Air guide component and air conditioner with same
By designing the air guide components, multi-dimensional air delivery is achieved through air guide strips and airflow channels, solving the problems of uneven temperature and stuffiness caused by the single air outlet direction of the air conditioner, and improving the temperature adjustment speed and user comfort of the air conditioner.
Patent Information
- Application Number
- CN202511236232.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2021-04-01
- Publication Date
- 2025-11-04
AI Technical Summary
Existing air conditioners have a single airflow direction, resulting in uneven indoor temperature, slow temperature adjustment, poor user comfort, and a tendency to cause stuffiness.
It employs air guiding components, including air guide plates and air guide strip assemblies, using two air guide strips to guide air in directions away from each other. Combined with airflow channels and side air outlets, it achieves multi-dimensional air supply and promotes micro-circulation of room air.
It accelerates air circulation throughout the room, quickly adjusts temperature uniformity, enhances user comfort, solves the problems of direct cold air blowing and inability of hot air to reach the room, and improves the overall performance of the air conditioner.
Smart Images

Figure CN120890174A_ABST
Abstract
Description
[0001] This application is a divisional application of application No. 202110358186.8, titled "Air guide component and air conditioner having the same", filed on April 1, 2021 TECHNICAL FIELD
[0002] The present application relates to the technical field of air conditioners, and in particular to an air guide component and an air conditioner having the same. BACKGROUND
[0003] With the improvement of people's living standards, air conditioners have gradually entered thousands of households. However, the air outlet direction of the air conditioner is single, and through the setting of the air deflector and the louver, the air outlet angle can only be fine-tuned in the current air outlet direction. The indoor temperature is not uniform, and the temperature adjustment speed is slow. More specifically, the air conditioner in the related art is prone to slow room temperature drop and temperature rise when cooling and heating, and the temperature is not evenly distributed, which can cause the problem of uneven temperature. In addition, the indoor air makes users feel stuffy, and the user experience comfort is poor. SUMMARY
[0004] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application proposes an air guide component that can achieve multi-dimensional air supply.
[0005] The present application also proposes an air conditioner having the above air guide component.
[0006] According to the air guide component of the first aspect of the present application, the air guide component comprises: an air deflector; an air guide strip assembly connected to the inner side of the air deflector and comprising two air guide strips spaced apart along the width direction of the air deflector, each of the air guide strips being adapted to guide the airflow flowing from the inner side to the outer side of the air deflector to a direction away from the other air guide strip, and the two air guide strips defining an airflow channel therebetween, the airflow channel extending along the length direction of the air deflector and being open at both ends in the extension direction to form a side air outlet.
[0007] According to the air guide component of the present application, on the basis of guiding air by two air guide strips in directions away from each other, multi-dimensional air supply can be achieved by combining the air outlet of the side air outlet with the airflow channel, so as to accelerate the stirring of the air in the whole house, promote the microcirculation of the air in the room, make people not feel stuffy, and quickly adjust the temperature, improve the temperature uniformity, and improve the user comfort experience.
[0008] In some embodiments, at least one of the air guide strips has at least one flow guide groove, and the flow guide groove extends from the air inlet end of the corresponding air guide strip to the air outlet end of the air guide strip.
[0009] In some embodiments, the flow guide grooves are multiple and are arranged at intervals along the length direction of the corresponding air guide strips.
[0010] In some embodiments, the extension direction of at least one of the flow guide grooves is perpendicular to the length direction of the air guide strips, or the extension direction of at least one of the flow guide grooves is inclined to the length direction and the width direction of the air guide strips.
[0011] In some embodiments, the flow guide grooves include external flow guide grooves formed on the outside of the corresponding air guide strips, and the external flow guide grooves are formed on the side surface of the corresponding air guide strips facing away from the air deflector.
[0012] In some embodiments, the flow guide surface of the external flow guide grooves is configured as a concave curved surface facing the direction of the air deflector.
[0013] In some embodiments, the flow guide grooves include internal flow guide grooves formed on the inside of the corresponding air guide strips, and the inlet and outlet of the internal flow guide grooves both penetrate the surface of the corresponding air guide strips.
[0014] In some embodiments, the side surface of at least one of the air guide strips facing away from the air deflector is a smooth surface.
[0015] In some embodiments, at least part of the side surface of at least one of the air guide strips facing away from the air deflector is configured as a concave curved surface facing the direction of the air deflector.
[0016] In some embodiments, the side surface of at least one of the air guide strips facing away from the air deflector includes an extension portion extending smoothly in the direction of the median plane of the air deflector, and the extension portion is located on the side of the air flow passage away from the air deflector.
[0017] In some embodiments, the two air guide strips are symmetrically arranged about the median plane of the air deflector.
[0018] In some embodiments, at least one of the air guide strips includes multiple sub-segments arranged in sequence along the length direction of the air deflector, each of the sub-segments is detachably connected to the air deflector, and the installation positions of the multiple sub-segments are interchangeable.
[0019] In some embodiments, the air deflector has multiple air holes, and the air holes are in communication with the air flow passage.
[0020] The air conditioner according to the second aspect of the present application comprises: a body, the body having an air duct therein, the body having an air inlet and an air outlet communicating with the air duct; a wind guide component, the wind guide component being arranged at the air outlet and being the wind guide component according to the first aspect of the present application; and a driving mechanism, the driving mechanism being connected between the wind guide component and the body and being used to drive the wind guide component to move relative to the body.
[0021] The air conditioner according to the embodiment of the present application can realize multi-dimensional air supply by using the air flow passage to combine the air outlet of the side air outlet on the basis of using the two wind guide strips to guide air in directions away from each other, so that the whole house air can be stirred up quickly, the air microcirculation in the room is promoted, people do not feel stuffy, the temperature can be adjusted quickly, the temperature uniformity is improved, the user comfort experience is improved, and the overall performance of the air conditioner is improved.
[0022] In some embodiments, the air conditioner is an air conditioner hanging machine, the air outlet is formed at the bottom front side and / or the front lower side of the body, and the driving mechanism drives the wind guide component to be movable and / or rotatable.
[0023] Additional aspects and advantages of the present application will be given in part in the following description, become apparent from the following description, or be understood through practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is a schematic diagram of an air conditioner according to an embodiment of the present application;
[0025] Figure 2 is Figure 1 is an exploded view of the wind guide component shown in
[0026] Figure 3 is Figure 2 is an assembly view of the wind guide component shown in
[0027] Figure 4 is a sectional view along line A-A in Figure 3
[0028] Figure 5 is a front air outlet state diagram of an air conditioner according to an embodiment of the present application;
[0029] Figure 6 is a rear air outlet state diagram of an air conditioner according to an embodiment of the present application;
[0030] Figure 7 is a front and rear air outlet state diagram of an air conditioner according to an embodiment of the present application;
[0031] Figure 8 This is a diagram showing the off state of an air conditioner according to an embodiment of the present invention;
[0032] Figure 9 This is a diagram showing the operating state of an air conditioner according to an embodiment of the present invention;
[0033] Figure 10 This is a diagram showing the front and rear air outlet states of an air conditioner according to another embodiment of the present invention;
[0034] Figure 11 This is a diagram showing the front air outlet state of an air conditioner according to another embodiment of the present invention;
[0035] Figure 12 This is a diagram showing the open state of an air conditioner according to another embodiment of the present invention;
[0036] Figure 13 This is a perspective view of an air conditioner according to Embodiment 1 of the present invention;
[0037] Figure 14 yes Figure 13 An exploded view of the air guide vane assembly shown;
[0038] Figure 15 It is along Figure 14 Sectional view of the middle BB line;
[0039] Figure 16 This is an exploded view of the air guide vane assembly according to Embodiment 2 of the present invention;
[0040] Figure 17 yes Figure 16 A schematic diagram of the air guide vane assembly shown;
[0041] Figure 18 It is along Figure 17 A cross-sectional view of the CC line;
[0042] Figure 19 yes Figure 16 Another schematic diagram of the air guide vane assembly shown;
[0043] Figure 20 It is along Figure 19 Sectional view of the DD line;
[0044] Figure 21 This is an exploded view of the air guide assembly according to Embodiment 3 of the present invention;
[0045] Figure 22 yes Figure 21 A schematic diagram of the air guide vane assembly shown;
[0046] Figure 23 It is along Figure 22 A cross-sectional view of the EE line;
[0047] Figure 24 is Figure 23 another view of the air deflector assembly shown in
[0048] Figure 25 is a sectional view along Figure 24 line F-F in Fig. 1;
[0049] Figure 26 is a sectional view along Figure 24 line G-G in Fig. 1;
[0050] Figure 27 is a view of the air deflector assembly and the driving mechanism according to an embodiment of the present application;
[0051] Figure 28 is an enlarged view of the H portion shown in Figure 27 Fig. 1;
[0052] Figure 29 is an exploded view of the air deflector assembly according to an embodiment of the present application;
[0053] Figure 30 is an enlarged view of the I portion shown in Figure 29 Fig. 1;
[0054] Figure 31 is a partial sectional view of the air deflector assembly according to an embodiment of the present application;
[0055] Figure 32 is a schematic view of an air conditioner according to an embodiment of the present application;
[0056] Figure 33 is Figure 32 another view of the air conditioner shown in Fig. 2, which does not show the air deflector assembly.
