Air conditioner air outlet and vehicle
By setting up a wind guide section and transmission structure in the air conditioner air outlet, the problem of insufficient blowing angle caused by the shell space limitations of the traditional air outlet is solved, and flexible adjustment of wind direction and flow is achieved, the air outlet angle is increased, and the wind power effect and user experience of the air outlet is improved.
Patent Information
- Application Number
- CN202422374449.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-27
AI Technical Summary
Due to the limitation of the shell space of traditional automobile air outlets, the blade position cannot be reasonably arranged, resulting in the air outlet being easily disturbed and cannot meet the design requirements of the blowing angle.
An air conditioner air outlet is designed, and the first and second air guide sections are arranged on the shell. Through the coordination of the active air guide blades and the driven air guide blades, the wind direction and air flow rate of the air outlet are adjusted, and the power transmission is realized through the transmission structure, the transmission distance is reduced, and the air outlet angle can be increased.
Effectively guide the air outflow, ensure the wind effect, increase the air outflow angle, provide multi-directional air outflow adjustment, improve user experience, reduce airflow noise, and keep the shell clean.
Smart Images

Figure CN223199834U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of vehicles, and in particular relates to an air outlet for an air conditioner and a vehicle. Background Art
[0002] The appearance and air outlet methods of automobile air outlet blades are becoming more and more diverse. The traditional air outlet is generally set up with horizontal blades on the outside (to guide the wind up and down) and vertical blades on the inside (to guide the wind left and right). At present, there are also some air outlets that have changed the existing air outlet form. The design has vertical blades on the outside (to guide the wind left and right) and horizontal blades on the inside (to guide the wind up and down). However, since the upper and lower air guides are built-in, the blade positions cannot be arranged reasonably due to the space limitation of the shell (the horizontal blades are too far back). The air outlet is easily interfered by the shell, resulting in it being unable to meet the blowing angle requirements of the design requirements. Utility Model Content
[0003] The purpose of the utility model is to address the above-mentioned problems in the existing technology and to propose an air outlet that utilizes a shell to guide the outflow of air.
[0004] The purpose of the utility model can be achieved through the following technical solutions: an air outlet for an air conditioner, comprising:
[0005] case;
[0006] An air outlet adjustment mechanism includes a first air outlet adjustment portion disposed within a housing, the first air outlet adjustment portion including a driven air guide blade and an active air guide blade, each hingedly connected to the housing, wherein the driven air guide blade and the active air guide blade are hingedly connected to each other; a position of the driven air guide blade changes according to a change in the position of the active air guide blade;
[0007] The housing includes a first air guide section and a second air guide section, the first air guide section and the second air guide section are respectively located on both sides of the first air outlet adjustment portion, and are arranged along the direction of the driven air guide blade toward the air outlet, the end extension direction of the first air guide section and the end extension direction of the second air guide section are inclined to each other, a first air outlet cavity is formed between the first air guide section and the first air outlet adjustment portion, and a second air outlet cavity is formed between the second air guide section and the first air outlet adjustment portion;
[0008] The air flow ratio between the first air outlet cavity and the second air outlet cavity is adjusted according to the position of the driven air guide blade, and the air outlet direction of the first air outlet cavity or the second air outlet cavity is adjusted according to the position of the active air guide blade.
[0009] In the above-mentioned air-conditioning outlet, the first air guide section includes a first guide surface arranged in an arc shape and inclined, and the second air guide section includes a second guide surface arranged in an arc shape and inclined; the shell also includes a first enclosing section and a second enclosing section, the first enclosing section is smoothly transitioned to the first air guide section, and the second enclosing section is smoothly transitioned to the second air guide section.
[0010] In the above-mentioned air-conditioning outlet, when the active air guide blade is in the first extreme position, the end extension direction of the active air guide blade and the first air guide segment is parallel or the angle formed between the two is less than 15°; when the active air guide blade is in the second extreme position, the end extension direction of the active air guide blade and the second air guide segment is parallel or the angle formed between the two is less than 15°.
