Operation assembly and lampblack treatment device
By using plug-in and flexible snap-fit connection methods, the problems of complex disassembly and assembly and accidental disassembly of the range hood's operating components are solved, achieving the effects of quick disassembly and assembly and a compact structure.
Patent Information
- Application Number
- CN202520343196.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The housing and control mechanism of existing range hood operating components are complex to disassemble and assemble, easy to be accidentally disassembled, and are also large in size.
The housing and control mechanism are connected by plug-in and elastic snap-fit. The plug-in connection enables quick assembly and disassembly, avoiding accidental disassembly caused by a single action, and the size is reduced by simplifying the snap-fit structure.
It enables quick assembly and disassembly of operating components, avoiding accidental disassembly. Its compact structure and small size reduce maintenance difficulty and cost.
Smart Images

Figure CN223840449U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliance technology, and in particular to an operating component and an oil fume treatment device. Background Technology
[0002] Range hoods have become an indispensable kitchen appliance in modern homes. Their main function is to remove cooking fumes during cooking, thereby maintaining a good kitchen environment.
[0003] Current range hoods include a main unit housing, a smoke collection chamber, and a flap assembly. The main unit housing is connected to the smoke collection chamber. A fan can be installed in either the main unit housing or the smoke collection chamber. The smoke collection chamber has an air inlet. The flap assembly can switch between a first position (blocking the air inlet) and a second position (leaving the air inlet open). When the flap assembly is in the first position, it effectively blocks the air inlet, preventing cooking fumes from escaping into the room. When the flap assembly is in the second position, the fan operates, creating negative pressure inside the main unit housing, allowing external cooking fumes to enter the smoke collection chamber and main unit through the air inlet and be exhausted outdoors. The range hood also includes an operating component for user control. Existing operating components consist of a detachable housing and a control mechanism.
[0004] In one type, the housing and control mechanism of the operating component are detachably connected by a number of screws, requiring the user to tighten multiple screws. This makes the disassembly and assembly of the housing and control mechanism more complicated and inconvenient for quick disassembly and assembly.
[0005] Another type of operating component uses multiple snap-fit structures to achieve a detachable connection between the housing and the control mechanism. On the one hand, the user may be able to disassemble the housing and control mechanism with a single pulling action, which may easily cause the housing and control mechanism to be accidentally disassembled. On the other hand, the snap-fit structure is large in size, and setting multiple snap-fit structures will result in a large overall size of the operating component. Too many snap-fit structures cannot be applied in a smaller operating component.
[0006] Therefore, there is an urgent need to design a new operating component and fume treatment device to improve the problems of inconvenient quick disassembly and assembly of the housing and control mechanism, easy accidental disassembly of the housing and control mechanism, and large size of the operating component. Utility Model Content
[0007] The purpose of this utility model is to provide an operating component that facilitates the quick assembly and disassembly of the housing and the control mechanism, avoids accidental disassembly of the housing and the control mechanism, and has a compact structure and small size.
[0008] To achieve this objective, the present invention adopts the following technical solution:
[0009] An operating component, comprising:
[0010] A housing, the housing comprising a first mounting portion and a second mounting portion;
[0011] The control mechanism includes a housing that is engaged with the control mechanism along a first preset direction. The control mechanism includes a third mounting part and a fourth mounting part. The first mounting part and the third mounting part are inserted into each other along a second preset direction perpendicular to the first preset direction. The second mounting part and the fourth mounting part are elastically engaged along the second preset direction.
[0012] As an optional solution, the control mechanism includes a control panel, a mounting mechanism, and a latching mechanism. The mounting mechanism includes the third mounting part, and the latching mechanism includes the fourth mounting part.
[0013] As an optional solution, the operating component further includes a control mechanism, and the mounting mechanism includes a bracket assembly and a mounting component. The bracket assembly is disposed on the control panel, and the bracket assembly and the mounting component together clamp the control mechanism, and the bracket assembly and the mounting component are fixed together.
[0014] As an optional solution, the bracket assembly and the mounting member are arranged along a first direction. The bracket assembly includes a first connecting part and a second connecting part, and the mounting member includes a third connecting part and a fourth connecting part. The first connecting part and the third connecting part are inserted into each other in a direction perpendicular to the first direction, and the second connecting part and the fourth connecting part abut against each other and are fixed in a direction perpendicular to the first direction.
[0015] As an optional solution, the bracket assembly and the mounting member are arranged along a first direction. The bracket assembly includes a first limiting part and a second limiting part, which are arranged at intervals along a second direction perpendicular to the first direction. The control mechanism is disposed between the first limiting part and the second limiting part.
[0016] As an optional solution, the support assembly further includes a third limiting part, and the control mechanism includes a fourth limiting part. The third limiting part cooperates with the fourth limiting part to limit the relative position of the support assembly and the control mechanism along a third direction, wherein the first direction, the second direction and the third direction are perpendicular to each other.
[0017] As an optional solution, the bracket assembly further includes a fixing part and a reinforcing part. The fixing part is fixedly connected to the control panel. The first limiting part and the second limiting part are respectively fixedly connected to the fixing part. The first limiting part and the fixing part are also fixedly connected through the reinforcing part, and the second limiting part and the fixing part are also fixedly connected through the reinforcing part.
[0018] As an optional solution, the operating component further includes a temperature sensing module, which is fixedly connected to the housing and communicatively connected to the control mechanism.
[0019] As an alternative, the housing further includes a fifth mounting portion, and the control mechanism further includes a sixth mounting portion. The fifth mounting portion and the sixth mounting portion cooperate to define the relative position of the housing and the control mechanism along a third preset direction, wherein the first preset direction, the second preset direction, and the third preset direction are perpendicular to each other.
[0020] The purpose of this utility model is to provide an oil fume treatment device that facilitates quick assembly and disassembly of the housing and control mechanism, avoids accidental disassembly of the housing and control mechanism, and has a compact structure and small size of operating components.
