Air outlet components, air handling devices and air conditioners
By designing a driveable air guide mechanism in the air treatment equipment, the top air outlet is achieved, which solves the problem of a single air outlet method of existing equipment and improves the user experience.
Patent Information
- Application Number
- CN202110184146.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-02-08
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2041-02-08
AI Technical Summary
The air outlet method of existing air treatment equipment is single, which is difficult to meet users' needs for high-quality life.
A wind outlet component is designed, including a wind outlet box and a wind guide mechanism. The driving component drives the wind guide mechanism up and down to realize the top air outlet. The gear transmission mechanism and the driving motor are used to realize the automatic opening and closing of the wind guide mechanism.
The air discharge effect on the top of the air treatment equipment is realized, the user experience is improved, and the user's needs for diverse air discharge methods are met.
Smart Images

Figure CN114909710B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air treatment equipment, and in particular to an air outlet component, an air treatment device and an air conditioner. Background Art
[0002] Air handling devices in related technologies, such as those with fresh air functions, typically have air outlets located on the side of the outlet structure, resulting in a relatively simple and conventional air distribution method. With the upgrading of consumption and the pursuit of a higher quality of life, conventional air handling devices are unable to meet the needs of users. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, one purpose of the present invention is to provide an air outlet component that can achieve the effect of top air outlet, improve user experience, and further meet user needs.
[0004] The present invention also aims to provide an air treatment device comprising the above-mentioned air outlet component.
[0005] The present invention also aims to provide an air conditioner comprising the above-mentioned air treatment device.
[0006] According to an embodiment of the present invention, the air outlet component includes: an air outlet box body, a first air outlet is formed on the top of the air outlet box body; an air guide mechanism, the air guide mechanism is movably provided on the air outlet box body to open and close the first air outlet; and a driving component for driving the air guide mechanism to move up and down.
[0007] According to the air outlet component of an embodiment of the present invention, a first air outlet is formed at the top of the air outlet box. Under the action of the driving component, the air guide mechanism can move up and down to open or close the first air outlet, thereby achieving the effect of top air outlet, improving user experience and further meeting user needs.
[0008] In some embodiments, the air outlet box includes a box body and an air outlet piece, a mounting port is formed on the top of the box body, the air outlet piece is arranged at the mounting port, the first air outlet is formed on the air outlet piece, and the driving component includes: a driving part, the driving part is arranged on the air guide mechanism; a driving mechanism, the driving mechanism is arranged on the air outlet piece, and the driving mechanism and the driving part can be transmission-coordinated to drive the air guide mechanism to move up and down.
[0009] Optionally, the driving mechanism includes: a gear transmission mechanism, the gear transmission mechanism includes at least one gear, the driving part is a rack, and the gear located at the end of the gear transmission mechanism is engaged with the rack; a driving motor, the driving motor is connected to the gear transmission mechanism to drive the gear transmission mechanism to move.
[0010] Furthermore, the driving mechanism includes a driving box, which is connected to the air outlet member, and the driving motor and the gear transmission mechanism are arranged in the driving box. An avoidance opening is formed on the driving box, and the tooth portion of the gear located at the end of the gear transmission mechanism extends out of the driving box through the avoidance opening and engages with the rack.
[0011] Optionally, the air outlet member includes: an air outlet portion, which is arranged at the mounting port and has the first air outlet formed on it; a mounting portion, which is connected to the bottom of the air outlet portion, and the driving mechanism is connected to the mounting portion and is located below the air outlet portion.
[0012] Furthermore, the projection of the mounting portion on the horizontal plane and the projection of the driving mechanism on the horizontal plane are both located within an outer contour line of the projection of the air outlet portion on the horizontal plane.
[0013] In some embodiments, the air outlet portion includes an air outlet grille located at the first air outlet, the air outlet grille includes at least one inclined sub-air outlet grille, the inclined sub-air outlet grille extends upward in a direction from a connection between the air outlet portion and the mounting portion to an outer edge of the air outlet portion, wherein the driving mechanism is located below the inclined sub-air outlet grille.
[0014] Optionally, the air outlet grille includes a plurality of inclined sub-air outlet grilles, wherein the driving mechanism is located below the sub-air outlet grille with the largest inclination angle, and the inclination angle is the angle between the sub-air outlet grille and a horizontal plane.
[0015] In some examples, the air outlet member is detachably provided at the installation opening.
[0016] In some embodiments, the air guide mechanism includes an air guide member and a mounting seat, the air guide member is used to open and close the first air outlet, the mounting seat is connected below the air guide member, and the driving part is provided on the mounting seat.
[0017] Furthermore, the air outlet member includes: an air outlet portion, which is arranged at the mounting port, and the first air outlet is formed on the air outlet portion; a mounting portion, which is connected to the bottom of the air outlet portion, and the driving mechanism is connected to the mounting portion, and a accommodating cavity with an open top is defined in the mounting portion, and the mounting seat can be movably arranged in the accommodating cavity up and down, and the accommodating cavity is open toward one side of the driving mechanism to form a first open port, and the driving portion is opposite to or located at the first open port.
[0018] In some embodiments, the air outlet component includes: a mounting part, which is provided on the air guide mechanism, and the mounting part and the air guide mechanism are both independently molded parts; the driving component includes: a driving part, which is provided on the mounting part, and the driving part and the mounting part are integrally formed; a driving mechanism, which is provided on the air outlet box body, and the driving mechanism and the driving part can be transmission-coordinated to drive the air guide mechanism to move up and down.
[0019] Optionally, the air guide mechanism includes an air guide member and a mounting seat, the air guide member is used to open and close the first air outlet, the mounting seat is connected below the air guide member, a mounting notch is formed on the mounting seat, and the mounting member is arranged in the mounting notch.
[0020] Furthermore, the mounting member is detachably connected to the air guide mechanism, a positioning protrusion is formed on the mounting member, a positioning groove is formed on the air guide mechanism, and the positioning protrusion is suitable for being accommodated in the positioning groove.
[0021] In some examples, there are two positioning protrusions spaced apart from each other, and the two positioning protrusions protrude in a direction away from each other.
[0022] Optionally, at least one second air outlet is formed on the circumferential side wall of the air outlet box.
[0023] According to an embodiment of the present invention, the air treatment device includes: an air treatment unit, the air treatment unit having an air inlet; an air outlet component, the air outlet component being the air outlet component according to any one of the foregoing, the air outlet component being arranged in the air treatment unit, and the air entering from the air inlet flows into the air outlet component after passing through the air treatment unit, and is suitable for being blown out through the first air outlet.
[0024] The air treatment device according to the embodiment of the present invention can achieve the effect of top air outlet by providing the above-mentioned air outlet components and air treatment unit, thereby improving user experience and further meeting user needs.
[0025] According to an embodiment of the present invention, the air conditioner includes: a casing having a first air outlet formed thereon; an air treatment device disposed in the casing, the air treatment device being any of the air treatment devices described above, and when the air guide mechanism opens the first air outlet, the first air outlet is connected to the first air outlet.
[0026] According to the air conditioner of the embodiment of the present invention, by providing the above-mentioned air treatment device, when achieving cooling / heating, the air processed by the air treatment unit can be discharged from the top of the air treatment device, which can improve the user experience and further meet the user needs.
[0027] In some embodiments, the air inlet is adapted to communicate with outdoor air.
[0028] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments with reference to the accompanying drawings, in which:
[0030] Figure 1 1 is an exploded diagram of an air outlet component in an embodiment of the present invention;
[0031] Figure 2 This is a partial explosion diagram of the air outlet component in an embodiment of the present invention. Figure 1 ;
[0032] Figure 3 This is a partial explosion diagram of the air outlet component in an embodiment of the present invention. Figure 2 ;
[0033] Figure 4 yes Figure 3 A partial enlarged schematic diagram of IV;
[0034] Figure 5 is a schematic diagram of the cooperation between the driving portion and the guide member in an embodiment of the present invention;
[0035] Figure 6 This is a partial explosion diagram of the air outlet component in an embodiment of the present invention. Figure 3 ;
[0036] Figure 7 is an exploded schematic diagram of a drive assembly according to an embodiment of the present invention;
[0037] Figure 8 is a partial structural diagram of an air treatment device in an embodiment of the present invention;
[0038] Figure 9 yes Figure 8 Schematic diagram of an exploded view of an air outlet component of an air handling device;
[0039] Figure 10 1 is an exploded view of an indoor unit of an air conditioner according to an embodiment of the present invention;
[0040] Figure 11 1 is a schematic diagram of the three-dimensional structure of an indoor unit of an air conditioner in an embodiment of the present invention.
[0041] Reference numerals:
[0042] 1000, air conditioner indoor unit;
[0043] 100. Air outlet components;
[0044] 10. Air outlet box;
[0045] 101, first air outlet; 102, second air outlet; 103, air outlet cavity;
[0046] 110, box body; 1101, installation opening; 1102, accommodation groove;
[0047] 120, air outlet member; 1201, air outlet portion; 12011, sub-air outlet grille; 1202, mounting portion; 1203, accommodating cavity; 1204, first opening;
[0048] 130, guide member; 1301, guide cavity; 1302, second open port;
[0049] 140. Air guide mechanism fixing seat;
[0050] 20. Air guide mechanism;
[0051] 202, installation gap;
[0052] 210, air guide member; 2101, air guide slope; 220, mounting seat;
[0053] 30. Drive assembly;
[0054] 310, driving unit; 320, driving mechanism; 3201, gear; 3202, driving motor; 3203, driving box; 301, avoidance opening; 302, second mounting hole; 303, box body locking protrusion; 304, box body locking hole; 305, screw column; 306, mounting protrusion ring; 32031, first box body; 32032, second box body;
[0055] 40. Guiding structure;
[0056] 410, first guide portion; 4101, convex rib; 420, second guide portion; 4201, groove;
[0057] 510, first limiting protrusion; 520, second limiting protrusion; 530, third limiting protrusion;
[0058] 60. Mounting parts;
[0059] 601, positioning protrusion; 602, first mounting hole;
[0060] 200. Air handling unit;
[0061] 70, air induced hood; air induced cavity 701;
[0062] 2. Air handling unit; 201. Air inlet;
[0063] 21. First fan component;
[0064] 22. Humidification components;
[0065] 23. Purification components;
[0066] 700. Air heat exchange device;
[0067] 720, second fan component;
[0068] 730. Heat exchanger components;
[0069] 800, housing; 801, front panel; 8011, upper panel; 8012, lower panel; 802, air outlet frame component; 803, rear box component; 804, top cover; 805, chassis; 806, heat exchange air inlet; 807, heat exchange air outlet; 808, first air outlet; 809, second air outlet; 810, air guide plate. DETAILED DESCRIPTION
[0070] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0071] The air outlet component 100 according to an embodiment of the present invention will be described below with reference to the accompanying drawings.
