Air conditioner indoor unit
By employing movable air guides and a simplified drive unit in the indoor air conditioning unit, the problems of small air delivery angle and poor comfort in traditional indoor air conditioning units have been solved, achieving sufficient air volume and multi-mode air output, reducing costs and improving stability.
Patent Information
- Application Number
- CN202110602664.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-05-31
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2041-05-31
AI Technical Summary
The traditional air conditioner indoor unit's air guide plate design results in a small air delivery angle, short lateral air delivery distance, poor comfort, and requires a complex transmission structure and multiple components, which increases costs and reduces stability.
It adopts a forward and backward movable air guide component, which switches between the first and second positions through a moving drive device to open and close the air outlet. By combining and moving multiple air guide components, the air outlet direction and mode can be changed to avoid direct airflow to the user and enhance air volume and comfort.
It improves the airflow and comfort of the air conditioner, reduces the number of parts, lowers costs, and meets user needs through multiple air outlet modes, thereby enhancing the stability and cooling effect of the air conditioner.
Smart Images

Figure CN115479304B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of air conditioners, in particular to an air conditioner indoor unit. BACKGROUND
[0002] In the related art, the conventional air conditioner indoor unit generally designs the air deflector inside the air outlet, and usually designs a plurality of parallel air deflectors connected by connecting rods. One of the air deflectors is driven to rotate by a motor, thereby driving all the air deflectors to rotate. The rotating air deflector inside the conventional air outlet has a small air supply angle, a short lateral air supply distance, a small air volume generated when preventing direct blowing, and poor comfort. SUMMARY
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, one object of the present application is to provide an air conditioner indoor unit which avoids direct blowing from the air outlet to the user, and at the same time, without blocking the airflow by air diffusers, the airflow has a large flow rate and sufficient air volume, the moving track of the air deflector is simple, the opening and closing control of the air outlet of the air conditioner is more convenient, a complex transmission structure does not need to be set, the number of parts of the air conditioner is reduced, the cost of the air conditioner is reduced, and the stability of the air conditioner is improved.
[0004] The air conditioner indoor unit according to the present application comprises: a casing provided with an air outlet; an air deflector movably arranged at the air outlet to selectively open or close the air outlet; and a moving drive device arranged in the casing and connected with the air deflector to drive the air deflector to open or close the air outlet; wherein the moving drive device is adapted to drive the air deflector to move between a first position and a second position in the open state of the air outlet; in the first position, the air deflector cooperates with a first side of the air outlet to guide air toward a second side of the air outlet; in the second position, the air deflector cooperates with the second side of the air outlet to guide air toward the first side of the air outlet; and between the first position and the second position, the air deflector defines an air outlet channel with the first side and the second side of the air outlet, respectively.
[0005] The air conditioner indoor unit according to the present application opens and closes the air outlet by controlling the forward and backward movement of the air deflector, the moving track of the air deflector is simple, the opening and closing control of the air outlet of the air conditioner is more convenient, a complex transmission structure does not need to be set, the number of parts of the air conditioner is reduced, the cost of the air conditioner is reduced, and the stability of the air conditioner is improved.
[0006] According to some embodiments of the present application, the air conditioner indoor unit further comprises a switch door, which is arranged on the outer surface of the air guide and moves synchronously with the air guide, and is adapted to cooperate with the cabinet when the air guide closes the air outlet to form the appearance surface of the cabinet with the front surface of the switch door.
[0007] According to some embodiments of the present application, the cabinet is provided with a clearance space, and at least part of the air guide is accommodated in the clearance space when the air guide opens the air outlet.
[0008] According to some embodiments of the present application, both sides of the air outlet are provided with the clearance space, and each clearance space is correspondingly provided with a movable baffle, which has a clearance state and a baffle state, and in the clearance state, the baffle opens the clearance space to allow the air guide to extend into, and in the baffle state, the baffle blocks the clearance space to serve as part of the air flow channel.
[0009] According to some embodiments of the present application, the air guide is configured as a plurality of air guides, and the plurality of air guides are selectively away from each other to define an air outlet channel between two adjacent air guides.
[0010] According to some embodiments of the present application, the movement driving device comprises a front and rear pushing device provided with a first driving end moving in the front and rear direction, and a left and right swinging device connected with the first driving end and moving forward and backward under the driving of the first driving end, and the left and right swinging device has a plurality of second driving ends, each of which is connected with a corresponding air guide to drive the air guide to move.
[0011] According to some embodiments of the present application, the front and rear pushing device comprises a base provided with a first guide column, a sliding block provided with a first guide groove extending in the front and rear direction and cooperating with the first guide column, and the sliding block is provided with the first driving end, and a first driving member arranged on the base and driving the sliding block to move.
[0012] According to some embodiments of the present application, the left and right swinging device comprises a swinging box frame connected with the first driving end, the swinging box frame is provided with a guide rail extending in the left and right direction, a cooperating block movably arranged on the guide rail, the cooperating block is provided with a second driving end connected with a corresponding air guide, and a second driving member arranged on the swinging box frame and driving the cooperating block to move to drive the air guide to move between the first position and the second position.
[0013] According to some embodiments of the present application, the air guide is configured as two, the guide rail is configured as two and arranged on the upper and lower sides of the swing box frame respectively, and the matching block is configured as two and arranged on the upper and lower sides of the swing box frame respectively and matched with the corresponding guide rail to connect the corresponding air guide.
[0014] According to some embodiments of the present application, the second driving member is configured as two and drives the corresponding matching block.
[0015] According to some embodiments of the present application, the guide rail is configured as an arc-shaped guide rail protruding forward.
[0016] According to some embodiments of the present application, the indoor air conditioner further comprises: a front and rear pushing device provided with a third driving end moving in the front and rear direction; a left and right swinging device provided with a fourth driving end moving in the left and right direction; and a driving rod movably connected with the third driving end and the fourth driving end, the driving rod being connected with the air guide and driving the air guide to move in the front and rear direction and swing in the left and right direction.
[0017] According to some embodiments of the present application, the front and rear pushing device comprises: a shell provided with two first guide members on the bottom wall; a first rack and a second rack, the first rack and the second rack being provided with second guide members matched with the corresponding first guide members, so that the first rack and the second rack move in the front and rear direction under the cooperation of the first guide member and the second guide member, and the driving rod is hinged with the first rack and the second rack, and the first rack and the second rack are configured as the third driving end.
[0018] According to some embodiments of the present application, the left and right swinging device comprises: a third rack and a fourth rack, the third rack and the fourth rack being provided with third guide members respectively, and the two driving rods being provided with fourth guide members matched with the third guide members, so that the driving rod swings in the left and right direction under the cooperation of the third guide member and the fourth guide member, and the third rack and the fourth rack are configured as the fourth driving end.
[0019] According to some embodiments of the present application, the shell is provided with a rack sliding groove, the third rack and the fourth rack are provided with sliding columns matched with the rack sliding groove, and the rack sliding groove and the sliding column are matched to limit the movement track of the third rack and the fourth rack.
[0020] According to some embodiments of the present application, the first rack and the second rack are configured as arc-shaped racks protruding towards each other, and the second rack and the fourth rack are configured as arc-shaped racks protruding towards the front side.
[0021] Additional aspects and advantages of the present application will be apparent from the following description of the application, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0022] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0023] Figure 1 is a structural schematic view of an air conditioner indoor unit according to an embodiment of the present application in a closed state;
[0024] Figure 2 is a front view of an air conditioner indoor unit according to an embodiment of the present application in a closed state;
[0025] Figure 3 is a sectional view of A-A in FIG. 4; Figure 2
[0026] Figure 4 is a structural schematic view of an air conditioner indoor unit according to an embodiment of the present application in a three-way air outlet state;
[0027] Figure 5 is a sectional view of an air conditioner indoor unit according to an embodiment of the present application in a three-way air outlet state;
[0028] Figure 6 is a structural schematic view of an air conditioner indoor unit according to an embodiment of the present application in a two-side air outlet state;
[0029] Figure 7 is a sectional view of an air conditioner indoor unit according to an embodiment of the present application in a two-side air outlet state;
[0030] Figure 8 is a structural schematic view of an air conditioner indoor unit according to an embodiment of the present application in a front-side air outlet state;
[0031] Figure 9 is a sectional view of an air conditioner indoor unit according to an embodiment of the present application in a front-side air outlet state;
[0032] Figure 10 is a structural schematic view of a moving driving device and a sliding surface driving assembly according to an embodiment of the present application;
[0033] Figure 11 is a cooperation schematic view of a moving driving device and a wind guide according to an embodiment of the present application;
[0034] Figure 12 is an assembly schematic view of a moving driving device and a wind guide according to an embodiment of the present application;
[0035] Figure 13 is an exploded view of a mobile driving device according to an embodiment of the present application;
[0036] Figure 14 is an exploded view of a mobile driving device and a rotating driving mechanism according to an embodiment of the present application;
[0037] Figure 15 is a structural schematic view of a switchable door according to an embodiment of the present application;
[0038] Figure 16 is an exploded view of a sliding door driving assembly according to an embodiment of the present application;
[0039] Figure 17 is a structural schematic view of an air conditioner indoor unit with a switchable door being a rotating door according to an embodiment of the present application;
[0040] Figure 18 is a sectional view of an air conditioner indoor unit with a switchable door being a rotating door according to an embodiment of the present application;
[0041] Figure 19 is a structural schematic view of an air conditioner indoor unit with a switchable door being provided outside a wind guide according to an embodiment of the present application;
[0042] Figure 20 is a sectional view of an air conditioner indoor unit with a switchable door being provided outside a wind guide according to an embodiment of the present application;
[0043] Figure 21 is a structural sectional view of an air conditioner indoor unit with a wind guide in a first position according to an embodiment of the present application;
[0044] Figure 22 is a structural sectional view of an air conditioner indoor unit with a wind guide in a second position according to an embodiment of the present application;
[0045] Figure 23 is a structural sectional view of an air conditioner indoor unit with wind guides in a state of being away from each other according to an embodiment of the present application;
[0046] Figure 24 is a structural sectional view of an air conditioner indoor unit according to another embodiment of the present application;
[0047] Figure 25 is a cooperation schematic view of a wind guide and a mobile driving device according to an embodiment of the present application;
[0048] Figure 26 is an exploded view of a wind guide and a mobile driving device according to an embodiment of the present application;
[0049] Figure 27 is a structural schematic view of a mobile driving device according to another embodiment of the present application;
[0050] Figure 28Fig. 4 is a schematic view of a moving driving device driving the air guide to move forward and backward according to another embodiment of the present application;
[0051] Figure 29 Fig. 5 is a schematic view of a moving driving device driving the air guide to move forward and backward according to another embodiment of the present application;
[0052] Figure 30 Fig. 6 is a schematic view of a moving driving device driving the air guide to swing left and right according to another embodiment of the present application;
[0053] Figure 31 Fig. 7 is a schematic view of a moving driving device driving the air guide to move backward to open the air outlet according to another embodiment of the present application;
[0054] Figure 32 Fig. 8 is a sectional view of the air guide closing the air outlet according to another embodiment of the present application;
[0055] Figure 33 Fig. 9 is a sectional view of the air guide opening the air outlet according to another embodiment of the present application;
[0056] Figure 34 Fig. 10 is a sectional view of the air guide in the first position according to another embodiment of the present application.
