Automobile glass gluing equipment
Through the automotive glass glue coating equipment driven by servo motors, the problems of uneven and low efficiency of manual glue coating are solved, and automated uniform glue coating and efficient glue coating are achieved.
Patent Information
- Application Number
- CN202421499869.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-06-28
AI Technical Summary
In the prior art, the process of automotive glass coating relies on manual operations, resulting in uneven colloid coating, inconsistent thickness, low working efficiency and high labor intensity.
The automotive glass glue coating equipment driven by servo motors is used to realize automatic rotation of the automotive glass and edge glue coating through the cooperation of the clamping components and spraying components. The servo motor provides power to make the glass glue coated during the rotation process to ensure that the colloid is evenly applied.
It improves the efficiency of automotive glass glue coating, reduces the labor intensity of manual operation, and ensures uniformity and consistency of glue coating.
Smart Images

Figure CN223128516U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass gluing, and particularly relates to an automobile glass gluing device. Background Art
[0002] At present, with the improvement of people's living standards, automobiles have become a means of transportation for people's daily use.
[0003] During the processing of automobile glass, a colloid needs to be applied to the outer peripheral circle thereof. In automobile manufacturing enterprises, the gluing process is carried out manually. Due to the technical differences among operators, the width and thickness of the colloid applied on the glass are uneven, the coating quality varies greatly, the work efficiency is low, and the labor intensity of workers is high. Therefore, we propose an automobile glass gluing device to solve the above problems. Content of the Utility Model
[0004] The purpose of the utility model is to provide an automobile glass gluing device for solving the problems existing in the background art.
[0005] To achieve the above technical purpose, the technical scheme adopted by the utility model is as follows:
[0006] An automobile glass gluing device includes a gluing column. An upper portion of the outer side of the gluing column is fixedly provided with a C-shaped bracket. A clamping and fixing assembly is arranged between the C-shaped bracket and the gluing column. A spraying assembly is arranged inside the concave portion of the C-shaped bracket.
[0007] The clamping and fixing assembly includes a plurality of support suction cups. An installation cavity is formed inside the gluing column. A servo motor is installed inside the installation cavity. An upper end of the servo motor is fixedly provided with a rotating rod. A support disk is rotatably arranged in a middle portion of an upper end of the gluing column. One end of the rotating rod passing through the gluing column is fixedly connected to a middle portion of a lower end of the support disk. Each of the support suction cups is uniformly distributed at an edge position of an upper end of the support disk. A sliding rod is slidably arranged at an upper end of the C-shaped bracket. The sliding rod is located directly above a middle portion of an upper end of the support disk. A pressing suction cup is fixedly provided at a lower end of the sliding rod. A limiting assembly matching with the sliding rod is arranged inside an upper side of the C-shaped bracket.
[0008] Further, the limiting component includes two limiting blocks. A number of uniformly distributed limiting grooves are formed on the outer side of the sliding rod. A cavity is formed and clamped inside the upper side of the C-shaped bracket. Two stoppers are arranged inside the cavity, and the two stoppers are located on the front and back sides of the sliding rod. Limiting rods are slidably arranged in the middle of the two stoppers respectively. The two limiting blocks are fixedly connected to the opposite ends of the two limiting rods respectively, and the two limiting blocks are clamped inside the limiting grooves. Springs are arranged between the corresponding limiting blocks and the stoppers. Pull ropes are arranged at the opposite ends of the two limiting rods. The pull rope at the rear passes through the right end of the C-shaped bracket and is fixedly connected to the pull rope at the front to form a connection block. A connection rope is arranged at the front end of the connection block, and a pull ring is arranged at the lower end of the connection rope.
[0009] Further, a bearing ring is arranged at the right end of the C-shaped bracket, and the bearing ring is sleeved on the outer side of the pull rope at the rear.
