Air handling device
Patent Information
- Application Number
- CN202110779607.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-07-09
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2041-07-09
AI Technical Summary
[0002]相关技术中,除湿机、净化器等空气处理设备均采用一体式结构,将可清洗的安装结构与不可清洗的主机设计为一体,这样在空气处理设备长时间使用后,不便于用户清洗可更换安装结构
[0059] Additional aspects and advantages of the invention will become apparent in the following description or may be learned by practice of the invention.
Smart Images

Figure CN115597147B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of environmental electrical technology, and more specifically, to an air handling device. Background Technology
[0002] In related technologies, air handling equipment such as dehumidifiers and air purifiers all adopt an integrated structure, combining the washable installation structure with the non-washable main unit. This makes it inconvenient for users to clean and replace the installation structure after long-term use of the air handling equipment. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art.
[0004] Therefore, the present invention provides an air handling device.
[0005] The present invention provides an air handling device, comprising: a main unit; a handling device detachably disposed on the main unit, the handling device having a first fixing part; and a disassembly structure rotatably disposed on the main unit, the disassembly structure comprising at least: a second fixing part engaging with the first fixing part; and a pressing part connected to the second fixing part, pressing the pressing part driving the second fixing part to release the first fixing part.
[0006] The air handling equipment proposed in this invention includes a main unit, a handling device, and a disassembly structure. The disassembly structure is rotatably mounted on the main unit and has a pressing part and a second fixing part for cooperative use. The pressing part drives the second fixing part to move. The handling device is provided with a first fixing part, which is adapted to the second fixing part, thereby allowing the handling device to be detachably mounted on the main unit through the cooperation of the second fixing part and the first fixing part, facilitating user operation.
[0007] After the air handling unit is assembled, the first fixing part and the second fixing part engage, at which point the handling device is stably installed on the main unit. After a period of use, if the user needs to replace or clean the handling device, they can press the pressing part to move the second fixing part, causing it to release the first fixing part. The user can then remove the handling device for cleaning and maintenance. In other words, the user can easily disassemble the handling device simply by pressing the pressing part, making the operation very convenient.
[0008] Furthermore, the disassembly structure is rotatably mounted on the main unit, allowing the entire disassembly structure to rotate under the user's control. Compared to reciprocating linear motion, the rotatable connection method eliminates the need for excessive movement of the disassembly structure, ensuring that it does not occupy too much space on the main unit. It also better suits the user's pressing habits and facilitates user operation.
[0009] Furthermore, the main unit is the electrically powered part of the air handling unit, while the processing unit is the non-electrically powered part. When the processing unit is disassembled, the user can wash it separately without damaging the main unit. Moreover, users can replace different types of processing units to achieve multi-functional air handling.
[0010] Therefore, the air handling equipment proposed in this invention achieves a detachable connection between the handling device and the main unit through the design of a detachable structure. This facilitates user operation, allows users to replace and clean the handling equipment, and enables the replacement of different types of handling devices, thus achieving multi-functional use of air handling.
[0011] The air handling equipment according to the above-described technical solution of the present invention may further have the following additional technical features:
[0012] In the above technical solution, the disassembly structure further includes: a rotating part, which is connected to the second fixed part on opposite sides of the pressing part, and the rotating part is rotatably connected to the main unit.
[0013] In this technical solution, the disassembly structure also includes a rotating part. The rotating part is rotatably connected to the main unit of the air handling equipment, and is located on both sides opposite the pressing part, connected to the second fixing part. Specifically, the pressing part serves as the pressing position of the entire disassembly structure, allowing the user to operate the device during disassembly and assembly; the rotating part is the connecting part of the entire disassembly structure, ensuring the rotatable connection between the disassembly structure and the main unit; the second fixing part serves as the fixing part of the entire disassembly structure, cooperating with the first fixing part on the main unit during use to achieve the connection between the handling device and the main unit.
[0014] Furthermore, the rotating part is located on both sides of the pressing part, connected to the second fixing part, so that the pressing part is located in the middle of the entire disassembly structure, and the rotating part and the second fixing part are located at both ends of the disassembly structure. In this way, since the distance between the second fixing part and the rotating part is greater than the distance between the pressing part and the rotating part, the second fixing part has a greater displacement during the user's pressing of the pressing part. Thus, the user only needs to press the pressing part a certain distance to release the connection limit between the second fixing part and the first fixing part, ensuring the assembly and disassembly of the processing device from the main unit.
[0015] Furthermore, compared to linear reciprocating motion, the disassembly structure in this invention is rotatably connected to the main unit. The disassembly structure does not require a large movement position, ensuring that the disassembly structure does not occupy too much space on the main unit. At the same time, it is more in line with the user's pressing habits and is easier for the user to operate.
[0016] Furthermore, the disassembly structure is an independent structure and an integral structure, which can improve the structural strength of the disassembly structure itself, and at the same time improve the reliability of the disassembly structure.
[0017] In the above technical solution, the disassembly structure also includes an elastic element, which can be used to reset the pressing part.
[0018] In this technical solution, the disassembly structure also includes an elastic element. After the air handling unit is assembled, the elastic element ensures that the second fixing part fits tightly against the first fixing part and is securely locked together. Furthermore, the elastic element improves the connection stability between the first and second fixing parts, ensuring a secure connection even if the air handling unit experiences some shaking. In addition, the elastic element ensures that the pressing part has a certain rebound effect; after the user releases the pressing part, it automatically returns to its original position.
[0019] In the above technical solution, the host is provided with an abutting part, and the elastic element abuts between the pressing part and the abutting part.
[0020] In this technical solution, the main unit is equipped with an abutment part, and the disassembly structure also includes an elastic element. The abutment part is located inside the main unit, and both ends of the elastic element abut against the abutment part and the pressing part respectively, ensuring that the elastic element is in a compressed state. Thus, after the air handling equipment is assembled, the compressed elastic element applies a certain thrust to the pressing part, ensuring that the pressing part drives the second fixing part to fit tightly against the first fixing part and securely engage them together. Furthermore, because the compressed elastic element applies a certain thrust to the pressing part, the connection stability between the first and second fixing parts is further improved. Even if the air handling equipment experiences some shaking, the first and second fixing parts can still be securely engaged. In addition, the compressed elastic element also ensures that the pressing part has a certain rebound effect; after the user releases the pressing part, it automatically returns to its original position.