[0057] Reference Signs:
[0058] An air conditioner indoor unit 1,
[0059] A casing 11, an air outlet 111, a clearance 112, an air duct component 113, a baffle 114,
[0060] An air guide 12, an air guide surface 121, an inner air guide plate 122, an outer air guide plate 123, an air guide box holder 124, an air guide box cover 125, an air guide box seat 126
[0061] A moving driving device 13,
[0062] A slide rail 131, a slide groove 1311, a rack 132, a slide column 1321, a through hole 1222, a gear 133, a first driving member 134,
[0063] A forward and backward pushing device 135,
[0064] A base 1351a, a first guide column 1352a, a slide block 1353a, a first guide groove 1354a,
[0065] A housing 1351b, a slide column 1351b2,
[0066] A first guide member 1352b, a first rack 1353b, a second rack 1354b, a second guide member 1355b,
[0067] Swing device 136, driving rod 137, fourth guide 1371,
[0068] Swing box frame 1361a, matching block 1362a,
[0069] Third rack 1361b, fourth rack 1362b, third guide 1363b,
[0070] Rotary driving mechanism 14, driving shaft 141, rotary motor 142,
[0071] Switch door 15, sliding door driving assembly 150, sliding door box seat 151, first rail 1511, second rail 1512, sliding rack 152, pivot shaft 1521, limiting column 1522, swing plate 153, pivot hole 1531, limiting groove 1532, second driving member 154, air guide edge 155, sliding door box cover 156,
[0072] Display panel 17, human body detection device 18. DETAILED DESCRIPTION
[0073] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, for the purpose of explanation, and are not to be understood as a limitation of the present application.
[0074] The following description refers to the accompanying drawings. Figures 1-34 An air conditioner according to an embodiment of the present application is described below.
[0075] The air conditioner according to the present application is provided with a casing 11, an air guide 12 and a moving driving device 13. The air guide 12 according to the present application is movably arranged at the air outlet 111 and changes the air outlet direction of the air outlet 111 by moving. The moving driving device 13 is arranged on the casing 11 and connected with the air guide 12 to drive the air guide 12 to move between the first position and the second position.
[0076] The conventional air conditioner indoor unit generally designs the air guide plate inside the air outlet, and usually designs a plurality of parallel air guide plate structures. The plurality of air guide plates are connected through connecting rods. The motor drives one of the air guide plates to rotate, thereby driving all the air guide plates to rotate. The conventional rotating air guide plate scheme inside the air outlet has a small air supply angle, a short lateral air supply distance, a small air volume generated when preventing direct blowing, and poor comfort.
[0077] To this end, in the present application, the mobile driving device 13 is arranged to move the air guide 12 between the first position and the second position, so that the air conditioner indoor unit has multiple different air outlet modes, and sufficient air volume can be provided during the anti-direct blowing process, thereby increasing the use comfort of the air conditioner indoor unit 1
[0078] As shown in Figures 21-22 When the mobile driving device 13 drives the air guide 12 to move to the first position, the air guide 12 cooperates with the first side of the air outlet 111 to guide air toward the second side of the air outlet 111; when the mobile driving device 13 drives the air guide 12 to move to the second position, the air guide 12 cooperates with the second side of the air outlet 111 to guide air toward the first side of the air outlet 111.
[0079] It should be noted here that the first side of the air outlet 111 and the second side of the air outlet 111 can refer to the two sides of the air outlet 111 in the width direction. When the air guide 12 moves to the first position, the cooperation between the air guide 12 and the first side of the air outlet 111 can be overlapping, staggered or abutting, but is not limited to the above cooperation methods. The purpose of the cooperation between the air guide 12 and the first side of the air outlet 111 is to limit the air flow to be guided out between the air guide 12 and the first side of the air outlet 111. At this time, the air guide 12 and the second side of the air outlet 111 are spaced apart and there is a large gap, and most of the air flow can be guided out between the air guide 12 and the air outlet 111. At this time, the air flow is large, and direct blowing of cold air to the user from the air outlet 111 is avoided. At this time, the air flow will bypass the user to play a role in preventing direct blowing of cold air, and there is no air flow blocking member such as a diffuser, so the air flow is large and the air volume is sufficient.
[0080] When the air guide 12 moves to the second position, the cooperation between the air guide 12 and the second side of the air outlet 111 can be overlapping, staggered or abutting, but is not limited to the above cooperation methods. The purpose of the cooperation between the air guide 12 and the second side of the air outlet 111 is to limit the air flow to be guided out between the air guide 12 and the second side of the air outlet 111. At this time, the air guide 12 and the first side of the air outlet 111 are spaced apart and there is a large gap, and most of the air flow can be guided out between the air guide 12 and the air outlet 111. At this time, the air flow is large, and direct blowing of cold air to the user from the air outlet 111 is avoided. At this time, the air flow will bypass the user to play a role in preventing direct blowing of cold air, and there is no air flow blocking member such as a diffuser, so the air flow is large and the air volume is sufficient.
[0081] As shown in Figure 7As shown, the air guide 12 can also move between the first position and the second position, between the air guide 12 and the first side of the air outlet 111, and between the air guide 12 and the second side of the air outlet 111, both of which define an air outlet channel, so that the airflow can pass through both sides of the air outlet. Since the air guide 12 is located in the middle of the air outlet 111, it avoids direct blowing of the airflow to the user, and plays a role in air cooling. At the same time, the airflow blown through the two sides of the air outlet forms a ring airflow effect, which can quickly and uniformly reduce the indoor air temperature, and also quickly cools the wall, solving the problem of furnace heat effect in hot summer.
[0082] According to the air conditioner indoor unit 1 of the present application, by setting the air guide 12 to move between the first position and the second position, on the one hand, it avoids direct blowing of the air outlet 111 to the user, while also ensuring the air outlet volume of the indoor air, improving the air outlet condition of the user in the air conditioner indoor unit 1, improving the user's use experience, and enhancing the cooling effect of the air conditioner indoor unit 1.
[0083] As shown in Figure 5 According to some embodiments of the present application, the air guide 12 is configured as a plurality of air guides 12, which can move synchronously after being combined. The airflow cannot pass between adjacent two air guides 12, and the plurality of air guides 12 move between the first position, the second position, and the first position and the second position to change the air outlet direction and air outlet mode.
[0084] In addition, the plurality of air guides 12 can be selectively moved away from each other to define an air outlet channel between adjacent two air guides 12. The airflow can pass between adjacent two air guides 12 to enable the air conditioner indoor unit 1 to perform front air outlet. When the plurality of air guides 12 are located between the first position and the second position, the air guide 12 adjacent to the first side of the air outlet 111 and the first side of the air outlet 111 form a first air outlet channel, the air guide 12 adjacent to the second side of the air outlet 111 and the second side of the air outlet 111 form a second air outlet channel, and the third air outlet channel is formed between adjacent two air guides 12. The plurality of air outlet channels can flow the airflow, the third air outlet channel is directly opposite to the user, but the air volume is small, the air feeling of the air outlet is weak, and the user's experience is good. At the same time, the first air outlet channel and the second air outlet channel form a ring airflow to form an environmental protection airflow, improving the cooling effect on the indoor space.
[0085] By configuring the air guide 12 as a plurality of air guides 12, the air outlet mode of the air conditioner indoor unit 1 is diversified, the user's selection space is further improved, the air conditioner indoor unit 1 can better meet the user's use demand, and the user's use experience is improved.
[0086] According to some embodiments of the present application, the air guide 12 has an air guide surface 121 configured as an arc surface protruding towards the outside of the casing 11, the air guide 12 can be kept opposite to the air outlet 111, and the air guide surface 121 is used to guide the air flow blown out of the air outlet 111, the air guide surface 121 configured as an arc surface can reduce the loss of air flow speed during the process of guiding the air flow, and improve the air supply efficiency of the air conditioner indoor unit 1.
[0087] Since the air guide 12 needs to guide the air flow to the first side or the second side of the air outlet 111 to form the surrounding wind in the first position and the second position, the air guide surface 121 is configured as an arc surface protruding towards the outside of the casing 11, so that the air flow can flow along the arc surface of the air guide surface 121 when blowing towards the air guide surface 121, thereby reducing the friction between the air flow and the air guide surface 121 when changing the air outlet direction, and also reducing the noise generated by the friction between the air flow and the air guide 12, further optimizing the use effect of the air conditioner indoor unit 1.
[0088] As shown in Figure 12 According to some embodiments of the present application, the air guide 12 includes an inner air guide plate 122 and an outer air guide plate 123, the inner air guide plate 122 is provided with the air guide surface 121 in the above-mentioned embodiments, the outer air guide plate 123 is located outside the inner air guide plate 122, and the outer air guide plate 123 and the inner air guide plate 122 define a cavity therebetween, the air guide 12 is provided with two parts of the inner air guide plate 122 and the outer air guide plate 123, which reduces the manufacturing difficulty of the air guide 12, and the cavity is arranged between the inner air guide plate 122 and the outer air guide plate 123 to reduce the weight of the air guide 12, thereby reducing the overall weight of the air conditioner indoor unit 1 and saving the cost of the air conditioner.
