Gluing device for A column part

By designing an adhesive application device for A-pillar components, automated adhesive application is achieved using electronic control components and sensors, solving the problems of cumbersome and inefficient manual adhesive application and improving the accuracy and efficiency of adhesive application.

CN223888337UActive Publication Date: 2026-02-10CHANGCHUN CHANGRUI AUTOMOTIVE STAMPING PARTS CO LTD
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Patent Information

Application Number
CN202423166985.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2026-02-10
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The current method of applying adhesive to A-pillar components requires manual labor and sturdy fixation to prevent adhesive overflow, which is troublesome, prone to misalignment, labor-intensive, and inefficient.

Method used

Design a glue application device that includes a base, worktable, moving structure, fixed structure, limiting structure, positioning structure, supporting structure, adjusting structure, bearing structure, and glue application structure. Utilize electronic control components and sensors to achieve automated glue application, ensuring accuracy and efficiency.

Benefits of technology

It has enabled automated glue application to A-pillar components, reducing manpower consumption, avoiding glue overflow and misalignment, and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a gluing device for an A-pillar part, relates to the field of gluing of the A-pillar part, and solves the problems that the gluing of the existing A-pillar part needs to be completed manually, the A-pillar part needs to be stably fixed and the glue is prevented from overflowing, the gluing is troublesome and is easy to slantly coat, more manpower and time are needed, and the working efficiency is lower. The device is technically characterized by comprising a base and a workbench, wherein the workbench is mounted on the upper surface of the base; the moving structure is mounted on the lower surface of the base, and the moving structure is used for moving; the fixing structure is mounted on the lower surface of the base, and the fixing structure is used for fixing; and the limiting structure is installed on the upper surface of the workbench, and the limiting structure is used for limiting. The time consumption is reduced, the working efficiency is improved, the structure is relatively simple, and the use is convenient.
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Description

Technical Field

[0001] This utility model relates to the field of adhesive application technology for A-pillar components, and particularly to an adhesive application device for A-pillar components. Background Technology

[0002] With the development of automobile manufacturing technology and its ever-increasing performance requirements, adhesives and sealants, as an essential auxiliary material in automobile production, are being used more and more widely. The application of bonding technology in automobile manufacturing not only strengthens the vehicle structure, provides fastening and rust prevention, heat insulation and vibration reduction, and interior and exterior decoration, but it can also replace traditional processes such as welding and riveting for certain components, enabling the connection between the same or different materials, simplifying production processes, and optimizing product structure.

[0003] The existing method of applying adhesive to A-pillar components requires manual labor, and the components must be securely fixed to prevent adhesive overflow. This is cumbersome, prone to misalignment, and requires a lot of manpower and time, resulting in low work efficiency. Therefore, it is necessary to design an adhesive application device for A-pillar components to solve this problem. Utility Model Content

[0004] This invention aims to solve the technical problems of existing A-pillar component adhesive application, which requires manual operation, secure fixation of the A-pillar component to prevent adhesive overflow, is cumbersome, prone to misalignment, requires significant manpower and time, and has low work efficiency. The invention provides an adhesive application device for A-pillar components.

[0005] To solve the above-mentioned technical problems, the specific technical solution of this utility model is as follows:

[0006] An adhesive application device for A-pillar components includes:

[0007] A base and a worktable, wherein the worktable is mounted on the upper surface of the base;

[0008] A movable structure is mounted on the lower surface of the base and is used for movement;

[0009] A fixing structure is installed on the lower surface of the base and is used for fixing.

[0010] A limiting structure is mounted on the upper surface of the worktable and is used for limiting movement.

[0011] A positioning structure is mounted on the upper surface of a worktable and is used for positioning.

[0012] A support structure is mounted on the upper surface of the workbench and is used for support.

[0013] An adjustment structure is mounted on a support structure and is used for adjustment.

[0014] A load-bearing structure, which is mounted on an adjusting structure and is used to bear loads;

[0015] An adhesive coating structure is mounted on an adjustment structure and is used for applying adhesive.

