Air guide assembly and air conditioning device with same
By designing an adjustable air guide component and drive structure, the problem of the single air guide structure of the air-conditioning outlet is solved, the flexible adjustment of the wind direction and the uniform distribution of temperature are achieved, and the comfort and adaptability of the air-conditioning are improved.
Patent Information
- Application Number
- CN202511035867.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2025-09-05
AI Technical Summary
The existing air outlet of the air conditioner has a single air guide structure, which leads to limited wind direction adjustment and cannot meet the diverse air outlet needs, resulting in uneven room temperature distribution.
An air guide assembly is designed, including an adjustable guide structure and a drive structure, which can switch between closed, unidirectional air guide and multi-directional air guide states. The air guide state is automatically adjusted by monitoring the temperature difference through a temperature detection component, and smooth movement of the guide structure is achieved through a drive rod and a drive assembly.
It realizes flexible adjustment of wind direction, improves the uniformity of temperature distribution and comfort of use, prevents dust from entering, and enhances the adaptability of the air conditioner and user experience.
Smart Images

Figure CN120593383A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air guide structures, and in particular to an air guide assembly and an air conditioning device having the same. Background Art
[0002] Currently, existing air-conditioning vents typically offer a single, one-way airflow, failing to meet user demands for more diverse airflow options. Furthermore, conventional air-conditioning vents often feature fixed structures at specific locations, allowing for limited airflow direction adjustment. This results in uneven temperature distribution within the room, making temperature regulation in some corners of the room ineffective. Summary of the Invention
[0003] The main purpose of the present invention is to provide an air guide assembly and an air conditioning device having the same, so as to solve the technical problem that the air guide structure in the prior art has a poor air guide effect due to a single air guide method.
[0004] In order to achieve the above object, according to one aspect of the present invention, there is provided an air guide assembly, comprising:
[0005] A guide structure is adjustably arranged at the air outlet, and the guide structure has a closed state, a unidirectional airflow state, and a multi-directional airflow state;
[0006] When the guide structure is in the closed state, the guide structure blocks the air outlet;
[0007] When the guide structure is in the one-way air guiding state, one end of the guide structure is located at the air outlet and is fixed relative to the air outlet, and the other end of the guide structure is spaced apart from the air outlet and is rotatably arranged relative to the one end of the guide structure;
[0008] When the guide structure is in the multi-directional air guiding state, the guide structure is spaced apart from and arranged relative to the air outlet, and an air outlet gap is formed between the guide structure and the air outlet, surrounding the periphery of the guide structure. The guide structure can move in a direction close to or away from the air outlet to adjust the size of the air outlet gap.
[0009] Furthermore, the air guide assembly further includes:
[0010] The driving structure includes a first driving part and a second driving part, the first driving part is drivingly connected to one end of the guide structure, and the second driving part is drivingly connected to the other end of the guide structure.
[0011] Furthermore, at least one of the first driving part and the second driving part is movably arranged in a direction close to or away from the air outlet and is hinged to the guide structure.
[0012] Furthermore, the first driving part and the second driving part are both movably arranged in a direction close to or away from the air outlet, the first driving part is hinged to one end of the guide structure, and the second driving part is hinged to the other end of the guide structure;
[0013] The guide structure includes a first wind guide plate and a second wind guide plate, the first wind guide plate is slidably arranged on the second wind guide plate along a preset direction, the first wind guide plate and the second wind guide plate are at least partially overlapped, the end of the first wind guide plate away from the second wind guide plate forms one end of the guide structure, and the end of the second wind guide plate away from the first wind guide plate forms the other end of the guide structure.
[0014] Furthermore, a guide slot is provided on the first air guide plate, and a guide member adapted to the guide slot is provided on the second air guide plate; or, a guide slot is provided on the second air guide plate, and a guide member adapted to the guide slot is provided on the first air guide plate; wherein, the guide slot has a first limiting end and a second limiting end respectively located at both ends of the guide slot, and the first limiting end and the second limiting end are both used for limiting abutment of the guide member.
[0015] Furthermore, at least one of the first driving unit and the second driving unit includes:
[0016] At least two spaced-apart driving rods, each of the at least two driving rods being drivingly connected to one end of the guide structure or the other end of the guide structure;
[0017] A driving assembly is connected to at least two of the driving rods to drive the at least two driving rods to move synchronously.
[0018] Furthermore, the drive assembly includes at least two pulleys and a synchronous belt, wherein the synchronous belt is wound around the at least two pulleys to drive the at least two pulleys to rotate synchronously; the at least two pulleys are provided in a one-to-one correspondence with the at least two drive rods, and each drive rod is passed through the corresponding pulley and is threadedly connected to the corresponding pulley; and / or,
[0019] The air outlet is provided on the installation body, and one of the first air guide plate and the second air guide plate close to the outer edge of the installation body is provided in coordination with the outer edge of the installation body.
[0020] Furthermore, the air guide assembly further includes a mounting seat, the guide structure is movably disposed on the mounting seat, and the drive structure is mounted on the mounting seat;
[0021] Wherein, the mounting seat has an installation space, at least one of the first driving part and the second driving part includes a motor, and the motor is installed in the installation space; and / or,
[0022] The driving rod is vertically mounted on the mounting seat; and / or
[0023] The driving assembly is mounted on a side of the mounting seat away from the guide structure.
[0024] Furthermore, the mounting seat is provided with a connecting port arranged opposite to the air outlet, the first driving part and the second driving part are arranged opposite to each other on both sides of the connecting port, the mounting space includes a first mounting cavity and a second mounting cavity respectively located on both sides of the mounting seat, the first driving part and the second driving part both include a motor, the motor of the first driving part is installed in the first mounting cavity, and the motor of the second driving part is installed in the second mounting cavity.
[0025] Furthermore, the air guide assembly further includes:
[0026] a first temperature detecting member, disposed at one end of the guide structure;
[0027] a second temperature detecting member, disposed at the other end of the guide structure;
[0028] A control component, wherein the control component is connected to the drive structure signal, the first temperature detection component and the second temperature detection component are both connected to the drive structure signal, and the control component is configured to: obtain the temperature detected by the first temperature detection component and the temperature detected by the second temperature detection component; and adjust the air guiding state of the guide structure according to the temperature detected by the first temperature detection component and the temperature detected by the second temperature detection component.
[0029] Furthermore, the control element is further configured as:
[0030] Obtaining a temperature difference between the first temperature detecting member and the second temperature detecting member, and comparing the temperature difference with a preset difference value;
[0031] When the temperature difference is less than or equal to the preset difference, the guide structure is controlled to be in the unidirectional airflow guiding state and the air outlet direction of the guide structure is controlled to be toward one end of the guide structure or the other end of the guide structure, or the guide structure is controlled to be in the multi-directional airflow guiding state;
[0032] When the temperature difference is greater than the preset difference, the guide structure is controlled to be in the unidirectional air guiding state, and the end of the guide structure with a larger temperature difference from the set temperature is used as the other end of the guide structure.
[0033] According to another aspect of the present invention, there is provided an air conditioning device, comprising:
[0034] An indoor unit body, wherein the indoor unit body is mounted on a mounting base, and an air outlet is provided on the indoor unit body or the mounting base, and the air outlet is used for air intake or air outlet;
[0035] The air guide assembly provided above is installed at the air outlet.
