to the open position, which causes the oil fumes to escape and the smoke extraction effect is not ideal. At the same time, the rotation method affects the cooking operation.

Method used

The design incorporates a linkage between a smoke baffle and a baffle plate. When closed, the baffle plate seals the air inlet. When open, it forms a smoke collection chamber with the back panel. The smoke baffle plate moves forward to increase the outward expansion range of the negative pressure zone. Combined with optimized angle and distance relationships, this ensures smooth air intake and effective smoke collection.

Benefits of technology

It improves the fume extraction effect, increases the fume collection range, reduces fume escape, and achieves an ultra-thin design for the air intake component, improving space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an oil fume extractor, which comprises an air inlet assembly and an upper box for arranging a fan system, the bottom surface of the upper box is provided with an air inlet, the air inlet assembly comprises a lower box and a smoke gathering plate, the lower box is provided with a back plate which extends downward from the bottom of the upper box, the smoke gathering plate comprises a baffle and a smoke baffle, the length of the smoke baffle is L2, the baffle and the smoke baffle have a closed state and an open state, in the closed state, the baffle closes the air inlet, the smoke baffle covers the front surface of the back plate, the vertical distance between the lower edge of the smoke baffle and the back plate is d1, in the open state, the baffle opens the air inlet, the smoke gathering cavity is formed between the smoke baffle and the front surface of the back plate, the vertical distance between the lower edge of the smoke baffle and the back plate is d2, the included angle between the smoke baffle and the back plate is β, and the following relationship is met: d2-L2*sinβ>d1.
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Description

[0001] This invention claims priority to the following Chinese patent applications:

[0002] 1. Application number 202211324451.1, application date October 27, 2022, invention title "A Range Hood";

[0003] 2. The application number is 202211324487.X, the application date is October 27, 2022, and the invention title is "A Range Hood". Technical Field

[0004] This invention relates to an oil fume purification device, and more particularly to an oil fume extractor. Background Technology

[0005] Range hoods have become an indispensable kitchen appliance in modern homes. They operate on the principles of fluid dynamics, using a centrifugal fan inside to draw in cooking fumes and a filter to remove some grease particles. The centrifugal fan consists of a casing, an impeller housed within the casing, and a motor that drives the impeller. As the impeller rotates, a negative pressure is generated at the center of the fan, drawing in the cooking fumes from below. After being accelerated by the fan, the fumes are collected by the casing and guided outdoors.

[0006] Due to limited kitchen space, a slim range hood has been developed to improve space utilization. For example, Chinese Patent Application No. 202021790417.X discloses a novel range hood comprising: a main unit, including a main unit housing and a fan disposed within the main unit housing; a smoke extraction device disposed below the main unit, including a smoke inlet surface, wherein the fan, when operating, draws fumes from above the stove into the smoke extraction device through the smoke inlet surface; and a smoke baffle, rotatably connected to the smoke inlet surface, used to prevent fumes from above the stove from escaping when rotated to a certain angle; and another example is application number... Chinese Patent No. 202020358616.7 discloses a novel range hood comprising: a main unit, including a main unit housing and a fan disposed within the main unit housing; an upper body disposed below the main unit, with an upper air inlet at the bottom of the upper body; and a lower body disposed below the upper body, the upper and lower bodies forming an inverted L-shape, with the interior of the lower body communicating with the interior of the upper body; a lower air inlet disposed on the lower body, with a main smoke baffle disposed on the side of the lower air inlet facing away from the lower body; the first side of the main smoke baffle is disposed above the lower air inlet via a pivot, and the main smoke baffle can rotate around the pivot.

[0007] As can be seen from the above, in existing thin range hoods, the depth of the smoke-collecting area is not deep when the baffle is rotated to the open position, which easily leads to the escape of oil fumes and results in unsatisfactory smoke extraction. If this rotation method is to expand the negative pressure zone to improve the smoke collection effect, it will obstruct the view and have a significant impact on cooking operations. Summary of the Invention

[0008] The technical problem to be solved by the present invention is to address the shortcomings of the prior art by providing a range hood that expands the negative pressure zone during operation to improve the smoke extraction effect.

[0009] The technical solution adopted by the present invention to solve the above-mentioned technical problems is as follows: a range hood, comprising an air inlet assembly and an upper housing for mounting a fan system, wherein an air inlet is provided on the bottom surface of the upper housing, characterized in that: the air inlet assembly comprises:

[0010] The lower housing has a back panel extending downward from the bottom of the upper housing; and

[0011] A smoke-collecting plate includes a baffle and a smoke-blocking plate, wherein the length of the smoke-blocking plate is L2, and the baffle and smoke-blocking plate have a closed state and an open state.

