Automatic gluing device for inner ring of automobile shock absorber pipe fitting

By designing an automated adhesive application device for the inner ring of automotive shock absorber components, the problem of low efficiency in manual adhesive application was solved, achieving highly efficient automated adhesive application, reducing enterprise costs, and improving adhesion strength and stability.

CN223571168UActive Publication Date: 2025-11-21JIANGSU CHANGBEICHEN MASCH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422968616.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-11-21
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

In existing technologies, the application of adhesive to the inner ring of automotive shock absorber components mainly relies on manual operation, which leads to low efficiency and increases labor costs for enterprises.

Method used

An automatic adhesive application device for the inner ring of automotive shock absorber tubes was designed, including mechanisms for feeding, transferring, shifting, applying adhesive, supplying adhesive, and curing. The adhesive application process is completed automatically by machine, utilizing technologies such as vibratory feeder feeding, vacuum suction cup shifting, and microwave drying to achieve automated adhesive application.

Benefits of technology

It improves glue application efficiency, reduces labor costs for enterprises, and enhances the strength and stability of the bond after glue application.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223571168U_ABST
    Figure CN223571168U_ABST
Patent Text Reader

Abstract

The utility model discloses an automatic gluing device for an inner ring of an automobile shock absorber pipe fitting, which is characterized in that a material transferring mechanism is connected to a rack, and two ends of the material transferring mechanism are respectively positioned above a discharging end of a feeding mechanism and a feeding end of a conveying mechanism; the material supporting mechanism is connected to the rack and at least comprises two material supporting rollers. The glue supply mechanism comprises a glue box, a glue dipping roller and an extrusion roller are rotationally connected above the glue box, the bottom end of the glue dipping roller is in contact with glue in the glue box, and the extrusion roller is in contact with the glue dipping roller; the transferring mechanism is located on the side portion of the machine frame, the glue spreading roller is connected to the transferring mechanism, and the transferring mechanism drives the glue spreading roller to move between the position above the glue dipping roller and the position above the material supporting roller. The curing mechanism is located at one end of the material transferring mechanism, and the conveying mechanism passes through the curing mechanism. Compared with the prior art, the automatic gluing machine has the advantages that the traditional manual gluing is replaced by the automatic gluing machine, so that time and labor are greatly saved, the working efficiency is greatly improved, and meanwhile, the labor cost of an enterprise is also reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to gluing device technical field especially relates to a kind of automatic gluing device of automobile shock absorber pipe fitting inner ring. BACKGROUND

[0002] As an important damping element, shock absorber has been widely used in various types of automobile structure, shock absorber can effectively reduce, absorb the vibration transmitted by road surface during the driving of automobile. The upper and lower ends of shock absorber are welded with round sleeve, which are used for connecting axle and frame respectively, and aluminum pipe fitting is interference fitted in the center hole of round sleeve, and shock absorbing rubber sleeve is embedded in pipe fitting. When pipe fitting is bonded with shock absorbing rubber sleeve, glue needs to be coated on the inner ring of pipe fitting, i.e. inner circular surface, to ensure the firmness of connection between pipe fitting and shock absorbing rubber sleeve.

[0003] In the prior art, pipe fitting inner ring is mostly coated with glue manually. This traditional gluing method is time-consuming and laborious, and the working efficiency is low, and the labor cost of enterprise is increased. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of automatic gluing device of automobile shock absorber pipe fitting inner ring, to replace traditional manual gluing with machine automatic gluing, which is quite time-saving and labor-saving, greatly improves the working efficiency, and also reduces the labor cost of enterprise, to solve the problems raised in the above background.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] An automatic gluing device of automobile shock absorber pipe fitting inner ring, comprising feeding mechanism, material rotating mechanism, material moving mechanism, material supporting mechanism, glue roller, glue supply mechanism, conveying mechanism and curing mechanism; material rotating mechanism is connected to rack, and both ends of material rotating mechanism are located above the outfeed end of feeding mechanism and the infeed end of conveying mechanism respectively; material supporting mechanism is connected to rack, and material supporting mechanism comprises at least two material supporting rollers; glue supply mechanism comprises glue box, and glue roller and extrusion roller are rotatably connected above glue box, the bottom end of glue roller is in contact with glue in glue box, and extrusion roller is in contact with glue roller; material moving mechanism is located at the side of rack, glue roller is connected to material moving mechanism, and material moving mechanism drives glue roller to move between above glue roller and above material supporting roller; curing mechanism is located at one end of material rotating mechanism, and conveying mechanism passes through curing mechanism.

