Air deflector and air conditioner

Through the design and strengthening of the double-layer air guide plate, the damage problem of the air guide plate during stress deformation is solved, and higher air cleanliness and structural stability are achieved.

CN112032833BActive Publication Date: 2025-07-08TCL AIR CONDITIONER ZHONGSHAN CO LTD
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Patent Information

Application Number
CN202010752827.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-07-30
Publication Date
2025-07-08
Estimated Expiration
2040-07-30

AI Technical Summary

Technical Problem

Existing air conditioning air guide plates are prone to damage when deformed under stress, affecting the cleanliness of air output and overall structural stability.

Method used

The air guide plate design adopts a double-layer structure, including the outer plate body and the inner plate body. The inner plate body is connected to the reinforced structure to form honeycomb holes and reinforced protrusions, enhance the strength and deformation resistance of the air guide plate, and set a gap or bond between the inner plate body and the outer plate body to disperse stress.

Benefits of technology

提高了导风板的抗形变能力,避免受力变形,确保出风口完全闭合,减少风道积尘,提升出风洁净度和结构稳定性。

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a wind deflector and an air conditioner. The wind deflector includes an outer plate body, an inner plate body and a component. The inner plate body is arranged inside the outer plate body and is detachably connected to the outer plate body; the component is arranged between the outer plate body and the inner plate body, and one side of the component is connected to the inner plate body. In the technical solution of the present invention, the wind deflector is installed on the air conditioner and is used to adjust the air outlet direction of the air conditioner. The wind deflector comprises two layers, namely an outer plate body and an inner plate body. When the wind deflector is closed, the outer plate body can be used to maintain the integrity of the overall appearance of the air conditioner, and the inner plate body supports the outer plate body to enhance the strength of the entire wind deflector; the component can enhance the strength of the inner wind deflector, further improve the anti-deformation ability of the entire wind deflector, avoid deformation of the wind deflector under force, enable the wind deflector to completely close the air outlet, avoid dust accumulation in the internal air duct of the air conditioner, and improve the air outlet cleanliness.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioners, and particularly to an air deflector and an air conditioner. Background Art

[0002] With the development and progress of technology, air conditioners not only meet the simple cooling and heating requirements, but people also have higher and higher requirements for each component of the air conditioner; the air deflector realizes the function of guiding air, is an important component of the air conditioner, and is also an essential component of the air conditioner. Therefore, it is necessary for the present invention to provide a new air deflector and air conditioner to meet the air guiding requirements of the air conditioner. Summary of the Invention

[0003] The main object of the present invention is to provide an air deflector and an air conditioner, aiming to provide a new type of air deflector and air conditioner to meet the air guiding requirements of the air conditioner.

[0004] To achieve the above object, the air deflector proposed by the present invention includes an outer plate body, an inner plate body and a component. The inner plate body is disposed inside the outer plate body and is detachably connected to the outer plate body; the component is disposed between the outer plate body and the inner plate body, and one side of the component is connected to the inner plate body.

[0005] Preferably, the component is a strengthening structure; the strengthening structure is connected to the inner plate body and protrudes towards the outer plate body to form a contact surface matching the shape of the outer plate body, and there is a gap between the contact surface and the outer plate body or the contact surface is attached to the outer plate body.

[0006] Preferably, the strengthening structure is formed with a plurality of honeycomb holes.

[0007] Preferably, the strengthening structure includes a plurality of strengthening protrusions, and at least one honeycomb hole is formed in each strengthening protrusion.

[0008] Preferably, the strengthening protrusion includes a strengthening plate and a connecting base. The connecting bases are arranged at intervals along the width direction of the inner plate body; the strengthening plate is bent and both ends of the strengthening plate are connected to the corresponding connecting bases. One end of the connecting base facing away from the strengthening plate is connected to the inner plate body to form the honeycomb hole; the strengthening plate protrudes towards the outer plate body and there is a gap between the strengthening plate and the outer plate body or the strengthening plate is attached to the outer plate body.

