Air conditioner wind shield
By designing the inner and outer panel structure of the arc-shaped air conditioner deflector, with the inner panel made of a water-permeable material and divided into multiple cavities, the problem of condensate dripping from the air conditioner outlet is solved, achieving uniform distribution and rapid evaporation of condensate, thus improving the comfort of the living environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TONGXIANG HENGCHAO PLASTIC CO LTD
- Filing Date
- 2025-04-28
- Publication Date
- 2026-05-19
Smart Images

Figure CN224261926U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioner component manufacturing and processing, and in particular to an air conditioner wind deflector. Background Technology
[0002] Some air conditioners have wind deflectors installed at the air outlet to adjust the airflow direction and prevent cold air from blowing directly on people, thus improving user comfort. They can also be used to block the air outlet when the air conditioner is not in use, reducing the amount of dust entering the outlet.
[0003] When an air conditioner is cooling, water vapor at its air outlet condenses into water droplets. These droplets fall onto the air conditioner's deflector and then slide off onto the floor, furniture, or clothing, causing some impact on the living environment. Furthermore, the dripping sound can disturb work and rest. Utility Model Content
[0004] The purpose of this utility model is to provide an air conditioner deflector, which has the advantage of preventing condensation from the air conditioner vent from falling onto the indoor floor, clothing, or other household items.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0006] An air conditioning deflector is disclosed. The deflector is generally arc-shaped and consists of two parts: an outer panel and an inner panel. The inner panel is detachably connected to the outer panel. The inner panel is double-layered and hollow inside, forming a cavity. The inner panel is a permeable panel, while the outer panel is a sealed waterproof panel. Multiple partition strips are provided inside the inner panel, and the two sides of each partition strip are fixedly connected to the upper and lower bottom surfaces of the inner panel, respectively, dividing the cavity of the inner panel into multiple parts.
[0007] Using the above technical solution, the wind deflector is installed at the air outlet of the air conditioner. The outer panel of the wind deflector is connected to the outer wall of the air conditioner, and the inner panel is opposite to the air outlet. Water vapor at the air outlet is condensed into water droplets and falls onto the inner panel. The water droplets will penetrate into the internal cavity of the inner panel. Over time, a certain amount of water will accumulate in the cavity of the inner panel. Since the cavity is divided into multiple areas by the partition, the water can be distributed more dispersedly and evenly, avoiding water accumulation in the same corner of the cavity. This increases the surface area of the water, allowing the water to evaporate quickly. The inner panel can continue to absorb the condensate into its cavity, preventing the condensate from falling onto the indoor floor, clothing, or other household items after falling onto the wind deflector, thus affecting the living environment.
[0008] Preferably, baffles are fixedly connected to the outer panel surfaces at both ends of the inner panel.
[0009] Using the above technical solution, since the inner panel of each wind deflector is cut from a single piece and the inside of the deflector is hollow, openings will be generated at both ends of the deflector, i.e. the cut points of the inner panel. When the inner panel is installed on the outer panel, the inner panel is located between the two on the outer panel, blocking the opening at the end of the inner panel and preventing water from flowing from the cavity of the inner panel to the outer panel.
[0010] Preferably, the two sides of the inner plate are recessed inward to form a slot, and the outer plate is fixedly connected to the surface in contact with the inner plate with a locking strip that matches the slot of the inner plate.
[0011] Using the above technical solution, the inner panel is placed on the two retaining strips on the side surface of the outer panel. The inner panel is pressed down, and the side wall of the retaining groove on the inner panel exerts a force on the retaining strips of the outer panel, causing the outer panel to deform and expand outward. This causes the two retaining strips of the inner panel to move away from each other. The side wall of the inner retaining groove passes through the retaining strips, and the outer panel springs back. The retaining strip on the upper part of the outer panel is then inserted into the retaining groove of the inner panel, thus installing the inner panel on the outer panel. When removing the inner and outer panels, the side of the outer panel is pried outward to allow the retaining strips to come out of the retaining groove of the inner panel, and the inner panel can then be removed.
[0012] Preferably, the inner plate surface is corrugated and has multiple equally spaced grooves.
[0013] By adopting the above technical solution, the surface area of the inner panel can be increased without increasing the volume of the inner panel, thereby absorbing more water droplets at the same time and preventing water droplets from falling to the ground.