[0016] Preferably, the moving structure includes: two pairs of omnidirectional wheels;

[0017] The two pairs of casters are mounted on the lower edge of the base.

[0018] Preferably, the fixing structure includes: two pairs of first fixing frames, two pairs of first electrically controlled telescopic rods, and two pairs of fixing plates;

[0019] Two pairs of first fixing brackets are installed at the lower surface edge of the base, each of the first electrically controlled telescopic rods is installed on the corresponding first fixing bracket, and the telescopic end of each of the first electrically controlled telescopic rods faces downward, and each fixing plate is installed on the telescopic end of the corresponding first electrically controlled telescopic rod.

[0020] Preferably, the limiting structure includes: a pair of limiting housings, a pair of second fixing frames, a pair of second electrically controlled telescopic rods, a pair of supporting fixing plates, a pair of suction cups, and a pair of first pressure sensors;

[0021] A pair of limiting housings are mounted on the upper surface of the worktable, a pair of second fixing brackets are mounted on the upper surface of the worktable, each second electrically controlled telescopic rod is mounted on the corresponding second fixing bracket, each supporting fixing plate is mounted on the telescopic end of the corresponding second electrically controlled telescopic rod, each suction cup is mounted on the corresponding supporting fixing plate, and each first pressure sensor is mounted inside the corresponding suction cup.

[0022] Preferably, the positioning structure includes: a supporting housing and a position sensor;

[0023] The support housing is mounted on the upper surface of the workbench, and the position sensor is mounted on the support housing.

[0024] Preferably, the support structure includes: a pair of portal frame support frames;

[0025] A pair of the aforementioned portal frame supports are mounted on the upper surface of the workbench.

[0026] Preferably, the adjustment structure includes: a pair of first electrically controlled slide rails, a pair of first electrically controlled sliders, a horizontal support plate, a second electrically controlled slide rail, a second electrically controlled slider, a third electrically controlled telescopic rod, and a support fixing block;

[0027] Each of the first electrically controlled slide rails is installed on a corresponding portal frame, each of the first electrically controlled sliders is installed on a corresponding first electrically controlled slide rail, the horizontal support plate is installed on a pair of first electrically controlled sliders, the second electrically controlled slide rail is installed on the horizontal support plate, the second electrically controlled slider is installed on the second electrically controlled slide rail, the third electrically controlled telescopic rod is installed on the second electrically controlled slider, and the support fixing block is installed on the telescopic end of the third electrically controlled telescopic rod.

[0028] Preferably, the bearing structure includes: an adhesive-coated bearing tank, a pair of first return springs, a pair of limit rods, a squeezing plate, an air inlet valve, an air release valve, a pressure gauge, and a transmission pipe;

[0029] The adhesive coating support tank is mounted on the upper surface of a horizontal support plate. A pair of first return springs are mounted inside the adhesive coating support tank. A pair of limit rods are mounted on the inner surface of the adhesive coating support tank. The extrusion plate is movably mounted on the pair of limit rods, and the extrusion plate matches the pair of first return springs. The air inlet valve is mounted on the adhesive coating support tank. The air vent valve is mounted on the adhesive coating support tank. The pressure gauge is mounted on the adhesive coating support tank. The delivery pipe is mounted on the adhesive coating support tank.

[0030] Preferably, the adhesive coating structure includes: an adhesive coating housing, a limiting housing, a sealing plate, a second return spring, an adhesive coating head, and a pair of second pressure sensors;

[0031] The adhesive coating housing is mounted on the support fixing block, the limiting housing is mounted inside the adhesive coating housing, the sealing plate is movably mounted on the limiting housing, the second reset spring is mounted inside the limiting housing and is connected to the sealing plate, the adhesive coating head is mounted on the sealing plate, and a pair of second pressure sensors are mounted inside the limiting housing.

[0032] Preferably, the workbench is equipped with a controller and a mains power interface.