[0021] In any of the above technical solutions, a guide groove is provided on the abutting part, and at least a portion of the elastic element is located in the guide groove; the elastic element is a spring.
[0022] In this technical solution, a guide groove is provided on the abutment part, and the elastic element can be a spring. After the air handling equipment is assembled, one end of the elastic element is located in the guide groove, and the spring is in a compressed state. In particular, due to the guide groove on the abutment part, the spring can be guided and limited to a certain extent, thereby preventing the spring from deviating. In particular, it can ensure the stability of the spring in the compressed state, thereby improving the connection reliability between the handling device and the main unit.
[0023] In any of the above technical solutions, the elastic element is sleeved on the rotating part and connected to the main unit.
[0024] In this technical solution, an elastic element is fitted onto the rotating part and connected to the main unit. After the air handling equipment is assembled, the elastic element ensures that the second fixing part and the first fixing part fit tightly together and are securely locked together. Furthermore, the elastic element improves the connection stability between the first and second fixing parts, ensuring a secure connection even if the air handling equipment experiences some shaking. In addition, the elastic element ensures that the pressing part has a certain rebound effect; after the user releases the pressing part, it automatically returns to its original position.
[0025] In any of the above technical solutions, the rotating part is a rotating shaft; the elastic element is a torsion spring.
[0026] In this technical solution, the rotating part is a rotating shaft, and the elastic element can be a torsion spring. After the air handling equipment is assembled, one end of the torsion spring abuts against the main unit, and the torsion spring is in a pre-tensioned state. In this way, the connection stability between the first fixing part and the second fixing part can be ensured by the torsion spring in the pre-tensioned state, while realizing the reset of the pressing part.
[0027] In any of the above technical solutions, the host is provided with a mounting part, and the rotating part is rotatably disposed within the mounting part.
[0028] In this technical solution, the main unit is equipped with a mounting section. The mounting section is located inside the main unit, and a rotating part is rotatably mounted within the mounting section to ensure a rotatable connection between the disassembly structure and the main unit. Furthermore, a pressing part is connected to the rotating part. Thus, when the user presses the pressing part, the rotating part rotates within the mounting section, thereby causing the entire disassembly structure to move relative to the main unit, thereby disengaging the second fixing part from the first fixing part and releasing the processing device.
[0029] In any of the above technical solutions, the mounting part is a snap-fit groove, and the rotating part is a rotating shaft; the rotating shaft is snapped into the snap-fit groove.
[0030] In this technical solution, the mounting part is a snap-fit groove, and the rotating part is a rotating shaft. One end of the snap-fit groove is open, and the groove can be made of elastic materials such as plastic to ensure it has a certain degree of elasticity. Thus, during the installation of the rotating shaft, it is only necessary to directly snap the shaft into the snap-fit groove, and installation is achieved through the elastic deformation of the groove.
[0031] In any of the above technical solutions, the disassembly structure further includes: an indicator mark disposed on the pressing part.
[0032] In this technical solution, the disassembly structure also includes an indicator mark. The indicator mark is located on the outer surface of the pressing part to clearly indicate its position, facilitating user operation.
[0033] In any of the above technical solutions, the number of disassembly structures is at least one, and at least one disassembly structure is distributed on one side of the host.
[0034] In this technical solution, there is at least one disassembly structure, and at least one disassembly structure is distributed on one side of the main unit. Furthermore, a non-pressing snap-fit structure can be used between the processing device and the main unit on the other side. That is, during the user's disassembly and assembly of the processing device, the pressing part of the disassembly structure located on one side of the main unit can be pressed first. After disassembly is completed on this side where the disassembly structure is located, the other side of the main unit can be automatically disassembled.
[0035] Furthermore, each disassembly structure includes at least two spaced-apart second fixing parts; correspondingly, at least two spaced-apart first fixing parts are provided on the same side of the processing device. When the processing device is installed on the main unit, there are at least two fixing positions between the processing device and the main unit on the same side of the air handling equipment. This ensures that the force between the processing device and the main unit is even, and also ensures the stability and firmness of the connection between the processing device and the main unit.
[0036] In any of the above technical solutions, the number of disassembly structures is at least two, and the at least two disassembly structures are distributed on opposite sides of the main unit.
[0037] In this technical solution, the number of disassembly structures is at least two, and these at least two disassembly structures are arranged on opposite sides of the main unit; correspondingly, the processing device is provided with at least two first fixing parts, and these at least two first fixing parts are arranged on opposite sides of the processing device. In this way, through the cooperation of at least two first fixing parts and at least two second fixing parts, the processing device can be guaranteed to have at least two fixed positions, ensuring the stable installation of the processing device.
[0038] Furthermore, at least two disassembly mechanisms are distributed on opposite sides of the main unit, ensuring that the operation positions for assembling and disassembling the processing device are on opposite sides of the main unit, conforming to user operating habits. In other words, users can complete the operation simply by pressing the pressing parts from opposite sides of the main unit, which is very convenient.
[0039] In any of the above technical solutions, at least two disassembly structures are symmetrically distributed on opposite sides of the main unit.
[0040] In this technical solution, at least two disassembly structures are symmetrically distributed on opposite sides of the main unit. This ensures that users do not need to distinguish directions during the assembly and processing of the device, forming a foolproof design. Users only need to ensure that the second fixing part of the disassembly structure is aligned with the first fixing part on the main unit, facilitating user operation.
[0041] Furthermore, the aforementioned first fixing parts are provided on all four sides of the processing device, and each first fixing part can be used in conjunction with the second fixing part of the disassembly structure on the main unit. That is, during the disassembly and assembly of the processing device, the user does not need to distinguish the installation direction of the processing device (i.e., does not need to distinguish the front and back sides and left and right sides of the processing device), but only needs to ensure that the processing device is positioned relative to the main unit to complete the disassembly and assembly, which is convenient for the user.
[0042] In any of the above technical solutions, the host includes a base, a disassembly structure is disposed on the base, and the processing device is detachably connected to the base.
[0043] In this technical solution, the main unit includes a base. The processing device is located at the bottom of the main unit and is detachably connected to the base. Specifically, a detachable structure is provided on the base, meaning the base is assembled and connected to the processing device via the detachable structure.
[0044] In any of the above technical solutions, one of the first fixing part and the second fixing part is a buckle, and the other is a slot that cooperates with the buckle.