[0021] To achieve this objective, the present invention adopts the following technical solution:
[0022] An oil fume treatment device includes a smoke collection chamber body, and the oil fume treatment device further includes an operating component as described above, the operating component being attached to the smoke collection chamber body.
[0023] The beneficial effects of this utility model are:
[0024] The operating component provided by this utility model includes a housing and a control mechanism. The housing includes a first mounting part and a second mounting part. The housing and the control mechanism are fastened together along a first preset direction. The control mechanism includes a third mounting part and a fourth mounting part. The first mounting part and the third mounting part are inserted into each other along a second preset direction perpendicular to the first preset direction. The second mounting part and the fourth mounting part are elastically engaged along the second preset direction. When assembling the operating component, the user first slides the control mechanism to make the first mounting part and the third mounting part insert together, and then presses the control mechanism against the housing to make the second mounting part and the fourth mounting part engage together, thereby achieving quick assembly of the housing and the control mechanism. When it is necessary to disassemble the operating component, the opposite order can be followed: first, the housing and the control mechanism are pried apart to separate the second mounting part and the fourth mounting part, and then the control mechanism is slid to separate the first mounting part and the third mounting part, thereby achieving quick disassembly of the housing and the control mechanism.
[0025] Furthermore, the aforementioned actions prevent accidental disassembly of the housing and control mechanism due to overly simplistic assembly / disassembly procedures. Additionally, the interlocking and elastic locking mechanism ensures a stable locking effect between the housing and control mechanism. Moreover, compared to systems with multiple locking mechanisms, this invention's operating component uses only one elastic locking component, and the interlocking of the first and third mounting parts saves space, resulting in a compact and small-sized operating component.
[0026] The oil fume treatment device provided by this utility model adopts the operating components mentioned above, which facilitates the quick assembly and disassembly of the housing and control mechanism, avoids accidental disassembly of the housing and control mechanism, and the operating components have a compact structure and small size. Attached Figure Description
[0027] Figure 1 This is a first structural schematic diagram of an oil fume treatment device provided by existing technology;
[0028] Figure 2 This is a schematic diagram of the second structure of an oil fume treatment device provided by existing technology;
[0029] Figure 3 This is a schematic diagram of the oil fume treatment device provided in Embodiment 1 of this utility model;
[0030] Figure 4 This is a cross-sectional view of the fume treatment device provided in Embodiment 1 of this utility model;
[0031] Figure 5 This is a schematic diagram of the temperature sensing module and control mechanism provided in Embodiment 1 of this utility model;
[0032] Figure 6 This is a schematic diagram of the control mechanism provided in Embodiment 1 of this utility model;
[0033] Figure 7 This is an exploded view of the operating components provided in Embodiment 1 of this utility model;
[0034] Figure 8 This is a schematic diagram of the structure of the housing and temperature sensing module provided in Embodiment 1 of this utility model;
[0035] Figure 9 This is a schematic diagram of the control mechanism provided in Embodiment 1 of this utility model;
[0036] Figure 10 This is a first partial enlarged view of the operating components provided in Embodiment 1 of this utility model;
[0037] Figure 11 This is a second partial enlarged view of the operating component provided in Embodiment 1 of this utility model;
[0038] Figure 12 This is a cross-sectional view of the operating component provided in Embodiment 1 of this utility model;
[0039] Figure 13 This is a cross-sectional view of the operating component provided in Embodiment 1 of this utility model;
[0040] Figure 14 This is a schematic diagram of the structure of the first support provided in Embodiment 1 of this utility model;
[0041] Figure 15 This is a structural schematic diagram of the first type of second bracket and buckling mechanism provided in Embodiment 1 of this utility model;
[0042] Figure 16 This is a structural schematic diagram of the second type of second bracket and buckling mechanism provided in Embodiment 1 of this utility model;
[0043] Figure 17 This is a schematic diagram of the shell structure provided in Embodiment 1 of this utility model;
[0044] Figure 18 This is a schematic diagram of the control mechanism provided in Embodiment 2 of this utility model;
[0045] Figure 19 This is a cross-sectional view of the operating component provided in Embodiment 2 of this utility model.
[0046] In the picture:
[0047] 1000. Fume treatment device;
[0048] 100. Operating components; 200. Main unit chassis; 210. Chassis body; 220. Fan; 300. Smoke collection chamber body; 310. Air inlet; 400. Flip plate assembly; 500. Transmission line;
[0049] 10. Outer shell; 11. Housing; 111. Side plate; 112. Bottom plate; 1121. Opening; 113. Mounting assembly; 1131. First mounting bracket; 11311. First mounting plate; 11312. First fixing plate; 11313. First limiting plate; 1132. Second mounting bracket; 11321. Second mounting plate; 11322. Second fixing plate; 11323. Second limiting plate; 114. First mounting part; 115. Second mounting part; 116. Fifth mounting part; 117. Top plate;
[0050] 12. Control mechanism; 121. Buckling mechanism; 1211. Mounting bracket; 1212. Fourth mounting part; 12121. Second connecting section; 12122. First connecting section; 1213. Fifth connecting part; 1214. First reinforcing part; 122. Mounting mechanism; 1221. Bracket assembly; 12211. First bracket; 122111. Third mounting part; 122112. Sixth mounting part; 122113. Third limiting part; 122114. Reinforcing assembly; 1221141. First reinforcing member; 1221142. Second... Reinforcing member; 1221143, Third reinforcing member; 1221144, Fourth reinforcing member; 1221145, Fifth reinforcing member; 122115, Reinforcing flange; 122116, First limiting part; 1221161, First connecting part; 122117, Second limiting part; 1221171, Second connecting part; 122118, Fixing part; 12212, Second bracket; 1222, Mounting part; 12221, Third connecting part; 12222, Fourth connecting part; 12223, Second reinforcing part; 123, Control panel;
[0051] 20. Temperature sensing module; 21. Temperature sensing module body; 211. Transmitter; 22. Lug; 23. First terminal;
[0052] 30. Control mechanism; 31. Circuit board; 32. First component; 321. Communication module; 322. First communication terminal; 323. Second communication terminal; 33. Second component; 331. Identification module; 34. First cover; 35. Second cover; 36. Accommodation space; 37. Second terminal; 39. Fourth limiting part. Detailed Implementation
[0053] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely for explaining this utility model and not for limiting it. Furthermore, it should be noted that, for ease of description, only the parts related to this utility model are shown in the drawings, not all of them.
