CN211493594U - Rotating structure for controlling air outlet blades - Google Patents

Rotating structure for controlling air outlet blades Download PDF

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Publication number
CN211493594U
CN211493594U CN202021675892.2U CN202021675892U CN211493594U CN 211493594 U CN211493594 U CN 211493594U CN 202021675892 U CN202021675892 U CN 202021675892U CN 211493594 U CN211493594 U CN 211493594U
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China
Prior art keywords
blade
control rod
transfer line
spout
upper blade
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Active
Application number
CN202021675892.2U
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Chinese (zh)
Inventor
方园
徐锦标
陈坤
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Ningbo Junsheng Qunying Automobile System Co Ltd
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Ningbo Junsheng Qunying Automobile System Co Ltd
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Priority to CN202021675892.2U priority Critical patent/CN211493594U/en
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Publication of CN211493594U publication Critical patent/CN211493594U/en
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Abstract

The utility model discloses a rotating-structure for controlling air outlet blade, include the casing and set up the wind-guiding mechanism on the casing and control the mechanism, wind-guiding mechanism sets up upper blade and lower floor's blade on the casing including rotating, it includes control rod and transfer line to control the mechanism, the control rod rotate set up in on the upper blade, just the bottom of control rod is passed upper blade, the control rod passes the one end lateral wall of upper blade is equipped with the spout, transfer line one end peg graft in the spout, the transfer line other end with lower floor's blade transmission is connected, the control rod drives when the swing of upper blade, through the spout is relative the transfer line swings, when the control rod rotates, through the spout drives the transfer line rotates. The utility model discloses a vertical wind direction is adjusted in the swing of control rod, adjusts horizontal wind direction through the rotation of control rod, and it is convenient to adjust.

Description

Rotating structure for controlling air outlet blades
Technical Field
The utility model relates to the technical field of auto-parts, in particular to a rotating-structure for controlling air outlet blade.
Background
The air-conditioning outlet of the automobile is one of the necessary parts of the automobile, and in order to meet the temperature requirements of drivers with different heights, sizes and habits, the air-conditioning outlet rotates along the rotation center to obtain the habitual wind speed and temperature. The air outlets of the automobile air conditioners in the current market control the upper layer blades, the lower layer blades, the air doors and other components to realize wind direction adjustment.
Automobile air outlets on the current market are mostly adjusted in the transverse wind direction through transversely stirring a knob, and are adjusted in the longitudinal wind direction through longitudinally stirring the knob, so that the knob is large in moving range and inconvenient to adjust.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the prior art, the rotating structure for controlling the air outlet blades is provided, the longitudinal wind direction is adjusted through the swinging of the operating lever, the transverse wind direction is adjusted through the rotation of the operating lever, and the adjustment is convenient.
In order to achieve the above object, the present invention provides the following technical solutions.
The utility model provides a rotating-structure for controlling air outlet blade, includes the casing and sets up air guide mechanism and control the mechanism on the casing, air guide mechanism sets up the upper blade that is used for adjusting vertical wind direction and is used for adjusting the lower floor's blade of horizontal wind direction on the casing including rotating, control the mechanism and include control rod and transfer line, the control rod rotate set up in on the upper blade, just the bottom of control rod passes upper blade, the control rod passes the one end lateral wall of upper blade is equipped with the spout, transfer line one end peg graft in the spout, the transfer line other end with lower floor's blade transmission is connected, the control rod drives during the swing of upper blade, through the spout is relative the transfer line swings, during the control rod rotates, through the spout drives the transfer line rotates.
The utility model has the advantages that: the utility model discloses a rotating-structure, when the control rod swings, drives the upper blade and swings to realize vertical wind-guiding, because the cooperation of spout and transfer line for the control rod can the swing of relative transfer line, when the control rod swings, the action of transfer line unresponsive control rod works as when the control rod rotates, the control rod can upper blade rotate relatively through leading to the groove, through the cooperation of spout and transfer line, drives the transfer line and rotates, thereby makes lower floor's blade rotate, realizes horizontal wind-guiding, adjusts vertical wind direction through the swing of control rod, adjusts horizontal wind direction through the rotation of control rod, and the removal scope of control rod is little, and it is convenient to adjust.
As an improvement of the utility model, the transfer line pass through drive assembly with lower floor's blade transmission is connected, drive assembly including set up in initiative bevel gear on the transfer line, and with lower floor's blade connect and with the driven bevel gear that initiative bevel gear meshed mutually.
As an improvement of the present invention, the transmission rod is located at the rotation axis of the upper blade along with the connection point of the sliding groove.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is the internal structure schematic diagram of the utility model after the casing is removed.
Fig. 3 is a schematic view of the cooperation of the operating lever, the transmission rod and the driving bevel gear of the present invention.
In the figure, 1, a housing; 2. an upper layer blade; 3. a lower layer blade; 4. a joystick; 41. a chute; 5. a transmission rod; 6. a driving bevel gear; 7. a driven bevel gear.
Detailed Description
The invention is further explained by combining the attached drawings.
Referring to fig. 1 to 3, a rotating structure for controlling air outlet blades includes a housing 1, and an air guiding mechanism and a control mechanism which are arranged on the housing 1, wherein the air guiding mechanism includes an upper blade 2 which is rotatably arranged on the housing 1 and is used for adjusting a longitudinal wind direction and a lower blade 3 which is rotatably arranged on the housing 1 and is used for adjusting a transverse wind direction, the upper blade 2 is rotatably arranged in the housing 1 through a rotating shaft, the upper blade 2 can rotate up and down through the rotating shaft so as to adjust the longitudinal wind direction, the lower blade 3 is rotatably arranged in the housing 1 through the rotating shaft, and the lower blade 3 can rotate left and right through the rotating shaft so as to adjust the transverse wind direction.
The control mechanism comprises a control lever 4 and a transmission rod 5, wherein a through groove is arranged on the upper layer blade 2, the axis of the through groove is vertical to the rotation axis of the upper layer blade 2, the top end of the control lever 4 is positioned above the through groove of the upper layer blade 2, the bottom end of the control lever 4 penetrates through the through groove of the upper layer blade 2, the control lever 4 penetrates through the side wall of the bottom end of the upper layer blade 2 and is provided with a sliding groove 41, specifically, the bottom end of the control lever 4 is provided with a ball head, the sliding groove 41 is formed on the ball head, the extending direction of the sliding groove 41 is arranged in the same direction as the axis direction of the control lever 4, one end of the transmission rod 5 is inserted into the sliding groove 41, the other end of the transmission rod 5 is in transmission connection with the lower layer blade 3, and when the control lever 4 swings, when the operating lever 4 rotates, the side wall of the sliding groove 41 abuts against the transmission rod 5, and the transmission rod 5 is driven to rotate through the sliding groove 41.
Specifically, the transmission rod 5 includes a first section, a second section, a third section and a fourth section which are connected in sequence, wherein the first section is inserted into the sliding groove 41, the fourth section is in transmission connection with the lower blade 3, the second section is vertically connected with the first section, one end of the third section is vertically connected with the second section, and the other end of the third section is vertically connected with the fourth section.
The utility model discloses an air outlet structure, when control rod 4 swings, drives upper blade 2 and swings to realize vertical wind-guiding, because spout 41 and 5's cooperation of transfer line makes control rod 4 can 5 swings relatively, and when control rod 4 swung, transfer line 5 does not respond the action of control rod 4, works as when control rod 4 rotates, control rod 4 can upper blade 2 relatively rotate through leading to the groove, through spout 41 and 5's cooperation of transfer line, drives transfer line 5 and rotates, thereby makes lower floor's blade 3 rotate, realizes horizontal wind-guiding, adjusts vertical wind direction through the swing of control rod 4, adjusts horizontal wind direction through the rotation of control rod 4, and control rod 4's displacement range is little, and it is convenient to adjust.
As an improvement of the utility model, transfer line 5 pass through drive assembly with 3 transmissions of lower floor's blade are connected, drive assembly including set up in initiative bevel gear 6 on the transfer line 5, and with lower floor's blade 3 connect and with the driven bevel gear 7 of initiative bevel gear 6 engaged with, control rod 4 drives during 5 rotations of transfer line, drive initiative bevel gear 6 rotates, initiative bevel gear 6 with driven bevel gear 7 meshes to drive driven bevel gear 7 and rotate, driven bevel gear 7 drives lower floor's blade 3 again and rotates and realize horizontal wind-guiding regulation, and through the cooperation of initiative bevel gear 6 and driven bevel gear 7, can realize transmitting transfer line 5's running torque extremely lower floor's blade 3. In addition, in the embodiment, the transmission component can also be a gear rack, a cam connecting rod and the like. The lower blade 3 can also be of an air door structure, and the air outlet is opened and closed through rotation of the driving air door.
The connecting point of the transmission rod 5 and the sliding groove 41 is located on the rotating axis of the upper blade 2, so that the operating rod 4 drives the upper blade 2 to rotate, the operating rod 4 can rotate relative to the transmission rod 5 through the sliding groove 41, the transmission rod 5 can not be affected, and the transmission rod 5 and the sliding groove 41 are not easy to be blocked.
The above is only the preferred embodiment of the present invention, so all the equivalent changes or modifications made by the structure, features and principles in accordance with the claims of the present invention are included in the claims of the present invention.

