Air diffuser assembly and air conditioner having the same
By introducing a locking component into the air venting assembly of the air conditioner, reliable connection and disassembly of the vanes and louvers are achieved, solving the problem of easy structural damage in the prior art and improving reliability and ease of cleaning.
Patent Information
- Application Number
- CN202011345675.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-11-25
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2040-11-25
AI Technical Summary
In existing air conditioning units, the connection structure between the louvers and the air diffuser is not easy to disassemble, which makes it easy to be damaged during disassembly and results in low structural reliability.
The locking assembly includes a locking housing, a locking clamp, and a locking slider. The locking head and the locking clamp work together to achieve reliable connection and disassembly of the louver and the flap. The design of the positioning protrusions and grooves, sliding grooves and swing hooks ensures the reliability of connection and disassembly.
The structure reliability of the air diffuser assembly has been improved, its service life has been extended, it is easy to clean from all angles, and its ease of use has been enhanced.
Smart Images

Figure CN114543338B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioning equipment, in particular to a wind distribution assembly and an air conditioner with the same. BACKGROUND
[0002] In the related art, the wind distribution assembly of some air conditioners includes a rotating blade and a louver, the rotating blade is connected with the louver to be driven by the louver to rotate. After the wind distribution assembly is used for a period of time, it needs to be disassembled and cleaned. However, the structure of the connection between the rotating blade and the louver is not easy to disassemble, and the rotating blade or the louver is easily damaged during disassembly, thereby the structural reliability of the wind distribution assembly is low. SUMMARY
[0003] The present application aims to solve at least one of the technical problems existing in the prior art. To this end, one object of the present application is to provide a wind distribution assembly, the connection and disassembly of the rotating blade and the first louver are simple and reliable, which can effectively avoid damaging the rotating blade or the first louver during installation and disassembly, thereby improving the structural reliability of the wind distribution assembly and prolonging the service life of the wind distribution assembly.
[0004] The present application also provides an air conditioner comprising the above-mentioned wind distribution assembly.
[0005] According to the wind distribution assembly of the embodiment of the present application, the first plate body is provided with a ventilation hole and a first connecting hole, the first louver is rotatably arranged at the first connecting hole through a connecting shaft, the free end of the connecting shaft is provided with a locking head, the rotating blade is located on the side of the first plate body away from the first louver, the center of the rotating blade is provided with a matching part, the matching part is provided with a matching hole, the matching hole is arranged opposite to the first connecting hole, and the locking assembly is arranged at the matching hole to lock or release the locking head.
[0006] According to the wind distribution assembly of the embodiment of the present application, the locking head is arranged at the free end of the connecting shaft of the first louver, and the locking assembly is arranged at the matching hole of the rotating blade to lock or release the locking head. Therefore, the connection and disassembly of the rotating blade and the first louver are simple and reliable, which can effectively avoid damaging the rotating blade or the first louver during installation and disassembly, thereby improving the structural reliability of the wind distribution assembly and prolonging the service life of the wind distribution assembly. At the same time, the wind distribution assembly can be cleaned in all directions, thereby the wind distribution assembly has high reliability and is convenient to use.
[0007] According to some embodiments of the present application, the locking assembly comprises a locking housing and a locking clamp, the locking clamp is matched with the locking head to clamp or release the locking head, the locking housing is arranged in the matching hole, the locking clamp is connected with the locking housing and is movable relative to the locking housing to switch the locking assembly between a locking state and an unlocking state, in the locking state, at least a part of the locking clamp extends into the locking housing to clamp the locking head, in the unlocking state, at least a part of the locking clamp extends out of the locking housing to release the locking head.
[0008] According to some embodiments of the present application, one of the outer peripheral wall of the locking housing and the inner peripheral wall of the matching hole is provided with a positioning protrusion, and the other is provided with a positioning groove, the positioning protrusion extends into the positioning groove.
[0009] According to some embodiments of the present application, the locking assembly further comprises a locking slider, the locking slider is movably arranged in the locking housing, and the locking clamp is arranged on the locking slider.
[0010] In some embodiments of the present application, an outer peripheral wall of the locking slider is provided with a sliding protrusion, a sliding groove is formed on the locking housing, an extending direction of the sliding groove is the same as an extending direction of a central axis of the matching hole, the sliding protrusion extends into the sliding groove and is movable along the extending direction of the sliding groove.
[0011] In some embodiments of the present application, the locking assembly further comprises a swing hook, one end of the swing hook is rotatably arranged on a bottom wall of the locking housing, the locking slider is provided with a circulating guide rail groove, the other end of the swing hook is hooked in the circulating guide rail groove and is movable along the circulating guide rail groove, the circulating guide rail groove is formed with a first positioning inflection point and a second positioning inflection point, the first positioning inflection point is located on a side of the second positioning inflection point close to the locking clamp, in the locking state, the swing hook is hooked at the first positioning inflection point, and in the unlocking state, the swing hook is hooked at the second positioning inflection point.
[0012] In some embodiments of the present application, the locking assembly further comprises an elastic member, one end of the elastic member is connected with the locking housing, and the other end of the elastic member is connected with the locking slider to constantly drive the locking slider to move in a direction away from the bottom wall of the locking housing.
[0013] In some embodiments of the present application, the locking slider is provided with a first mounting hole and a second mounting hole which are in communication with each other, the second mounting hole is located on a side of the first mounting hole close to the bottom wall of the locking housing, a cross-sectional area of the second mounting hole is greater than a cross-sectional area of the first mounting hole,
[0014] The bottom wall of the locking shell is provided with a guide column, the free end of the guide column extends into the first mounting hole through the second mounting hole, the elastic member is sleeved on the guide column, and one end of the elastic member away from the bottom wall of the locking shell abuts against the edge of the first mounting hole.
[0015] In some embodiments of the present application, the shape enclosed by the inner side wall of the circulating guide rail groove is eccentric to the shape enclosed by the outer side wall of the circulating guide rail groove.
[0016] In some embodiments of the present application, the locking clamp comprises a plurality of clamp bodies, the clamp bodies are arranged on the locking slider at intervals, and each clamp body is provided with a notch at the connection position with the locking slider.
[0017] According to some embodiments of the present application, the air dispersing assembly further comprises a shaft sleeve rotatably arranged in the first connecting hole, the connecting shaft is arranged in the shaft sleeve, the matching part is provided with a connecting groove, and at least a part of the shaft sleeve is adapted to extend into the connecting groove to rotate synchronously with the rotating blade.