[0012] When closed, the baffle closes the air inlet, the smoke baffle covers the front of the back panel, and the vertical distance between the lower edge of the smoke baffle and the back panel is d1.

[0013] When in the open state, the baffle opens the air inlet, and a smoke-gathering cavity is formed between the front of the smoke baffle and the back plate. The vertical distance between the lower edge of the smoke baffle and the back plate is d2, and the included angle between the smoke baffle and the back plate is β, and the following relationship is satisfied: d2-L2*sinβ>d1.

[0014] By setting up smoke baffles and baffles, the air inlet can be closed when the machine is off and opened when it is working. At the same time, when the air inlet is opened, the smoke baffle, which forms a smoke-collecting cavity with the back plate, moves forward. Compared with the solution that only forms a smoke-collecting cavity with a smoke baffle, this method of the present invention allows the smoke baffle to be in a more forward position when it is the same length and the same opening angle, the negative pressure zone expands forward and outward, the smoke collection range increases, thereby improving the oil fume extraction effect.

[0015] Preferably, the value range of d2 satisfies the following relationship: d2≥400mm, so as to obtain a sufficient smoke collection range.

[0016] Preferably, when closed, the smoke baffle is parallel to the back panel, which enables an ultra-thin design of the air intake assembly and improves space utilization.

[0017] Furthermore, the depth of the air inlet is greater than that of the back panel of the lower housing. Due to the greater depth of the air inlet, a larger air intake area is ensured, allowing for an extremely thin and light design while maintaining sufficient airflow. This reduces the space occupied by the exposed parts of the range hood and improves space utilization.

[0018] Preferably, the thickness of the lower housing portion corresponding to the back plate does not exceed 50mm.

[0019] Furthermore, the lower housing has a recessed portion on one side corresponding to the smoke-collecting plate, which forms part of the smoke-collecting cavity, thereby further expanding the range of the smoke-collecting cavity.

[0020] According to one aspect of the invention, the smoke baffle is rotatably connected to the baffle.

[0021] Furthermore, when in the open state, the angle between the baffle and the back plate is α, and β≥α is satisfied. This ensures smooth air intake, prevents oil fumes from impacting the connection between the baffle and the smoke baffle and forming a vortex, and better guides them into the upper housing through the air inlet.

[0022] Preferably, the value of α is less than 55°, less than 50° or less than 45°, and the value of β is less than 55°, less than 50° or less than 45°, so as to avoid the opening angle being too large and obstructing the view.

[0023] Preferably, the length of the baffle is L1. When the baffle is open, the vertical distance d2 between the lower edge of the baffle and the back plate is L1*sinα+L2*sinβ+d1. This simultaneously expands and lowers the negative pressure zone, further improving the smoke extraction effect.

[0024] Preferably, the length of the baffle is L1, and the ratio of L1 to L2 is in the range of 1:4 to 1:1.5. Under the premise that the opening of the baffle and the smoke baffle does not affect cooking, the total height of the two plates is basically limited. If this ratio continues to increase, the smoke baffle will be closer to the user's face after opening, affecting the user experience and possibly obstructing the view. If this ratio is too small, the width of the air inlet will be small, affecting the smoothness of air intake.

[0025] To achieve the maximum air intake area and smoke collection area, the baffle is rotatably connected to the upper or lower housing at the front side or near the front side of the air inlet. The upper end of the smoke baffle is connected to the free end of the baffle. The free end of the baffle covers the air inlet when the baffle is in the closed air inlet state.

[0026] Furthermore, the range hood also includes a first motion mechanism for driving the smoke baffle and the baffle to move together. The first motion mechanism includes a rotation drive module and a first connecting rod driven to rotate by the rotation drive module. One end of the first connecting rod is rotatably connected to the upper housing, and the other end of the first connecting rod is fixed to the smoke baffle, thereby simplifying the motion mechanism.

[0027] Furthermore, in order to maximize the effect of the baffle on the length of the smoke baffle and maximize the smoke collection area, the left and right sides of the baffle are provided with sliding grooves, and the lower or upper box is provided with a rotating shaft, which is fitted into the sliding groove.

[0028] Preferably, to reduce the escape of oil fumes from the left and right sides, the lower box also includes a first side plate and a top plate. The top plate is formed by extending forward from the top of the back plate. The width of the back plate is greater than the width of the upper box. The top plate is located on the left and right sides of the upper box. The first side plate is arranged on the left and right sides of the top plate and the back plate. The pivot is arranged on the first side plate.

[0029] According to another aspect of the invention, the baffle is disposed at the air inlet and is movable back and forth.