[0011] In the above-mentioned air-conditioning outlet, an operating mechanism is provided on the side of the housing, the operating mechanism includes an operating member, and a first transmission member is provided between the first end of the operating member and the active air guide blade;
[0012] The operating member is moved by toggling the operating member, and the operating member drives the active air guide blade to rotate through the first transmission member, thereby transmitting power to the driven air guide blade to adjust the angle.
[0013] In the above-mentioned air-conditioning outlet, the first transmission member includes a rotating shaft portion and a first transmission portion. The rotating shaft portion is rotatably arranged on the shell, the rotating shaft portion is fixed to the active air guide blade, and the first transmission portion is connected to the operating member for transmission to realize power transmission.
[0014] In the above-mentioned air-conditioning outlet, the first transmission part is a transmission rod, a transmission block is provided on the operating member, a transmission groove is provided on the transmission block, and the transmission rod extends into the transmission groove; the operating member drives the transmission block to move up and down while driving the transmission rod to move up and down, thereby driving the first transmission member to rotate around the rotating shaft.
[0015] In the above-mentioned air-conditioning outlet, a connecting buckle is fixedly provided at the first end of the rotating shaft portion, and a connecting slot is provided at the first end of the active air guide blade. The connecting buckle is fixed to the connecting slot to achieve fixation between the rotating shaft portion and the active air guide blade.
[0016] In the above-mentioned air-conditioning outlet, a latching tooth portion is provided on the driven air guide blade, and a latching rod is provided on the second end of the active air guide blade. The latching tooth portion is latched on the latching rod, so that the latching tooth portion can rotate relative to the latching rod, thereby realizing the hinge connection between the driven air guide blade and the active air guide blade; and a limiting groove extending in a straight line direction is provided on the inner wall of the shell, and the driven air guide blade includes a limiting column that can be extended into the limiting groove, and the limiting column can move along the extension direction of the limiting groove; the position of the driven air guide blade is determined by the position of the active air guide blade and the position of the limiting column.
[0017] In the above-mentioned air-conditioning outlet, a second air outlet adjustment part is also provided in the shell, and the second air outlet adjustment part includes an outer air guide blade, and an avoidance groove is provided on the outer air guide blade, and part of the active air guide blade extends into the avoidance groove, and a second transmission part is provided between the operating part and the outer air guide blade to realize power transmission; the second transmission part includes a second transmission part fixedly arranged on the operating part, and a connecting part is provided on the outer air guide blade, and a connecting groove is provided at the end of the connecting part, and the end of the second transmission part extends into the connecting groove, and as the operating part swings left and right, the second transmission part drives the outer air guide blade to swing synchronously; and the second transmission part can also slide in the vertical direction relative to the connecting groove.
[0018] A vehicle comprises the above-mentioned air-conditioning outlet.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows: a first air guide section and a second air guide section are provided on the shell, and the shell's obstruction of the air outlet is changed to guiding the air outlet to ensure the wind force effect of the blown air; the wind direction of the air outlet is determined by the position of the active air guide blade, and the air flow ratio between the first air outlet cavity and the second air outlet cavity is adjusted according to the position of the driven air guide blade, and the active air guide blade cooperates with the driven air guide blade to realize the adjustment of the wind direction and air flow of the air outlet; at the same time, an active air guide blade in the shell can transmit power while guiding the air, so that the transmission distance of the entire inner blade part is smaller, and the distance between the driven air guide blade and the air outlet is reduced, so that the present application increases its air outlet angle when there is only one driven air guide blade. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is one of the three-dimensional structural diagrams of the present utility model;
[0021] Figure 2 This is one of the schematic diagrams of the air outlet status;
[0022] Figure 3 This is the second diagram of the air outlet status;
[0023] Figure 4 This is the third diagram of the air outlet status;
[0024] Figure 5 Schematic diagram of the internal structure of the shell;
[0025] Figure 6 It is an exploded connection diagram of the first air outlet adjustment part and the second air outlet adjustment part;
[0026] Figure 7 yes Figure 1 A local enlarged schematic diagram of point A;
[0027] Figure 8 It is a schematic diagram of the three-dimensional structure of the operating part;
[0028] Figure 9 This is the second schematic diagram of the three-dimensional structure of the utility model;
[0029] Figure 10 This is the third schematic diagram of the three-dimensional structure of the present utility model.