[0057] Reference numerals:
[0058] air conditioner 1000;
[0059] air deflector assembly 100;
[0060] air deflector 1; length direction F1; width direction F2; thickness direction F3; median plane S of the air deflector;
[0061] vent hole 11; air flow passage 12; side air outlet 13;
[0062] air deflector assembly 2; air deflector 20; inner side surface 201; air inlet end 202; air outlet end 203;
[0063] first wall surface 204; second wall surface 205; third wall surface 206; sub segment 207;
[0064] First air guide bar 21; first sub-section 211; second sub-section 212;
[0065] Second air guide bar 22; extension 23; cavity 24;
[0066] Air guide groove 25; external air guide groove 251; air guide surface 2510;
[0067] Internal air guide groove 252; inlet 2521; outlet 2522; spacing portion 26; groove 27;
[0068] Buckle assembly 3; clamping block 31; clamping hook 32;
[0069] Limiting assembly 4; limiting slot 41; limiting plug 42;
[0070] Mounting seat 5;
[0071] Air outlet 200; air inlet 300; heat exchange component 400; ventilation component 500;
[0072] Air duct component 600; air duct 601; machine body 700; driving mechanism 800. DETAILED DESCRIPTION
[0073] Embodiments of the present application are described in detail below with reference to several examples illustrated in the attached drawings, wherein like or similar elements are denoted by the same or similar reference signs throughout the drawings. The embodiments described below are exemplary and are intended to explain the present application, and are not to be understood as limiting the present application.
[0074] The disclosure that follows provides many different embodiments, or examples, for implementing different structures of the present application. For the purpose of simplicity, the elements and settings of the particular examples below are described in some instances by reference to only a few of the many possible embodiments. In no way should the claims be limited to the specific examples described. It is also noted that the specific examples given in the description are for illustration only and are not intended to be limiting. Furthermore, the examples are given for the purpose of clarity and are not intended to be exhaustive. The application is provided with respect to a variety of particular embodiments and examples, and it is to be understood that the application can be carried out by specific ways of accomplishing a result which are within the scope of the application, that specifically enumerated numerical ranges should be considered to include any and all sub-ranges thereof; and, that all methods described include all possible variations of those methods.
[0075] Hereinafter, with reference to the drawings, a guide component 100 according to an embodiment of the present application and an air conditioner 1000 having the same are described.
[0076] It should be noted that the air guide component 100 according to the embodiment of the present application is not limited to be applied to the air conditioner 1000, i.e., can also be applied to other devices having an air outlet function, such as an air purifier, etc. In addition, it should be noted that the type of the air conditioner 1000 to which the air guide component 100 according to the embodiment of the present application is applied is not limited, for example, can be applied to an all-in-one air conditioner, such as a mobile air conditioner, a window air conditioner, etc., and for example, can also be applied to an indoor unit of a split air conditioner, such as an air conditioner hanging machine, an air conditioner cabinet machine, etc.
[0077] For simplicity of description, hereinafter, only the air guide component 100 according to the embodiment of the present application applied to the air conditioner 1000 is taken as an example for description, and after reading the technical solutions hereinafter, it is obvious that the person skilled in the art can understand the specific embodiments of the air guide component 100 according to the embodiment of the present application applied to other devices having an air outlet function, which will not be described here. In addition, it can be understood that, as shown in Figure 1 The air conditioner 1000 has an air outlet 200 and an air inlet 300, air flows from the air inlet 300 into the air conditioner 1000, and flows out of the air conditioner 1000 from the air outlet 200, and the air guide component 100 is arranged at the air outlet 200 to at least adjust the air outlet effect of the air outlet 200.
[0078] As shown in Figure 1 and Figure 2 The air guide component 100 can include an air guide plate 1 and an air guide strip assembly 2, the air guide strip assembly 2 is connected to the inner side of the air guide plate 1, it should be noted that the side of the air guide plate 1 close to the air outlet 200 is the inner side of the air guide plate 1, and the side of the air guide plate 1 away from the air outlet 200 is the outer side of the air guide plate 1, the air guide strip assembly 2 is arranged on the inner side of the air guide plate 1 and connected with the air guide plate 1, i.e., arranged on the windward side of the air guide plate 1, thereby playing the effect of guiding air. It should be noted that the specific connection mode of the air guide strip assembly 2 and the air guide plate 1 is not limited, which can be a split piece and assembled (including detachable assembly and non-detachable assembly, etc.) or an integral piece (including integral molding and secondary injection molding, etc.).
[0079] As shown in Figure 3 and Figure 4 The air guide strip assembly 2 can include two air guide strips 20 spaced apart along the width direction F2 of the air guide plate 1, each air guide strip 20 is adapted to guide the air flow flowing from the inner side to the outer side of the air guide plate 1 to a direction away from the other air guide strip 20. For example Figure 3 and Figure 4 The air guide strip assembly 2 includes the first air guide strip 21 and the second air guide strip 22, the first air guide strip 21 and the second air guide strip 22 are spaced apart along the width direction F2 of the air guide plate 1, the first air guide strip 21 is adapted to guide the air flow flowing from the inner side to the outer side of the air guide plate 1 to a direction away from the second air guide strip 22, for exampleFigure 4 As shown by the S1 line, the second air guide 22 is adapted to direct the airflow flowing from the inside to the outside of the air guide plate 1 in a direction away from the first air guide 21 (e.g., the direction indicated by the S1 line). Figure 4 The direction indicated by the S2 line shown in the diagram is derived.
[0080] Therefore, according to the embodiment of the present invention, the air guide component 100, by providing two air guide strips 20 arranged laterally spaced along the inner side of the air guide plate 1, and by using the two air guide strips 20 to guide air in directions away from each other, achieves at least two dimensions of adjustable airflow (e.g., Figure 4 As shown, the S1 and S2 directions of airflow are adjustable, which can quickly regulate the temperature of the whole room, improve the uniformity of temperature diffusion, and significantly agitate the indoor air to alleviate the user's stuffy feeling. Moreover, the airflow effect can be adjusted significantly by rotating a small angle, thereby reducing the energy consumption of driving the air guide component 100 and achieving a more obvious effect in adjusting the airflow direction and volume.
[0081] Furthermore, when the air guide component 100 according to the embodiments of the present invention is used in a wall-mounted air conditioner, it can solve the problems of cold air blowing directly on the user and hot air not reaching the user's feet, for example... Figure 5-6 As shown, the air conditioner 1000 is a wall-mounted air conditioner. The air outlet 200 is formed on the bottom front side and / or lower front part of the unit 700. Two air guides 20 are spaced apart in the front-rear direction. The air guide component 100 can switch to the front air outlet state (e.g., Figure 5 (as shown) and rear air outlet status (e.g.) Figure 6 As shown), Figure 5 As shown, in the front air outlet mode, the airflow from the air outlet 200 passes forward through the front air guide strip 20 and is guided forward, which can prevent cold air from blowing directly on the user. In the rear air outlet mode, the airflow from the air outlet 200 passes backward through the rear air guide strip 20 and is guided backward, which can solve the problem that hot air cannot reach the user's feet directly.