[0033] This utility model has the following beneficial effects:

[0034] This adhesive applicator for A-pillar components allows for better and more convenient application of adhesive, reducing unnecessary hassle. It effectively secures A-pillar components, preventing adhesive overflow and misalignment, reducing manpower and time consumption, increasing work efficiency, and features a relatively simple structure and ease of use. Attached Figure Description

[0035] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0036] Figure 1This is a schematic diagram of the adhesive application device for A-pillar components according to the present invention;

[0037] Figure 2 This is a front view structural diagram of the adhesive application device for A-pillar components according to this utility model;

[0038] Figure 3 This is a front view of the adhesive application device for A-pillar components according to the present invention;

[0039] Figure 4 This is a top view of the adhesive application device for A-pillar components according to the present invention;

[0040] Figure 5 This is a schematic diagram of the adhesive coating structure of this utility model;

[0041] Figure 6 This is a partial schematic diagram of the adhesive coating structure of this utility model.

[0042] The reference numerals in the figure are:

[0043] Base 10, worktable 20, moving structure 30, fixed structure 40, limiting structure 50, positioning structure 60, supporting structure 70, adjusting structure 80, bearing structure 90, gluing structure 100, controller 110, mains power interface 120.

[0044] 31 omnidirectional wheels;

[0045] First fixed frame 41, first electrically controlled telescopic rod 42, fixed plate 43;

[0046] Limiting housing 51, second fixing frame 52, second electrically controlled telescopic rod 53, support fixing plate 54, suction cup 55, first pressure sensor 56;

[0047] Support housing 61, position sensor 62;

[0048] 71 portal frame support;

[0049] First electrically controlled slide rail 81, first electrically controlled slider 82, horizontal support plate 83, second electrically controlled slide rail 84, second electrically controlled slider 85, third electrically controlled telescopic rod 86, support fixing block 87;

[0050] 91. Adhesive-coating support tank; 92. First return spring; 93. Limiting rod; 94. Extrusion plate; 95. Inlet valve; 96. Exhaust valve; 97. Pressure gauge; 98. Transmission pipe.

[0051] The adhesive coating housing 101, the limiting housing 102, the sealing plate 103, the second return spring 104, the adhesive coating head 105, and the second pressure sensor 106 are included. Detailed Implementation

[0052] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0053] Please see Figure 1-6 A glue-applying device for A-pillar components includes: a base 10 and a worktable 20, the worktable 20 being mounted on the upper surface of the base 10; a movable structure 30, mounted on the lower surface of the base 10 and used for movement; a fixed structure 40, mounted on the lower surface of the base 10 and used for fixing; a limiting structure 50, mounted on the upper surface of the worktable 20 and used for limiting; and a positioning structure 60, which is installed... On the upper surface of the worktable 20, the positioning structure 60 is used for positioning; the support structure 70 is installed on the upper surface of the worktable 20 and is used for support; the adjustment structure 80 is installed on the support structure 70 and is used for adjustment; the bearing structure 90 is installed on the adjustment structure 80 and is used for bearing; and the glue application structure 100 is installed on the adjustment structure 80 and is used for applying glue.

[0054] The moving structure 30 on the lower surface of the base 10 is used for moving, the fixing structure 40 on the lower surface of the base 10 is used for fixing, the limiting structure 50 on the upper surface of the worktable 20 is used for limiting, the positioning structure 60 on the upper surface of the worktable 20 is used for positioning, the supporting structure 70 on the upper surface of the worktable 20 is used for supporting, the adjusting structure 80 on the supporting structure 70 is used for adjusting, the bearing structure 90 on the adjusting structure 80 is used for bearing, and the gluing structure 100 on the adjusting structure 80 is used for gluing.

[0055] The movable structure 30 includes two pairs of casters 31, which are mounted on the lower surface edge of the base 10.

[0056] The device can be moved to a first preset position by means of the casters 31 located at the edge of the lower surface of the base 10.

[0057] The fixing structure 40 includes: two pairs of first fixing frames 41, two pairs of first electrically controlled telescopic rods 42, and two pairs of fixing plates 43. The two pairs of first fixing frames 41 are installed at the lower surface edge of the base 10. Each first electrically controlled telescopic rod 42 is installed on the corresponding first fixing frame 41, and the telescopic end of each first electrically controlled telescopic rod 42 faces downward. Each fixing plate 43 is installed on the telescopic end of the corresponding first electrically controlled telescopic rod 42.