[0030] In the figure, the shell 100; the air outlet 101; the first air guide section 102; the second air guide section 103; the first air guide cavity 104; the second air guide cavity 105; the first guide surface 106; the second guide surface 107; the first enclosing section 108; the second enclosing section 109; the limiting groove 110; the first air outlet adjustment part 200; the second air outlet adjustment part 201; the outer air guide blade 202; the driven air guide blade 203; the limiting column 204; the operating part 300; the first transmission part 301; the active air guide blade 302; the rotating shaft part 303; the first transmission part 304; the transmission rod 305; the transmission block 306; the transmission groove 307; the second transmission part 308; the connecting part 309; the connecting groove 310; the connecting buckle 311; the connecting slot 312; the tooth part 313; the connecting rod 314; the avoidance groove 315; and the connecting rod 316. DETAILED DESCRIPTION
[0031] The following are specific embodiments of the present invention and the accompanying drawings to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
[0032] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0033] like Figures 1-9 As shown, an air-conditioning outlet includes:
[0034] Housing 100;
[0035] The air outlet adjustment mechanism includes a first air outlet adjustment portion 200 disposed within the housing 100. The first air outlet adjustment portion 200 includes a driven air guide blade 203 and an active air guide blade 302, each of which is hingedly connected to the housing 100. The driven air guide blade 203 and the active air guide blade 302 are hingedly connected to each other. The position of the driven air guide blade 203 changes according to the position of the active air guide blade 302.
[0036] The housing 100 includes a first air guide section 102 and a second air guide section 103. The first air guide section 102 and the second air guide section 103 are respectively located on either side of the first air outlet adjustment portion 200. The ends of the first air guide section 102 and the second air guide section 103 extend in a direction that is inclined relative to each other, along the direction from the driven air guide blade 203 toward the air outlet 101. A first air outlet cavity 104 is formed between the first air guide section 102 and the first air outlet adjustment portion 200, and a second air outlet cavity 105 is formed between the second air guide section 103 and the first air outlet adjustment portion 200.
[0037] The air flow ratio between the first air outlet cavity 104 and the second air outlet cavity 105 is adjusted according to the position of the driven air guide blade 203 , and the air outlet direction of the first air outlet cavity 104 or the second air outlet cavity 105 is adjusted according to the position of the active air guide blade 302 .
[0038] In this embodiment, a first air guide section 102 and a second air guide section 103 are provided on the shell 100, and the shell 100 changes the obstruction of the air outlet to the guidance of the air outlet to ensure the wind force effect of the blown air; the wind direction of the air outlet is determined by the position of the active air guide blade 302, and the air flow ratio between the first air outlet cavity 104 and the second air outlet cavity 105 is adjusted according to the position of the driven air guide blade 203. The active air guide blade 302 cooperates with the driven air guide blade 203 to achieve the adjustment of the wind direction and air flow of the air outlet; at the same time, an active air guide blade 302 in the shell 100 can transmit power while guiding the air, so that the transmission distance of the entire inner blade part is small, and the distance between the driven air guide blade 203 and the air outlet 101 is reduced, so that the present application increases its air outlet angle when there is only one driven air guide blade 203.
