Column A structure and vehicle

By installing a retractable blower duct in the A-pillar structure and connecting it to the air conditioning duct, airflow at different temperatures is provided, solving the problem of the lack of portable blowers in vehicles and improving the user's riding experience and satisfaction.

CN223949230UActive Publication Date: 2026-02-27ZHEJIANG GEELY HLDG GRP CO LTD +1
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Patent Information

Application Number
CN202520797330.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2026-02-27
Estimated Expiration
2035-04-24

AI Technical Summary

Technical Problem

The lack of portable hair dryers in existing vehicles increases the burden of travel, and hair and clothes are easily soaked in the rain, affecting the riding experience.

Method used

A retractable blower duct is installed in the A-pillar structure and connected to it via an air conditioning duct to provide airflow at different temperatures. The opening and closing of the duct is controlled by a trigger structure, reducing the need for additional equipment.

Benefits of technology

It enables convenient hair and clothing drying inside the car, reducing travel burden, improving user satisfaction, adapting to different air supply temperatures, and reducing the space occupied by the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223949230U_ABST
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Abstract

The utility model discloses an A-pillar structure and a vehicle, the A-pillar structure comprises an A-pillar main body; the air blower pipeline is installed on the A column main body, the air blower pipeline is communicated with an air conditioner air duct, an air blowing opening is formed in the air blower pipeline, and the air blower pipeline is configured to be telescopic so that the air blowing opening can selectively extend out of the A column main body. According to the A column structure, the air blower pipeline is communicated with the air conditioner pipeline, the air blower pipeline can selectively send air flows with different temperatures to users so as to meet different requirements of the users, extra equipment carried by the users can be reduced, the travel burden of the users can be relieved, the air blower pipeline is constructed to be telescopic, and the air conditioner pipeline is convenient to use. According to the technical scheme, when the air blower pipeline extends out, the air blowing opening can move towards the position where the air blower pipeline needs to be used so that a user can use the air blower conveniently, and when the air blower pipeline retracts, the occupied space of the air blower pipeline in a passenger compartment can be reduced, and the satisfaction degree of the user can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to vehicle manufacturing technical field especially relates to a kind of A column structure and the vehicle with the A column structure of this. BACKGROUND

[0002] Although current vehicles are equipped with cosmetic mirrors, there is a lack of effective hair dryer tools when arranging hairstyle. The traditional portable hair dryer needs to be carried additionally, which increases the burden of travel. In addition, when traveling in rainy days, the passenger's hair and clothes are easily wetted, and there is a lack of equipment for quickly drying hair and clothes in the vehicle, which affects the experience of taking the vehicle and there is room for improvement. SUMMARY

[0003] The utility model aims at at least solving one of the technical problems existing in the prior art. To this end, the utility model provides an A column structure, which can selectively send air flow of different temperatures to users to adapt to different needs of users, and can reduce the additional carrying of equipment by users, reduce the travel burden of users, and improve user satisfaction.

[0004] According to the A column structure of the utility model embodiment, the hair dryer pipe is installed on the A column body, the installation of the hair dryer pipe can be realized, and the A column body can protect the hair dryer pipe to improve the reliability of the working of the hair dryer pipe. In addition, the hair dryer pipe forms a hair blowing port, and the hair dryer pipe is communicated with the air conditioner pipe, so that the hair dryer pipe can selectively send air flow of different temperatures to users through the hair blowing port to adapt to different needs of users, and the additional carrying of equipment by users can be reduced, the travel burden of users can be reduced, and the hair dryer pipe is constructed to be telescopic, so that the hair blowing port can be moved towards the position to be used to facilitate the use of users when the hair dryer pipe is stretched out, and the occupied space of the hair dryer pipe in the passenger compartment can be reduced when the hair dryer pipe is retracted, which is beneficial to improve user satisfaction.

[0005] According to the A column structure of the utility model embodiment, the hair dryer pipe is installed on the A column body, the installation of the hair dryer pipe can be realized, and the A column body can protect the hair dryer pipe to improve the reliability of the working of the hair dryer pipe. In addition, the hair dryer pipe forms a hair blowing port, and the hair dryer pipe is communicated with the air conditioner pipe, so that the hair dryer pipe can selectively send air flow of different temperatures to users through the hair blowing port to adapt to different needs of users, and the additional carrying of equipment by users can be reduced, the travel burden of users can be reduced, and the hair dryer pipe is constructed to be telescopic, so that the hair blowing port can be moved towards the position to be used to facilitate the use of users when the hair dryer pipe is stretched out, and the occupied space of the hair dryer pipe in the passenger compartment can be reduced when the hair dryer pipe is retracted, which is beneficial to improve user satisfaction.