[0072] like Figure 1 and Figure 2 As shown, an air outlet component 100 according to an embodiment of the present invention includes: an air outlet box 10, an air guide mechanism 20, and a driving assembly 30.
[0073] A first air outlet 101 may be formed at the top of the air outlet housing 10. Airflow entering the air outlet housing 10 may be discharged through the first air outlet 101. An air guide mechanism 20 is disposed on the air outlet housing 10 so as to be movable up and down to open and close the first air outlet 101. The up and down movement of the air guide mechanism 20 facilitates the opening and closing of the first air outlet 101. When the air guide mechanism 20 moves upward to a first position, the air guide mechanism 20 opens the first air outlet 101; when the air guide mechanism 20 moves downward to a second position, the air guide mechanism 20 closes the first air outlet 101. The drive assembly 30 is used to drive the air guide mechanism 20 to move up and down, achieving automatic raising and lowering of the air guide mechanism 20, thereby achieving automatic opening and closing of the first air outlet 101.
[0074] The air outlet component 100 of the present invention can be used in air handling equipment or air conditioners to achieve a top-outlet airflow effect. When the air outlet component 100 needs to discharge air through the first air outlet 101, the drive assembly 30 drives the air guide mechanism 20 upward, causing the air guide mechanism 20 to rise and gradually move away from the air outlet housing 10, opening the first air outlet 101. At this time, the air outlet component 100 can achieve top-outlet airflow. When the top first air outlet 101 of the air outlet component 100 is no longer needed to discharge air, the drive assembly 30 drives the air guide mechanism 20 downward, causing the air guide mechanism 20 to gradually move closer to the air outlet housing 10 and engage with the first air outlet 101, thereby closing the first air outlet 101.
[0075] By opening a first air outlet 101 at the top of the air outlet box 10, top air outlet can be achieved, providing a new air outlet method. By driving the air guide mechanism 20 to rise and fall by the driving component 30, the first air outlet 101 at the top of the air outlet box 10 can be easily opened and closed, achieving the effect of top air outlet, which can improve user experience and further meet user needs.
[0076] According to the air outlet component 100 of an embodiment of the present invention, a first air outlet 101 is formed on the top of the air outlet box 10. The driving component 30 can drive the air guide mechanism 20 to move up and down to open or close the first air outlet 101, thereby achieving the effect of top air outlet, improving user experience, and further meeting user needs.
[0077] In some embodiments of the present invention, Figure 1 As shown, the air outlet box 10 may include a box body 110 and an air outlet member 120. A mounting opening 1101 is formed on the top of the box body 110. The air outlet member 120 may be located at the mounting opening 1101. A first air outlet 101 is formed on the air outlet member 120. After air enters the air outlet box 10, the airflow enters the box body 110 and is then blown out through the first air outlet 101 on the air outlet member 120. The drive assembly 30 includes a drive unit 310 and a drive mechanism 320. The drive unit 310 may be located on the air guide mechanism 20, and the drive mechanism 320 may be located on the air outlet member 120. The drive mechanism 320 and the drive unit 310 may be drivably matched to drive the drive unit 310 to move up and down. By setting the air outlet box body 10 to a structure including a box body main body 110 and an air outlet member 120, and setting the air guide mechanism 20 on the air outlet member 120, the installation and fixation of the driving mechanism 320 is facilitated, and the structure of the air outlet member 100 is made compact. This arrangement method facilitates the transmission coordination between the driving mechanism 320 and the driving part 310, and can achieve a compact layout and save space.
[0078] Alternatively, as Figure 6 and Figure 7As shown, the drive mechanism 320 includes: a gear transmission mechanism and a drive motor 3202. The gear transmission mechanism includes at least one gear 3201. The driving part 310 is a rack. The gear 3201 at the end of the gear transmission mechanism is engaged with the rack. The drive motor 3202 is connected to the gear transmission mechanism to drive the gear transmission mechanism to move. For example, the drive motor 3202 drives the gear 3201 at the end to rotate clockwise. After the gear 3201 engages the rack, it drives the rack upward, and the rack drives the air guide mechanism 20 to move upward to open the first air outlet 101; when the drive motor 3202 drives the gear 3201 at the end to rotate counterclockwise, the gear 3201 engages the rack and drives the rack downward. The air guide mechanism 20 moves downward to close the first air outlet 101. The use of this gear and rack combination to drive the air guide mechanism to rise and fall has a simple structure, stable transmission, and strong reliability.
[0079] Specifically, if Figure 6 and Figure 7 As shown, the gear transmission mechanism may include a gear 3201. When the gear transmission mechanism includes a gear 3201, the gear 3201 is the gear 3201 at the end of the gear transmission mechanism. The gear 3201 is connected to the motor shaft of the drive motor 3202. The gear 3201 engages the rack. As the drive motor 3202 drives the gear 3201 to rotate, the rack is driven up and down, thereby causing the rack to drive the air guide mechanism 20 to move up or down. The use of a single gear 3201 can simplify the structure of the drive mechanism 320 and reduce costs. Of course, the gear transmission mechanism can also be a plurality of gears that mesh in sequence, wherein the gear at the starting end is connected to the motor shaft of the drive motor 3202, and the gear at the end engages the rack, which can also drive the air guide mechanism 20 to move up and down.
[0080] Furthermore, if Figure 6 and Figure 7 As shown, the drive mechanism 320 may further include a drive box 3203, which may be connected to the air outlet member 120, and the drive motor 3202 and the gear transmission mechanism may both be disposed within the drive box 3203. A clearance opening 301 is formed on the drive box 3203, through which the teeth of the gear 3201 at the end of the gear transmission mechanism extend out of the drive box 3203 and engage with the rack (i.e., the drive unit 310), facilitating the engagement of the gear 3201 at the end of the gear transmission mechanism with the drive unit 310 located outside the drive box 3203. The drive box 3203 can provide an installation location for the gear transmission mechanism and the drive motor 3202, and can also protect the gear transmission mechanism and the drive motor 3202, preventing dust or other contaminants from entering the gear-rack meshing, thereby ensuring the overall performance of the drive mechanism 320.
[0081] In some specific embodiments of the present invention, the gear transmission mechanism includes a gear 3201. A mounting collar 306 is formed on the inner wall of a drive box 3203. The mounting collar 306 is positioned adjacent to the clearance opening 301 in the drive box 3203. One end of the gear shaft of the gear 3201 is connected to and fixed relative to the motor shaft of the drive motor 3202. The other end of the gear shaft of the gear 3201 is received in a mating hole defined by the mounting collar 306 and is rotatable relative to the mating hole defined by the mounting collar 306. The provision of the mounting collar 306 ensures more stable and reliable installation of the gear 3201, thereby ensuring more stable and reliable transmission of the gear 3201.
[0082] In some embodiments, such as Figure 2 and Figure 6 As shown, the drive box 3203 can be detachably mounted on the air outlet member 120. Specifically, the drive box 3203 can be detachably mounted on the air outlet member 120 by means of bolts. For example, a second mounting hole 302 is provided on the drive box 3203, and a threaded hole is provided on the air outlet member 120. The fastener is passed through the second mounting hole 302 and engaged with the threaded hole.
[0083] According to some embodiments of the present invention, referring to Figure 8 and Figure 9 The drive assembly 30 includes: a drive unit 310 and a drive mechanism 320. The drive unit 310 is provided on the air guide mechanism 20, and the drive mechanism 320 is provided on the air outlet box 10. The drive mechanism 320 and the drive unit 310 can cooperate in a transmission manner to drive the air guide mechanism 20 to move up and down. The drive mechanism 320 includes a gear transmission mechanism and a drive motor 3202. The gear transmission mechanism includes at least one gear 3201. The drive unit 310 is a rack. The gear 3201 located at the end of the gear transmission mechanism is engaged with the rack. The drive motor 3202 is connected to the gear transmission mechanism to drive the gear transmission mechanism to move. When the drive motor 3202 drives the gear transmission mechanism to move, the gear 3201 located at the end of the gear transmission mechanism is engaged with the rack to drive the rack to move up and down, thereby driving the air guide mechanism 20 to move up and down. The method of using this gear and rack combination to drive the air guide mechanism to move up and down has a simple structure, stable transmission, and strong reliability.
[0084] The air outlet housing 10 defines an air outlet cavity 103 in communication with the first air outlet 101, and the drive motor 3202 is located outside the air outlet cavity 103. Placing the drive motor 3202 outside the air outlet cavity 103 can prevent the airflow within the air outlet cavity 103 from affecting the drive motor 3202. For example, when the airflow entering the air outlet cavity 103 is humidified airflow, the high humidity of the airflow can adversely affect the drive motor 3202. This arrangement can prevent the airflow within the air outlet cavity 103 from affecting the drive motor 3202, thereby improving the reliability of the drive motor 3202 and extending the service life of the drive motor 3202.
[0085] Optionally, at least a portion of the gear transmission mechanism is located within the air outlet cavity 103. For example, the entire gear transmission mechanism may be located within the air outlet cavity 103. Alternatively, a portion of the gear transmission mechanism may be located within the air outlet cavity 103, while another portion of the gear transmission mechanism may be located outside the air outlet cavity 103. By disposing at least a portion of the gear transmission mechanism within the air outlet cavity 103, the overall structure of the air outlet component 100 becomes compact.