[0014] Preferably, the inner plate can be connected to the outer plate by plugging in, and the outer plate has two sliding grooves on its surface. The inner plate has two locking strips that match the sliding grooves fixedly connected to its two sides.
[0015] Using the above technical solution, the second locking strips on both sides of the inner panel are aligned with the sliding grooves on both sides of the outer panel, and then the inner panel is pushed to insert the second locking strips into the sliding grooves of the outer panel, thereby connecting the inner panel and the outer panel.
[0016] Preferably, the cavity openings at both ends of the inner plate are integrally formed with inclined plates on the side closest to the outer plate.
[0017] The above technical solution is used to prevent water from flowing out of the inner panel cavity through the opening. Attached Figure Description
[0018] Figure 1 This is an overall schematic diagram of the embodiment;
[0019] Figure 2 This is a front view diagram of an embodiment;
[0020] Figure 3 This is a side view of an embodiment;
[0021] Figure 4 This is a top view of an embodiment;
[0022] Figure 5 This is an exploded diagram of an example;
[0023] Figure 6 This is a schematic diagram of the cross-section along the AA direction;
[0024] Figure 7 This is an overall schematic diagram of another connection method in the embodiment;
[0025] Figure 8 A side view of another connection method in the embodiment;
[0026] Figure 9 This is a schematic diagram of the cross-section of BB.
[0027] Reference numerals in the attached drawings: 1. Outer panel; 2. Inner panel; 3. Separator strip; 4. Stop strip; 5. Slot; 6. Slot strip one; 7. Slide groove; 8. Slot strip two; 9. Inclined plate. Detailed Implementation
[0028] The following description is merely a preferred embodiment of this utility model, and the scope of protection is not limited to this embodiment. All technical solutions falling within the scope of this utility model should be considered within the protection scope of this utility model. It should also be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
[0029] See Figure 1 , Figure 4 and Figure 5An air conditioning deflector is disclosed. The deflector is arc-shaped and consists of two parts: an outer panel 1 and an inner panel 2. The inner panel 2 is detachably connected to the outer panel 1. The inner panel 2 is double-layered and hollow inside, forming a cavity. The inner panel 2 is a water-permeable board and contains materials such as fiberglass, PC, and ABS. Fiberglass has good corrosion resistance and electrical insulation. PC material is lightweight and has good impact resistance, flame retardancy, and weather resistance. ABS has good toughness, is non-toxic, odorless, and more environmentally friendly. The outermost layer of the inner panel 2 is made of ABS material, the middle layer is made of fiberglass, and the innermost layer is made of PC material. Using the above materials, the inner panel 2 can withstand high temperatures of 80℃ and low temperatures of -40℃ without deformation under extreme temperatures. The inner panel 2 has a corrugated surface and multiple equally spaced grooves. Without increasing the volume of the inner panel 2, the surface area of the inner panel 2 can be increased, thereby absorbing more water droplets at the same time and preventing water droplets from falling to the ground. The outer panel 1 is a sealed waterproof board. The inner panel 2 has multiple partition strips 3 inside. The two sides of the partition strips 3 are fixedly connected to the upper and lower bottom surfaces inside the inner panel 2, dividing the cavity of the inner panel 2 into multiple parts. At the same time, it can support the inner panel 2 and prevent the inner panel 2 from deforming.
[0030] See Figure 2 , Figure 3 , Figures 5 to 9 The inner plate 2 has inwardly recessed sides on both sides to form slots 5. The outer plate 1 has an integrally formed retaining strip 6 that matches the slots 5 of the inner plate 2 on the surface that contacts the inner plate 2. The outer plate 1 at both ends of the inner plate 2 has integrally formed baffles 4 on its surface. The inner plate 2 can be connected to the outer plate 1 by insertion. The retaining strip 6 on the surface of the outer plate 1 can be replaced with a sliding groove 7. The inner plate 2 has retaining strips 8 that match the sliding grooves 7 fixedly connected to both sides. The retaining strips 8 on both sides of the inner plate 2 are aligned with the sliding grooves 7 on both sides of the outer plate 1. Then, the inner plate 2 is pushed to insert the retaining strips 8 into the sliding grooves 7 of the outer plate 1, so that the inner plate 2 is inserted into the outer plate 1. When the inner plate 2 and the outer plate 1 are inserted, the cavity openings at both ends of the inner plate 2 are provided with inclined plates 9 on the side closer to the outer plate 1 to prevent water from flowing out of the cavity of the inner plate 2.