[0010] Further, the spraying component includes a material storage tank, which is fixedly connected to the upper side of the sunken rear wall of the C-shaped bracket. A feed pipe is communicated with the lower side of the right end of the material storage tank. A servo telescopic rod is installed at the upper end of the C-shaped bracket. A push plate is hermetically slidably arranged inside the material storage tank. The output end of the servo telescopic rod extending into the material storage tank is fixedly connected to the upper end of the push plate. A discharge pipe is communicated with the lower side of the material storage tank. A chute is formed on the lower wall of the sunken part of the C-shaped bracket. A slider is slidably arranged inside the chute. A spraying head is arranged at one end of the discharge pipe passing through the slider.
[0011] Further, a positioning block is slidably arranged inside the chute. An elastic member is arranged between the positioning block and the slider. A locking component is arranged at the rear end of the positioning block.
[0012] Further, the locking component includes a bolt. A locking block is fixedly arranged at the rear end of the positioning block. A locking hole is formed at the upper end of the locking block. A number of uniformly distributed positioning holes are formed on the lower wall of the chute. The bolt is arranged inside the locking hole and any one of the positioning holes.
[0013] Further, a support rod is arranged at the lower end of the C-shaped bracket. A connecting base is jointly arranged between the glue application column and the lower end of the support rod.
[0014] In the present utility model, by starting the servo motor, the rotating rod, the support disc, the pressing suction cup, the sliding rod, each support suction cup and the automotive glass are driven to rotate in sequence. During the rotation of the automotive glass, relying on the spraying component on the C-shaped bracket, the edge position of the automotive glass can be subjected to glue application operation, which not only improves the efficiency of glue application for the automotive glass, but also reduces the working intensity of the staff. Description of the Drawings
[0015] The present utility model can be further illustrated by the non-limiting embodiments given in the attached drawings.
[0016] Figure 1 It is a schematic structural diagram of a glue coating device for automotive glass according to the present utility model;
[0017] Figure 2 It is a schematic diagram of the multi-local sectional structure of a glue coating device for automotive glass according to the present utility model;
[0018] Figure 3 is Figure 2 an enlarged structural diagram of part A in
[0019] Figure 4 is Figure 2 an enlarged structural diagram of part B in
[0020] Figure 5 is Figure 2 an enlarged structural diagram of part C in
[0021] The main component symbols are explained as follows:
[0022] Glue coating column 100, C-shaped bracket 101, support suction cup 102, installation cavity 103, servo motor 104, rotating rod 105, support disk 106, sliding rod 107, pressing suction cup 108, limiting block 200, limiting groove 201, cavity 202, blocking block 203, limiting rod 204, spring 205, pulling rope 206, connecting rope 207, pulling ring 208, bearing ring 209, storage tank 300, feeding pipe 301, servo telescopic rod 302, pushing plate 303, discharging pipe 304, sliding groove 305, sliding block 306, positioning block 400, elastic member 401, plug pin 402, positioning hole 403, support rod 404, connecting base 405. Specific embodiments
[0023] In order to enable those skilled in the art to better understand the present utility model, the technical solutions of the present utility model will be further described below in conjunction with the attached drawings and embodiments.
[0024] Embodiment 1:
[0025] As Figures 1 - 2 shown, a glue coating device for automotive glass includes a glue coating column 100. The upper part of the outer side of the glue coating column 100 is fixed with a C-shaped bracket 101. A clamping and fixing assembly is provided between the C-shaped bracket 101 and the glue coating column 100. A spraying assembly is provided inside the concave part of the C-shaped bracket 101;
[0026] The clamping and fixing assembly includes a number of support suction cups 102. An installation cavity 103 is formed inside the glue application column 100. A servo motor 104 is installed inside the installation cavity 103. A rotating rod 105 is fixed to the upper end of the servo motor 104. A support disc 106 is rotatably provided in the middle of the upper end of the glue application column 100. One end of the rotating rod 105 passing through the glue application column 100 is fixedly connected to the middle of the lower end of the support disc 106. Each support suction cup 102 is evenly distributed at the edge position of the upper end of the support disc 106. A sliding rod 107 is slidably provided at the upper end of the C-shaped bracket 101. The sliding rod 107 is directly above the middle of the upper end of the support disc 106. A pressing suction cup 108 is fixed to the lower end of the sliding rod 107. A limiting component matching the sliding rod 107 is provided inside the upper side of the C-shaped bracket 101.