[0086] Optionally, refer to Figure 9 A receiving groove 1102 may be formed on the outer wall of the air outlet box body 10, and the receiving groove 1102 may pass through the side wall of the air outlet box body 10. The drive motor 3202 may be located outside the air outlet cavity 103 and accommodated in the receiving groove 1102, thereby making the structure compact.
[0087] Optionally, refer to Figure 8 The gear transmission mechanism includes a plurality of gears 3201 meshing in sequence. For example, the gear transmission mechanism includes three gears 3201 meshing in sequence. Therefore, when the drive motor 3202 is arranged outside the air outlet chamber 103, by setting the gear transmission mechanism to a structure including a plurality of gears 3201, the transmission coordination between the gear transmission mechanism and the rack can be easily realized, and the structural design of the gear transmission mechanism is more flexible. The specification size of a single gear 3201 can be set smaller, thereby reducing the weight of the gear transmission mechanism.
[0088] For example, in Figure 8 and Figure 9In the example, the driving mechanism 320 also includes a driving box 3203, wherein the gear transmission mechanism is arranged in the driving box 3203, the gear transmission mechanism includes a plurality of gears 3201 meshing in sequence, the motor shaft of the driving motor 3202 extends into the driving box 3203 and is connected to the gear 3201 located at the starting end of the gear transmission mechanism, the air outlet chamber 103 is defined in the air outlet box 10, and the above-mentioned accommodating groove 1102 can be formed on the outer wall of the air outlet box 10, the gear 3201 located at the starting end and the part of the driving box 3203 that accommodates the gear 3201 located at the starting end are located in the above-mentioned accommodating groove 1102, the remaining gears 3201 and other parts of the driving box 3203 are located in the air outlet chamber 103, and the driving motor 3202 is located outside the air outlet chamber 103 and in the accommodating groove 1102. As a result, the overall structure is made compact, and the airflow in the air outlet cavity 103 is prevented from affecting the drive motor 3202 , thereby improving the reliability of the drive motor 3202 and extending the service life of the drive motor 3202 .
[0089] Furthermore, the air outlet box 10 may include a box body 110 and an air outlet member 120, a mounting port 1101 is formed on the top of the box body 110, the air outlet member 120 may be arranged at the mounting port 1101, a first air outlet 101 is formed on the air outlet member 120, an air outlet cavity 103 is defined in the box body 110, the outer side wall of the box body 110 may be formed with the above-mentioned accommodating groove 1102, the lower part of the air outlet member 120 (such as the mounting portion 1202 described below) is located in the air outlet cavity 103, the drive box 3203 is connected to the lower part of the air outlet member 120 and the drive box 3203 is connected to the box body 110, for example, the drive box 3203 is connected to the lower part of the air outlet member 120 by fasteners such as screws, the drive box 3203 is connected to the box body 110 by a snap-fit structure, the drive box 3203 A snap is formed on the housing 110, and a snap hole is formed on the housing body 110. The snap on the driver box 3203 fits into the snap hole on the housing body 110, thereby achieving a snap connection between the driver box 3203 and the housing body 110. By connecting the driver box 3203 to the lower portion of the air outlet member 120 and the driver box 3203 to the housing body 110, the installation and fixation of the driver box 3203 can be made more stable and reliable.
[0090] It should be noted that the “plurality” mentioned in the present invention refers to two or more.
[0091] In some embodiments, such as Figure 3 and Figure 6As shown, the air outlet member 120 may include an air outlet portion 1201 and a mounting portion 1202. The air outlet portion 1201 may be disposed in the mounting opening 1101, and the first air outlet 101 may be formed on the air outlet portion 1201. The mounting portion 1202 may be connected below the air outlet portion, and the drive mechanism 320 may be connected to the mounting portion 1202 and located below the air outlet portion 1201. By configuring the air outlet member 120 to include the air outlet portion 1201 and the mounting portion 1202, the formation of the first air outlet 101 is facilitated, as is the installation and fixation of the drive mechanism 320, and the overall structure is more compact. Furthermore, since the drive mechanism is located below the air outlet portion 1201, a portion of the airflow entering the housing body 110 may pass through the drive mechanism 320 as it flows toward the air outlet portion 1201, thereby dissipating heat from the drive mechanism 320.
[0092] Furthermore, the projection of the mounting portion 1202 on the horizontal plane and the projection of the driving mechanism 320 on the horizontal plane are both located within the outer contour line of the projection of the air outlet portion 1201 on the horizontal plane. In short, the mounting portion 1202 and the driving mechanism 320 will not extend out of the air outlet portion 1201 in the horizontal direction, thereby achieving a compact structural layout and saving the internal space of the air outlet box body 10.
[0093] In some embodiments, such as Figure 3 As shown, the air outlet portion 1201 includes an air outlet grille located at the first air outlet 101. The air outlet grille includes at least one inclined sub-air outlet grille 12011. The inclined sub-air outlet grille 12011 extends upward in a direction from the connection between the air outlet portion 1201 and the mounting portion 1202 to the outer edge of the air outlet portion 1201. When the air guide mechanism 20 is engaged with the air outlet portion 1201, the inclined extension of the sub-air outlet grille 12011 facilitates the engagement of the air guide mechanism 20 with the air outlet portion 1201, thereby ensuring more reliable positioning and installation between the air guide mechanism 20 and the air outlet portion 1201. By configuring the air outlet grille to include at least one inclined sub-air outlet grille 12011, the drive mechanism 320 is located below the inclined sub-air outlet grille 12011. The inclined sub-air outlet grille 12011 can provide more installation space for the drive mechanism 320, thereby concealing the drive mechanism 320. This achieves a compact layout and saves space.
[0094] Alternatively, as Figure 3As shown, the air outlet grille includes multiple inclined sub-grilles 12011, with the drive mechanism 320 located below the sub-grill 12011 with the largest inclination angle. The inclination angle is the angle between the sub-grill 12011 and the horizontal plane. The space below the sub-grill 12011 with the largest inclination angle is larger than that below the other sub-grilles 12011, creating more space for the drive mechanism 320. Installing the drive mechanism 320 in this position allows for a more compact layout and greater space savings.
[0095] In some specific embodiments, Figure 3 As shown, the air outlet grille includes four sub-grilles 12011. Two of these sub-grilles 12011 cover the left and right portions of the first air outlet 101, while the remaining two sub-grilles 12011 cover the front and rear portions of the first air outlet 101. The sub-grilles 12011 covering the rear portion of the first air outlet 101 have the largest inclination angle. The use of four oblique sub-grilles 12011 arranged front-to-back, left-to-right, and right-to-left creates a groove structure at the first air outlet 101 of the air outlet portion 1201, facilitating the air guide mechanism 20's engagement with the air outlet portion 1201 when closed. The inclination angle of the sub-air outlet grille 12011 covering the rear part of the first air outlet 101 is the largest, so a larger space can be avoided below this position in the height direction. A driving mechanism 320 is set below this position to facilitate the installation and fixation of the driving mechanism 320, which can achieve a more compact layout, save more space, and reduce the impact on the air outlet, which is conducive to the air in the air outlet component 100 being blown out from the front part.
[0096] In some examples, the air outlet member 120 can be detachably provided at the mounting port 1101. Since the driving mechanism 320 is provided on the air outlet member 120, the air outlet member 120 can be detachably provided at the mounting port 1101, which facilitates the disassembly, maintenance and replacement of the driving mechanism 320. Moreover, this method also facilitates the later maintenance or replacement of the air outlet member 120, thereby extending the service life. The air outlet member 120 and the mounting port 1101 can be fixedly connected by screws or bolts, and can also be detachable by a snap-fit structure, such as providing a snap-fit (not shown) on one of the air outlet member 120 and the mounting port 1101, and providing a snap-fit (not shown) on the other, which can also achieve quick assembly and disassembly.
[0097] In some embodiments, such as Figure 2As shown, the air outlet box body 10 also includes an air guide mechanism fixing seat 140, which is arranged on the box body main body 110, and the air outlet member 120 is detachably arranged on the air guide mechanism fixing seat 140. The detachable manner between the air outlet member 120 and the air guide mechanism fixing seat 140 can be connected by screws or bolts, or a snap-fit structure in which a protrusion and a bayonet cooperate, and the details will not be repeated here.
[0098] In some embodiments, such as Figure 3 and Figure 6 As shown, the air guide mechanism 20 may include an air guide member 210 and a mounting base 220. The air guide member 210 is used to open and close the first air outlet 101. The mounting base 220 may be connected below the air guide member 210. The driving unit 310 may be provided on the mounting base 220. By configuring the air guide mechanism 20 to include the air guide member 210 and the mounting base 220, while realizing the opening and closing of the first air outlet 101 by the air guide mechanism 20, the installation and fixation of the driving unit 310 is facilitated.
[0099] In some embodiments, such as Figure 3 and Figure 6 As shown, a wind guide slope 2101 that cooperates with the sub-air outlet grille 1201 is formed on one side of the air guide member 210 close to the air outlet portion 1201. When the wind blows out from the sub-air outlet grille 12011, the wind guide slope 2101 can guide the wind to blow out obliquely upward from the first air outlet 101, bringing a better wind guiding effect.
[0100] In some embodiments, such as Figure 3 As shown, the air outlet grille includes a plurality of inclined sub-air outlet grilles 12011 , and the air guide member 210 includes a plurality of air guide slopes 2101 , each of which corresponds to and cooperates with each sub-air outlet grille 12011 .