[0030] Furthermore, the range hood also includes a second motion mechanism for driving the smoke baffle and its linkage. This second motion mechanism includes a linear drive module, a guide rail assembly, and a second connecting rod. The guide rail assembly includes a first guide rail fixed within the upper housing and a second guide rail slidably engaged with the first guide rail. The output end of the linear drive module is connected to the second guide rail. The baffle is fixedly connected to the second guide rail and moves synchronously. The second connecting rod is rotatably connected to the second guide rail and fixed to the smoke baffle. This simplifies the motion mechanism.

[0031] Furthermore, the second motion mechanism includes an active end and a driven end. The positions where the active end and the driven end are connected to the smoke baffle are spaced apart in the left-right direction. The positions where the active end and the driven end are connected to the baffle are also spaced apart in the left-right direction. Both the active end and the driven end include the aforementioned guide rail assembly and second link. The active end also includes the aforementioned linear drive module. By connecting the smoke baffle to the guide rail assembly, the forward and backward movement of the active end second guide rail determines the rotation angle of the smoke baffle, thereby controlling the forward and backward movement of the driven end second guide rail. Since the smoke baffle is not absolutely rigid, there is a stroke difference between the two second guide rails at the beginning and end of the motion system. The baffle can directly connect the two second guide rails, thereby ensuring the synchronization of the movement on both sides. Secondly, when the left and right sides are not synchronized, the difference in the stroke of the two second guide rails causes a difference in the rotation angle of the smoke baffle, resulting in the distortion of the smoke baffle, which can correct the asynchrony.

[0032] Furthermore, in order to ensure the stable rotation of the second link, the second motion mechanism also includes a third link. One end of the second link is fixed to the upper end of the smoke baffle, while the other end is rotatably connected to one end of the third link. The other end of the third link is rotatably disposed in the upper housing.

[0033] Compared with the prior art, the advantages of the present invention are as follows: by setting a smoke baffle and a baffle, the air inlet can be closed when the machine is off and opened when the machine is working. At the same time, when the air inlet is opened, the smoke baffle, which forms a smoke-collecting cavity with the back plate, moves forward. Compared with the solution that forms a smoke-collecting cavity only through the smoke baffle, the method of the present invention allows the smoke baffle to be in a more forward position when it is opened at the same angle, the negative pressure zone expands forward and outward, the smoke collection range increases, thereby improving the oil fume extraction effect. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the closed state of the range hood according to the first embodiment of the present invention;

[0035] Figure 2 for Figure 1 A cross-sectional view of a range hood;

[0036] Figure 3 for Figure 2 A magnified schematic diagram of part I;

[0037] Figure 4 for Figure 1 A schematic diagram of the smoke baffle, baffle and its moving mechanism of a range hood;

[0038] Figure 5 This is a schematic diagram of the open intermediate state of the range hood according to the first embodiment of the present invention;

[0039] Figure 6 for Figure 5 A cross-sectional view of a range hood;

[0040] Figure 7 This is a schematic diagram of the range hood in the open state according to the first embodiment of the present invention;

[0041] Figure 8 for Figure 7 A cross-sectional view of a range hood;

[0042] Figure 9 This is a schematic diagram of the smoke baffle, baffle and its moving mechanism of the range hood according to the second embodiment of the present invention;

[0043] Figure 10 This is a schematic diagram of the smoke baffle, baffle and its moving mechanism of the range hood according to the third embodiment of the present invention;

[0044] Figure 11 This is a schematic diagram of the closed state of the range hood according to the fourth embodiment of the present invention;

[0045] Figure 12 for Figure 11 A cross-sectional view of a range hood;

[0046] Figure 13 for Figure 11 A schematic diagram of the smoke baffle, baffle and its moving mechanism of a range hood;

[0047] Figure 14 for Figure 13 A magnified schematic diagram of part II;

[0048] Figure 15 This is a schematic diagram of the open intermediate state of the range hood according to the fourth embodiment of the present invention;

[0049] Figure 16 for Figure 15 A cross-sectional view of a range hood;

[0050] Figure 17 This is a schematic diagram of the range hood in the open state according to the fourth embodiment of the present invention;

[0051] Figure 18 for Figure 17 A cross-sectional view of a range hood;

[0052] Figure 19 This is a cross-sectional view of the range hood in the closed state according to the fifth embodiment of the present invention;

[0053] Figure 20 This is a cross-sectional view of the range hood in the open state according to the fifth embodiment of the present invention. Detailed Implementation

[0054] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions.