[0045] In this technical solution, one of the first fixing part and the second fixing part is a snap-fit, and the other is a slot that mates with the snap-fit. Thus, the processing device can be detachably installed through the cooperation of the snap-fit and the slot. Specifically, during the assembly of the processing device, simply snap the snap-fit into the slot; during the disassembly of the processing device, simply detach the snap-fit from the slot.
[0046] In any of the above technical solutions, the first fixing part and the second fixing part are two matching buckles.
[0047] In this technical solution, the first fixing part and the second fixing part are two compatible snap-fit fasteners. Thus, the processing device can be detachably installed using these two compatible snap-fit fasteners. Specifically, during the assembly of the processing device, the two snap-fit fasteners are simply engaged; during the disassembly of the processing device, the two snap-fit fasteners are simply disassembled.
[0048] In any of the above technical solutions, the processing device includes: an installation structure, a first fixing part disposed on the installation structure; and a functional module disposed on the installation structure; wherein the installation structure is engaged with the second fixing part of the disassembly structure via the first fixing part.
[0049] In this technical solution, the processing device includes an installation structure and a functional module. A first fixing part is disposed on the installation structure, allowing the installation structure to connect to a second fixing part of a detachable structure on the main unit, ensuring proper assembly. The functional module is disposed on the installation structure and can process air during the operation of the air processing equipment.
[0050] In any of the above technical solutions, the functional modules include at least one or a combination of the following: a filtration module, a purification module, a humidification module, an aromatherapy module, and a heating module.
[0051] In this technical solution, the functional modules include, but are not limited to, one or more of the following: a filtration module, a purification module, a humidification module, an aromatherapy module, and a heating module. Thus, when the functional module includes a filtration module, it can filter the environment of the space where the air handling unit is located; when the functional module includes a purification module, it can purify the environment of the space where the air handling unit is located; when the functional module includes a humidification module, it can humidify the environment of the space where the air handling unit is located; when the functional module includes an aromatherapy module, it can release fragrance into the space where the air handling unit is located; and when the functional module includes a heating module, it can radiate heat to the surroundings.
[0052] In any of the above technical solutions, the installation structure includes: an air inlet grille; a base, disposed at one end of the air inlet grille; a cover, disposed at the other end of the air inlet grille, and a first fixing part disposed on the cover.
[0053] In this technical solution, the installation structure includes an air inlet grille, a base, and a cover. The air inlet grille has an air inlet to ensure airflow. The cover and base are located at opposite ends of the air inlet grille, with the cover at the top and featuring a first fixing part that engages with a second fixing part on the main unit's detachable structure. The base is located at the bottom of the air inlet grille for support and fixation.
[0054] In any of the above technical solutions, the air handling equipment further includes: a display device disposed on the main unit; and a gas disturbance device disposed inside the main unit.
[0055] In this technical solution, the air handling equipment also includes a display device. The display device is mounted on the main unit and has a selection area and a display area to select different functional modes of the air handling equipment and to display the current functional mode of the air handling equipment.
[0056] In addition, the air handling unit also includes a gas turbulence device. This gas turbulence device is located inside the main unit and drives airflow during operation to process the gas.
[0057] In any of the above technical solutions, the air handling equipment is one of the following: purifier, air conditioner, dehumidifier, heater, or aromatherapy diffuser.
[0058] In this technical solution, the air handling equipment can be a purifier, air conditioner, dehumidifier, heater, aroma diffuser, etc.
[0059] Additional aspects and advantages of the invention will become apparent in the following description or may be learned by practice of the invention. Attached Figure Description
[0060] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0061] Figure 1 This is an exploded view of an air handling device according to an embodiment of the present invention;
[0062] Figure 2 yes Figure 1 Exploded view of the disassembled structure in the air handling unit shown;
[0063] Figure 3 yes Figure 1 A schematic diagram of the processing unit in the air handling equipment shown.
[0064] Figure 4 This is one of the installation schematic diagrams of the disassembly structure according to an embodiment of the present invention;
[0065] Figure 5 This is a second schematic diagram of the installation of the disassembly structure according to an embodiment of the present invention;
[0066] Figure 6 This is the third schematic diagram of the installation of the disassembly structure according to an embodiment of the present invention;
[0067] Figure 7 yes Figure 5 A magnified view of part A of the structure shown;
[0068] Figure 8 yes Figure 6 A magnified view of section B of the structure shown;
[0069] Figure 9 This is the fourth schematic diagram of the installation of the disassembly structure according to an embodiment of the present invention.
[0070] in, Figures 1 to 9 The correspondence between the reference numerals and component names in the attached drawings is as follows:
[0071] 102 Main unit, 104 Processing device, 106 First fixing part, 108 Disassembly structure, 110 Second fixing part, 112 Pressing part, 114 Abutting part, 116 Elastic element, 116a Spring, 116b Torsion spring, 118 Mounting part, 120 Rotating part, 122 Indicator mark, 124 Base, 126 Mounting structure, 128 Functional module, 130 Air inlet grille, 132 Seat body, 134 Cover body, 136 Guide groove. Detailed Implementation
[0072] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0073] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.
[0074] The following reference Figures 1 to 9 This describes an air handling apparatus provided according to some embodiments of the present invention.
[0075] like Figure 1 As shown, the first embodiment of the present invention proposes an air handling device, including: a main unit 102, a handling device 104, and a disassembly structure 108.
[0076] Among them, such as Figure 2 and Figure 3 As shown, the disassembly structure 108 is rotatably mounted on the main unit 102. The disassembly structure 108 has a pressing part 112 and a second fixing part 110 for cooperation. The pressing part 112 can drive the second fixing part 110 to move. The processing device 104 is provided with a first fixing part 106, which is adapted to the second fixing part 110. Thus, the processing device 104 can be detachably mounted on the main unit 102 through the cooperation of the second fixing part 110 and the first fixing part 106, which is convenient for user operation.
[0077] After the air handling unit is assembled, the first fixing part 106 and the second fixing part 110 engage, at which point the handling device 104 is stably installed on the main unit 102. After a period of use, if the user needs to replace or clean the handling device 104, the user can press the pressing part 112 to move the second fixing part 110, causing the second fixing part 110 to release the first fixing part 106. The user can then remove the handling device 104 for cleaning and maintenance. In other words, the user can easily disassemble the handling device 104 simply by pressing the pressing part 112.
