CN220196862U - Frock is used in assembly of car air outlet assembly - Google Patents

Frock is used in assembly of car air outlet assembly Download PDF

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Publication number
CN220196862U
CN220196862U CN202321939869.3U CN202321939869U CN220196862U CN 220196862 U CN220196862 U CN 220196862U CN 202321939869 U CN202321939869 U CN 202321939869U CN 220196862 U CN220196862 U CN 220196862U
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China
Prior art keywords
blade
connecting rod
installation mechanism
air outlet
fixed frame
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CN202321939869.3U
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Chinese (zh)
Inventor
乐挺
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Cixi Happy Automotive Parts Co ltd
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Cixi Happy Automotive Parts Co ltd
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Priority to CN202321939869.3U priority Critical patent/CN220196862U/en
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Abstract

The utility model relates to a frock is used in assembly of car air outlet, including support frame and blade shutdown mechanism and the connecting rod installation mechanism of setting on the support frame, blade shutdown mechanism and connecting rod installation mechanism's front portion is provided with blade fixing base and blade fixing base can reciprocate between blade shutdown mechanism and connecting rod installation mechanism, and connecting rod installation mechanism's upper portion is provided with fixed frame installation mechanism, be provided with connecting rod, blade and fixed frame on connecting rod installation mechanism, blade fixing base and the fixed frame installation mechanism respectively, be connected and pass through controller control action between blade shutdown mechanism, connecting rod installation mechanism and the fixed frame installation mechanism. The application can drive the blade through the fixing base and assemble in blade shutdown mechanism department, connecting rod installation mechanism and fixed frame installation mechanism reciprocating motion, and assembly accuracy is high and convenient operation.