[0089] The end portions of the outer air guide plate 123 and the inner air guide plate 122 are matched, and the end portions can be the outer periphery of the outer air guide plate 123 and the outer periphery of the inner air guide plate 122, a plurality of first connecting portions can be arranged on the outer periphery of the outer air guide plate 123, and a plurality of second connecting portions matched with the first connecting portions can be arranged on the outer periphery of the inner air guide plate 122, the first connecting portions and the second connecting portions can be fixed by clamping, screwing or other matching modes, so as to fix the outer air guide plate 123 and the inner air guide plate 122 and form a complete air guide plate structure.
[0090] In addition, the outer air guide plate 123 and the inner air guide plate 122 are matched by buckling, which can reduce the matching difficulty between the inner air guide plate 122 and the outer air guide plate 123, the buckling is firm, the first connecting portions and the second connecting portions can be respectively formed on the inner air guide plate 122 and the outer air guide plate 123, which is easy to form, and the clamping matching can save the separate assembly process in the subsequent assembly process of the inner air guide plate 122 and the outer air guide plate 123, which is helpful to improve the production rhythm.
[0091] According to some embodiments of the present application, the outer surface of the outer air deflector 123 is configured as an outward convex arc surface, which can have the same roundness as the outer surface of the casing 11, so that the air deflector 12 in the state of closing the air outlet 111 is lapped or matched with the casing 11 to form an appearance surface with the same arc, thereby improving the aesthetic appearance of the air deflector 12 in the state of closing the air outlet 111.
[0092] As shown in the drawings, in some embodiments of the present application, an air outlet grille is arranged at the air outlet 111. Figure 10
[0093] According to some embodiments of the present application, when the air deflector 12 is one, the cross section of the air deflector 12 can be configured as a triangle, a wedge, and a crescent; when the air deflector 12 is multiple, the structure formed by the combination of the multiple air deflectors 12 is a triangle, a wedge, and a crescent, wherein the cross section of the air deflector 12 mentioned here is the cross section formed by the combination of the multiple air deflectors 12.
[0094] When the air deflector 12 is one or multiple, in the scheme that the cross section of the air deflector 12 or the combination of the air deflectors 12 is configured as a triangle, the air deflector 12 can be configured as an isosceles obtuse triangle, the angle of the obtuse triangle is opposite to the air outlet 111, and the long side of the triangle is located on the side away from the air outlet 111.
[0095] In some embodiments of the present application, the movement driving device 13 includes a guide member and a transmission member, the transmission member can be matched with the guide member to move along a preset movement track under the guidance of the guide member, and the guide member can be used to limit the movement direction of the transmission member, so that the transmission member can complete the specified movement track.
[0096] The transmission member is used to connect the air deflector 12, the movement track of the air deflector 12 is the same as that of the transmission member, the transmission member can be located inside the casing 11, and the matching relationship between the transmission member and the guide member cannot be directly observed outside the casing 11, so as to protect the internal driving mechanism. The casing 11 can be used to protect the transmission member and the guide member, the guide member can be configured as a slide rail 131, a guide rail, a sliding groove 1311, etc. having the same track structure as the preset track of the air deflector 12, and the transmission member is matched with the guide member to limit the movement of the transmission member along the guide rail structure in the preset track, thereby ensuring the stability and reliability of the air deflector 12 in the movement process.
[0097] According to some embodiments of the present application, the moving driving device 13 further comprises a first driving member 134, which is connected with the transmission member and is adapted to drive the transmission member to move the air guide member 12 from the first position to the second position. The first driving member 134, as the original driving member of the moving driving device 13, is the power source for the movement of the air guide member 12. The first driving member 134 can drive the transmission member to move along the preset track of the guide member, so that the air guide member 12 moves accordingly. The track of the guide member and the track of the air guide member 12 are the same, and both have the first position and the second position. When the transmission member moves to the first end of the track of the guide member corresponding to the first position, the air guide member 12 moves to the first position accordingly. When the transmission member moves to the other end of the track of the guide member corresponding to the second position, the air guide member 12 moves to the second position accordingly. The first driving member 134 can drive the transmission member to move along the track of the guide member, so as to perfect the entire transmission structure.
[0098] As shown in Figure 13 According to some embodiments of the present application, the guide member is configured as a sliding rail 131, the transmission member comprises a rack 132, the rack 132 is matched with the sliding rail 131 and moves along the extension direction of the sliding rail 131, the rack 132 is connected with the air guide member 12, and the first driving member 134 is configured as a driving motor. The output end of the driving motor is provided with a gear 133 which is engaged with the rack 132. The gear 133 is engaged with the rack 132 to be adapted to transmit driving force to the rack 132. After the gear 133 rotates, the teeth on the circumference of the gear 133 are engaged with the teeth on the rack 132. The teeth on the rack 132 are arranged in sequence along the length direction of the rack 132. Therefore, after the gear 133 rotates, it is equivalent to that the gear 133 continuously climbs on the rack 132, so that the relative movement between the gear 133 and the rack 132 occurs. The motor is fixed on the cabinet 11. When the relative movement between the gear 133 and the rack 132 occurs, it can be understood that the motor drives the rack 132 to move.
[0099] At the same time, since the rack 132 is matched with the sliding rail 131, the moving direction of the rack 132 is also limited. Therefore, the rack 132 can only move along the preset track of the sliding rail 131, i.e. the rack 132 can only move in the direction of driving the air guide member 12 from the first position to the second position.
[0100] According to some embodiments of the present application, the rack 132 can be configured as an arc-shaped rack 132, the gear 133 is engaged with the teeth on one side of the arc-shaped rack 132, and the cabinet of the sliding rail 131 is also configured as an arc shape, so that the relative rubbing between the rack 132 and the sliding rail 131 does not occur, and the rack 132 is prevented from deviating from the track of the sliding rail 131.
[0101] According to some embodiments of the present application, a plurality of limiting posts 1522 are arranged on the rack 132 and are arranged at intervals in the extending direction of the rack 132, and the plurality of limiting posts 1522 are at the same distance from the center of the arc formed by the rack 132 or the rail. It can be understood that the radius of the circular arc of the moving track of the rack 132 is the same as the distance between the plurality of limiting posts 1522 and the center of the moving track of the rack 132, and the moving track of the plurality of limiting posts 1522 also falls on the circular arc formed by the rail 131. Thus, the rack 132 is further limited from being separated from the rail 131, and the stability of the relative movement between the rack 132 and the rail 131 is improved.
[0102] According to some embodiments of the present application, the air guide 12, the rack 132, the gear 133, the rail 131 and the first driving member 134 are all configured as two, the two air guides 12 can be combined to move synchronously to the first position or synchronously to the second position, and the adjacent two air guides 12 cannot realize air outlet, and the two air guides 12 move together to avoid the straight blowing of cold air to the user due to the front air outlet of the air outlet 111, and at the same time, the lateral air supply mode can be realized.
[0103] The two air guides 12 can be configured as a structure with thick middle and thin ends after being combined, and each air guide 12 is configured as a moon-shaped arc, where the moon-shaped arc is an arc surface with the inner surface and the outer surface both protruding outward.
[0104] The two air guides 12 can also move in the direction of moving away from each other to form an air outlet channel between the two air guides 12, so that part of the airflow can pass between the two air guides 12 to blow air to the front of the air outlet 111, thereby improving the air volume of the front air outlet 111 of the air conditioner indoor unit 1.
[0105] Since the two air guides 12 need to move synchronously and relatively, two sets of independent moving driving devices 13 need to be provided, and the air guide 12, the rack 132, the gear 133, the rail 131 and the first driving member 134 are all configured as two, so that the two air guides 12 are configured to move independently, and the synchronous movement of the two air guides 12 is realized under the control of the two corresponding first driving members 134.
[0106] Thus, the two gears 133 and the two racks 132 are respectively engaged, so that each gear 133 drives the corresponding rack 132 to move along the corresponding rail 131, so as to ensure that the two air guides 12 can move independently in the respective cabinet machines, and the two first driving members 134 and the two gears 133 are respectively corresponding, and each first driving member 134 controls the corresponding gear 133 to move the air guide 12.
[0107] In some embodiments of the present application, the two air guide members 12 are away from each other and can be controlled under the drive of a first driving member 134. The first driving member 134 can drive a gear 133. The two toothed strips 132 corresponding to the two air guide members 12 are provided with teeth engaging with the gear 133 on the surfaces facing each other. The gear 133 is arranged between the two toothed strips 132. When the gear 133 rotates, the two toothed strips 132 move towards the direction away from each other, so as to make the two air guide members 12 away from each other to open the air guide channel between the two air guide members 12.
[0108] The two air guide members 12 and the toothed strips 132 driving the two air guide members 12 can be moved under the drive of another driving device. The two air guide members 12 can be moved between the first position and the second position under the drive of another first driving member 134 in the state of keeping combined, so as to realize the single side air outlet of the air conditioner indoor unit 1.
[0109] According to some embodiments of the present application, the two slide rails 131 are all configured as arc-shaped slide rails 131 and are arranged concentrically with the same radius. The two slide rails 131 are configured to be arranged concentrically with the same radius to ensure that the cabinet machines of the two air guide members 12 are the same. When the two air guide members 12 move towards the direction away from each other, the moving tracks of the two air guide members 12 can be unfolded along the appearance surface of the cabinet 11, so as to keep the distance between the two air guide members 12 and the center line in the width direction of the air outlet 111 the same in the process of moving away from each other, to ensure the uniformity of the air outlet of the air conditioner indoor unit 1.
[0110] As shown in FIG. 1, Figure 13 According to some embodiments of the present application, the cabinet 11 is provided with an air guide member box frame 124. The upper and lower sides of the air guide member box frame 124 are respectively provided with slide rails 131 arranged concentrically with the same radius. The air guide member box frame 124 is also configured as an arc shape. An air guide member box cover 125 is arranged on the upper side of the air guide member box frame 124. An air guide member box seat 126 is arranged on the lower side of the air guide member box frame 124. The air guide member box cover 125 and the air guide member box seat 126 respectively define spaces between the upper and lower sides of the air guide member box frame 124, which are suitable for the movement of the toothed strips 132. The toothed strips 132 are configured as two and are respectively fitted in the spaces on the upper and lower sides of the air guide member box frame 124. The gear 133 engaging with the toothed strips 132 is arranged in the corresponding space. The motor is arranged on the upper side of the air guide member box cover 125 or the lower side of the air guide member box seat 126. The output shaft of the motor extends into the space and is connected with the gear 133 to drive the gear 133 to rotate. The gear 133 drives the corresponding toothed strips 132 to move along the slide rails 131.