[0036] Furthermore, the air conditioning device is a ceiling unit, the installation base is a ceiling, the indoor unit body is installed above the ceiling, and the ceiling is provided with the air outlet; or,
[0037] The air conditioning device is a cabinet air conditioner or a wall mounted air conditioner, and the air outlet is provided on the main body of the indoor unit.
[0038] By applying the technical solution of the present invention, the wind direction can be flexibly adjusted through the multi-state changes of the guide structure. It can not only perform unidirectional or multi-directional air guidance according to actual needs, but also can be completely closed when not in use, effectively preventing dust and foreign matter from entering and keeping the air pure. At the same time, the air guiding state of the guide structure is automatically adjusted by monitoring the temperature difference between the first temperature detection part and the second temperature detection part, realizing intelligent temperature control and improving the comfort of use. In the design of the drive structure, a drive rod and a drive assembly are adopted to ensure the smoothness and synchronization of the movement of the guide structure, further improving the accuracy of the wind direction adjustment. In addition, the solution of the present application is compact in structure, saves space, is easy to install and maintain, and is applicable to a variety of air conditioning devices, such as patio units, air conditioning cabinet units or wall units, which greatly enhances the versatility and adaptability of the solution. By adopting the solution of the present application, the user experience and efficiency of the air conditioning device are significantly improved, providing users with a more comfortable and intelligent environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] The accompanying drawings, which constitute part of this application, are intended to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are intended to explain the present invention and do not constitute an undue limitation of the present invention. In the accompanying drawings:
[0040] Figure 1 A schematic diagram showing a structure of a skylight machine provided in an embodiment of the present invention installed on a ceiling with a guide structure in a closed state;
[0041] Figure 2A schematic diagram showing a structure in which a ceiling loader provided by an embodiment of the present invention is installed on a ceiling, and a first air guide plate of a guide structure is exposed from the ceiling to achieve air guide;
[0042] Figure 3 A schematic diagram of a structure viewed from above a ceiling according to an embodiment of the present invention is shown;
[0043] Figure 4 A schematic structural diagram of an air guide assembly when the guide structure provided by an embodiment of the present invention is in a unidirectional air guide state is shown;
[0044] Figure 5 A schematic structural diagram of a fixing member provided according to an embodiment of the present invention is shown;
[0045] Figure 6 It shows a schematic structural diagram of a pulley provided according to an embodiment of the present invention;
[0046] Figure 7 A schematic structural diagram of a driving wheel according to an embodiment of the present invention is shown;
[0047] Figure 8 A schematic structural diagram of an air guide assembly when the guide structure provided by an embodiment of the present invention is in a closed state is shown;
[0048] Figure 9 A schematic diagram showing the movement direction of the guide structure provided in an embodiment of the present invention in a unidirectional air guiding state is shown;
[0049] Figure 10 A schematic diagram showing the movement direction of the guide structure provided by an embodiment of the present invention in a unidirectional airflow guiding state and at a maximum opening angle;
[0050] Figure 11 A schematic diagram showing the movement direction of the guide structure provided in an embodiment of the present invention in a multi-directional wind guiding state is shown;
[0051] Figure 12 A schematic diagram showing the movement direction of the guide structure provided by an embodiment of the present invention in a multi-directional airflow guiding state and with the guide structure at the maximum distance from the air outlet;
[0052] Figure 13 A structural schematic diagram showing a decorative line provided on a first air guide plate provided in an embodiment of the present invention is shown.
[0053] The above drawings include the following reference numerals:
[0054] 10. Air guide assembly;
[0055] 11. Guiding structure;
[0056] 111. First air guide plate; 1111. Decorative line;
[0057] 112. Second air guide plate;
[0058] 113. Guide chute; 114. Guide member;
[0059] 12. Driving structure;
[0060] 121. First driving unit; 122. Second driving unit;
[0061] 123, driving rod;
[0062] 124, drive assembly; 1241, pulley; 1242, synchronous belt; 1243, drive wheel; 1244, first plate; 1245, second plate; 1246, wheel;
[0063] 125. Motor; 126. Fixing parts; 127. Cylindrical roller bearing;
[0064] 13. Mounting seat; 131. Mounting space; 1311. Second mounting cavity; 132. Communication port;
[0065] 14. A first temperature detection member;
[0066] 15. Second temperature detection element;
[0067] 20. Wind outlet;
[0068] 30. Indoor unit body;
[0069] 40. Installation foundation;
[0070] 50. Air duct;
[0071] 60. Protective cover. DETAILED DESCRIPTION
[0072] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0073] like Figures 1 to 13As shown, the first embodiment of the present invention provides an air guide assembly 10, which includes a guide structure 11. The guide structure 11 is adjustably arranged at the air outlet 20. The guide structure 11 has a closed state, a unidirectional air guide state, and a multidirectional air guide state. When the guide structure 11 is in the closed state, the guide structure 11 blocks the air outlet 20; when the guide structure 11 is in the unidirectional air guide state, one end of the guide structure 11 is located at the air outlet 20 and is fixed relative to the air outlet 20, and the other end of the guide structure 11 is spaced apart from the air outlet 20 and is rotatable relative to one end of the guide structure 11; when the guide structure 11 is in the multidirectional air guide state, the guide structure 11 is spaced apart from the air outlet 20 and is arranged relative to the air outlet 20. An air outlet gap is formed between the guide structure 11 and the air outlet 20, and the guide structure 11 can move in a direction close to or away from the air outlet 20 to adjust the size of the air outlet gap.
[0074] The wind guide assembly 10 provided in this embodiment is used to achieve flexible adjustment of the wind direction by utilizing the multi-state changes of the guide structure 11. The guide structure 11 can switch between a closed state, a unidirectional wind guide state, and a multi-directional wind guide state through the adjustability of its position, thereby adapting to different usage requirements. In the closed state, the guide structure 11 blocks the air outlet 20 to prevent dust and foreign matter from entering the guide structure 11 through the air outlet, thereby avoiding the situation where dust or foreign matter enters the guide structure 11, causing the wind blown out by the guide structure 11 when it subsequently guides the air outlet to carry dust or foreign matter, thereby ensuring that the guide structure 11 can ensure the cleanliness of the air outlet as much as possible when it guides the air outlet. In the unidirectional wind guide state, one end of the guide structure 11 is fixed and the other end is rotatable to achieve directional air supply, which is suitable for scenarios where precise control of the wind direction is required. In addition, the directional air supply can flexibly control the air supply direction to prevent the wind from blowing directly towards the user, thereby improving user comfort. In the multi-directional airflow state, an air outlet gap is formed between the guide structure 11 and the air outlet 20. By adjusting the movement of the guide structure 11, the size of the air outlet gap is changed to achieve multi-angle air supply, improve air supply efficiency and comfort, so that the wind can be blown more evenly into the room, and improve the uniformity of indoor temperature distribution. In addition, this mode can avoid the wind from blowing directly from the air outlet 20 to the user, but instead discharges the wind through the air outlet gap, so that the wind originally concentrated at the air outlet 20 can be evenly distributed to the peripheral direction surrounding the air outlet 20, achieving a multi-angle uniform air outlet mode, so it can also be called an anti-direct blowing mode, which can effectively improve the user experience. The implementation effect is manifested in the diversification of air supply directions, enhancing the environmental adaptability and user experience of the air conditioner. Application scenarios include homes, offices, shopping malls, hospitals and other environments that require air conditioning, and are particularly suitable for occasions with special requirements for air supply methods, such as avoiding direct blowing on the human body and uniform air supply. Combined with the above-mentioned different air supply methods, the air guide method in this application can be flexibly selected, thereby facilitating the improvement of the air guide effect and the improvement of user comfort. It should be noted that the above description is mainly based on the air outlet method. In fact, the air guide of the air guide component in this application is not only suitable for air outlet and air supply, but also for air intake and air guidance. When air is introduced through the air outlet 20, the air outlet gap can be understood as the air intake gap for air intake.