[0082] It should be noted that the air guide strip 20 can be configured as one complete long strip structure extending along the length direction F1 of the air guide panel 1, and the air guide strip 20 can also be composed of at least two short strip structures arranged in sequence along the length direction F1 of the air guide panel 1. In addition, it should be noted that the surface of the air guide strip 20 for guiding air (i.e. the air guide surface) needs to be determined according to the specific structure of the air guide strip 20, for example, the air guide surface of the air guide strip 20 can include the outer surface and the inner surface of the air guide strip 20, and the like, for example, in the following embodiment one and embodiment two, the side surface of the air guide strip 20 away from the air guide panel 1 (i.e. the inner side surface 201 of the air guide strip 20) is the air guide surface of the air guide strip 20, and in the following embodiment three, the side surface of the air guide strip 20 away from the air guide panel 1 (i.e. the inner side surface 201 of the air guide strip 20) and the inner surface of the air guide strip 20 are the air guide surface of the air guide strip 20.
[0083] In some embodiments of the present application, as shown in Figure 3 and Figure 4 , the air guide panel 1 has a plurality of air holes 11, and it can be understood that the air holes 11 penetrate the inner side surface and the outer side surface of the air guide panel 1. The airflow channel 12 is defined between the two air guide strips 20, and the airflow channel 12 communicates with the air holes 11, so that a part of the air flow flowing from the inner side to the outer side of the air guide panel 1 can enter the airflow channel 12, and then flow out from the air holes 11 on the air guide panel 1 to the outer side of the air guide panel 1 (for example, in the direction indicated by the S3 line shown in Figure 4 ). Thus, the air guide component 100 can have at least three air outlet dimensions, two air outlet dimensions of the two air guide strips 20 respectively in the direction away from each other, and one air outlet dimension of the airflow channel 12 and the air holes 11 (for example, the air outlet in the three directions of S1, S2, S3 shown in Figure 4 ).
[0084] Thus, on the basis of guiding air in the direction away from each other by the two air guide strips 20, the air in the whole room can also be stirred by the air outlet of the airflow channel 12 and the air holes 11, promoting the microcirculation of the air in the room, so that people will not feel stuffy, and through multi-dimensional air supply, the temperature can be quickly adjusted, the temperature uniformity can be improved, and the user's comfortable experience can be improved. And when the air guide component 100 according to the embodiments of the present application is used for an air conditioner, the air in the whole room can be stirred by the air outlet of the airflow channel 12 and the air holes 11 to promote the microcirculation of the air in the room, so that people will not feel stuffy, and the problem of single-dimensional air supply being not comfortable is solved, in short, front, back and lower multi-dimensional air supply can be achieved, thereby improving the user's comfortable experience.
[0085] For example, in Figure 5 and Figure 6As shown, when the air conditioner 1000 is a wall-mounted air conditioner, when the air guide component 100 switches to the front air outlet state (e.g.) Figure 5 As shown, the airflow from the air outlet 200 flows forward and is guided by the front air guide strip 20, which can prevent cold air from blowing directly on the user. In addition, some airflow can also flow out to the outside of the air guide plate 1 through the airflow channel 12 and the ventilation hole 11, thereby accelerating the stirring of the air in the whole room, promoting the micro-circulation of the room air, so that people do not feel stuffy. Furthermore, through multi-dimensional air supply, the temperature can be quickly adjusted, improving temperature uniformity and enhancing the user's comfort experience.
[0086] When the air guide component 100 switches to the rear air outlet state (e.g.) Figure 6 As shown, the airflow from the air outlet 200 is guided by the rear air guide strip 20, which can solve the problem that hot air cannot reach the user's feet directly. In addition, part of the airflow can also flow out to the outside of the air guide plate 1 through the airflow channel 12 and the ventilation hole 11, thereby accelerating the stirring of the air in the whole room, promoting the micro-circulation of the room air, so that people do not feel stuffy. Furthermore, through multi-dimensional air supply, the temperature can be quickly adjusted, the temperature uniformity can be improved, and the user's comfort experience can be enhanced.
[0087] In addition, combined Figure 7 When the air conditioner 1000 is a wall-mounted air conditioner, the air guide component 100 can also have a front and rear air outlet state. At this time, the airflow from the air outlet 200 is divided into three streams: one stream flows forward through the front air guide strip 20, one stream flows backward through the rear air guide strip 20, and one stream flows out to the outside of the air guide plate 1 through the airflow channel 12 and the vent 11. This can accelerate the stirring of the air in the whole room, promote the micro-circulation of the room air, so that people do not feel stuffy. In addition, through multi-dimensional air supply, the temperature can be quickly adjusted, the temperature uniformity can be improved, and the user comfort experience can be enhanced.
[0088] In addition, combined Figure 8 When the air conditioner 1000 is a wall-mounted air conditioner, the air guide component 100 can also be in a closed state. At this time, the air guide component 100 blocks the air outlet 200. If the air conditioner 1000 is in a turned-off state, no airflow will flow out from the air outlet 200. If the air conditioner is in a turned-on state, the airflow from the air outlet 200 can flow out to the outside of the air guide plate 1 through the airflow channel 12 and the vent 11. When the vent 11 is a micro-hole, a gentle breeze (or no breeze) can be achieved.
[0089] In some embodiments of the present invention, such as Figure 3 and Figure 4 As shown, an airflow channel 12 is defined between the two air guide strips 20. The airflow channel 12 extends along the length direction F1 of the air guide plate 1, and both ends of the airflow channel 12 are open in the extending direction to form a side air outlet 13. For example Figure 3The length direction F1 of the air deflector 1 shown in FIG. 1 is the left-right direction, the airflow channel 12 extends along the left-right direction, the left end of the airflow channel 12 is open to become the left side air outlet 13, and the right end of the airflow channel 12 is open to become the right side air outlet 13. In this way, a part of the airflow flowing from the inner side to the outer side of the air deflector 1 can enter the airflow channel 12, and then flow out of the air deflector 100 from the left side air outlet 13 (for example Figure 3 indicated by the S4 line shown in FIG. 4) and the right side air outlet 13 (for example Figure 3 indicated by the S5 line shown in FIG. 5). Thus, the air deflector 100 can have two air outlet dimensions in which the two air deflector strips 20 respectively blow air in directions away from each other, and two air outlet dimensions in which air is respectively blown out through the two ends of the airflow channel 12, that is, the left side air outlet 13 and the right side air outlet 13, for a total of at least four air outlet dimensions (for example Figure 3 and Figure 4 indicated by the S1, S2, S4, and S5 lines shown in FIGS. 1, 2, 4, and 5).
[0090] Thus, on the basis of the two air deflector strips 20 respectively blowing air in directions away from each other, the airflow channel 12 and the side air outlets 13 can also be used to accelerate the stirring of the air in the entire room, promote the microcirculation of the air in the room, make people not feel stuffy, and through multi-dimensional air supply, quickly adjust the temperature, improve the uniformity of the temperature, and improve the user's comfortable experience. Moreover, when the air deflector 100 according to the embodiments of the present application is used in an air conditioner hanging machine, the problem of cold air directly blowing on the user and hot air not being able to directly reach the user's feet can be solved, the airflow channel 12 and the side air outlets 13 can be used to accelerate the stirring of the air in the entire room, promote the microcirculation of the air in the room, make people not feel stuffy, solve the problem of single-dimensional air supply not being comfortable enough, and in short, front, back, left, and right multi-dimensional air supply can be achieved, thereby improving the user's comfortable experience.
[0091] For example, as shown in Figure 5 and Figure 6 when the air conditioner 1000 is an air conditioner hanging machine, when the air deflector 100 is switched to a front air outlet state (for example Figure 5 shown in FIG. 6), the airflow flowing out of the air outlet 200 passes through the front air deflector strip 20, and a part of the airflow can also flow out to the left and right sides of the air deflector 1 through the airflow channel 12 and the side air outlets 13 (in combination with Figure 9 , that is, the left and right sides), thereby accelerating the stirring of the air in the entire room, promoting the microcirculation of the air in the room, making people not feel stuffy, and through multi-dimensional air supply, quickly adjusting the temperature, improving the uniformity of the temperature, and improving the user's comfortable experience.