[0078] Furthermore, the disassembly structure 108 is rotatably mounted on the main unit 102, allowing the entire disassembly structure 108 to rotate under the user's drive. Compared to reciprocating linear motion, the rotatable connection method means that the disassembly structure 108 does not require a large movement position, ensuring that the disassembly structure 108 does not occupy too much space on the main unit 102, and is also more in line with the user's pressing habits, making it easier for the user to operate.
[0079] Furthermore, the main unit 102 is the energized part of the air handling unit, while the handling device 104 is the non-energized part. When the handling device 104 is disassembled, the user can wash it separately without damaging the main unit 102. Moreover, the user can replace the handling device 104 with different types to achieve multi-functional air handling.
[0080] Therefore, the air handling equipment proposed in this invention achieves a detachable connection between the handling device 104 and the main unit 102 through the design of the detachable structure 108. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment, and replace different types of handling devices 104 to achieve multi-functional use of air handling.
[0081] The second embodiment of the present invention proposes an air handling device, which, based on the first embodiment, further includes:
[0082] like Figure 2 and Figure 4 As shown, the disassembly structure 108 also includes a rotating part 120. The rotating part 120 is rotatably connected to the main unit 102 of the air handling equipment, and the rotating part 120 is located on both sides opposite to the pressing part 112 connected to the second fixing part 110.
[0083] In particular, such as Figure 2 and Figure 4 As shown, the pressing part 112 serves as the pressing position of the entire disassembly structure 108. During the disassembly and assembly of the processing device 104, the user can operate by pressing the pressing part 112. The rotating part 120 is the connecting part of the entire disassembly structure 108, ensuring the rotational connection between the disassembly structure 108 and the host 102. The second fixing part 110 serves as the fixing part of the entire disassembly structure 108, and cooperates with the first fixing part 106 on the host 102 during use to realize the connection between the processing device 104 and the host 102.
[0084] In addition, such as Figure 2 and Figure 4As shown, the rotating part 120 is located on both sides of the second fixing part 110 connected to the pressing part 112, such that the pressing part 112 is located in the middle of the entire disassembly structure 108, and the rotating part 120 and the second fixing part 110 are located at both ends of the disassembly structure 108. Thus, since the distance between the second fixing part 110 and the rotating part 120 is greater than the distance between the pressing part 112 and the rotating part 120, the second fixing part 110 has a greater displacement during the user's pressing of the pressing part 112. Therefore, the user only needs to press the pressing part 112 a certain distance to release the connection limit between the second fixing part 110 and the first fixing part 106, thus ensuring the assembly and disassembly of the processing device 104 and the main unit 102.
[0085] Furthermore, compared to linear reciprocating motion, in this embodiment, the disassembly structure 108 and the host 102 are rotatably connected. The disassembly structure 108 does not require a large movement position, ensuring that the disassembly structure 108 will not occupy too much space in the host 102. At the same time, it is more in line with the user's pressing habits and is easier for the user to operate.
[0086] In addition, such as Figure 2 and Figure 4 As shown, the disassembly structure 108 is an independent structure and an integral structure, which can improve the structural strength of the disassembly structure 108 itself and improve the reliability of the disassembly structure 108.
[0087] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0088] The third embodiment of the present invention proposes an air handling device, which, based on the second embodiment, further includes:
[0089] The disassembly structure 108 also includes an elastic element 116. After the air handling unit is assembled, the elastic element 116 ensures that the second fixing part 110 and the first fixing part 106 are tightly fitted and securely locked together. Furthermore, the elastic element 116 improves the connection stability between the first fixing part 106 and the second fixing part 110, ensuring that even if the air handling unit experiences some shaking, the first fixing part 106 and the second fixing part 110 remain securely locked together. In addition, the elastic element 116 ensures that the pressing part 112 has a certain rebound effect; after the user releases the pressing part 112, the pressing part 112 automatically returns to its original position.
[0090] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0091] The fourth embodiment of the present invention proposes an air handling device, which, based on the third embodiment, further includes:
[0092] like Figure 4 and Figure 5 As shown, the main unit 102 is provided with an abutment portion 114, which is located inside the main unit 102. The two ends of the elastic member 116 abut against the abutment portion 114 and the pressing portion 112 respectively, ensuring that the elastic member 116 is in a compressed state. Thus, after the air handling equipment is assembled, the compressed elastic member 116 applies a certain thrust to the pressing portion 112, ensuring that the pressing portion 112 drives the second fixing portion 110 to fit tightly against the first fixing portion 106 and securely engage them together.
[0093] In addition, such as Figure 6 and Figure 7 As shown, the compressed elastic element 116 applies a certain thrust to the pressing part 112, further improving the connection stability between the first fixing part 106 and the second fixing part 110. Even if the air handling equipment shakes, the first fixing part 106 and the second fixing part 110 can be firmly locked together. In addition, the compressed elastic element 116 can also ensure that the pressing part 112 has a certain rebound effect. After the user releases the pressing part 112, the pressing part 112 will automatically return to its original position.
[0094] In this embodiment, further, as Figure 4 As shown, a guide groove 136 is provided on the abutment portion 114, and the elastic element 116 can be a spring 116a. After the air handling equipment is assembled, one end of the elastic element 116 is located in the guide groove 136, and the spring 116a is in a compressed state. In particular, due to the provision of the guide groove 136 on the abutment portion 114, the spring 116a can be guided and limited to a certain extent, thereby preventing the spring 116a from shifting, and especially ensuring the stability of the position of the spring 116a in the compressed state, thereby improving the connection reliability between the handling device 104 and the main unit 102.
[0095] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0096] The fifth embodiment of the present invention proposes an air handling device, which, based on the second embodiment, further includes:
[0097] like Figure 9 As shown, the elastic element 116 is sleeved on the rotating part 120 and connected to the main unit 102. After the air handling equipment is assembled, the elastic element 116 ensures that the second fixing part 110 and the first fixing part 106 fit tightly together and are securely locked together. Furthermore, the elastic element 116 improves the connection stability between the first fixing part 106 and the second fixing part 110, ensuring that even if the air handling equipment experiences some shaking, the first fixing part 106 and the second fixing part 110 remain securely locked together. In addition, the elastic element 116 also ensures that the pressing part 112 has a certain rebound effect; after the user releases the pressing part 112, the pressing part 112 automatically returns to its original position.