[0075] Specifically, the air guide assembly 10 in this embodiment can be used for air intake or air exhaust. The air guide assembly 10 can be applicable to an air conditioning device, which includes but is not limited to an air conditioner for exhausting air or an exhaust device for exhausting air. The exhaust device can be used to discharge indoor air to the outdoors.
[0076] Specifically, when the guide structure 11 is in a unidirectional airflow state, it can be unidirectionally directed to the left or right. Figure 2 、 Figure 4 、 Figure 9 and Figure 10 As shown, the guide structure 11 performs a one-way air guide on the left side; Figure 13 As shown, the guide structure 11 performs right-side unidirectional air guidance.
[0077] like Figure 10 As shown, when the guide structure 11 is in a unidirectional airflow state, the guide structure 11 can move to a maximum opening angle, and the specific opening angle can be adjusted according to actual temperature requirements. Specifically, when the actual temperature difference differs significantly from the set temperature difference, the opening angle of the guide structure 11 is increased to increase the air flow through the air outlet 20, thereby facilitating rapid cooling under large temperature difference conditions. When the actual temperature difference differs slightly from the set temperature difference, the opening angle of the guide structure 11 is decreased to reduce the air flow through the air outlet 20, thereby avoiding rapid cooling under small temperature difference conditions that would result in the set temperature difference not being accurately reached.
[0078] like Figure 12 As shown, when the guide structure is in the multi-directional airflow state, the guide structure 11 can move to a position where the distance from the air outlet 20 is the largest. The distance between the guide structure 11 and the air outlet 20 can be adjusted according to actual temperature requirements. Specifically, when the actual temperature difference differs significantly from the set temperature difference, the distance between the guide structure 11 and the air outlet 20 is increased to increase the air volume discharged through the air outlet 20, thereby facilitating rapid cooling when the temperature difference is large. When the actual temperature difference differs slightly from the set temperature difference, the distance between the guide structure 11 and the air outlet 20 is decreased to reduce the air volume discharged through the air outlet 20, thereby avoiding rapid cooling when the temperature difference is small, thereby preventing the set temperature difference from being accurately reached.
[0079] Specifically, the air guide assembly 10 also includes: a drive structure 12, which includes a first drive part 121 and a second drive part 122. The first drive part 121 is driven and connected to one end of the guide structure 11, and the second drive part 122 is driven and connected to the other end of the guide structure 11. Through the coordinated action of the first drive part 121 and the second drive part 122, the movement state of the guide structure 11 is precisely controlled. The first drive part 121 and the second drive part 122 are respectively connected to the two ends of the guide structure 11, and can independently or collaboratively drive the guide structure 11 according to different air guide requirements to achieve opening, closing and angle adjustment of the guide structure 11. The implementation effect is that the movement of the guide structure 11 is smoother and more precise, which improves the stability and reliability of the air guide assembly 10. Application scenarios include all air conditioning systems that require precise control of the movement of the guide structure 11, such as ceiling units, cabinet units, wall-mounted units, etc., especially when multi-directional air guidance or anti-direct blowing mode is required, the role of the drive structure 12 is particularly significant.
[0080] In this embodiment, at least one of the first drive unit 121 and the second drive unit 122 is movably arranged in a direction close to or away from the air outlet 20 and is hinged to the guide structure 11. The multi-directional movement of the guide structure 11 is achieved by the movable arrangement of the drive unit. At least one of the first drive unit 121 and the second drive unit 122 is hinged to the guide structure 11 and can move in a direction close to or away from the air outlet 20, thereby driving the guide structure 11 to flip or telescopically move, thereby achieving multi-angle adjustment of the wind direction. The implementation effect is that the movement of the guide structure 11 is more flexible and can adapt to more complex air supply requirements. Application scenarios include air-conditioning systems that require multi-angle adjustment of the wind direction, such as air-conditioning air supply in special environments such as kitchens and bathrooms, and bedrooms, offices and other occasions where direct blowing on the human body needs to be avoided.
[0081] Specifically, the first drive unit 121 and the second drive unit 122 are both movably arranged in a direction toward or away from the air outlet 20. The first drive unit 121 is hinged to one end of the guide structure 11, and the second drive unit 122 is hinged to the other end of the guide structure 11. The guide structure 11 includes a first air deflector 111 and a second air deflector 112. The first air deflector 111 is slidably arranged on the second air deflector 112 along a predetermined direction. The first air deflector 111 and the second air deflector 112 are arranged to at least partially overlap. The end of the first air deflector 111 away from the second air deflector 112 forms one end of the guide structure 11, and the end of the second air deflector 112 away from the first air deflector 111 forms the other end of the guide structure 11. The relative sliding of the first air deflector 111 and the second air deflector 112 enables precise adjustment of the wind direction. By sliding the first and second air deflectors 111, 112 in a predetermined direction, the degree of overlap between them can be changed, thereby adjusting the direction and amount of air discharged. The result is a more precise movement of the guide structure 11, enabling fine-tuning of the wind direction, improving the comfort and efficiency of air supply. Application scenarios include air conditioning systems requiring fine-tuning of wind direction, such as bedrooms and study rooms. In particular, the relative sliding of the first and second air guide plates 111, 112 enables more precise air supply control, particularly in situations where direct airflow to the human body and uniform air supply are crucial.
[0082] Specifically, when the guide structure 11 is in the closed state, the overlapping area of the first air deflector 111 and the second air deflector 112 is at most S, so that the guide structure 11 has a minimum shielding area. When the guide structure 11 is in the unidirectional airflow state, the overlapping area of the first air deflector 111 and the second air deflector 112 is less than S. When the guide structure 11 is in the multidirectional airflow state, the overlapping area of the first air deflector 111 and the second air deflector 112 is less than or equal to S. Specifically, the shielding area of the first air deflector 111 is greater than the shielding area of the second air deflector 112. S can be the shielding area of the second air deflector 112, that is, the second air deflector 112 is completely shielded by the first air deflector 111. Specifically, the first air deflector 111 can be disposed outside the second air deflector 112.
[0083] Preferably, the first air guide plate 111 and the second air guide plate 112 in this embodiment both extend along a preset direction.
[0084] In this embodiment, a guide slot 113 is provided on one of the first and second air guide plates 111, 112, and a guide member 114 adapted to the guide slot 113 is provided on the other of the first and second air guide plates 111, 112. The guide slot 113 has a first limiting end and a second limiting end, respectively located at both ends of the guide slot 113, and the first limiting end and the second limiting end are both used for limiting abutment with the guide member 114. Through the cooperation of the guide slot 113 and the guide member 114, the first and second air guide plates 111, 112 can slide smoothly. The cooperation of the guide slot 113 and the guide member 114 can ensure the stability of the first and second air guide plates 111, 112 during the sliding process, and avoid the deflection or jamming of the air guide plates during the movement. The implementation effect is that the movement of the guide structure 11 is smoother, and the reliability and service life of the air guide assembly 10 are improved. Application scenarios include all air-conditioning systems that require sliding air guide plates, such as ceiling units, cabinet units, and wall-mounted units. Especially in situations where fine-tuning of the wind direction is required, the cooperation of the guide groove 113 and the guide member 114 can achieve more precise sliding control.