[0054] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0055] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0056] In the description of the embodiments disclosed herein, the terms "upper," "lower," "left," and "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, 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. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used merely for descriptive distinction and have no special meaning.
[0057] Example 1
[0058] This disclosure provides an oil fume treatment device 1000, which can be any type of device with oil fume treatment function, such as a top-mounted range hood, a side-suction range hood, a top-suction range hood, or a near-suction range hood. All types of devices with oil fume treatment function are within the protection scope of this disclosure. This disclosure uses a near-suction range hood as an example to describe the structure of the oil fume treatment device 1000.
[0059] like Figures 1-4 As shown in the figure, this disclosure presents an oil fume treatment device 1000, which includes a main unit 200, a smoke collection chamber body 300, and a flap assembly 400. The main unit 200 includes a main body 210, which is connected to the smoke collection chamber body 300. A fan 220 can be installed in the main body 210 or the smoke collection chamber body 300. The smoke collection chamber body 300 has an air inlet 310. The flap assembly 400 can be positioned to block the air inlet 310 in a first position or to open the air inlet. The air inlet 310 switches between two positions. When the flap assembly 400 is in the first position, it can effectively block the air inlet 310, preventing the fumes from escaping from the main body 300 of the smoke collection chamber into the room. When the flap assembly 400 is in the second position, the fan 220 operates to create negative pressure inside the main body 210 of the casing, allowing the fumes from outside the fume treatment device 1000 to enter the main body 300 of the smoke collection chamber and the main casing 200 through the air inlet 310 and be discharged outdoors.
[0060] An air outlet is provided on the main body 210 of the chassis. After the oil fumes are filtered by the oil fume treatment device 1000, they form relatively clean gas, which is discharged from the air outlet. The main body 300 of the smoke collection chamber can effectively collect and concentrate the oil fumes, so that a large amount of external oil fumes can enter the main chassis 200 at the rear.
[0061] like Figure 1 and Figure 2 As shown, the current fume treatment device 1000 also includes a temperature sensing module 20 and an operating component 100. The temperature sensing module 20 is mounted on the fume collection chamber body 300, and the operating component 100 is used to power the temperature sensing module 20 and transmit feedback commands. The operating component 100 is mounted on the flip-plate assembly 400 for convenient operation by the user. The temperature sensing module 20 and the operating component 100 are independently configured and are relatively far apart, requiring a long transmission line 500 to connect them. Adding the transmission line 500 increases the signal transmission path between the temperature sensing module 20 and the operating component 100, potentially leading to signal transmission deviation. Furthermore, due to the complex wiring of the transmission line 500 on the main body 300 of the smoke collection chamber and the flap assembly 400, when it is necessary to replace the problematic transmission line 500, the entire fume treatment device 1000 needs to be disassembled, which makes the maintenance of the transmission line 500 difficult and costly.
[0062] To solve the above problems, such as Figure 3 and Figure 4 As shown, the fume treatment device 1000 of this embodiment includes an operating component 100, which includes a housing 10, a temperature sensing module 20, and a control mechanism 30. An opening 1121 is provided on the housing 10. The temperature sensing module 20 and the control mechanism 30 are both disposed inside the housing 10. The temperature sensing module 20 can detect the temperature of the area to be measured through the opening 1121. The control mechanism 30 is communicatively connected to the temperature sensing module 20. The temperature sensing module 20 and the control mechanism 30 are located in the same area and inside the housing 10. The temperature sensing module 20 and the control mechanism 30 are close to each other, and the control mechanism 30 can directly interface with the temperature sensing module 20 without the need for an additional connection. Figure 1 and Figure 2The transmission line 500 shown effectively reduces transmission deviation in the signal transmission of the temperature sensing module 20. Furthermore, by eliminating the long transmission line 500 with its complex wiring within the smoke collection chamber body 300 and the flap assembly 400, the complete disassembly of the fume treatment device 1000 due to maintenance of the transmission line 500 is avoided, effectively reducing the difficulty and cost of maintenance. It should be noted that the temperature of the area to be measured can be the temperature of cookware, stoves, etc. It should also be noted that the opening 1121 can be positioned facing forward, downward, or forward-lower.
[0063] like Figure 4 As shown, the operation component 100 is disposed on the main body 300 of the smoke collection chamber, which facilitates convenient operation of the operation component 100 by the user.
[0064] In an alternative embodiment, such as Figure 5 As shown, the temperature sensing module 20 itself includes a first terminal 23, and the control mechanism 30 itself includes a second terminal 37. The first terminal 23 and the second terminal 37 are detachably connected. Through the direct connection of the first terminal 23 and the second terminal 37, the temperature sensing module 20 and the control mechanism 30 can always achieve good transmission of communication signals or electrical signals. In addition, since the first terminal 23 is a structure inherent to the temperature sensing module 20 and the second terminal 37 is a structure inherent to the control mechanism 30, the operation component 100 of this embodiment does not need to be provided with an additional separate transmission line 500 to achieve the connection between the first terminal 23 and the second terminal 37. The operation component 100 has a simple structure, small size, and can be quickly disassembled and repaired.
[0065] For example, the first terminal 23 and the second terminal 37 can be mutually matched pin terminals, plug-in terminals, crimp terminals, cold-pressed terminals, spring terminals, spring-loaded terminals, etc. It should be noted that all types of terminals capable of transmitting electrical signals or communication signals are within the protection scope of this optional embodiment, and this optional embodiment will not be described in detail.