[0111] As shown in FIG. 1, Figure 12As shown, the rack 132 can be provided with a matching pin passing through the air deflector box cover 125 or the air deflector box seat 126, which can be exposed to the moving drive device 13. The upper end or the lower end of the air deflector 12 is provided with a pin hole matched with the pin, and the pin is inserted into the pin hole, so that the motor drives the gear 133 to rotate, and the air deflector 12 is kept in the first position, the second position or moves between the first position and the second position. A plurality of matching pins are matched with the corresponding air deflectors 12, so that the plurality of air deflectors 12 can be selectively away from each other to form an air outlet channel between each other.
[0112] According to some embodiments of the present application, the slide rail 131 includes a sliding groove 1311 provided on at least one side of the corresponding rack 132 in the thickness direction of the rack 132. Each rack 132 is provided with a slide column 1321 on the corresponding side in the thickness direction, and the slide column 1321 is matched with the corresponding sliding groove 1311. The slide rail 131 can be provided on the air deflector box frame 124, and two slide rails 131 are respectively provided on the upper and lower surfaces of the air deflector box frame 124. The slide rail 131 is formed by the sliding groove 1311, which can be formed by two protruding ribs provided on the upper and lower surfaces of the air deflector box frame 124. The two protruding ribs form the slide rail 131, and each rack 132 is provided with a slide column 1321 embedded in the sliding groove 1311 and moves along the predetermined cabinet machine under the limitation of the two protruding ribs. The edge adjacent to the sliding groove 1311 is provided with a via hole suitable for the matching pin to pass through, so that the matching pin on the rack 132 on the upper side of the air deflector box frame 124 or the matching pin on the rack 132 on the lower side of the air deflector box frame 124 can be connected with the corresponding air deflector 12 through the air deflector box frame 124.
[0113] According to some embodiments of the present application, the moving drive device 13 is two and is provided on the cabinet 11 respectively on the two sides in the length direction of the air deflector 12. Each moving drive device 13 can be provided with two racks 132, two guide rails and two first driving members 134. The two racks 132 on the upper and lower sides of the moving drive device 13 are opposite to each other, and the upper and lower sides of one air deflector 12 are driven by one rack 132, so that the movement of the air deflector 12 is stable.
[0114] According to some embodiments of the present application, in the upper and lower moving drive devices 13, only one of them can be provided with a motor, and the other moving drive device 13 can be provided with only a slide rail 131 and a guide groove, which only guide the movement of the air deflector 12, so as to reduce the cost of the air conditioner indoor unit 1.
[0115] According to some embodiments of the present invention, a motor can be provided in each of the upper and lower moving drive devices 13, and the upper and lower moving drive devices 13 can both drive one of the two air guides 12 to guide the other.
[0116] According to some embodiments of the present invention, two motors are provided on one of the upper and lower moving drive devices 13, while no motor is provided on the other of the upper and lower moving drive devices 13.
[0117] According to some embodiments of the present invention, each air guide 12 can be driven to rotate around a mating pin and mounted on a moving drive device 13, so that the air guide 12 has a larger range of air outlet angle adjustment for the indoor unit of the air conditioner.
[0118] When each air guide 12 is in the first position, it increases the distance between itself and the second side of the air outlet 111 by rotating, thereby adjusting the air volume of the air guide 12 in the first position; when each air guide 12 is in the second position, it increases the distance between itself and the first side of the air outlet 111 by rotating, thereby adjusting the air volume of the air guide 12 in the second position; when the two air guides 12 are far apart from each other to form an air outlet channel between the two air guides 12, the size of the air outlet channel between the two air guides 12 is changed by rotating the air guide 12, thereby controlling the air volume of the air outlet channel between the two air guides 12.
[0119] like Figure 14 As shown, according to some embodiments of the present invention, the rack 132 is disposed on one side of the corresponding air guide 12 in the length direction. The length direction referred to here can be the height direction. The air guide 12 can extend in the height direction to be constructed as a long strip air guide 12. The air guide 12 is provided with a mating hole facing the corresponding rack 132. It can be understood that the upper and lower end faces of the air guide 12 can be directly opposite the upper moving drive device 13 or the lower moving drive device 13, respectively. The upper and lower end faces of the air guide 12 are respectively provided with mating holes, and each rack 132 is provided with a through hole 1222.
[0120] A rotation drive mechanism 14 is also provided on the indoor unit of the air conditioner. The rotation drive mechanism 14 is adapted to drive the air guide 12 to rotate so as to change the angle of the air guide 12 and thus adjust the air outlet direction of the indoor unit of the air conditioner. The rotation drive mechanism 14 includes a drive shaft 141 and a rotation motor 142. The drive shaft 141 passes through the through hole 1222 so that the drive shaft 141 rotates relative to the corresponding rack 132. The drive shaft 141 is inserted into the mating hole so that the drive shaft 141 drives the corresponding air guide 12 to rotate. It should be noted that the drive shaft 141 always remains stationary relative to the rack 132, but the drive shaft 141 can move with the rack 132.
[0121] After the driving shaft 141 passes through the through hole 1222 on the rack 132, no contact occurs between the driving shaft 141 and the inner peripheral wall of the through hole 1222, so as to avoid interference between the driving shaft 141 and the rack 132. The driving shaft 141 can be used to drive the air guide 12 to move along with the movement of the rack 132, and the driving shaft 141 can be used to drive the air guide 12 to rotate around the driving shaft 141, so that the air guide 12 can be used to adjust the angle of the air guide 12.
[0122] In addition, the driving shaft 141 and the air guide 12 can be configured in one-to-one correspondence. Each air guide 12 corresponds to at least one driving shaft 141. When the air guide 12 corresponds to two driving shafts 141, the two driving shafts 141 have the same extension direction and drive the air guide 12 to rotate on the upper and lower sides, respectively.
[0123] According to some embodiments of the present application, the rotating driving mechanism 14 further comprises a rotating motor 142 corresponding to the driving shaft 141. The rotating motor 142 drives the corresponding driving shaft 141 to rotate. The driving shaft 141 rotates under the driving of the rotating motor 142 and transmits the driving force to the air guide 12. The rotating motor 142 serves as a driving device in the rotation process of the air guide 12. The angle of rotation of the air guide 12 is controlled by controlling the rotating motor 142.
[0124] According to some embodiments of the present application, the rotating motor 142 can be arranged on the rack 132 and moves synchronously with the rack 132. During the movement of the rack 132, the rotating motor 142 and the driving shaft 141 move synchronously, so as to ensure that the driving process of the rotating driving mechanism 14 and the moving driving mechanism on the air guide 12 is independent of each other, and the reliability of the movement of the air guide 12 is improved.
[0125] According to some embodiments of the present application, the air conditioner indoor unit further comprises a switch door component. The switch door component comprises two switch doors 15 extending in the vertical direction. The two switch doors 15 are arranged on the two sides of the air outlet 111 in the horizontal direction. The two switch doors 15 are movable between a closed position and an open position. The two switch doors 15 can be moved to the closed position, so that the switch door 15 is adjacent to the air guide 12. When the two switch doors 15 are moved to the open position, the air guide 12 is selectively movable between the first position and the second position.
[0126] In this embodiment, the door opening and closing component can be disposed on the outer periphery of the housing 11. In the closed state, the door opening and closing component 15 and the air guide component 12 are adjacent to each other. It should be noted that the adjacent connection can be that part of the edge of the door opening and closing component 15 and part of the edge of the air guide component 12 contact each other to fit together. In the closed state, part of the air guide component 12 is directly opposite the air outlet 111, and the two sides of the air guide component 12 are adjacent to the door opening and closing component 15 so that the door opening and closing component 15 and the air guide component 12 together form the outer surface of the housing 11.
[0127] When the two doors 15 are in the open state, they are far apart from each other to avoid the movement trajectory of the air guide 12. In particular, the doors 15 can be moved away from the first and second positions, so that the air guide 12 does not interfere with the doors 15 during its movement between the first and second positions.
[0128] like Figure 1 As shown, according to the present invention, the air conditioner indoor unit 1 is configured to move between the open and closed positions by setting the door 15 to form a complete appearance surface with the air guide 12 in the closed position, thereby improving the aesthetics of the air conditioner indoor unit 1, reducing the operating angle of the door 15, improving the technological feel of the air conditioner indoor unit 1, and increasing the stability of the door 15 during operation.
[0129] According to some embodiments of the present invention, the indoor unit of an air conditioner includes a door opening and closing component, which includes two vertically extending doors 15. The two doors 15 are laterally disposed on both sides of an air outlet 111. The two doors 15 are movable between a closed position and an open position, and can be moved to the closed position to cover the air guide 12. When the doors 15 are in the closed state, they cover the air outlet 111 to close it. The doors 15 not only close the air outlet 111 but also close the air guide 12 located at the air outlet 111. In this embodiment, the doors 15 have a large coverage area in the closed state, effectively protecting the outer surface of the air guide surface 121.
[0130] like Figures 17-18 As shown, according to some embodiments of the present invention, the switch door 15 is constructed as a rotating door, and the rear edge of the switch door 15 is hinged to the housing 11 so that the rear edge of the rotating door can rotate. The switch door 15 can be constructed as two opposing switch doors 15, the switch door 15 is constructed as a long strip switch door 15 and extends in the same direction as the air outlet 111, the rear edge of the switch door 15 extends in the vertical direction and can be hinged to the housing 11, and the switch door 15 avoids the movement trajectory of the air guide 12 during rotation.