[0085] Specifically, “a guide slot 113 is provided on one of the first air guide plate 111 and the second air guide plate 112, and a guide member 114 adapted to the guide slot 113 is provided on the other of the first air guide plate 111 and the second air guide plate 112” can be understood as: a guide slot 113 is provided on the first air guide plate 111, and a guide member 114 adapted to the guide slot 113 is provided on the second air guide plate 112; or, a guide slot 113 is provided on the second air guide plate 112, and a guide member 114 adapted to the guide slot 113 is provided on the first air guide plate 111.
[0086] In this embodiment, at least one of the first drive unit 121 and the second drive unit 122 includes: a drive assembly 124, at least two drive rods 123 arranged at intervals, and at least two drive rods 123 are both drive-connected to one end of the guide structure 11 or the other end of the guide structure 11; the drive assembly 124 is drive-connected to the at least two drive rods 123 to drive the at least two drive rods 123 to move synchronously. The synchronous movement of the guide structure 11 is achieved through the coordinated action of multiple drive rods 123 and the drive assembly 124. The provision of at least two drive rods 123 can ensure the balance of the guide structure 11 during movement and avoid deflection of the guide structure 11 during movement. The connection between the drive assembly 124 and the drive rods 123 can achieve synchronous movement of the drive rods 123, thereby improving the smoothness and reliability of the movement of the guide structure 11. The implementation effect is that the movement of the guide structure 11 is more synchronized, and the stability and air supply efficiency of the air guide assembly 10 are improved. Application scenarios include all air-conditioning systems that require synchronous movement of the guide structure 11, such as ceiling units, cabinet units, wall-mounted units, etc. Especially in situations where multi-angle adjustment of wind direction is required, the coordinated action of multiple drive rods 123 and drive components 124 can achieve precise synchronous movement of the guide structure 11.
[0087] Specifically, the driving rod 123 may be a screw rod.
[0088] Specifically, the drive assembly 124 includes at least two pulleys 1241 and a synchronous belt 1242. The synchronous belt 1242 is wound around the at least two pulleys 1241 to drive the at least two pulleys 1241 to rotate synchronously. The at least two pulleys 1241 are provided in a one-to-one correspondence with at least two drive rods 123, and each drive rod 123 is threadedly connected to the corresponding pulley 1241. The design principle of the drive assembly 124 is to achieve synchronous movement of the drive rods 123 through the cooperation between the pulleys 1241 and the synchronous belt 1242. The at least two pulleys 1241 are connected by the synchronous belt 1242, which ensures the synchronous rotation of the pulleys 1241, thereby driving the synchronous movement of the drive rods 123. The threaded connection between the drive rods 123 and the pulleys 1241 enables linear motion of the drive rods 123, improving the accuracy and efficiency of the movement of the guide structure 11. The implementation effect is that the movement of the guide structure 11 is more precise, and the stability and reliability of the air guide assembly 10 are improved. Application scenarios include all air-conditioning systems that require precise movement of the guide structure 11, such as ceiling units, cabinet units, and wall-mounted units. Especially in situations where fine-tuning of the wind direction and multi-angle adjustment are required, the cooperation of the pulley 1241 and the synchronous belt 1242 can achieve precise synchronous movement of the guide structure 11.
[0089] Specifically, it should be noted that pulley 1241 has an arc-shaped outer wall. Synchronous belt 1242 is wound around the arc-shaped outer wall of pulley 1241 and contacts at least part of the arc-shaped outer wall of pulley 1241. Because the arc-shaped outer walls of at least two pulleys 1241 are in contact with synchronous belt 1242, the movement of synchronous belt 1242 can synchronously drive the movement of at least two pulleys 1241; alternatively, the operation of one of the at least two pulleys 1241 can sequentially drive the movement of synchronous belt 1242 and the remaining pulleys 1241 of the at least two pulleys 1241, thereby achieving synchronous movement of at least two pulleys 1241.
[0090] Specifically, the drive assembly 124 also includes a drive wheel 1243, which is rotatably connected to a timing belt 1242. The motor 125 drives the drive wheel 1243, and its opposite ends engage with the timing belt 1242. The drive structure 12 also includes a cylindrical roller bearing 127 and a fixing member 126, which is used to define the position of the pulley 1241. The cylindrical roller bearing 127 is mounted on the drive rod 123 to improve the smoothness of the lifting and lowering movement of the drive rod 123.
[0091] Preferably, the pulley 1241 is a passive gear, and the synchronous belt 1242 is provided with teeth that mesh with the teeth on the pulley 1241. Correspondingly, the driving wheel 1243 is also a driving gear. The driving wheel 1243 includes a first plate 1244, a wheel body 1246, and a second plate 1245 connected in sequence. The first plate 1244 and the second plate 1245 are respectively located on both sides of the wheel body 1246. The outer edge of the wheel body 1246 is provided with gear teeth. The outer peripheral edge of the first plate 1244 protrudes from the outer peripheral edge of the wheel body 1246, and the outer peripheral edge of the second plate 1245 protrudes from the outer peripheral edge of the wheel body 1246. The first plate 1244 and the second plate 1245 are arranged so that the first plate 1244 and the second plate 1245 form a limiting groove. The limiting groove is adapted to the shape of the synchronous belt 1242, so that the synchronous belt 1242 is stably fixed in the limiting groove to ensure stable meshing of the synchronous belt 1242 and the wheel body 1246.
[0092] Specifically, there may be two limiting grooves, one on each side of the wheel body 1246, so that the two sides of the synchronous belt 1242 are respectively inserted into the corresponding limiting grooves. Alternatively, the limiting groove is an annular groove, and the two sides of the synchronous belt 1242 are respectively inserted into two different parts of the annular groove.
[0093] Preferably, the height of the limiting groove gradually increases from the side of the limiting groove close to the wheel body 1246 to the side of the limiting groove away from the wheel body 1246. The height direction of the limiting groove is the direction of the spacing between the first plate 1244 and the second plate 1245. Specifically, the first plate 1244 is arranged above the second plate 1245. The first plate 1244 has an inverted conical structure, and the second plate 1245 has a conical structure, so that the first plate 1244 and the second plate 1245 enclose the above-mentioned limiting groove.
[0094] Specifically, the air outlet 20 is provided on the mounting body, and one of the first air guide plate 111 and the second air guide plate 112, which is close to the outer edge of the mounting body, is provided in coordination with the outer edge of the mounting body. This coordinated arrangement ensures the overall appearance of the guide structure 11 when in the closed state.