[0018] According to some embodiments of the present application, the first louvers are a plurality of, the first louvers are arranged at intervals along the extension direction of the first plate body, the rotating blade is a plurality of, and the first louvers and the rotating blades are one-to-one corresponding.
[0019] In some embodiments of the present application, the first plate body is further provided with a second connecting hole, the air dispersing assembly further comprises a second louver, the second louver is rotatably arranged at the second connecting hole through a matching shaft, the free end of the matching shaft is provided with an elastic buckle, and at least a part of the elastic buckle is clamped on the edge of the second connecting hole after extending through the second connecting hole.
[0020] In some embodiments of the present application, the elastic buckle comprises a first buckle member and a second buckle member, the first buckle member and the second buckle member are arranged at intervals in the direction perpendicular to the extension direction of the matching shaft.
[0021] In some embodiments of the present application, the air dispersing assembly further comprises a connecting rod, the connecting rod is connected with the first louver and the second louver respectively to drive the first louver and the second louver to swing simultaneously.
[0022] According to some embodiments of the present application, the locking head and the first louver are an integral molded part.
[0023] According to some embodiments of the present application, the air dispersing assembly further comprises a second plate body, the second plate body is provided with an air dispersing hole, and the second plate body is detachably connected with the first plate body.
[0024] The air conditioner according to the embodiment of the present application comprises the air diffusing assembly according to the above-mentioned embodiment of the present application.
[0025] The air conditioner according to the embodiment of the present application, by setting the air diffusing assembly according to the above-mentioned embodiment of the present application, makes the connecting and dismounting mode of the rotating blade and the first louver simple and reliable, can effectively avoid damaging the rotating blade or the first louver during the mounting and dismounting process, and further can improve the reliability of the structure of the air diffusing assembly, is beneficial to prolonging the service life of the air diffusing assembly. At the same time, it is convenient to clean the air diffusing assembly blade in all directions, so that the air conditioner has high reliability and is convenient to use.
[0026] Additional aspects and advantages of the present application will be set forth in part in the following description, will become apparent from the following description, or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0027] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood by considering the following description, in conjunction with the accompanying drawings, in which:
[0028] Figure 1 is a schematic view of an air diffusing assembly according to some embodiments of the present application;
[0029] Figure 2 is a schematic view of an air diffusing assembly according to some embodiments of the present application;
[0030] Figure 3 is Figure 2 is a sectional view in the direction of A-A in FIG. 4;
[0031] Figure 4 is a sectional view of a partial structure of an air diffusing assembly according to some embodiments of the present application;
[0032] Figure 5 is a schematic view of the cooperation of a locking assembly and a locking head according to some embodiments of the present application;
[0033] Figure 6 is a schematic view of the cooperation of a locking assembly and a locking head according to some embodiments of the present application;
[0034] Figure 7 is a schematic view of the cooperation of a locking assembly and a locking head according to some embodiments of the present application;
[0035] Figure 8 is a schematic view of the cooperation of a locking assembly and a locking head according to some embodiments of the present application;
[0036] Figure 9 is a schematic view of the cooperation of a locking assembly and a locking head according to some embodiments of the present application;
[0037] Figure 10is a schematic view of a locking assembly cooperating with a locking head according to some embodiments of the present application;
[0038] Figure 11 is a schematic view of a locking assembly cooperating with a locking head according to some embodiments of the present application;
[0039] Figure 12 is a schematic view of a locking assembly cooperating with a locking head according to some embodiments of the present application;
[0040] Figure 13 is a schematic view of a locking assembly cooperating with a locking head according to some embodiments of the present application;
[0041] Figure 14 is Figure 13 is a cross-sectional view in the direction of B-B;
[0042] Figure 15 is a cross-sectional view in the direction of B-B;
[0043] Figure 16 is a schematic view of a locking assembly cooperating with a locking head according to some embodiments of the present application;
[0044] Figure 17 is Figure 16 is a cross-sectional view in the direction of C-C;
[0045] Figure 18 is a schematic view of a locking assembly cooperating with a locking head according to some embodiments of the present application;
[0046] Figure 19 is Figure 18 is a cross-sectional view in the direction of D-D;
[0047] Figure 20 is an exploded view of a locking head and a locking assembly according to some embodiments of the present application;
[0048] Figure 21 is an exploded view of a locking head and a locking assembly according to some embodiments of the present application;
[0049] Figure 22 is an exploded view of a wind diffusing assembly according to some embodiments of the present application;
[0050] Figure 23 is an exploded view of a wind diffusing assembly according to some embodiments of the present application;
[0051] Figure 24 is an exploded view of a wind diffusing assembly according to some embodiments of the present application;
[0052] Figure 25 is an exploded view of a wind diffusing assembly according to some embodiments of the present application;
[0053] Figure 26 is a schematic view of an air conditioner according to some embodiments of the present application;
[0054] Figure 27 is a partial exploded view of an air conditioner according to some embodiments of the present application;
[0055] Figure 28 is a schematic view of an air conditioner according to some embodiments of the present application;
[0056] Figure 29 is Figure 28 a sectional view in the direction of E-E in Fig. 1 1 ;
[0057] Figure 30 is Figure 28 a sectional view in the direction of F-F in Fig. 1 1 ;
[0058] Reference signs:
[0059] 100, air conditioner;
[0060] 10, air diffusing assembly;
[0061] 1, first plate body; 1 1, air vent; 12, first connecting hole; 13, second connecting hole; 14, vane group; 141, vane; 15, pivot shaft;
[0062] 2, first louver; 21, connecting shaft; 22, locking head;
[0063] 3, rotating vane; 31, matching part; 31 1, matching hole; 31 1 1, positioning recess; 312, connecting recess;
[0064] 4, locking assembly;
[0065] 41, locking housing; 41 1, positioning protrusion; 412, sliding groove; 413, guide column;
[0066] 42, locking clamp; 421, clamp body; 421 1, notch;
[0067] 43, locking slider; 431, sliding protrusion; 432, circulating guide rail groove; 4321, first positioning inflection point; 4322, second positioning inflection point; 433, first mounting hole; 434, second mounting hole;
[0068] 44, swinging hook;
[0069] 45, elastic member;
[0070] 5, shaft sleeve;
[0071] 6, second plate body; 61, air diffusing hole; 62, through hole; 63, through hole;
[0072] 7. Second louver; 71. Mating shaft; 72. Elastic buckle; 721. First buckle member; 722. Second buckle member;
[0073] 8. Connecting rod;
[0074] 20. Cabinet; 201. First panel; 202. Second panel; 203. Back panel; 204. Base; 205. Air inlet; 206. Air outlet;
[0075] 30. Driving motor;
[0076] 40. Switch door;
[0077] 50. Heat exchanger;
[0078] 60. Cross-flow fan;
[0079] 70. Electric control box;
[0080] 80. Air outlet frame;
[0081] 90. Volute;
[0082] 110. Wire protection net. DETAILED DESCRIPTION
[0083] Embodiments of the present application are described in detail below with reference to the attached drawing figures, wherein the same or like reference numerals and characters designate the same or like components throughout the drawings. The embodiments described below are presented by way of example only, and are not intended to limit the present application as defined by the claims.