[0101] Furthermore, if Figure 3 and Figure 6As shown, the air outlet member 120 includes an air outlet portion 1201 and a mounting portion 1202. The air outlet portion 1201 is arranged at the mounting port 1101, and a first air outlet 101 is formed on the air outlet portion 1201; the mounting portion 1202 is connected to the bottom of the air outlet portion 1201, and the driving mechanism 320 is connected to the mounting portion 1202. A accommodating cavity 1203 with an open top is defined in the mounting portion 1202, and the mounting seat 220 is movably arranged in the accommodating cavity 1203 up and down. The accommodating cavity 1203 is open toward one side of the driving mechanism 320 to form a first open opening 1204. The driving part 310 is opposite to or located at the first open opening 1204. The driving part 310 can be arranged in the accommodating cavity 1203 along with the mounting seat 220, and the driving mechanism 320 can partially pass through the first open opening 1204 to cooperate with the driving part 310 in transmission. Alternatively, the driving part 310 is located at the first open opening 1204, and the driving mechanism 320 is outside the first open opening 1204 to cooperate with the driving part 310 in transmission.
[0102] In some embodiments, such as Figure 6 As shown, the air outlet component 100 includes: a mounting member 60, the mounting member 60 is provided on the air guide mechanism 20, and the mounting member 60 and the air guide mechanism 20 are both independently molded parts, that is, the mounting member 60 and the air guide mechanism 20 are two different components, which can reduce the difficulty of the process and realize modular installation. The drive assembly 30 includes: a drive part 310 and a drive mechanism 320, the drive part 310 is provided on the mounting member 60, and the drive part 310 and the mounting member 60 are integrally formed, which can further reduce the difficulty of the process and reduce the mold opening. The drive part 310 and the mounting member 60 together realize modular installation with the air guide mechanism 20. The drive mechanism 320 is provided on the air outlet box body 10, and the drive mechanism 320 and the drive part 310 can cooperate in a transmission manner to drive the drive part 310 to move up and down.
[0103] Alternatively, as Figure 6 As shown, the air guide mechanism 20 includes an air guide member 210 and a mounting seat 220. The air guide member 210 is used to open and close the first air outlet 101. The mounting seat 220 is connected to the bottom of the air guide member 210. A mounting notch 202 is formed on the mounting seat 220. The mounting member 60 is arranged in the mounting notch 202. The mounting member 60 is installed in the mounting notch 202 to achieve installation coordination with the air guide mechanism 20, so that the overall volume of the mounting member 60 and the air guide mechanism 20 is smaller and the structure is more compact, which can save space.
[0104] Furthermore, if Figure 7As shown, the mounting member 60 is detachably connected to the air guide mechanism 20, making it easy to disassemble, install, or replace the mounting member 60 and the air guide mechanism 20. If the mounting member 60 or the driving portion 310 is damaged, there is no need to replace the entire air guide mechanism 20. Only the mounting member 60 needs to be disassembled and replaced. This is simple and convenient to operate, and can significantly reduce costs. A positioning protrusion 601 is formed on the mounting member 60, and a positioning groove (not shown) is formed on the air guide mechanism 20. The positioning protrusion 601 is adapted to be accommodated in the positioning groove, and the positioning protrusion 601 is arc-shaped. The positioning groove and the positioning protrusion 601 cooperate with each other to pre-position the mounting member 60, so that the mounting member 60 can be accurately installed on the air guide mechanism 20 relatively easily.
[0105] In some embodiments, such as Figure 7 As shown, the mounting member 60 is coupled with the air guide mechanism 20 by bolts to achieve detachable connection. If a threaded hole (not shown) is provided on the air guide mechanism 20, a first mounting hole 602 is provided on the mounting member 60. The mounting member 60 first cooperates with the positioning groove on the air guide mechanism 20 through the positioning protrusion 601 thereon, and then the bolt passes through the first mounting hole 602 and cooperates with the threaded hole to achieve the detachable installation of the mounting member 60 and the air guide mechanism 20.
[0106] Some examples, such as Figure 7 As shown, the threaded holes on the air guide mechanism 20 can be set to multiple, and the first mounting holes 602 on the mounting member 60 can be set to multiple. The number of the multiple first mounting holes 602 is equal to the number of the multiple threaded holes and corresponds one to one. This bolt connection method is reliable and easy to disassemble and install.
[0107] Specifically, if Figure 7 As shown, there are three threaded holes on the air guide mechanism 20 along the up and down directions, and there are three first mounting holes 602 on the mounting member 60 along the up and down directions, and the three first mounting holes 602 are sequentially arranged at the upper end, middle part, and lower end part of the mounting member 60. After the three threaded holes and the three first mounting holes 602 are connected by bolts, the upper end, middle part, and lower end of the mounting member 60 can be fixed, making the installation more secure.
[0108] In other examples, the mounting member 60 and the air guide mechanism 20 are detachably connected by snapping together. For example, the air guide mechanism 20 is provided with a snap-fit hole (not shown), and the mounting member 60 is provided with a snap-fit protrusion (not shown). The snap-fit protrusion and the snap-fit hole cooperate to achieve installation or removal. Of course, the number of snap-fit protrusions and snap-fit holes can be set to multiple and correspond one to one to improve the reliability of the connection.
[0109] Some examples, such as Figure 7As shown, there are two positioning protrusions 601 spaced apart from each other. The two positioning protrusions 601 protrude away from each other. The upper positioning protrusion 601 curves upward, while the lower positioning protrusion 601 curves downward. Because the positioning protrusions 601 are curved and protrude away from each other, the curved portions of the two positioning protrusions 601 facilitate engagement with the positioning grooves, making positioning easier. Furthermore, it will be appreciated that the two positioning protrusions 601 are symmetrically arranged, ensuring that the mounting member 60 can be assembled to the air guide mechanism 20 regardless of whether it is installed upright or reversed 180 degrees, thus providing a foolproof feature.
[0110] Alternatively, as Figure 1 As shown, at least one second air outlet 102 is formed on the circumferential side wall of the air outlet box 10 to achieve lateral air outlet of the air outlet component 100. In a specific example, two second air outlets 102 can be formed on the circumferential side wall of the air outlet box 10. Since the first air outlet 101 is formed on the top of the air outlet box 10, the air outlet component 100 can achieve top air outlet and side air outlet. In other examples, in the circumferential side wall of the air outlet box 10, second air outlets 102 are provided on two opposite side walls. Since the first air outlet 101 is formed on the top of the air outlet box 10, the air outlet component 100 can achieve top air outlet and air outlet on both sides in the horizontal direction, thereby bringing more diversified air outlet effects, the air outlet is more three-dimensional and multi-dimensional, and the air volume is also larger, which is conducive to better and faster adjustment of the indoor environment.
[0111] In some embodiments of the present invention, Figures 3 to 5 As shown, the air outlet component 100 further includes a guide structure 40, which includes a first guide portion 410 and a second guide portion 420 that cooperate with each other. The first guide portion 410 is provided on the air guide mechanism 20 and extends in the vertical direction, while the second guide portion 420 is provided on the air outlet housing 10 and extends in the vertical direction. During the upward and downward movement of the air guide mechanism 20 to open and close the first air outlet 101, the first guide portion 410 on the air guide mechanism 20 cooperates with the second guide portion 420 on the air outlet housing 10, thereby improving the stability and reliability of the air guide mechanism 20's movement.
[0112] Furthermore, if Figure 6 As shown, the first guide portion 410 is provided on the mounting member 60, and the first guide portion 410 and the mounting member 60 are integrally formed. In this way, the first guide portion 410 and the mounting member 60 are integrated to realize modular assembly with the air guide mechanism 20, which can reduce the process difficulty.
[0113] In some embodiments, such as Figure 6As shown, the driving portion 310, the first guide portion 410 and the mounting member 60 are integrally formed, which enables modular installation of the three and further reduces the difficulty of the process.
[0114] In some embodiments, such as Figure 5 As shown, there are two first guide portions 410 and two second guide portions 420, each of which is provided at opposite ends of the mounting member 60 and on opposite sides of the driving portion 310. Providing first guide portions 410 at opposite ends of the mounting member 60 provides balanced guidance on both sides of the upward and downward movement of the air guide mechanism 20, ensuring a stable and reliable guiding process.
[0115] Specifically, if Figure 5 As shown, the left and right ends of the mounting member 60 are respectively provided with first guide portions 410 , and the two first guide portions 410 are located on the left and right sides of the driving portion 310 , thereby providing a balanced guiding effect for the movement of the driving portion 310 .
[0116] In some embodiments, such as Figure 4 As shown, the first guide portion 410 includes a plurality of ribs 4101 extending in the vertical direction, each of which protrudes in different directions. The second guide portion 420 includes a plurality of grooves 4201 extending in the vertical direction. The number of grooves 4201 is the same as the number of ribs 4101 and corresponds to each other. Each rib 4101 is disposed in a corresponding groove 4201 so as to be movable up and down. The ribs 4101 and grooves 4201 cooperate to provide a guide for the air guide mechanism 20 to move up and down. The multiple ribs 4101 protruding in different directions not only enable multi-directional guidance and positioning, but also increase the guide contact surface, provide a more stable guide function, and enhance the reliability of the guide.
[0117] Alternatively, as Figure 4 As shown, there are three ribs 4101 arranged and connected in sequence, with adjacent ribs 4101 positioned approximately perpendicularly to each other. There are three interconnected grooves 4201. For example, the three ribs 4101 can form a T-shaped structure, while the three grooves 4201 can correspondingly form a cross. With the center rib 4101 facing forward, the remaining two ribs 4101 are positioned to the left and right. These three ribs 4101 can achieve both front-to-back and left-to-right guidance, resulting in a more effective guiding effect. Of course, the above is merely an example and is not intended to be limiting. Alternatively, there can be four or five ribs 4101 arranged and connected in sequence, and this will not be discussed further here.
[0118] Some examples, such as Figure 7As shown, the air outlet component 100 includes: a limiting structure for limiting the air guide mechanism 20 in the vertical direction, the limiting structure including a first limiting protrusion 510, a second limiting protrusion 520, and a third limiting protrusion 530. The first limiting protrusion 510 and the second limiting protrusion 520 are provided on the air guide mechanism 20, and the first limiting protrusion 510 and the second limiting protrusion 520 are respectively located on the upper and lower sides of the driving part 310; the third limiting protrusion 530 is provided on the driving mechanism 320, and the third limiting protrusion 530 is suitable for abutting with the first limiting protrusion 510 and the second limiting protrusion 520 in the vertical direction. The limiting structure enables the air guide mechanism 20 to move within a set height range. The air guide mechanism 20 can stop moving downward when returning to the starting position and stop moving upward when reaching the preset height position.
