CN215398592U - Side window removes water smoke device and vehicle - Google Patents

Side window removes water smoke device and vehicle Download PDF

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Publication number
CN215398592U
CN215398592U CN202121724211.1U CN202121724211U CN215398592U CN 215398592 U CN215398592 U CN 215398592U CN 202121724211 U CN202121724211 U CN 202121724211U CN 215398592 U CN215398592 U CN 215398592U
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side window
blowing structure
blowing
air
vehicle body
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CN202121724211.1U
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Chinese (zh)
Inventor
李言辰
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Beiqi Foton Motor Co Ltd
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Beiqi Foton Motor Co Ltd
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Abstract

The side window water mist removing device comprises a blowing structure for blowing airflow to a side window of a vehicle body, an air source for supplying air to the blowing structure and an induced air pipe connected between the blowing structure and the induced air source, wherein the blowing structure is provided with an air outlet facing the side window, the blowing structure is telescopically arranged on the vehicle body so as to have an open state and a closed state, and in the open state, the blowing structure extends out of the vehicle body so as to expose the air outlet; in a closed state, the blowing structure is retracted to the vehicle body to shield the air outlet. Like this, when there is the rainwater on the side window, introduce the air current that the wind regime provided through the induced duct and blow out through it in the structure of blowing, the air current is used in the side window to can blow material such as rainwater behind the car or blow off, increase personnel's visuality in the car, solve the potential driving safety problem that the field of vision is obstructed and lead to well under the circumstances of not shutting down. Meanwhile, the device can be retracted under the condition of not using, and the shape and the power performance of the whole vehicle are not influenced.