[0084] In the description of the present application, it is to be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0085] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or the internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0086] The air diffusing assembly 10 according to the embodiments of the present application will be described below with reference to the accompanying drawings, wherein, as shown in Figures 26-29 The air diffusing assembly 10 can be used in the air conditioner 100 to play the role of guiding and diffusing the air outlet of the air conditioner 100. The air conditioner 100 can be a cabinet machine, a hanging machine, etc.
[0087] As shown in Figures 1-3 and Figures 22-25 The air diffusing assembly 10 according to the embodiments of the present application comprises a first plate body 1, a first louver 2, a rotating blade 3 and a locking assembly 4.
[0088] Specifically, as shown in Figure 23 and Figure 25 The first plate body 1 is provided with a ventilation hole 11 and a first connecting hole 12. The first louver 2 is rotatably arranged at the first connecting hole 12 through a connecting shaft 21, and the free end of the connecting shaft 21 is provided with a locking head 22. Therefore, the first louver 2 can be arranged on the first plate body 1 through the connecting shaft 21 and can rotate relative to the first plate body 1, and the air diffusing assembly 10 can realize the guiding and diffusing effect of the airflow through the ventilation hole 11 and the first louver 2.
[0089] As shown in Figure 3 and Figures 22-25 The rotating blade 3 is located on the side of the first plate body 1 away from the first louver 2, and the center of the rotating blade 3 is provided with a matching part 31, and the matching part 31 is provided with a matching hole 311, and the matching hole 311 is arranged opposite to the first connecting hole 12. The locking assembly 4 is arranged at the matching hole 311 to lock or release the locking head 22.
[0090] Therefore, the rotating blade 3 can be connected or detached with the first louver 2 through the locking assembly 4. When the rotating blade 3 is connected with the first louver 2, if the first louver 2 swings, the rotating blade 3 will also rotate under the drive of the first louver 2, and the diffusing effect of the airflow by the rotating blade 3 can be realized, and the air diffusing assembly 10 can guide or diffuse the airflow through the cooperation of the ventilation hole 11, the first louver 2 and the rotating blade 3, thereby improving the windless or weak wind feeling of the air outlet of the air conditioner 100 using the air diffusing assembly 10 of the embodiments of the present application, reducing the blowing feeling of the user using the air conditioner 100, and improving the user experience.
[0091] Meanwhile, it is known that, in the air diffusing assembly 10 of the embodiment of the present application, when connecting or disassembling the rotating blade 3 and the first louver 2, only the locking head 22 needs to be locked or released by the locking assembly 4. Specifically, when connecting the rotating blade 3 and the first louver 2, the matching part 31 of the rotating blade 3 is made to be opposite to the first connecting hole 12, and then the locking head 22 is locked by the locking assembly 4, so that the rotating blade 3 and the first louver 2 can be reliably connected, the first louver 2 can drive the rotating blade 3 to rotate through the connecting shaft 21 and the locking assembly 4, and the air guiding and diffusing functions of the air diffusing assembly 10 can be realized. When disassembling the rotating blade 3 and the first louver 2, the locking head 22 is released by the locking assembly 4, so that the first louver 2 and the rotating blade 3 can be disengaged, and then the rotating blade 3 and the first louver 2 can be extracted from the first connecting hole 12.
[0092] In summary, in the air diffusing assembly 10 of the embodiment of the present application, the connection and disassembly of the rotating blade 3 and the first louver 2 can be realized only by locking or releasing the locking head 22 by the locking assembly 4, the connection and disassembly are simple and reliable, the rotating blade 3 or the first louver 2 can be effectively prevented from being damaged during the installation and disassembly, and thus the reliability of the structure of the air diffusing assembly 10 can be improved, and the service life of the air diffusing assembly 10 can be prolonged. It can be understood that the way of locking or releasing the locking head 22 by the locking assembly 4 can be various, for example, the switching can be realized by pressing.
[0093] Meanwhile, it can be understood that, in order to ensure the air quality of the air sent to the room through the air diffusing assembly 10, the air diffusing assembly 10 needs to be cleaned after being used for a period of time. Therefore, the air diffusing assembly 10 of the embodiment of the present application is convenient to disassemble, so that the rotating blade 3 and the first louver 2 can be disassembled from the first plate body 1, the first plate body 1, the rotating blade 3 and the first louver 2 of the air diffusing assembly 10 can be cleaned in all directions, the cleaning effect of the air diffusing assembly 10 is better, the assembly of the air diffusing assembly 10 is convenient, the reliability of the air diffusing assembly 10 is high, and the air diffusing assembly 10 is convenient to use.
[0094] According to the air diffusing assembly 10 of the embodiment of the present application, the locking head 22 is arranged at the free end of the connecting shaft 21 of the first louver 2, and the locking assembly 4 is arranged on the matching hole 311 of the rotating blade 3 to lock or release the locking head. Thus, the connection and disassembly of the rotating blade 3 and the first louver 2 are simple and reliable, the rotating blade 3 or the first louver 2 can be effectively prevented from being damaged during the installation and disassembly, the reliability of the structure of the air diffusing assembly 10 can be improved, the service life of the air diffusing assembly 10 can be prolonged, the first louver 2 and the rotating blade 3 can be cleaned in all directions, the reliability of the air diffusing assembly 10 is high, and the air diffusing assembly 10 is convenient to use.
[0095] As Figures 5-10As shown, according to some embodiments of the present application, the locking assembly 4 comprises a locking housing 41 and a locking clamp 42, the locking clamp 42 cooperates with the locking head 22 to clamp or release the locking head 22, the locking housing 41 is arranged in the cooperating hole 311, the locking clamp 42 is connected with the locking housing 41 and movable relative to the locking housing 41 to switch the locking assembly 4 between the locked state and the unlocked state.