[0119] Specifically, when the driving mechanism 320 drives the driving portion 310 upward, the driving portion 310 drives the air guide mechanism 20 upward and opens the first air outlet 101. As the driving portion 310 continues to move upward, the second limiting protrusion 520 on the lower side of the driving portion 310 contacts the third limiting protrusion 530 on the driving mechanism 320, and the driving portion 310 cannot move further upward. The driving mechanism 320 stops driving, and the air guide mechanism 20 reaches the preset height. When the driving mechanism 320 drives the driving portion 310 downward, the driving portion 310 drives the air guide mechanism 20 downward, gradually closing the first air outlet 101. When the first limiting protrusion 510 on the upper side of the driving portion 310 contacts the third limiting protrusion 530 on the driving mechanism 320, the driving portion 310 cannot move further downward, and the driving mechanism 320 stops driving. At this time, the air guide mechanism 20 returns to its starting position, stops, and completely closes the first air outlet 101. The above method has a simple structure. It only needs to set the distances between the first limiting protrusion 510, the second limiting protrusion 520, and the third limiting protrusion 530 according to the set height range, which can easily achieve the height limit of the air guide mechanism 20.
[0120] In some embodiments, such as Figure 7 As shown, there are two third limiting protrusions 530, located on opposite sides of the avoidance opening 301 in the horizontal direction. This arrangement places the two third limiting protrusions 530 relatively close to the gear 3201, so that the lower and upper limits of the air guide mechanism 20 occur at the avoidance opening 301. This reduces the length of the rack while still meeting the upper and lower limit requirements, allowing the air guide mechanism 20 to be smaller in the vertical direction. Furthermore, the two third limiting protrusions 530 increase the contact surface with the first limiting protrusion 510 or the second limiting protrusion 520, enhancing the reliability of the limit.
[0121] In another embodiment, Figure 6 and Figure 7As shown, the drive box 3203 includes a first box body 32031 and a second box body 32032. The first box body 32031 is provided with a box body clamping protrusion 303, and the second box body 32032 is provided with a box body clamping hole 304. The box body clamping protrusion 303 and the box body clamping hole 304 cooperate with each other to achieve detachable installation of the first box body 32031 and the second box body 32032, which is simple and convenient to operate.
[0122] In other examples, Figure 6 and Figure 7 As shown, a screw column 305 is provided on the first box body 32031, and a screw hole (not shown) is provided on the second box body 32032. When the first box body 32031 and the second box body 32032 are assembled, the screw column 305 and the screw hole cooperate with each other to achieve positioning, ensuring that the first box body 32031 and the second box body 32032 can be accurately assembled.
[0123] In other embodiments, the drive assembly 30 can also be a screw-nut lifting mechanism, that is, the drive assembly 30 includes a drive portion 310 and a drive mechanism 320, the drive portion 310 is a connecting block, the drive mechanism 320 is a motor (not shown), a screw connected to the motor (not shown), and a nut mounted on the screw (not shown), wherein the nut is rotatably mounted on the connecting block. During operation, the motor drives the screw to rotate, and the screw drives the nut to move up or down, thereby driving the connecting block to move, thereby achieving the up and down movement of the air guide mechanism 20. Of course, the drive assembly 30 can also be other lifting or moving mechanisms, not limited to this. For example, the drive assembly 30 can be driven by an electric push rod to lift and lower, which will not be described in detail here.
[0124] Specifically, if Figure 1 and Figure 3 As shown, the air outlet housing 10 further includes a guide member 130, which is disposed on the air outlet member 120. The second guide portion 420 is formed on the guide member 130. The guide member 130 and the air outlet member 120 are both independently formed components. The guide member 130 and the air outlet member 120 are configured as independently formed components, which facilitates the disassembly, maintenance, and replacement of the guide member 130, achieving modular assembly and reducing process complexity.
[0125] Furthermore, if Figure 5 As shown, the guide member 130 is arranged in the accommodating cavity 1203, and a guide cavity 1301 is defined in the guide member 130. The mounting seat 220 is movably arranged in the guide cavity 1301 up and down. The guide cavity 1301 is open toward one side of the driving mechanism 320 to form a second open opening 1302 corresponding to the first open opening 1204. The first open opening 1204 and the second open opening 1302 are used to provide avoidance space to realize the transmission coordination between the driving part 310 and the driving mechanism 320.
[0126] A specific embodiment of the air outlet component 100 of the present invention will be described below with reference to the accompanying drawings.
[0127] like Figures 1 to 7 As shown, the air outlet component 100 includes: an air outlet box 10, an air guide mechanism 20, a driving assembly 30, a guide structure 40, a limiting structure, and a mounting component 60.
[0128] The air outlet box 10 may include: a box body 110 , an air outlet member 120 , and a guide member 130 .
[0129] A mounting port 1101 may be formed on the top of the box body 110, two second air outlets 102 may be formed on the circumferential side walls of the box body 110, the air outlet piece 120 may be detachably provided at the mounting port 1101, a first air outlet 101 may be formed on the air outlet piece 120, a guide piece 130 is provided on the air outlet piece 120, and the guide piece 130 and the air outlet piece 120 are both independently molded parts.
[0130] The air outlet member 120 includes: an air outlet portion 1201 and a mounting portion 1202. The air outlet portion 1201 is arranged at the mounting port 1101. A first air outlet 101 is formed on the air outlet portion 1201. The mounting portion 1202 is connected to the bottom of the air outlet portion 1201. A accommodating cavity 1203 is defined in the mounting portion 1202. The guide member 130 is arranged in the accommodating cavity 1203 so as to be movable up and down.
[0131] The air outlet portion 1201 includes an air outlet grille located at the first air outlet 101, and the air outlet grille may include four inclined sub-air outlet grilles 12011. The inclined sub-air outlet grilles 12011 may extend upward in a direction from the center of the air outlet portion 1201 to the outer edge of the air outlet portion 1201. Two sub-air outlet grilles 12011 are arranged at the left and right ends of the first air outlet 101, and the remaining two sub-air outlet grilles 12011 are arranged at the front and rear ends of the first air outlet 101. The inclination angle of the sub-air outlet grille 12011 at the rear end of the first air outlet 101 is the largest. The driving mechanism 320 may be located below the sub-air outlet grille 12011 with the largest inclination angle, and the inclination angle is the angle between the sub-air outlet grille 12011 and the horizontal plane.
[0132] One side of the air guide member 210 close to the air outlet portion 1201 is formed with four air guide inclined surfaces 2101 that match the sub-air outlet grilles 12011.
[0133] The air guide mechanism 20 is movably disposed on the air outlet box 10 to open and close the first air outlet 101 .
[0134] The air guide mechanism 20 includes: an air guide member 210 and a mounting seat 220. The air guide member 210 is used to open and close the first air outlet 101. The mounting seat 220 is connected to the bottom of the air guide member 210 and is movably disposed in the accommodating cavity 1203.
[0135] A mounting notch 202 is formed on the mounting seat 220 , and the mounting member 60 is disposed in the mounting notch 202 .
[0136] The mounting seat 220 is formed with a positioning groove (not shown), and the mounting member 60 is formed with a positioning protrusion 601, which is suitable for being accommodated in the positioning groove. There are two positioning protrusions 601 spaced apart from each other, and the two positioning protrusions 601 protrude in a direction away from each other.
[0137] The mounting seat 220 is provided with three threaded holes in the vertical direction, and the mounting member 60 is provided with three first mounting holes 602 in the vertical direction. The three first mounting holes 602 are sequentially provided at the upper end, middle part and lower end of the mounting member 60 .
[0138] The driving assembly 30 is used to drive the air guide mechanism 20 to move up and down.
[0139] The driving assembly 30 includes a driving portion 310 and a driving mechanism 320 .
[0140] The drive unit 310 is a rack mounted on the mounting member 60. The drive mechanism 320 includes a gear 3201, a drive motor 3202, and a drive box 3203. The gear 3201 meshes with the rack, and the drive motor 3202 is connected to the gear 3201 to drive the gear 3201. The drive box 3203 is formed with an escape opening 301, through which the teeth of the gear 3201 extend out of the drive box 3203. The drive box 3203 is detachably mounted on the mounting portion 1202. The accommodating cavity 1203 of the mounting portion 1202 opens toward one side of the drive mechanism 320 to form a first opening 1204. The guide cavity 1301 opens toward one side of the drive mechanism 320 to form a second opening 1302 corresponding to the first opening 1204. The drive unit 310 is located at the second opening 1302.
[0141] The projection of the mounting portion 1202 on the horizontal plane and the projection of the driving mechanism 320 on the horizontal plane are both located within the outer contour line of the projection of the air outlet portion 1201 on the horizontal plane.
[0142] A second mounting hole 302 is provided on the driving box 3203 , a threaded hole is provided on the air outlet member 120 , and a fastener is passed through the second mounting hole 302 and engaged with the threaded hole.
[0143] The drive box 3203 includes a first box body 32031 and a second box body 32032. The first box body 32031 is provided with a box body locking protrusion 303, and the second box body 32032 is provided with a box body locking hole 304. The first box body 32031 is provided with a screw column 305, and the second box body 32032 is provided with a screw hole.
[0144] The guide structure 40 includes a first guide portion 410 and a second guide portion 420 that cooperate with each other. The first guide portion 410 extends in the up-down direction, and the second guide portion 420 extends in the up-down direction.
[0145] The first guide portion 410 is provided on the mounting member 60 . The first guide portion 410 is provided at both ends of the mounting member 60 . The driving portion 310 , the first guide portion 410 and the mounting member 60 are integrally formed. The second guide portion 420 is provided on the guide member 130 .