[0006] According to the A column structure of some embodiments of the utility model, the A column body is provided with a trigger structure; wherein when the hair dryer pipe is stretched out of the A column body, the trigger structure is arranged to generate a trigger signal to make the air conditioner air duct send air to the hair dryer pipe, and when the hair dryer pipe is retracted into the A column body, the trigger structure is arranged to generate a closing signal to make the air conditioner air duct stop sending air to the hair dryer pipe.

[0007] According to the A column structure of some embodiments of the utility model, the trigger structure is configured to abut against the hair dryer pipeline, and the trigger structure is separated from the hair dryer pipeline and generates a trigger signal after the hair dryer pipeline extends out of the A column body.

[0008] According to the A column structure of some embodiments of the utility model, the trigger structure comprises a trigger piece and an elastic piece, the trigger piece is movably installed on the A column body, and the movement direction of the trigger piece intersects with the movement direction of the hair dryer pipeline.

[0009] According to the A column structure of some embodiments of the utility model, the outer peripheral wall of the hair dryer pipeline is provided with a limiting groove, the trigger piece is configured as a trigger ball, and at least part of the trigger ball is adapted to extend into the limiting groove.

[0010] According to the A column structure of some embodiments of the utility model, the limiting groove is configured as an annular groove, and the limiting groove is arranged along the circumferential direction of the hair dryer pipeline.

[0011] According to the A column structure of some embodiments of the utility model, the hair dryer pipeline comprises a main pipe body and a pipeline joint, the main pipe body is configured as a telescopic pipe, one end of the main pipe body is fixed in the A column body, the pipeline joint is connected to the other end of the main pipe body, and the blowing port is formed in the pipeline joint.

[0012] According to the A column structure of some embodiments of the utility model, the A column body is further provided with a connecting air duct, the connecting air duct is connected between the main pipe body and the air conditioner air duct, and / or the A column body is provided with a mounting decorative plate, the mounting decorative plate is provided with a movable opening, the pipeline joint is arranged in the movable opening, the pipeline joint is provided with a shielding flange, and the shielding flange is adapted to shield the movable opening when the pipeline joint is retracted into the A column body.

[0013] The utility model further provides a vehicle.

[0014] The vehicle according to the utility model embodiment comprises the A column structure of any one of the above-mentioned embodiments.

[0015] The vehicle according to some embodiments of the utility model further comprises an air conditioner air duct, the A column structure is two, and the hair dryer pipelines of the two A column structures are connected with the air conditioner air duct respectively.

[0016] The vehicle and the A column structure have the same advantages as the prior art, and details are not repeated here.

[0017] The additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter in the description of embodiments in accordance with the present application. BRIEF DESCRIPTION OF DRAWINGS

[0018] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the following description of embodiments, given by way of example, and from the appended drawings.

[0019] Figure 1 is a structural schematic diagram of an A-pillar structure according to an embodiment of the present application;

[0020] Figure 2 is a connection schematic diagram of two A-pillar structures according to an embodiment of the present application;

[0021] Figure 3 is a working flow schematic diagram of an A-pillar structure according to an embodiment of the present application.

[0022] Reference Signs:

[0023] A-pillar structure 100,

[0024] A-pillar main body 1, trigger structure 11, trigger piece 111, elastic piece 112, negative signal piece 113, positive signal piece 114, connection air duct 12, mounting decorative plate 13, movable port 131,

[0025] Hair dryer pipe 2, blowing port 21, limiting groove 22, main pipe body 23, pipe joint 24, shielding flange 241,

[0026] Air conditioner air duct 3. DETAILED DESCRIPTION

[0027] Embodiments of the present application are described in detail below, examples of which are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary and are only used to explain the present application and cannot be understood as limiting the present application.

[0028] In the description of the utility model, it needs to be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" is the orientation or positional relationship shown based on the drawings, which is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model. In addition, the features limited by "first" and "second" can be explicitly or implicitly included one or more features. In the description of the utility model, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0029] In the description of the utility model, it needs to be understood that the terms "mounting", "connection" and "connection" should be understood broadly unless otherwise specified and limited, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0030] Unless otherwise specified, the front-rear direction in the present application is the longitudinal direction of the vehicle, that is, the X direction; the left-right direction is the lateral direction of the vehicle, that is, the Y direction; and the up-down direction is the vertical direction of the vehicle, that is, the Z direction.

[0031] The following refers to Figures 1-3 The A-pillar structure 100 according to the embodiment of the utility model can selectively send wind flow of different temperatures to users to adapt to different needs of users, and can reduce the additional carrying equipment of users, reduce the travel burden of users, and improve the user satisfaction.