Description

Side window removes water smoke device and vehicle
Technical Field
The disclosure relates to the technical field of vehicles, in particular to a side window water mist removing device and a vehicle.
Background
When the vehicle runs in rainy and snowy weather, rainwater and the like are hung outside the side window, the side view is easily interfered, particularly, the view of the outer rearview mirror is influenced, and the potential safety hazard of driving exists. At this time, the vehicle needs to be parked to perform manual wiping operation on rainwater outside the side window so as to remove substances such as water mist and the like which interfere with the visual field outside the side window. However, as the vehicle continues to travel, the problem continues to occur and cannot be effectively solved.
SUMMERY OF THE UTILITY MODEL
An object of the present disclosure is to provide a side window water mist removing device to solve the problem of the visibility of the side window being reduced in rainy and snowy days and improve the driving safety.
Another object of the present disclosure is to provide a vehicle equipped with the side window defogging device provided by the present disclosure.
In order to achieve the above object, the present disclosure provides a side window water mist removing device, comprising a blowing structure for blowing an air flow to a side window of a vehicle body, an air source for supplying air to the blowing structure, and an induced duct connected between the blowing structure and the air source, the blowing structure having an air outlet facing the side window, wherein the blowing structure is telescopically arranged on the vehicle body to have an open state and a closed state,
in the opening state, the blowing structure extends out of the vehicle body to expose the air outlet;
in the closed state, the blowing structure retracts to the vehicle body to shield the air outlet.
Optionally, the blowing structure is disposed in front of the side window and configured to be retractable in a width direction of the vehicle body, and the air outlet is located at a rear end of the blowing structure.
Optionally, the blowing structure is integrated with an exterior mirror assembly of the vehicle body, the exterior mirror assembly includes an exterior mirror body and a bracket for mounting the exterior mirror body on the vehicle body, and the blowing structure is telescopically disposed on a side of the bracket away from the vehicle body.
Optionally, in the closed state, an outer side face of the blowing structure is flush with an outer end face of the bracket.
Optionally, the side window water mist removing device further comprises a driving structure for driving the blowing structure to move telescopically.
Optionally, the driving structure comprises a linear drive for providing linear movement to the blowing structure, and an output end of the linear drive is connected to the blowing structure.
Optionally, the driving structure includes a motor capable of outputting a rotational motion, and a transmission structure is disposed between the motor and the blowing structure.
Optionally, the blowing structure includes a plurality of air guiding grooves, and the air guiding grooves are adjustably arranged in the air outlet.
Optionally, the side window water mist removing device further comprises a heating structure for heating the air flow entering the blowing structure.
According to a second aspect of the present disclosure, there is provided a vehicle comprising a side window water mist removing device according to the above.
Through above-mentioned technical scheme, when having the rainwater on the side window, introduce the air current that the wind regime provided through the induced duct and blow out through the structure of blowing in the air blast structure, the air current is used in on the side window to can blow materials such as rainwater behind the car or blow off, increase personnel's visibility in the car, solve the potential driving safety problem that the visual field of vision is obstructed and leads to well under the circumstances of not stopping. Meanwhile, the device has an opening state and a closing state, so that the device can be retracted under the condition of no need of use, and the shape and the power performance of the whole vehicle are not influenced.
Additional features and advantages of the disclosure will be set forth in the detailed description which follows.
Drawings
The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate embodiments of the disclosure and together with the description serve to explain the disclosure without limiting the disclosure. In the drawings:
fig. 1 is a schematic structural view of a side window water mist removing device according to an exemplary embodiment of the present disclosure;
fig. 2 is a schematic structural view of a blowing structure in a side window water mist removing device according to an exemplary embodiment of the present disclosure in a closed state;
fig. 3 is a schematic structural view of a blowing structure in a side window water mist removing device according to an exemplary embodiment of the present disclosure in an open state;
fig. 4 is a schematic diagram illustrating a blowing operation of a blowing structure in a side window water mist removing device according to an exemplary embodiment of the present disclosure;
fig. 5 is a schematic angle adjustment diagram of a blowing structure in a side window water mist removing device according to an exemplary embodiment of the present disclosure.
Description of the reference numerals
1-side window, 2-exterior rearview mirror body, 3-support, 10-blowing structure, 11-air outlet, 12-air guide groove, 20-air source and 30-induced duct.
Detailed Description
The following detailed description of specific embodiments of the present disclosure is provided in connection with the accompanying drawings. It should be understood that the detailed description and specific examples, while indicating the present disclosure, are given by way of illustration and explanation only, not limitation.
In the present disclosure, unless otherwise stated, terms of orientation such as "up", "down", "front", "rear", "left" and "right" used are defined according to the usage state of the vehicle, specifically, front and rear may refer to the traveling direction or the longitudinal direction of the vehicle, up and down may refer to the height direction of the vehicle, and left and right may refer to the width direction of the vehicle; "inner" and "outer" refer to the inner and outer contours of the respective components. Moreover, when the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated.