[0146] The first guide portion 410 includes: three convex ribs 4101 extending in the up-down direction, and the three convex ribs 4101 have different protruding directions. The second guide portion 420 includes three grooves 4201 extending in the up-down direction. The number of grooves 4201 is the same as the number of convex ribs 4101 and corresponds one to one. Each convex rib 4101 can be moved up and down in the corresponding groove 4201.
[0147] The three convex ribs 4101 are arranged and connected in sequence, and two adjacent convex ribs 4101 are substantially perpendicular to each other. There are three grooves 4201 that are connected to each other.
[0148] The limiting structure includes a first limiting protrusion 510 , a second limiting protrusion 520 and a third limiting protrusion 530 .
[0149] The first limiting protrusion 510 and the second limiting protrusion 520 are arranged at the upper and lower ends of the mounting member 60. The first limiting protrusion 510 and the second limiting protrusion 520 are respectively located on the upper and lower sides of the driving part 310. There are two third limiting protrusions 530, and the two third limiting protrusions 530 are located on opposite sides in the horizontal direction of the avoidance opening 301.
[0150] The air treatment device 200 according to an embodiment of the present invention will be described below with reference to the accompanying drawings.
[0151] like Figure 1 、 8 and Figure 9 As shown, the air treatment device 200 according to an embodiment of the present invention includes: an air treatment unit 2 and an air outlet component 100.
[0152] The air handling unit 2 has an air inlet 201. The air outlet component 100 is the aforementioned air outlet component 100. The air outlet component 100 is disposed on the air handling unit 2. Air entering through the air inlet 201 flows into the air outlet component 100 after passing through the air handling unit 2 and is suitable for being blown out through the first air outlet 101. The air inlet 201 can be connected to indoor air or outdoor air.
[0153] When the air inlet 201 is connected to the room, the indoor air can enter the air treatment unit 2 through the air inlet 201. The air treatment unit 2 may include at least one of a humidification module and a purification module. The humidification module can humidify the air, and the purification module can purify the air. The air after entering the air treatment unit 2 and being treated can enter the air outlet housing 10. When the air guide mechanism 20 opens the first air outlet 101, the treated indoor air enters the room again, thereby improving the indoor air quality. When the air inlet 201 is connected to the outdoors, outdoor fresh air can be introduced into the room. Specifically, outdoor air can enter the air treatment unit 2 through the air inlet 201 and then enter the air outlet housing 10. When the air guide mechanism 20 opens the first air outlet 101, outdoor fresh air can be introduced into the room, thereby improving the indoor air quality. Optionally, the air treatment unit 2 may also include at least one of a humidification module and a purification module. The humidification module can humidify the air, and the purification module can purify the air. The air entering the air treatment unit 2 and being treated can enter the room. In this way, the air introduced from the outside can be humidified and / or purified before being introduced into the room, thereby better improving the indoor air quality.
[0154] The air treatment device 200 according to the embodiment of the present invention can achieve air treatment and top air outlet effects by providing the air outlet component 100 and the air treatment unit 2 .
[0155] In some embodiments, the air outlet component 100 is located above the air handling unit 2, so that after the airflow enters the air handling unit 2, it can flow upward into the air outlet box 10, thereby better guiding the airflow to the first air outlet 101, facilitating the airflow to be discharged from the top, shortening the airflow path, and reducing airflow noise.
[0156] In some embodiments, such as Figure 10As shown, the air handling unit 2 includes a first fan component 21 and a humidifying component 22. The first fan component 21 is disposed on the housing, and the humidifying component 22 is disposed above the first fan component 21 and connected to the outlet of the first fan component 21. The outlet of the humidifying component 22 is connected to the air outlet housing 10 of the air outlet component 100. The first fan component 21 draws outdoor air or indoor air through the air inlet 201, then humidifies the air through the humidifying component 22, and then reaches the air outlet housing 10 in the air outlet component 100, and finally can flow out through the first air outlet 101.
[0157] In some embodiments, the first fan component 21 includes: a volute and a centrifugal fan wheel. The volute is provided with a ventilation pipe connected to the volute, and an air inlet 201 is formed at the end of the ventilation pipe away from the volute. The centrifugal fan wheel is arranged in the volute, and the volute is connected to the air outlet box body 10, or the volute is connected to the humidification chamber of the humidification component 22, and the humidification chamber is connected to the air outlet box body 10. When the centrifugal fan wheel is working, indoor air or outdoor air is introduced into the volute through the air inlet 201, and flows into the air outlet box body 10 after being humidified by the humidification component 22, or flows directly into the air outlet box body 10, and finally blown out to the room from the first air outlet 101.
[0158] In some embodiments, the air treatment device 200 may further include: an air induced draft hood 70, which is arranged at the top of the air outlet box 10, and an air induced draft cavity 701 is defined between the top of the air outlet box 10 and the air induced draft hood 70, and the air induced draft cavity 701 has an outlet. When the air guide mechanism 20 is raised or lowered, a part of the air guide mechanism 20 can be accommodated in the air induced draft cavity 701. When the air guide mechanism 20 opens the first air outlet 101, the air induced draft cavity 701 is connected to the first air outlet 101. The air flow flowing out of the first air outlet 101 can be guided by the air induced draft cavity 701 and then discharged toward the front and upper part of the air treatment unit 2.
[0159] In some embodiments, such as Figure 1 and Figure 10 As shown, a second air outlet 102 is formed on the circumferential side wall of the air outlet box 10. The second air outlet 102 can be located on the left and right sides of the air outlet box 10. The air treatment device 200 also includes the above-mentioned air hood 70. When the air guide mechanism 20 opens the first air outlet 101, air can be discharged from the front upper side and the second air outlets 102 on the left and right sides. The air outlet range is larger and the air outlet is more three-dimensional. When the air treatment device 200 is in use, the air outlet effect can be changed by controlling whether the air guide mechanism 20 opens the first air outlet 101. When the air guide mechanism 20 closes the first air outlet 101, air can be blown out from the second air outlet 102 to achieve air outlet on both sides. When the user needs to blow air from the top, the air guide mechanism 20 is controlled to open the first air outlet 101, so that the air treatment device 200 can simultaneously discharge air from the left and right sides and the top.
[0160] In some specific embodiments of the present invention, referring to Figure 1 and Figure 10 The air treatment device 200 includes an air treatment unit 2 and an air outlet component 100. The air outlet box 10 of the air outlet component 100 is formed with the above-mentioned first air outlet 101 and second air outlet 102. The first air outlet 101 is located at the top of the air outlet box 10, and there are two second air outlets 102, which are respectively formed on the left wall and the right wall of the air outlet box 10. The air handling unit 2 includes a first fan component 21, a humidifying component 22 and a purification component 23. The first fan component 21 has an air inlet 201, wherein the purification component 23 is arranged on the air outlet side of the first fan component 21 and the purification component 23 is located above the first fan component 21. The humidifying component 22 is arranged in the air outlet box body 10. The water tank of the humidifying component 22 can be pullable and arranged in the air outlet box body 10. An air outlet cavity 103 is defined between the humidifying component 22 and the inner wall of the air outlet box body 10, wherein the first air outlet 101 and the second air outlet 102 are both connected to the air outlet cavity 103. The wet cotton of the humidifying component 22 is located in the air outlet cavity 103 and is respectively adjacent to the two second air outlets 102. The air outlet member 120 and the humidifying component 22 of the air outlet box 10 are arranged in the front-to-back direction of the box body 110 , for example, the humidifying component 22 is located at the front of the box body 110 , and the air outlet member 120 is located at the rear of the box body 110 . When the air treatment device 200 is working, if the air guide mechanism 20 closes the first air outlet 101, the first fan component 21 drives the air flow to enter the first fan component 21 from the air inlet 201, and then flows upward, first purified by the purification component 23, and the purified air flow flows upward into the air outlet cavity 103, and then is humidified by the humidification component 22 and blown out from the two second air outlets 102; if the air guide mechanism 20 opens the first air outlet 101, the first fan component 21 drives the air flow to enter the first fan component 21 from the air inlet 201, and then flows upward, first purified by the purification component 23, and the purified air flow flows upward into the air outlet cavity 103, and enters the air flow in the air outlet cavity 103, part of the air flow is not humidified by the humidification component 22 and is blown upward through the first air outlet 101, and the other part is humidified by the humidification component 22 and blown out from the two second air outlets 102.
[0161] An air conditioner according to an embodiment of the present invention will be described below with reference to the accompanying drawings.
[0162] like Figure 10 and Figure 11As shown, an air conditioner according to an embodiment of the present invention includes: a housing 800 and an air handling device 200, with a first air outlet 808 formed on the housing 800. The air handling device 200 is disposed within the housing 800 and is the aforementioned air handling device 200. The air inlet 201 can communicate with indoor air or outdoor air. When the air guide mechanism 20 opens the first air outlet 101, the first air outlet 808 communicates with the first air outlet 101. The air inlet 201 can be located on the housing 800; the air inlet 201 can also be located outside the housing 800; the air inlet 201 can also be located within the housing 800, with a through-hole disposed at a corresponding position on the housing 800 that is opposite and communicates with the air inlet 201, or connected to the air inlet 201 via a connecting pipe, with the end of the connecting pipe away from the air inlet 201 extending outside the housing 800.
[0163] The air conditioner includes an air heat exchange device 700, and the air treatment device 200 is located on one side of the air heat exchange device 700, for example, the air treatment device 200 is located on the upper side or lower side of the air heat exchange device 700. The air heat exchange device 700 may include a second fan component 720 and a heat exchanger component 730. The air treatment device 200 is the air treatment device 200 according to the previous text. The air heat exchange device 700 can exchange heat with the air, thereby adjusting the indoor temperature.
[0164] Optionally, the air conditioner may be a split-type air conditioner, for example, a split wall-mounted air conditioner or a split floor-standing air conditioner; the air conditioner may also be an integrated air conditioner. When the air conditioner is a split-type air conditioner, the air conditioner includes an indoor air conditioner unit 1000 and an outdoor air conditioner unit, wherein the indoor air conditioner unit 1000 includes the aforementioned air handling device 200 and air heat exchange device 700.