[0009] Preferably, the strengthening plate includes a first support section, a contact section and a second support section connected in sequence, and the contact surface is formed on the side of the contact section opposite to the outer plate body, and the contact surface is parallel to the inner wall surface of the outer plate body.

[0010] Preferably, there is a gap between the abutting surface and the outer plate body, and the abutting surface is used to abut against the deformed outer plate body under force.

[0011] Preferably, the plurality of reinforcing protrusions are arranged in sequence along the width direction of the air deflector.

[0012] In addition, the present invention also provides an air conditioner, which includes a housing, an air duct assembly, and the air deflector as described above. The air duct assembly is received in the housing, and the housing is provided with an air outlet communicated with the air duct assembly. The air deflector is arranged at the air outlet and is rotatably connected to the housing.

[0013] In the technical solution of the present invention, the air deflector is installed on the air conditioner and is used to adjust the air outlet direction of the air conditioner. The air deflector includes two layers, an outer plate body and an inner plate body. When the air deflector is closed, the outer plate body can be used to maintain the integrity of the overall appearance of the air conditioner, and the inner plate body supports the outer plate body to enhance the strength of the entire air deflector; the component can enhance the strength of the inner air deflector, further improve the anti-deformation ability of the entire air deflector, avoid the air deflector from deforming under force, enable the air deflector to completely close the air outlet, avoid dust accumulation in the internal air duct of the air conditioner, and improve the air outlet cleanliness. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on the structures shown in these drawings without creative efforts.

[0015] Figure 1 It is a schematic cross-sectional structure diagram of the air deflector in an embodiment of the present invention;

[0016] Figure 2 For Figure 1 the enlarged view of area A in;

[0017] Figure 3 It is an assembly schematic diagram of the air deflector in an embodiment of the present invention;

[0018] Figure 4 It is an exploded schematic diagram of the air deflector in an embodiment of the present invention;

[0019] Figure 5 It is a schematic connection structure diagram of the inner plate body and the reinforcing structure in an embodiment of the present invention;

[0020] Figure 6 For Figure 5 a partial enlarged schematic diagram in;

[0021] Figure 7 This is a schematic structural diagram of an air conditioner in an embodiment of the present invention.

[0022] Explanation of the reference numerals in the drawings:

[0023] Label Name Label Name 100 Air deflector 31 Honeycomb holes 1 Outer plate body 32 Reinforcing protrusion 11 First abutting portion 321 Reinforcing plate 111 Connecting rib 3211 First supporting section 12 Hook 3212 Abutting section 13 Receiving groove 3213 Second supporting section 14 Limit groove 322 Connecting base 2 Inner plate body 323 Buffer groove 21 Reinforcing rib 4 Rotating shaft mounting plate 22 Groove 200 Air conditioner 23 Second abutting portion 201 Shell 24 Block 202 Heat exchanger 25 Support plate 203 Fan 26 Through hole 204 Air outlet 3 Reinforcing structure

[0024] The realization of the object, functional characteristics and advantages of the present invention will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments

[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0026] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the drawings). If the specific posture changes, the directional indications will also change accordingly.

[0027] In addition, the descriptions such as "first" and "second" in the present invention are only for descriptive purposes, and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.

[0028] In the present invention, unless otherwise clearly defined and limited, terms such as "connection" and "fixation" should be understood in a broad sense. For example, "fixation" may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and may be the communication inside two elements or the interaction relationship between two elements, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0029] In addition, the technical solutions between the various embodiments of the present invention can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.

[0030] As Figure 1 and Figure 2 shown, in an embodiment of the present invention, the air deflector 100 includes an outer plate body 1, an inner plate body 2 and a component. The inner plate body 2 is disposed inside the outer plate body 1 and is detachably connected to the outer plate body 1; a component is disposed between the outer plate body 1 and the inner plate body 2, and one side of the component is connected to the inner plate body 2.