[0039] Specifically, such as Figure 2-4 As shown, the first air guide section 102 is located on the upper wall of the housing 100, and the first air guide section 102 gradually tilts downward toward the direction of the air outlet 101, while the second air guide section 103 is located on the lower wall of the housing 100, and the second air guide section 103 gradually tilts upward toward the direction of the air outlet 101; Figure 2As shown, when the active air guide blade 302 is in the extreme position of upward swing, the driven air guide blade 203 swings upward accordingly, so that the first air outlet cavity 104 is closed, and the air can only be blown out through the second air outlet cavity 105. Since the second air guide section 103 is gradually inclined upward, the air is blown out upward under the guidance of the second air guide section 103. Similarly, Figure 3 As shown, when the active air guide blade 302 is in the extreme position of downward swinging, the driven air guide blade 203 swings downward accordingly, so that the second air outlet cavity 105 is closed, and the air can only be blown out through the first air outlet cavity 104. Since the first air guide section 102 is gradually tilted downward, downward blowing is achieved under the guidance of the first air guide section 102; and in the process of the active air guide blade 302 swinging from the first extreme position to the second extreme position, the driven air guide blade 203 swings synchronously therewith, and the first air outlet cavity 104 gradually opens from closed, and the second air outlet cavity 105 gradually closes from open.
[0040] It is worth mentioning that Figure 4 As shown, when the active air guide blade 302 is in the horizontal direction, the driven air guide blade 203 also remains in the horizontal direction. At this time, the first air outlet cavity 104 and the second air outlet cavity 105 both remain open, and the air is blown out horizontally through the first air outlet cavity 104 and the second air outlet cavity 105 respectively.
[0041] Preferably, the first air guide section 102 includes a first guide surface 106 arranged in an arc shape and inclined, and the second air guide section 103 includes a second guide surface 107 arranged in an arc shape and inclined; the shell 100 also includes a first enclosing section 108 and a second enclosing section 109, the first enclosing section 108 is smoothly transitioned to the first air guide section 102, and the second enclosing section 109 is smoothly transitioned to the second air guide section 103.
[0042] In this embodiment, the first air guide section 102 and the second air guide section 103 are both arc-shaped guide surfaces. Compared with a right-angle or straight-line design, the arc shape can reduce the turbulence generated when the air flows through, thereby reducing the airflow noise and providing a quieter in-vehicle environment; and in order to achieve the surrounding protection of the driven air guide blade 203, the shell 100 also includes a first surrounding section 108 and a second surrounding section 109, and the surrounding sections are smoothly connected to the corresponding air guide sections, so that dust and other tiny particles are not easily accumulated in the shell 100, thereby ensuring the cleanliness of the interior of the shell 100.
[0043] Further preferably, when the active air guide blade 302 is in the first extreme position, the end extension direction of the active air guide blade 302 and the first air guide segment 102 are parallel or the angle formed between the two is less than 15°; when the active air guide blade 302 is in the second extreme position, the end extension direction of the active air guide blade 302 and the second air guide segment 103 are parallel or the angle formed between the two is less than 15°.
[0044] In this embodiment, in order to make the air outlet direction of the air cavity consistent with the swing direction of the active air guide blade 302, as shown in FIG. Figure 2-Figure 4 As shown, when the active air guide blade 302 is in the first extreme position, that is, the upward extreme position, the air-conditioned air will be blown out upward; and when the active air guide blade 302 is in the second extreme position, that is, the downward extreme position, the air-conditioned air will be blown out downward; so it is necessary to define that when the active air guide blade 302 is in the two extreme positions, it is respectively parallel to the end extension direction of the corresponding air guide segment; as another optional scheme, it can also be defined that when the active air guide blade 302 is in the two extreme positions, it forms an angle of less than 15° with the end extension direction of the corresponding air guide segment, that is, the end extension direction of the air guide segment is as parallel as possible to the direction of the active air guide blade when it is in the restricted position.
[0045] Specifically, an operating mechanism is provided on the side of the housing 100 , and the operating mechanism includes an operating member 300 , and a first transmission member 301 is provided between a first end of the operating member 300 and the active air guide blade 302 ;
[0046] Among them, the operating member 300 is moved by toggling, and the operating member 300 drives the active air guide blade 302 to rotate through the first transmission member 301, and then transmits power to the driven air guide blade 203 for angle adjustment. The swing operation of the active air guide blade 302 can be achieved by toggling the operating member 300 outside the shell 100.