[0096] As shown in Figure 5 , Figure 7 and Figure 9 , in the locked state, at least a part of the locking clamp 42 extends into the locking housing 41 to clamp the locking head 22; as shown in Figure 6 , Figure 8 and Figure 10 , in the unlocked state, at least a part of the locking clamp 42 extends out of the locking housing 41 to release the locking head 22.
[0097] Therefore, in the air diffusing assembly 10 of the embodiments of the present application, when connecting or disassembling the rotating blade 3 and the first louver 2, only the state of the locking assembly 4 needs to be controlled. Specifically, when connecting the rotating blade 3 and the first louver 2, only the cooperating part 31 of the rotating blade 3 is relative to the first connecting hole 12, and then the state of the locking assembly 4 is controlled to enter the locked state, at this time, the locking clamp 42 cooperates with the locking head 22, at least a part of the locking clamp 42 extends into the locking housing 41 to clamp the locking head 22, thereby realizing reliable connection of the rotating blade 3 and the first louver 2, the first louver 2 can drive the rotating blade 3 to rotate through the connecting shaft 21 and the locking assembly 4, thereby realizing the flow guiding and air diffusing functions of the air diffusing assembly 10. When disassembling the rotating blade 3 and the first louver 2, only the state of the locking assembly 4 needs to be switched from the locked state to the unlocked state, at this time, at least a part of the locking clamp 42 extends out of the locking housing 41 to release the locking head 22, thereby the first louver 2 can be disengaged from the rotating blade 3, and then the rotating blade 3 and the first louver 2 can be extracted from the first connecting hole 12.
[0098] According to some embodiments of the present application, one of the outer peripheral wall of the locking housing 41 and the inner peripheral wall of the cooperating hole 311 is provided with a positioning protrusion 411, and the other is provided with a positioning recess 3111, the positioning protrusion 411 extends into the positioning recess 3111. For example, as shown in Figure 4 , the outer peripheral wall of the locking housing 41 is provided with the positioning protrusion 411, and the inner peripheral wall of the cooperating hole 311 is provided with the positioning recess 3111, the positioning protrusion 411 extends into the positioning recess 3111. Therefore, the locking housing 41 can be arranged in the cooperating hole 311 through the cooperation of the positioning protrusion 411 and the positioning recess 3111, thereby improving the reliability of connecting the rotating blade 3 and the first louver 2 by the locking assembly 4, and further improving the reliability of the structure of the air diffusing assembly 10. It can be known that the arrangement of the locking housing 41 in the cooperating hole 311 is simple and reliable.
[0099] Optionally, as shown in Figures 4-6 , the outer peripheral wall of the locking shell 41 is provided with a plurality of positioning protrusions 411 arranged at intervals, and the inner peripheral wall of the matching hole 311 is provided with a plurality of positioning grooves 3111, which are arranged one by one corresponding to the plurality of positioning protrusions 411. In this way, the stability and reliability of the locking shell 41 arranged in the matching hole 311 can be improved, and the reliability of the air diffusing assembly 10 can be further improved.
[0100] According to some embodiments of the present application, as shown in Figure 5 and Figure 6 , the locking assembly 4 further comprises a locking slider 43 movably arranged in the locking shell 41, as shown in Figures 11-14 , the locking clamp 42 is arranged on the locking slider 43. It can be seen that the locking clamp 42 is arranged in the locking slider 43 and can move together with the locking slider 43 relative to the locking shell 41. Thus, in the locked state, the locking slider 43 can be controlled to move in the locking shell 41 towards the bottom wall of the locking shell 41, and then at least a part of the locking clamp 42 gradually extends into the locking shell 41 to reliably clamp the locking head 22, and then the rotating blade 3 and the first louver 2 can be reliably connected. In the process of switching from the locked state to the unlocked state, the locking slider 43 can be controlled to move in the locking shell 41 away from the direction of the bottom wall of the locking shell 41, and then at least a part of the locking clamp 42 extends out of the locking shell 41 to effectively release the locking head 22, and then the rotating blade 3 and the first louver 2 can be detached from the first plate body 1. It should be noted that in the embodiments of the present application, the bottom wall of the locking shell 41 refers to the shell wall of the locking shell 41 away from the locking clamp 42 and away from the first louver 2 and opposite to the first louver 2.
[0101] In some embodiments of the present application, as shown in Figures 7-8 , Figure 11 and Figure 21 , the outer peripheral wall of the locking slider 43 is provided with a sliding protrusion 431, as shown in Figures 7-8 and Figure 21As shown, the locking shell 41 is formed with a sliding groove 412, the extending direction of the sliding groove 412 is the same as the extending direction of the center axis of the matching hole 311, and the sliding protrusion 431 extends into the sliding groove 412 and is movable along the extending direction of the sliding groove 412. Therefore, the arrangement of the sliding protrusion 431 and the sliding groove 412 can limit and guide the movement of the locking slider 43 to some extent, make the movement path of the locking slider 43 more stable, and thus improve the reliability and accuracy of the locking assembly 4 in clamping and releasing the locking head 22. At the same time, the locking slider 43 can be effectively prevented from moving out of the locking shell 41, so that the locking slider 43 can reliably move in the locking shell 41, thereby improving the reliability of the locking assembly 4 and the reliability of the wind scattering assembly 10.
[0102] In some embodiments of the present application, as shown in Figures 16-21 As shown, the locking assembly 4 further comprises a swing hook 44, one end of the swing hook 44 is rotatably arranged on the bottom wall of the locking shell 41, as shown in Figure 5 、 Figure 6 、 Figure 12 、 Figure 17 、 Figure 19 and Figure 20 As shown, the locking slider 43 is provided with a circulating guide rail groove 432, the other end of the swing hook 44 is hooked in the circulating guide rail groove 432 and is movable along the circulating guide rail groove 432, as shown in Figure 5 、 Figure 6 、 Figure 12 and Figure 20 As shown, the circulating guide rail groove 432 is formed with a first positioning inflection point 4321 and a second positioning inflection point 4322, the first positioning inflection point 4321 is located on the side of the second positioning inflection point 4322 close to the locking clamp 42. As shown in Figure 5 In the locked state, the swing hook 44 is hooked at the first positioning inflection point 4321, as shown in Figure 6 In the unlocked state, the swing hook 44 is hooked at the second positioning inflection point 4322. It should be noted that in the specific embodiments of the present application, the circulating guide rail groove 432 refers to a closed groove with the first end connected to the second end. It can be understood that the swing hook 44 can move in the circulating guide rail groove 432 to switch between the first positioning inflection point 4321 and the second positioning inflection point 4322. The circulating guide rail groove 432 can limit and guide the movement of the swing hook 44.