[0031] In the present invention, the said component is a strengthening structure; the air deflector 100 is installed on the air conditioner 200 as shown in the figure, and is used to adjust the air outlet direction and air volume of the air conditioner 200. In the above technical solution, the air deflector 100 includes two layers, namely the outer plate body 1 and the inner plate body 2. When the air deflector 100 is closed, the outer plate body 1 is used to maintain the integrity of the overall appearance of the air conditioner 200. And the strengthening structure 3 can enhance the strength of the inner air deflector 100, and further enhance the strength of the entire air deflector 100; the strengthening structure 3 can form a supporting effect on the outer plate body 1 when the outer plate body 1 is stressed, further improving the anti-deformation ability of the entire air deflector 100, avoiding the deformation of the air deflector 100 under stress, enabling the air deflector 100 to completely close the air outlet 204, avoiding dust accumulation in the internal air duct of the air conditioner 200, and improving the air outlet cleanliness.

[0032] Wherein, the strengthening structure 3 is connected to the inner plate body 2 and protrudes towards the direction close to the outer plate body 1 to form a contact surface matching the shape of the outer plate body 1. There is a gap between the contact surface and the outer plate body 1 or the contact surface is arranged in a fitting manner with the outer plate body 1. When there is a gap between the contact surface and the outer plate body 1, the outer plate body 1 deforms first when stressed. When the deformation amount exceeds the preset range, the outer plate body 1 abuts against the strengthening structure 3, so that the strengthening structure 3 can form a supporting effect on the outer plate body 1 when the outer plate body 1 is stressed, restricting the deformation of the outer plate body 1. When the contact surface is arranged in a fitting manner with the outer plate body 1, the strengthening structure 3 has a strengthening effect on both the inner plate body 2 and the outer plate body 1, so as to ensure that under the same stress, the overall deformation amount of the air deflector 100 is smaller.

[0033] Specifically, the strengthening structure 3 is formed with a plurality of honeycomb holes 31. The plurality of honeycomb holes 31 can be independent of each other, and each honeycomb hole 31 penetrates the strengthening structure 3 along the length direction of the air guide plate 100. The cross-section or shape of the honeycomb hole 31 of the present invention can be determined according to actual needs. Specifically, the shape of the honeycomb hole 31 can be one or more of a square, a triangle, a circle, a sector, or a trapezoid. The arrangement and shape of the honeycomb holes 31 in this embodiment are not limited. On the cross-section of the strengthening structure 3, the honeycomb holes 31 are a plurality of independent closed holes. The setting of the honeycomb holes 31 can form a buffer zone. When the outer plate body 1 is stressed and squeezes the strengthening structure 3, the strengthening structure 3 only needs to undergo a small deformation or no deformation, that is, it can support the outer plate body 1 and minimize the deformation of the outer plate body 1 as much as possible. The honeycomb holes 31 are arranged in the strengthening structure 3 can improve the stress-bearing function of the strengthening structure 3 on the basis of reducing the weight of the strengthening structure 3 as much as possible. The honeycomb holes 31 can be arranged at intervals along the width direction of the inner plate body 2 or can be arranged in a staggered manner at intervals in the gap between the inner plate body 2 and the outer plate body 1.

[0034] The strengthening structure 3 includes a plurality of strengthening protrusions 32, and at least one of the honeycomb holes 31 is formed in each of the strengthening protrusions 32. Thus, it is ensured that each strengthening protrusion 32 can effectively support the outer plate body 1 that deforms under stress.