[0047] Specifically, the first transmission member 301 includes a rotating shaft portion 303 and a first transmission portion 304. The rotating shaft portion 303 is rotatably set on the shell 100. The rotating shaft portion 303 is fixed to the active wind guide blade 302. The first transmission portion 304 is transmission-connected to the operating member 300 to realize power transmission.
[0048] In this embodiment, the up and down moving force of the operating member 300 is transmitted to the rotating shaft portion 303 through the first transmission portion 304, and the up and down moving force of the operating member 300 is converted into a rotational driving force of the rotating shaft portion 303, so that the rotating shaft portion 303 can rotate, and the rotation of the rotating shaft portion 303 will drive the active air guide blade 302 fixed thereto to swing, and the swing of the active air guide blade 302 will drive the driven air guide blade 203 hinged to the shell 100 to swing, thereby realizing the synchronous swing of the driven air guide blade 203.
[0049] Preferably, the first transmission part 304 is a transmission rod 305, a transmission block 306 is provided on the operating member 300, a transmission groove 307 is provided on the transmission block 306, and the transmission rod 305 extends into the transmission groove 307; the operating member 300 drives the transmission block 306 to move up and down while driving the transmission rod 305 to move up and down, thereby driving the first transmission member 301 to rotate around the rotating shaft part 303.
[0050] In this embodiment, when the operating member 300 moves up and down, the transmission rod 305 in the transmission groove 307 moves up and down accordingly, and because the transmission rod 305 is fixed to the rotating shaft portion 303, that is, the transmission rod 305 moves in a circular motion, then when the operating member 300 drives the transmission rod 305 to move up and down, the transmission rod 305 will also move in the horizontal direction, so the transmission rod 305 is set to move horizontally in the transmission groove 307 to provide horizontal movement space.
[0051] like Figure 6 As shown, specifically, the first end of the rotating shaft portion 303 is fixedly provided with a connecting buckle 311, and the first end of the active air guide blade 302 is provided with a connecting slot 312. The connecting buckle 311 and the connecting slot 312 are clamped and fixed to achieve fixation between the rotating shaft portion 303 and the active air guide blade 302.
[0052] like Figure 6 、 Figure 10 As shown, it is further preferred that a latching portion 313 is provided on the driven air guide blade 203, and a latching rod 314 is provided at the second end of the active air guide blade 302, and the latching portion 313 is latched on the latching rod 314, so that the latching portion 313 can rotate relative to the latching rod 314, thereby realizing the hinge between the driven air guide blade 203 and the active air guide blade 302; and a limiting groove 110 extending in a straight direction is provided on the inner wall of the shell 100, and the driven air guide blade 203 includes a limiting column 204 that can be extended into the limiting groove 110, and the limiting column 204 can move along the extension direction of the limiting groove 110; the position of the driven air guide blade 203 is determined by the position of the active air guide blade 302 and the position of the limiting column 204.
[0053] In this embodiment, the latching portion 313 includes a latching ring with an opening provided on the latching ring, and the latching rod 314 on the active air guide blade 302 extends through the opening into the latching ring and is hinged to the latch ring, and as the active air guide blade 302 rotates in the shell 100, the driven air guide blade 203 is driven to rotate; if the driven air guide blade 203 and the active air guide blade 302 are both hinged to the shell 100 at a fixed point, there will be interference in the swinging between the two, so a limiting groove 106 extending in a straight direction is provided on the shell, and the driven air guide blade 203 includes a limiting column 204 that can be extended into the limiting groove 110, and the limiting column 204 can move along the extension direction of the limiting groove 110; and the position of the driven air guide blade 203 is determined by the position of the active air guide blade 302 and the position of the limiting column 204.