[0165] According to the air conditioner of the embodiment of the present invention, by providing the air treatment device 200, the air treatment unit 2 can realize air treatment when realizing cooling / heating, and the air processed by the air treatment unit 2 can be discharged from the top of the air treatment device 200, which can improve the user experience and further meet the user needs.
[0166] A specific embodiment of the air conditioner of the present invention will be described below with reference to the accompanying drawings.
[0167] In this embodiment, the air conditioner is a split floor-standing air conditioner, which includes an indoor air conditioner 1000 and an outdoor air conditioner. The indoor air conditioner 1000 includes a casing 800, an air handling device 200 and an air heat exchange device 700.
[0168] The housing 800 defines a first installation cavity and a second installation cavity separated from each other in a vertical direction. The air heat exchange device 700 is accommodated in the first installation cavity, and the air handling unit 200 is accommodated in the second installation cavity. The housing 800 includes a front panel 801, an air outlet frame 802, a rear case 803, a top cover 804, and a bottom plate 805. The air outlet frame 802 and the rear case 803 are connected front to back. The front panel 801 is connected to the front side of the air outlet frame 802. A heat exchange air inlet 806 is formed in the portion of the rear case 803 corresponding to the first installation cavity. The heat exchange air inlet 806 is connected to the indoor room. The air inlet 201 of the air handling unit 200 extends outside the housing 800 through the rear case 803 and is connected to the outdoor air. The front panel 801 includes an upper panel 8011 and a lower panel 8012 spaced apart from each other. A first air outlet 808 is defined between the upper panel 8011 and the lower panel 8012. Second air outlets 809 are formed on the left and right sides of the air outlet frame member 802. A wind deflector 810 is provided at the second air outlet 809 for opening and closing the second air outlet 809. The top cover 804 is connected to the top of the rear box member 803 and the air outlet frame member 802, and the bottom of the rear box member 803 and the air outlet frame member 802 is connected.
[0169] The air heat exchange device 700 includes a heat exchanger component 730 and a second fan component 720. The heat exchanger component 730 is arranged on the rear side of the second fan component 720. The second fan component 720 may include two cross-flow wind wheels arranged at intervals on the left and right. The two cross-flow wind wheels correspond to the two heat exchange outlets 807 respectively.
[0170] The air handling device 200 includes the aforementioned air handling unit 2, an air outlet component 100, and an air hood 70. The air outlet component 100 is disposed above the air handling unit 2, and the air hood 70 is disposed on top of the air outlet housing 10. The air handling unit 2 includes a first fan component 21, a humidifying component 22, and a purifying component 23. The first fan component 21 has an air inlet 201. The purifying component 23 is disposed on the air outlet side of the first fan component 21 and above the first fan component 21. The humidifying component 22 is disposed within the air outlet housing 10. The water tank of the humidifying component 22 can be retractably disposed within the air outlet housing 10. An air outlet cavity 103 is defined between the humidifying component 22 and the inner wall of the air outlet housing 10. The first air outlet 101 and the second air outlet 102 are both connected to the air outlet cavity 103. The wet cotton of the humidifying component 22 is located within the air outlet cavity 103 and adjacent to the two second air outlets 102. The air outlet member 120 and the humidifying component 22 of the air outlet box 10 are arranged in the front-to-back direction of the box body 110 , for example, the humidifying component 22 is located at the front of the box body 110 , and the air outlet member 120 is located at the rear of the box body 110 .
[0171] The first fan component 21 includes a volute and a centrifugal impeller. The volute is provided with a ventilation pipe connected to the volute. The end of the ventilation pipe away from the volute is formed with an air inlet 201. The centrifugal impeller is disposed within the volute. The volute is connected to the purification chamber of the purification component 23, and the purification chamber is connected to the air outlet chamber 103 of the air outlet housing 10. The air induction cover 70 is disposed at the top of the air outlet housing 10. The top of the air outlet housing 10 and the air induction cover 70 define an air induction chamber 701. The air induction chamber 701 has an outlet. The outlet of the air induction chamber 701 is opposite to and connected to the first air outlet 808. When the air guide mechanism 20 is raised or lowered, a portion of the air guide mechanism 20 can be accommodated in the air induction chamber 701.
[0172] The air outlet component 100 may include: an air outlet box 10 , an air guide mechanism 20 , a driving assembly 30 , a guide structure 40 , a limiting structure, and a mounting component 60 .
[0173] The air outlet box 10 may include: a box body 110 , an air outlet member 120 , and a guide member 130 .
[0174] A mounting port 1101 may be formed on the top of the box body 110, and a second air outlet 102 may be formed on the left and right side walls of the box body 110 respectively. The air outlet piece 120 may be detachably arranged at the mounting port 1101, and a first air outlet 101 may be formed on the air outlet piece 120. The guide piece 130 is arranged on the air outlet piece 120, and the guide piece 130 and the air outlet piece 120 are both independently molded parts.
[0175] The air outlet member 120 may include: an air outlet portion 1201 and an installation portion 1202. The air outlet portion 1201 may be arranged at the installation port 1101. A first air outlet 101 may be formed on the air outlet portion 1201. The installation portion 1202 may be connected to the bottom of the air outlet portion 1201. An accommodating cavity 1203 may be defined in the installation portion 1202. The guide member 130 may be movably arranged in the accommodating cavity 1203 up and down.
[0176] The air outlet portion 1201 may include an air outlet grille located at the first air outlet 101, and the air outlet grille may include four inclined sub-air outlet grilles 12011. The inclined sub-air outlet grilles 12011 may extend upward in a direction from the center of the air outlet portion 1201 to the outer edge of the air outlet portion 1201. Two sub-air outlet grilles 12011 may be arranged at the left and right ends of the first air outlet 101, and the remaining two sub-air outlet grilles 12011 may be arranged at the front and rear ends of the first air outlet 101, and the inclination angle of the sub-air outlet grille 12011 at the rear end of the first air outlet 101 is the largest. The driving mechanism 320 may be located below the sub-air outlet grille 12011 with the largest inclination angle, and the inclination angle is the angle between the sub-air outlet grille 12011 and the horizontal plane.
[0177] One side of the air guide member 210 close to the air outlet portion 1201 may be formed with four air guide inclined surfaces 2101 that match the sub-air outlet grilles 12011.
[0178] The air guide mechanism 20 is movably disposed on the air outlet box 10 to open and close the first air outlet 101 .
[0179] The air guide mechanism 20 may include: an air guide member 210 and a mounting seat 220. The air guide member 210 may be used to open and close the first air outlet 101. The mounting seat 220 may be connected below the air guide member 210. The mounting seat 220 may be movably disposed up and down in the accommodating cavity 1203.
[0180] A mounting notch 202 may be formed on the mounting seat 220 , and the mounting member 60 may be disposed in the mounting notch 202 .
[0181] The mounting base 220 may be formed with a positioning groove (not shown), and the mounting member 60 may be formed with a positioning protrusion 601, which may be adapted to be accommodated in the positioning groove. The positioning protrusion 601 may be two, spaced apart, and the two positioning protrusions 601 may protrude in a direction away from each other.
[0182] The mounting seat 220 may be provided with three threaded holes along the up-down direction, and the mounting member 60 may be provided with three first mounting holes 602 along the up-down direction. The three first mounting holes 602 are sequentially provided at the upper end, middle portion, and lower end portion of the mounting member 60 .
[0183] The driving assembly 30 can be used to drive the air guide mechanism 20 to move up and down.
[0184] The driving assembly 30 may include a driving portion 310 and a driving mechanism 320 .
[0185] The drive unit 310 may be a rack, which may be mounted on the mounting member 60. The drive mechanism 320 may include a gear 3201, a drive motor 3202, and a drive box 3203. The gear 3201 may mesh with the rack, and the drive motor 3202 may be connected to the gear 3201 to drive the gear 3201. The drive box 3203 may be formed with an escape opening 301, through which the teeth of the gear 3201 may extend out of the drive box 3203. The drive box 3203 may be detachably mounted on the mounting portion 1202. The accommodating cavity 1203 of the mounting portion 1202 may open toward one side of the drive mechanism 320 to form a first opening 1204. The guide cavity 1301 may open toward one side of the drive mechanism 320 to form a second opening 1302 corresponding to the first opening 1204. The drive unit 310 may be located at the second opening 1302.
[0186] The projection of the mounting portion 1202 on the horizontal plane and the projection of the driving mechanism 320 on the horizontal plane are both located within the outer contour line of the projection of the air outlet portion 1201 on the horizontal plane.
[0187] The drive box 3203 may be provided with a second mounting hole 302 , and the air outlet member 120 may be provided with a threaded hole, and the fastener may pass through the second mounting hole 302 and fit into the threaded hole.
[0188] The drive box 3203 may include: a first box body 32031 and a second box body 32032. The first box body 32031 may be provided with a box body locking protrusion 303, and the second box body 32032 may be provided with a box body locking hole 304. The first box body 32031 may be provided with a screw column 305, and the second box body 32032 may be provided with a screw hole.
[0189] The guide structure 40 may include a first guide portion 410 and a second guide portion 420 that cooperate with each other. The first guide portion 410 may extend in the up-down direction, and the second guide portion 420 may extend in the up-down direction.
[0190] The first guide portion 410 can be provided on the mounting member 60 , and the first guide portion 410 can be provided on both ends of the mounting member 60 . The driving portion 310 , the first guide portion 410 and the mounting member 60 are integrally formed. The second guide portion 420 can be provided on the guide member 130 .
[0191] The first guide portion 410 may include: three convex ribs 4101 extending in the up-down direction, the protruding directions of the three convex ribs 4101 may be different, the second guide portion 420 may include three grooves 4201 extending in the up-down direction, the number of grooves 4201 may be the same as the number of convex ribs 4101 and correspond one-to-one, and each convex rib 4101 may be movably arranged in the corresponding groove 4201.
[0192] The three convex ribs 4101 may be arranged and connected in sequence, and two adjacent convex ribs 4101 are substantially perpendicular to each other. There are three grooves 4201 that are connected to each other.