[0035] The strengthening protrusion 32 includes a strengthening plate 321 and a connecting base 322. The connecting bases 322 are arranged at intervals along the width direction of the inner plate body 2; the strengthening plate 321 is bent, and both ends of the strengthening plate 321 are connected to the corresponding connecting bases 322. One end of the connecting base 322 facing away from the strengthening plate 321 is connected to the inner plate body 2 to form the honeycomb hole 31; the strengthening plate 321 protrudes towards the outer plate body 1, and there is a gap between the strengthening plate 321 and the outer plate body 1 or the strengthening plate 321 is in contact with the outer plate body 1. When the inner plate body 2 is stressed, under the condition of the same stress, the connecting base 322 of the strengthening structure 3 can disperse the stress, so that when the inner plate body 2 is stressed, the inner plate body 2 itself is not easily deformed, and there is a gap between the strengthening plate 321 and the outer plate body 1. When refrigerating, the strengthening structure 3 and the inner plate body 2 are directly blown by cold air. Since there is no large-area contact heat exchange between the outer plate body 1 and the strengthening structure 3, condensation on the outer plate body 1 is avoided. When the outer plate body 1 is deformed by stress, the strengthening structure 3 reduces the deformation of the outer plate body 1 by supporting both ends of the outer plate body 1. Or the strengthening plate 321 can also be in contact with the outer plate body 1. When the outer plate body 1 is stressed, it directly acts on the strengthening structure 3, and the strengthening structure 3 forms a support for the outer plate body 1. Under the condition of bearing the same acting force, the strengthening plate 321 being in contact with the outer plate body 1 can further control the deformation amount of the outer plate body 1.

[0036] In one embodiment, the reinforcing plates 321 of the plurality of reinforcing protrusions 32 are sequentially connected, and any one connecting base 322 connects two adjacent reinforcing plates 321. That is, any two adjacent reinforcing plates 321 share one connecting base 322, and two adjacent connecting bases 322 are connected by one reinforcing plate 321. When the outer plate body 1 is stressed and deforms, the outer plate body 1 will squeeze the reinforcing plate 321 of the reinforcing structure 3 when it deforms, and the connecting base 322 disperses the stress, so that the overall impact resistance of the air deflector 100 is enhanced, the mechanical strength is improved, the buffering ability is enhanced, the degree of deformation of the air deflector 100 is reduced, the entire outer plate body 1 deforms slightly, and the deformation concentration is avoided to cause damage, ensuring the structural stability of the air deflector 100. Of course, the plurality of reinforcing protrusions 32 can be arranged at intervals in the width direction of the inner plate body 2; when the outer plate body 1 is locally stressed, the reinforcing protrusions 32 at the corresponding stressed positions deform, play a supporting role for the outer plate body 1, reduce the amount of deformation of the outer plate body 1, and control the deformation range of the outer plate body 1, so that the deformation is concentrated locally and the impact on the entire outer plate body 1 is prevented.

[0037] In the above embodiment, the reinforcing plate 321 includes a first support section 3211, an abutting section 3212, and a second support section 3213 that are sequentially connected. Among any two adjacent reinforcing plates 321, the first support section 3211 of one reinforcing plate 321 is connected to the second support section 3213 of the other reinforcing plate 321, and an abutting surface is formed on the side of the abutting section 3212 opposite to the outer plate body 1, and the abutting surface is parallel to the inner wall surface of the outer plate body 1. The fact that the abutting surface is parallel to the inner wall surface of the outer plate body 1 means that the distance between the abutting surface and the inner wall surface of the outer plate body 1 is equal everywhere, that is, the abutting surface can be a plane or a curved surface, as long as the abutting surface matches the inner wall surface of the outer plate body 1. When the outer plate body 1 is stressed and deforms, the outer plate body 1 will squeeze the abutting surface, and the two connecting bases 322 at both ends disperse the stress, so that the overall impact resistance of the air deflector 100 is enhanced. The mechanical strength is improved, the buffering ability is enhanced, and the degree of deformation of the air deflector 100 is reduced.