[0054] It is worth mentioning that a second air outlet adjustment part 202 is also provided in the shell 100, and the second air outlet adjustment part 202 includes an outer air guide blade 201, and an avoidance groove 315 is provided on the outer air guide blade 201. Part of the active air guide blade 302 extends into the avoidance groove 315, and a second transmission part is provided between the operating member 300 and the outer air guide blade 201 to realize power transmission; the second transmission part includes a second transmission part 308 fixedly arranged on the operating member 300, and a connecting part 309 is provided on the outer air guide blade 201, and a connecting groove 310 is provided at the end of the connecting part 309, and the end of the second transmission part 308 extends into the connecting groove 310. As the operating member 300 swings left and right, the second transmission part 308 drives the outer air guide blade 201 to swing synchronously; and the second transmission part 308 can also slide in the vertical direction relative to the connecting groove 310.
[0055] In this embodiment, the driven wind guide blade 203 is used to guide the blown air in the up and down directions, while the outer wind guide blade 201 is used to guide the blown air in the left and right directions, thereby realizing multi-directional adjustment of the blown air and enhancing its user experience; and the setting of the avoidance groove 315 can further reduce the distance between the driven wind guide blade 203 and the air outlet 101; the end of the second transmission part 308 extends into the connecting groove 310, and the connecting groove 310 is located in the horizontal direction, then as the operating part 300 swings in the horizontal direction, the second transmission part 308 is against the groove wall of the connecting groove 310, and the connecting groove 310 swings left and right in the horizontal direction; and when the operating part 300 moves in the vertical direction, the connecting groove 310 and the connecting part 309 do not contact each other, and the connecting part 309 remains stationary.
[0056] It is worth mentioning that a connecting rod 316 is fixedly provided on the shell 100, and the operating member 300 is sleeved on the connecting rod 316. Along the axial direction of the connecting rod 316, the operating member 300 can slide relative to the connecting rod 316; and the operating member 300 can also swing left and right relative to the connecting rod 316.
[0057] A vehicle comprises the above-mentioned air-conditioning outlet.
[0058] It should be noted that, in the present utility model, descriptions such as "first", "second", "one", etc. are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present utility model, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise clearly defined. The terms "connected", "fixed", etc. should be understood in a broad sense. For example, "fixed" can be a fixed connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in the present utility model can be understood according to the specific circumstances.
[0059] 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 fact that ordinary technicians in this field can implement it. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this utility model.
[0060] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Persons skilled in the art may make various modifications, additions, or substitutions to the described specific embodiments without departing from the spirit of the present invention or exceeding the scope defined by the appended claims.
Claims
1. An air outlet for an air conditioner, characterized in that: include: Housing (100); An air outlet adjustment mechanism comprises a first air outlet adjustment portion (200) arranged in a housing (100), wherein the first air outlet adjustment portion (200) comprises a driven air guide blade (203) and an active air guide blade (302) respectively hingedly arranged with the housing (100), and the driven air guide blade (203) and the active air guide blade (302) are hingedly connected to each other; the position of the driven air guide blade (203) changes according to the position of the active air guide blade (302); The housing (100) comprises a first air guide section (102) and a second air guide section (103), the first air guide section (102) and the second air guide section (103) being respectively located on both sides of the first air outlet adjustment portion (200), and along the direction of the driven air guide blade (203) toward the air outlet (101), the end extension direction of the first air guide section (102) and the end extension direction of the second air guide section (103) are arranged to be inclined to each other, a first air outlet cavity (104) is formed between the first air guide section (102) and the first air outlet adjustment portion (200), and a second air outlet cavity (105) is formed between the second air guide section (103) and the first air outlet adjustment portion (200); The air flow ratio between the first air outlet cavity (104) and the second air outlet cavity (105) is adjusted according to the position of the driven air guide blade (203), and the air outlet direction of the first air outlet cavity (104) or the second air outlet cavity (105) is adjusted according to the position of the active air guide blade (302).
2. The air outlet of an air conditioner according to claim 1, characterized in that: The first air guide section (102) includes a first guide surface (106) arranged in an arc shape and tilted, and the second air guide section (103) includes a second guide surface (107) arranged in an arc shape and tilted; the housing (100) further includes a first enclosing section (108) and a second enclosing section (109), the first enclosing section (108) and the first air guide section (102) are smoothly transitionally connected, and the second enclosing section (109) and the second air guide section (103) are smoothly transitionally connected.