[0066] In an alternative embodiment, such as Figure 4 As shown, the control mechanism 30 and the temperature sensing module 20 are arranged in the front-to-back direction, which can achieve a compact arrangement of the control mechanism 30 and the temperature sensing module 20, and effectively reduce the size of the operating component 100 in the left-to-right direction.
[0067] In an alternative embodiment, such as Figure 6As shown, the control mechanism 30 includes a circuit board 31, a first component 32, and a second component 33. The first component 32 and the second component 33 are arranged at intervals along the left and right directions and are both communicatively connected to the circuit board 31. The first component 32 and the second component 33 are located on the left and right sides of the temperature sensing module 20, which avoids the temperature sensing module 20 being directly opposite the first component 32 or the second component 33, and avoids signal interference from the first component 32 or the second component 33, ensuring that the temperature sensing module 20 always operates with good accuracy. In addition, the operation component 100 with this layout can achieve a shape that is thicker in the middle and thinner at the outer perimeter, making it easier for the user to grasp the operation component 100, and the overall appearance of the operation component 100 is better.
[0068] It should be noted that the communication connection between the first component 32 and the second component 33 and the circuit board 31 can be achieved by means of wire connection, signal connection, etc.
[0069] like Figure 6 As shown, in an optional embodiment, the first component 32 includes a communication module 321, a first communication terminal 322, and a second communication terminal 323. All three components are communicatively connected to the circuit board 31. The communication module 321 can be a WIFI module, an infrared module, a Bluetooth module, etc. The first communication terminal 322 can be communicatively connected to the main controller of the fume treatment device 1000, and the second communication terminal 323 can be communicatively connected to the second terminal 37. Of course, the first component 32 may also include other modules such as an identification module 331.
[0070] In an alternative embodiment, such as Figure 6 As shown, the second component 33 may include an identification module 331, which is communicatively connected to the circuit board 31. The identification module 331 can identify the user's actions, thereby triggering related operations of the fume treatment device 1000. Of course, the second component 33 may also include other modules such as a communication module 321, a first communication terminal 322, and a second communication terminal 323.
[0071] In an alternative embodiment, such as Figure 5 and Figure 6As shown, the control mechanism 30 also includes a first cover 34 and a second cover 35. The first cover 34 and the second cover 35 together constitute an accommodating space 36. The circuit board 31, the first component 32 and the second component 33 are housed in the accommodating space 36. The external cover structure composed of the first cover 34 and the second cover 35 can achieve a good protective effect on the circuit board 31, the first component 32 and the second component 33 through the setting of the cover structure, so as to avoid damage to the circuit board 31, the first component 32 and the second component 33 and ensure that the control mechanism 30 always has a good performance.
[0072] In an alternative embodiment, such as Figure 5 and Figure 6 As shown, the first cover 34 and the second cover 35 are detachably connected. Through the detachable connection of the first cover 34 and the second cover 35, the circuit board 31, the first component 32 and the second component 33 can be quickly disassembled and assembled, which facilitates the user's quick repair of the circuit board 31, the first component 32 and the second component 33.
[0073] For example, the first cover 34 and the second cover 35 can be detachably connected by means of plugging, snapping, or fixing with fasteners. Furthermore, by using different detachable connection methods in combination, the connection of the first cover 34 and the second cover 35 can be ensured that the assembly and disassembly of the first cover 34 and the second cover 35 are composite actions, preventing accidental disassembly of the first cover 34 and the second cover 35 by the user, thus ensuring better performance of the control mechanism 30.
[0074] In an alternative embodiment, such as Figures 7-9 As shown, the outer casing 10 includes a housing 11 and a control mechanism 12. The temperature sensing module 20 is fixedly connected to the housing 11, and the control mechanism 30 is fixedly connected to the control mechanism 12. The housing 11 and the control mechanism 12 are detachably connected. Through the aforementioned configuration, the operation component 100 can be quickly disassembled and assembled.
[0075] In an alternative embodiment, such as Figures 7-12As shown, the housing 11 and the control mechanism 12 are engaged in the front-to-back direction (i.e., the first preset direction). The housing 11 includes a first mounting part 114 and a second mounting part 115. The control mechanism 12 includes a third mounting part 122111 and a fourth mounting part 1212. The first mounting part 114 and the third mounting part 122111 are inserted in the left-to-right direction (i.e., the second preset direction). The second mounting part 115 and the fourth mounting part 1212 are elastically engaged in the left-to-right direction. When assembling the operating component 100, the user first slides the control mechanism 12 to insert the first mounting part 114 and the third mounting part 122111, and then presses the control mechanism 12 against the housing 11 to engage the second mounting part 115 and the fourth mounting part 1212, thereby achieving rapid assembly of the housing 11 and the control mechanism 12. When it is necessary to disassemble the operating component 100, the housing 11 and the control mechanism 12 can be pried apart in reverse order to separate the second mounting part 115 from the fourth mounting part 1212. Then, the control mechanism 12 can be slid to separate the first mounting part 114 from the third mounting part 122111, thereby achieving quick disassembly of the housing 11 and the control mechanism 12.
[0076] Furthermore, the aforementioned actions prevent accidental disassembly of the housing 11 and control mechanism 12 due to overly simplistic assembly / disassembly procedures. Additionally, the interlocking and elastic locking mechanism ensures a stable locking effect between the housing 11 and control mechanism 12. Moreover, compared to methods with multiple locking mechanisms, the operating component 100 of this embodiment uses only one elastic locking component, and the interlocking of the first mounting portion 114 and the third mounting portion 122111 saves space. Therefore, the operating component 100 of this embodiment has a compact structure and small size.