[0032] As Figure 1 The A-pillar structure 100 according to one embodiment of the utility model includes an A-pillar body 1 and a hair dryer pipeline 2.

[0033] The hair dryer pipeline 2 is installed on the A-pillar body 1, the hair dryer pipeline 2 is communicated with the air conditioner air duct 3, the hair dryer pipeline 2 is formed with a blowing port 21, and the hair dryer pipeline 2 is configured to be telescopic so that the blowing port 21 can be selectively extended outside the A-pillar body 1.

[0034] Specifically, the A-pillar structure 100 comprises an A-pillar body 1 and a blower duct 2, the blower duct 2 is used for enabling air flow to flow inside and guiding the flow of the air flow, so that the air flow can flow towards the user, and the blower duct 2 is installed on the A-pillar body 1, so as to realize the installation of the blower duct 2, improve the reliability of the blower duct 2, and the A-pillar body 1 is located between the engine compartment and the passenger compartment, so that the blower duct 2 installed on the A-pillar body 1 can be arranged towards the passenger compartment, so that the air flow can flow along the blower duct 2 into the passenger compartment, that is, towards the passenger, so as to improve the reliability of the air supply to the user.

[0035] It should be noted that the A-pillar body 1 is part of the vehicle body frame, used to support the weight of the roof, and can absorb and disperse impact force when the vehicle collides, so the A-pillar body 1 has a certain rigidity, and the blower duct 2 is installed on the A-pillar body 1, so that the A-pillar body 1 can reliably protect the blower duct 2, so as to avoid damage to the blower duct 2 caused by accidental collision.

[0036] In addition, the air conditioning duct 3 is used to transport the air flow blown by the air conditioning system to different positions, and the air conditioning duct 3 is communicated with the blower duct 2, so that the air flow blown by the air conditioning system can enter the blower duct 2 along the air conditioning duct 3, that is, the air conditioning system can provide the blower duct 2 with air flow source, so as to ensure the reliability of the air supply to the user by the blower duct 2, and can reduce the setting of air flow source for the blower duct 2 alone, reduce the setting cost, and the blower duct 2 is formed with a blowing port 21, which is used to communicate the blower duct 2 with the outside space, so that the air flow flowing into the blower duct 2 can be blown out, that is, the blowing port 21 can be opened towards the passenger compartment, so that the blowing port 21 can communicate the blower duct 2 with the passenger compartment, and then the air flow in the blower duct 2 can enter the passenger compartment through the blowing port 21, and the user can be supplied with air.

[0037] It should be noted that the air conditioning system can selectively blow hot air, cold air or natural air under the control of the user, and the air conditioning duct 3 is communicated with the blower duct 2, so that the blower duct 2 can selectively transport air flow of different temperatures to the user, so as to facilitate the user to dry the clothes or hair wetted by rain when transporting hot air, and facilitate the user to quickly cool certain parts of the body when transporting cold air, and facilitate the user to clean the dust in the passenger compartment when transporting natural air, so that the user can control the temperature of the air flow sent out by the blower duct 2 according to the user's own needs, so as to adapt to the different needs of the user, and can reduce the user's additional carrying equipment, reduce the user's travel burden, and improve the user's satisfaction. In actual design, a blowing port temperature sensor can be arranged in the blower duct 2 to detect the temperature of the air supply, and a closed loop of temperature control can be formed.

[0038] And, the hair dryer pipe 2 is configured to be telescopic so that the air outlet 21 can be selectively extended out of the A-pillar body 1, that is, the hair dryer pipe 2 can be extended or retracted relative to the A-pillar body 1, when the user needs to use the hair dryer pipe 2, the hair dryer pipe 2 can be extended relative to the A-pillar body 1, and then the air outlet 21 can be moved towards the position needed to be used to facilitate the user to use, and when the use is completed, the hair dryer pipe 2 can be retracted relative to the A-pillar body 1 to reduce the occupied space of the hair dryer pipe 2 in the passenger compartment, and the user satisfaction is improved.

[0039] According to the A-pillar structure 100, the hair dryer pipe 2 is installed on the A-pillar body 1, the installation of the hair dryer pipe 2 is realized, and the A-pillar body 1 can protect the hair dryer pipe 2 to improve the reliability of the hair dryer pipe 2, and the hair dryer pipe 2 is formed with the air outlet 21, and the hair dryer pipe 2 is communicated with the air conditioner pipe, so that the hair dryer pipe 2 can selectively send air flow of different temperatures to the user through the air outlet 21 to adapt to different needs of the user, and the user can reduce the additional carrying of equipment and the travel burden, and the hair dryer pipe 2 is configured to be telescopic, so that when the hair dryer pipe 2 is extended, the air outlet 21 can be moved towards the position needed to be used to facilitate the user to use, and when the hair dryer pipe 2 is retracted, the occupied space of the hair dryer pipe 2 in the passenger compartment is reduced, and the user satisfaction is improved.