3. The air outlet of an air conditioner according to claim 1, characterized in that: When the active air guide blade (302) is in a first extreme position, the active air guide blade (302) and the end extension direction of the first air guide section (102) are in a parallel relationship, or the angle formed between the two is less than 15°; when the active air guide blade (302) is in a second extreme position, the active air guide blade (302) and the end extension direction of the second air guide section (103) are in a parallel relationship, or the angle formed between the two is less than 15°.
4. The air outlet of an air conditioner according to claim 1, characterized in that: An operating mechanism is provided on the side of the housing (100), the operating mechanism comprising an operating member (300), and a first transmission member (301) is provided between a first end of the operating member (300) and the active air guide blade (302); The operating member (300) is moved by toggling the operating member (300), and the operating member (300) drives the active air guide blade (302) to rotate via the first transmission member (301), thereby transmitting power to the driven air guide blade (203) for angle adjustment.
5. The air outlet of an air conditioner according to claim 4, characterized in that: The first transmission member (301) comprises a rotating shaft portion (303) and a first transmission portion (304); the rotating shaft portion (303) is rotatably arranged on the housing (100); the rotating shaft portion (303) is fixed to the active air guide blade (302); and the first transmission portion (304) is transmission-connected to the operating member (300) to achieve power transmission.
6. The air outlet of an air conditioner according to claim 5, characterized in that: The first transmission part (304) is a transmission rod (305), the operating member (300) is provided with a transmission block (306), the transmission block (306) is provided with a transmission groove (307), and the transmission rod (305) extends into the transmission groove (307); the operating member (300) drives the transmission block (306) to move up and down, and at the same time drives the transmission rod (305) to move up and down, thereby driving the first transmission member (301) to rotate around the rotating shaft (303).
7. The air outlet of an air conditioner according to claim 5, characterized in that: The first end of the rotating shaft portion (303) is fixedly provided with a connecting buckle (311), and the first end of the active air guide blade (302) is provided with a connecting slot (312), and the connecting buckle (311) and the connecting slot (312) are fixedly engaged to achieve fixation between the rotating shaft portion (303) and the active air guide blade (302).
8. The air outlet of an air conditioner according to claim 1, characterized in that: The driven air guide blade (203) is provided with a latching tooth portion (313), and the second end of the active air guide blade (302) is provided with a latching rod (314), and the latching tooth portion (313) is latched on the latching rod (314), so that the latching tooth portion (313) can rotate relative to the latching rod (314), thereby realizing the hinge connection between the driven air guide blade (203) and the active air guide blade (302); and a limiting groove (110) extending in a straight direction is provided on the inner wall of the shell (100), and the driven air guide blade (203) includes a limiting column (204) that can extend into the limiting groove (110), and the limiting column (204) can move along the extension direction of the limiting groove (110); the position of the driven air guide blade (203) is determined by the position of the active air guide blade (302) and the position of the limiting column (204).
9. The air outlet of an air conditioner according to claim 4, characterized in that: A second air outlet adjustment portion (202) is further provided in the housing (100), the second air outlet adjustment portion (202) comprising an outer air guide blade (201), a avoidance groove (315) being provided on the outer air guide blade (201), a portion of the active air guide blade (302) extending into the avoidance groove (315), a second transmission member being provided between the operating member (300) and the outer air guide blade (201) to achieve power transmission; the second transmission member comprising a fixed member provided on the operating member (300) A second transmission part (308) is provided on the outer air guide blade (201), and a connecting part (309) is provided at the end of the connecting part (309). The end of the second transmission part (308) extends into the connecting groove (310). As the operating member (300) swings left and right, the second transmission part (308) drives the outer air guide blade (201) to swing synchronously; and the second transmission part (308) can also slide in the vertical direction relative to the connecting groove (310).
10. A vehicle, characterized in that: It comprises the air-conditioning outlet as described in any one of claims 1 to 9.