[0038] Among any two adjacent reinforcing plates 321, a buffer groove 323 is formed between the first support section 3211 of one reinforcing plate 321 and the second support section 3213 of the other reinforcing plate 321, and the buffer groove 323 is arranged to gradually expand in the direction close to the outer plate body 1; that is, the plurality of reinforcing plates 321 are sequentially connected to form a folded structure. Since the reinforcing plates 321 are located between the inner plate body 2 and the outer plate body 1, the folded reinforcing plates 321 can further strengthen the inner plate body 2 without affecting the appearance, can effectively improve the strength of the inner plate body 2, and can form an effective support when the outer plate body 1 deforms.

[0039] There is a gap between the abutting surface and the outer plate body 1, and the abutting surface is used to abut against the outer plate body 1 that is deformed by force. That is, when the outer plate body 1 is not stressed or the amount of deformation due to stress is small, there is a gap between the abutting surface and the outer plate body 1 to place the condensation generated on the outer plate body 1. When the outer plate body 1 abuts against the strengthening structure 3 under stress, the strengthening structure 3 can effectively support the outer plate body 1 and effectively control the amount of deformation of the outer plate body 1. In other embodiments, there is always a gap between the abutting surface and the outer plate body 1. Then, when refrigerating, the strengthening structure 3 and the inner plate body 2 are directly blown by cold air. Since there is no large-area contact heat exchange between the outer plate body 1 and the strengthening structure 3, condensation on the outer plate body 1 is avoided. When the outer plate body 1 is deformed by force, the strengthening structure 3 reduces the deformation of the outer plate body 1 by supporting both ends of the outer plate body 1.

[0040] To further enhance the strength of the inner plate body 2, a plurality of reinforcing ribs 21 are provided on the surface of the inner plate body 2 facing away from the outer plate body 1. The plurality of reinforcing ribs 21 extend along the length of the inner plate body 2 and are spaced apart along the width direction of the inner plate body 2. A groove 22 is formed between any two reinforcing ribs 21. The reinforcing ribs 21 further enhance the strength of the inner plate body 2, and by forming the groove 22, when the cold air or hot air blown from the air duct of the air conditioner 200 blows onto the inner plate body 2 where the groove 22 is located, the cold or heated area of the air deflector 100 is increased, and the heat dissipation speed is accelerated. Therefore, when the air conditioner 200 refrigerates, due to the timely heat dissipation of the air deflector 100, the temperature difference between the inner plate body 2 and the outer plate body 1 of the air deflector 100 is reduced, and the generation of condensed water is reduced. And when a small amount of condensed water is generated, due to the function of the groove 22, the condensed water will adhere to the wall surface of the groove 22 to prevent the condensed water from dripping; when the air conditioner 200 heats up, due to the timely heat dissipation of the inner plate body 2 and the gap between the inner plate body 2 and the outer plate body 1, the outer plate body 1 will not undergo thermal deformation, and the appearance of the air deflector 100 always remains flat.

[0041] Please refer to Figure 3 、 Figure 4 Figure 5, a first abutting portion 11 and a hook 12 are provided on the outer plate body 1. A second abutting portion 23 is provided at a position corresponding to the first abutting portion 11 on the inner plate body 2. A clamping block 24 cooperating with the hook 12 is further provided on the inner plate body 2. A receiving groove 13 is formed between the first abutting portion 11 and the outer plate body 1. The second abutting portion 23 is disposed in the receiving groove 13, and the second abutting portion 23 abuts against the side of the first abutting portion 11 facing the receiving groove 13. When assembling the inner plate body 2 and the outer plate body 1, first, the second abutting portion 23 is snapped into the receiving groove 13 and the second abutting portion 23 abuts tightly against the first abutting portion 11. Then, the inner plate body 2 is pressed toward the outer plate body 1, so that the clamping block 24 slides along the inclined surface of the hook 12 until the clamping block 24 engages with the hook 12, thereby completing the assembly of the inner plate body 2 and the outer plate body 1. The assembled inner plate body 2 and outer plate body 1 are firmly and reliably connected, and the inner plate body 2 and the outer plate body 1 are not likely to be separated when stressed. The number of hooks 12 can be multiple, and the multiple hooks 12 are arranged at intervals along the length direction of the outer plate body 1 on the outer plate body 1.