[0058] The device can be fixed in a first preset position by using the first electrically controlled telescopic rod 42 on the first fixed frame 41 in conjunction with the fixed plate 43.

[0059] The limiting structure 50 includes: a pair of limiting housings 51, a pair of second fixing frames 52, a pair of second electrically controlled telescopic rods 53, a pair of support fixing plates 54, a pair of suction cups 55, and a pair of first pressure sensors 56. The pair of limiting housings 51 are installed on the upper surface of the worktable 20, the pair of second fixing frames 52 are installed on the upper surface of the worktable 20, each second electrically controlled telescopic rod 53 is installed on the corresponding second fixing frame 52, each support fixing plate 54 is installed on the telescopic end of the corresponding second electrically controlled telescopic rod 53, each suction cup 55 is installed on the corresponding support fixing plate 54, and each first pressure sensor 56 is installed inside the corresponding suction cup 55. The positioning structure 60 includes: a support housing 61 and a position sensor 62. The support housing 61 is installed on the upper surface of the worktable 20, and the position sensor 62 is installed on the support housing 61.

[0060] The A-pillar component is limited by the limiting housing 51, and then the position sensor 62 on the upper surface of the supporting housing 61 senses the A-pillar component, so that the second electric telescopic rod 53 on the second fixing frame 52 drives the suction cup 55 to fix the A-pillar component. When the first pressure sensor 56 senses the pressure, the second electric telescopic rod 53 on the second fixing frame 52 stops.

[0061] The support structure 70 includes a pair of portal-shaped support frames 71, which are mounted on the upper surface of the workbench 20. The adjustment structure 80 includes a pair of first electrically controlled slide rails 81, a pair of first electrically controlled sliders 82, a horizontal support plate 83, a second electrically controlled slide rail 84, a second electrically controlled slider 85, a third electrically controlled telescopic rod 86, and a support fixing block 87. Each first electrically controlled slide rail 81 is mounted on a corresponding portal-shaped support frame 71, each first electrically controlled slider 82 is mounted on a corresponding first electrically controlled slide rail 81, the horizontal support plate 83 is mounted on a pair of first electrically controlled sliders 82, the second electrically controlled slide rail 84 is mounted on the horizontal support plate 83, the second electrically controlled slider 85 is mounted on the second electrically controlled slide rail 84, the third electrically controlled telescopic rod 86 is mounted on the second electrically controlled slider 85, and the support fixing block 87 is mounted on the telescopic end of the third electrically controlled telescopic rod 86.

[0062] Supported by a portal frame 71, the position of the glue applicator 105 on the glue applicator structure 100 is adjusted by the first electrically controlled slide rail 81, the first electrically controlled slider 82, the second electrically controlled slide rail 84, the second electrically controlled slider 85, and the third electrically controlled telescopic rod 86.

[0063] The supporting structure 90 includes: an adhesive coating support tank 91, a pair of first return springs 92, a pair of limit rods 93, a pressing plate 94, an air inlet valve 95, an air release valve 96, a pressure gauge 97, and a delivery pipe 98. The adhesive coating support tank 91 is installed on the upper surface of the horizontal support plate 83. The pair of first return springs 92 are installed inside the adhesive coating support tank 91. The pair of limit rods 93 are installed on the inner surface of the adhesive coating support tank 91. The pressing plate 94 is movably installed on the pair of limit rods 93, and the pressing plate 94 matches the pair of first return springs 92. The air inlet valve 95 is installed on the adhesive coating support tank 91. The air release valve 96 is installed on the adhesive coating support tank 91. The pressure gauge 97 is installed on the adhesive coating support tank 91. The delivery pipe 98 is installed on the adhesive coating support tank 91.

[0064] The adhesive is supported by the adhesive-bearing tank 91, and pressurized by the gas inlet valve 95, so that the adhesive is sent out through the delivery pipe 98. The adhesive is reset by the vent valve 96 in conjunction with the first reset spring 92, and the internal pressure is observed by the pressure gauge 97.