Description

Frock is used in assembly of car air outlet assembly
Technical Field
The application relates to the technical field of automobile accessories, in particular to a tool for assembling an automobile air outlet assembly.
Background
With rapid development of the automobile industry and continuous improvement and promotion of living conditions of people, automobiles become one of the indispensable transportation means for people to travel. The central air outlet on the automobile is an important part for providing air conditioning air for users, and the riding experience of the users is directly affected.
Most of automobile air outlets are subjected to injection molding, and the structure of the automobile air outlets mainly comprises a mounting frame, blades, connecting rods and a shifting fork, wherein the blades are required to be rotationally connected in the mounting frame during mounting, and meanwhile, the blades are required to be connected through the connecting rod transmission, so that the shifting fork can drive the blades to rotate simultaneously. The current air outlet assembly is mostly assembled through the mode of manual installation, and is inefficiency, and waste time and energy and assembly precision are not high, can't fully satisfy modern industrial production's actual demand.
Disclosure of Invention
The application provides a convenient operation, assembly precision and frock for automobile air outlet assembly that assembly efficiency is high.
The application provides a frock is used in assembly of car air outlet assembly adopts following technical scheme:
the utility model provides a frock is used in assembly of car air outlet, includes support frame and blade shutdown mechanism and the connecting rod installation mechanism of setting on the support frame, and blade shutdown mechanism and connecting rod installation mechanism's front portion is provided with blade fixing base and can reciprocate between blade shutdown mechanism and connecting rod installation mechanism, and connecting rod installation mechanism's upper portion is provided with fixed frame installation mechanism, be provided with connecting rod, blade and fixed frame on connecting rod installation mechanism, blade fixing base and the fixed frame installation mechanism respectively, be connected and pass through controller control action between blade shutdown mechanism, connecting rod installation mechanism and the fixed frame installation mechanism.
Preferably, the blade fixing seat comprises a linear guide rail and a fixed block, the linear guide rail is provided with a servo motor, the servo motor drives the fixed block to move, the servo motor is electrically connected with the controller, the fixed block is provided with a plurality of vertical grooves, the shapes of the grooves are matched with those of the blades, and the heights of the grooves are smaller than those of the blades.
Preferably, the blade cutting mechanism is used for cutting off the injection molding connection part between the blades, the blade cutting mechanism comprises a cutting component and a pressing component, the cutting component is positioned on the side surface of the blade fixing seat and is provided with a plurality of cutters, and the pressing component is positioned above the cutting component and is provided with grooves corresponding to the shapes of the blades.
Preferably, a through hole is formed in the support frame at a position corresponding to the blade cutting mechanism, and a waste box is arranged below the through hole.
Preferably, the connecting rod installation mechanism comprises a pushing cylinder and a pressing block connected to the pushing cylinder, a groove corresponding to the shape of the connecting rod is formed in the pressing block, and the connecting rod is connected with the blade through a spherical buckle.
Preferably, the fixing frame installation mechanism comprises a vertical cylinder and a positioning block connected to the vertical cylinder, a suction nozzle is arranged on the side face of the positioning block and can adsorb the fixing frame, and the fixing frame and the blade are installed and fixed through a connecting shaft.
Preferably, the blade cutting mechanism, the connecting rod installation mechanism and the fixed frame installation mechanism are all provided with in-place detection sensors, and the in-place detection sensors are electrically connected with the controller.
Preferably, the support frame is provided with a discharge groove, the discharge groove is positioned in front of the blade fixing seat, and the number of the discharge grooves is two, and the connecting rods and the blades are respectively arranged in the two discharge grooves.
Preferably, a control switch electrically connected with the controller is arranged on the supporting frame, and the control switch can control the blade fixing seat to move.
Preferably, the control switch is connected to the support frame in a sliding manner through a sliding rail, and an extension line is connected to the control switch.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the blade cutting mechanism, the connecting rod mounting mechanism and the fixed frame mounting mechanism are arranged on the support frame, and the movable blade fixing seat is arranged between the blade cutting mechanism and the connecting rod mounting mechanism, so that the blade fixing seat can drive the blade to move to the blade cutting mechanism, the injection molded joint is cut off, each blade is separated, then the blade is moved to the connecting rod mounting mechanism to press-fit the connecting rod with the blade, and finally the mounting frame is matched with the blade through the fixed frame mounting mechanism, so that the assembly is completed, the assembly accuracy is high, and the operation is convenient; meanwhile, the blade cutting mechanism, the connecting rod installation mechanism and the fixed frame installation mechanism are controlled by the controller, so that the degree of automation is high, and the assembly efficiency is high.