[0092] When the air deflector 100 is switched to a back air outlet state (for example Figure 6When the air conditioner 1000 is an air conditioner hanging machine, the air guide component 100 can also have a front and rear air outlet state, at this time, the airflow flowing out of the air outlet 200 is divided into four streams, one stream is guided forward through the front air guide strip 20, one stream is guided backward through the rear air guide strip 20, and the other two streams are respectively guided out to the outside of the two ends of the length of the air guide plate 1 through the side air outlets 13 on the left and right sides (i.e., left and right sides) of the airflow channel 12, so as to accelerate the stirring of the air in the whole house, promote the microcirculation of the air in the room, so that people will not feel stuffy, and through multi-dimensional air supply, quickly adjust the temperature, improve the temperature uniformity, and improve the user's comfortable experience. Figure 9 When the air conditioner 1000 is an air conditioner hanging machine, the air guide component 100 can also have a front and rear air outlet state, at this time, the airflow flowing out of the air outlet 200 is divided into four streams, one stream is guided forward through the front air guide strip 20, one stream is guided backward through the rear air guide strip 20, and the other two streams are respectively guided out to the outside of the two ends of the length of the air guide plate 1 through the side air outlets 13 on the left and right sides (i.e., left and right sides) of the airflow channel 12, so as to accelerate the stirring of the air in the whole house, promote the microcirculation of the air in the room, so that people will not feel stuffy, and through multi-dimensional air supply, quickly adjust the temperature, improve the temperature uniformity, and improve the user's comfortable experience.
[0093] In addition, as shown in Figure 7 When the air conditioner 1000 is an air conditioner hanging machine, the air guide component 100 can also have a front and rear air outlet state, at this time, the airflow flowing out of the air outlet 200 is divided into four streams, one stream is guided forward through the front air guide strip 20, one stream is guided backward through the rear air guide strip 20, and the other two streams are respectively guided out to the outside of the two ends of the length of the air guide plate 1 through the side air outlets 13 on the left and right sides (i.e., left and right sides) of the airflow channel 12, so as to accelerate the stirring of the air in the whole house, promote the microcirculation of the air in the room, so that people will not feel stuffy, and through multi-dimensional air supply, quickly adjust the temperature, improve the temperature uniformity, and improve the user's comfortable experience. Figure 9 When the air conditioner 1000 is an air conditioner hanging machine, the air guide component 100 can also have a front and rear air outlet state, at this time, the airflow flowing out of the air outlet 200 is divided into four streams, one stream is guided forward through the front air guide strip 20, one stream is guided backward through the rear air guide strip 20, and the other two streams are respectively guided out to the outside of the two ends of the length of the air guide plate 1 through the side air outlets 13 on the left and right sides (i.e., left and right sides) of the airflow channel 12, so as to accelerate the stirring of the air in the whole house, promote the microcirculation of the air in the room, so that people will not feel stuffy, and through multi-dimensional air supply, quickly adjust the temperature, improve the temperature uniformity, and improve the user's comfortable experience.
[0094] In some embodiments of the present application, as shown in Figure 3 and Figure 4 The airflow channel 12 extends along the length direction F1 of the air guide plate 1, and the two ends of the airflow channel 12 in the extension direction are open to form the side air outlets 13. The air guide plate 1 has a plurality of air holes 11 penetrating the inner side surface 201 and the outer side surface of the air guide plate 1, and the air holes 11 are in communication with the airflow channel 12. Therefore, as described above, the air guide component 100 can have two air outlet dimensions of the two air guide strips 20 respectively air outlet in directions away from each other, one air outlet dimension of air outlet through the airflow channel 12 and the air holes 11, and two air outlet dimensions of air outlet through the side air outlets 13 at the two ends of the airflow channel 12, a total of at least five air outlet dimensions (as shown in S1, S2, S3, S4, S5 five directions of air outlet in Figure 3 and Figure 4 ).
[0095] Thus, on the basis of guiding air in directions away from each other by the two air guide strips 20, the air in the whole room can also be quickly stirred by the air flow channel 12, the air vent 11 and the air outlet of the side air outlet 13, the microcirculation of the room air is promoted, people will not feel stuffy, and the temperature can be quickly adjusted by multi-dimensional air supply, the temperature uniformity is improved, and the user's comfortable experience is improved. And when the air guide part 100 according to the embodiment of the application is used for an air conditioner hanging machine, the air in the whole room can be quickly stirred by the air flow channel 12, the air vent 11 and the air outlet of the side air outlet 13 to promote the microcirculation of the room air while solving the problem of cold air directly blowing on the user and hot air not reaching the user's feet. The problem of single-dimensional air supply being not comfortable is solved, in short, front, rear, left, right and lower multi-dimensional air supply can be achieved, thereby improving the user's comfortable experience.
[0096] For example, in Figure 5 and Figure 6 When the air conditioner 1000 is an air conditioner hanging machine, when the air guide part 100 is switched to a front air outlet state (for example, as shown in Figure 5 ), the air flow from the air outlet 200 passes through the front air guide strip 20, which can avoid cold air directly blowing on the user, and part of the air flow can also flow out to the outside of the air guide plate 1 through the air flow channel 12 and the air vent 11, and part of the air flow can also flow out to both sides of the length of the air guide plate 1 through the air flow channel 12 and the side air outlet 13 (combined Figure 9 , i.e. left and right sides), so that the air in the whole room can be quickly stirred, the microcirculation of the room air is promoted, people will not feel stuffy, and the temperature can be quickly adjusted by multi-dimensional air supply, the temperature uniformity is improved, and the user's comfortable experience is improved.
[0097] When the air guide part 100 is switched to a rear air outlet state (for example, as shown in Figure 6 ), the air flow from the air outlet 200 passes through the rear air guide strip 20, which can solve the problem that hot air cannot directly reach the user's feet, and part of the air flow can also flow out to the outside of the air guide plate 1 through the air flow channel 12 and the air vent 11, and part of the air flow can also flow out to both sides of the length of the air guide plate 1 through the air flow channel 12 and the side air outlet 13 (combined Figure 9 , i.e. left and right sides), so that the air in the whole room can be quickly stirred, the microcirculation of the room air is promoted, people will not feel stuffy, and the temperature can be quickly adjusted by multi-dimensional air supply, the temperature uniformity is improved, and the user's comfortable experience is improved.
[0098] In addition, in combination with Figure 7When the air conditioner 1000 is an air conditioner hanging machine, the air guide component 100 can also have a front and rear air outlet state, at this time, the airflow flowing out of the air outlet 200 is divided into five strands, one strand is guided forward through the front air guide strip 20, one strand is guided backward through the rear air guide strip 20, one strand is guided out to the outside of the air deflector 1 through the airflow channel 12 and the air hole 11 and the side air outlet 13, and the other two strands are guided out to the outside of the length of the air deflector 1 (combined with Figure 9 , that is, the left and right sides) through the airflow channel 12 and the side air outlet 13 on both sides, so that the whole house air can be quickly stirred, the room air microcirculation is promoted, people will not feel stuffy, and through multi-dimensional air supply, the temperature is quickly adjusted, the temperature uniformity is improved, and the user's comfortable experience is improved.
[0099] In addition, in combination with Figure 8 When the air conditioner 1000 is an air conditioner hanging machine, the air guide component 100 can also have a closed state, at this time, the air guide component 100 blocks the air outlet 200, if the air conditioner 1000 is in a shutdown state, no airflow will flow out of the air outlet 200, if the air conditioner is in a start-up state, the airflow flowing out of the air outlet 200 can flow out to the outside of the air deflector 1 through the airflow channel 12 and the air hole 11, when the air hole 11 is a micropore, the soft wind feeling (or called windless feeling) air outlet can be realized.
[0100] With the improvement of people's living standards, air conditioners gradually enter thousands of households, but the air outlet direction of the air conditioner is single, and through the setting of the air deflector and the louver, the air outlet angle can only be fine-tuned in the current air outlet direction, the indoor temperature is not uniform, and the temperature adjustment speed is slow. More specifically, the air conditioner in the related art is slow in room temperature drop and temperature rise, and also causes the problem of uneven temperature, and the indoor air makes the user feel stuffy, and the user experience comfort is poor. The air guide component 100 according to the embodiment of the application can also realize multi-dimensional air supply by using the airflow channel 12 in combination with the air outlet of the side air outlet 13 and / or the air hole 11 on the basis of using two air guide strips 20 to guide air in directions away from each other, so that the whole house air can be stirred quickly, the room air microcirculation is promoted, people will not feel stuffy, and the temperature can be quickly adjusted, the temperature uniformity is improved, and the user's comfortable experience is improved.