[0103] For example, as shown in Figure 5 and Figure 6As shown, when it is needed to connect and install the rotating blade 3 with the first louver 2, the swing hook 44 can be moved in the anticlockwise direction in the circulating guide rail groove 432 to move from the second positioning inflection point 4322 to the first positioning inflection point 4321, and then the locking slider 43 can be moved towards the bottom wall of the locking shell 41, so that at least a part of the locking clamp 42 can be inserted into the locking shell 41 to reliably clamp the locking head 22, thereby realizing the connection and installation between the rotating blade 3 and the first louver 2. When it is needed to disassemble the rotating blade 3 from the first louver 2, the swing hook 44 can be moved in the anticlockwise direction in the circulating guide rail groove 432 to move from the first positioning inflection point 4321 to the second positioning inflection point 4322, and then the locking slider 43 can be moved away from the bottom wall of the locking shell 41, so that at least a part of the locking clamp 42 can be inserted into the locking shell 41 to effectively release the locking head 22, and then the rotating blade 3 can be disassembled from the first louver 2.
[0104] Of course, it needs to be noted that when the locking assembly 4 is switched between the locked state and the unlocked state, the swing hook 44 can also be moved in the clockwise direction in the circulating guide rail groove 432 to switch between the first positioning inflection point 4321 and the second positioning inflection point 4322, and the moving direction of the swing hook 44 in the circulating guide rail groove 432 mainly depends on the specific shape of the circulating guide rail groove 432. For example, as shown in Figure 5 and Figure 6 The shape surrounded by the inner side wall of the circulating guide rail groove 432 and the shape surrounded by the outer side wall of the circulating guide rail groove 432 correspond to rotating the shape of the inside relative to the shape of the outside in the originally concentric structure by a certain angle in the clockwise direction to form an eccentric structure, and then the swing hook 44 can be moved in the anticlockwise direction in the circulating guide rail groove 432 under the force.
[0105] In some embodiments of the present application, as shown in Figures 5-6 , Figure 17 and Figure 19 The locking assembly 4 further comprises a resilient member 45, one end of the resilient member 45 is connected with the locking shell 41, and the other end of the resilient member 45 is connected with the locking slider 43 to always drive the locking slider 43 to move away from the bottom wall of the locking shell 41. Therefore, under the condition of no other external force, the locking slider 43 will always move away from the bottom wall of the locking shell 41 under the driving of the resilient member 45, and under the extrusion of the external force, the locking slider 43 can overcome the elastic driving force of the resilient member 45 to move towards the bottom wall of the locking shell 41 to extrude the resilient member 45.
[0106] Therefore, it can be understood that the user can realize the switching of the locking assembly 4 between the unlocked state and the locked state by pressing. Specifically, as shown in Figure 6 and Figure 19As shown, when the air diffuser assembly 10 is assembled and the rotating blade 3 is not connected with the first louver 2 and installed on the first plate body 1, the locking assembly 4 is in the unlocked state, at this time, at least a part of the locking clamp 42 is located outside the locking shell 41, and the swing hook 44 is hooked at the second positioning inflection point 4322. When it is needed to connect and install the rotating blade 3 with the first louver 2, the matching part 31 of the rotating blade 3 can be first opposed to the first connecting hole 12, and then a pressing force is applied to the rotating blade 3 and / or the first louver 2, so that the locking head 22 and the locking clamp 42 gradually contact, and under the extrusion of the locking head 22, at least a part of the locking clamp 42 gradually extends into the locking shell 41 to reliably clamp the locking head 22, at this time, the locking slider 43 moves towards the bottom wall of the locking shell 41 under the extrusion force to extrude the elastic member 45, and in the moving process of the locking slider 43, the swing hook 44 moves in the circulating guide groove to move from the second positioning inflection point 4322 to the first positioning inflection point 4321 and is hooked at the first positioning inflection point 4321, so that the locking assembly 4 enters the locked state (as shown in Figure 5 and Figure 17 shown), and then the locking slider 43 can be effectively positioned in the locking shell 41 to ensure that the locking clamp 42 reliably clamps the locking head 22, so that the rotating blade 3 and the first louver 2 can be reliably connected and installed on the first plate body 1.
[0107] When the air diffuser assembly 10 is used for a period of time and needs to be disassembled for cleaning, a pressing force can be applied to the rotating blade 3, so that the locking head 22 extrudes the locking clamp 42, and under the extrusion of the locking head 22, at least a part of the locking clamp 42 continues to gradually move into the locking shell 41 relative to the locked state, at this time, the locking slider 43 continues to move towards the bottom wall of the locking shell 41 under the extrusion force to extrude the elastic member 45. In the moving process of the locking slider 43 towards the bottom wall of the locking shell 41, the swing hook 44 moves in the circulating guide rail groove 432 to move from the first positioning inflection point 4321 to the second positioning inflection point 4322. After the pressing force disappears, the locking slider 43 is only driven by the elastic driving force of the elastic member 45, and then moves towards the direction away from the bottom wall of the locking shell 41, so that the swing hook 44 moves along the circulating guide rail groove 432 and moves back to the second positioning inflection point 4322 and is hooked at the second positioning inflection point 4322 under the guidance of the circulating guide rail groove 432, so that the locking assembly 4 switches to the unlocked state, at this time, at least a part of the locking clamp 42 extends out of the locking shell 41 with the movement of the locking slider 43 to effectively release the locking head 22, so that the rotating blade 3 and the first louver 2 are disengaged, and then the rotating blade 3 and the first louver 2 can be extracted from the first connecting hole 12.
[0108] Therefore, the rotating vane 3 and the first baffle 2 are convenient to disassemble and assemble, damage to the rotating vane 3 or the first baffle 2 during the assembly and disassembly can be effectively avoided, and the reliability of the structure of the air distribution assembly can be improved, thereby prolonging the service life of the air distribution assembly 10.
[0109] In some embodiments of the present application, as shown in Figure 14 、 Figure 17 and Figure 19 , the locking slider 43 is provided with a first mounting hole 433 and a second mounting hole 434 in communication with each other, the second mounting hole 434 is located on one side of the first mounting hole 433 close to the bottom wall of the locking shell 41, and the cross-sectional area of the second mounting hole 434 is greater than that of the first mounting hole 433. As shown in Figure 15 、 Figure 17 and Figure 19 , the bottom wall of the locking shell 41 is provided with a guide column 413, the free end of the guide column 413 extends into the first mounting hole 433 after passing through the second mounting hole 434, and the elastic member 45 is sleeved on the guide column 413, and the end of the elastic member 45 away from the bottom wall of the locking shell 41 abuts against the edge of the first mounting hole 433. Therefore, the arrangement of the guide column 413, the first mounting hole 433 and the second mounting hole 434 can improve the limiting of the elastic member 45, so that the elastic member 45 can be reliably connected to the locking shell 41 through the guide column 413 and can reliably drive the locking slider 43 to move. Therefore, the reliability of the locking assembly 4 and the reliability of the air distribution assembly 10 are improved.