2. The linear guide rail and the fixed block are arranged on the blade fixing seat, and meanwhile, the linear guide rail and the fixed block are driven to move by the servo motor, so that the control is convenient; be provided with the recess on the fixed block, can be fixed the blade through the recess, can expose the upper portion of blade simultaneously, make things convenient for subsequent cutting off and installing the connecting rod.
3. Through setting up cutting off subassembly and compressing tightly the subassembly, compressing tightly and setting up corresponding recess on the subassembly, can fix a position the blade, avoid the blade skew when cutting off; through set up the through-hole that corresponds with blade shutdown mechanism and set up the waste bin in the through-hole below on the support frame, can be with the garbage collection of cutting off, guarantee table surface clean, do benefit to continuous operation.
4. The material discharging groove is arranged on the support frame, and the connecting rod and the blade are prevented from being arranged in the material discharging groove, so that the taking operation is facilitated; the control switch electrically connected with the controller is arranged on the support frame, so that the blade fixing seat can be controlled to move through the control switch, the control can be adjusted and controlled according to the installation progress, and the operation is convenient; meanwhile, the control switch is in sliding connection with the support frame, so that the position can be conveniently adjusted, and the operation is convenient.
Drawings
Fig. 1 is a front view of a fixture for assembling an air outlet in an embodiment of the application.
Fig. 2 is a perspective view of a tooling for assembling an air outlet in an embodiment of the present application.
Fig. 3 is a schematic structural diagram of the air outlet according to the embodiment of the present application, with the baffle removed for assembly.
Fig. 4 is an enlarged partial schematic view at a in fig. 3.
Fig. 5 is a partially enlarged schematic view at B in fig. 3.
Fig. 6 is a schematic structural view of a fixing frame mounting mechanism in the embodiment of the present application.
Reference numerals illustrate: 1. a support frame; 101. a discharge groove; 2. a blade cutting mechanism; 201. cutting off the assembly; 202. a compression assembly; 3. a link installation mechanism; 301. a push-out cylinder; 302. briquetting; 4. a blade fixing seat; 401. a linear guide rail; 402. a fixed block; 5. a fixed frame mounting mechanism; 501. a vertical cylinder; 502. a positioning block; 503. a suction nozzle; 6. a connecting rod; 7. a blade; 8. a fixed frame; 9. an in-place detection sensor; 10. and controlling the switch.
Detailed Description
The present application is described in further detail below with reference to the accompanying drawings.
The embodiment of the application discloses frock is used in assembly of car air outlet assembly.
Referring to fig. 1 to 6, a tool for assembling an air outlet assembly of an automobile comprises a supporting frame 1, and a blade cutting mechanism 2 and a connecting rod mounting mechanism 3 which are arranged on the supporting frame 1, wherein blade fixing seats 4 are arranged at the front parts of the blade cutting mechanism 2 and the connecting rod mounting mechanism 3, the blade fixing seats 4 can reciprocate between the blade cutting mechanism 2 and the connecting rod mounting mechanism 3, a fixed frame mounting mechanism 5 is arranged at the upper part of the connecting rod mounting mechanism 3, connecting rods 6, blades 7 and fixed frames 8 are respectively arranged on the connecting rod mounting mechanism 3, the blade fixing seats 4 and the fixed frame mounting mechanism 5, the blade cutting mechanism 2, the connecting rod mounting mechanism 3 and the fixed frame mounting mechanism 5 are electrically connected, and in-place detection sensors 9 are respectively arranged on the blade cutting mechanism 2, the connecting rod mounting mechanism 3 and the fixed frame mounting mechanism 5, and the in-place detection sensors 9 are electrically connected with a controller and control actions of all mechanisms through the controller; specifically, a discharge groove 101 is formed in the support frame 1, the discharge grooves 101 are positioned in front of the blade fixing seats 4, two discharge grooves 101 are formed, and a connecting rod 6 and a blade 7 are respectively arranged in the two discharge grooves 101; the position of the support frame 1 corresponding to the blade cutting mechanism 2 is provided with a through hole, a waste bin is arranged below the through hole, the support frame 1 is provided with a control switch 10 electrically connected with a controller, the control switch 10 can control the blade fixing seat 4 to move, the control switch 10 is connected to the support frame 1 through a sliding rail in a sliding manner, an extension line is connected to the control switch 10, and the control switch 10 can be dragged to move, so that the operation is convenient.
Referring to fig. 1 to 4, the blade fixing base 4 includes a linear guide 401 and a fixing block 402, the linear guide 401 is provided with a servo motor and the servo motor drives the fixing block 402 to move, the servo motor is electrically connected with a controller, the fixing block 402 is provided with a plurality of vertical grooves, the shapes of the grooves are matched with those of the blades 7, the heights of the grooves are smaller than those of the blades 7, specifically, the blades 7 in the embodiment are in a salix leaf shape, the upper end and the lower end of the blades 7 are provided with buckles matched with the fixing frames 8, one sides of the blades 7 close to each other are provided with grooves which can be clamped with the connecting rods 6, the upper ends of the adjacent blades 7 are provided with injection molding connecting pieces, and the injection molding connecting pieces can be abutted to the side surfaces of the fixing block 402.