[0040] In some embodiments, the A-pillar body 1 is provided with a trigger structure 11; wherein when the hair dryer pipe 2 is extended out of the A-pillar body 1, the trigger structure 11 is arranged to generate a trigger signal to make the air conditioner air duct 3 send air to the hair dryer pipe 2, and when the hair dryer pipe 2 is retracted into the A-pillar body 1, the trigger structure 11 is arranged to generate a closing signal to make the air conditioner air duct 3 stop sending air to the hair dryer pipe 2.

[0041] Specifically, the hair dryer pipe 2 is installed on the A-pillar body 1, the A-pillar body 1 is provided with the trigger structure 11, the trigger structure 11 is used for detecting the state of the hair dryer pipe 2, and the detection result can be sent to the air conditioner controller in the form of a signal, and then the air conditioner controller can control the air flow in the air conditioner air duct 3 according to the received signal, so that the air flow can be transported to the position needed, and the trigger structure 11 is installed on the A-pillar body 1, so that the installation of the trigger structure 11 is realized, and the trigger structure 11 can be close to the hair dryer pipe 2 to facilitate the detection of the state of the hair dryer pipe 2, and the reliability of the trigger structure 11 is improved.

[0042] When the hair dryer duct 2 extends out of the A-pillar body 1, the trigger structure 11 can generate a trigger signal to make the air conditioner air duct 3 send air to the hair dryer duct 2, that is, when the user needs to use the hair dryer duct 2, the hair dryer duct 2 can be extended out of the A-pillar body 1 to extend into the interior of the passenger compartment, at this time the trigger structure 11 can generate a trigger signal and send the trigger signal to the air conditioner controller, so that the air conditioner controller can control the air conditioner air duct 3 to deliver the air flow generated by the air conditioning system to the hair dryer duct 2, thereby enabling the hair dryer duct 2 to send air to the user, and when use is completed, the hair dryer duct 2 can be retracted into the A-pillar body 1, at this time the trigger structure 11 can generate a closing signal and send the closing signal to the air conditioner controller, so that the air conditioner controller can control the air conditioner air duct 3 to stop sending air to the hair dryer duct 2, at this time the air conditioner air duct 3 can deliver the air flow generated by the air conditioning system to the fixed air outlet on the vehicle to perform the normal air conditioning air supply mode.

[0043] That is, as shown in Figure 3 the trigger structure 11 first detects the state of the hair dryer duct 2, that is, whether the hair dryer duct 2 is extended, when the detection result is that the hair dryer duct 2 is not extended, the air conditioner controller can control the air conditioner air duct 3 to send air to the fixed air outlet to perform the normal air conditioning air supply mode, when the detection result is that the hair dryer duct 2 is extended, the air conditioner controller can control the air conditioner air duct 3 to stop sending air to the fixed air outlet, and at the same time control the air conditioner air duct 3 to send air to the hair dryer duct 2, and can concentrate the air volume at the hair outlet 21 to improve the efficiency of the hair dryer duct 2, and then the user can control the temperature of the air flow blown out by the air conditioning system through the air conditioner controller according to the user's own needs, thereby enabling the hair dryer duct 2 to deliver air flow of different temperatures to the user.

[0044] In addition, in actual design, the hair dryer duct 2 can also be used in the normal air conditioning air supply mode, that is, when the hair dryer duct 2 is retracted, the air conditioner air duct can be in communication with the hair dryer duct 2 and the fixed air outlet at the same time, thereby enabling the hair outlet 21 of the hair dryer duct 2 and the fixed air outlet to jointly send air into the passenger compartment to increase the air supply position and improve user satisfaction.

[0045] In some embodiments, the trigger structure 11 is configured to abut against the hair dryer duct 2, and the trigger structure 11 is separated from the hair dryer duct 2 after the hair dryer duct 2 extends out of the A-pillar body 1 and generates a trigger signal.

[0046] Specifically, the trigger structure 11 is used for detecting the state of the hair dryer duct 2 and sending the detection result to the air conditioner controller in the form of a signal, the trigger structure 11 is configured to abut against the hair dryer duct 2, that is, the trigger structure 11 can be in abutting contact with the hair dryer duct 2, and the trigger structure 11 is separated from the hair dryer duct 2 after the hair dryer duct 2 extends out of the A-pillar body 1 and a trigger signal is generated, that is, when the hair dryer duct 2 is retracted into the A-pillar body 1, the trigger structure 11 is in abutting contact with the hair dryer duct 2 and a closing signal is generated, so that the air conditioner air duct 3 can stop sending air to the hair dryer duct 2, when the hair dryer duct 2 extends out of the A-pillar body 1, the trigger structure 11 is separated from the hair dryer duct 2 and a trigger signal is generated, so that the air conditioner air duct 3 can send air to the hair dryer duct 2, so that the air conditioner system can selectively send air to the hair dryer duct 2 according to the state of the hair dryer duct 2.