[0110] In some embodiments of the present application, as shown in Figure 5 and Figure 6 , the shape surrounded by the inner side wall of the circulating guide rail groove 432 is eccentrically arranged with the shape surrounded by the outer side wall of the circulating guide rail groove 432. Therefore, the inner wall of the circulating guide rail groove 432 can guide the movement of the swing hook 44, ensuring that the swing hook 44 can move in the same direction (clockwise or counterclockwise) in the circulating guide rail groove 432. Therefore, the swing hook 44 can be switched between the first positioning inflection point 4321 and the second positioning inflection point 4322.
[0111] In some embodiments of the present application, as shown in Figure 11 and Figure 12 , the locking clamp 42 comprises a plurality of clamp bodies 421, and the plurality of clamp bodies 421 are arranged on the locking slider 43 at intervals, and each clamp body 421 is provided with a notch 4211 at the connection with the locking slider 43. Therefore, as shown in Figure 6 , in the unlocked state, the plurality of clamp bodies 421 can be generally formed in a diverging state, so that the locking head 22 can extend into the plurality of clamp bodies 421, and when switching from the unlocked state to the locked state, as shown in Figure 5As shown, the plurality of clamping bodies 421 gradually extend into the locking housing 41 at least in part, and the plurality of clamping bodies 421 gradually deform to be close to each other, thereby reliably clamping the locking head 22. Thus, each clamping body 421 is provided with a notch 4211 at the connection with the locking slider 43, which facilitates to improve the deformation ability of each clamping body 421, and the plurality of clamping bodies 421 are more easily deformed to reliably clamp the locking head 22. In turn, the reliability of the air diffusing assembly 10 is improved.
[0112] According to some embodiments of the present application, as shown in Figure 3 and Figure 4 As shown, the air diffusing assembly 10 further comprises a shaft sleeve 5 rotatably arranged in the first connecting hole 12, the connecting shaft 21 passes through the shaft sleeve 5, the cooperation part 31 is provided with a connecting groove 312, and at least a part of the shaft sleeve 5 is adapted to extend into the connecting groove 312 to rotate synchronously with the rotating blade 3. Thus, when the first louver 2 swings, the rotating blade 3 and the shaft sleeve 5 can be simultaneously driven to rotate, so that the shaft sleeve 5 rotates relative to the first connecting hole 12, which can effectively avoid the interference of the first connecting hole 12 with the connection of the first louver 2 and the rotating blade 3, thereby affecting the swing of the first louver 2 and the rotation of the rotating blade 3. In this way, the air guiding and diffusing effect of the air diffusing assembly 10 on the airflow can be improved, and the reliability of the air diffusing assembly 10 is improved.
[0113] According to some embodiments of the present application, as shown in Figure 1 , Figure 22 and Figure 24 As shown, the first louver 2 is a plurality of first louvers 2, which are spaced apart along the extension direction of the first plate body 1, and the rotating blade 3 is a plurality of rotating blades 3, and the plurality of first louvers 2 and the plurality of rotating blades 3 are one-to-one correspondingly arranged. Thus, the air guiding and diffusing effect of the air diffusing assembly 10 on the airflow can be improved.
[0114] In some embodiments of the present application, as shown in Figures 22-25 The first plate body 1 is further provided with a second connecting hole 13, and the air diffusing assembly 10 further comprises a second louver 7 rotatably arranged at the second connecting hole 13 through a cooperation shaft 71, and a free end of the cooperation shaft 71 is provided with an elastic buckle 72, and at least a part of the elastic buckle 72 passes through the second connecting hole 13 and is clamped at the edge of the second connecting hole 13. Thus, the air diffusing assembly 10 can also guide the airflow through the second louver 7.
[0115] As shown in Figure 23 and Figure 25 In some embodiments of the present application, the elastic buckle 72 comprises a first buckle member 721 and a second buckle member 722, and the first buckle member 721 and the second buckle member 722 are spaced apart in a direction perpendicular to the extension direction of the cooperation shaft 71. Thus, the structure of the elastic buckle 72 is simple and easy to manufacture.
[0116] Meanwhile, it can be understood that when the second louver 7 is assembled to the first plate body 1, the first clamping member 721 and the second clamping member 722 can be subjected to a force to deform the first clamping member 721 and the second clamping member 722 towards each other, so as to facilitate the elastic clamping member 72 to extend into the second connecting hole 13, and then a force is applied to the second louver 7 to gradually extend at least a part of the elastic clamping member 72 out of the second connecting hole 13, and finally clamped at the edge of the second connecting hole 13, so that the second louver 7 can be effectively mounted to the first plate body 1.
[0117] When it is necessary to disassemble the second louver 7 from the first plate body 1, a force can be applied to the first clamping member 721 and the second clamping member 722 on the side of the first plate body 1 away from the second louver 7 to deform the first clamping member 721 and the second clamping member 722 towards each other, and push the first clamping member 721 and the second clamping member 722 towards the second connecting hole 13 to gradually extend the elastic clamping member 72 into the second connecting hole 13, so as to facilitate the elastic clamping member 72 to be pulled out of the second connecting hole 13, thereby achieving the disassembly of the second louver 7.
[0118] Specifically, as shown in Figure 23 and Figure 25 , the air diffusing assembly 10 further comprises a connecting rod 8 connected with the first louver 2 and the second louver 7 respectively to simultaneously drive the first louver 2 and the second louver 7 to oscillate. It can be mentioned that the air diffusing assembly 10 has a guiding effect on the airflow, which is conducive to reliably changing the flow direction of the airflow.
[0119] Specifically, as shown in Figure 22 and Figure 24 , the second louver 7 is a plurality of, and the plurality of first louvers 2 and the plurality of second louvers 7 are arranged alternately, so as to improve the reliability of the overall structure of the plurality of first louvers 2, the plurality of second louvers 7 and the connecting rod 8 arranged on the first plate body 1, and further improve the reliability of the air diffusing assembly 10.
[0120] According to some embodiments of the present application, the locking head 22 and the first louver 2 are an integral molded part. Thus, the production efficiency and assembly efficiency of the air diffusing assembly 10 can be improved, and the reliability of the structure of the air diffusing assembly 10 can be improved.