[0007] Further improvement scheme of the utility model is that feeding mechanism comprises vibration disc feeder connected to base and linear feeder, and feeding channel is connected to linear feeder, and feeding channel is connected to linear feeder.

[0008] The further improved scheme of the utility model discloses, the material transfer mechanism includes the X axle electric screw rod sliding table module connected on the frame, the slide seat of X axle electric screw rod sliding table module is connected with the vertically arranged air cylinder, the power output end of air cylinder is connected with the support, and two vacuum chuck are connected on the support.

[0009] The further improved scheme of the utility model discloses, the material supporting roller is horizontally parallel rotationally connected on the frame through bearing, motor A is driven and is connected to one of material supporting rollers, and the axial center line of material supporting roller, impregnation roller and glue roller is parallel.

[0010] The further improved scheme of the utility model discloses, the glue box top end opening, the both ends of extruding roller and impregnation roller are rotationally connected on the glue box upper mouth through bearing, and the outer wall of glue box is rotationally connected with driving shaft, and the power output end of motor B is connected with first sprocket, and the driving shaft is connected with second sprocket, and one end of impregnation roller is connected with third sprocket, and first chain is transmissionally connected between first sprocket and second sprocket, and second chain is transmissionally connected between second sprocket and third sprocket;Driving gear is connected on the driving shaft, and driven gear is connected on extruding roller, and driving gear and driven gear are engaged.

[0011] The further improved scheme of the utility model discloses, the material transfer mechanism includes Z axle electric screw rod sliding table module, and Z axle electric screw rod sliding table module is connected on base, and Y axle electric screw rod sliding table module is connected on the slide seat of Z axle electric screw rod sliding table module, and supporting plate is connected on the slide seat of Y axle electric screw rod sliding table module, and glue roller is connected on the bottom end of supporting plate through bearing seat.

[0012] The further improved scheme of the utility model discloses, the roller body of impregnation roller, extruding roller and glue roller is rubber roller, and a layer of cotton cloth is connected on the outer circular surface of impregnation roller and glue roller.

[0013] The further improved scheme of the utility model discloses, the solidification mechanism is microwave drying machine, and the conveying mechanism is chain conveyor, and chain conveyor passes through the bore of microwave drying machine.

[0014] The utility model discloses an automobile shock absorber pipe fitting inner ring automatic glue coating device.

[0015] The utility model discloses an automobile shock absorber pipe fitting inner ring automatic glue coating device, which replaces traditional manual glue coating with machine automatic glue coating, saves time and effort, greatly improves work efficiency, and reduces labor cost of enterprises.

[0016] The utility model discloses an automobile shock absorber pipe fitting inner ring automatic glue coating device, which adopts vibration disc feeder and linear feeder automatic feeding, further improves work efficiency.

[0017] The utility model discloses an automobile shock absorber pipe fitting inner ring automatic glue coating device, which is convenient and efficient.

[0018] The automobile shock absorber pipe inner ring automatic gluing device of the utility model, add solidification mechanism, can remove part of water in glue after gluing, thereby enhancing the strength and stability of subsequent adhesion. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 It is the whole structure schematic view of the utility model.

[0020] Fig. 2 It is the local structure schematic view of the utility model.

[0021] Fig. 3 It is the overhead view of the glue supply mechanism of the utility model.

[0022] In the figure: 1 - feeding mechanism, 101 - vibrating disc feeder, 102 - linear feeder, 103 - feeding channel, 104 - base, 2 - transfer mechanism, 201 - Z-axis electric screw slide module, 202 - Y-axis electric screw slide module, 203 - base, 3 - material transfer mechanism, 301 - X-axis electric screw slide module, 302 - air cylinder, 303 - support, 304 - vacuum chuck, 4 - material supporting mechanism, 401 - material supporting roller, 402 - motor A, 5 - gluing roller, 501 - support plate, 502 - bearing seat, 6 - glue supply mechanism, 601 - glue box, 602 - impregnation roller, 603 - extrusion roller, 604 - driving shaft, 605 - first sprocket, 606 - second sprocket, 607 - third sprocket, 608 - first chain, 609 - second chain, 610 - driving gear, 611 - driven gear, 612 - motor B, 7 - conveying mechanism, 8 - solidification mechanism, 9 - pipe, 10 - rack. DETAILED DESCRIPTION

[0023] The utility model is further illustrated below in combination with the drawings and specific embodiments.