[0131] like Figure 18In some embodiments, when the switch door 15 is in the closed state, the outer surface of the switch door 15 is spliced with the outer surface of the air guide 12 to form an integral body, and when the switch door 15 is switched from the closed state to the open state, the switch door 15 rotates towards the inner side of the casing 11 to stagger the switch door 15 and the air guide 12 to form an air outlet channel. The arrangement of the switch door 15 makes the movement range of the switch door 15 small, and the operation is convenient and easy to control.
[0132] In some embodiments, when the switch door 15 is in the closed state, the inner surface of the switch door 15 covers the outer side of the air guide 12, and the outer surface of the switch door 15 serves as an appearance surface. The switch door 15 is opened in a pair of opposite directions towards the outer side of the casing 11 to expose the air guide 12, so that the air guide 12 can move in a preset track.
[0133] According to some embodiments of the present application, the switch door 15 is configured as a sliding door that slides around the outer periphery of the casing 11 and along the circumference of the casing 11. Configuring the switch door 15 as a sliding door greatly reduces the movement amplitude of the switch door 15, and the conversion between the open and closed states of the switch door 15 is more beautiful, improving the use experience of the air conditioner indoor unit and enhancing the user's use experience.
[0134] The sliding door mentioned herein can be provided with a fixed sliding track on the casing 11 of the air conditioner indoor unit. When the sliding door is in the closed position, the sliding door remains in a position around the circumference of the casing 11. The sliding track can be arranged around the casing 11 so that the sliding door can slide away from each other when opened and slide along the extension direction of the outer periphery of the casing 11.
[0135] As shown in Figures 15-16 According to some embodiments of the present application, the air conditioner indoor unit includes a sliding door driving assembly 150, and the sliding door driving assembly 150 includes a sliding door box seat 151 provided with a first track 1511 and a second track 1512. The first track 1511 and the second track 1512 are both configured as arc-shaped tracks protruding away from the casing 11. It should be noted that the sliding door box seat 151 can be fixed on the casing 11, and the sliding door box seat 151 serves as the installation basis of the switch door 15. The first track 1511 and the second track 1512 are defined on the sliding door box seat 151 to define the movement track of the switch door 15.
[0136] A plurality of ribs protruding towards the upper side are arranged in the sliding door box seat 151, and the plurality of ribs are spaced apart from each other to form the first track 1511 and the second track 1512 between two adjacent tracks. Generally, the sliding door driving assembly 150 further comprises a sliding door box cover 156 arranged on the sliding door box seat 151 to form a closed moving space, so as to protect the components moving in the first track 1511 and the second track 1512.
[0137] The sliding door driving assembly 150 further comprises a sliding rack 152 and a second driving member 154. The sliding rack 152 is slidably arranged in the first track 1511, and the second driving member 154 is adapted to drive the sliding rack 152 to move on the first track 1511. The second driving member 154 serves as a power source of the sliding door driving assembly 150, and is used to provide a motive force for the movement of the sliding door and control the opening and closing of the sliding door.
[0138] According to some embodiments of the present application, the sliding door driving assembly 150 further comprises a swing plate 153 rotatably arranged on the sliding rack 152 and sliding along the second track 1512. The swing plate 153 is linked with the opening and closing door 15, and the swing of the swing plate 153 can drive the sliding door to move. The swing plate 153 has multiple degrees of freedom in multiple directions.
[0139] The swing plate 153 slides on the second track 1512 to drive the opening and closing door 15 to translate on the cabinet machine of the second track 1512 to complete the opening action of the opening and closing door 15 moving away from each other. The swing plate 153 rotates relative to the sliding rack 152 while translating. Since the sliding rack 152 slides on the first track 1511, the sliding of the sliding rack 152 on the first track 1511 is synchronized with the sliding of the swing plate 153 on the second track 1512. At the same time, the swing plate 153 also rotates relative to the sliding rack to make the swing plate 153 further expand the opening and closing door 15 in the process of gradually opening the opening and closing door 15, so as to avoid the interference between the opening and closing door 15 and the cabinet 11 in the opening process, and ensure the smoothness of the opening process of the opening and closing door 15.
[0140] According to some embodiments of the present application, the first track 1511 and the second track 1512 are both configured as arc-shaped tracks. The first track 1511 is arranged on the inner side of the second track 1512, and the distance between the first track 1511 and the second track 1512 gradually increases in the opening direction of the opening and closing door 15.
[0141] When the sliding rack 152 slides along the first track 1511, the sliding rack 152 drives one end of the swing plate 153 to slide along the track of the first track 1511, and the other end of the swing plate 153 cooperates with the second track 1512 to drive the other end of the swing plate 153 to slide along the track of the second track 1512. In the opening process, the swing plate 153 drives the switch door 15 to open and rotate, so that the switch door 15 completes the opening and gradually opens the compound motion, which can effectively ensure that the switch door 15 does not touch the shell 11 when opening.
[0142] According to some embodiments of the present application, the lower side of the sliding rack 152 is provided with a plurality of sliding shafts which are matched in the first track 1511, one end of the sliding rack 152 is provided with a pivot shaft 1521, and the upper side of the swing plate 153 is provided with a pivot hole 1531 matched with the pivot shaft 1521, so that the swing plate 153 rotates relative to the sliding rack 152.
[0143] According to some embodiments of the present application, the upper side of the sliding rack 152 is provided with a limiting column 1522, and the swing plate 153 is provided with a matching notch suitable for accommodating the limiting column 1522, the matching notch extending in the direction of the swing plate 153 rotating relative to the sliding rack 152, so as to limit the degree of freedom of the swing plate 153 rotating relative to the sliding rack 152, and avoid the disengagement between the sliding rack 152 and the swing plate 153.
[0144] According to some embodiments of the present application, the limiting column 1522 is configured as a plurality of limiting columns 1522, one of which is located at the other end of the sliding rack 152 in the extension direction, and the limiting column 1522 and the pivot shaft 1521 are respectively arranged at both ends of the sliding rack 152, and the swing plate 153 is provided with a limiting groove 1532 matched with the limiting column 1522 located at the other end of the sliding rack 152, the limiting groove 1532 being used to limit the rotation freedom between the sliding rack 152 and the swing plate 153.
[0145] According to some embodiments of the present application, the outer side of the swing plate 153 is provided with a rotating arm extending outward, and the rotating arm is used to connect the switch door 15, and the upper end surface of the switch door 15 and the rotating arm can be fixed by bolt connection, adhesive bonding, clamping and the like.
[0146] According to some embodiments of the present application, the sliding door driving assembly 150 can be arranged on the upper and lower sides of the shell 11 to support the switch door 15 in the upward and downward directions.
[0147] According to some embodiments of the present application, the air conditioner indoor unit 1 further comprises a deflector plate, which is rotatably arranged on the casing 11 and selectively closes the air outlet passage, and the deflector plate is provided with a deflection area opposite to the air outlet passage, and the airflow can pass through the deflector plate at the deflection area, and the deflection area is provided with a deflection structure for deflection to reduce the air outlet pressure of the air conditioner and realize windless air outlet.
[0148] According to some embodiments of the present application, the deflection structure can be configured as a plurality of micro-holes formed on the deflection area of the deflector plate, and the airflow from the air outlet passage flows out after passing through the plurality of micro-holes to reduce the air pressure of the air outlet passage and realize windless air outlet.
[0149] According to some embodiments of the present application, a plurality of deflection holes are arranged on the deflector plate, and the deflection structure is configured as a blade arranged at the deflection hole, and the blade can rotate when the airflow passes through to reduce the air pressure from the air outlet passage and realize windless air outlet.
[0150] According to some embodiments of the present application, the deflector plate and the air guide 12 are configured as the same structure, and the air guide 12 is provided with a deflection area for realizing windless air outlet.
[0151] According to some embodiments of the present application, the deflector plate and the switch door 15 are configured as the same structure, and the switch door 15 is provided with a deflection area for realizing windless air outlet.
[0152] According to some embodiments of the present application, the air guide 12 is movably arranged at the air outlet 111 to selectively open or close the air outlet 111. In this embodiment, the opening and closing of the air outlet 111 is realized by the forward and backward movement of the air guide 12, and when the air guide 12 closes the air outlet 111, the air guide 12 is in cooperation with the outer edge of the air outlet 111, and the outer edge of the air guide 12 can be in abutment, staggered or adjacent to the outer edge of the air outlet 111 to close or partially close the air outlet 111.
[0153] After the air guide 12 moves forward or backward, a gap is formed between the outer edge of the air guide 12 and the air outlet 111 to open the air outlet 111, so that the air conditioner indoor unit 1 can blow air.
[0154] According to the air conditioner indoor unit 1 of the present application, the opening and closing of the air outlet 111 is realized by controlling the forward and backward movement of the air guide 12, the movement track of the air guide 12 is simple, the opening and closing control of the air outlet 111 of the air conditioner is more convenient, a complex transmission structure is not needed, the number of parts of the air conditioner is reduced, the cost of the air conditioner is reduced, and the stability of the air conditioner is improved.
[0155] According to some embodiments of the present application, the air conditioner is provided with a moving driving device 13, which in the present embodiment is arranged on the casing 11. The moving driving device 13 drives the air guide 12 to move, so as to control the air guide 12 to open or close the air outlet 111.
[0156] According to some embodiments of the present application, the moving driving device 13 is connected with the air guide 12 and drives the air guide 12 to open or close the air outlet 111; and when the air guide 12 is in a state of opening the air outlet 111, the moving driving device 13 can further drive the air guide 12 to move.
[0157] When the air guide 12 is in an open state, i.e. after the air guide 12 has completed the movement of moving forward and backward, the moving driving device 13 can further drive the air guide 12 to move between the first position and the second position,
[0158] When the moving driving device 13 drives the air guide 12 to move to the first position, the air guide 12 cooperates with the first side of the air outlet 111 to guide air toward the second side of the air outlet 111; when the moving driving device 13 drives the air guide 12 to move to the second position, the air guide 12 cooperates with the second side of the air outlet 111 to guide air toward the first side of the air outlet 111.