[0121] According to some embodiments of the present application, as shown in Figure 1 , Figures 22-25As shown, the air-diffusing assembly 10 further comprises a second plate body 6, the second plate body 6 is provided with air-diffusing holes 61, and the second plate body 6 is detachably connected with the first plate body 1. Thus, the air-diffusing effect of the air-diffusing assembly 10 can be improved, and the user experience of using the air conditioner 100 can be improved. Meanwhile, the second plate body 6 is detachably connected with the first plate body 1, which facilitates more comprehensive cleaning of the air-diffusing assembly 10, and makes the use of the air-diffusing assembly 10 more convenient and reliable. Specifically, the air-diffusing holes 61 are a plurality of air-diffusing holes 61, and the plurality of air-diffusing holes 61 are formed into an air-diffusing grille.
[0122] Specifically, as shown in the drawings, Figures 22-25 The turning vane 3 is located between the first plate body 1 and the second plate body 6. Thus, when the air-diffusing assembly 10 is disassembled, the first plate body 1 and the second plate body 6 can be disassembled first, and then the turning vane 3 and the first louver 2 can be disassembled.
[0123] As shown in the drawings, Figures 25-30 The air conditioner 100 according to the embodiment of the present application comprises the air-diffusing assembly 10 according to the above-mentioned embodiment of the present application.
[0124] The air conditioner 100 according to the embodiment of the present application, by arranging the air-diffusing assembly 10 according to the above-mentioned embodiment of the present application, makes the connection and disassembly mode of the turning vane 3 and the first louver 2 simple and reliable, and can effectively avoid damaging the turning vane 3 or the first louver 2 during the installation and disassembly process, thereby improving the reliability of the structure of the air-diffusing assembly 10, and being beneficial to prolonging the service life of the air-diffusing assembly 10. Meanwhile, it is convenient to clean the air-diffusing assembly 10 in all directions, thereby making the air conditioner 100 reliable and convenient to use.
[0125] As shown in the drawings, Figures 25-30 In some embodiments of the present application, the air conditioner 100 comprises a cabinet 20, the cabinet 20 comprises a first panel 201, a second panel 202, a back plate 203 and a bottom plate 204, the cabinet 20 is provided with an air inlet 205 and an air outlet 206, and the air-diffusing assembly 10 is rotatably arranged at the air outlet 206. The first panel 201 and the second panel 202 are respectively connected with the back plate 203, and the first panel 201 and the second panel 202 are sequentially arranged in the up-down direction.
[0126] Specifically, as shown in the drawings, Figures 22-25As shown, the air diffusion assembly 10 further comprises a second plate body 6, which is detachably connected with the first plate body 1, and the rotating vane 3 is located between the first plate body 1 and the second plate body 6. The second plate body 6 is provided with a plurality of air diffusion holes 61, which form an air diffusion grid. The first plate body 1 is formed with a plurality of static vane groups 14, each of which comprises a plurality of static vanes 141, the centers of the plurality of static vanes 141 are provided with first connecting holes 12 or second connecting holes 13, and the two static vanes 141 connected with each other form a ventilation hole 11, and the first plate body 1 is further formed with a ventilation grid. The first louvers 2 are a plurality of, and the air diffusion assembly 10 further comprises a connecting rod 8 and a plurality of second louvers 7, the plurality of second louvers 7 are staggered with the plurality of first louvers 2, and the plurality of first louvers 2 and the plurality of second louvers 7 are connected by the connecting rod 8 to be driven to swing synchronously by the connecting rod 8. The number of the static vane groups 14 is the same as the number of the first louvers 2 and the second louvers 7.
[0127] Therefore, through the cooperation of the static vane group 14, the first louver 2, the second louver 7 and the rotating vane 3, different air outlet effects can be achieved. As can be understood, as Figure 26 and Figure 30 shown, when the air diffusion assembly 10 is rotated to the first plate body 1 completely blocks the air outlet 206, the air conditioner 100 can achieve the windless air outlet effect. When the air diffusion assembly 10 is rotated to the first plate body 1 blocks part of the air outlet 206, the air conditioner 100 can achieve the windless air outlet effect in part of the position and the normal air outlet effect in part of the position. When the air diffusion assembly 10 is rotated to completely open the air outlet 206, the air conditioner 100 can achieve the normal air outlet effect, and the louver can be used to change the air outlet direction of the airflow.
[0128] In some embodiments of the present application, as Figure 1 , Figure 22 and Figure 24 shown, the first end of the first plate body 1 at the opposite ends in the length direction is provided with a pivot shaft 15, and the first end of the second plate body 6 is provided with a through hole 62, and the pivot shaft 15 passes through the through hole 62 and cooperates with the motor of the air conditioner 100 for driving the air diffusion assembly 10 to rotate, so that the air diffusion assembly 10 is rotatable at the air outlet 206, as Figure 1 , Figure 22 , Figure 24 , Figure 27 and Figure 29As shown, the second end of the length direction of the first plate body 1 is provided with a through hole 63, the housing 20 is provided with a driving motor 30, the motor shaft of the driving motor 30 is connected with the connecting rod 8 through the through hole 63 to drive the connecting rod 8 to move, and then the connecting rod 8 drives the plurality of first louvers 2 and the plurality of second louvers 7 to swing, and the plurality of first louvers 2 swing to drive the plurality of rotating leaves 3 to rotate. Therefore, the air conditioner 100 can drive the first louver 2 and the second louver 7 in the air diffuser assembly 10 to swing, and the rotating leaf 3 to rotate by the driving motor 30, and the driving mode is reliable and easy to control.
[0129] As shown in the drawings, Figures 26-28 In some embodiments of the present application, the air conditioner 100 further comprises a switch door 40 movably arranged at the air outlet 206 to open or close the air outlet 206. Thus, it can effectively avoid that the dust and other small particles in the room enter the interior of the air conditioner 100 through the air outlet 206 when the air conditioner 100 is not working, thereby reducing the cleaning frequency of the air conditioner 100, improving the user's experience, and also improving the appearance of the air conditioner 100 to a certain extent.
[0130] As shown in the drawings, Figure 26 and Figure 28 In some embodiments of the present application, the air outlet 206 is a plurality of and is arranged at intervals, and each air outlet 206 is provided with an air diffuser assembly 10 and a switch door 40.