[0031] See Figure 2 , Figure 3 and Figure 7 , Figure 8Since the inner panel 2 of each baffle is cut from a single piece and the inside of the baffle is hollow, openings will be created at both ends of the baffle, i.e., at the cut points of the inner panel 2. When the inner panel 2 and the outer panel 1 are snapped together, baffle strips 4 are fixedly connected to the surfaces of the outer panel 1 at both ends of the inner panel 2. When the inner panel 2 is installed on the outer panel 1, the inner panel 2 is positioned between the two on the outer panel 1, blocking the openings at the ends of the inner panel 2 and preventing water from flowing from the cavity of the inner panel 2 onto the outer panel 1. When the inner panel 2 and the outer panel 1 are inserted together, baffle strips 4 cannot be installed on the outer panel 1. Instead, inclined plates 9 can be installed on the side of the cavity openings at both ends of the inner panel 2 closest to the outer panel 1. The inclined plates 9 can block water from flowing out from the end openings of the cavity.
[0032] Working principle: When the inner panel 2 is installed on the outer panel 1, the inner panel 2 is placed on the two retaining strips 6 on the side surface of the outer panel 1, with the retaining strips 6 positioned between the two outer panels 1. The inner panel 2 is pressed down, and the side wall of the retaining groove 5 on the side of the inner panel 2 exerts a force on the retaining strips 6 of the outer panel 1, causing the outer panel 1 to deform and expand outward. This causes the retaining strips 6 on both sides of the inner panel 2 to move away from each other. The side wall of the inner retaining groove 5 passes through the retaining strips 6, and the outer panel 1 springs back. The retaining strips 6 on its upper part are then inserted into the retaining groove 5 of the inner panel 2, thereby installing the inner panel 2 on the outer panel 1. Then, the wind deflector is installed at the air outlet of the air conditioner. The outer panel 1 of the wind deflector is connected to the outer wall of the air conditioner, and the inner panel 2 is opposite to the air outlet. Water vapor at the air outlet is condensed into water droplets and falls onto the inner panel 2. The water droplets will seep into the internal cavity of the inner panel 2. Over time, a certain amount of water will accumulate in the cavity of the inner panel 2. Because the cavity is divided into multiple areas by the partition, the water can be distributed more dispersedly and evenly, avoiding water accumulation in the same corner of the cavity, thereby increasing the surface area of the water and allowing the water to evaporate quickly. The inner panel 2 can continue to absorb the condensate into its cavity. This prevents the condensate from falling onto the indoor floor, clothing, or other household items after falling onto the wind deflector, affecting the living environment. When removing the outer and inner panels 2, pry the side of the outer panel 1 outward so that the retaining strip 6 comes out of the retaining groove 5 of the inner panel 2, and the inner panel 2 can be removed.
Claims
1. An air conditioner deflector, characterized in that, The wind deflector is arc-shaped and consists of two parts: an outer plate (1) and an inner plate (2). The inner plate (2) is detachably connected to the outer plate (1). The inner plate (2) is double-layered and hollow inside, forming a cavity. The inner plate (2) is a permeable plate, and the outer plate (1) is a sealed waterproof plate. Multiple partition strips (3) are provided inside the inner plate (2). The two sides of the partition strips (3) are fixedly connected to the upper and lower bottom surfaces inside the inner plate (2) respectively, dividing the cavity of the inner plate (2) into multiple parts.
2. An air conditioner wind deflector according to claim 1, characterized in that, The outer plates (1) located at both ends of the inner plate (2) are respectively fixedly connected with baffles (4).
3. An air conditioning deflector according to claim 1, characterized in that, The two sides of the inner plate (2) are recessed inward to form a slot (5), and the outer plate (1) is fixedly connected to the inner plate (2) with a slot strip (6) that matches the slot (5) of the inner plate (2).
4. An air conditioner wind deflector according to claim 1, characterized in that, The inner plate (2) has a corrugated surface and is provided with multiple equally spaced grooves.
5. An air conditioner wind deflector according to claim 1, characterized in that, The inner plate (2) can be connected to the outer plate (1) by plugging. The outer plate (1) has two grooves (7) on its surface. The inner plate (2) has two locking strips (8) that match the grooves (7) fixedly connected to its two sides.
6. An air conditioner wind deflector according to claim 5, characterized in that, The inner plate (2) has an inclined plate (9) integrally formed on the side of the cavity openings at both ends of the inner plate (2) that is close to the outer plate (1).