[0101] In addition, people can cause air conditioning disease and other problems when being blown by cold wind for a long time in an air conditioning environment. Some air conditioners in the related art have the effect of preventing cold wind from directly blowing, but in the mode of preventing cold wind from directly blowing, the cold quantity cannot be maintained, the room temperature rises quickly, and the comfort is not high. According to the air guide component 100, the cold wind directly blowing problem can be solved, the air in the whole house can be quickly stirred, the cold quantity can be maintained, the room temperature can be kept low and uniform, the comfort is high, the air flow speed in the room can be controlled, the problem of cold wind directly blowing can be well solved, and people will not feel stuffy in the room. The implementation is simple and reliable.
[0102] It can be understood that when the air conditioner 1000 is an air conditioner hanging machine, as shown in Figure 5 The "front air outlet state" described herein refers to that the air guide component 100 moves to the rear side of the air outlet 200, a front air outlet opening is defined between the front end of the air guide component 100 and the front side edge of the air outlet 200, and there is no rear air outlet opening between the rear end of the air guide component 100 and the rear side edge of the air outlet 200. The air flow can be guided forward by the front air guide strip 20, and cannot be guided backward by the rear air guide strip 20.
[0103] It can be understood that when the air conditioner 1000 is an air conditioner hanging machine, as shown in Figure 6 The "rear air outlet state" described herein refers to that the air guide component 100 moves to the front side of the air outlet 200, there is no front air outlet opening between the front end of the air guide component 100 and the front side edge of the air outlet 200, and a rear air outlet opening is defined between the rear end of the air guide component 100 and the rear side edge of the air outlet 200. The air flow can be guided backward by the rear air guide strip 20, and cannot be guided forward by the front air guide strip 20.
[0104] It can be understood that when the air conditioner 1000 is an air conditioner hanging machine, as shown in Figure 7 The "front and rear air outlet state" described herein refers to that a front air outlet opening is defined between the front end of the air guide component 100 and the front side edge of the air outlet 200, and a rear air outlet opening is defined between the rear end of the air guide component 100 and the rear side edge of the air outlet 200. The air flow can be guided backward by the rear air guide strip 20, and can be guided forward by the front air guide strip 20.
[0105] In the "front and rear air outlet state", the opening distance X1 of the front air outlet opening and the opening distance X2 of the rear air outlet opening are not limited, for example, both can be 0mm-200mm, and further, the preferred range can be 28mm-55mm, so that the air supply effect can be guaranteed.
[0106] It can be understood that when the air conditioner 1000 is an air conditioner hanging machine, as shown in Figure 8As shown, the "closed state" described herein refers to: there is no front air outlet between the front end of the air guide component 100 and the front side edge of the air outlet 200, there is no rear air outlet between the rear end of the air guide component 100 and the rear side edge of the air outlet 200, and the airflow cannot be guided out by the rear air guide strip 20 to the rear side, nor can it be guided out by the front air guide strip 20 to the front side.
[0107] In some examples, when the air flow channel 12 extends along the length direction F1 of the air guide plate 1 and the two ends in the extension direction are open to form the side air outlet 13, in the closed state, the side air outlet 13 can be hidden in the body 700 of the air conditioner 1000. Thus, in the off state, dirt and the like can be prevented from entering the air conditioner 1000 through the side air outlet 13, improving the reliability and sealing of the air conditioner 1000.
[0108] It should be noted that the shape of the air guide plate 1 is not limited, for example, it can be designed to match the appearance of the air conditioner 1000. For example, in some specific examples, as shown in Figure 5-8 As shown, the outer side surface of the air guide plate 1 can be formed as a flat surface, thereby facilitating processing, and when the air guide component 100 is applied to the air outlet 200 at the front side of the bottom of the air conditioner, when the air guide component 100 is in the closed state, the bottom surface of the air conditioner can be ensured to be flat, thereby saving space.
[0109] For another example, in some specific examples, as shown in Figure 10-11 As shown, the outer side surface of the air guide plate 1 can be formed as a convex curved surface, that is, the middle part of the outer surface of the air guide plate 1 protrudes outwardly, thereby increasing the setting range of the air hole 11 to some extent, thereby increasing the air volume and range of the air outlet through the air hole 11, improving the effect of stirring the air in the whole house, and when the air guide component 100 is applied to the air outlet 200 at the front side and the lower front side of the bottom of the air conditioner, when the air guide component 100 is in the closed state, the appearance of the lower front corner of the air conditioner can be ensured to be smooth, thereby saving space and avoiding problems such as bumping with the user.
[0110] It should be noted that the height of the air guide strip 20 is not limited, for example Figure 4 As shown, in the thickness direction F3 of the air guide plate 1, the height H of the air guide strip 20 and the width W of the air guide plate 1 can satisfy the relationship: W / 8≤H≤W / 3, for example, H=W / 3, H=W / 4, H=W / 5, H=W / 6, H=W / 7, H=W / 8, etc., thereby ensuring the air guide effect.
[0111] In some embodiments of the present application, as shown in Figure 12 As shown, the side surface (i.e. the inner side surface 201) of at least one air guide strip 20 away from the air guide plate 1 includes an extension 23 extending smoothly toward the median vertical plane S of the air guide plate 1 (for example Figure 12The extension part 23 is located on the side of the air flow channel 12 away from the air deflector 1. It should be noted that the "median plane S of the air deflector 1" refers to: passing through the center of the air deflector 1, extending along the length direction F1 of the air deflector 1, and perpendicular to the plane of the air deflector 1. Thus, by extending the air inlet end 202 of the air deflector strip 20 towards the median plane S of the air deflector 1 (i.e. extending in the direction from the air outlet end 203 to the air inlet end 202 of the air deflector strip 20), the air deflector area of the air deflector strip 20 can be increased, and the air flow can be smoother.
[0112] In some embodiments of the present application, at least one air deflector strip 20 has at least one flow guide groove 25 extending from the air inlet end 202 to the air outlet end 203 of the corresponding air deflector strip 20. It should be noted that the position of the flow guide groove 25 is not limited, for example, it can be formed inside and / or outside the air deflector strip 20 (for example, it can be an internal flow guide groove 252 and / or an external flow guide groove 251 described below), so that the flow guide groove 25 can be used to divide the flow, so that the air can be better stirred, the temperature regulation efficiency can be improved, and the temperature uniformity can be improved.
[0113] In some embodiments of the present application, when an air deflector strip 20 has a flow guide groove 25 (for example, it can be an internal flow guide groove 252 and / or an external flow guide groove 251 described below), the flow guide groove 25 can be provided in multiple and spaced apart along the length direction F1 of the air deflector strip 20. Thus, the effect of the flow guide groove 25 is more obvious, the air can be better stirred, the temperature regulation efficiency can be improved, and the temperature uniformity can be improved.
[0114] In some embodiments of the present application, when an air deflector strip 20 has a flow guide groove 25 (for example, it can be an internal flow guide groove 252 and / or an external flow guide groove 251 described below), optionally, the extension direction of at least one flow guide groove 25 is perpendicular to the length direction F1 of the air deflector strip 20, thereby facilitating processing. Alternatively, the extension direction of at least one flow guide groove 25 is inclined to the length direction F1 and the width direction F2 of the air deflector strip 20, that is, the extension direction of at least one flow guide groove 25 intersects the length direction F1 of the air deflector strip 20 at an acute angle or an obtuse angle, so that the air supply angle can be adjusted to meet the needs of different application scenarios, and the air can be better stirred, the temperature regulation efficiency can be improved, and the temperature uniformity can be improved.
[0115] It should be noted that the specific structure of the air deflector strip 20 is not limited and can be in various forms. Below, four alternative embodiments are introduced respectively.
[0116] Embodiment one, as Figure 13-15As shown, at least one side surface (i.e. inner side surface 201) of the air guide strip 20 facing away from the air deflector 1 is a smooth surface, which can be a smooth plane or a smooth curved surface, as long as there is no air guide groove 25. In this way, the processing is facilitated, and the air flow is smooth and unobstructed.
