Multi-end-face automatic rubber wiping equipment for products
By designing a multi-face automatic adhesive application equipment, and utilizing components such as electric slide rails and brush plates, the problem of incomplete adhesive application on PLC products was solved, achieving efficient surface cleaning and removal of residual adhesive residue, thus improving adhesive application efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SUMIDA ELECTRIC JIAN CO LTD
- Filing Date
- 2023-05-19
- Publication Date
- 2026-04-21
AI Technical Summary
In the existing technology, the adhesive removal efficiency of PLC products is low and it is easy to have incomplete removal problems, which leads to the re-adhesion of residual adhesive residue, increasing the workload and time.
Design a multi-face automatic adhesive wiping device, including support legs, support ring frame, limit transmission mechanism and adhesive wiping mechanism. Utilize components such as electric slide rail, rotating shaft, friction ring, brush plate, cleaning cloth and spray mechanism to achieve comprehensive wiping and cleaning of PLC product surface.
It improves the efficiency and effectiveness of adhesive application, ensures thorough cleaning of PLC product surfaces, reduces residual adhesive residue, and enhances work efficiency and quality.
Smart Images

Figure CN116393419B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of adhesive application, and more particularly to an automatic adhesive application device for multi-faceted products. Background Technology
[0002] PLC products are an important part of control products. They have excellent and stable control performance and a long service life. PLC products can still be reused after use. Before reusing PLC products, we need to clean the surface of the PLC products by removing the adhesive. This cleaning involves scraping and cleaning the residual adhesive on the top side and the four sides (front, back, left, and right) of the PLC products so that they can be put back into use.
[0003] Currently, most PLC products are cleaned manually by wiping off the adhesive. Due to the small size of PLC products and the large number of surfaces that need to be cleaned, workers are prone to fatigue when cleaning a large number of PLC products. This can lead to insufficient or incomplete cleaning of the surface of the PLC products, and some residual adhesive residue will re-adhere to the surface of the PLC products, increasing the workload of cleaning. As a result, the cleaning efficiency of PLC products is extremely low, and the cleaning effect is also poor.
[0004] Therefore, we urgently need to develop an automatic multi-face glue-applying device for products, which can more fully and thoroughly apply glue to the surface of the products, improve glue-applying efficiency, and achieve better glue-applying results. Summary of the Invention
[0005] To overcome the above-mentioned shortcomings, the present invention provides an automatic glue-applying device for multi-faceted products, which can apply glue more thoroughly and completely to the surface of the products, improve glue-applying efficiency more effectively, and achieve better glue-applying results.
[0006] An automatic glue-applying device for multi-faceted products includes support legs, support ring frames, a limiting transmission mechanism, and a glue-applying mechanism. The support ring frames are fixedly connected between the top ends of the four support legs. The support ring frames are equipped with the limiting transmission mechanism and the glue-applying mechanism.
[0007] Furthermore, it is particularly preferred that the limiting transmission mechanism includes an electric slide rail, an electric slider, a rotating shaft, a limiting frame, and friction rings. The top of the support ring frame is fixedly connected to the electric slide rail, and four electric sliders are slidably connected to the electric slide rail. Each electric slider is rotatably connected to a rotating shaft, and a limiting frame is fixedly connected to the upper part of each rotating shaft. Material is placed on three of the limiting frames, and four friction rings are fixedly connected to each limiting frame. The material is located between the four friction rings, and all four friction rings are in contact with the material.
[0008] Furthermore, preferably, the adhesive wiping mechanism includes support columns, support connecting rods, three-sided brush plates, inclined support plates, a first return spring, a cleaning cloth, a cleaning sponge rod, and a second return spring. Four support columns are fixedly connected to the support ring frame, and three-sided brush plates are fixedly connected between the four support columns. Two support connecting rods are fixedly connected to the support ring frame. Each support connecting rod has two inclined support plates slidably connected to its upper part. The two inclined support plates form a group. A first return spring is connected between each support connecting rod and the two inclined support plates. A cleaning cloth is fixedly connected between each group of inclined support plates. Both cleaning cloths are made of elastic material. A cleaning sponge rod is slidably connected between the tops of the two support connecting rods. A second return spring is connected between each support connecting rod and the cleaning sponge rod.