[0042] A plurality of connecting ribs 111 are provided on the first abutting portion 11 at intervals. The plurality of connecting ribs 111 are connected to the outer plate body 1 to enhance the strength of the first abutting portion 11. When the second abutting portion 23 abuts tightly against the first abutting portion 11, the deformation of the first abutting portion 11 can be reduced.

[0043] The fixing method of the inner plate body 2 and the outer plate body 1 of the air deflector 100 of the present invention is not limited to the above method. The inner plate body 2 and the outer plate body 1 can also be fastened by bolts.

[0044] Specifically, a limiting groove 14 is formed on a side of the outer plate body 1 away from the first abutting portion 11. A supporting plate 25 is formed by extending a side edge of the inner plate body 2 away from the second abutting portion 23 toward the outer plate body 1. The free end of the supporting plate 25 abuts tightly against the bottom wall of the limiting groove 14. The supporting plate 25 abuts against the bottom wall of the limiting groove 14, and the second abutting portion 23 abuts against the first abutting portion 11, thereby supporting the inner plate body 2, maintaining the gap between the reinforcing plate 321 and the outer plate body 1, and enabling the clamping block 24 and the hook 12 to be hooked to each other, preventing the clamping block 24 from disengaging from the hook 12 and further causing the inner plate body 2 and the outer plate body 1 to disengage, and improving the overall structural stability of the air deflector 100.

[0045] More specifically, both the inner plate body 2 and the outer plate body 1 are arc-shaped plates, and the convex directions of the inner plate body 2 and the outer plate body 1 are the same; the first abutting portion 11 extends from the inner wall of the outer plate body 1 towards the inner plate body 2, and along the convex direction, the distance between the first abutting portion 11 and the support plate 25 gradually increases. Both the inner plate body 2 and the outer plate body 1 are arc-shaped plates, that is, the outer wall surface of the air deflector 100 is arc-shaped, and the air deflector 100 can match the shape of the front surface of the housing 201 of the air conditioner 200, making the overall appearance of the air conditioner 200 more beautiful. The support plate 25 and the first abutting portion 11 make both sides of the air deflector 100 be inclined planes. Thus, when the air conditioner 200 is not turned on, the air deflector 100 can be hermetically fitted with the housing 201 of the air conditioner 200 to close the air outlet 204 of the air conditioner 200, preventing dust from entering the interior of the air conditioner 200 through the air outlet 204. When the air conditioner is turned on, the air deflector 100 can also easily slide out from the housing 201 of the air conditioner, preventing jamming, jamming to death or wear phenomena.

[0046] In addition, a rotating shaft mounting plate 4 is further provided on the outer plate body 1. The rotating shaft mounting plate 4 is located between the first abutting portion 11 and the hook 12. A through hole 26 for the rotating shaft mounting plate 4 to pass through is provided on the inner plate body 2. The through hole 26 is located between the second abutting portion 23 and the block 24. The outer plate body 1 and the rotating shaft mounting plate 4 are integrally formed. The rotating shaft mounting plate 4 drives the inner plate body 2 and the outer plate body 1 to rotate simultaneously. The rotating shaft mounting plate 4 is connected to the outer plate body 1 and directly drives the outer plate body 1 to rotate, causing the inner plate body 2 to follow the outer plate body 1 to rotate, which can effectively control the rotation angle of the outer plate body 1 and avoid deviation when the air deflector 100 is closed, resulting in an insufficient rotation angle, ensuring that the outer plate body 1 can be completely closed. And the outer plate body 1 is injection-molded, which can present a good appearance effect, and the rotating shaft mounting plate 4 is directly injection-molded during injection molding, ensuring the position accuracy between the rotating shaft mounting plate 4 and the outer plate body 1, and effectively realizing the closing of the air deflector 100.