[0047] In some embodiments, the trigger structure 11 includes a trigger piece 111 and an elastic piece 112, the trigger piece 111 is movably mounted on the A-pillar body 1, and the movement direction of the trigger piece 111 intersects the movement direction of the hair dryer duct 2; wherein the elastic piece 112 is connected to the trigger piece 111 and is used to apply an elastic force to the trigger piece 111 towards the movement of the hair dryer duct 2, and the trigger piece 111 is adapted to abut against the outer circumferential wall of the hair dryer duct 2.

[0048] Specifically, the trigger structure 11 is used for detecting the state of the hair dryer duct 2 and sending the detection result to the air conditioner controller in the form of a signal, the trigger structure 11 includes a trigger piece 111 and an elastic piece 112, the trigger piece 111 is used for detecting the state of the hair dryer duct 2, the trigger piece 111 is movably mounted on the A-pillar body 1, that is, the installation of the trigger piece 111 is realized, and the trigger piece 111 can move relative to the A-pillar body 1 to abut against or separate from the hair dryer duct 2, and the movement direction of the trigger piece 111 intersects the movement direction of the hair dryer duct 2, that is, the trigger piece 111 can be arranged on the movement path of the hair dryer duct 2, or the hair dryer duct 2 can be arranged on the movement path of the trigger piece 111, so as to ensure that the trigger piece 111 can abut against the hair dryer duct 2 when the hair dryer duct 2 is retracted, and improve the reliability of the trigger structure 11.

[0049] And, the elastic member 112 is connected with the trigger member 111 to apply an elastic force to the trigger member 111 towards the movement of the hair dryer pipe 2, and the trigger member 111 is adapted to abut against the outer circumferential wall of the hair dryer pipe 2, that is, the trigger member 111 is arranged between the hair dryer pipe 2 and the elastic member 112, when the hair dryer pipe 2 is retracted, the hair dryer pipe 2 can abut against the trigger member 111 and extrude the trigger member 111 towards the side where the elastic member 112 is located, at this time, the trigger structure 11 can generate a closing signal, and the elastic member 112 is in a compressed state, when the hair dryer pipe 2 is extended, the hair dryer pipe 2 and the trigger member 111 abut against and separate, at this time, the trigger structure 11 can generate a trigger signal, and the trigger member 111 can be pushed by the elastic member 112 under the action of the restoring force of the elastic member 112 to move towards the direction close to the hair dryer pipe 2, so as to abut against the hair dryer pipe 2 when the hair dryer pipe 2 is retracted. The elastic member 112 can be a spring.

[0050] Wherein, the movement direction of the hair dryer pipe 2 is the extension direction of itself, the trigger member 111 abuts against the outer circumferential wall of the hair dryer pipe 2, that is, the movement direction of the trigger member 111 is along the radial direction of the hair dryer pipe 2, that is, the movement direction of the trigger member 111 intersects with the movement direction of the hair dryer pipe 2.

[0051] And, as shown in Figure 1 the negative signal member 113 and the positive signal member 114 are arranged in sequence at the end of the elastic member 112 away from the trigger member 111, the elastic member 112 is supported between the trigger member 111 and the negative signal member 113, when the hair dryer pipe 2 is retracted, the hair dryer pipe 2 pushes the trigger member 111 to move towards the side where the elastic member 112 is located, at this time, the elastic member 112 is forced to compress and push the negative signal member 113 to move towards the positive signal member 114 to contact the positive signal member 114 to generate a closing signal, when the hair dryer pipe 2 is extended, the hair dryer pipe 2 and the trigger member 111 abut against and separate, the elastic member 112 moves under the action of the restoring force and drives the negative signal member 113 and the positive signal member 114 to separate to generate a trigger signal.

[0052] It should be noted that, in actual design, a connecting member can also be arranged between the trigger member 111 and the negative signal member 113, so that the trigger member 111 can push the negative signal member 113 to move close to the positive signal member 114 under the action of the hair dryer pipe 2, or drive the negative signal member 113 to move away from the positive signal member 114 under the action of the elastic member 112.