[0009] Furthermore, it is particularly preferred that the inner side of the three-sided brush plate is provided with a plurality of brushes.
[0010] Furthermore, it is particularly preferred that a reciprocating mechanism is also included. The limiting transmission mechanism is equipped with a reciprocating mechanism, which includes a gear, a rack, a guide ring plate, and a guide rod. A gear is fixedly connected to each of the rotating shafts. Two racks are fixedly connected to the support ring frame. One of the gears meshes with the rack, and the other gears mesh with the rack. A guide ring plate is fixedly connected to each of the electric sliders. A guide groove is formed on each of the guide ring plates. A guide rod is slidably connected to each of the limiting frames. The top end of each guide rod contacts the bottom end of the material, and the bottom end of each guide rod is slidably connected to the guide groove of the guide ring plate.
[0011] Furthermore, it is particularly preferred that a spraying mechanism is also included. The support ring frame is equipped with a spraying mechanism, which includes a spray plate, a spray switch, an arc-shaped baffle, a return spring, and a bent push rod. A spray plate is fixedly connected to one side of the support ring frame. A spray switch is provided on the spray plate, and the spray plate and the spray switch are connected by an electrical circuit. An arc-shaped baffle is slidably connected to the support ring frame. The arc-shaped baffle and the spray switch are located on the same horizontal line. A return spring is connected between the arc-shaped baffle and the support ring frame. A bent push rod is fixedly connected to one side of each of the electric sliders.
[0012] Furthermore, it is particularly preferred that the spray plate has a plurality of spray heads.
[0013] Furthermore, it is particularly preferred that the device also includes a support rod and a hot air gun, with a support rod fixedly connected to one side of each of the electric sliders, and a hot air gun fixedly connected to each of the support rods.
[0014] Furthermore, it is particularly preferred that the support rod also includes a ring scraper, with a ring scraper fixedly connected to each of the support rods.
[0015] Beneficial effects:
[0016] 1. This invention uses an electric slide rail to drive the material movement, so that the material first contacts the three-sided brush plate, which scrapes off the residual adhesive on the top and sides of the material. Then, as the material continues to move, it comes into contact with two cleaning cloths and a cleaning sponge rod. The two cleaning cloths wipe the left and right sides of the material, while the cleaning sponge rod wipes the top of the material, thereby quickly scraping off the residual adhesive on the surface of the material and wiping off the residual adhesive residue. 2. This invention uses a rotating shaft to drive a gear. When the material moves and comes into contact with the three-sided brush plate, the gear continues to move and rotates along one of the racks, causing the material to rotate. This rotation ensures that the top and four sides of the material make full contact with the three-sided brush plate, allowing the brush plate to effectively remove residual adhesive from the top and four sides of the material. When the material moves and comes into contact with the two cleaning cloths and the cleaning sponge rod, the gear continues to move and rotates along the other rack, causing the material to rotate. This rotation ensures that the top of the material makes full contact with the cleaning sponge rod, while the cleaning cloths make full contact with the sides of the material. This allows the cleaning cloths and cleaning sponge rod to effectively wipe away residual adhesive residue from the top and four sides of the material, thus effectively removing adhesive from the material and improving the adhesive removal efficiency.
[0017] 3. In this invention, the guide rod rotates while reciprocating up and down along the guide groove of the guide ring plate. This reciprocating movement of the guide rod propels the material to move up and down. When the material moves and comes into contact with the three-sided brush plate, its reciprocating movement ensures that the top and four sides of the material make more thorough contact with the brush plate, allowing the brush plate to more effectively remove residual adhesive from the top and four sides of the material. When the material moves and comes into contact with the two cleaning cloths and the cleaning sponge rod, its reciprocating movement ensures that the top of the material makes more thorough contact with the cleaning sponge rod, and the cleaning cloths make more thorough contact with the sides of the material, allowing the cleaning cloths and cleaning sponge rods to more effectively wipe away residual adhesive residue from the top and four sides of the material. This more thorough adhesive removal further improves the adhesive removal efficiency.