[0027] The servo motor 104 provides a power source, and the rotating rod 105 transmits the power generated by the servo motor 104. The glue application column 100 can not only install the servo motor 104 to provide protection for the servo motor 104, but also install the support disc 106 to rotate. The C-shaped bracket 101 can install the sliding rod 107, the spraying assembly and the limiting component. Each support suction cup 102 and the pressing suction cup 108 can cooperate to better clamp and fix the automotive glass, preventing the glass from shifting during glue application and affecting the glue application effect of the automotive glass. The sliding rod 107 can move the pressing suction cup 108 up and down, and the movement of the sliding rod 107 can be restricted by the limiting component, so as to facilitate placing the automotive glass on the upper ends of the support suction cups 102.
[0028] When applying glue to the automotive glass: First, release the limiting component to facilitate lifting the pressing suction cup 108 and the sliding rod 107, thereby increasing the distance between the pressing suction cup 108 and each support suction cup 102, and facilitating the staff to place the automotive glass on the upper ends of the support suction cups 102. Then, rely on the pressing suction cup 108 to press and clamp the upper end of the automotive glass to facilitate subsequent processing of the automotive glass. Then start the servo motor 104. The servo motor 104 drives the rotating rod 105 to rotate, the rotating rod 105 drives the support disc 106 to rotate, the support disc 106 drives each support suction cup 102 to rotate, and each support suction cup 102 drives the automotive glass to rotate. Finally, during the rotation of the automotive glass, the spraying assembly can perform glue application processing on the edge position of the automotive glass, thereby improving the glue application efficiency and reducing the labor intensity of the staff.
[0029] In this embodiment, by starting the servo motor 104, the power is transmitted to the automotive glass, enabling the automotive glass to rotate. In this way, during the rotation of the automotive glass, the spraying assembly can perform glue application operations on the automotive glass, not only increasing the glue application efficiency of the automotive glass, but also reducing the work intensity of the staff.
[0030] Embodiment Two:
[0031] On the basis of the first embodiment, other components on the gluing device will be further described. For example, Figures 2 - 5 As shown, the limiting component includes two limiting blocks 200. A number of uniformly distributed limiting grooves 201 are formed on the outer side of the sliding rod 107. A cavity 202 is clamped inside the upper side of the C-shaped bracket 101. Two stoppers 203 are arranged inside the cavity 202, and the two stoppers 203 are located on the front and rear sides of the sliding rod 107. Two limiting rods 204 are slidably arranged in the middle of the two stoppers 203. The two limiting blocks 200 are respectively fixedly connected to the opposite ends of the two limiting rods 204, and the two limiting blocks 200 are clamped inside the limiting grooves 201. A spring 205 is arranged between the corresponding limiting block 200 and the stopper 203. Pulling ropes 206 are arranged at the opposite ends of the two limiting rods 204. The pulling rope 206 at the rear passes through the right end of the C-shaped bracket 101 and is fixedly connected to the pulling rope 206 at the front with a connecting block. A connecting rope 207 is arranged at the front end of the connecting block, and a pull ring 208 is arranged at the lower end of the connecting rope 207.
[0032] A bearing ring 209 is arranged at the right end of the C-shaped bracket 101, and the bearing ring 209 is sleeved on the outer side of the pulling rope 206 at the rear.