[0117] In the second embodiment, as shown in FIG. 2B, the air deflector 1 comprises at least one air guide strip 20, and the air guide strip 20 comprises at least one air guide groove 25. Figure 16-20 As shown, the air guide strip 20 has at least one air guide groove 25, and the air guide groove 25 extends from the air inlet end 202 of the corresponding air guide strip 20 to the air outlet end 203 of the air guide strip 20. In this embodiment, the air guide groove 25 comprises an external air guide groove 251 formed on the outside of the corresponding air guide strip 20, and the external air guide groove 251 is formed on the side surface (i.e. inner side surface 201) of the corresponding air guide strip 20 facing away from the air deflector 1. It should be noted that the part of the inner side surface 201 of the air guide strip 20 between the two adjacent external air guide grooves 251 is a spacing portion 26. In this way, part of the air flow out of the inner side surface 201 of the air guide strip 20 can flow out through the spacing portion 26, and the other part of the air flow out of the inner side surface 201 of the air guide strip 20 can flow out along the external air guide groove 251, so that the air can be further agitated, the temperature regulation efficiency can be improved, and the temperature uniformity can be improved.
[0118] Optionally, as shown in FIG. 2C, the air guide surface 2510 (i.e. groove bottom surface) of the external air guide groove 251 is configured as a curved surface concave toward the direction of the air deflector 1. In this way, when the air deflector 1 is used to adjust the blowing direction of the cold air, the air guide surface 2510 of the external air guide groove 251 can be used to avoid the cold air blowing directly downward to the user, thereby improving the comfort of the user. Figure 20 It should be noted that the external air guide groove 251 can extend in a direction perpendicular to the length direction F1 of the air guide strip 20, or in a direction intersecting the length direction F1 of the air guide strip 20 at an acute or obtuse angle, so as to meet the air blowing requirements in different directions. For example, in the specific example shown in FIG. 2D, the first air guide strip 21 comprises two sub-segments 207 arranged in sequence along the length direction F1 of the air deflector 1, i.e. a first sub-segment 211 and a second sub-segment 212. Each of the plurality of external air guide grooves 251 on the first sub-segment 211 is inclined in a direction away from the second sub-segment 212 from the air inlet end 202 to the air outlet end 203, and each of the plurality of external air guide grooves 251 on the second sub-segment 212 is inclined in a direction away from the first sub-segment 211 from the air inlet end 202 to the air outlet end 203. In this way, the air can be blown from the same side on both sides, and the air blowing range in the left-right direction can be increased, so that the air can be better agitated, the temperature regulation efficiency can be improved, and the temperature uniformity can be improved.
[0119] Figure 16 It should be noted that the external air guide groove 251 can extend in a direction perpendicular to the length direction F1 of the air guide strip 20, or in a direction intersecting the length direction F1 of the air guide strip 20 at an acute or obtuse angle, so as to meet the air blowing requirements in different directions. For example, in the specific example shown in FIG. 2D, the first air guide strip 21 comprises two sub-segments 207 arranged in sequence along the length direction F1 of the air deflector 1, i.e. a first sub-segment 211 and a second sub-segment 212. Each of the plurality of external air guide grooves 251 on the first sub-segment 211 is inclined in a direction away from the second sub-segment 212 from the air inlet end 202 to the air outlet end 203, and each of the plurality of external air guide grooves 251 on the second sub-segment 212 is inclined in a direction away from the first sub-segment 211 from the air inlet end 202 to the air outlet end 203. In this way, the air can be blown from the same side on both sides, and the air blowing range in the left-right direction can be increased, so that the air can be better agitated, the temperature regulation efficiency can be improved, and the temperature uniformity can be improved.
[0120] Of course, the present invention is not limited to this. When the air conditioner is installed in a corner of the room, the tilt direction of the external guide groove 251 on the first sub-section 211 can be set to the same as the tilt direction of the external guide groove 251 on the second sub-section 212, so as to realize the same side single-sided air supply, increase the air supply range to the left or right, so as to better agitate the air, improve the temperature regulation efficiency, and improve the temperature uniformity.
[0121] Example 3, as Figure 21-26 As shown, at least one air guide strip 20 has at least one guide groove 25. The guide groove 25 extends from the air inlet end 202 of the corresponding air guide strip 20 to the air outlet end 203 of the air guide strip 20. In this embodiment, the guide groove 25 includes an internal guide groove 252 formed inside the corresponding air guide strip 20. The inlet 2521 and outlet 2522 of the internal guide groove 252 both penetrate the surface of the corresponding air guide strip 20, that is, the inlet 2521 of the internal guide groove 252 penetrates the air inlet end 202 of the air guide strip 20, and the outlet 2522 of the internal guide groove 252 penetrates the air outlet end 203 of the air guide strip 20. Thus, the airflow can not only flow out along the guide of the inner surface 201 of the air guide strip 20, but also flow out along the guide of the internal guide groove 252, thereby further agitating the air, improving the temperature regulation efficiency, and improving the temperature uniformity.
[0122] It should be noted that the internal guide grooves 252 can extend in a direction perpendicular to the length direction F1 of the air guide strip 20, or in a direction intersecting the length direction F1 of the air guide strip 20 at an acute or obtuse angle, thereby meeting the air supply requirements in different directions. For example, in some specific examples, the air guide strip 20 may include two parts of equal length arranged sequentially along the length direction F1 of the air guide plate 1. Each of the multiple internal guide grooves 252 on the left part is inclined to the left in the direction from the air inlet end 202 to the air outlet end 203, and each of the multiple internal guide grooves 252 on the right part is inclined to the right in the direction from the air inlet end 202 to the air outlet end 203. Thus, air supply on both sides of the same side can be achieved, increasing the air supply range in the left and right directions, thereby better agitating the air, improving temperature regulation efficiency, and improving temperature uniformity.
[0123] Of course, the present invention is not limited to this. When the air conditioner is installed in a corner of the room, the tilt direction of all the internal guide grooves 252 on the air guide strip 20 can be set to be consistent, so as to realize the same side single-sided air supply, increase the air supply range to the left or right, so as to better agitate the air, improve the temperature regulation efficiency, and improve the temperature uniformity.
[0124] In some embodiments of the present application, at least one of the wind-guiding strips 20 is provided with at least one air-guiding groove 25 extending from the air-inlet end 202 to the air-outlet end 203 of the corresponding wind-guiding strip 20 (for example, but not limited to, the above-mentioned embodiment two, the above-mentioned embodiment three, and the above-mentioned embodiment four), so as to better agitate the air, improve the temperature adjustment efficiency, and improve the uniformity of the temperature.
[0125] In some embodiments of the present application, at least one of the wind-guiding strips 20 is provided with at least one air-guiding groove 25 extending from the air-inlet end 202 to the air-outlet end 203 of the corresponding wind-guiding strip 20 (for example, but not limited to, the above-mentioned embodiment two, the above-mentioned embodiment three, and the above-mentioned embodiment four), so as to better agitate the air, improve the temperature adjustment efficiency, and improve the uniformity of the temperature.
[0126] In some embodiments of the present application, at least part of the side surface (i.e., the inner side surface 201) of at least one of the wind-guiding strips 20 facing away from the air-guiding panel 1 is configured as a curved surface concave toward the air-guiding panel 1. Thus, when the air-guiding direction of the cold air is adjusted by using the wind-guiding strip 20, the cold air can be prevented from being blown downwardly directly to the user, and the comfort of the user can be improved. For example, the inner side surface 201 of the wind-guiding strip 20 of the above-mentioned embodiment one can be configured as a curved surface concave toward the air-guiding panel 1, and for example, the air-guiding surface of the air-guiding groove 25 of the above-mentioned embodiment two, the above-mentioned embodiment three, and the above-mentioned embodiment four can be configured as a curved surface concave toward the air-guiding panel 1.
[0127] In some embodiments of the present application, the cavity 24 is formed in at least one of the wind-guiding strips 20, so as to reduce the weight and the cost, and to improve the problem of condensation on the outer side surface of the air-guiding panel 1. For example, the cavity 24 can be formed in the wind-guiding strip 20 of the above-mentioned embodiment one or the above-mentioned embodiment two, and for example, the internal air-guiding groove 252 of the above-mentioned embodiment three and the above-mentioned embodiment four can be used as the cavity 24.
[0128] It should be noted that the specific connection method between the air guide strip 20 and the air guide plate 1 is not limited. For example, in some embodiments, at least one air guide strip 20 and the air guide plate 1 are integral parts, which facilitates processing and can improve the connection reliability between the air guide strip 20 and the air guide plate 1. It should be noted that the integral part can be an integrally molded part or a secondary injection molded part, etc.