[0053] In some embodiments, the outer circumferential wall of the hair dryer pipe 2 is provided with a limiting groove 22, and the trigger member 111 is configured as a trigger ball, at least part of the trigger ball is adapted to extend into the limiting groove 22.

[0054] Specifically, the trigger 111 can abut against the outer circumferential wall of the air duct 2, the trigger 111 is configured as a trigger ball, and the outer circumferential wall of the air duct 2 is provided with a limiting groove 22, at least part of the trigger ball can extend into the limiting groove 22, that is, the trigger ball can cooperate with the limiting groove 22 to detect the state of the air duct 2, when the air duct 2 is retracted, at least part of the trigger ball can extend into the limiting groove 22 and abut against the air duct 2 to make the trigger structure 11 generate a closing signal, when the air duct 2 is extended, the trigger ball can be separated from the air duct 2 to make the trigger structure 11 generate a trigger signal.

[0055] It should be noted that when the air duct 2 is retracted, at least part of the trigger ball can extend into the limiting groove 22 and abut against the air duct 2, so that the trigger ball can also fix the air duct 2 to avoid the air duct 2 from being separated from the A-pillar body 1 when the vehicle vibrates.

[0056] In some embodiments, the limiting groove 22 is configured as an annular groove, and the limiting groove 22 is arranged along the circumference of the air duct 2.

[0057] Specifically, the trigger 111 can cooperate with the limiting groove 22 to detect the state of the air duct 2, the limiting groove 22 is configured as an annular groove, that is, the limiting groove 22 is configured to extend along the circumference of the air duct 2, so that the limiting groove 22 has a certain length to facilitate abutting cooperation with the trigger 111, and when the air duct 2 is retracted, the trigger 111 can abut against the air duct 2 at any position of the limiting groove 22 along the circumference of the air duct 2, thereby improving the reliability of the cooperation between the trigger 111 and the limiting groove 22.

[0058] It should be noted that the limiting groove 22 is configured as an annular groove, and when the air duct 2 is retracted, even if the air duct 2 rotates at a certain angle relative to the A-pillar structure 100, the trigger 111 can cooperate with the limiting groove 22 to fix the air duct 2, thereby improving the reliability of fixing the air duct 2.

[0059] In some embodiments, the air duct 2 includes a main pipe body 23 and a pipe joint 24, the main pipe body 23 is configured as a telescopic pipe, one end of the main pipe body 23 is fixed in the A-pillar body 1, the pipe joint 24 is connected to the other end of the main pipe body 23, and the air outlet 21 is formed in the pipe joint 24.

[0060] Specifically, the air blower pipe 2 is telescopic relative to the A-pillar body 1, so as to blow air to the user when the air blower pipe 2 is extended, and reduce the occupied space in the passenger compartment when the air blower pipe 2 is retracted. The air blower pipe 2 comprises a main pipe body 23 and a pipe joint 24. The main pipe body 23 is configured as a telescopic pipe, i.e. the air blower pipe 2 is extended or retracted relative to the A-pillar body 1 through the telescopic pipe. The air outlet 21 is formed on the pipe joint 24, i.e. the air blower pipe 2 blows air to the user through the pipe joint 24. One end of the main pipe body 23 is fixed in the A-pillar body 1. The pipe joint 24 is connected to the other end of the main pipe body 23, i.e. the main pipe body 23 is connected between the air conditioning air duct 3 and the pipe joint 24, so that the air flow in the air conditioning air duct 3 can flow along the main pipe body 23 to the pipe joint 24, and then the air blower pipe 2 can blow air to the user when the air blower pipe 2 is extended. The telescopic pipe can be configured as a bellows pipe.

[0061] In some embodiments, the A-pillar body 1 further comprises a connecting air duct 12 connected between the main pipe body 23 and the air conditioning air duct 3; and / or the A-pillar body 1 has a mounting trim panel 13, the mounting trim panel 13 has a movable opening 131, the pipe joint 24 is arranged in the movable opening 131, and the pipe joint 24 is provided with a shielding flange 241 adapted to shield the movable opening 131 when the pipe joint 24 is retracted into the A-pillar body 1.

[0062] Specifically, the main pipe body 23 is connected to the air conditioning air duct 3, so as to blow air to the user when the air blower pipe 2 is extended. The A-pillar body 1 further comprises a connecting air duct 12 connected between the main pipe body 23 and the air conditioning air duct 3, i.e. the air conditioning air duct 3, the connecting air duct 12 and the main pipe body 23 are sequentially connected, so that the air flow in the air conditioning air duct 3 can flow along the air conditioning air duct 3, the connecting air duct 12 and the main pipe body 23 to the pipe joint 24, and then the air blower pipe 2 can blow air to the user when the air blower pipe 2 is extended.