Referring to fig. 1 to 4, the blade cutting mechanism 2 is used for cutting off the injection molding connection part between the blades 7, the blade cutting mechanism 2 comprises a cutting assembly 201 and a compacting assembly 202, the cutting assembly 201 is positioned on the side surface of the blade fixing seat 4 and is provided with a plurality of cutters, the cutters are connected with a driving mechanism, the driving mechanism can drive the cutters to extend to the side surface of the blade fixing seat 4 to cut off the injection molding connection part, and the cut injection molding connection part falls into a waste box through a through hole; the pressing component 202 is located above the cutting component 201 and is provided with a groove corresponding to the shape of the blade 7 on the pressing component 202, specifically, the pressing component 202 in the embodiment comprises a driving cylinder and a fixed pressing block connected to the output end of the driving cylinder, the lower end of the fixed pressing block is provided with a groove corresponding to the blade, the blade 7 on the blade fixing seat 4 is pressed tightly through the groove during pressing, then the cutting component 201 cuts off an injection molding connecting piece on the side face of the blade fixing seat 4, the cutting component 201 and the pressing component 202 in the embodiment are both provided with in-place detection sensors 9, and in-place detection sensors 9 are respectively arranged on the side face of the cutter and the side face of the driving cylinder.
Referring to fig. 1 and 5, the link installation mechanism 3 includes a push-out cylinder 301 and a pressing block 302 connected to the push-out cylinder 301, a groove corresponding to the shape of the link 6 is provided on the pressing block 302, the link 6 is connected with the blade 7 through a spherical buckle, specifically, the link 7 in this embodiment is clamped on the side surface of the blade 6, and the connection point of the link 7 and the blade 6 is located on the side surface of the connection point of the blade 6 and the installation frame 8.
Referring to fig. 1 and 6, the fixing frame mounting mechanism 5 includes a vertical cylinder 501 and a positioning block 502 connected to the vertical cylinder 501, a suction nozzle 503 is provided on a side surface of the positioning block 502, and the suction nozzle 503 can adsorb the fixing frame 8, and the fixing frame 8 and the blade 1 are mounted and fixed by a connecting shaft.
When the device is used, the blades 6 and the connecting rods 7 are placed in the material placing groove 101 on the support frame 1, the blades 6 at the moment are injection molding finished products, injection molding connecting pieces are arranged between the adjacent blades 6, the blade fixing seat 4 is located between the material placing groove 101 and the connecting rod mounting mechanism 3 in an initial state, workers place the groups of blades 6 in grooves on the fixing block 402, place the connecting rods 6 in grooves of the pressing blocks 302, mount the fixing frame 8 on the positioning blocks 502, brush grease, then press the control switch 10, the control switch 10 controls the servo motor to act through the controller, the fixing block 402 is driven to move on the linear guide rail 401, when the fixing block 402 moves to the position of the blade cutting mechanism 2, the in-place detection sensor 9 on the cutting assembly 202 detects signals, the controller controls the servo motor to stop acting, meanwhile, the pressing assembly 202 is pressed and fixed with the blades 7 on the fixing block 402, after the position detection sensor 9 on the pressing assembly 202 detects that a driving cylinder is pressed down to a position, the controller controls the extension on the cutting assembly 201, the end part of the cutter can extend to the side of the fixing block 402 to cut off the blades 6, and the injection molding connecting pieces are connected in the injection molding connecting pieces are completed.
After the cutting process is finished, the controller controls the cutting assembly 201 and the pressing assembly 202 to reset, then controls the servo motor to drive the fixed block 402 to move to the connecting rod installation mechanism 3, the side of the pressing block 302 is provided with an in-place detection sensor 9, when the fixed block 402 is detected to be in place, the controller controls the pushing cylinder 301 to extend the pressing block 302 and the connecting rod 6 on the pressing block 302 to the side of the fixed block 402, the connecting rod 6 is fixed on the blade 7 under the pressure of the pushing cylinder 301, and the installation of the connecting rod 6 is finished.
After the connecting rod 6 is installed, the controller controls the connecting rod installation mechanism 3 to reset, meanwhile, the controller controls the fixed frame installation mechanism 5 to act, the in-place detection sensor 9 is arranged on the side face of the vertical cylinder 501, the controller controls the vertical cylinder 501 to extend out, the positioning block 502 is driven to be pressed down until the fixed frame 8 on the positioning block 502 is in place, then the suction nozzle 503 is controlled to be loosened, and the vertical cylinder 501 is reset, so that the whole assembly process is completed.
In the operation process, a worker can adjust the position of the control switch 10 according to the requirement, so that the operation is convenient, and meanwhile, the assembly progress can be controlled according to the personal efficiency, so that the operation is convenient; in actual operation, the staff can put into blade 7 on fixed block 402 earlier, then presses control switch 10, and connecting rod 6 and mounting frame 8 are again gone into to fixed block 402 removal back, convenient operation improves assembly efficiency.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (10)