[0159] It should be noted that the first side of the air outlet 111 and the second side of the air outlet 111 can refer to the two sides of the air outlet 111 in the width direction. When the air guide 12 moves to the first position, the cooperation between the air guide 12 and the first side of the air outlet 111 can be overlapping, staggered or abutting, but is not limited to the above cooperation methods. The purpose of the cooperation between the air guide 12 and the first side of the air outlet 111 is to limit the air flow from the air guide 12 and the first side of the air outlet 111. At this time, the air guide 12 and the second side of the air outlet 111 are spaced apart and there is a large gap, and most of the air flow can be guided out of the gap between the air guide 12 and the air outlet 111. At this time, the air flow is large, which avoids directly blowing air from the air outlet 111 to the user. At this time, the air flow bypasses the user to prevent cold wind from directly blowing, and there is no air flow blocking member such as a diffuser, so the air flow is large and the air volume is sufficient.
[0160] When the air guide 12 moves to the second position, the air guide 12 and the second side of the air outlet 111 can be in cooperation in the form of overlapping, interleaving or stopping, but are not limited to the above-mentioned cooperation methods. The purpose of the cooperation between the air guide 12 and the second side of the air outlet 111 is to limit the air flow from the air guide 12 and the second side of the air outlet 111. At this time, the air guide 12 and the first side of the air outlet 111 are spaced apart and there is a large gap. Most of the air flow can be guided out of the gap between the air guide 12 and the air outlet 111. At this time, the air flow is large, which avoids directly blowing to the user from the air outlet 111. At this time, the air flow can bypass the user to play the role of preventing cold wind direct blowing. At the same time, there is no air flow blocking member such as a deflector, the air flow is large, and the air volume is sufficient.
[0161] The air guide 12 can also move between the first position and the second position. The air guide 12 and the first side of the air outlet 111, and the air guide 12 and the second side of the air outlet 111 define air outlet channels, so that the air flow can be guided out of the two sides. Since the air guide 12 is located in the middle of the air outlet 111, the air flow directly blowing to the user is avoided, which plays the role of cold wind direct blowing. At the same time, the air flow blown out of the two sides forms the effect of encircling air flow, which can quickly and uniformly reduce the indoor air temperature. At the same time, it can also quickly cool the wall, solving the problem of furnace heat effect in hot summer.
[0162] According to the air conditioner indoor unit 1 of the present application, by setting the air guide 12 to move between the first position and the second position, on the one hand, the direct blowing of the air outlet 111 to the user is avoided, and on the other hand, the air outlet volume of the indoor air is ensured, the air outlet condition of the user in the air conditioner indoor unit 1 is improved, the use experience of the user is improved, and the cooling effect of the air conditioner indoor unit 1 is enhanced.
[0163] According to some embodiments of the present application, the air guide 12 is configured as a plurality of air guides 12. The plurality of air guides 12 can move synchronously after being combined. The air flow cannot pass between two adjacent air guides 12. The plurality of air guides 12 move between the first position, the second position and the first position and the second position to change the air outlet direction and the air outlet mode.
[0164] In addition, the plurality of air guide members 12 can be selectively moved away from each other to define air outlet channels between adjacent two air guide members 12. Air flow can pass between adjacent two air guide members 12 to enable the air conditioner indoor unit 1 to perform front air outlet, when the plurality of air guide members 12 are located between the first position and the second position, the air guide member 12 adjacent to the first side of the air outlet 111 forms a first air outlet channel with the first side of the air outlet 111, the air guide member 12 adjacent to the second side of the air outlet 111 forms a second air outlet channel with the second side of the air outlet 111, and the third air outlet channel is formed between adjacent two air guide members 12. The plurality of air outlet channels can guide air flow, the third air outlet channel is directly opposite to the user, but the air volume is small, the air feeling of the air outlet is weak, and the user experience is good. At the same time, the first air outlet channel and the second air outlet channel form air flow that encircles the indoor space to form environment-friendly air flow, thereby improving the cooling effect on the indoor space.
[0165] By configuring the air guide member 12 as a plurality of air guide members, the air outlet mode of the air conditioner indoor unit 1 is enriched, the selection space of the user is further improved, the air conditioner indoor unit 1 can better meet the use demand of the user, and the use experience of the user is improved.
[0166] As shown in Figures 19-23 According to some embodiments of the present application, the air conditioner indoor unit 1 is further provided with a switch door 15, the switch door 15 is arranged on the outer surface of the air guide member 12 and moves synchronously with the air guide member 12, and the switch door 15 is adapted to cooperate with the cabinet 11 to form the appearance surface of the cabinet 11 when the air guide member 12 closes the air outlet 111. The air conditioner indoor unit 1 of the present embodiment cancels the switch door 15, or it can be understood that the switch door 15 is configured as an integral structure with the air guide member 12.
[0167] The air guide member 12 is provided with an air guide surface 121, the air guide surface 121 can be configured as two and each air guide surface 121 is configured as an arc surface, the two arc surfaces are symmetrically arranged on the inner side of the air guide member 12, and the two air guide surfaces 121 are protruded towards the outer side, so that the air guide member 12 is configured as a wedge-shaped structure.
[0168] The switch door 15 is arranged on the front side of the air guide member 12 and has a width greater than that of the air guide member 12, and the switch door 15 can be used for air guiding. The switch door 15 is configured as a long rectangular plate arranged on the front side of the air guide member 12, so that the surface of the switch door 15 towards the side of the air outlet 111 can guide air during the movement of the air guide member 12 to open the air outlet 111 and during the movement between the first position and the second position.
[0169] According to some embodiments of the present invention, the air guide 12 can move forward to form a gap between the door 15 and the housing 11, so that the airflow can be discharged from the air outlet 111 and then flow out through the air outlet channel between the housing 11 and the rear surface of the door 15. The forward movement of the air guide 12 can be used to open the air outlet 111 so that the airflow at the air outlet 111 can flow out. On the other hand, the forward movement of the air guide 12 can prevent the door 15 from colliding with the housing 11 during the movement from the first position to the second position, thereby improving the stability of the movement of the door 15.
[0170] According to some embodiments of the present invention, air guide edges 155 may be formed on both sides of the switch door 15. The air guide edges 155 are bent toward the side of the air outlet 111 or away from the air outlet 111. The air guide edges 155 on both sides of the switch door 15 can be further used to guide the airflow, so that the airflow flows to both sides of the switch door 15 under the guidance of the air guide member 12, and further flows away from the switch door 15 under the guidance of the air guide edges 155, so that the air outlet of the air conditioner forms an enveloping airflow.
[0171] When the air guide edge 155 bends toward the air outlet 111, the air guide edge 155 can be adjacent to the outer periphery of the housing 11. The air guide edge 155 can be spliced or staggered with the housing 11 so that the housing forms a complete appearance surface. The curvature of the air guide edge 155 can be the same as the curvature of the outer periphery of the housing 11 to further improve the flatness of the appearance surface of the indoor air conditioner 1 when it is turned off.
[0172] like Figures 31-34 As shown, according to some embodiments of the present invention, a clearance space 112 is provided inside the housing 11. When the air guide 12 opens the air outlet 111, at least a portion of the air guide 12 is accommodated within the clearance space 112. In this embodiment, when the air guide 12 is in the state of closing the air outlet 111, the edge of the air guide 12 is spliced or adjacent to the edge of the air outlet 111 to close the air outlet 111. When the air guide 12 opens the air outlet 111, the air guide 12 moves backward to retract into the air outlet 111, so that an air outlet duct is formed between the air guide 12 and the two side edges of the air outlet 111.
[0173] The avoiding space 112 arranged in the casing 11 can be located at both sides of the air outlet 111, and when the air guide 12 is in the first position, the air guide 12 enters the avoiding space 112 located at the first side of the air outlet 111, so that the air guide 12 and the second side of the air outlet 111 form an air outlet channel, and the air guide 12 blows air. When the air guide 12 is in the second position, the air guide 12 enters the avoiding space 112 located at the second side of the air outlet 111, so that the air guide 12 and the first side of the air outlet 111 form an air outlet channel, and the air guide 12 blows air.
[0174] According to some embodiments of the present application, the air outlet 111 is provided with avoiding spaces 112 at both sides, and each avoiding space 112 is correspondingly provided with a movable air baffle 114, and the air baffle 114 has an avoiding state and an air blocking state. In the avoiding state, the air baffle 114 opens the avoiding space 112 so that the air guide 12 can extend into the avoiding space 112. In the air blocking state, the air baffle 114 blocks the avoiding space 112 to serve as part of the air flow channel.
[0175] In the embodiment, the air baffle 114 can be used to close the avoiding space 112 to avoid the phenomenon of air being blocked in the open state. The air baffle 114 can serve as part of the air outlet channel to guide the air flow, so that the air flow is smoother and the noise is reduced.
[0176] According to some embodiments of the present application, the air conditioner indoor unit 1 comprises a casing 11 and an air channel component 113. The front surface of the casing 11 is provided with an air outlet 111. The air channel component 113 is arranged in the casing 11, and the air channel component 113 is provided with an air outlet channel extending towards the air outlet 111. The front side of the air channel component 113 is provided with an avoiding space 112, and at least one side of the air outlet 111 is provided with the avoiding space 112. An air guide 12 is movably arranged at the air outlet 111 to change the air outlet direction. A moving driving device 13 is arranged in the casing 11 and connected to the air guide 12 to drive the air guide 12 to move. The air conditioner indoor unit has an off state and a first air outlet state. In the off state, the air guide 12 is located at the air outlet 111, and the air guide 12 cooperates with the casing 11 to close the air outlet 111. In the first air outlet state, the air guide 12 moves so that at least a part of the air guide 12 extends into the avoiding space 112.
[0177] According to the air conditioner indoor unit 1 of the present application, the air duct component 113 is provided with the avoiding space 112, which is convenient for accommodating the air guide 12, and the air guide 12 opens the air outlet 111 after moving towards the air duct component 113. The opening mode of the air outlet 111 makes the air guide 12 no longer expand outward, and the space required for the opening and closing action of the air conditioner indoor unit is smaller. The air guide 12 is accommodated in the avoiding space 112 when guiding the air flow, and the appearance of the air conditioner indoor unit 1 is improved.
[0178] According to some embodiments of the present application, the air outlet 111 is provided with the avoiding space 112 on both sides, and each avoiding space 112 is provided with an adjustable air baffle 114. The air baffle 114 has an avoiding state and an air blocking state. In the avoiding state, the air baffle 114 opens the avoiding space 112 to make the air guide 12 extend into it. In the air blocking state, the air baffle 114 blocks the avoiding space 112 to serve as part of the air flow channel. The first air outlet state includes a single-side air outlet mode, in which at least part of the air guide 12 extends into one of the avoiding spaces 112, and the air guide of the other avoiding space 112 is in the air blocking state.