Claims (4)

1. The utility model provides a rotating-structure for controlling air outlet blade which characterized in that: including the casing and set up air guide mechanism and control the mechanism on the casing, air guide mechanism sets up the upper blade that is used for adjusting vertical wind direction and is used for adjusting the lower floor's blade of horizontal wind direction on the casing including rotating, control the mechanism and include control rod and transfer line, the control rod rotate set up in on the upper blade, just the bottom of control rod is passed upper blade, the control rod passes the one end lateral wall of upper blade is equipped with the spout, transfer line one end peg graft in the spout, the transfer line other end with lower floor's blade transmission is connected, the control rod drives during the swing of upper blade, through the spout is relative the transfer line swing, when the control rod rotates, through the spout drives the transfer line rotates.
2. A rotation structure for controlling an air outlet blade according to claim 1, wherein: the transmission rod is in transmission connection with the lower layer blade through a transmission assembly.
3. A rotation structure for controlling an air outlet blade according to claim 2, wherein: the transmission assembly comprises a driving bevel gear arranged on the transmission rod and a driven bevel gear connected with the lower layer blade and meshed with the driving bevel gear.
4. A rotation structure for controlling an air outlet blade according to claim 1, wherein: and the connecting point of the transmission rod and the sliding chute is positioned on the rotating axis of the upper layer blade.
CN202021675892.2U 2020-08-13 2020-08-13 Rotating structure for controlling air outlet blades Active CN211493594U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021675892.2U CN211493594U (en) 2020-08-13 2020-08-13 Rotating structure for controlling air outlet blades

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021675892.2U CN211493594U (en) 2020-08-13 2020-08-13 Rotating structure for controlling air outlet blades

Publications (1)

Publication Number Publication Date
CN211493594U true CN211493594U (en) 2020-09-15

Family

ID=72404926

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021675892.2U Active CN211493594U (en) 2020-08-13 2020-08-13 Rotating structure for controlling air outlet blades

Country Status (1)

Country Link
CN (1) CN211493594U (en)

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