[0018] 4. This invention uses a spray plate to spray cleaning liquid onto the surface of the material after the adhesive has been scraped off. The cleaning liquid penetrates deep into the adhesive layer and dissolves it, making it easier to remove residual adhesive residue from the material surface. This results in a more thorough removal of residual adhesive residue and a better adhesive removal effect. At the same time, a hot air gun heats the surface of the material, softening the residual adhesive. This allows the three-sided brush plate to scrape off the residual adhesive more quickly, and the two cleaning cloths and cleaning sponge rods to wipe away the residual adhesive residue more quickly, thereby improving the adhesive removal efficiency of the material. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention.
[0020] Figure 2 For the present invention Figure 1 A magnified three-dimensional structural diagram of A in the middle.
[0021] Figure 3 This is a schematic diagram of the first cross-sectional three-dimensional structure of the present invention.
[0022] Figure 4 For the present invention Figure 3 A magnified three-dimensional structural diagram of B.
[0023] Figure 5 This is a schematic diagram of the second cross-sectional three-dimensional structure of the present invention.
[0024] Figure 6 For the present invention Figure 5 A magnified three-dimensional structural diagram of C.
[0025] Figure 7 This is a schematic diagram of the second three-dimensional structure of the present invention.
[0026] Figure 8 For the present invention Figure 7 A magnified three-dimensional structural diagram of D.
[0027] Figure 9 This is a three-dimensional structural diagram of the supporting connecting rod column of the present invention.
[0028] Figure 10 This is a schematic diagram of a first partial three-dimensional structure of the adhesive application mechanism of the present invention.
[0029] Figure 11 This is a schematic diagram of a second partial three-dimensional structure of the adhesive application mechanism of the present invention.
[0030] The labels in the attached diagram are as follows: 1. Support leg; 2. Support ring frame; 31. Electric slide rail; 32. Electric slider; 33. Rotating shaft; 34. Limiting frame; 35. Friction ring; 41. Support column; 411. Support connecting rod column; 42. Three-sided brush plate; 43. Inclined support plate; 44. Return spring one; 45. Cleaning cloth; 46. Cleaning sponge rod; 47. Return spring two; 51. Gear; 52. Rack; 53. Guide ring plate; 54. Guide top rod; 61. Spray plate; 62. Spray switch; 63. Arc baffle; 64. Return spring three; 65. Bent push rod; 71. Support rod; 72. Hot air gun; 8. Ring scraper; 9. Material. Detailed Implementation
[0031] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0032] Example 1
[0033] An automatic adhesive application device for multiple ends of a product, such as Figures 1-11 As shown, it includes support legs 1, support ring frame 2, limit transmission mechanism and adhesive wiping mechanism. The top ends of the four support legs 1 are connected by bolts to the support ring frame 2. The support ring frame 2 is provided with limit transmission mechanism and adhesive wiping mechanism.
[0034] The limiting transmission mechanism includes an electric slide rail 31, an electric slider 32, a rotating shaft 33, a limiting frame 34, and friction rings 35. The top of the support ring frame 2 is bolted to the electric slide rail 31. Four electric sliders 32 are slidably connected to the electric slide rail 31. Each electric slider 32 is rotatably connected to a rotating shaft 33. Each rotating shaft 33 is vertically arranged. Each rotating shaft 33 is bolted to the upper part of a limiting frame 34. Material 9 is placed on three of the limiting frames 34. Four friction rings 35 are fixedly connected to each limiting frame 34. The material 9 is located between the four friction rings 35, and all four friction rings 35 are in contact with the material 9.