[0129] Alternatively, in some other embodiments, at least one air guide strip 20 and air guide plate 1 are separate components but assembled together. Thus, the air guide strip 20 and air guide plate 1 can be individually manufactured to meet their respective air guiding requirements, facilitating processing and enabling simple and effective requirements fulfillment. It should be noted that the specific assembly method is not limited; it can be a non-detachable assembly connection, such as bonding or riveting, or a detachable assembly connection, such as threaded connection, snap-fit connection, or magnetic connection, allowing the air guide strip 20 to be disassembled as needed for cleaning, replacement, maintenance, and other operations.
[0130] For example, in some specific examples, at least one air guide strip 20 is detachably connected to the air guide plate 1 via a snap-fit assembly 3 and / or a magnetic attraction assembly, that is, detachably connected via at least one of the snap-fit assembly 3 and the magnetic attraction assembly. This eliminates the need for screw tightening, facilitating disassembly. For example, in... Figure 27-30 In the example shown, the snap-fit assembly 3 is in multiple sets and spaced apart along the length direction F1 of the air guide plate 1, thereby improving the reliability of the snap-fit connection.
[0131] In some specific examples, such as Figure 27-31 As shown, the snap-fit assembly 3 is located on the side of the corresponding air guide strip 20 facing the airflow channel 12, and the side of the air guide strip 20 away from the airflow channel 12 (i.e., the air outlet end 203 of the air guide strip 20) is limited and engaged with the air guide plate 1 by the limiting assembly 4. This reduces the interference of the snap-fit assembly 3 and the limiting assembly 4 on the airflow, and ensures the reliability and ease of assembly of the air guide strip 20 simply and effectively.
[0132] In some specific examples, such as Figure 28 and Figure 30 As shown, a groove 27 is formed on the side surface of the air guide strip 20 facing the airflow channel 12. The snap-fit assembly 3 includes a snap block 31 disposed in the groove 27 and a snap hook 32 disposed on the air guide plate 1. The snap hook 32 extends into the groove 27 and engages with the snap block 31. Thus, by placing the snap hook 32 on the air guide plate 1, it is easy to process. The assembly of the snap hook 32 and the snap block 31 is simple and reliable. By setting the groove 27 to accommodate the snap block 31, the engagement of the snap hook 32 and the snap block 31 can avoid occupying the space of the airflow channel 12, reducing the interference of the snap-fit assembly 3 on the airflow.
[0133] In some specific examples, such as 30 andFigure 31 As shown, the limiting assembly 4 includes a limiting slot 41 and a limiting block 42, the limiting slot 41 is formed in the width side edge of the air deflector 1 (i.e. the side edge extending along the length direction F1 of the air deflector 1 and located on the width direction F2 of the air deflector 1), the limiting block 42 is arranged on the side of the air deflector strip 20 away from the air flow channel 12 (i.e. the air outlet end 203 of the air deflector strip 20), and the limiting block 42 is inserted into the limiting slot 41. Thus, the limiting slot 41 and the limiting block 42 are relatively simple to process and easy to assemble, and the limiting effect is reliable.
[0134] In some specific examples of the present application, as shown in Figure 30 and Figure 31 As shown, the air deflector strip 20 can include a first wall surface 204 and a second wall surface 205, both of which extend along the length direction F1 of the air deflector 1, the first wall surface 204 serves as a side wall of the air flow channel 12, and the first wall surface 204 can have a groove 27 and a clamping block 31, one end of the second wall surface 205 is connected to the end of the first wall surface 204 away from the air deflector 1 to form the air inlet end 202 of the air deflector strip 20, the other end of the second wall surface 205 extends towards the air deflector 1 and serves as the air outlet end 203 of the air deflector strip 20, the outer surface of the second wall surface 205 is the inner side surface 201 of the air deflector strip 20, and the end of the second wall surface 205 close to the air deflector 1 can have a limiting block 42.
[0135] Thus, the air deflector strip 20 has a simple structure and is hollow inside, which is relatively light in weight, can improve the problem of condensation on the air deflector 1, and when assembled with the air deflector 1, since the air deflector strip 20 does not have a third wall surface 206 that fits the inner side surface of the air deflector 1, there is no large face-to-face contact, which on the one hand can reduce the machining precision and ensure the smoothness of assembly, and on the other hand can avoid the air deflector strip 20 causing the air deflector 1 to deform. However, the present application is not limited thereto, and in some other examples of the present application, the air deflector strip 20 can also have a third wall surface 206, thereby improving the structural strength of the air deflector strip 20.
[0136] In some embodiments of the present application, as shown in Figure 16 Thus, it is convenient to process, and when both air deflector strips 20 are detachably assembled with the air deflector 1, it is convenient to process and assemble, i.e. when processing, there is no need to process two kinds of air deflector strips 20, and when assembling, there is no need to select air deflector strips 20, which has interchangeability.
[0137] In some specific examples of the present application, as shown in Figure 16As shown, at least one air guide strip 20 includes a plurality of sub-segments 207 arranged in sequence along the length direction F1 of the air deflector 1, each sub-segment 207 is detachably connected with the air deflector 1, and the installation positions of the plurality of sub-segments 207 are interchangeable. Thus, when the air guiding effects of the plurality of sub-segments 207 are the same, assembly is facilitated, and when the air guiding effects of the plurality of sub-segments 207 are different, different air guiding effects can be combined by exchanging the positions of different sub-segments 207.
[0138] In some specific examples, both air guide strips 20 include a plurality of sub-segments 207 arranged in sequence along the length direction F1 of the air deflector 1, each sub-segment 207 is detachably connected with the air deflector 1, and the installation positions of all sub-segments 207 are interchangeable. Thus, assembly is facilitated, and in some cases, different air guiding effects can be combined.
[0139] For example, in Figure 16 In the specific example shown, each air guide strip 20 is divided into two sub-segments 207 from the middle, each sub-segment 207 is detachably connected with the air deflector 1, and the positions of any two of the four sub-segments 207 are interchangeable, thereby realizing any combination of the four sub-segments 207. Thus, assembly is facilitated, and when the structures and air guiding effects of the four sub-segments 207 are different, different air guiding effects can be combined.
[0140] Next, an embodiment in which the air guiding component 100 according to the embodiment of the present application is applied to an air conditioner 1000 is described.
[0141] As Figure 32-33 shown, the air conditioner 1000 can include a body 700, an air guiding component 100, and a driving mechanism 800, the body 700 has an air duct 601 therein, the body 700 has an air inlet 300 and an air outlet 200 that communicate with the air duct 601, the air guiding component 100 is arranged at the air outlet 200, and the driving mechanism 800 is connected between the air guiding component 100 and the body 700 and is used to drive the air guiding component 100 to move relative to the body 700. Thus, according to the air conditioner 1000 of the embodiment of the present application, by arranging the air guiding component 100 described above and driving the air guiding component 100 to move by the driving mechanism 800, multi-dimensional air supply and switching can be realized, thereby air in the entire room can be stirred quickly, microcirculation of air in the room can be promoted, people will not feel stuffy, temperature can be adjusted quickly, temperature uniformity can be improved, and user comfort experience can be improved. For example, in some specific examples, in combination with Figure 5 , the body 700 can include a heat exchange component 400, a ventilation component 500, and an air duct component 600, the heat exchange component 400 can include a heat exchanger, an electric auxiliary heater, etc., the ventilation component 500 can include a fan, a motor, etc., and the air duct component 600 can define the air duct 601.
[0142] In some embodiments of the present application, asFigure 27 and Figure 28 As shown in FIG. 7, two mounting seats 5 are arranged on the inner side surface of the air deflector 1, and the two mounting seats 5 are respectively arranged on both sides of the air deflector strip assembly 2, i.e., on both sides in the length direction F1 of the air deflector 1. The driving mechanism 800 is adapted to be connected with the mounting seats 5, so as to mount the air deflector component 100 to the body 700. In this way, the driving mechanism 800 can be arranged on both sides of the air deflector strip assembly 2, so as to avoid interference with the air flow and ensure the air outlet effect.