[0077] In an alternative embodiment, such as Figure 8 , Figure 9 and Figure 13 As shown, the housing 11 also includes a fifth mounting part 116, and the control mechanism 12 also includes a sixth mounting part 122112. The fifth mounting part 116 and the sixth mounting part 122112 cooperate to limit the relative position of the housing 11 and the control mechanism 12 in the vertical direction (i.e., the third preset direction). The front-back direction, the vertical direction, and the left-right direction are perpendicular to each other. In summary, by inserting the first mounting part 114 and the third mounting part 122111 in the left-right direction, by elastically engaging the second mounting part 115 and the fourth mounting part 1212 in the left-right direction, and by cooperating the fifth mounting part 116 and the sixth mounting part 122112, the housing 11 and the control mechanism 12 can be omnidirectionally limited in the circumferential direction, thus ensuring a good locking effect between the housing 11 and the control mechanism 12.
[0078] In an alternative embodiment, such as Figures 7-14 As shown, the control mechanism 12 includes a control panel 123, a mounting mechanism 122, and a latching mechanism 121. The mounting mechanism 122 includes a third mounting part 122111, and the latching mechanism 121 includes a fourth mounting part 1212. Through the installation mechanism 122 and the latching mechanism 121, the first mounting part 114 and the third mounting part 122111 can be inserted into each other in the left-right direction, and the second mounting part 115 and the fourth mounting part 1212 can be elastically latched in the left-right direction. The structure is simple and easy to assemble. For example, the control panel 123 can be a resistive touch panel, a capacitive touch panel, an infrared touch panel, a button operation panel, a color film screen, etc. All control panels 123 capable of controlling and operating the fume treatment device 1000 are within the protection scope of this optional embodiment.
[0079] In an alternative embodiment, such as Figure 9 As shown, the mounting mechanism 122 includes a bracket assembly 1221 and a mounting component 1222. The bracket assembly 1221 is disposed on the control panel 123. The bracket assembly 1221 and the mounting component 1222 together clamp the control mechanism 30, and the bracket assembly 1221 and the mounting component 1222 are fixed together. Through the cooperation of the bracket assembly 1221 and the mounting component 1222, the control mechanism 30 can be better fixed on the mounting mechanism 122.
[0080] In an alternative embodiment, such as Figure 9 As shown, the mounting part 1222 also has a second reinforcing part 12223. The setting of the second reinforcing part 12223 can effectively improve the strength and hardness of the mounting part 1222, thereby achieving a better clamping effect of the mounting part 1222 on the control mechanism 30.
[0081] In an alternative embodiment, such as Figure 7 , Figure 9 and Figure 14 As shown, the support assembly 1221 includes a first support 12211 and a second support 12212 arranged in a left-right direction. The first support 12211 and the second support 12212 can provide good support and limit the control mechanism 30. In addition, since the individual first support 12211 and second support 12212 are relatively small, it is easy to process and manufacture the first support 12211 and the second support 12212, and it can also avoid the deformation problem caused by the first support 12211 and the second support 12212 being too long.
[0082] In an alternative embodiment, such as Figure 7 , Figure 9 and Figure 14As shown, the first bracket 12211 and the second bracket 12212 are arranged with the mounting member 1222 in the front-back direction (i.e., the first direction). The first bracket 12211 and the second bracket 12212 each include a first limiting part 122116 and a second limiting part 122117. The first limiting part 122116 and the second limiting part 122117 are arranged at intervals in the up-down direction (i.e., the second direction). The control mechanism 30 is disposed between the first limiting part 122116 and the second limiting part 122117. By setting the first limiting part 122116 and the second limiting part 122117, the first bracket 12211 and the second bracket 12212 can achieve a good limiting effect on the control mechanism 30 in the up-down direction.
[0083] In an alternative embodiment, such as Figure 7 , Figure 9 and Figure 14 As shown, the first bracket 12211 further includes a third limiting part 122113, and the control mechanism 30 includes a fourth limiting part 39. The third limiting part 122113 and the fourth limiting part 39 cooperate to limit the relative position of the first bracket 12211 and the control mechanism 30 in the left-right direction (i.e., the third direction), wherein the front-back direction, the up-down direction, and the left-right direction are perpendicular to each other. For example, the third limiting part 122113 can be a limiting groove with two limiting walls spaced apart in the left-right direction, and the fourth limiting part 39 can be a limiting protrusion inserted into the limiting groove, with the two limiting walls located on both sides of the limiting protrusion. Of course, in other optional embodiments, the third limiting part 122113 can also be a limiting protrusion, and the fourth limiting part 39 can be a limiting groove, with the limiting protrusion and the limiting groove cooperating to achieve the effect of limiting the position of the control mechanism 30 in the left-right direction.
[0084] In summary, by setting the mounting part 1222, the first limiting part 122116, the second limiting part 122117, the third limiting part 122113, and the fourth limiting part 39, the mounting mechanism 122 can achieve an all-round limiting effect on the control mechanism 30 in the front-back direction, the left-right direction, and the up-down direction.
[0085] In an alternative embodiment, such as Figure 7 and Figure 14As shown, both the first bracket 12211 and the second bracket 12212 include a first connecting portion 1221161 and a second connecting portion 1221171. The mounting component 1222 includes a third connecting portion 12221 and a fourth connecting portion 12222. The first connecting portion 1221161 and the third connecting portion 12221 are inserted into each other in the vertical direction, and the second connecting portion 1221171 and the fourth connecting portion 12222 abut against each other in the vertical direction and are fixed together, thereby achieving a stable connection between the first bracket 12211 and the second bracket 12212 and the mounting component 1222. Through the plug-in and fixed connection method, the first bracket 12211 and the second bracket 12212 can be quickly assembled with the mounting component 1222 in a compact space.
[0086] In an alternative embodiment, such as Figure 9 and Figure 14 As shown, the first bracket 12211 also includes a fixing part 122118, which is fixedly connected to the control panel 123. The first limiting part 122116 and the second limiting part 122117 are respectively fixedly connected to the fixing part 122118. The fixing part 122118 enables a stable connection between the first bracket 12211 and the control panel 123.