The side windows, namely the side windshields, can comprise side windows corresponding to the main driver and the assistant driver respectively, and the driving conditions at the side rear part of the vehicle can be observed through rearview mirrors outside the side windows corresponding to the main driver and the assistant driver respectively. The disclosed embodiment provides a side window water mist removing device which is used for removing water mist, ice, snow, frost and other substances on side windows of main driving and auxiliary driving so as to improve the visibility of the side rear parts of a vehicle.
Referring to fig. 1 and 4, the side window water mist removing apparatus may include a blowing structure 10 for blowing an air flow to the side window 1 of the vehicle body, an air source 20 for supplying air to the blowing structure 10, and an induced duct 30 connected between the blowing structure 10 and the air source 20, i.e., air may pass from the air source 20 to the blowing structure 10 through the induced duct 30. The blowing structure 10 can have the air outlet 11 towards the side window 1, and thus, the air in the blowing structure 10 can be blown to the side window 1 through the air outlet 11, so that substances such as rain and snow on the side window 1 can be blown away in an air guide mode, and the potential driving safety problem caused by the obstructed view field can be better solved under the condition of no parking. Wherein, referring to fig. 2 and 3, the blowing structure 10 is telescopically provided on the vehicle body to have an opened state and a closed state. In the open state, the blowing structure 10 may extend outward to the vehicle body to expose the air outlet 11; in the closed state, the blowing structure 10 can be retracted inward to the vehicle body to block the air outlet 11. Therefore, the blowing structure 10 can be controlled to be in a closed state in a non-working state so as to maintain the original vehicle shape.
The air source 20 and the induced draft tube 30 can be arranged on the vehicle body, and the side window water mist removing device can be automatically controlled by a driver through an instrument panel in the vehicle. When the blowing structure 10 is in an open state, the air source 20 starts to supply air to the blowing structure 10 through the induced draft tube 30, and the air outlet 11 is exposed to ensure that air flow is blown to the side window 1; when the blowing structure 10 is in the closed state, the air source 20 stops supplying air to the blowing structure 10, and the air outlet 11 is hidden in the vehicle body, so that impurities and the like can be prevented from entering the air outlet 11, and the normal use and the service life of the blowing structure 10 are influenced.
Through the technical scheme, when rainwater exists on the side window 1, the airflow provided by the air source 20 is introduced into the blowing structure 10 through the air introducing pipe 30 and blown out through the blowing structure 10, and the airflow acts on the side window 1, so that the rainwater and other substances can be blown to the rear of the vehicle or blown away, and the visibility of people in the vehicle is improved. The device structural design is simple, can operate at the driving in-process, avoids parkking, improves security and efficiency of commuting. Meanwhile, the device has an opening state and a closing state, so that the device can be retracted under the condition of no need of use, and the shape and the power performance of the whole vehicle are not influenced.
According to some embodiments, referring to fig. 3 and 5, the blowing structure 10 may include a wind guide groove 12, wherein the wind guide groove 12 is adjustably disposed in the wind outlet 11, so as to change the wind outlet direction of the wind guide groove 12 and meet the blowing angle requirement. The number of the air guide grooves 12 may be plural. Here, as an embodiment, a wind guide plate may be disposed in the wind outlet 11, and the wind guide groove 12 may be formed on the wind guide plate. The adjusting direction of the air guide groove 12 is not limited in the present disclosure, for example, referring to the cross arrow in fig. 5, the air guide groove 12 can be adjusted in the up-down direction, so that air can be blown to different positions of the side window 1 in the up-down direction; for example, the air guide groove 12 can be adjusted in a direction close to or far away from the side window 1, so that the adjustment of the wind sweeping area can be realized, namely, the wind blowing requirements of different area positions on the side window 1 are met.
Further, the blowing structure 10 may further include a driving member for adjusting the air outlet direction of the air guiding groove 12. The driving member may be, for example, a motor capable of outputting a rotational motion, so that the air guide duct 12 is driven by the motor to rotate to adjust the air outlet direction. The driving piece can be in signal connection with a vehicle ECU (electronic control unit), when the air outlet direction needs to be adjusted, a driver can operate the control button, the adjusting signal is transmitted to the vehicle ECU, and the vehicle ECU controls the driving piece to adjust the direction of the air guide groove 12.
According to some embodiments, referring to fig. 1 to 5, the blowing structure may be disposed in front of the side window 1, and the corresponding air outlet 11 may be located at a rear end of the blowing structure 10. Wherein, the blowing structure 10 may be configured to be stretchable in the width direction of the vehicle body. Thus, when the blowing structure 10 moves telescopically along the width direction of the vehicle body, the air outlet 11 can be exposed and hidden.
Here, as an embodiment, referring to fig. 1 to 5, the blower structure 10 may be integrated with an exterior rear view mirror assembly of a vehicle body, that is, the blower structure 10 may be mounted on the exterior rear view mirror assembly. Specifically, the exterior mirror assembly may include an exterior mirror body 2 and a bracket 3 for mounting the exterior mirror body 2 on the vehicle body, and the blower structure 10 may be telescopically disposed on a side of the bracket 3 away from the vehicle body in a width direction of the vehicle body. In the structure shown in fig. 1 to 5, the bracket 3 may be installed on a quarter window in front of the side window 1, and one end of the bracket 3 for connection with a vehicle body may be configured as a triangle panel matched in shape to the quarter window, and the exterior mirror body 2 may be installed at a lower position of the triangle panel, and the corresponding blower structure 10 may be telescopically installed at an upper position of the triangle panel. Meanwhile, the blowing structure 10 may be constructed as a block structure that can be embedded in a triangle, and the air outlet 11 may be opened at the rear end of the block structure to blow air toward the rear side window 1. The blowing structure 10 may be configured accordingly according to the structure and installation form of the rack 3, for example, the blowing structure 10 may also be configured to be telescopic in the up-down direction or the front-back direction. The position of the outlet 11 may be designed to face other positions, and the outlet 11 may be controlled to rotate to face the side window 1 by rotation or the like.