[0065] The adhesive application structure 100 includes: an adhesive application housing 101, a limiting housing 51, a sealing plate 103, a second return spring 104, an adhesive application head 105, and a pair of second pressure sensors 106. The adhesive application housing 101 is mounted on the support fixing block 87, the limiting housing 51 is mounted inside the adhesive application housing 101, the sealing plate 103 is movably mounted on the limiting housing 51, the second return spring 104 is mounted inside the limiting housing 51 and is connected to the sealing plate 103, the adhesive application head 105 is mounted on the sealing plate 103, and a pair of second pressure sensors 106 are mounted inside the limiting housing 51.

[0066] By pressing the glue applicator 105, the second pressure sensor 106 is activated, which opens the air intake valve 95 and the sealing plate 103, thereby cooperating with the adjustment structure 80 to apply glue.

[0067] The workbench 20 is equipped with a controller 110 and a mains power interface 120.

[0068] The power supply is connected to the mains interface 120 on the workbench 20, and the control is performed by the controller 110 on the workbench 20.

[0069] First, move the component to a suitable position using the casters 31. Then, connect the power supply via the AC interface 120 on the workbench 20 and turn on the controller 110 on the workbench 20. The controller 110 controls the fixing plate 43 on the first electrically controlled telescopic rod 42 to secure the component. Next, the adhesive is fed into the adhesive carrier tank 91. Then, the A-pillar component is placed at the limiting housing 51. The position sensor 62 on the support housing 61 detects the A-pillar component, and the controller 110 activates the second electrically controlled telescopic rod 53 on the second fixing frame 52 to drive the suction cup 55 to secure the A-pillar component. When the first pressure sensor 56 senses pressure, it stops and presses the corresponding button on the controller 110. This controls the first electrically controlled slide rail 81, the first electrically controlled slider 82, the second electrically controlled slide rail 84, the second electrically controlled slider 85, and the third electrically controlled telescopic rod 86 on the portal support frame 71 to make the glue applicator 105 contact the A-pillar components. When in contact, the glue applicator 105 is pressed, the sealing plate 103 contacts the second pressure sensor 106, and at the same time, the air inlet valve 95 opens to pressurize the glue applicator container 91, thereby causing the extrusion plate 94 to squeeze the glue, which is then applied through the glue applicator 105. This is very convenient.

[0070] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this invention.

Claims

1. A glue-applying device for A-pillar components, characterized in that, include: A base (10) and a worktable (20), the worktable (20) being mounted on the upper surface of the base (10); A movable structure (30) is mounted on the lower surface of the base (10) and is used for movement; A fixing structure (40) is installed on the lower surface of the base (10) and is used for fixing; A limiting structure (50) is mounted on the upper surface of the worktable (20) and is used for limiting; A positioning structure (60) is mounted on the upper surface of the worktable (20) and is used for positioning; A support structure (70) is mounted on the upper surface of the workbench (20) and is used for support; An adjustment structure (80) is mounted on a support structure (70) and is used for adjustment; A load-bearing structure (90) is mounted on an adjusting structure (80) and is used to bear loads; An adhesive coating structure (100) is mounted on an adjustment structure (80) and is used for applying adhesive.

2. The adhesive applicator for A-pillar components according to claim 1, characterized in that, The movable structure (30) includes: two pairs of casters (31); The two pairs of casters (31) are mounted on the lower surface edge of the base (10).

3. The adhesive applicator for A-pillar components according to claim 1, characterized in that, The fixing structure (40) includes: two pairs of first fixing frames (41), two pairs of first electrically controlled telescopic rods (42), and two pairs of fixing plates (43); Two pairs of first fixing frames (41) are installed at the lower surface edge of the base (10), each first electric telescopic rod (42) is installed on the corresponding first fixing frame (41), and the telescopic end of each first electric telescopic rod (42) is downward, and each fixing plate (43) is installed on the telescopic end of the corresponding first electric telescopic rod (42).