[0035] The adhesive application mechanism includes support columns 41, support connecting rod columns 411, three-sided brush plates 42, inclined support plates 43, a first return spring 44, a cleaning cloth 45, a cleaning sponge rod 46, and a second return spring 47. Four support columns 41 are bolted to the support ring frame 2, and all four support columns 41 are vertically arranged. Three-sided brush plates 42 are bolted between the four support columns 41. Two support connecting rod columns 411 are bolted to the support ring frame 2, and each support connecting rod column 411 has two inclined plates slidably connected to its upper part. Support plate 43, two inclined support plates 43 form a group, each support link column 411 is connected to the two inclined support plates 43 by a hook and a return spring 44 is connected, each group of inclined support plates 43 is fixedly connected to a cleaning cloth 45, both cleaning cloths 45 are made of elastic material, a cleaning sponge rod 46 is slidably connected between the tops of the two support link columns 411, the cleaning sponge rod 46 is set horizontally, each support link column 411 and the cleaning sponge rod 46 is connected to a return spring 47 by a hook.
[0036] The three-sided brush plate 42 has several brushes on its inner side.
[0037] Initially, material 9 was placed on three of the limiting frames 34. Two of the material 9 had already been coated with adhesive, while the third material 9 had not. The operator activated the electric slide rail 31, which drove four electric sliders 32 to move together. The movement of the electric sliders 32 along the electric slide rail 31 caused the rotating shaft 33 to move. The movement of the rotating shaft 33 along the electric slide rail 31 caused the limiting frames 34 to move. The movement of the limiting frames 34 caused the friction ring 35 and the material 9 to move together. The material 9 that had already been coated with adhesive would come into contact with the two cleaning cloths 45 and the cleaning sponge rod 46 in sequence. As the material 9 continued to move, it would squeeze... Press down on the two cleaning cloths 45 and push them to move away from each other. This movement of the two cleaning cloths 45 will push the two sets of inclined support plates 43 to move away from each other, compressing the four return springs 44. Under the action of the return springs 44, the two cleaning cloths 45 will adhere tightly to the left and right sides of the material 9. Since the cleaning cloths 45 are made of elastic material, they can fully contact the left and right sides of the material 9. Simultaneously, the continued movement of the material 9 will sequentially squeeze the cleaning sponge rods 46 upwards, compressing the two return springs 47. Under the action of the return springs 47, the cleaning sponge rods 46... The cleaning cloths 45 will adhere tightly to the upper side of material 9. As material 9 continues to move, the two cleaning cloths 45 will wipe the left and right sides of material 9 in turn, while the cleaning sponge rod 46 will wipe the top of material 9 in turn, thus cleaning away any residual adhesive residue scraped off the surface of material 9. As material 9 continues to move, it will gradually disengage from the two cleaning cloths 45 and the cleaning sponge rod 46. At this point, the four return springs 44 will reset, causing the two sets of inclined support plates 43 to reset. The reset of the two sets of inclined support plates 43 will cause the two cleaning cloths 45 to reset, and the reset of the two return springs 47 will cause the cleaning sponge rod 46 to reset downwards. The staff removes the cleaned materials 9 one by one and places the materials 9 that need to be wiped with adhesive on the limiting frame 34 one by one. The four friction rings 35 limit the materials 9. At the same time, the materials 9 that need to be wiped with adhesive move and come into contact with the three-sided brush plate 42. As the materials 9 continue to move, the three-sided brush plate 42 scrapes off the residual adhesive on the top and sides of the materials 9. The materials 9 continue to move and will lose contact with the three-sided brush plate 42. The materials 9 continue to move and will come into contact with the two cleaning cloths 45 and the cleaning sponge rod 46. This process is repeated to quickly scrape off the residual adhesive on the surface of the materials 9 and wipe off the residual adhesive residue on the surface of the materials 9.
[0038] Example 2
[0039] Based on Example 1, such as Figures 1-10As shown, it also includes a reciprocating mechanism. The limiting transmission mechanism is equipped with a reciprocating mechanism, which includes a gear 51, a rack 52, a guide ring plate 53, and a guide rod 54. A gear 51 is fixedly connected to each of the rotating shafts 33. Two racks 52 are fixedly connected to the support ring frame 2. One of the gears 51 meshes with the rack 52, and the other gears 51 mesh with the rack 52. A guide ring plate 53 is bolted to each of the electric sliders 32. A guide groove is opened on each guide ring plate 53. A guide rod 54 is slidably connected to each of the limiting frames 34. The top end of each guide rod 54 contacts the bottom end of the material 9, and the bottom end of each guide rod 54 is slidably connected to the guide groove of the guide ring plate 53.