[0098] In this embodiment, further, as Figure 9 As shown, the rotating part 120 is a rotating shaft, and the elastic element 116 can be a torsion spring 116b. After the air handling equipment is assembled, one end of the torsion spring 116b abuts against the main unit 102, and the torsion spring 116b is in a pre-tightened state. In this way, the connection stability between the first fixing part 106 and the second fixing part 110 can be ensured by the torsion spring 116b in the pre-tightened state, while realizing the reset of the pressing part 112.
[0099] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0100] The sixth embodiment of the present invention proposes an air handling device, which, based on the second embodiment, further includes:
[0101] like Figure 4 and Figure 5 As shown, a mounting portion 118 is provided on the main unit 102. The mounting portion 118 is located inside the main unit 102, and a rotating portion 120 is rotatably mounted within the mounting portion 118 to ensure a rotatable connection between the disassembly structure 108 and the main unit 102. Furthermore, a pressing portion 112 is connected to the rotating portion 120. Thus, when the user presses the pressing portion 112, the rotating portion 120 rotates within the mounting portion 118, thereby causing the entire disassembly structure 108 to move relative to the main unit 102, thereby disengaging the second fixing portion 110 from the constraint of the first fixing portion 106 and releasing the processing device 104.
[0102] Furthermore, the disassembly structure 108 is an independent structure and an integral structure, which can improve the structural strength of the disassembly structure 108 itself and improve the reliability of the disassembly structure 108.
[0103] In this embodiment, further, as Figure 4 and Figure 5 As shown, the mounting part 118 is a snap-fit groove, and the rotating part 120 is a rotating shaft. One end of the snap-fit groove is open, and the groove can be made of an elastic element 116 such as plastic to ensure it has a certain degree of elasticity. Thus, during the installation of the rotating shaft, it is only necessary to directly snap the shaft into the snap-fit groove, and installation is achieved through the elastic deformation of the groove.
[0104] In this embodiment, the disassembly structure 108 further includes an indicator mark 122. The indicator mark 122 is disposed on the outer surface of the pressing part 112 to clearly indicate the location of the pressing part 112, facilitating user operation.
[0105] Therefore, in this embodiment, the disassembly structure 108 includes a pressing part 112, a second fixing part 110, an elastic member 116, and a mounting part 118. The mounting part 118 and the second fixing part 110 are located on opposite sides of the pressing part 112. The pressing part 112 is rotatably connected to a snap-fit groove on the main unit 102. The elastic member 116 is located between the back of the pressing part 112 and the abutment part 114 of the main unit 102, and is in a compressed state.
[0106] After the air handling equipment is assembled, the compressed elasticity will apply a thrust to the pressing part 112, ensuring that the pressing part 112 drives the second fixing part 110 to engage with the first fixing part 106, while ensuring the connection stability between the first fixing part 106 and the second fixing part 110.
[0107] During the disassembly of the processing device 104, the pressing part 112 is pressed and the elastic member 116 is squeezed, so that the rotating part 120 rotates in the locking groove under the action of the pressing part 112. At this time, the second fixing part 110 separates from the first fixing part 106 under the action of the pressing part 112. At this time, the locking limit between the first fixing part 106 and the second fixing part 110 is released, and the processing device 104 can be removed from the main unit 102.
[0108] In addition, an indicator mark 122 may be provided on the surface of the pressing part 112 to clearly indicate the location of the pressing part 112. Specifically, the indicator mark 122 may be a pattern, design, or the like. Specifically, the indicator mark 122 may be made of bright colors or fluorescent materials.
[0109] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0110] The seventh embodiment of the present invention proposes an air handling device, which, based on the first embodiment, further includes:
[0111] At least one disassembly structure 108 is provided, and at least one disassembly structure 108 is distributed on one side of the main unit 102. Furthermore, a non-pressing snap-fit structure can be used between the processing device 104 and the main unit 102 on the other side of the main unit 102. That is, during the user's disassembly and assembly of the processing device 104, the pressing part 112 of the disassembly structure 108 located on one side of the main unit can be pressed first. After disassembly is completed on the side where the disassembly structure 108 is provided, the other side of the main unit can be automatically disassembled.
[0112] Furthermore, each disassembly structure 108 includes at least two spaced-apart second fixing parts 110; correspondingly, at least two spaced-apart first fixing parts 106 are provided on the same side of the processing device 104. When the processing device 104 is installed on the main unit 102, there are at least two fixing positions between the processing device 104 and the main unit 102 on the same side of the air handling equipment. This ensures that the force between the processing device 104 and the main unit 102 is uniform, and also ensures the stability and firmness of the connection between the processing device 104 and the main unit 102.
[0113] In a specific embodiment, any disassembly structure 108 includes two spaced-apart second fixing parts 110, and two spaced-apart first fixing parts 106 are provided on the same side of the processing device 104. On the same side of the air processing equipment, the processing device 104 and the host 102 have two fixed positions.
[0114] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0115] The eighth embodiment of the present invention proposes an air handling device, which, based on the first embodiment, further includes:
[0116] like Figure 4 and Figure 5As shown, the number of disassembly structures 108 can be at least two, and at least two disassembly structures 108 are arranged on opposite sides of the main unit 102; correspondingly, at least two first fixing parts 106 are provided on the processing device 104, and at least two first fixing parts 106 are arranged on opposite sides of the processing device 104. In this way, through the cooperation of at least two first fixing parts 106 and at least two second fixing parts 110, the processing device 104 can be guaranteed to have at least two fixed positions, ensuring the stable installation of the processing device 104.
[0117] In addition, such as Figure 4 and Figure 5 As shown, at least two disassembly structures 108 are distributed on opposite sides of the main unit 102, ensuring that the operation positions for assembling and disassembling the processing device 104 are on opposite sides of the main unit 102, which conforms to user operating habits. That is, the user can complete the operation simply by pressing the pressing part 112 from opposite sides of the main unit 102, which is very convenient.
[0118] In this embodiment, further, as Figure 4 and Figure 5 As shown, at least two disassembly structures 108 are symmetrically distributed on opposite sides of the main unit 102. This ensures that the user does not need to distinguish the direction during the assembly of the processing device 104, forming a foolproof design. As long as the second fixing part 110 of the disassembly structure 108 is aligned with the first fixing part 106 on the main unit 102, it is convenient for the user to operate.