[0087] In an alternative embodiment, such as Figure 9 and Figure 14 As shown, the first bracket 12211 also includes a reinforcing component 122114, which includes a first reinforcing member 1221141. The first limiting part 122116 and the fixing part 122118 are also fixedly connected through the first reinforcing member 1221141. The provision of the first reinforcing member 1221141 can improve the connection stability between the first limiting part 122116 and the fixing part 122118. The first reinforcing member 1221141 at this position is a reinforcing rib structure, wherein the reinforcing rib structure can be a stamped protrusion formed at the connection position between the first limiting part 122116 and the fixing part 122118. Of course, the reinforcing rib structure can also be an independent structure, which is fixedly connected to the first limiting part 122116 and the fixing part 122118 respectively.
[0088] In an alternative embodiment, such as Figure 9 and Figure 14 As shown, the reinforcing component 122114 includes a second reinforcing member 1221142, and the first limiting portion 122116 is also provided with the second reinforcing member 1221142. The provision of the second reinforcing member 1221142 can effectively improve the strength and hardness of the first limiting portion 122116. For example, the second reinforcing member 1221142 can be a reinforcing rib or a reinforcing protrusion structure provided on the first limiting portion 122116.
[0089] In an alternative embodiment, such as Figure 9 and Figure 14 As shown, the first bracket 12211 also includes a reinforcing component 122114, which includes a third reinforcing member 1221143. The second limiting part 122117 and the fixing part 122118 are also fixedly connected by the third reinforcing member 1221143. The provision of the third reinforcing member 1221143 can improve the connection stability between the second limiting part 122117 and the fixing part 122118. The third reinforcing member 1221143 at this position is a reinforcing rib structure, wherein the reinforcing rib structure can be a stamped protrusion formed at the connection position between the second limiting part 122117 and the fixing part 122118. Of course, the reinforcing rib structure can also be an independent structure, which is fixedly connected to the second limiting part 122117 and the fixing part 122118 respectively.
[0090] In an alternative embodiment, such as Figure 9 and Figure 14 As shown, the first bracket 12211 also includes a reinforcing flange 122115. The reinforcing flange 122115 is disposed at one end of the first limiting part 122116 away from the fixing part 122118. The setting of the reinforcing flange 122115 can further improve the strength and hardness of the first limiting part 122116 and further prevent the first bracket 12211 from deforming.
[0091] In an alternative embodiment, such as Figure 9 and Figure 14 As shown, the first bracket 12211 also includes a reinforcing component 122114, which includes a fourth reinforcing member 1221144. The reinforcing flange 122115 and the first limiting portion 122116 are also fixedly connected by the fourth reinforcing member 1221144. The fourth reinforcing member 1221144 improves the connection stability between the reinforcing flange 122115 and the first limiting portion 122116. The fourth reinforcing member 1221144 at this location is a reinforcing rib structure, which can be a stamped protrusion formed at the connection position between the reinforcing flange 122115 and the first limiting portion 122116. Of course, the reinforcing rib structure can also be an independent structure, which is fixedly connected to both the reinforcing flange 122115 and the first limiting portion 122116.
[0092] In an alternative embodiment, such as Figure 9 and Figure 14As shown, the first bracket 12211 also includes a reinforcing component 122114, which includes a fifth reinforcing member 1221145. The sixth mounting part 122112 is directly and fixedly connected to the fixing part 122118, and the sixth mounting part 122112 and the fixing part 122118 are also fixedly connected through the fifth reinforcing member 1221145. The provision of the fifth reinforcing member 1221145 can improve the connection stability between the sixth mounting part 122112 and the fixing part 122118. The fifth reinforcing member 1221145 at this position is a reinforcing rib structure, wherein the reinforcing rib structure can be a stamped protrusion formed at the connection position between the sixth mounting part 122112 and the fixing part 122118. Of course, the reinforcing rib structure can also be an independent structure, which is fixedly connected to the sixth mounting part 122112 and the fixing part 122118 respectively.
[0093] In an alternative embodiment, such as Figure 7 , Figure 9 , Figure 10 and Figure 15 As shown, the latching mechanism 121 includes a mounting bracket 1211 and a fourth mounting portion 1212 disposed thereon. The mounting bracket 1211 is disposed on the control panel 123, and the fourth mounting portion 1212 is an elastic arm that can elastically engage with the second mounting portion 115. The latching mechanism 121 with the aforementioned structure can achieve a good elastic engagement effect with the second mounting portion 115. In addition, since the elastic arm can deform, by applying external force to the elastic arm, a rapid separation effect between the second mounting portion 115 and the fourth mounting portion 1212 can be achieved.
[0094] In an alternative embodiment, such as Figure 15 As shown, the latching mechanism 121 further includes a fifth connecting portion 1213, on which the fourth mounting portion 1212 is disposed. The fifth connecting portion 1213 is fixedly connected to the mounting bracket 1211, thereby achieving a stable connection between the fourth mounting portion 1212 and the mounting bracket 1211. The latching mechanism 121 also includes a first reinforcing portion 1214, which is connected to both the fourth mounting portion 1212 and the fifth connecting portion 1213, thereby improving the stability of the connection between the fourth mounting portion 1212 and the fifth connecting portion 1213.
[0095] like Figure 10 and Figure 15As shown, to facilitate the deformation of the elastic arm when inserted into the housing 11, the elastic arm includes a first connecting section 12122. The top end of the first connecting section 12122 is connected to the fifth connecting part 1213. From top to bottom, the first connecting section 12122 is inclined away from the mounting bracket 1211, serving a guiding function. When the elastic arm is inserted into the housing 11, the first connecting section 12122 first contacts the second mounting part 115. Under the action of external force from the installer, the elastic arm moves closer to the mounting bracket 1211, thereby allowing the elastic arm to smoothly engage with the second mounting part 115.