[0179] By setting the air baffle 114 structure, the air flow of the air outlet 111 can be effectively prevented from entering the avoiding space 112, the blocking effect of the avoiding space 112 on the air flow is reduced, and the air circulation of the air conditioner indoor unit 1 is smoother.
[0180] According to some embodiments of the present application, the air guide 12 is two, and the first air outlet state includes a middle air outlet mode, in which both air baffles 114 are in the avoiding state and at least part of both air guides 12 extends into the avoiding space 112.
[0181] When the air guide 12 is in the middle air outlet mode, the two air guides 12 move towards the direction away from each other and enter the avoiding spaces 112 on both sides of the air outlet 111. The distance between the two air guides 12 can be adjusted, and the size of the middle air outlet 111 is adjusted by controlling the distance between the two air guides 12.
[0182] After the two air guides 12 are spaced apart, at least part of each air guide 12 can be accommodated in the corresponding avoiding space 112. The air guide 12 can be partially accommodated in the avoiding space 112, or can be fully accommodated in the avoiding space 112.
[0183] As Figures 31-34As shown, according to some embodiments of the present invention, when the indoor unit of the air conditioner is turned on, the moving drive device 13 is configured to first drive the air guide 12 to move backward, then drive the air guide 12 to move left and right, and switch the air conditioner to the first air outlet state. The moving drive device 13 first drives the air guide 12 to move back and forth to open the air outlet 111, so that an air outlet channel is formed between the air guide 12 and the air outlet 111, and then controls the air guide 12 to move left and right, so as to adjust the air outlet direction using the air guide 12 in the first air outlet state.
[0184] like Figure 26 As shown, according to some embodiments of the present invention, the moving drive device 13 includes a front-to-back pushing device 135 and a left-to-right swinging device 136. The front-to-back pushing device 135 is provided with a first driving end that moves in the front-to-back direction. The left-to-right swinging device 136 is connected to the first driving end and moves back and forth under the drive of the first driving end. The left-to-right swinging device 136 has a plurality of second driving ends, each of which is connected to a corresponding air guide 12 to be adapted to drive the air guide 12 to move.
[0185] The moving drive device 13 in this embodiment has two parts, which are used to realize the forward and backward movement and left and right swing of the air guide 12, respectively. The first drive end of the forward and backward pushing device 135 can drive the left and right swinging device 136 to move, so as to move the air guide 12 in the forward and backward direction to selectively open or close the air outlet 111. The left and right swinging device 136 can move synchronously with the first drive end. After the air guide 12 has completed the forward and backward movement, the left and right swinging device 136 can further drive the air guide 12 to swing left and right, so that the air guide 12 switches between a first position and a second position, so as to drive the external placement of the air guide 12 to change the air outlet direction, or drive multiple air guides 12 away from each other to form an air outlet channel between two adjacent air guides 12. This realizes the front air outlet of the air conditioner.
[0186] According to some embodiments of the present application, the front and back pushing device 135 comprises a base 1351a, a sliding block 1353a and a first driving member 134, the base 1351a is provided with a first guide column 1352a, the sliding block 1353a is provided with a first guide groove 1354a extending in the front and back direction and matched with the first guide column 1352a, the sliding block 1353a is provided with a first driving end, and the first driving member 134 is arranged on the base 1351a and drives the sliding block 1353a to move. The base 1351a is configured as a plate structure, the base 1351a is provided with the first guide column 1352a protruding outward, the first guide groove 1354a on the sliding block 1353a is matched with the first guide column 1352a to limit the moving direction of the sliding block 1353a, wherein the first guide groove 1354a is configured to extend in the front and back direction, when the driving member drives the sliding block 1353a to move, the moving direction of the sliding block 1353a is limited by the matching between the first guide column 1352a and the first guide groove 1354a, so that the sliding block 1353a can only slide in the front and back direction, and the sliding block 1353a can be provided with a first driving end connected with the left and right swinging device 136.
[0187] According to some embodiments of the present application, the upper side of the base 1351a is further provided with a slide rail 131 seat, the slide rail 131 seat is provided with a slide way, the bottom of the left and right swinging device 136 is provided with a sliding block matched with the slide way, the sliding block is embedded into the slide way, the slide way extends in the front and back direction, and the bottom wall of the slide way is provided with a through hole, the first driving end can be configured as a protruding column arranged on the sliding block 1353a, the protruding column can pass through the through hole and be connected and matched with the sliding block 1353a to drive the sliding block at the bottom of the left and right swinging device 136 to move in the extension direction of the slide way.
[0188] According to some embodiments of the present application, the two side edges of the sliding block 1353a are provided with matched strips protruding upward, the side faces of the matched strips facing each other are provided with a plurality of teeth arranged in sequence in the front and back direction, and the first driving member 134 is configured as two motors, the two motors are provided with gears and are meshed with the teeth on the corresponding matched strips to drive the sliding block 1353a to move forward and backward during the rotation of the motors.
[0189] According to some embodiments of the present application, the left-right swinging device 136 comprises a swinging box frame 1361a connected with the first driving end, the swinging box frame 1361a is provided with a guide rail extending in the left-right direction; a cooperation block 1362a movably arranged on the guide rail, the cooperation block 1362a is provided with a second driving end connected with the corresponding air guide piece 12; and a second driving member 154 arranged on the swinging box frame 1361a and driving the cooperation block 1362a to move, so as to drive the air guide piece 12 to move between the first position and the second position. The air guide piece 12 is constructed as two, the guide rail comprises two and is arranged on the upper and lower sides of the swinging box frame 1361a respectively, and the cooperation block 1362a is constructed as two and is arranged on the upper and lower sides of the swinging box frame 1361a respectively, and cooperates with the corresponding guide rail and connects the corresponding air guide piece 12.
[0190] The swinging box frame 1361a comprises a body part, the front side of the body part is provided with an arc-shaped curved part, the upper and lower sides of the curved part are provided with guide rails, the guide rails can be constructed as protruding ribs arranged on the upper and lower sides of the curved part, the protruding ribs are constructed as a plurality of intervals in the front-back direction, the cooperation block 1362a is provided with a cooperation column, and the cooperation column can be accommodated between the adjacent two protruding ribs, so as to limit the movement track of the cooperation block 1362a.
[0191] According to some embodiments of the present application, the front side of the cooperation block 1362a is provided with a swinging arm protruding towards the front side, the swinging arm can be directly connected with the air guide piece 12, so that the connection position of the cooperation block 1362a and the connection position of the swinging wall are arranged on the front side away from the box frame, so as to ensure that the air guide piece 12 will not collide with the cabinet 11 during the movement.
[0192] According to some embodiments of the present application, the rear side of the cooperation block 1362a is provided with a plurality of cooperation teeth arranged in sequence in the width direction, the cooperation block 1362a can be constructed as an arc-shaped rack 132 protruding towards the front side, and the curvature of the cooperation block 1362a is the same as the curvature of the guide rail of the track, the second driving member 154 is constructed as a motor, the output end of the motor is provided with a gear 133, the gear 133 is engaged with the cooperation teeth on the rear side of the cooperation block 1362a, so as to drive the cooperation block 1362a to move along the guide rail when the gear 133 rotates.
[0193] According to some embodiments of the present application, the air guide 12 is configured as two, the guide rail is configured as two and arranged on the upper and lower sides of the swing box frame 1361a, and the engaging block 1362a is configured as two and arranged on the upper and lower sides of the swing box frame 1361a and connected with the corresponding air guide 12. It can be understood that the air guide 12, the guide rail and the engaging block 1362a are all configured as two, so that the two air guides 12 can be selectively moved away from each other, the two engaging blocks 1362a are arranged on the upper and lower sides of the swing box frame 1361a, the internal structure of the left and right swing device 136 is reasonably arranged, and the structure of the left and right swing device 136 is more compact.
[0194] According to some embodiments of the present application, the second driving member 154 is configured as two and drives the corresponding engaging block 1362a. The second driving member 154 can drive the corresponding engaging block 1362a, so that the two air guides 12 can move independently.
[0195] According to some embodiments of the present application, the second driving member 154 can be configured as one and synchronously engages with the two engaging blocks 1362a. The output end of the second driving member 154 is provided with a first gear 133, the first gear 133 is engaged with the engaging teeth in one of the engaging holes, the other engaging block 1362a is engaged with a second gear 133, and the second gear 133 is engaged with the first gear 133. When the second driving member 154 outputs power, the first gear 133 and the second gear 133 are simultaneously driven to rotate in opposite directions, and the two engaging blocks 1362a are simultaneously driven to move in opposite directions.
[0196] According to some embodiments of the present application, the guide rail is configured as an arc-shaped guide rail protruding forward.
[0197] As shown in Figures 27-29 According to some embodiments of the present application, the air conditioner indoor unit 1 further comprises a front and rear pushing device 135, a left and right swing device 136 and a driving rod 137. The front and rear pushing device 135 is provided with a third driving end moving in the front and rear direction, the left and right swing device 136 is provided with a fourth driving end moving in the left and right direction, and the driving rod 137 is movably connected with the third driving end and the fourth driving end. The driving rod 137 is connected with the air guide 12 and drives the air guide 12 to move in the front and rear direction and swing in the left and right direction.
[0198] The driving rod 137 can realize front and rear movement and left and right swing under the action of the third driving end and the fourth driving end. It can be understood that the power output by the front and rear pushing device 135 and the left and right swing device 136 acts on the driving rod 137, so that the driving rod 137 can have the freedom of movement in two directions at the same time.
[0199] One end of the driving rod 137 is connected with the air guide 12, and the air guide 12 moves forward and backward or swings left and right under the driving of the driving rod 137, so as to open or close the air outlet 111 and move between the first position and the second position after the air outlet 111 is opened.