[0063] Furthermore, the A-pillar body 1 has a mounting trim panel 13, the mounting trim panel 13 has a movable opening 131, the pipe joint 24 is arranged in the movable opening 131, i.e. the mounting trim panel 13 is used for mounting the pipe joint 24, and the movable opening 131 has a certain length, so as to increase the contact area of the mounting trim panel 13 and the pipe joint 24, and then improve the reliability of mounting the pipe joint 24. Meanwhile, the pipe joint 24 is provided with a shielding flange 241, which is used for shielding the movable opening 131 when the pipe joint 24 is retracted into the A-pillar body 1, i.e. the shielding flange 241 is used for shielding the gap between the air blower pipe 2 and the mounting trim panel 13 when the air blower pipe 2 is retracted, so as to avoid the entry of dust and the like. The shielding flange 241 can be configured to extend outward along the radial direction of the pipe joint 24, so as to have a certain length, and then improve the reliability of shielding the gap between the air blower pipe 2 and the mounting trim panel 13.

[0064] The utility model discloses still propose a kind of vehicle.

[0065] According to the vehicle of the utility model embodiment, the air blower pipeline 2 is communicated with the air conditioner pipeline, so that the air blower pipeline 2 can selectively send air flow of different temperatures to the user to adapt to different needs of the user, and the user can reduce the burden of travel by carrying additional equipment, and the air blower pipeline 2 is telescopic, so that the air outlet 21 can be moved towards the position to be used to facilitate the use of the user when the air blower pipeline 2 is extended, and the space occupied by the air blower pipeline 2 in the passenger compartment can be reduced when the air blower pipeline 2 is retracted, thereby improving the satisfaction of the user.

[0066] In addition, it should be noted that the vehicle of the present application can have two air outlet modes, which are the conventional air supply mode of the air conditioning system and the air supply mode of the air blower pipeline 2. In the conventional air supply mode of the air conditioning system, the air conditioning air duct of the air conditioning system is communicated with the fixed air outlet and disconnected from the air blower pipeline 2, so that the air conditioning system can supply air to the passenger compartment through the fixed air outlet, and the air volume can be evenly distributed to each fixed air outlet to provide a comfortable environment in the vehicle. In the air supply mode of the air blower pipeline 2, the air conditioning air duct of the air conditioning system is disconnected from the fixed air outlet and connected to the air blower pipeline 2, so that the air conditioning system can supply air to the passenger compartment through the air blower pipeline 2, and both air outlet modes have three conditions of delivering hot air, cold air and natural air to meet different needs of the user.

[0067] In some embodiments, the vehicle further comprises an air conditioning air duct 3, and the A-pillar structure 100 is two, and the air blower pipeline 2 of the two A-pillar structures 100 is connected to the air conditioning air duct 3, respectively.

[0068] Specifically, the air conditioning air duct 3 is used to deliver air flow blown by the air conditioning system to different positions, the A-pillar structure 100 comprises the air blower pipeline 2, the air blower pipeline 2 is communicated with the air conditioning air duct 3, so that the air flow blown by the air conditioning system can enter the air blower pipeline 2 along the air conditioning air duct 3 to supply air to the user, and the A-pillar structure 100 is two, that is, the air blower pipeline 2 is also two, the two air blower pipelines 2 can be installed on the two A-pillar bodies 1, so that the user can select one of the air blower pipelines 2 to supply air according to the position where the user is located or the position where the user needs air, the length of the air blower pipeline 2 can be shortened, the setting cost can be reduced, and Figure 2 as shown, the two air blower pipelines 2 are connected to the air conditioning air duct 3, respectively, that is, the air in the air conditioning air duct 3 can enter the two air blower pipelines 2 along the air conditioning air duct 3, respectively, so that the air conditioning system can select to supply air from different air blower pipelines 2 to adapt to different needs of the user, thereby improving the satisfaction of the user.

[0069] In the description of the present specification, the description referring to the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0070] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. An A-pillar structure, characterized by, The A-pillar structure comprises: an A-pillar body; a blower pipe mounted on the A-pillar body, the blower pipe being in communication with an air conditioner air duct, the blower pipe being formed with a blowing port, the blower pipe being configured to be extendable and retractable so that the blowing port is selectively extendable out of the A-pillar body.

2. The A-pillar structure of claim 1, wherein The A-pillar body is provided with a triggering structure; wherein, when the blower pipe is extended out of the A-pillar body, the triggering structure is arranged to generate a triggering signal to cause the air conditioner air duct to send air to the blower pipe, and when the blower pipe is retracted into the A-pillar body, the triggering structure is arranged to generate a closing signal to cause the air conditioner air duct to stop sending air to the blower pipe.