[0119] Furthermore, the aforementioned first fixing part 106 is provided on all four sides of the processing device 104, and each first fixing part 106 can be used in conjunction with the second fixing part 110 of the disassembly structure 108 on the main unit 102. That is, during the process of disassembling and assembling the processing device 104, the user does not need to distinguish the installation direction of the processing device 104 (i.e., does not need to distinguish the front and back sides and left and right sides of the processing device 104), but only needs to ensure that the processing device 104 and the main unit 102 are in relative positions to complete the disassembly and assembly, which is convenient for the user.
[0120] In specific embodiments, such as Figure 4 and Figure 5As shown, there are two disassembly structures 108, located on opposite sides of the main unit 102. Correspondingly, the processing device 104 is provided with four first fixing parts 106, located around the processing device 104, ensuring that the four first fixing parts 106 are properly positioned on the processing device 104. Thus, through the cooperation of the two disassembly structures 108 and the two first fixing parts 106, the processing device 104 can be restrained in two positions, ensuring a secure assembly relationship between the processing device 104 and the main unit 102. Furthermore, when the user needs to disassemble and assemble the processing device 104, they only need to press the pressing parts 112 from both sides of the main unit 102, conforming to user operating habits and facilitating disassembly and assembly.
[0121] It should be noted that this embodiment only uses two disassembly structures 108 as an example for explanation. The number of disassembly structures 108 in this invention is not limited to two. They can be designed according to the actual situation. As long as the processing device 104 and the host 102 can be disassembled and installed, it is possible.
[0122] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0123] The ninth embodiment of the present invention proposes an air handling device, which, based on the first embodiment, further includes:
[0124] like Figure 4 , Figure 5 and Figure 6 As shown, the host 102 includes a base 124. The processing device 104 is disposed at the bottom of the host 102 and is detachably connected to the base 124. Specifically, a detachment structure 108 is disposed on the base 124, that is, the base 124 is assembled and connected to the processing device 104 through the detachment structure 108.
[0125] In this embodiment, alternatively, such as Figure 3 and Figure 4 As shown, one of the first fixing part 106 and the second fixing part 110 is a snap-fit, and the other is a slot that mates with the snap-fit. Thus, the processing device 104 can be detachably installed through the engagement of the snap-fit and the slot. Specifically, during the assembly of the processing device 104, the snap-fit is simply engaged into the slot; during the disassembly of the processing device 104, the snap-fit is simply disengaged from the slot.
[0126] In a specific embodiment, the first fixing part 106 is a slot and the second fixing part 110 is a buckle.
[0127] In this embodiment, the first fixing part 106 and the second fixing part 110 may optionally be two compatible snap-fit fasteners. This allows for the detachable installation of the processing device 104 via two compatible snap-fit fasteners. Specifically, during the assembly of the processing device 104, simply engaging the two snap-fit fasteners is sufficient; during the disassembly of the processing device 104, simply disassembling the two snap-fit fasteners is sufficient.
[0128] It should be noted that this embodiment only uses the snap-fit and slot engagement and snap-fit engagement as examples to illustrate the first fixing part 106 and the second fixing part 110. The first fixing part 106 and the second fixing part 110 in this invention are not limited to the above forms. Different structures can be adopted in actual design. As long as the detachable installation of the processing device 104 and the host 102 can be guaranteed, it is all possible.
[0129] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0130] The tenth embodiment of the present invention proposes an air handling device, which, based on the first embodiment, further includes:
[0131] like Figure 1 As shown, the processing device 104 includes a mounting structure 126 and a functional module 128. A first fixing part 106 is disposed on the mounting structure 126, allowing the mounting structure 126 to be connected to a second fixing part 110 of the disassembly structure 108 on the main unit 102 via the first fixing part 106, ensuring proper assembly between the two. The functional module 128 is disposed on the mounting structure 126 and can process air during the operation of the air processing equipment.
[0132] In this embodiment, the functional module 128 further includes, but is not limited to, one or more of the following: a filtration module, a purification module, a humidification module, an aromatherapy module, and a heating module. Thus, when the functional module 128 includes a filtration module, it can filter the environment of the space where the air handling unit is located; when the functional module 128 includes a purification module, it can purify the environment of the space where the air handling unit is located; when the functional module 128 includes a humidification module, it can humidify the environment of the space where the air handling unit is located; when the functional module 128 includes an aromatherapy module, it can release fragrance into the space where the air handling unit is located; and when the functional module 128 includes a heating module, it can radiate heat to the surroundings.
[0133] In this embodiment, further, as Figure 3 As shown, the mounting structure 126 includes an air inlet grille 130, a base 132, and a cover 134. The air inlet grille 130 has an air inlet to ensure airflow. The cover 134 and the base 132 are respectively located at opposite ends of the air inlet grille 130. The cover 134 is located at the top of the air inlet grille 130 and has a first fixing part 106, which cooperates with the second fixing part 110 of the disassembly structure 108 on the main unit 102. The base 132 is located at the bottom of the air inlet grille 130 to provide support and fixation.
[0134] Furthermore, the air handling equipment proposed in this embodiment has all the beneficial effects of the air handling equipment in Embodiment 1. On the one hand, it is convenient for users to operate, and on the other hand, users can replace and clean the handling equipment and replace different types of handling devices 104 to achieve multi-functional use of air handling, which will not be discussed in detail again.
[0135] The eleventh embodiment of the present invention proposes an air handling device, which, based on the first embodiment, further includes:
[0136] like Figure 1 As shown, the air handling unit also includes a display device. The display device is mounted on the main unit 102 and has a selection area and a display area to select different functional modes of operation for the air handling unit 104 and to display the current functional mode of the air handling unit.
[0137] In addition, the air handling equipment also includes a gas disturbance device. The gas disturbance device is located inside the main unit 102 and can drive airflow when the air handling equipment is operating to process the gas.
[0138] In a specific embodiment, the air handling equipment can be a purifier, air conditioner, dehumidifier, heater, aroma diffuser, etc.
[0139] In a specific embodiment, the air handling unit further includes a main control board, a motor, an adapter, a dust sensor, an ambient light, and a sterilization device. The motor is connected to the main control board and provides power output to the air handling unit; the adapter is connected to the main control board; the dust sensor is connected to the main control board and can be used to detect dust entering the environment; the ambient light is connected to the main control board and is located at the connection between the main unit and the handling device to enhance the aesthetics of the air handling unit; and the sterilization device is connected to the main control board and can release ultraviolet light to achieve a sterilization effect.