[0095] Specifically, the installation body can be the indoor unit body 30 of an air conditioning device (the air conditioning device includes but is not limited to a cabinet air conditioner and a wall-mounted air conditioner), the indoor unit body 30 includes an indoor unit housing, the indoor unit housing encloses an installation cavity, the indoor unit body 30 has an outer side wall located outside the installation cavity, and the outer edge of the installation body corresponds to the outer side wall of the indoor unit body 30. When the first air guide plate 111 is arranged on the outer side of the second air guide plate 112, when the guide structure 11 is in a closed state, the side of the first air guide plate 111 away from the second air guide plate 112 is arranged flush with the outer side wall of the indoor unit housing; or, when the first air guide plate 111 is arranged on the outer side of the second air guide plate 112, the first air guide plate 111 and the indoor unit housing are made of the same material and have the same appearance attributes (the same appearance attributes include but are not limited to at least one of the same color, texture, and decorative line 1111). When the second air guide plate 112 is arranged on the outside of the first air guide plate 111, when the guide structure 11 is in a closed state, the side of the second air guide plate 112 away from the first air guide plate 111 is arranged flush with the outer wall of the indoor unit casing; or, when the second air guide plate 112 is arranged on the outside of the first air guide plate 111, the second air guide plate 112 and the indoor unit casing are made of the same material and have the same appearance properties (the same appearance properties include but are not limited to at least one of the color, texture, and decorative line 1111).
[0096] Specifically, the mounting body can also be a mounting base 40, which can be a fixed structure such as a top wall or ceiling. Correspondingly, the air guide assembly 10 is adapted for a ceiling unit, which is embedded in the top wall or ceiling of a wall. The mounting base 40 has an exterior wall surface, which refers to the wall surface located indoors and visible to users. It should be noted that when the first air guide plate 111 is arranged on the outside of the second air guide plate 112, "the one of the first air guide plate 111 and the second air guide plate 112 close to the outer edge of the installation body" is the first air guide plate 111, and the outer edge of the first air guide plate 111 is the side of the first air guide plate 111 away from the second air guide plate 112, and the outer edge of the installation body is the appearance wall of the installation base 40; "the one of the first air guide plate 111 and the second air guide plate 112 close to the outer edge of the installation body is arranged in coordination with the outer edge of the installation body" can be understood as: when the air guide assembly 10 is in a closed state, the side of the first air guide plate 111 away from the second air guide plate 112 is arranged flush with the appearance wall of the installation base 40 and / or has the same appearance attributes as the appearance wall of the installation base 40 (the same appearance attributes include but are not limited to at least one of the color, texture, and decorative lines 1111). When the second air guide plate 112 is arranged on the outside of the first air guide plate 111, "the one of the first air guide plate 111 and the second air guide plate 112 close to the outer edge of the installation body" is the second air guide plate 112, the outer edge of the second air guide plate 112 is the side of the second air guide plate 112 away from the first air guide plate 111, and the outer edge of the installation body is the appearance wall of the installation base 40; "the one of the first air guide plate 111 and the second air guide plate 112 close to the outer edge of the installation body is arranged in coordination with the outer edge of the installation body" can be understood as: when the air guide assembly 10 is in a closed state, the side of the second air guide plate 112 away from the first air guide plate 111 is arranged flush with the appearance wall of the installation base 40 and / or has the same appearance attributes as the appearance wall of the installation base 40 (the same appearance attributes include but are not limited to at least one of the color, texture, and decorative lines 1111).
[0097] Preferably, one of the first air guide plate 111 and the second air guide plate 112 close to the outer edge of the installation body and the installation body is provided with a decorative line 1111 that is the same as the ceiling. Figure 13 As shown, the first air guide plate 111 is arranged on the outside of the second air guide plate 112, and a decorative line 1111 is provided on the first air guide plate 111. Figure 9 、 Figure 11 and Figure 13 The arrows in the figure represent the movement directions of the corresponding structures.
[0098] Specifically, Figure 1 and Figure 2 The middle is a schematic diagram of the installation structure of the exterior wall side of the installation base 40, Figure 3 3 is a schematic diagram of the installation structure of the side of the installation base 40 opposite to the exterior wall surface. Specifically, the exterior wall surface side can be understood as the outer side of the installation base 40, and the side opposite to the exterior wall surface side can be understood as the inner side of the installation base 40.
[0099] In this embodiment, the air guide assembly 10 further includes a mounting base 13, on which the guide structure 11 is movably mounted, and on which the drive structure 12 is mounted. The mounting base 13 defines a mounting space 131, and at least one of the first drive unit 121 and the second drive unit 122 includes a motor 125, which is mounted within the mounting space 131. The design principle of the mounting base 13 is to provide a mounting base 40 for the guide structure 11 and the drive structure 12, ensuring the stability of the guide structure 11 and the reliability of the drive structure 12. The provision of the mounting base 13 provides support for the guide structure 11, ensuring its stability during movement.
[0100] Specifically, the driving rod 123 is vertically penetrated on the mounting seat 13 .
[0101] Specifically, the driving assembly 124 is installed on a side of the mounting seat 13 away from the guide structure 11 .
[0102] Specifically, the setting of the mounting base 13 and the installation method of the guide structure 11 on the mounting base 13 can provide stable installation support for the drive rod 123 and the drive assembly 124, ensuring the normal operation of the drive structure 12. The installation of the motor 125 can provide power for the drive structure 12 to ensure the movement of the guide structure 11. The implementation effect is that the movement of the guide structure 11 is more stable, which improves the reliability and service life of the air guide assembly 10. The application scenarios include all air-conditioning systems that require stable movement of the guide structure 11, such as ceiling units, cabinet units, hanging units, etc., especially in situations where multi-angle adjustment of wind direction, anti-direct blowing mode, etc. are required, the setting of the mounting base 13 can provide a stable installation base 40 for the guide structure 11 and the drive structure 12, ensuring the stable movement of the guide structure 11 and the reliable operation of the drive structure 12.
[0103] Specifically, the fixing member 126 can be a bent plate structure, and a bypass groove for avoiding the driving rod 123 is provided on the bent plate. One end of the bent plate abuts against the pulley 1241, and the other end of the bent plate is installed on the mounting seat 13.
[0104] Specifically, when the installation body is a ceiling, the installation base 13 is fixed above the ceiling, and the motor 125 is installed in the installation space 131 surrounded by the installation base 13 .
[0105] Preferably, in order to optimize the structural layout and avoid exposure of the driving structure, the pulley 1241 , the synchronous belt 1242 and the driving wheel 1243 can all be installed above the mounting seat 13 .
[0106] In this embodiment, the mounting base 13 is provided with a communication opening 132 disposed opposite the air outlet 20. The first drive unit 121 and the second drive unit 122 are disposed oppositely on either side of the communication opening 132. The mounting space 131 includes a first mounting cavity and a second mounting cavity 1311, respectively located on either side of the communication opening 132. The first drive unit 121 and the second drive unit 122 both include a motor 125. The motor 125 of the first drive unit 121 is mounted in the first mounting cavity, and the motor 125 of the second drive unit 122 is mounted in the second mounting cavity 1311. The provision of the mounting base 13 provides mounting support for the guide structure 11 and the drive structure 12, while ensuring the stability of the guide structure 11 and the reliability of the installation and movement of the drive structure 12. The relative arrangement of the first drive unit 121 and the second drive unit 122 can avoid the connecting port 132 and avoid affecting the air outlet of the connecting port 132. In addition, the above arrangement can make the first drive unit 121 and the second drive unit 122 correspond to the two ends of the guide structure 11 respectively, so as to respectively drive the movement of one end of the guide structure 11 and the other end of the guide structure 11, so as to realize the movement of the two ends of the guide structure 11 to realize multi-directional movement and be in a multi-directional wind-guiding state, thereby improving the flexibility and adaptability of the guide structure 11. The installation of the motor 125 can provide power for the drive structure 12 to ensure the movement of the guide structure 11. The implementation effect is that the movement of the guide structure 11 is more stable, and the reliability and service life of the wind guide assembly 10 are improved. Application scenarios include all air-conditioning systems that require stable movement of the guide structure 11, such as ceiling units, cabinet units, wall-mounted units, etc., especially in situations where multi-angle adjustment of wind direction, anti-direct blowing mode, etc. are required, the setting of the annular frame mounting seat 13 can provide a stable mounting base 40 for the guide structure 11 and the drive structure 12, ensuring the stable movement of the guide structure 11 and the reliable operation of the drive structure 12.