Further, referring to fig. 2, when the blowing structure 10 is in the closed state, the blowing structure 10 may be flush with the outer end surface of the bracket 3, which is beneficial to maintaining the original car shape and is also convenient for the telescopic control of the blowing structure 10. For example, in the case where the above-described blowing structure 10 is configured as a block structure, the outer side face of the block structure may be flush with the outer end face of the bracket 3.
According to some embodiments, the side window water mist removing device may further include a heating structure for heating the air flow entering the blowing structure 10, so that the blowing structure 10 may blow the hot air. This is particularly true in the case of frost, ice or snow on the side window 1, and the hot air flow can blow away the frost or ice and snow on the side window 1 after they have melted.
The present disclosure is not limited to the specific form of the wind source 20, and as an embodiment, the wind source 20 may be a fan or an air pump independent of the vehicle structure. As another embodiment, the air source 20 may be an air conditioning system of a vehicle, so that an air conditioning system of an original vehicle may be used, the implementation manner is simple and convenient, and the change amount of the original vehicle system is small. Therefore, the air supply of the air blowing structure 10 can be realized by controlling the starting of the air conditioning system, and the cold air or the hot air blown out by the air blowing structure 10 can be correspondingly realized by controlling the refrigeration or the heating of the air conditioning system, so that not only can an additional air source device be prevented from being installed on a vehicle body, but also the independent installation of the gas heating structure can be avoided.
In order to realize the telescopic movement of the blowing structure 10 relative to the vehicle body, the side window water mist removing device may further include a driving structure for driving the blowing structure 10 to move telescopically.
As an embodiment, the driving structure may include a linear driving member for providing a linear movement to the blowing structure 10, and an output end of the linear driving member may be connected to the blowing structure 10 to directly drive the blowing structure 10 to linearly move telescopically. For example, the driving structure may be a servo motor capable of outputting linear motion, or may be an electric telescopic rod.
As another embodiment, the driving structure may further include a motor capable of outputting a rotational motion, and a transmission structure is disposed between the rotational motor and the blowing structure 10, so that the rotational motion of the motor may be converted into a linear motion of the blowing structure 10. The transmission structure can be a screw nut, a gear rack and the like.
According to some embodiments, the side window water mist removing device may further include an air volume adjusting structure capable of controlling the air volume of the blowing structure 10, so as to increase the air volume under the condition that the rainwater on the side window 1 is more, and thus, the side window 1 can be rapidly removed.
In addition, the side window water mist removing device provided by the embodiment of the present disclosure may further include a control button disposed in the vehicle for controlling the opening or closing of the blowing structure 10 and the air source 20, and the control button may be disposed on the above-mentioned dashboard in the vehicle, for example. Wherein the control buttons, the blowing structure 10 and the air source 20 may be respectively in signal connection with the vehicle ECU.
Therefore, when the side window water mist removing device needs to be used, a driver can press a control button, the vehicle ECU receives a signal and transmits the signal to the driving structure, the blowing structure 10 is controlled by the driving structure to extend outwards, then the vehicle air conditioning system is controlled to be started, air flow from the air conditioning system is led into the blowing structure 10 through the induced draft pipe 30, and the air flow is blown to the side window 1 through the blowing structure 10. If hot air is needed, the original vehicle air conditioning system can be turned on to heat, and heated air flow is blown out through the blowing structure 10. When the side window water mist removing device is required to stop working, a driver can close the control button, a closing signal is transmitted to the driving structure and the original vehicle air conditioning system through the vehicle ECU, the original vehicle air conditioning system stops supplying air, and the driving structure controls the air blowing structure 10 to retract inwards and recover to a closing state.
The present disclosure also provides a vehicle, wherein the vehicle may include the above side window water mist removing device. The vehicle has all the benefits of the side window water mist removing device, and the details are not repeated.
The preferred embodiments of the present disclosure are described in detail with reference to the accompanying drawings, however, the present disclosure is not limited to the specific details of the above embodiments, and various simple modifications may be made to the technical solution of the present disclosure within the technical idea of the present disclosure, and these simple modifications all belong to the protection scope of the present disclosure.
It should be noted that, in the foregoing embodiments, various features described in the above embodiments may be combined in any suitable manner, and in order to avoid unnecessary repetition, various combinations that are possible in the present disclosure are not described again.
In addition, any combination of various embodiments of the present disclosure may be made, and the same should be considered as the disclosure of the present disclosure, as long as it does not depart from the spirit of the present disclosure.