[0033] The spraying component includes a storage tank 300. The storage tank 300 is fixedly connected to the upper side of the sunken rear wall of the C-shaped bracket 101. A feed pipe 301 is communicated with the lower side of the right end of the storage tank 300. A servo telescopic rod 302 is installed at the upper end of the C-shaped bracket 101. A push plate 303 is hermetically slid in the storage tank 300. The output end of the servo telescopic rod 302 extending into the storage tank 300 is fixedly connected to the upper end of the push plate 303. A discharge pipe 304 is communicated with the lower side of the storage tank 300. A chute 305 is formed on the lower wall of the sunken part of the C-shaped bracket 101. A slider 306 is slid in the chute 305. A spraying head is arranged at one end of the discharge pipe 304 passing through the slider 306.
[0034] A positioning block 400 is slid in the chute 305. An elastic member 401 is arranged between the positioning block 400 and the slider 306. A locking component is arranged at the rear end of the positioning block 400.
[0035] The locking component includes a bolt 402. A locking block is fixed at the rear end of the positioning block 400. A locking hole is formed in the upper end of the locking block. A number of uniformly distributed positioning holes 403 are formed on the lower wall of the chute 305. The bolt 402 is arranged in the locking hole and any one of the positioning holes 403.
[0036] A support rod 404 is arranged at the lower end of the C-shaped bracket 101. A connecting base 405 is jointly arranged between the gluing column 100 and the lower end of the support rod 404.
[0037] In this embodiment, when the pull ring 208 is pulled downward, the pull ring 208 drives the connecting rope 207 and the connecting block to move downward together. At the same time, the pull rope 206 will also move forward. Meanwhile, under the pulling force of the pull rope 206, the two limiting rods 204 will move relatively, not only compressing the two springs 205, but also separating the two limiting blocks 200 from the inside of the limiting groove 201. In this way, the staff can push the sliding rod 107 and the pressing suction cup 108 to move up and down, facilitating the placement and removal of the car glass. When the pull ring 208 is released, the compressed spring 205 will return to its original state and push the limiting rod 204 and the limiting block 200 into the corresponding limiting groove 201, thus restricting the sliding rod 107 and ensuring that the sliding rod 107 does not move.
[0038] The bearing ring 209 can keep the rear pull rope 206 and the front pull rope 206 consistent, avoiding inconsistent movement of the two pull ropes 206 and affecting the restriction of the sliding rod 107.
[0039] The glue can be conveyed into the storage tank through the feed pipe 301. By starting the servo telescopic rod 302, the output shaft of the servo telescopic rod 302 will slowly push the push plate 303 downward, so that the glue is extruded from the spraying head through the discharge pipe 304, thus realizing the operation of applying glue to the car glass.
[0040] During the rotation of the car glass, the car glass will come into contact with the slider 306 first. At this time, the irregular car glass will push the slider 306 backward and compress the elastic member 401, so that the position of the spraying head relative to the car glass remains unchanged, and the car glass can always be coated with glue. The sprayed glue will be smoothed by the flat plates on both sides of the spraying head, making the thickness of the glue applied to the car glass uniform. The telescopic elastic member 401 can ensure that the edges of the irregular car glass are all coated.
[0041] According to the specifications of the car glass to be coated, the staff can pull out the pin 402, move the positioning block 400 and the slider 306. When it reaches the appropriate position, insert the pin 402 into the lock hole and the corresponding positioning hole 403, so as to adapt to the glue coating operation of car glasses of different specifications.
[0042] The support rod 404 can share the weight of the C-shaped bracket 101. At the same time, the glue coating column 100 is connected together through the connecting base 405, making the equipment more stable when placed on the ground.
[0043] The above embodiments are only used to exemplarily illustrate the principles and effects of the present invention, rather than to limit the present invention. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or changes completed by those with ordinary knowledge in the technical field without departing from the spirit and technical ideas disclosed by the present invention should still be covered by the claims of the present invention.