[0107] Specifically, at least one of the first installation cavity and the second installation cavity 1311 can be connected to the communication port 132 to facilitate the assembly and disassembly of the motor 125. Alternatively, the first installation cavity and the second installation cavity 1311 can be separated from the communication port 132 to prevent condensation generated by cold air at the communication port 132 from falling on the motor 125.
[0108] Specifically, the mounting base 13 is an annular frame structure, and the annular frame is used to enclose the communication opening 132. Specifically, the annular frame can be a rectangular frame structure, which includes a first strip frame, a second strip frame, a third strip frame, and a fourth strip frame connected end to end. The first strip frame is arranged opposite to the third strip frame, the second strip frame is arranged opposite to the fourth strip frame, and two adjacent strip frames are arranged perpendicular to each other.
[0109] Specifically, a first installation cavity is provided on the first strip frame, and a second installation cavity 1311 is provided on the second strip frame.
[0110] like Figure 9 As shown, in the state of sweeping air to the left or taking in air from the left, the first air guide plate 111 is arranged on the outside of the second air guide plate 112. The motor 125 connected to the first air guide plate 111 is started, and the motor 125 connected to the second air guide plate 112 can be in an inactive state. During the movement, the motor 125 connected to the first air guide plate 111 rotates clockwise. The motor 125 drives the pulley 1241 to rotate through the drive wheel 1243 and the synchronous belt 1242. The threaded structure inside the pulley 1241 then drives the two drive rods 123 to rotate and move downward, thereby driving the first air guide plate 111 located on the outside to flip to the lower left. In this state, air can be discharged or taken in, and the air intake or discharge can be determined according to the function of the specific air conditioning device. When the air is discharged, the air discharge on the left side will be increased accordingly. When the air is entering, this mode can achieve a large amount of air entering the side with a larger angle opening, which is suitable for returning air to a specific direction. For example, in a kitchen environment, the location where the range hood is located needs to focus on returning air, so in this case the opening formed between the guide structure 11 and the air outlet 20 is facing the direction of the range hood.
[0111] like Figure 11As shown, the motor 125 connected to the first air guide plate 111 and the motor 125 connected to the second air guide plate 112 are started, and both rotate clockwise. After the two motors 125 are started, since the two motors 125 rotate clockwise at the same time, the teeth on the pulley 1241 cooperate with the drive rod 123, thereby driving the first air guide plate 111 and the second air guide plate 112 to move downward as a whole. At this time, the first air guide plate 111 and the second air guide plate 112 are parallel to the ceiling, so that the guide structure 11 is in an anti-direct blowing mode, avoiding the wind from blowing directly to the user, but making the wind move along the periphery of the guide structure 11 and along the direction of the ceiling, thereby improving the user's comfort. Specifically, when the guide structure 11 flips to the lower left, the use of the drive rod 123 to transmit force can make the transmission more precise, so that the opening process of the guide structure 11 is smoother and more precise. When it is outgoing, multi-directional air outlet is performed accordingly. When the air is entering, when the guide structure 11 is parallel to the ceiling, this mode can realize air entry in multiple directions such as front, back, left and right, making the air entry direction wider.
[0112] like Figure 12 This is the state in which the guide structure 11 is fully opened in the direct blow prevention mode. This corresponds to the maximum distance between the guide structure 11 and the air outlet 20. The air volume is controlled by the downward movement of the guide structure 11. In this state, air can be either discharged or inhaled, depending on the specific function of the air conditioning device.
[0113] like Figure 13 As shown, it is a state of sweeping air to the right or taking air in from the right. At this time, only the motor 125 connected to the second air guide plate 112 is turned on, and the motor 125 connected to the second air guide plate 112 rotates clockwise. When the motor 125 connected to the second air guide plate 112 is started, the motor 125 drives the pulley 1241 to rotate through the driving wheel 1243 and the synchronous belt 1242, and then the two screw rods are respectively driven by the threaded structures in the two pulleys 1241 to rotate and move downward, thereby driving the first air guide plate 111 to flip to the lower right to achieve right air discharge. Figure 13 The structure clearly shows that the first air deflector 111 is positioned outside the second air deflector 112. A decorative line 1111 is provided on the first air deflector 111 to more realistically reproduce the appearance of the ceiling. In this state, air can be either discharged or inhaled, depending on the specific function of the air conditioning device. Specifically, the drive wheel 1243 may be a gear.
[0114] Specifically, the air guide assembly 10 also includes: a first temperature detection member 14, a second temperature detection member 15, and a control member. The first temperature detection member 14 is arranged at one end of the guide structure 11; the second temperature detection member 15 is arranged at the other end of the guide structure 11; the control member is connected to the drive structure 12 by signal, and the first temperature detection member 14 and the second temperature detection member 15 are both connected to the drive structure 12 by signal. The control member is configured to: obtain the temperature detected by the first temperature detection member 14 and the temperature detected by the second temperature detection member 15; and adjust the air guide state of the guide structure 11 according to the temperature detected by the first temperature detection member 14 and the temperature detected by the second temperature detection member 15. The setting of the first temperature detection member 14 and the second temperature detection member 15 can monitor the temperature at both ends of the guide structure 11 in real time and provide temperature data to the control member. The control member is connected to the drive structure 12 by signal, and can control the operation of the drive structure 12 according to the temperature data, thereby realizing intelligent adjustment of the guide structure 11. The implementation effect is that the adjustment of the guide structure 11 is more intelligent, improving the comfort and efficiency of the air guide assembly 10. Application scenarios include all air-conditioning systems that require intelligent adjustment of the guide structure 11, such as ceiling units, cabinet units, and wall-mounted units. Especially in situations where intelligent adjustment of wind direction and anti-direct blowing mode are required, the cooperation of temperature detection components and control components can realize intelligent adjustment of the guide structure 11 and improve the comfort and efficiency of air supply.