[0096] In an alternative embodiment, such as Figure 10 and Figure 15 As shown, the bottom end of the first connecting segment 12122 is connected to the second connecting segment 12121. From top to bottom, the second connecting segment 12121 is inclined towards the mounting bracket 1211, and the first connecting segment 12122 and the second connecting segment 12121 form a "V" shape. After the housing 11 and the control mechanism 12 are installed, the second mounting part 115 abuts against the second connecting segment 12121, thereby preventing the control mechanism 12 installed on the housing 11 from falling off the housing 11. Furthermore, under the action of external force, the second mounting part 115 can be used to abut against the second connecting segment 12121, thereby deforming the second connecting segment 12121, and the elastic arm moves towards the mounting bracket 1211, removing the locking mechanism 121 from the housing 11.
[0097] In an alternative embodiment, such as Figure 16 As shown, the mounting bracket 1211 is fixedly connected to the bracket assembly 1221. The mounting bracket 1211 and the bracket assembly 1221 are integrally formed, which can effectively improve the assembly efficiency of the control mechanism 12. The control mechanism 12 has a simple structure and small size.
[0098] Existing temperature sensing modules are fixed to the housing using fasteners. Firstly, the sealing of the openings is not tight, allowing oil fumes or water vapor to enter the housing, affecting the normal operation of internal electrical components. This can lead to short circuits, contamination of the module, and the presence of water or oil residue inside the housing, promoting bacterial growth. Secondly, the unstable connection between the module and housing allows powerful oil fumes to cause the module to shake, reducing alignment with the openings and lowering temperature detection accuracy. This shaking also results in increased noise. Thirdly, the fasteners provide poor visibility, hindering installation and leading to inefficient and inaccurate installation.
[0099] To address the above problems, in an optional embodiment, such as Figure 8 and Figure 17 As shown, the housing 11 includes a back plate 111, a mounting assembly 113, and a bottom plate 112 with an opening 1121. The temperature sensing module 20 is arranged in the front-to-back direction with the back plate 111 and in the vertical direction with the bottom plate 112. The mounting assembly 113 is fixedly connected to the back plate 111 or the bottom plate 112. The mounting assembly 113 has a mounting plate. The temperature sensing module 20 is fixedly connected to the mounting plate. The temperature sensing module 20 blocks the opening 1121 but can detect the oil fume through the opening 1121. The mounting plate is inclined upward from front to back, which can ensure that the temperature sensing module 20 fixed on the mounting plate is subjected to the downward component force and the rearward component force, so that the temperature sensing module 20 can always have a good and stable contact with the bottom plate 112 and the back plate 111 respectively.
[0100] Firstly, it enables the temperature sensing module 20 to tightly seal the opening 1121, preventing oil fumes or water vapor from entering the interior of the housing 11 through the opening 1121, ensuring the normal operation of the electrical components inside the operating component 100, preventing short circuits in the operating component 100, preventing oil fumes or water vapor from contaminating the temperature sensing module 20, preventing water or oil residue inside the operating component 100, and preventing bacteria from growing inside the housing 11.
[0101] Secondly, since the connection between the temperature sensing module 20 and the housing 11 is stable, it can prevent the temperature sensing module 20 from shaking under the action of oil fumes, ensure high alignment accuracy between the temperature sensing module 20 and the opening 1121, ensure the detection accuracy of the temperature sensing module 20, prevent large noise caused by the shaking of the temperature sensing module 20, ensure low noise operation of the operating component 100, and improve the user's user experience.
[0102] Thirdly, the mounting plate is tilted upwards from front to back, providing a good field of vision for the installation of the fasteners and facilitating the installation of the temperature sensing module 20 and the housing 11, effectively improving the installation efficiency and accuracy of the temperature sensing module 20 and the housing 11.
[0103] In an alternative embodiment, such as Figure 8 and Figure 17 As shown, the housing 11 also includes a top plate 117, and the top plate 117 and the bottom plate 112 are arranged at intervals in the vertical direction. The top plate 117, the back plate 111 and the bottom plate 112 can achieve a good covering and protection effect for the temperature sensing module 20.
[0104] In an optional embodiment, the operating component 100 further includes an annular sealing structure. The temperature sensing module 20 includes a transmitter 211. The annular sealing structure is disposed between the transmitter 211 and the base plate 112. The annular sealing structure surrounds the outer periphery of the opening 1121, which can further prevent oil fumes or water vapor from entering the interior of the housing 11 through the opening 1121.
[0105] In an alternative embodiment, such as Figure 8 and Figure 17 As shown, the mounting assembly 113 includes a first mounting bracket 1131 and a second mounting bracket 1132. The first mounting bracket 1131 has a first mounting plate 11311, and the second mounting bracket 1132 has a second mounting plate 11321. The first mounting plate 11311 and the second mounting plate 11321 are arranged in the left-right direction and located on both sides of the temperature sensing module 20. The first mounting plate 11311 and the second mounting plate 11321 can achieve a stable support effect for the temperature sensing module 20.
[0106] In an alternative embodiment, such as Figure 8 and Figure 17 As shown, the temperature sensing module 20 includes a temperature sensing module body 21 and a lug 22 disposed thereon. The temperature sensing module body 21 has a transmitting end 211. The lug 22 can abut against and be fixedly connected with the corresponding first mounting plate 11311 or second mounting plate 11321, thereby realizing a stable connection and stable support between the first mounting plate 11311 and the second mounting plate 11321 and the temperature sensing module 20, respectively.
[0107] In an alternative embodiment, such as Figure 8 and Figure 17 As shown, the first mounting bracket 1131 further includes a first fixing plate 11312 and a first limiting plate 11313, and the second mounting bracket 1132 further includes a second fixing plate 11322 and a second limiting plate 11323. The first fixing plate 11312 and the second fixing plate 11322 are respectively fixedly connected to the side plate 111 or the bottom plate 112. The temperature sensing module 20 is disposed between the first limiting plate 11313 and the second limiting plate 11323, which can realize the rapid positioning of the temperature sensing module 20 and the housing 11 and improve the assembly efficiency of the temperature sensing module 20 and the housing 11.