[0131] Specifically, as shown in the drawings, Figure 30 The air conditioner 100 further comprises a heat exchanger 50, a cross-flow fan wheel 60, an electric control box 70, an air outlet frame 80, and a volute 90, so as to ensure the normal operation of the air conditioner 100. The air outlet end of the volute 90 is connected with the air outlet frame 80, and each air outlet frame 80 corresponds to an air outlet 206. The air conditioner 100 further comprises a wire protection net 110, which is located at the air outlet end of the volute 90, thereby avoiding that children put their hands into the interior of the air conditioner 100 when the air diffuser assembly 10 does not shield the air outlet 206, and also avoiding that part of the indoor sundries enters the interior of the air conditioner 100 through the air outlet 206 to a certain extent, thereby improving the safety and reliability of the user using the air conditioner 100. Of course, it can be understood that the wire protection net 110 can also play a role in diffusing the flow to a certain extent.
[0132] The other configurations and operations of the air conditioner 100 according to the embodiments of the present application are known to those skilled in the art, and will not be described in detail here.
[0133] In the description of the specification, reference to "one embodiment", "some embodiments", "an exemplary embodiment", "an example", "a specific example", or "some examples" means that a particular feature, structure, material, or characteristic being described is included in at least one embodiment or example of the application. The appearances of the phrases "in one embodiment", "in some embodiments", "in an exemplary embodiment", "an example", "a specific example", or "some examples" in various places in the specification are not necessarily referring to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.
[0134] Although embodiments of the application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made hereto without departing from the principles and the scope of the application, which is defined by the claims and their equivalents.
Claims
1. A wind dissipating assembly, characterized in that, The utility model relates to an air conditioner, and particularly relates to a first plate body, a first louver, a rotating blade and a locking assembly. The first plate body is provided with a ventilation hole and a first connecting hole, and a pivot shaft is arranged at a first end of the first plate body in a length direction of the first plate body. The first louver is rotatably arranged at the first connecting hole through a connecting shaft. The rotating blade is arranged at a side of the first plate body away from the first louver. The locking assembly is arranged at a cooperating hole of the rotating blade to lock or release the locking head.
2. The air diffuser assembly of claim 1, wherein, The locking assembly comprises a locking shell and a locking clamp. The locking clamp is connected with the locking shell and is movable relative to the locking shell to switch the locking assembly between a locking state and an unlocking state.
3. The air diffuser assembly of claim 2, wherein, In the locking state, at least a part of the locking clamp extends into the locking shell to clamp the locking head.
4. The air diffuser assembly of claim 2, wherein, In the unlocking state, at least a part of the locking clamp extends out of the locking shell to release the locking head.
5. The air diffuser assembly of claim 4, wherein, One of an outer peripheral wall of the locking shell and an inner peripheral wall of the cooperating hole is provided with a positioning protrusion, and the other is provided with a positioning groove.
6. The air diffuser assembly of claim 4, wherein, The locking clamp is arranged on the locking slider. An outer peripheral wall of the locking slider is provided with a sliding protrusion, and the locking shell is formed with a sliding groove. The sliding groove extends in the same direction as a central axis of the cooperating hole.
7. The air diffuser assembly of claim 6, wherein, One end of the swing hook is rotatably arranged on a bottom wall of the locking shell.
8. The air diffuser assembly of claim 7, wherein, The other end of the swing hook is hooked in a circulation guide rail groove of the locking slider and is movable along the circulation guide rail groove. The circulation guide rail groove is formed with a first positioning inflection point and a second positioning inflection point. In the locking state, the swing hook is hooked at the first positioning inflection point. In the unlocking state, the swing hook is hooked at the second positioning inflection point. The locking assembly further comprises a resilient member. One end of the resilient member is connected with the locking shell, and the other end is connected with the locking slider to always drive the locking slider to move away from the bottom wall of the locking shell. The locking slider is provided with a first mounting hole and a second mounting hole in communication with each other. The second mounting hole is located on a side of the first mounting hole close to the bottom wall of the locking shell. The cross-sectional area of the second mounting hole is larger than that of the first mounting hole. The bottom wall of the locking shell is provided with a guide column, a free end of the guide column extends into the first mounting hole through the second mounting hole, the elastic member is sleeved on the guide column, and an end of the elastic member away from the bottom wall of the locking shell abuts against the edge of the first mounting hole.
9. The air diffuser assembly of claim 6, wherein, The shape surrounded by the inner side wall of the circulating guide rail groove is eccentrically arranged with the shape surrounded by the outer side wall of the circulating guide rail groove.
10. The air diffuser assembly of claim 4, wherein, The locking clamp comprises a plurality of clamp bodies, the plurality of clamp bodies are arranged at intervals on the locking slider, and each clamp body is provided with a notch at the connection position with the locking slider.
11. The air diffuser assembly of claim 1, wherein, Further comprising a shaft sleeve, the shaft sleeve is rotatably arranged in the first connecting hole, the connecting shaft is arranged in the shaft sleeve, the matching part is provided with a connecting groove, and at least a part of the shaft sleeve is adapted to extend into the connecting groove to rotate synchronously with the rotating blade.
12. The air diffuser assembly of claim 1, wherein, The first louvers are a plurality of first louvers, the plurality of first louvers are arranged at intervals along the extension direction of the first plate body, the rotating blade is a plurality of rotating blades, and the plurality of first louvers and the plurality of rotating blades are arranged one by one.
13. The air diffuser assembly of claim 12, wherein, The first plate body is further provided with a second connecting hole, the air diffusing assembly further comprises a second louver, the second louver is rotatably arranged at the second connecting hole through a matching shaft, a free end of the matching shaft is provided with an elastic buckle, and at least a part of the elastic buckle is clamped on the edge of the second connecting hole after extending through the second connecting hole.
14. The air diffuser assembly of claim 13, wherein, The elastic buckle comprises a first buckle member and a second buckle member, the first buckle member and the second buckle member are arranged at intervals in the extension direction perpendicular to the matching shaft.
15. The air diffuser assembly of claim 13, wherein, Further comprising a connecting rod, the connecting rod is connected with the first louver and the second louver respectively to drive the first louver and the second louver to swing simultaneously.
16. The air diffuser assembly of claim 1, wherein, The locking head and the first louver are an integral molded part.
17. The air diffuser assembly of any one of claims 1-16, wherein, Further comprising a second plate body, the second plate body is provided with an air diffusing hole, and the second plate body is detachably connected with the first plate body.
18. An air conditioner characterized by comprising: The air diffusing assembly comprises the air diffusing assembly according to any one of claims 1-17.
Citation Information
Patent Citations
Air dispersing assembly and air conditioner with same
CN213747241U