[0193] The limiting structure may include: a first limiting protrusion 510 , a second limiting protrusion 520 and a third limiting protrusion 530 .
[0194] The first limiting protrusion 510 and the second limiting protrusion 520 can be arranged at the upper and lower ends of the mounting member 60. The first limiting protrusion 510 and the second limiting protrusion 520 can be respectively located on the upper and lower sides of the driving part 310. There can be two third limiting protrusions 530, and the two third limiting protrusions 530 can be located on opposite sides in the horizontal direction of the avoidance opening 301.
[0195] Two second air outlets 102 may be formed on the left and right side walls of the air outlet box 10 . The two second air outlets 102 are opposite to and communicate with the second air outlet 13 .
[0196] When the air conditioner is working, one of the air treatment device 200 and the air heat exchange device 700 may be controlled to work, or both of the air treatment device 200 and the air heat exchange device 700 may be controlled to work.
[0197] When only the air heat exchange device 700 is working, the second fan component 720 is running, and the indoor air enters the first installation cavity from the heat exchange air inlet 806 and exchanges heat with the heat exchanger component 730, and then flows out to the room from the heat exchange air outlet 807 on both sides, thereby adjusting the indoor temperature.
[0198] When only the air treatment device 200 is working, the first fan component 21 is working. When air only needs to be discharged from the first air outlet 808, the air guide plate 810 closes the second air outlet 809, and the air guide mechanism 20 opens the first air outlet 101. At this time, the first air outlet 101 is connected to the first air outlet 808 through the air induction chamber 701. The air introduced from the outside is purified by the purification component 23 and then flows upward into the air outlet chamber 103 of the air outlet box 10. It does not pass through the humidification component 22 for humidification, and then flows into the air induction chamber 701 from the first air outlet 101, and finally flows out to the room from the first air outlet 808, so that outdoor air can be introduced into the room. At this time, the outdoor air introduced from the air inlet 201 can be purified and then flow into the room, thereby improving the indoor air quality.
[0199] When only the second air outlet 809 is needed to discharge air, the air guide plate 810 opens the second air outlet 809, and the air guide mechanism 20 closes the first air outlet 101. The air introduced from the outside is purified by the purification component 23 and then flows upward into the air outlet cavity 103 of the air outlet box 10. Then, it is humidified by the humidification component 22 and blown out to the room through the two second air outlets 102 and the two second air outlets 809 in turn. The air introduced from the outside no longer flows out from the first air outlet 808, but flows out to the room from the second air outlet 102 on both sides through the second air outlet 809, so that outdoor air can be introduced into the room. At this time, the outdoor air introduced from the air inlet 201 can be purified and humidified and then flow into the room, thereby improving the indoor air quality.
[0200] When it is necessary to discharge air from the first air outlet 808 and the second air outlet 809 at the same time, the air guide mechanism 20 opens the first air outlet 101, and the air guide plate 810 opens the second air outlet 809. The first fan component 21 drives the air flow to enter the first fan component 21 from the air inlet 201, and then flows upward. It is first purified by the purification component 23, and the purified air flows upward into the air outlet cavity 103. After entering the air outlet cavity 103, part of the air flow is not humidified by the humidification component 22 and is blown upward to the air induction cavity 701 through the first air outlet 101 and blown into the room through the first air outlet 808. The other part of the air flow passes through the humidification component 22. After humidification, the air is blown out from the two second air outlets 102 and the second air outlet 809 in turn, and the fresh air introduced from the outside is discharged from the first air outlet 808 and the second air outlet 809 at the same time, thereby increasing the air outlet range and realizing multi-dimensional three-dimensional air outlet. At this time, the outdoor air introduced from the air inlet 201 can be purified, partially humidified, and then flow into the room, which can quickly and effectively improve the indoor air quality.
[0201] Optionally, when the air treatment device 700 is operating, the first air outlet 201 may be in a normally open state. For example, when the first fan component 21 is powered on, the first air outlet 201 is open, and when the first fan component 21 is shut down, the first air outlet 201 is also closed. Whether to open the second air outlet 809 can be determined based on whether there is a need for humidification. The second air outlet 809 can be opened when there is a need for humidification, and closed when there is no need for humidification.
[0202] When both the air treatment device 200 and the air heat exchange device 700 are working, the indoor temperature can be adjusted and the indoor air quality can be improved. The working state of the air treatment device 200 can refer to the above description.
[0203] In the description of the present invention, it should be understood that terms such as "center," "longitudinal," "transverse," "length," "width," "thickness," "up," "down," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inside," "outside," "clockwise," "counterclockwise," "axial," "radial," and "circumferential" indicate positions or locations based on the positions or locations shown in the accompanying drawings. These terms are intended solely to facilitate the description of the present invention and simplify the description. They do not indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting the present invention. In the description of the present invention, "first feature" and "second feature" may include one or more of these features. In the description of the present invention, "plurality" means two or more. In the description of the present invention, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or the first and second features being in contact not directly but through another feature between them. In the description of the present invention, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or diagonally above the second feature, or simply indicating that the first feature is at a higher level than the second feature.
[0204] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, illustrative uses 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 any one or more embodiments or examples.
[0205] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to the embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the claims and their equivalents.
Claims
1. An air conditioner, characterized in that: include: a casing, wherein a first air outlet is formed on the casing; An air handling device, comprising: an air handling unit and an air outlet component, wherein the air handling unit has an air inlet, and the air outlet component is provided on the air handling unit, and air entering through the air inlet flows into the air outlet component after passing through the air handling unit and is adapted to be blown out through a first air outlet; The air treatment device is arranged in the housing, and when the air guide mechanism opens the first air outlet, the first air outlet is connected to the first air outlet, and the air inlet is suitable for connecting to the outdoor air; wherein, The air outlet component includes: An air outlet box body, wherein a first air outlet is formed on the top of the air outlet box body; an air guide mechanism, the air guide mechanism being movably disposed on the air outlet box body so as to open and close the first air outlet; A driving assembly for driving the air guide mechanism to move up and down; The air outlet box includes a box body and an air outlet member. A mounting opening is formed on the top of the box body. The air outlet member is provided at the mounting opening. The first air outlet is formed on the air outlet member. The air outlet member includes: an air outlet portion, the air outlet portion being provided at the mounting opening and having the first air outlet formed thereon; a mounting portion, the mounting portion being connected below the air outlet portion, the driving mechanism being connected to the mounting portion and being located below the air outlet portion; The air outlet portion includes an air outlet grille located at the first air outlet, the air outlet grille includes at least one inclined sub-air outlet grille, the inclined sub-air outlet grille extending upward in a direction from a connection between the air outlet portion and the mounting portion to an outer edge of the air outlet portion, the air outlet grille includes a plurality of inclined sub-air outlet grilles, wherein the driving mechanism is located below the sub-air outlet grille having the largest inclination angle, the inclination angle being the angle between the sub-air outlet grille and a horizontal plane; The air outlet member is detachably arranged at the installation opening.
2. The air conditioner according to claim 1, characterized in that The drive assembly includes: a driving portion, the driving portion being provided on the air guide mechanism; The driving mechanism is provided on the air outlet member, and the driving mechanism is transmission-coordinated with the driving portion to drive the air guide mechanism to move up and down.
3. The air conditioner according to claim 2, characterized in that The driving mechanism comprises: A gear transmission mechanism, wherein the gear transmission mechanism includes at least one gear, the driving part is a rack, and the gear located at the end of the gear transmission mechanism is meshed with the rack; A drive motor is connected to the gear transmission mechanism to drive the gear transmission mechanism to move.
4. The air conditioner according to claim 3, characterized in that The driving mechanism includes a driving box, which is connected to the air outlet member. The gear transmission mechanism is arranged in the driving box. An avoidance opening is formed on the driving box. The tooth portion of the gear located at the end of the gear transmission mechanism extends out of the driving box through the avoidance opening and engages with the rack.
5. The air conditioner according to claim 2, characterized in that: The air guide mechanism (20) comprises an air guide member and a mounting seat, wherein the air guide member is used to open and close the first air outlet, the mounting seat is connected below the air guide member, and the driving part is arranged on the mounting seat.
6. The air conditioner according to claim 5, characterized in that The air outlet member includes: an air outlet portion, the air outlet portion being provided at the mounting opening and having the first air outlet formed thereon; The mounting portion is connected to the bottom of the air outlet portion, the driving mechanism is connected to the mounting portion, a accommodating cavity with an open top is defined in the mounting portion, the mounting seat is movably arranged in the accommodating cavity up and down, the accommodating cavity is open toward one side of the driving mechanism to form a first open opening, and the driving portion is opposite to or located at the first open opening.
7. The air conditioner according to claim 1, characterized in that include: The mounting member is provided on the air guide mechanism, and the driving assembly includes: a driving portion, the driving portion being provided on the mounting member, the driving portion and the mounting member being integrally formed; The driving mechanism is arranged in the air outlet box body, and the driving mechanism and the driving part are drivably matched to drive the air guide mechanism to move up and down.
8. The air conditioner according to claim 7, characterized in that The air guide mechanism includes an air guide member and a mounting seat, the air guide member is used to open and close the first air outlet, the mounting seat is connected below the air guide member, a mounting notch is formed on the mounting seat, and the mounting member is arranged in the mounting notch.
9. The air conditioner according to claim 7, characterized in that The mounting member is detachably connected to the air guide mechanism. A positioning protrusion is formed on the mounting member, and a positioning groove is formed on the air guide mechanism. The positioning protrusion is suitable for being accommodated in the positioning groove.
10. The air conditioner according to claim 9, characterized in that There are two positioning protrusions spaced apart from each other, and the two positioning protrusions protrude in directions away from each other.
11. The air conditioner according to any one of claims 1 to 10, characterized in that: At least one second air outlet is formed on the circumferential side wall of the air outlet box.
Citation Information
Patent Citations
Air processor
CN104949220A
Air outlet component, air treatment device and air conditioner
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