[0055] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," etc., indicating orientation or positional relationships, are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Since the embodiments disclosed in this invention can be arranged in different directions, these terms indicating direction are only for illustration and should not be regarded as limitations. For example, "upper" and "lower" are not necessarily limited to directions opposite to or consistent with the direction of gravity. In addition, features defined with "first" and "second" may explicitly or implicitly include one or more of such features.

[0056] Example 1

[0057] See Figures 1-6 A range hood includes an air intake assembly 1 and an upper housing 2, wherein a fan system 3 is housed within the upper housing 2. In the installed state, the upper housing 2 is concealed within a kitchen cabinet, with its bottom surface flush with the cabinet, except for the air intake assembly 1 which protrudes below the cabinet. Alternatively, the fan system 3 can be housed in another housing connected to the upper housing 2.

[0058] The air intake assembly 1 includes a lower housing 11, a smoke baffle 12, and a baffle 13. The smoke baffle 12 and the baffle 13 constitute a smoke collection plate. An air inlet 21 is preferably provided at the bottom of the upper housing 2, near the rear end, and extends in the left-right direction. The fan system 3 is located near the front of the upper housing 2. A filter 5 is provided inside the upper housing 2. The filter 5 is located above the air inlet 21 and extends forward beyond the air inlet 21. The filter 5 gradually slopes downward from front to back. The filter 5 is closed at the position corresponding to the fan system 3 without mesh openings. The structure and arrangement of the filter 5 can prevent oil droplets from flying out during operation, and at the same time guide the condensed oil in the fan system 3 to the rear side, and collect it in the oil cup 6 located at the bottom of the lower housing 11.

[0059] The lower housing 11 includes a back panel 111, a first side panel 112, and a top panel 113. The back panel 111 is located below the rear side of the upper housing 2, extending downward from the lower end of the upper housing 2. The top panel 113 is formed by extending forward from the top of the back panel 111. The back panel 111, the first side panel 112, and the top panel 113 can be independent panels or integral panels. The top panel 113 can be gradually inclined downward from front to back. The width (left-right dimension) of the back panel 111 is greater than the width of the upper housing 2. The top panel 113 is located on the left and right sides of the upper housing 2. Preferably, the top panel 113 is close to the lower end of the upper housing 2. The first side panels 112 are provided on the left and right sides of the top panel 113. Alternatively, the first side panels 112 can be provided on the left and right sides of the back panel 111 or on the left and right sides of the smoke baffle 12. See also Figure 8 The depth h1 (dimension in the front-to-back direction) of the air inlet 21 is greater than the thickness h2 of the lower housing 11 part corresponding to the back panel 111, and h2 does not exceed 50mm.

[0060] The lower housing 11 has a recessed portion 114 on one side corresponding to the smoke baffle, and the recessed portion 114 is shaped to be recessed in a direction away from the smoke baffle 12. Alternatively, the width of the back plate 111 can be the same as the width of the upper housing 2. In this case, there is no need to provide a top plate 113, and the first side plates 112 can still be provided on the left and right sides of the back plate 111 or the left and right sides of the smoke baffle 12.

[0061] A smoke baffle 12 is rotatably mounted on the front side of the back panel 111. Its upper end or near the upper end is used for connection, while its lower end is a free end. The axis of rotation extends in the left-right direction, and it serves to collect smoke when open. A baffle 13 is rotatably mounted at the air inlet 21, and its axis of rotation extends in the left-right direction to open and close the air inlet 21. The baffle 13 is rotatably connected to the front side or near the front side of the air inlet 21, and the upper end of the smoke baffle 12 is connected to the free end (the rear end in the closed state) of the baffle 13. When the baffle 13 closes the air inlet 21, it simultaneously closes both the front and rear ends of the top panel 113.

[0062] The smoke baffle 12 and baffle 13 can move independently or in conjunction. In this embodiment, the smoke baffle 12 and baffle 13 move in conjunction. Therefore, the range hood also includes a motion mechanism for driving the smoke baffle 12 and baffle 13 in conjunction. The motion mechanism includes a drive mechanism 41 and a transmission mechanism. The drive mechanism 41 is preferably an electric push rod. The transmission mechanism includes a first connecting rod 421. One end of the first connecting rod 421 is rotatably connected to the inner side of the upper housing 2, and the other end of the first connecting rod 421 is fixed to the smoke baffle 12. The electric push rod (excluding the push rod used for output) is rotatably connected to the upper housing 2, and the push rod of the electric push rod is rotatably connected to the portion between the two ends of the first connecting rod 421. The rotation axis of the first connecting rod 421 extends in the left-right direction. The position where the first connecting rod 421 connects to the upper housing 2 is the rotation center of the smoke baffle 12. The first connecting rod 421 is curved and protrudes backward, thereby avoiding interference with the baffle 13 during movement. The aforementioned rotatable electric actuator constitutes a rotation drive module.