[0143] In some embodiments of the present application, as shown in FIG. 8, the air conditioner 1000 is an air conditioner wall-mounted machine, and the air outlet 200 is formed on the bottom front side and / or the front lower side of the body 700. The driving mechanism 800 drives the air deflector component 100 to be movable and / or rotatable, so as to simply and effectively drive the air deflector component 100 to switch different states. It should be noted that the movable state can include reciprocating movement along a straight line and / or a curved trajectory. In this way, the air deflector component 100 can be driven to switch at least one of the above-mentioned closed state, front air outlet state, rear air outlet state and front-rear air outlet state. Figure 32 and Figure 33 As shown in FIG. 8, the air conditioner 1000 is an air conditioner wall-mounted machine, and the air outlet 200 is formed on the bottom front side and / or the front lower side of the body 700. The driving mechanism 800 drives the air deflector component 100 to be movable and / or rotatable, so as to simply and effectively drive the air deflector component 100 to switch different states. It should be noted that the movable state can include reciprocating movement along a straight line and / or a curved trajectory. In this way, the air deflector component 100 can be driven to switch at least one of the above-mentioned closed state, front air outlet state, rear air outlet state and front-rear air outlet state.
[0144] Specifically, when the driving mechanism 800 can drive the air deflector component 100 to move, the moving direction of the air deflector component 100 can be determined according to the arrangement position of the air outlet 200.
[0145] For example, as shown in FIG. 9, when the air outlet 200 is formed on the bottom front side of the body 700, the moving direction of the air deflector component 100 can be a straight downward direction. When the driving mechanism 800 drives the air deflector component 100 to move downward to a lowered position, the air outlet 200 can be opened. The driving mechanism 800 can drive the air deflector component 100 to rotate at the lowered position, so as to switch the front air outlet state (for example, as shown in FIG. 10), the rear air outlet state (for example, as shown in FIG. 11) and the front-rear air outlet state (for example, as shown in FIG. 12). When the driving mechanism 800 drives the air deflector component 100 to move upward to a raised position, the air deflector component 100 can present the closed state (for example, as shown in FIG. 13). Figure 5-8 Figure 5 Figure 6 Figure 7 Figure 8
[0146] For another example, as shown in FIG. 14, when the air outlet 200 is formed on the bottom front side and the front lower side of the body 700, the moving direction of the air deflector component 100 can be an oblique direction along a straight line or a curve. When the driving mechanism 800 drives the air deflector component 100 to move obliquely downward to an oblique pushed-out position, the air outlet 200 can be opened. The driving mechanism 800 can drive the air deflector component 100 to rotate at the oblique pushed-out position, so as to switch the front air outlet state (for example, as shown in FIG. 15), the rear air outlet state (for example, as shown in FIG. 16) and the front-rear air outlet state (for example, as shown in FIG. 17). Figure 10-11 Figure 11 the front air outlet state (as shown in FIG. 1), the rear air outlet state (as shown in FIG. 2), and the front-rear air outlet state (as shown in FIG. 3) Figure 10 When the driving mechanism 800 drives the air guide component 100 to move obliquely upward to the oblique pullback position, the air guide component 100 can assume the closed state (as shown in FIG. 4).
[0147] It should be noted that the specific structure of the driving mechanism 800 is not limited, for example, it can include gears, racks, connecting rods, etc. to achieve movement and rotation, which is not limited here. In the front-rear air outlet state, the air flow can be guided forward and rearward from the air guide strips 20 of the air guide component 100, and from the air holes 11 and / or the side air outlets 13, so as to improve the problem of cold or hot air directly blowing on the user; in the rear air outlet state, the air flow can be guided rearward from the air guide component 100 to be downward, ensuring the warm feet effect, and in the front air outlet state, the air flow can be guided forward from the air guide component 100 to improve the problem of cold air blowing on the user. In short, the effect of up-down anti-direct blowing and multi-dimensional air outlet can be easily achieved, meeting the user's demand for air avoiding different areas and improving the user's experience comfort. For example, through testing, in the front-rear air outlet state, the temperature stratification at the maximum air volume place in the room is uniform, the difference between the maximum temperature and the minimum temperature is not more than 5°, and the temperature difference between adjacent heights is not more than 0.5°. This test result proves the advantage of the air guide component 100 of the embodiment of the present application in rapidly and uniformly stratifying the room temperature.
[0148] In the description of the present application, it should be understood that the terms "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0149] In addition, the terms "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0150] In the present application, unless specifically defined otherwise, the terms "mounting", "connected", "connecting", "fixed", "fixedly connected", "connection", "fixedly connected", "connected", "fixed", and the like should be construed broadly, for example, can be fixed connection, can be detachable connection, or integral; can be directly connected, or indirectly connected through an intermediate medium; can be internal communication of two elements or interaction relationship between 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.
[0151] In the present application, unless specifically defined otherwise, the first feature is "on" or "under" the second feature can be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, the first feature "above", "over" and "on" the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "under" and "under" the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0152] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any suitable manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine different embodiments or examples described in the present application and the features of different embodiments or examples without contradiction.
[0153] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.
Claims
1. An air guiding component, characterized in that, include: Air guide plate; An air guide assembly is connected to the inner side of the air guide plate and includes two air guide strips spaced apart along the width direction of the air guide plate. Each air guide strip has an inner surface, which is a side surface of the air guide strip that is opposite to the air guide plate and opposite to the other air guide strip. The inner surface extends from the air inlet end of the air guide strip to the air guide plate. Each air guide strip is adapted to guide airflow flowing from the inside to the outside of the air guide plate away from the other air guide strip, at least through the inner surface. An airflow channel is defined between the two air guide strips. The air guide plate has a plurality of vents that communicate with the airflow channel. The airflow channel extends along the length direction of the air guide plate and is open at both ends in the extension direction to form a side air outlet.
2. The air guide component according to claim 1, characterized in that, At least one of the air guide strips has at least one flow channel extending from the air inlet end of the corresponding air guide strip to the air outlet end of the air guide strip.
3. The air guide component according to claim 2, characterized in that, The guide channels are multiple and spaced apart along the length of the corresponding air guide strips.
4. The air guide component according to claim 2, characterized in that, At least one of the flow guide grooves extends perpendicularly to the length direction of the air guide strip, or at least one of the flow guide grooves extends at an angle to both the length and width directions of the air guide strip.
5. The air guide component according to claim 2, characterized in that, The flow channel includes an external flow channel formed on the outside of the corresponding air guide strip, the external flow channel being formed on the side surface of the corresponding air guide strip opposite to the air guide plate.
6. The air guide component according to claim 5, characterized in that, The guiding surface of the external guide groove is constructed as a concave curved surface facing the direction of the air guide plate.
7. The air guide component according to claim 2, characterized in that, The flow channel includes an internal flow channel formed inside the corresponding air guide strip, the inlet and outlet of which both penetrate the surface of the corresponding air guide strip.
8. The air guide component according to claim 1, characterized in that, At least one of the air guide strips has a smooth surface on the side facing away from the air guide plate.
9. The air guide component according to claim 1, characterized in that, At least a portion of the surface of at least one of the air guide strips facing away from the air guide plate is configured as a concave curved surface toward the air guide plate.
10. The air guide component according to claim 1, characterized in that, At least one of the air guide strips has an extension on the side facing away from the air guide plate, which extends smoothly toward the vertical plane of the air guide plate and is located on the side of the airflow channel away from the air guide plate.
11. The air guide component according to claim 1, characterized in that, The two air guide strips are symmetrically arranged about the vertical plane of the air guide plate.
12. The air guide component according to claim 1, characterized in that, At least one of the air guide strips includes a plurality of sub-segments arranged sequentially along the length of the air guide plate, each sub-segment being detachably connected to the air guide plate, and the installation positions of the plurality of sub-segments being interchangeable.
13. The air guide component according to claim 1, characterized in that, The outer surface of the air guide plate is formed as a convex curved surface or a flat surface.
14. An air conditioner, characterized in that, include: The body has an air duct inside, and the body has an air inlet and an air outlet communicating with the air duct. An air guide component, wherein the air guide component is disposed at the air outlet, and is an air guide component according to any one of claims 1-14; as well as A drive mechanism is connected between the air guide component and the body, and is used to drive the air guide component to move relative to the body.
15. The air conditioner according to claim 14, characterized in that, The air conditioner is a wall-mounted air conditioner, and the air outlet is formed on the bottom front side and / or lower front part of the unit. The drive mechanism drives the air guide component to be movable and / or rotatable.