[0140] like Figure 1 The specific embodiment of the present invention shown provides an air handling device, including: a main unit 102, a handling device 104, and a disassembly structure 108. Wherein, as... Figure 2 and Figure 3 As shown, the disassembly structure 108 is provided on the main unit 102. The disassembly structure 108 has a pressing part 112 and a second fixing part 110 for cooperation. The pressing part 112 can drive the second fixing part 110 to move. The processing device 104 is provided with a first fixing part 106, which is adapted to the second fixing part 110. Thus, the processing device 104 can be detachably installed on the main unit 102 through the cooperation of the second fixing part 110 and the first fixing part 106, which is convenient for user operation.
[0141] In this embodiment, further, as Figure 4 and Figure 5 As shown, the main unit 102 is provided with an abutment portion 114, and the disassembly structure 108 also includes a spring 116a. The abutment portion 114 is located inside the main unit 102, and both ends of the spring 116a abut against the abutment portion 114 and the pressing portion 112 respectively, ensuring that the spring 116a is in a compressed state. In addition, a torsion spring 116b can also be provided in the disassembly structure 108 to replace the spring 116a. Specifically, the torsion spring 116b is directly sleeved on the rotating portion 120 of the disassembly structure 108 and abuts against the main unit 102.
[0142] In this embodiment, the main unit 102 is further provided with a mounting portion 118, and the disassembly structure 108 further includes a rotating portion 120. The mounting portion 118 is disposed inside the main unit 102, and the rotating portion 120 is rotatably mounted inside the mounting portion 118 to ensure a rotatable connection between the disassembly structure 108 and the main unit 102. Specifically, the rotating portion 120 and the second fixing portion 110 are located on opposite sides of the pressing portion 112. Specifically, the mounting portion 118 is a snap-fit groove, and the rotating portion 120 is a rotating shaft. Further, the disassembly structure 108 also includes an indicator mark 122. The indicator mark 122 is disposed on the outer surface of the pressing portion 112 to clearly indicate the location of the pressing portion 112 for user operation. Optionally, one of the first fixing portion 106 and the second fixing portion 110 is a snap-fit, and the other is a snap-fit groove that cooperates with the snap-fit. Optionally, the first fixing portion 106 and the second fixing portion 110 are two compatible snap-fits.
[0143] In this embodiment, further, as Figure 4 and Figure 5 As shown, there are at least two disassembly structures 108, and the at least two disassembly structures 108 are arranged on opposite sides of the main unit 102; correspondingly, the processing device 104 is provided with at least two first fixing parts 106, and the at least two fixing parts are arranged on opposite sides of the processing device 104. Specifically, the at least two disassembly structures 108 are symmetrically distributed on opposite sides of the main unit 102.
[0144] In this embodiment, further, as Figure 4 , Figure 5 and Figure 6 As shown, the host 102 includes a base 124. The processing device 104 is disposed at the bottom of the host 102 and is detachably connected to the base 124. Specifically, a detachment structure 108 is disposed on the base 124, that is, the base 124 is assembled and connected to the processing device 104 through the detachment structure 108.
[0145] In this embodiment, further, as Figure 1 As shown, the processing device 104 includes a mounting structure 126 and a functional module 128. A first fixing part 106 is disposed on the mounting structure 126, allowing the mounting structure 126 to be connected to a second fixing part 110 of the disassembly structure 108 on the main unit 102 via the first fixing part 106, ensuring proper assembly. The functional module 128 is disposed on the mounting structure 126 and can process air during operation of the air handling equipment. Specifically, the functional module 128 includes, but is not limited to, one or more of a filtration module, a purification module, a humidification module, and an aromatherapy module.
[0146] In this embodiment, further, as Figure 3 As shown, the mounting structure 126 includes an air inlet grille 130, a base 132, and a cover 134. The air inlet grille 130 has an air inlet to ensure airflow. The cover 134 and the base 132 are respectively located at opposite ends of the air inlet grille 130. The cover 134 is located at the top of the air inlet grille 130 and has a first fixing part 106, which cooperates with the second fixing part 110 of the disassembly structure 108 on the main unit 102. The base 132 is located at the bottom of the air inlet grille 130 to provide support and fixation.
[0147] In this embodiment, further, as Figure 1 As shown, the air handling unit also includes a display device. The display device is mounted on the main unit 102 and has a selection area and a display area to select different functional modes of operation of the air handling unit 104 and to display the functional mode in which the air handling unit is operating.
[0148] In this embodiment, the air handling equipment further includes a gas agitation device. This gas agitation device is disposed inside the main unit 102 and can drive airflow during operation of the air handling equipment to process the gas.
[0149] In this embodiment, the air handling equipment can be a purifier, air conditioner, dehumidifier, heater, aroma diffuser, etc.
[0150] like Figure 1 , Figure 2 and Figure 3 As shown, the air treatment device proposed in this invention includes a display device, a main unit 102, a disassembly structure 108, a functional module 128, and an installation structure 126. The disassembly mechanism is symmetrically arranged on the left and right sides of the unit body. The purification module is installed within the installation structure 126, which has a first fixing part 106 connected to the disassembly mechanism.
[0151] In specific embodiments, such as Figure 2 and Figure 4 As shown, the disassembly mechanism includes a rotating part 120, a pressing part 112, a second fixing part 110, and an elastic element 116. The rotating part 120 at the top of the disassembly mechanism is engaged with the mounting part 118 of the base 124 by the elasticity of the plastic. The elastic element 116 is fixed between the back of the pressing part 112 and the abutting part 114 of the base 124. Specifically, the rotating part 120 can be a pivot, the pressing part 112 can be a button, the second fixing part 110 can be a snap-fit, and the elastic element 116 can be a spring.
[0152] Specifically, such as Figure 8 As shown, one end of the elastic element 116 is fixed to the end of the pressing part 112, and the other end abuts against the abutting part 114 of the base 124, so that the elastic element 116 has a certain amount of pre-deformation during installation.
[0153] Specifically, such as Figure 4 and Figure 7 As shown, the rotating part 120 at the top of the disassembly mechanism is engaged in the mounting part 118 of the base 124 by the elasticity of the plastic, and the second fixing part 110 extends out from the notch of the base 124.
[0154] In specific embodiments, such as Figure 3 As shown, the mounting structure 126 includes a cover 134, an air inlet grille 130, and a base 132. The functional module 128 is directly placed inside the mounting structure 126. Four evenly spaced second fixing parts 110 are arranged around the cover 134, which cooperate with the first fixing parts 106 of the two disassembly mechanisms. The second fixing parts 110 on the mounting structure 126 are symmetrically designed, eliminating the need for directional differentiation during installation and facilitating user operation.