[0063] The components of the aforementioned motion mechanism constitute the driving end of the motion mechanism, which also includes a driven end, which only has a transmission mechanism. The driving end and the driven end are respectively connected to positions arranged at intervals on the left and right sides of the smoke baffle 12.

[0064] The rear end of the baffle 13 is rotatably connected to the upper end of the smoke baffle 12, with the axis of rotation extending in the left-right direction. Slide grooves 131 are provided on both the left and right sides of the baffle 13, and a rotating shaft 132 that mates with the slide grooves 131 is provided on the first side plate 112. The rotating shaft 132 can also rotate relative to the slide grooves 131. When the widths of the back plate 111 and the upper housing 2 are the same, the rotating shaft 132 can be positioned inside the upper housing 2. That is, the baffle 13 is rotatably positioned relative to the upper housing 2.

[0065] See Figure 1 and Figure 2At this time, the range hood is in the off state, the baffle 13 closes the air inlet 21, and the free end of the baffle 13 covers the air inlet 21. The smoke baffle 12 is located in front of the back panel 111, covering the front of the back panel 111, and is in a roughly vertical state, so that it can fit snugly against the back panel 111. The depth of the air inlet 21 (the dimension in the front-to-back direction) is greater than the distance between the upper end of the back panel 111 and the upper end of the smoke baffle 12, thereby ensuring that the air inlet 21 has a large air intake area when it is open, while the lower housing 11 is thin. At this time, the vertical distance between the lower edge of the smoke baffle 12 and the back panel 111 is d1. Preferably, at this time, the smoke baffle 12 and the back panel 111 are parallel, where "parallel" means that the included angle between them is less than 10°.

[0066] See Figure 5 and Figure 6 The drive mechanism 41 pushes the first link 421 around Figure 6 The counterclockwise rotation shown pushes the smoke baffle 12 outward and flips it, thereby causing the baffle 13 to rotate. The movement trajectory of the baffle 13 is also limited by the cooperation of the rotating shaft 132 and the slide groove 131.

[0067] See Figure 7 and Figure 8 When the smoke baffle 12 is opened to its limit, the baffle 13 and the smoke baffle 12 are in an unfolded state, almost on the same plane. The baffle 13 and the smoke baffle 12 together form a smoke-collecting plate, which lengthens the original smoke baffle 12, allowing for a larger smoke-collecting range. At this time, the smoke baffle 12 is located in front of the position when closed. The smoke baffle 12 and the baffle 13 together form a smoke-collecting cavity Q with the front of the back plate 111. The concave part 114 also forms part of the smoke-collecting cavity Q. The smoke-collecting cavity Q is connected to the interior of the upper box 2 through the air inlet 21. The fumes enter the upper box 2 from the rear side of the smoke baffle 12 and the baffle 13 through the air inlet 21.

[0068] The length of the baffle 13 is L1, and the length of the smoke baffle 12 is L2. The ratio of L1 to L2 ranges from 1:4 to 1:1.5, which basically limits the total height of the baffle and smoke baffle without affecting cooking when they are open. If this ratio is increased further, the smoke baffle will be too close to the user's face when it is open, affecting the user experience and possibly obstructing the view. Although a larger L2 can make the lower end of the smoke baffle lower, and the negative pressure zone will also drop lower, which is beneficial to improving the smoke extraction effect, the risk of the pan hitting the food will increase. On the other hand, if the ratio is too small, the air inlet width will be small, affecting the smoothness of air intake.

[0069] In the open state, the angle α between the baffle 13 and the back panel 111 (which is usually vertical in the normal installation state of the range hood), the angle β between the smoke baffle 12 and the back panel 111, and the vertical distance d2 between the lower edge of the smoke baffle 12 and the back panel 111 are all specified. d2 = L1*sinα + L2*sinβ + d1, and preferably satisfies the following relationship: d2 - L2*sinβ > d1. The preferred value range for d2 is d2 ≥ 400 mm. This expands the negative pressure zone, improving the smoke extraction effect. The preferred values ​​for α are less than 55°, less than 50°, or less than 45°; the preferred values ​​for β are less than 55°, less than 50°, or less than 45°, thus avoiding excessive opening angles that could obstruct the view. The preferred included angle satisfies the following relationship: β≥α, to ensure smooth air intake, prevent oil fumes from impacting the connection between the baffle 13 and the smoke baffle 12 and forming a vortex, and better guide them into the upper housing 2 through the air inlet 21.