Claims (10)

1. A side window water mist removing device is characterized by comprising a blowing structure (10) used for blowing air flow to a side window (1) of a vehicle body, an air source (20) used for supplying air to the blowing structure (10), and an induced air pipe (30) connected between the blowing structure (10) and the air source (20), wherein the blowing structure (10) is provided with an air outlet (11) facing the side window (1), the blowing structure (10) is telescopically arranged on the vehicle body so as to have an open state and a closed state,
in the open state, the blowing structure (10) extends out to the vehicle body to expose the air outlet (11);
in the closed state, the blowing structure (10) is retracted to the vehicle body to shield the air outlet (11).
2. The side window defogging device according to claim 1, wherein the blowing structure (10) is arranged in front of the side window (1) and configured to be telescopic in a width direction of the vehicle body, and the air outlet (11) is located at a rear end of the blowing structure (10).
3. Side window water mist removing device according to claim 2, characterized in that the blowing structure (10) is integrated in an exterior mirror assembly of the vehicle body, which exterior mirror assembly comprises an exterior mirror body (2) and a bracket (3) for mounting the exterior mirror body (2) on the vehicle body, the blowing structure (10) being telescopically arranged on a side of the bracket (3) remote from the vehicle body.
4. The side window defogging device according to claim 3, wherein in the closed state, an outer side surface of the blowing structure (10) is flush with an outer end surface of the bracket (3).
5. The side window defogging device according to claim 1, wherein the side window defogging device further comprises a driving structure for driving the stretching and contracting movement of the blowing structure (10).
6. The side window water mist removing device according to claim 5, wherein the driving structure comprises a linear driving member for providing linear movement to the blowing structure (10), and an output end of the linear driving member is connected with the blowing structure (10).
7. The side window water mist removing device according to claim 5, wherein the driving structure comprises a motor capable of outputting a rotating motion, and a transmission structure is arranged between the motor and the blowing structure (10).
8. The side window water mist removing device as recited in claim 1, wherein the blowing structure (10) comprises a plurality of air guiding grooves (12), and the air guiding grooves (12) are directionally adjustably arranged in the air outlet (11).
9. The side window defogging device according to claim 1, further comprising a heating structure for heating the airflow entering the blowing structure (10).
10. A vehicle characterized by comprising the side window water mist removing device according to any one of claims 1 to 9.
CN202121724211.1U 2021-07-27 2021-07-27 Side window removes water smoke device and vehicle Active CN215398592U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121724211.1U CN215398592U (en) 2021-07-27 2021-07-27 Side window removes water smoke device and vehicle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121724211.1U CN215398592U (en) 2021-07-27 2021-07-27 Side window removes water smoke device and vehicle

Publications (1)

Publication Number Publication Date
CN215398592U true CN215398592U (en) 2022-01-04

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121724211.1U Active CN215398592U (en) 2021-07-27 2021-07-27 Side window removes water smoke device and vehicle

Country Status (1)

Country Link
CN (1) CN215398592U (en)

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