[0024] Embodiment 1: as Figs. 1-3As shown, an automatic glue coating device for an inner ring of a car shock absorber pipe includes a feeding mechanism 1, a moving mechanism 2, a material rotating mechanism 3, a material supporting mechanism 4, a glue coating roller 5, a glue supply mechanism 6, a conveying mechanism 7 and a curing mechanism 8. The material rotating mechanism 3 is connected to a rack 10, and the two ends of the material rotating mechanism 3 are located above the discharge end of the feeding mechanism 1 and the feeding end of the conveying mechanism 7, respectively. The material supporting mechanism 4 is connected to the rack 10, and the material supporting mechanism 4 includes at least two material supporting rollers 401. The glue supply mechanism 6 includes a glue box 601, and a glue dipping roller 602 and an extrusion roller 603 are rotatably connected above the glue box 601. The bottom end of the glue dipping roller 602 is in contact with glue in the glue box 601, and the extrusion roller 603 is in contact with the glue dipping roller 602. The moving mechanism 2 is located on the side of the rack 10, the glue coating roller 5 is connected to the moving mechanism 2, and the moving mechanism 2 drives the glue coating roller 5 to move between the glue dipping roller 602 and the material supporting roller 401. The curing mechanism 8 is located at one end of the material rotating mechanism 3, and the conveying mechanism 7 passes through the curing mechanism 8.

[0025] The feeding mechanism 1 includes a vibrating disc feeder 101 connected to a base 104 and a linear feeder 102. The vibrating disc feeder 101 is connected with a feeding channel 103, and the feeding channel 103 is connected to the linear feeder 102.

[0026] The material rotating mechanism 3 includes an X-axis electric screw rod sliding table module 301 connected to the rack 10. A vertical cylinder 302 is connected to the sliding seat of the X-axis electric screw rod sliding table module 301. A support 303 is connected to the power output end of the cylinder 302. Two vacuum suction cups 304 are connected to the support 303.

[0027] The material supporting rollers 401 are horizontally and parallel connected to the rack 10 through bearings. A motor A 402 is connected to one of the material supporting rollers 401. The axial center lines of the material supporting rollers 401, the glue dipping roller 602 and the glue coating roller 5 are parallel.

[0028] The glue box 601 has an open top end. The two ends of the extrusion roller 603 and the glue dipping roller 602 are rotatably connected to the top opening of the glue box 601 through bearings. A driving shaft 604 is rotatably connected to the outer wall of the glue box 601. The power output end of a motor B 612 is connected with a first sprocket 605. A second sprocket 606 is connected to the driving shaft 604. One end of the glue dipping roller 602 is connected with a third sprocket 607. The first sprocket 605 and the second sprocket 606 are transmissionally connected with a first chain 608. The second sprocket 606 and the third sprocket 607 are transmissionally connected with a second chain 609. The driving shaft 604 is connected with a driving gear 610. The extrusion roller 603 is connected with a driven gear 611. The driving gear 610 and the driven gear 611 are engaged.

[0029] The transferring mechanism 2 comprises a Z-axis electric screw slide module 201, the Z-axis electric screw slide module 201 is connected to a base 203, a Y-axis electric screw slide module 202 is connected to a sliding seat of the Z-axis electric screw slide module 201, a supporting plate 501 is connected to a sliding seat of the Y-axis electric screw slide module 202, and the glue roller 5 is connected to the bottom end of the supporting plate 501 through a bearing seat 502.

[0030] The roller bodies of the dipping roller 602, the extruding roller 603 and the glue roller 5 are rubber rollers, and a layer of cotton cloth is connected to the outer circumferential surface of the dipping roller 602 and the glue roller 5.

[0031] The curing mechanism 8 is a microwave drying machine, and the conveying mechanism 7 is a chain conveyor, and the chain conveyor passes through the barrel of the microwave drying machine.

[0032] The specific working principle of the utility model is as follows:

[0033] When working, the operator pours the pipe fittings 9 into the vibrating disc feeder 101, under the action of the vibrating disc feeder 101 and the linear feeder 102, the pipe fittings 9 are arranged in the feeding channel 103 in an orderly manner, the center line of the pipe fittings 9 is parallel to the axial center line of the supporting roller 401; the cylinder 302 moves above the first pipe fitting 9 and places the pipe fitting 9 between the two supporting rollers 401, the motor A 402 works to drive the supporting roller 401 to rotate under the action of friction, the motor B 612 works to drive the dipping roller 602 to dip glue from the glue box 601, and the extruding roller 603 extrudes the dipping roller 602 to ensure that the cotton cloth can dip appropriate amount of glue and not too much; under the cooperation of the Z-axis electric screw slide module 201 and the Y-axis electric screw slide module 202, the glue roller 5 contacts the dipping roller 602, and the glue is transferred to the glue roller 5; then the glue roller 5 moves above the supporting roller 401 and is inserted into the pipe fitting 9 and is tangent to the inner circumferential surface of the pipe fitting 9, the supporting roller 401 drives the pipe fitting 9 to rotate at least 360 degrees to ensure that the inner circumferential surface of the pipe fitting 9 is coated with glue; then the glue roller 5 is reset, the vacuum chuck 304 sucks the pipe fitting 9 again and places the pipe fitting 9 at the feeding end of the chain conveyor, and after the pipe fitting 9 passes through the barrel of the microwave drying machine, a part of water in the glue can be removed, thereby enhancing the strength and stability of subsequent adhesion; when the pipe fitting 9 reaches the discharging end of the chain conveyor, the operator or the mechanical hand takes down the pipe fitting 9 and transfers it to the bonding process.