[0070] This embodiment achieves both an extremely thin profile in the off state and a large air intake channel and a large smoke collection range in the working state by folding and unfolding the baffle 13 at the air inlet of the range hood relative to the smoke baffle 12. This design also eliminates the need for the air intake assembly 1 to form an air intake channel. When closed, the smoke baffle 12 can be close to the back panel 111, making the overall thickness of the air intake assembly 1 extremely thin, preferably around ten millimeters.

[0071] Example 2

[0072] See Figure 9 In this embodiment, the difference from Embodiment 1 is that the drive mechanism 41 uses a motor, and the transmission mechanism further includes a first gear 422 and a first rack 423. The first gear 422 is connected to the output shaft of the motor and can rotate around a left-right extending axis. The first gear 422 and the first rack 423 mesh, and the first rack 423 is fan-shaped with its teeth formed on the arc surface of the fan shape. The first rack 423 is fixed to the first connecting rod 421. The motor, the first gear 422, and the first rack 423 constitute a rotation drive module.

[0073] Therefore, when the motor starts, the first gear 422 can drive the first rack 423 to rotate, which in turn drives the first connecting rod 421 to rotate.

[0074] Example 3

[0075] See Figure 10 In this embodiment, the difference from the above embodiment 2 is that the first connecting rod 421 is directly connected to the output shaft of the motor and is directly driven to rotate by the motor.

[0076] Example 4

[0077] See Figures 11-16 The difference from the above embodiment is that the air inlet 21 is located on the bottom surface of the upper housing 2 near the rear end. The air inlet assembly 1, apart from the smoke baffle 12 and the baffle 13, only includes the back plate 111 (that is, the lower housing 11 only includes the back plate 111). The back plate 111 extends downward from the rear side of the upper housing 2 and can be independent of the upper housing 2 or integrated with it.

[0078] The smoke baffle 12 is rotatably mounted on the front side of the back plate 111, with its lower end being a free end and its axis of rotation extending in the left-right direction. The baffle 13 is movable back-and-forth at the air inlet 21, and to avoid interference, the baffle 13 may be slightly higher than the bottom surface of the upper housing 2. The upper end of the smoke baffle 12 is located at the air inlet 21 and can move back and forth; preferably, the smoke baffle 12 is attached to the rear end of the baffle 13.

[0079] The smoke baffle 12 and the baffle 13 can be driven by independent second motion mechanisms or driven in conjunction by the same motion mechanism. In this embodiment, the smoke baffle 12 and the baffle 13 move in conjunction. Therefore, the range hood also includes a second motion mechanism for driving the smoke baffle 12 and the baffle 13 in conjunction. The second motion mechanism includes a second drive mechanism 43 and a second transmission mechanism. The second drive mechanism 43 is preferably a motor. The second transmission mechanism includes a second gear 441, a second rack 442, a guide rail assembly 443, a second connecting rod 444, and a third connecting rod 445. The output end of the second drive mechanism 43 is connected to the second gear 441 in a transmission connection. For example, in this embodiment, the second gear 441 can be set on the output shaft of the second drive mechanism 43 (motor), and the rotation axis of the second gear 441 extends in the left-right direction. The second rack 442 meshes with the second gear 441. The guide rail assembly 443 includes a first guide rail 4431 fixed inside the upper housing 2 and a second guide rail 4432 that slides with the first guide rail 4431. The second rack 442 is fixed to the second guide rail 4432, and the baffle 13 is fixed to the second guide rail 4432. Thus, when the second drive mechanism 43 is activated, the second guide rail 4432 can slide back and forth through the engagement of the gear and rack, thereby causing the baffle 13 to slide back and forth.

[0080] The second connecting rod 444 is rotatably mounted on the second guide rail 4432. One end of the rod is fixed to the upper end of the smoke baffle 12, and the other end is rotatably connected to one end of the third connecting rod 445. The other end of the third connecting rod 445 is rotatably mounted inside the upper housing 2. The rotation axes of both the second connecting rod 444 and the third connecting rod 445 extend in the front-rear direction. Thus, when the second guide rail 4432 slides back and forth, it drives the second connecting rod 444 to rotate, thereby causing the smoke baffle 12 to achieve a combined motion of moving back and forth and rotating around the rotatable connection point with the second guide rail 4432. During the movement, the upper end of the smoke baffle 12 remains in close contact with the rear end of the baffle 13 to avoid gaps that could lead to pressure leakage. The aforementioned third connecting rod 445 makes the rotation of the second connecting rod 444 more stable.