Claims
1. An automotive glass gluing device, comprising a gluing column (100), characterized in that: On the upper part of the outer side of the glue - applying column (100), a C - shaped bracket (101) is fixed. A clamping and fixing assembly is arranged between the C - shaped bracket (101) and the glue - applying column (100). A spraying assembly is arranged inside the concave part of the C - shaped bracket (101). The clamping and fixing assembly includes a number of support suction cups (102). An installation cavity (103) is formed inside the glue - applying column (100). A servo - motor (104) is installed inside the installation cavity (103). A rotating rod (105) is fixed to the upper end of the servo - motor (104). A support disk (106) is rotatably arranged in the middle of the upper end of the glue - applying column (100). One end of the rotating rod (105) passing through the glue - applying column (100) is fixedly connected to the middle of the lower end of the support disk (106). Each of the support suction cups (102) is evenly distributed at the edge position of the upper end of the support disk (106). A sliding rod (107) is slidably arranged at the upper end of the C - shaped bracket (101). The sliding rod (107) is directly above the middle of the upper end of the support disk (106). A pressing suction cup (108) is fixed to the lower end of the sliding rod (107). A limiting assembly matching the sliding rod (107) is arranged inside the upper side of the C - shaped bracket (101).
2. The automotive glass gluing device according to claim 1, wherein: The limiting assembly includes two limiting blocks (200). A number of evenly - distributed limiting grooves (201) are formed on the outer side of the sliding rod (107). A cavity (202) is clamped inside the upper side of the C - shaped bracket (101). Two stop blocks (203) are arranged inside the cavity (202). And the two stop blocks (203) are arranged on the front and rear sides of the sliding rod (107). A limiting rod (204) is slidably arranged in the middle of each of the two stop blocks (203). The two limiting blocks (200) are respectively fixedly connected to the opposite ends of the two limiting rods (204). And the two limiting blocks (200) are clamped inside the limiting grooves (201). A spring (205) is arranged between the corresponding limiting block (200) and the stop block (203). A pull - rope (206) is arranged at the opposite end of each of the two limiting rods (204). The pull - rope (206) at the rear side passes through the right end of the C - shaped bracket (101) and is fixedly connected to the pull - rope (206) at the front side to form a connection block. A connection rope (207) is arranged at the front end of the connection block. A pull - ring (208) is arranged at the lower end of the connection rope (207).
3. The automotive glass gluing device according to claim 2, wherein: A bearing ring (209) is arranged at the right end of the C - shaped bracket (101). The bearing ring (209) is sleeved on the outer side of the pull - rope (206) at the rear side.
4. The automotive glass gluing device according to claim 1, characterized in that: The spraying assembly includes a storage tank (300), the storage tank (300) is fixedly connected to the upper side of the concave rear wall of the C-shaped bracket (101), a feed pipe (301) is communicated with the lower side of the right end of the storage tank (300), a servo telescopic rod (302) is installed at the upper end of the C-shaped bracket (101), a push plate (303) is hermetically slid in the storage tank (300), the output end of the servo telescopic rod (302) extending into the storage tank (300) is fixedly connected to the upper end of the push plate (303), a discharge pipe (304) is communicated with the lower side of the storage tank (300), a chute (305) is formed in the lower wall of the concave part of the C-shaped bracket (101), a slider (306) is slid in the chute (305), and a spraying head is arranged at one end of the discharge pipe (304) passing through the slider (306).
5. The automotive glass gluing device according to claim 4, characterized in that: A positioning block (400) is slidably arranged in the chute (305), an elastic member (401) is arranged between the positioning block (400) and the slider (306), and a locking assembly is arranged at the rear end of the positioning block (400).
6. The automotive glass gluing device according to claim 5, wherein: The locking assembly includes a bolt (402), a locking block is fixed at the rear end of the positioning block (400), a locking hole is formed in the upper end of the locking block, a plurality of uniformly distributed positioning holes (403) are formed in the lower wall of the chute (305), and the bolt (402) is arranged in the locking hole and any one of the positioning holes (403).
7. The glass gluing device for an automobile according to claim 1, characterized in that: A support rod (404) is arranged at the lower end of the C-shaped bracket (101), and a connecting base (405) is jointly arranged between the glue applying column (100) and the lower end of the support rod (404).