[0047] In a preferred embodiment, both the outer plate body 1 and the inner plate body 2 are plastic parts, and the inner plate body 2 and the strengthening structure 3 are integrally formed. The integral formation of the inner plate body 2 and the strengthening structure 3 can directly produce a plate-shaped structure with a stable cross-section, simplify the production process of the strengthening structure 3, and ensure the overall strength of the inner plate body 2 and the strengthening structure 3. In the specific production and processing process, the outer plate body 1 and the rotating shaft mounting plate 4 can be integrally injection-molded to form a good surface shape; the inner plate body 2 and the strengthening structure 3 can be integrally extrusion-molded to improve the strength and pressure-bearing capacity of the inner plate body 2 and the strengthening structure 3.

[0048] In addition, please refer to again Figure 7, the present invention further provides an air conditioner 200, which includes a housing 201, an air duct assembly, and the air deflector 100 as described above. The housing 201 is provided with an air outlet 204 communicating with the air duct assembly, and the air deflector 100 is rotatably connected to the housing 201 to cooperate with the air outlet 204. The air duct assembly may include a heat exchanger 202 and a blower 203. When the blower 203 is started, the air is heated by the heat exchanger 202 and then blown out from the air outlet 204. Since the air conditioner 200 includes the air deflector 100 as described above, the air conditioner 200 has all the beneficial effects of the above air deflector 100, and will not be elaborated here one by one.

[0049] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or any direct / indirect application in other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. An air deflector, characterized in that, The air deflector includes: An outer plate body; An inner plate body, which is arranged inside the outer plate body and is detachably connected to the outer plate body; A component, which is arranged between the outer plate body and the inner plate body, and one side of the component is connected to the inner plate body; The component is a strengthening structure, the strengthening structure is formed with a plurality of honeycomb holes, and the strengthening structure includes a plurality of strengthening protrusions, and at least one of the honeycomb holes is formed in each of the strengthening protrusions; The strengthening protrusion includes a strengthening plate and a connecting base platform, and the connecting base platforms are arranged at intervals along the width direction of the inner plate body; the strengthening plate is bent, and both ends of the strengthening plate are connected to the corresponding connecting base platforms, and one end of the connecting base platform facing away from the strengthening plate is connected to the inner plate body to form the honeycomb hole; the strengthening plate protrudes towards the outer plate body and there is a gap between the strengthening plate and the outer plate body or the strengthening plate is in contact with the outer plate body.

2. The air deflector according to claim 1, characterized in that, The strengthening structure is connected to the inner plate body and protrudes towards the outer plate body to form an abutting surface matching the shape of the outer plate body, and there is a gap between the abutting surface and the outer plate body or the abutting surface is arranged in contact with the outer plate body.

3. The air deflector according to claim 2, wherein The strengthening plate includes a first support section, an abutting section and a second support section connected in sequence, and the abutting surface is formed on the side of the abutting section opposite to the outer plate body, and the abutting surface is parallel to the inner wall surface of the outer plate body.

4. The air deflector according to claim 3, characterized in that, There is a gap between the abutting surface and the outer plate body, and the abutting surface is used to abut the deformed outer plate body under force.

5. The air deflector according to claim 1, characterized in that, A plurality of the strengthening protrusions are arranged in sequence along the width direction of the air deflector.

6. The wind deflector according to any one of claims 1 to 5, characterized in that, The inner plate body and the component are an integrally extruded molded part.

7. An air conditioner, characterized in that, The air conditioner includes a housing, an air duct assembly and the air deflector according to any one of claims 1 to 6, the air duct assembly is received in the housing, the housing is provided with an air outlet communicated with the air duct assembly, and the air deflector is arranged at the air outlet and is rotatably connected to the housing.

Citation Information

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