[0034] The above-mentioned embodiments only illustrate the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and cannot limit the protection scope of the present application. Any equivalent transformation or modification according to the spirit and essence of the present application should be covered within the protection scope of the present application.

Claims

1. An automatic adhesive application device for the inner ring of an automotive shock absorber tube, characterized in that: The system includes a feeding mechanism (1), a transfer mechanism (2), a material transfer mechanism (3), a material support mechanism (4), a glue applicator (5), a glue supply mechanism (6), a conveying mechanism (7), and a curing mechanism (8); the material transfer mechanism (3) is connected to the frame (10), and its two ends are located above the discharge end of the feeding mechanism (1) and the inlet end of the conveying mechanism (7), respectively; the material support mechanism (4) is connected to the frame (10), and the material support mechanism (4) includes at least two material support rollers (401); the glue supply mechanism (6) includes a glue box (601), and the glue box (601) includes a glue box (601) and a glue supply mechanism (601). The upper part of the frame (10) is rotatably connected to the dip roller (602) and the extrusion roller (603). The bottom end of the dip roller (602) is in contact with the glue in the glue box (601), and the extrusion roller (603) is in contact with the dip roller (602). The transfer mechanism (2) is located on the side of the frame (10). The glue coating roller (5) is connected to the transfer mechanism (2). The transfer mechanism (2) drives the glue coating roller (5) to move between the dip roller (602) and the material support roller (401). The curing mechanism (8) is located at one end of the transfer mechanism (3). The conveying mechanism (7) passes through the curing mechanism (8).

2. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The feeding mechanism (1) includes a vibratory feeder (101) and a linear feeder (102) connected to the base (104). The discharge port of the vibratory feeder (101) is connected to a feeding channel (103), which is connected to the linear feeder (102).

3. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The material transfer mechanism (3) includes an X-axis electric screw slide module (301) connected to the frame (10). A vertically arranged cylinder (302) is connected to the slide of the X-axis electric screw slide module (301). A support (303) is connected to the power output end of the cylinder (302). Two vacuum suction cups (304) are connected to the support (303).

4. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The material support roller (401) is horizontally and rotatably connected to the frame (10) via bearings. The motor A (402) is connected to one of the material support rollers (401), and the axial center lines of the material support roller (401), the dip roller (602), and the coating roller (5) are parallel.

5. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The top of the glue box (601) is open. Both ends of the extrusion roller (603) and the dipping roller (602) are rotatably connected to the top of the glue box (601) via bearings. The outer wall of the glue box (601) is rotatably connected to the drive shaft (604). The power output end of the motor B (612) is connected to the first sprocket (605). The drive shaft (604) is connected to the second sprocket (606). One end of the dipping roller (602) is connected to the third sprocket (607). The first sprocket (605) and the second sprocket (606) are connected by a first chain (608). The second sprocket (606) and the third sprocket (607) are connected by a second chain (609). The drive shaft (604) is connected to the drive gear (610). The extrusion roller (603) is connected to the driven gear (611). The drive gear (610) and the driven gear (611) mesh.

6. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The transfer mechanism (2) includes a Z-axis electric screw slide module (201), which is connected to the base (203). A Y-axis electric screw slide module (202) is connected to the slide of the Z-axis electric screw slide module (201), and a support plate (501) is connected to the slide of the Y-axis electric screw slide module (202). The glue roller (5) is connected to the bottom end of the support plate (501) through the bearing seat (502).

7. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The roller bodies of the dip roller (602), the extrusion roller (603), and the coating roller (5) are all rubber rollers, and a layer of cotton cloth is connected to the outer circular surface of the dip roller (602) and the coating roller (5).

8. The automatic adhesive application device for the inner ring of an automotive shock absorber tube as described in claim 1, characterized in that: The curing mechanism (8) is a microwave dryer, and the conveying mechanism (7) is a chain conveyor that passes through the chamber of the microwave dryer.