[0155] In specific embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, the present invention features a simple and easy-to-operate disassembly mechanism, with two disassembly mechanisms arranged on the left and right sides of the main unit 102, respectively. Figure 2As shown, the disassembly mechanism includes a rotating part 120, a pressing part 112, a second fixing part 110, and elastic members 116. The rotating part 120 at the top of the disassembly mechanism is engaged into the mounting part 118 of the base 124 by the elastic action of the plastic. The second fixing part 110 at the bottom of the disassembly mechanism extends from the notch in the base 124 and cooperates with the first fixing part 106 of the mounting structure 126. Two elastic members 116 are fixed between the back of the pressing part 112 and the abutment part 114 of the base 124. The rotating part 120 can rotate freely. By pressing the pressing parts 112 of the two disassembly mechanisms on the left and right sides, the user can deform the elastic members 116, causing the first fixing part 106 and the second fixing part 110 to loosen, thereby disassembling the mounting structure 126. Figure 3 As shown, the mounting structure 126 includes a cover 134, an air inlet grille 130, and a base 132. The functional module 128 is directly placed inside the mounting structure 126. The mounting structure 126 is independent of the main unit 102. Different users' needs can be met by replacing this structure. Since the mounting structure 126 is made of all plastic parts, users can directly perform a thorough and effective water wash on the mounting structure 126.
[0156] In a specific embodiment, the air handling device proposed in this invention is an air purifier. Specifically, a filter is installed on the air inlet grille 130 of the mounting structure 126, and the internal functional module 128 of the mounting structure 126 is a purification module.
[0157] In a specific embodiment, the air handling device proposed in this invention is a humidifier. The mounting structure 126 also includes a water tank, and the internal functional module 128 of the mounting structure 126 is a humidification module. The humidification module is connected to the water tank and can generate water vapor during operation.
[0158] In a specific embodiment, the air handling device proposed in this invention is a heater. The functional module 128 inside the mounting structure 126 is a heating module, and the mounting structure 126 is made of heat-resistant material.
[0159] In a specific embodiment, the air treatment device proposed in this invention is an aromatherapy diffuser. The internal functional module 128 of the mounting structure 126 is an aromatherapy module.
[0160] In the description of this invention, the term "a plurality of" refers to two or more. Unless otherwise explicitly defined, the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship 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, and therefore should not be construed as a limitation of the invention. The terms "connection," "installation," "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this invention can be understood according to the specific circumstances.
[0161] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0162] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. An air handling device, characterized in that, include: Host; The processing device is detachably mounted on the host, and the processing device is provided with a first fixing part; A detachable structure, rotatably mounted on the main unit, the detachable structure comprising at least: The second fixing part is engaged with the first fixing part; The pressing part is connected to the second fixing part. Pressing the pressing part can drive the second fixing part to release the first fixing part. The number of the disassembly structures is at least two, and the at least two disassembly structures are symmetrically distributed on opposite sides of the host. The first fixing part is provided on all four sides of the processing device, and each of the first fixing parts can be used in conjunction with the second fixing part of the disassembly structure of the host. The disassembly structure also includes an elastic element; The host is provided with an abutting part, and the elastic element abuts between the pressing part and the abutting part; The abutting portion is provided with a guide groove, and at least a portion of the elastic element is located within the guide groove; The disassembly structure also includes a rotating part, which is connected to the second fixing part on both sides opposite to the pressing part, and the rotating part is rotatably connected to the main unit; The rotating part is located on the opposite sides of the pressing part connected to the second fixing part. The rotating part and the second fixing part are located at both ends of the disassembly structure. The distance between the second fixing part and the rotating part is greater than the distance between the pressing part and the rotating part. Any of the disassembly structures includes at least two spaced-apart second fixing parts; At least two of the first fixing parts are provided at intervals on the same side of the processing device; On the same side of the air handling equipment, the handling device and the main unit have two fixed positions.
2. The air handling equipment according to claim 1, characterized in that, The elastic element can be used to reset the pressing part.
3. The air handling equipment according to claim 2, characterized in that, The elastic element is a spring.
4. The air handling equipment according to any one of claims 1 to 3, characterized in that, The host is provided with a mounting part, and the rotating part is rotatably disposed within the mounting part.
5. The air handling equipment according to claim 4, characterized in that, The mounting part is a snap-fit groove, and the rotating part is a rotating shaft; The rotating shaft is engaged in the engagement slot.
6. The air handling equipment according to any one of claims 1 to 3, characterized in that, The disassembly structure also includes: An indicator mark is provided on the pressing part.
7. The air handling apparatus according to any one of claims 1 to 3, characterized in that, The host includes a base, the disassembly structure is disposed on the base, and the processing device is detachably connected to the base.
8. The air handling apparatus according to any one of claims 1 to 3, characterized in that, One of the first fixing part and the second fixing part is a buckle, and the other is a slot that mates with the buckle; or The first fixing part and the second fixing part are two buckles that are adapted to each other.
9. The air handling apparatus according to any one of claims 1 to 3, characterized in that, The processing device includes: The mounting structure, wherein the first fixing part is disposed on the mounting structure; Functional modules are provided in the installation structure; The mounting structure is engaged with the second fixing part of the disassembly structure via the first fixing part.
10. The air handling equipment according to claim 9, characterized in that, The functional modules include at least one of the following or a combination thereof: a filtration module, a purification module, a humidification module, an aromatherapy module, and a heating module.
11. The air handling equipment according to claim 9, characterized in that, The mounting structure includes: Air intake grille; The base is located at one end of the air intake grille; A cover is disposed at the other end of the air inlet grille, and the first fixing part is disposed on the cover.
12. The air handling apparatus according to any one of claims 1 to 3, characterized in that, Also includes: A display device is mounted on the host computer; A gas disturbance device is installed inside the main unit.
13. The air handling apparatus according to any one of claims 1 to 3, characterized in that, The air handling equipment is one of the following: air purifier, air conditioner, dehumidifier, heater, or aromatherapy diffuser.
Citation Information
Patent Citations
Air purifier
CN109855208A
Filtering mechanism be liable to change's air purifier
CN207350545U
Operating handle mechanism of switch cabinet
CN208908193U