[0108] In an alternative embodiment, such as Figure 8 and Figure 17 As shown, the first mounting plate 11311, the first fixing plate 11312 and the first limiting plate 11313 are integrally formed by bending process, which can improve the processing efficiency of the first mounting bracket 1131, and also improve the strength and hardness of the first mounting bracket 1131.
[0109] In an alternative embodiment, such as Figure 8 and Figure 17 As shown, the second mounting plate 11321, the second fixing plate 11322, and the second limiting plate 11323 are integrally formed by bending process, which can improve the processing efficiency of the second mounting bracket 1132, as well as improve the strength and hardness of the second mounting bracket 1132.
[0110] Example 2
[0111] like Figure 18 and Figure 19 As shown, this embodiment of the present disclosure provides an operation component 100. The structure of the operation component 100 is basically the same as that of the operation component 100 in Embodiment 1. The main difference between the two is that the structures of the first bracket 12211, the second bracket 12212, and the latching mechanism 121 are different.
[0112] Specifically, such as Figure 18 and Figure 19 As shown, both the first bracket 12211 and the second bracket 12212 have a third limiting part 122113, which is a limiting plate. The two limiting plates are arranged at intervals in the left and right direction. The control mechanism 30 is disposed between the two limiting plates. The two limiting plates can limit the position of the control mechanism 30 in the left and right direction. Since the area of the limiting plate is larger, the limiting effect of the limiting plate is better than that of the third limiting part 122113 in Embodiment 1.
[0113] Specifically, such as Figure 18 and Figure 19 As shown, the third limiting part 122113 is fixedly connected to the fixing part 122118. The third limiting part 122113 and the fixing part 122118 are also fixedly connected by a reinforcing component 122114. The setting of the reinforcing component 122114 can improve the connection stability between the third limiting part 122113 and the fixing part 122118.
[0114] Specifically, such as Figure 19 As shown, there are two fourth mounting parts 1212, which are located on both sides of the mounting bracket 1211. The two fourth mounting parts 1212 cooperate with their respective second mounting parts 115, making the connection between the control mechanism 12 and the housing 11 more stable and preventing the control mechanism 12 and the housing 11 from separating during use.
[0115] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. An operating component, characterized in that, include: The housing (11) includes a first mounting portion (114) and a second mounting portion (115); The control mechanism (12) is engaged with the housing (11) along a first preset direction. The control mechanism (12) includes a third mounting part (122111) and a fourth mounting part (1212). The first mounting part (114) and the third mounting part (122111) are inserted into each other along a second preset direction perpendicular to the first preset direction. The second mounting part (115) and the fourth mounting part (1212) are elastically engaged along the second preset direction.
2. The operating component according to claim 1, characterized in that, The control mechanism (12) includes a control panel (123), a mounting mechanism (122), and a latching mechanism (121). The mounting mechanism (122) includes the third mounting part (122111), and the latching mechanism (121) includes the fourth mounting part (1212).
3. The operating component according to claim 2, characterized in that, The operating component further includes a control mechanism (30), and the mounting mechanism (122) includes a bracket assembly (1221) and a mounting component (1222). The bracket assembly (1221) is disposed on the control panel (123). The bracket assembly (1221) and the mounting component (1222) together clamp the control mechanism (30), and the bracket assembly (1221) and the mounting component (1222) are fixed together.
4. The operating component according to claim 3, characterized in that, The bracket assembly (1221) and the mounting member (1222) are arranged along a first direction. The bracket assembly (1221) includes a first connecting part (1221161) and a second connecting part (1221171). The mounting member (1222) includes a third connecting part (12221) and a fourth connecting part (12222). The first connecting part (1221161) and the third connecting part (12221) are inserted into each other in a direction perpendicular to the first direction. The second connecting part (1221171) and the fourth connecting part (12222) abut against each other and are fixed in a direction perpendicular to the first direction.
5. The operating component according to claim 3, characterized in that, The bracket assembly (1221) and the mounting member (1222) are arranged along a first direction. The bracket assembly (1221) includes a first limiting part (122116) and a second limiting part (122117). The first limiting part (122116) and the second limiting part (122117) are arranged at intervals along a second direction perpendicular to the first direction. The control mechanism (30) is disposed between the first limiting part (122116) and the second limiting part (122117).
6. The operating component according to claim 5, characterized in that, The support assembly (1221) further includes a third limiting part (122113), and the control mechanism (30) includes a fourth limiting part (39). The third limiting part (122113) cooperates with the fourth limiting part (39) to limit the relative position of the support assembly (1221) and the control mechanism (30) along a third direction, wherein the first direction, the second direction and the third direction are perpendicular to each other.
7. The operating component according to claim 5, characterized in that, The bracket assembly (1221) further includes a fixing part (122118) and a reinforcing part (122114). The fixing part (122118) is fixedly connected to the control panel (123). The first limiting part (122116) and the second limiting part (122117) are respectively fixedly connected to the fixing part (122118). The first limiting part (122116) and the fixing part (122118) are also fixedly connected through the reinforcing part (122114). The second limiting part (122117) and the fixing part (122118) are also fixedly connected through the reinforcing part (122114).
8. The operating component according to claim 3, characterized in that, The operating components also include a temperature sensing module (20), which is fixedly connected to the housing (11) and is communicatively connected to the control mechanism (30).
9. The operating component according to claim 1, characterized in that, The housing (11) further includes a fifth mounting part (116), and the control mechanism (12) further includes a sixth mounting part (122112). The fifth mounting part (116) and the sixth mounting part (122112) cooperate to limit the relative position of the housing (11) and the control mechanism (12) along a third preset direction. The first preset direction, the second preset direction and the third preset direction are perpendicular to each other.
10. An oil fume treatment device, comprising a smoke collection chamber body (300), characterized in that, The fume treatment device further includes an operating component as described in any one of claims 1 to 9, the operating component being attached to the fume collection chamber body (300).