3. The A-pillar structure of claim 2, wherein The triggering structure is configured to abut against the blower pipe, and the triggering structure is separated from the abutment against the blower pipe after the blower pipe is extended out of the A-pillar body and generates a triggering signal.

4. The A-pillar structure of claim 3, wherein The triggering structure comprises a trigger and a resilient member, the trigger being movably mounted on the A-pillar body, the movement direction of the trigger intersecting the movement direction of the blower pipe; wherein, the resilient member is connected to the trigger and is used to apply an elastic force to the trigger towards the movement of the blower pipe, and the trigger is adapted to abut against the outer peripheral wall of the blower pipe.

5. The A-pillar structure of claim 4, wherein The outer peripheral wall of the blower pipe is provided with a limiting groove, and the trigger is configured as a trigger ball, at least part of the trigger ball being adapted to extend into the limiting groove.

6. The A-pillar structure of claim 5, wherein The limiting groove is configured as an annular groove, and the limiting groove is arranged to extend along the circumference of the blower pipe.

7. The A-pillar structure of claim 1, wherein The blower pipe comprises a main pipe body and a pipe joint, the main pipe body being configured as an extendable pipe, one end of the main pipe body being fixed in the A-pillar body, the pipe joint being connected to the other end of the main pipe body, and the blowing port being formed in the pipe joint.

8. The A-pillar structure of claim 7, wherein The A-pillar body is further formed with a connecting air duct, the connecting air duct being connected between the main pipe body and the air conditioner air duct; and / or, the A-pillar body has a mounting trim plate, the mounting trim plate having a movable port, the pipe joint being arranged through the movable port, the pipe joint being provided with a shielding flange, the shielding flange being adapted to shield the movable port when the pipe joint is retracted into the A-pillar body.

9. A vehicle characterized by comprising: The A-pillar structure comprises:

10. The vehicle of claim 9, wherein, an A-pillar body; a blower pipe mounted on the A-pillar body, the blower pipe being in communication with an air conditioner air duct, the blower pipe being formed with a blowing port, the blower pipe being configured to be extendable and retractable so that the blowing port is selectively extendable out of the A-pillar body. The A-pillar body is provided with a triggering structure; wherein, when the blower pipe is extended out of the A-pillar body, the triggering structure is arranged to generate a triggering signal to cause the air conditioner air duct to send air to the blower pipe, and when the blower pipe is retracted into the A-pillar body, the triggering structure is arranged to generate a closing signal to cause the air conditioner air duct to stop sending air to the blower pipe. The triggering structure is configured to abut against the blower pipe, and the triggering structure is separated from the abutment against the blower pipe after the blower pipe is extended out of the A-pillar body and generates a triggering signal. The triggering structure comprises a trigger and a resilient member, the trigger being movably mounted on the A-pillar body, the movement direction of the trigger intersecting the movement direction of the blower pipe; wherein, the resilient member is connected to the trigger and is used to apply an elastic force to the trigger towards the movement of the blower pipe, and the trigger is adapted to abut against the outer peripheral wall of the blower pipe. The outer peripheral wall of the blower pipe is provided with a limiting groove, and the trigger is configured as a trigger ball, at least part of the trigger ball being adapted to extend into the limiting groove. The limiting groove is configured as an annular groove, and the limiting groove is arranged to extend along the circumference of the blower pipe. The blower pipe comprises a main pipe body and a pipe joint, the main pipe body being configured as an extendable pipe, one end of the main pipe body being fixed in the A-pillar body, the pipe joint being connected to the other end of the main pipe body, and the blowing port being formed in the pipe joint. The A-pillar body is further formed with a connecting air duct, the connecting air duct being connected between the main pipe body and the air conditioner air duct; and / or, the A-pillar body has a mounting trim plate, the mounting trim plate having a movable port, the pipe joint being arranged through the movable port, the pipe joint being provided with a shielding flange, the shielding flange being adapted to shield the movable port when the pipe joint is retracted into the A-pillar body. The A-pillar structure comprises: an A-pillar body; a blower pipe mounted on the A-pillar body, the blower pipe being in communication with an air conditioner air duct, the blower pipe being formed with a blowing port, the blower pipe being configured to be extendable and retractable so that the blowing port is selectively extendable out of the A-pillar body. The A-pillar body is provided with a triggering structure; wherein, when the blower pipe is extended out of the A-pillar body, the triggering structure is arranged to generate a triggering signal to cause the air conditioner air duct to send air to the blower pipe, and when the blower pipe is retracted into the A-pillar body, the triggering structure is arranged to generate a closing signal to cause the air conditioner air duct to stop sending air to the blower pipe.