[0115] In this embodiment, the control component is further configured to: obtain the temperature difference between the first temperature detection component 14 and the second temperature detection component 15, and compare the temperature difference with a preset difference; when the temperature difference is less than or equal to the preset difference, control the guide structure 11 to be in a unidirectional airflow state and control the air outlet direction of the guide structure 11 to be toward one end of the guide structure 11 or the other end of the guide structure 11, or control the guide structure 11 to be in a multi-directional airflow state; when the temperature difference is greater than the preset difference, control the guide structure 11 to be in a unidirectional airflow state, and use the end of the guide structure 11 with the larger difference from the set temperature as the other end of the guide structure 11. The configuration principle of the control component is to achieve intelligent adjustment of the guide structure 11 by comparing the temperature difference. The control component obtains the temperature difference between the first temperature detection component 14 and the second temperature detection component 15, compares it with the preset difference, and can automatically adjust the airflow state of the guide structure 11 according to the size of the temperature difference. When the temperature difference is less than or equal to the preset difference, the guide structure 11 is controlled to be in a unidirectional air-guiding state or a multi-directional air-guiding state, which can improve the flexibility of the control mode of the guide structure 11 and select the unidirectional air-guiding state or the multi-directional air-guiding state according to specific needs to improve the efficiency and comfort of the air supply. When the temperature difference is greater than the preset difference, the guide structure 11 is controlled to be in a unidirectional air-guiding state, and the end with the larger temperature difference is used as the other end of the guide structure 11 to achieve precise adjustment of the wind direction. The implementation effect is that the adjustment of the guide structure 11 is more intelligent, which improves the comfort and efficiency of the air guide assembly 10. The application scenarios include all air-conditioning systems that require intelligent adjustment of the guide structure 11, such as ceiling units, cabinet units, wall units, etc., especially in situations where intelligent adjustment of wind direction, anti-direct blowing mode, etc. are required, the temperature difference comparison configuration of the control component can realize intelligent adjustment of the guide structure 11, thereby improving the comfort and efficiency of the air supply. Specifically, the air-guiding state can correspond to air inlet or air outlet.
[0116] A second embodiment of the present invention provides an air conditioning device, comprising: an indoor unit body 30; and an air guide assembly 10 according to the above embodiment. The indoor unit body 30 is mounted on a mounting base 40. An air vent 20 is provided on the indoor unit body 30 or the mounting base 40 for air intake or exhaust. The air guide assembly 10 is mounted at the air vent 20. The installation of the air guide assembly 10 enables flexible adjustment of the air direction according to the air intake or exhaust requirements of the indoor unit body 30, thereby improving the environmental adaptability and user experience of the air conditioning device. This provides for more flexible air direction adjustment, enhancing the comfort and efficiency of the air conditioning device. Application scenarios include all air conditioning systems requiring flexible air direction adjustment, such as homes, offices, shopping malls, hospitals, and other environments requiring air conditioning. In particular, in environments requiring multi-angle air direction adjustment or a direct blowback protection mode, the installation of the air guide assembly 10 enables flexible adjustment of the air direction of the air conditioning device, improving the comfort and efficiency of air delivery.
[0117] Specifically, the air-conditioning device is a ceiling unit, the mounting base 40 is a ceiling, and the indoor unit body 30 is mounted above the ceiling, with an air vent 20 provided on the ceiling. Alternatively, the air-conditioning device is a cabinet or wall-mounted air-conditioning unit, and the indoor unit body 30 is provided with an air vent 20. The provision of the air guide assembly 10 enables flexible adjustment of the wind direction of the ceiling unit, cabinet unit, or wall-mounted air-conditioning unit. The installation of the air guide assembly 10 enables flexible adjustment of the wind direction according to the air inlet or outlet requirements of the ceiling unit, cabinet unit, or wall-mounted air-conditioning unit, improving the environmental adaptability and user experience of the air-conditioning device. The implementation effect is more flexible wind direction adjustment of the air-conditioning device, improving the comfort and efficiency of the air-conditioning device. Application scenarios include air-conditioning systems such as ceiling units, cabinet units, or wall-mounted air-conditioning units that require flexible wind direction adjustment, such as homes, offices, shopping malls, hospitals, and other environments requiring air conditioning. In particular, in situations requiring multi-angle wind direction adjustment or a direct blow-proof mode, the provision of the air guide assembly 10 enables flexible adjustment of the wind direction of the air-conditioning device, improving the comfort and efficiency of air supply. By adopting the solution of the present application, the user experience and efficiency of the air conditioning device are significantly improved, providing users with a more comfortable and intelligent environment.
[0118] Specifically, when the air conditioning device is a ceiling unit, the ceiling unit further includes an air duct 50 and a protective cover 60. The indoor unit body 30 is connected to the air outlet 20 via the air duct 50. The air duct 50 is in communication with the protective cover 60. The protective cover 60 is disposed over at least a portion of the air guide assembly 10 so that the air at the air duct 50 is guided through the protective cover 60 to the air guide assembly 10 at the air outlet 20, thereby guiding the air at the air outlet 20 through the air guide assembly 10. The protective cover 60 can effectively guide the air from the air duct 50 to the air outlet 20. On the other hand, it can effectively shield the side of the air outlet 20 located inside the ceiling to prevent dust and impurities from entering the air outlet 20, thereby ensuring the quality of the air output.
[0119] From the above description, it can be seen that the above-mentioned embodiments of the present invention achieve the following technical effects: through the hidden air vent design, the air conditioner is hidden inside the ceiling when it is not turned on. When the air conditioner is turned on, the guide structure is opened downward through the motion mechanism to expose the air vent. Such a hidden air vent is not easily affected by special environments, such as oil smoke, water vapor and other pollution in the kitchen. Moreover, the hidden design can not only ensure the consistency of the room layout, but also facilitate the realization of multiple air outlet methods; the opening method of the guide structure is realized by the screw mechanism and the guide mechanism, and such a transmission method is more accurate and It is highly efficient, and through the cooperation of the motor, pulley, screw and guide structure, the air outlet angle can be converted, so that the air outlet angle is more, and the guide structure is used to sweep the wind up and down, so that the wind sweeping is more three-dimensional, and the ambient temperature is improved in a more efficient way; and the guide structure can achieve a mode where the wind does not blow people at a specific angle, which is both practical and flexible; through the innovative design of the drive structure, different air outlet modes of the air outlet can be achieved. This new drive structure is realized by screw transmission and pulley transmission. Such a transmission method does not take up too much space and can also more accurately control the opening angle of the guide structure. Through the innovative design of the guide structure in this application, a new way of opening the guide structure can be achieved. This new way of opening the guide structure is achieved by the first and second air guide plates arranged inside and outside cooperating with the drive structure. When the guide structure switches to different air outlet angles, the first and second air guide plates arranged inside and outside can be freely extended, so that the area of the guide structure is increased, further improving the air outlet efficiency.
[0120] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.
[0121] Unless otherwise specified, the relative arrangement of the parts and steps, numerical expressions and numerical values set forth in these embodiments do not limit the scope of the present application. Meanwhile, it should be understood that, for ease of description, the sizes of the various parts shown in the accompanying drawings are not drawn according to actual proportional relationships. Technology, methods and equipment known to those of ordinary skill in the relevant art may not be discussed in detail, but in appropriate cases, the technology, methods and equipment should be considered as a part of the specification. In all examples shown and discussed here, any specific value should be interpreted as being merely exemplary, rather than as a limitation. Therefore, other examples of exemplary embodiments can have different values. It should be noted that similar numbers and letters represent similar items in the following drawings, and therefore, once an item is defined in an accompanying drawing, it does not need to be further discussed in subsequent drawings.
[0122] In the description of this application, it should be understood that the directions or positional relationships indicated by directional words such as "front, back, up, down, left, right", "horizontal, vertical, vertical, horizontal" and "top, bottom" are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of this application; the directional words "inside and outside" refer to the inside and outside relative to the outline of each component itself.