[0200] According to some embodiments of the present application, the forward and backward pushing device 135 comprises a shell 1351b, a first rack 1353b and a second rack 1354b, and the bottom wall of the shell 1351b is provided with two first guides 1352b; the first rack 1353b and the second rack 1354b are both provided with second guides 1355b matched with the corresponding first guides 1352b, so that the first rack 1353b and the second rack 1354b move in the forward and backward direction under the cooperation of the first guides 1352b and the second guides 1355b, and the driving rod 137 is hinged with the first rack 1353b and the second rack 1354b respectively, and the first rack 1353b and the second rack 1354b are configured as the third driving end.
[0201] According to some embodiments of the present application, the left and right swinging device 136 comprises a third rack 1361b and a fourth rack 1362b, the third rack 1361b and the fourth rack 1362b are respectively provided with third guides 1363b, and the two driving rods 137 are provided with fourth guides 1371 matched with the third guides 1363b, so that the driving rods 137 swing in the left and right direction under the cooperation of the third guides 1363b and the fourth guides 1371, and the third rack 1361b and the fourth rack 1362b are configured as the fourth driving end. The shell 1351b is provided with a rack 132 sliding groove 1311, and the third rack 1361b and the fourth rack 1362b are provided with sliding columns matched with the rack 132 sliding groove 1311, and the rack 132 sliding groove 1311 cooperates with the sliding columns to limit the movement track of the third rack 1361b and the fourth rack 1362b. The first rack 1353b and the second rack 1354b are both configured as arc-shaped racks 132 protruding towards each other, and the second rack 1354b and the fourth rack 1362b are configured as arc-shaped racks 132 protruding towards the front side.
[0202] According to some embodiments of the present application, the first rack 1353b and the second rack 1354b are configured as arc-shaped racks, and the first rack 1353b and the second rack 1354b are configured as arcs protruding towards each other, the second guide 1355b is configured as an arc-shaped notch provided on the first rack 1353b and the second rack 1354b, and the bottom wall of the shell 1351b is provided with a limiting column matched with the arc-shaped notch, and the limiting column is configured as the first guide 1352b, and the first guide 1352b and the second guide 1355b cooperate to limit the movement direction of the first rack 1353b and the second rack 1354b.
[0203] The first rack 1353b and the second rack 1354b are used to control the forward and backward movement of the driving rod 137, so that the air guide 12 is used to open or close the air outlet 111.
[0204] According to some embodiments of the present application, the bottom wall of the shell 1351b is provided with limiting grooves for limiting the corresponding third rack 1361b and the fourth rack 1362b, the third rack 1361b and the fourth rack 1362b and the limiting grooves are all arc-shaped, and the two limiting grooves are arranged on the two side edges of the front side of the shell 1351b, and the limiting grooves are curved towards the rear side in a direction away from each other.
[0205] According to some embodiments of the present application, the driving rod 137 is provided with a connecting column to form a fourth guide 1371, and the third rack 1361b and the fourth rack 1362b are provided with linear notches extending in the front and rear direction to cooperate with the connecting column, so as to be suitable for the first rack 1353b and the second rack 1354b to drive the driving rod 137 to move in the front and rear direction, while keeping relative movement between the third rack 1361b and the fourth rack 1362b. The connecting column is rotatably arranged in the linear notch, and when the third rack 1361b and the fourth rack 1362b move along the limiting groove, the connecting column rotates in the linear notch and abuts against the side wall of the linear notch to pull the driving rod 137 to swing in the left and right direction.
[0206] According to some embodiments of the present application, the upper side of the air outlet 111 of the cabinet 11 is provided with a display panel 17, which can be used to display the parameters of the air conditioner. By arranging the display panel 17 on the upper side of the air outlet 111 of the air conditioner, the user can more intuitively observe the detailed parameters of the air conditioner.
[0207] According to some embodiments of the present application, the air conditioner indoor unit 1 is provided with a human body detection device 18, which can be used to detect the moving human body in front of the air outlet 111, and the human body detection device 18 is suitable for controlling the position of the air guide 12 to avoid the air outlet 111 blowing direction to avoid the human body when detecting the human body activity in front of the air outlet 111 in the open state of the air conditioner, to avoid the cold wind blowing directly, and to improve the comfort of the user.
[0208] In the description of the application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the application.
[0209] In the description of the application, "first feature" and "second feature" can include one or more of the features.
[0210] In the description of the application, "a plurality of" means two or more.
[0211] In the description of the application, "above" or "below" the first feature of the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them.
[0212] In the description of the application, "above", "over" and "on" the first feature of the second feature includes that the first feature is directly above and obliquely above the second feature, or only means that the first feature is higher than the second feature in height.
[0213] In the description of the application, the description of the terms "some embodiments", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are included in at least some embodiments or examples of the application. In this specification, the illustrative description of the above terms does not necessarily refer to the same embodiments or examples. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0214] Although embodiments of the 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 spirit of the application, and the scope of the application is defined by the claims and their equivalents.
Claims
1. An air conditioner indoor unit characterized by comprising: The application relates to a cabinet, comprising: a cabinet provided with an air outlet; an air guide member movably arranged at the air outlet to selectively open or close the air outlet; a moving driving device arranged in the cabinet and connected with the air guide member to drive the air guide member to open or close the air outlet; wherein the moving driving device is adapted to drive the air guide member to move between a first position and a second position when the air outlet is open; in the first position, the air guide member cooperates with a first side of the air outlet to guide air towards a second side of the air outlet; in the second position, the air guide member cooperates with the second side of the air outlet to guide air towards the first side of the air outlet; between the first position and the second position, the air guide member defines an air outlet channel with the first side and the second side of the air outlet respectively; the air guide member is configured as a plurality of air guide members which are selectively moved away from each other to define an air outlet channel between two adjacent air guide members; when the plurality of air guide members are located between the first position and the second position, the air guide member adjacent to the first side of the air outlet forms a first air outlet channel with the first side of the air outlet, the air guide member adjacent to the second side of the air outlet forms a second air outlet channel with the second side of the air outlet, and two adjacent air guide members form a third air outlet channel; the moving driving device comprises: a front and back pushing device provided with a first driving end moving in a front and back direction; a left and right swinging device connected with the first driving end and moving forward and backward under the driving of the first driving end, the left and right swinging device is provided with a plurality of second driving ends, each of which is connected with a corresponding air guide member to drive the air guide member to move; the front and back pushing device comprises: a base provided with a first guide column; a sliding block provided with a first guide groove extending in a front and back direction and cooperating with the first guide column, the sliding block is provided with the first driving end; a first driving member arranged on the base and driving the sliding block to move; the left and right swinging device comprises: a swinging box frame connected with the first driving end, the swinging box frame is provided with a guide rail extending in a left and right direction; a cooperating block movably arranged on the guide rail, the cooperating block is provided with a second driving end connected with a corresponding air guide member; a second driving member arranged on the swinging box frame and driving the cooperating block to move, so as to drive the air guide member to move between a first position and a second position. 2.The indoor unit of the air conditioner according to claim 1, characterized by, Further comprising: a switch door arranged on the outer surface of the air guide member and moving synchronously with the air guide member, the switch door is adapted to cooperate with the cabinet when the air guide member closes the air outlet, so that the front surface of the switch door forms the appearance surface of the cabinet. 3.The indoor unit of the air conditioner according to claim 1, characterized by, The casing is provided with an avoiding space, and at least part of the air guide member is accommodated in the avoiding space when the air guide member opens the air outlet. 4.The indoor unit of the air conditioner according to claim 3, characterized by, Both sides of the air outlet are provided with the avoiding space, and each avoiding space is provided with an adjustable baffle, which has an avoiding state and a baffle state. In the avoiding state, the baffle opens the avoiding space so that the air guide member can extend into the avoiding space. In the baffle state, the baffle blocks the avoiding space to form part of the air flow channel. 5.The air conditioning indoor unit according to any one of claims 2-4, characterized in that, The air guide member is configured as two, the guide rail includes two and is arranged on the upper and lower sides of the swing box frame respectively, and the matching block is configured as two and is arranged on the upper and lower sides of the swing box frame respectively and is matched with the corresponding guide rail and connected with the corresponding air guide member. 6.The indoor unit of the air conditioner according to claim 5, characterized in that, The second driving member is configured as two and drives the corresponding matching block. 7.The indoor unit of the air conditioner according to claim 6, characterized by, The guide rail is configured as an arc-shaped guide rail protruding forward.
8. The air conditioning indoor unit according to any one of claims 2 to 4, characterized by Further comprising: A front and rear pushing device provided with a third driving end moving in the front and rear direction; A left and right swinging device provided with a fourth driving end moving in the left and right direction; A driving rod movably connected with the third driving end and the fourth driving end, the driving rod being connected with the air guide member and driving the air guide member to move in the front and rear direction and swing in the left and right direction. 9.The indoor unit of the air conditioner of claim 8, characterized in that, The front and rear pushing device comprises: A housing provided with two first guide members on the bottom wall; A first rack and a second rack, the first rack and the second rack being provided with second guide members matched with the corresponding first guide members, so that the first rack and the second rack move in the front and rear direction under the cooperation of the first guide members and the second guide members, and the driving rod is hinged with the first rack and the second rack, and the first rack and the second rack are configured as the third driving end. 10.The indoor unit of the air conditioner according to claim 9, characterized by, The left and right swinging device comprises: A third rack and a fourth rack, the third rack and the fourth rack being provided with third guide members respectively, and the two driving rods being provided with fourth guide members matched with the third guide members, so that the driving rod swings in the left and right direction under the cooperation of the third guide members and the fourth guide members, and the third rack and the fourth rack are configured as the fourth driving end. 11.The indoor unit of the air conditioner of claim 10, characterized in that, The housing is provided with a rack sliding groove, the third rack and the fourth rack are provided with sliding columns matched with the rack sliding groove, and the rack sliding groove and the sliding column cooperate to limit the movement track of the third rack and the fourth rack. 12.The indoor unit of the air conditioner of claim 11, characterized in that, The first rack and the second rack are configured as arc-shaped racks protruding towards each other, and the second rack and the fourth rack are configured as arc-shaped racks protruding towards the front side.
Citation Information
Patent Citations
Cabinet air conditioner indoor unit
CN108800328A
Air -conditioner
CN206545978U
Air guide device and air conditioner
CN206755517U
Indoor unit of air conditioner
CN214791477U