1. Frock is used in assembly of car air outlet assembly, its characterized in that: including support frame (1) and blade shutdown mechanism (2) and connecting rod installation mechanism (3) of setting on support frame (1), the front portion of blade shutdown mechanism (2) and connecting rod installation mechanism (3) is provided with blade fixing base (4) and blade fixing base (4) can reciprocate between blade shutdown mechanism (2) and connecting rod installation mechanism (3), and the upper portion of connecting rod installation mechanism (3) is provided with fixed frame installation mechanism (5), be provided with connecting rod (6), blade (7) and fixed frame (8) on connecting rod installation mechanism (3), blade shutdown mechanism (2), connecting rod installation mechanism (3) and fixed frame installation mechanism (5) respectively, and through controller control action between the electricity.
2. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the blade fixing seat (4) comprises a linear guide rail (401) and a fixing block (402), wherein a servo motor is arranged on the linear guide rail (401) and drives the fixing block (402) to move, the servo motor is electrically connected with the controller, a plurality of vertical grooves are formed in the fixing block (402), the shapes of the grooves are matched with those of the blades (7), and the heights of the grooves are smaller than those of the blades (7).
3. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the blade cutting mechanism (2) is used for cutting off the injection molding connection part between the blades (7), the blade cutting mechanism (2) comprises a cutting component (201) and a pressing component (202), the cutting component (201) is located on the side face of the blade fixing seat (4) and is provided with a plurality of cutters, and the pressing component (202) is located above the cutting component (201) and is provided with grooves corresponding to the shapes of the blades (7) on the pressing component (202).
4. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the support frame (1) is provided with a through hole corresponding to the position of the blade cutting mechanism (2), and a waste box is arranged below the through hole.
5. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the connecting rod mounting mechanism (3) comprises a pushing-out cylinder (301) and a pressing block (302) connected to the pushing-out cylinder (301), a groove corresponding to the shape of the connecting rod (6) is formed in the pressing block (302), and the connecting rod (6) is connected with the blade (7) through a spherical buckle.
6. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the fixed frame installation mechanism (5) comprises a vertical air cylinder (501) and a positioning block (502) connected to the vertical air cylinder (501), a suction nozzle (503) is arranged on the side face of the positioning block (502), the suction nozzle (503) can adsorb the fixed frame (8), and the fixed frame (8) and the blade (7) are installed and fixed through a connecting shaft.
7. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the blade cutting mechanism (2), the connecting rod installation mechanism (3) and the fixed frame installation mechanism (5) are respectively provided with an in-place detection sensor (9), and the in-place detection sensors (9) are electrically connected with the controller.
8. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the blade fixing device is characterized in that a discharge groove (101) is formed in the support frame (1), the discharge groove (101) is located in front of the blade fixing seat (4), and two discharge grooves (101) are respectively provided with the connecting rod (6) and the blades (7).
9. The tooling for assembling an automobile air outlet assembly according to claim 1, wherein: the support frame (1) is provided with a control switch (10) electrically connected with the controller, and the control switch (10) can control the blade fixing seat (4) to move.
10. The tooling for assembling the automobile air outlet assembly according to claim 9, wherein: the control switch (10) is connected to the support frame (1) in a sliding manner through a sliding rail, and an extension line is connected to the control switch (10).
CN202321939869.3U 2023-07-24 2023-07-24 Frock is used in assembly of car air outlet assembly Active CN220196862U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321939869.3U CN220196862U (en) 2023-07-24 2023-07-24 Frock is used in assembly of car air outlet assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321939869.3U CN220196862U (en) 2023-07-24 2023-07-24 Frock is used in assembly of car air outlet assembly

Publications (1)

Publication Number Publication Date
CN220196862U true CN220196862U (en) 2023-12-19

Family

ID=89146150

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321939869.3U Active CN220196862U (en) 2023-07-24 2023-07-24 Frock is used in assembly of car air outlet assembly

Country Status (1)

Country Link
CN (1) CN220196862U (en)

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