[0123] For ease of description, spatially relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used herein to describe the spatial positional relationship of a device or feature to other devices or features as shown in the figures. It should be understood that spatially relative terms are intended to include different orientations of the device in use or operation in addition to the orientation described in the figures. For example, if the device in the drawings is inverted, the device described as "above other devices or structures" or "above other devices or structures" will be positioned as "below other devices or structures" or "below other devices or structures". Thus, the exemplary term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatially relative descriptions used here are interpreted accordingly.
[0124] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.
[0125] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.
Claims
1. An air guide assembly, characterized in that: include: A guide structure (11) is adjustably arranged at the air outlet (20), wherein the guide structure (11) has a closed state, a unidirectional airflow state, and a multi-directional airflow state; When the guide structure (11) is in the closed state, the guide structure (11) blocks the air outlet (20); When the guide structure (11) is in the one-way air guiding state, one end of the guide structure (11) is located at the air outlet (20) and is fixed relative to the air outlet (20), and the other end of the guide structure (11) is spaced apart from the air outlet (20) and is rotatably arranged relative to one end of the guide structure (11); When the guide structure (11) is in the multi-directional airflow state, the guide structure (11) and the air outlet (20) are spaced apart and arranged relative to each other, and an air outlet gap is formed between the guide structure (11) and the air outlet (20) around the periphery of the guide structure (11). The guide structure (11) can move in a direction close to or away from the air outlet (20) to adjust the size of the air outlet gap.
2. The air guide assembly according to claim 1, characterized in that: The air guide assembly further includes: A driving structure (12), the driving structure (12) comprising a first driving portion (121) and a second driving portion (122), the first driving portion (121) being drivingly connected to one end of the guide structure (11), and the second driving portion (122) being drivingly connected to the other end of the guide structure (11).
3. The air guide assembly according to claim 2, characterized in that: At least one of the first driving part (121) and the second driving part (122) is movably arranged in a direction approaching or moving away from the air outlet (20) and is hinged to the guide structure (11).
4. The air guide assembly according to claim 2, characterized in that: The first driving part (121) and the second driving part (122) are both movably arranged in a direction close to or away from the air outlet (20), the first driving part (121) is hinged to one end of the guide structure (11), and the second driving part (122) is hinged to the other end of the guide structure (11); The guide structure (11) comprises a first wind guide plate (111) and a second wind guide plate (112); the first wind guide plate (111) is slidably arranged on the second wind guide plate (112) along a preset direction; the first wind guide plate (111) and the second wind guide plate (112) are at least partially overlapped; an end of the first wind guide plate (111) away from the second wind guide plate (112) forms one end of the guide structure (11); and an end of the second wind guide plate (112) away from the first wind guide plate (111) forms the other end of the guide structure (11).
5. The air guide assembly according to claim 4, characterized in that: The first air guide plate (111) is provided with a guide slot (113), and the second air guide plate (112) is provided with a guide member (114) adapted to the guide slot (113); or the second air guide plate (112) is provided with a guide slot (113), and the first air guide plate (111) is provided with a guide member (114) adapted to the guide slot (113); The guide slot (113) has a first limiting end and a second limiting end respectively located at both ends of the guide slot (113), and the first limiting end and the second limiting end are both used for limiting abutment of the guide member (114).
6. The air guide assembly according to claim 4, characterized in that: At least one of the first driving portion (121) and the second driving portion (122) includes: At least two drive rods (123) are spaced apart, and at least two of the drive rods (123) are drivingly connected to one end of the guide structure (11) or the other end of the guide structure (11); A driving assembly (124) is connected to at least two of the driving rods (123) to drive the at least two driving rods (123) to move synchronously.
7. The air guide assembly according to claim 6, characterized in that: The driving assembly (124) includes at least two pulleys (1241) and a synchronous belt (1242), wherein the synchronous belt (1242) is wound around the at least two pulleys (1241) to drive the at least two pulleys (1241) to rotate synchronously; the at least two pulleys (1241) are arranged in a one-to-one correspondence with the at least two driving rods (123), and each driving rod (123) is passed through the corresponding pulley (1241) and is threadedly connected to the corresponding pulley (1241); and / or, The air outlet (20) is arranged on the installation body, and one of the first air guide plate (111) and the second air guide plate (112) close to the outer edge of the installation body is arranged in coordination with the outer edge of the installation body.
8. The air guide assembly according to claim 6, characterized in that: The air guide assembly further comprises a mounting seat (13), the guide structure (11) is movably arranged on the mounting seat (13), and the drive structure (12) is mounted on the mounting seat (13); The mounting seat (13) has a mounting space (131), at least one of the first driving portion (121) and the second driving portion (122) includes a motor (125), and the motor (125) is mounted in the mounting space (131); and / or The driving rod (123) is vertically inserted into the mounting seat (13); and / or, The driving assembly (124) is mounted on a side of the mounting seat (13) away from the guide structure (11).
9. The air guide assembly according to claim 8, characterized in that: The mounting seat (13) is provided with a communication port (132) arranged opposite to the air outlet (20); the first drive unit (121) and the second drive unit (122) are arranged opposite to each other on both sides of the communication port (132); the mounting space (131) includes a first mounting cavity and a second mounting cavity (1311) respectively located on both sides of the communication port (132); the first drive unit (121) and the second drive unit (122) both include a motor (125); the motor (125) of the first drive unit (121) is installed in the first mounting cavity, and the motor (125) of the second drive unit (122) is installed in the second mounting cavity (1311).
10. The air guide assembly according to claim 4, characterized in that: The air guide assembly further includes: A first temperature detecting member (14) is provided at one end of the guide structure (11); a second temperature detecting member (15) disposed at the other end of the guide structure (11); A control component is connected to the drive structure (12) by signal, the first temperature detection component (14) and the second temperature detection component (15) are both connected to the drive structure (12) by signal, and the control component is configured to: obtain the temperature detected by the first temperature detection component (14) and the temperature detected by the second temperature detection component (15); and adjust the air guide state of the guide structure (11) according to the temperature detected by the first temperature detection component (14) and the temperature detected by the second temperature detection component (15).
11. The air guide assembly according to claim 10, characterized in that: The control element is further configured to: Obtaining a temperature difference between the first temperature detecting element (14) and the second temperature detecting element (15), and comparing the temperature difference with a preset difference value; When the temperature difference is less than or equal to the preset difference, the guide structure (11) is controlled to be in the unidirectional airflow state and the air outlet direction of the guide structure (11) is controlled to be toward one end of the guide structure (11) or the other end of the guide structure (11), or the guide structure (11) is controlled to be in the multidirectional airflow state; When the temperature difference is greater than the preset difference, the guide structure (11) is controlled to be in the one-way air guide state, and the end of the guide structure (11) with the larger temperature difference from the set temperature is used as the other end of the guide structure (11).
12. An air conditioning device, characterized in that: include: An indoor unit body (30), the indoor unit body (30) being installed on a mounting base (40), an air outlet (20) being provided on the indoor unit body (30) or the mounting base (40), the air outlet (20) being used for air intake or air discharge; The air guide assembly according to any one of claims 1 to 11, wherein the air guide assembly is installed at the air outlet (20).
13. The air conditioning device according to claim 12, wherein: The air conditioning device is a ceiling unit, the installation base (40) is a ceiling, the indoor unit body (30) is installed above the ceiling, and the ceiling is provided with the air outlet (20); or, The air conditioning device is a cabinet air conditioner or a wall mounted air conditioner, and the air outlet (20) is provided on the indoor unit main body (30).