[0081] The components of the second motion mechanism constitute the active end of the second motion mechanism. The second motion mechanism also includes a driven end, which differs from the active end in that it only includes the guide rail assembly 443, the second connecting rod 444, and the third connecting rod 445. The active end is connected to one side of the smoke baffle 12 and the baffle 13, and the driven end is connected to the other side of the smoke baffle 12 and the baffle 13, so as to achieve synchronous motion accuracy of the left and right sides of the smoke baffle 12 and the baffle 13.

[0082] The second motion mechanism of this embodiment connects the smoke baffle 12 to the guide rail assembly 443. The forward and backward movement of the active end second guide rail 4432 determines the rotation angle of the smoke baffle 12, thereby controlling the forward and backward movement of the driven end second guide rail 4432. Since the smoke baffle 12 is not absolutely rigid, there is a stroke difference between the two second guide rails 4432 at the beginning and end of the motion system. The baffle 13 can directly connect the two second guide rails 4432, thereby ensuring the synchronization of the movement on both sides (similar to creating a closed-loop structure at the beginning and end). Furthermore, when the left and right sides are not synchronized, the difference in the stroke of the two second guide rails 4432 causes a difference in the rotation angle of the smoke baffle 12, resulting in the distortion of the smoke baffle 12, which can correct the asynchrony.

[0083] To ensure the consistency of the rotation direction when the smoke baffle 12 is opened or closed, the distance from the rotational connection point of the third link 445 and the upper housing 2 to the rear side of the upper housing 2 is less than or equal to the distance from the rotational connection point of the third link 445 and the second link 444 to the rear side of the upper housing 2.

[0084] Second side panels 14 are also provided on the left and right sides of the smoke baffle 12, extending rearward from the left and right sides of the smoke baffle 12. When the air inlet assembly 1 is closed, the second side panels 14 wrap around the back panel 111, which can reduce the mating gap of the exposed surface and improve the overall integrity. At the same time, the two second side panels 14 can prevent excessive pressure relief on both sides and ensure the fume extraction effect.

[0085] See Figure 11 and Figure 12When the range hood is off, the baffle 13 closes the air inlet 21, and the smoke baffle 12 is in a roughly vertically extended state.

[0086] See Figure 15 and Figure 16 When the range hood is turned on, the second drive mechanism 43 is activated, causing the baffle 13 to slide forward and gradually open the air inlet 21. At the same time, the smoke baffle 12 flips forward.

[0087] See Figure 17 and Figure 18 When the baffle 13 slides forward to its limit position, that is, the rear end of the baffle 13 is flush with the front edge of the air inlet 21, the smoke baffle 12 and the front of the back plate 111 form a smoke collection chamber Q, and the oil fumes enter the upper box 2 from the rear side of the smoke baffle 12 through the air inlet 21.

[0088] This design also eliminates the need for an air intake channel in the air intake assembly 1. When closed, the smoke baffle 12 can be flush against the back panel 111, resulting in an extremely thin overall thickness for the air intake assembly 1, preferably around ten millimeters.

[0089] Example 5

[0090] See Figure 19 and Figure 20 In this embodiment, the difference from Embodiment 4 is that the second driving mechanism 43 adopts an electric push rod, the output end of which is connected to the second guide rail 4432 to drive the second guide rail 4432 to slide back and forth. To avoid interference with the guide rail assembly 443, the electric push rod is set at an angle to the horizontal direction, and its output end is rotatably connected to the second guide rail 4432.

[0091] Alternatively, other existing linear drive modules can be used to replace the motor gear rack in Embodiment 4 and the electric push rod in Embodiment 5, such as the motor lead screw and nut combination, the motor multi-link combination, etc.

Claims

1. A range hood, comprising an air inlet assembly (1) and an upper housing (2) for housing a fan system, wherein the bottom of the upper housing (2) is provided with an air inlet (21), characterized in that: A filter screen (5) is provided inside the upper housing (2), and the filter screen (5) is located above the air inlet (21); The air intake assembly (1) includes: The lower housing (11) has a back plate (111) extending downward from the bottom of the upper housing (2); and The smoke-collecting plate includes a baffle (13) and a smoke-blocking plate (12), the smoke-blocking plate (12) having a length of L2, and the baffle (13) and the smoke-blocking plate (12) having a closed state and an open state. When closed, the baffle (13) closes the air inlet (21), the smoke baffle (12) covers the front of the back plate (111), and the vertical distance between the lower edge of the smoke baffle (12) and the back plate (111) is d1. When in the open state, the baffle (13) opens the air inlet (21), and a smoke-collecting cavity (Q) is formed between the front of the smoke baffle (12) and the back plate (111). The vertical distance between the lower edge of the smoke baffle (12) and the back plate (111) is d2, and the included angle between the smoke baffle (12) and the back plate (111) is β, and the following relationship is satisfied: d2-L2*sinβ>d1.