4. The adhesive applicator for A-pillar components according to claim 1, characterized in that, The limiting structure (50) includes: a pair of limiting housings (51), a pair of second fixing frames (52), a pair of second electrically controlled telescopic rods (53), a pair of supporting fixing plates (54), a pair of suction cups (55), and a pair of first pressure sensors (56); A pair of limiting housings (51) are installed on the upper surface of the workbench (20), a pair of second fixing frames (52) are installed on the upper surface of the workbench (20), each second electrically controlled telescopic rod (53) is installed on the corresponding second fixing frame (52), each supporting fixing plate (54) is installed on the telescopic end of the corresponding second electrically controlled telescopic rod (53), each suction cup (55) is installed on the corresponding supporting fixing plate (54), and each first pressure sensor (56) is installed inside the corresponding suction cup (55).

5. The adhesive applicator for A-pillar components according to claim 1, characterized in that, The positioning structure (60) includes: a support housing (61) and a position sensor (62); The support housing (61) is mounted on the upper surface of the workbench (20), and the position sensor (62) is mounted on the support housing (61).

6. The adhesive applicator for A-pillar components according to claim 4, characterized in that, The support structure (70) includes: a pair of portal frame support frames (71); A pair of the aforementioned portal frame supports (71) are mounted on the upper surface of the workbench (20).

7. The adhesive applicator for A-pillar components according to claim 6, characterized in that, The adjustment structure (80) includes: a pair of first electrically controlled slide rails (81), a pair of first electrically controlled sliders (82), a horizontal support plate (83), a second electrically controlled slide rail (84), a second electrically controlled slider (85), a third electrically controlled telescopic rod (86), and a support fixing block (87). Each of the first electrically controlled slide rails (81) is mounted on a corresponding portal frame (71), each of the first electrically controlled sliders (82) is mounted on a corresponding first electrically controlled slide rail (81), the horizontal support plate (83) is mounted on a pair of first electrically controlled sliders (82), the second electrically controlled slide rail (84) is mounted on the horizontal support plate (83), the second electrically controlled slider (85) is mounted on the second electrically controlled slide rail (84), the third electrically controlled telescopic rod (86) is mounted on the second electrically controlled slider (85), and the support fixing block (87) is mounted on the telescopic end of the third electrically controlled telescopic rod (86).

8. The adhesive applicator for A-pillar components according to claim 7, characterized in that, The load-bearing structure (90) includes: a glue-coated load-bearing tank (91), a pair of first return springs (92), a pair of limit rods (93), a squeezing plate (94), an air inlet valve (95), an air release valve (96), a pressure gauge (97), and a transmission pipe (98). The adhesive coating support tank (91) is installed on the upper surface of the horizontal support plate (83). A pair of first return springs (92) are installed inside the adhesive coating support tank (91). A pair of limit rods (93) are installed on the inner surface of the adhesive coating support tank (91). The extrusion plate (94) is movably installed on the pair of limit rods (93), and the extrusion plate (94) matches the pair of first return springs (92). The air inlet valve (95) is installed on the adhesive coating support tank (91). The air vent valve (96) is installed on the adhesive coating support tank (91). The pressure gauge (97) is installed on the adhesive coating support tank (91). The transfer pipe (98) is installed on the adhesive coating support tank (91).

9. The adhesive applicator for A-pillar components according to claim 8, characterized in that, The adhesive coating structure (100) includes: an adhesive coating housing (101), a limiting housing (102), a sealing plate (103), a second return spring (104), an adhesive coating head (105), and a pair of second pressure sensors (106). The adhesive coating housing (101) is mounted on the support fixing block (87), the limiting housing (51) is mounted inside the adhesive coating housing (101), the sealing plate (103) is movably mounted on the limiting housing (51), the second reset spring (104) is mounted inside the limiting housing (51) and is connected to the sealing plate (103), the adhesive application head (105) is mounted on the sealing plate (103), and a pair of second pressure sensors (106) are mounted inside the limiting housing (51).

10. The adhesive applicator for A-pillar components according to claim 1, characterized in that, The workbench (20) is equipped with a controller (110) and a mains power interface (120).