2. The range hood according to claim 1, characterized in that: The range of values ​​for d2 satisfies the following relationship: d2≥400mm.

3. The range hood according to claim 1, characterized in that: When closed, the smoke baffle (12) is parallel to the back plate (111).

4. The range hood according to claim 3, characterized in that: The depth dimension (h1) of the air inlet (21) is greater than the thickness dimension (h2) of the lower box (11) corresponding to the back plate (111).

5. The range hood according to claim 4, characterized in that: The thickness (h2) of the lower housing (11) portion corresponding to the back plate (111) does not exceed 50 mm.

6. The range hood according to claim 1, characterized in that: The lower housing (11) has a recess (114) on one side corresponding to the smoke collecting plate, and the recess (114) forms part of the smoke collecting cavity (Q).

7. The range hood according to claim 1, characterized in that: The smoke baffle (12) and the baffle (13) are rotatably connected.

8. The range hood according to claim 7, characterized in that: When in the open state, the angle between the baffle (13) and the back plate (111) is α, and β≥α is satisfied.

9. The range hood according to claim 8, characterized in that: The value of α is less than 55°, less than 50°, or less than 45°, and the value of β is less than 55°, less than 50°, or less than 45°.

10. The range hood according to claim 7, characterized in that: The length of the baffle (13) is L1. When the baffle is open, the vertical distance d2 between the lower edge of the smoke baffle (12) and the back plate (111) is L1*sinα+L2*sinβ+d1.

11. The range hood according to claim 1, characterized in that: The length of the baffle (13) is L1, and the ratio of L1 to L2 is in the range of 1:4 to 1:1.

5.

12. The range hood according to claim 7, characterized in that: The baffle (13) is rotatably connected to the upper box (2) or the lower box (11) at a position in front of or near the air inlet (21). The upper end of the smoke baffle (12) is connected to the free end of the baffle (13). The free end of the baffle (13) covers the air inlet (21) when the baffle (13) closes the air inlet (21).

13. The range hood according to claim 12, characterized in that: The range hood also includes a first motion mechanism for driving the smoke baffle (12) and the baffle (13) to move together. The first motion mechanism includes a rotation drive module and a first connecting rod (421) driven to rotate by the rotation drive module. One end of the first connecting rod (421) is rotatably connected to the upper housing (2), and the other end of the first connecting rod (421) is fixed to the smoke baffle (12).

14. The range hood according to claim 13, characterized in that: The baffle (13) has sliding grooves (131) on its left and right sides, and a rotating shaft (132) is provided in the lower box (11) or the upper box (2), and the rotating shaft (132) is fitted in the sliding groove (131).

15. The range hood according to claim 14, characterized in that: The lower housing (11) also includes a first side plate (112) and a top plate (113). The top plate (113) is formed by extending forward from the top of the back plate (111). The width of the back plate (111) is greater than the width of the upper housing (2). The top plate (113) is located on the left and right sides of the upper housing (2). The first side plate (112) is arranged on the left and right sides of the top plate (113) and the back plate (111). The pivot (132) is arranged on the first side plate (112).

16. The range hood according to claim 1, characterized in that: The baffle (13) is located at the air inlet (21) and can move back and forth.

17. The range hood according to claim 16, characterized in that: The range hood also includes a second motion mechanism for driving the smoke baffle (12) and the baffle (13) to move together. The second motion mechanism includes a linear drive module, a guide rail assembly (443), and a second connecting rod (444). The guide rail assembly (443) includes a first guide rail (4431) fixed in the upper housing (2) and a second guide rail (4432) that slides with the first guide rail (4431). The output end of the linear drive module is connected to the second guide rail (4432). The baffle (13) is connected and fixed to the second guide rail (4432) and moves synchronously. The second connecting rod (444) is rotatably connected to the second guide rail (4432) and fixed to the smoke baffle (12).

18. The range hood according to claim 17, characterized in that: The second motion mechanism includes an active end and a driven end. The positions where the active end and the driven end are connected to the smoke baffle (12) are spaced apart in the left and right direction. The positions where the active end and the driven end are connected to the baffle (13) are spaced apart in the left and right direction. Both the active end and the driven end include the above-mentioned guide rail assembly (443) and the second link (444). The active end also includes the above-mentioned linear drive module.

19. The range hood according to claim 17, characterized in that: The second motion mechanism also includes a third link (445), one end of which is fixed to the upper end of the smoke baffle (12) and the other end is rotatably connected to one end of the third link (445), and the other end of the third link (445) is rotatably disposed in the upper housing (2).

Citation Information

Patent Citations

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    CN213178468U

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