[0040] The movement of the rotating shaft 33 will cause the limiting frame 34 and gear 51 to move together. The movement of the limiting frame 34 will cause the guide ring plate 53 to move. When the material 9 moves and comes into contact with the three-sided brush plate 42, the gear 51 will move and mesh with one of the racks 52. The gear 51 will continue to move and rotate along one of the racks 52. The rotation of the gear 51 will cause the rotating shaft 33 to rotate. The rotation of the rotating shaft 33 will cause the limiting frame 34, friction ring 35, guide rod 54 and material 9 to rotate together, so that the top and four sides can fully contact the three-sided brush plate 42, and at the same time, the three-sided brush plate 42 can fully contact the top of the material 9. The three-sided brush plate 42 makes contact with the material 9, allowing it to thoroughly remove residual adhesive from the top and four sides. As the guide rod 54 rotates, it moves up and down along the guide groove of the guide ring plate 53. This up-and-down movement of the guide rod 54 pushes the material 9 to move up and down, allowing the top and four sides of the material 9 to make more thorough contact with the three-sided brush plate 42, thus enabling the three-sided brush plate 42 to more effectively scrape away residual adhesive from the material 9. When the material 9 continues to move and disengages from the three-sided brush plate 42, the gear 51 continues to move and disengages from one of the racks 52. As material 9 continues to move and comes into contact with the two cleaning cloths 45, gear 51 continues to move and meshes with another rack 52, rotating along the rack 52, thereby causing material 9 to rotate. This rotation ensures that the four sides of material 9 make full contact with the two cleaning cloths 45, and the top makes full contact with the cleaning sponge rod 46. This allows the two cleaning cloths 45 to effectively remove residual adhesive residue from the four sides of material 9, and the cleaning sponge rod 46 to effectively remove residual adhesive residue from the top of material 9, improving the adhesive removal efficiency of material 9. Simultaneously, the guide rod 54 rotates along the guide groove of the guide ring plate 53. The reciprocating motion causes the guide rod 54 to move up and down, and the material 9 to move up and down. The reciprocating motion of the material 9 allows the top to make more thorough contact with the cleaning sponge rod 46 and the four sides to make more thorough contact with the cleaning cloth 45. This allows the cleaning cloth 45 and the cleaning sponge rod 46 to more thoroughly scrape off the residual adhesive residue on the material 9. When the material 9 continues to move and disengages from the cleaning cloth 45 and the cleaning sponge rod 46, the gear 51 continues to move and disengages from another rack 52. This process is repeated to more thoroughly and quickly wipe the material 9, improving the wiping efficiency.
[0041] Example 3
[0042] Based on Example 2, such as Figures 1-8As shown, it also includes a spraying mechanism. The support ring frame 2 is equipped with a spraying mechanism, which includes a spray plate 61, a spray switch 62, an arc-shaped baffle 63, a return spring 64, and a bent push rod 65. The spray plate 61 is bolted to one side of the support ring frame 2. The spray switch 62 is mounted on the spray plate 61, and the spray plate 61 and the spray switch 62 are connected by an electrical circuit. The arc-shaped baffle 63 is slidably connected to the support ring frame 2. The arc-shaped baffle 63 and the spray switch 62 are located on the same horizontal line. The return spring 64 is connected to the arc-shaped baffle 63 and the support ring frame 2 by a hook. A bent push rod 65 is fixedly connected to one side of each of the electric sliders 32.
[0043] The spray plate 61 is provided with a number of spray heads.
[0044] Initially, the worker introduces cleaning fluid into the spray plate 61. The movement of the electric slider 32 moves the curved push rod 65. When the material 9 is scraped clean, the curved push rod 65 continues to move and contacts the arc-shaped baffle 63, squeezing the arc-shaped baffle 63 to move closer to the spray plate 61. The return spring 64 is compressed, and the arc-shaped baffle 63 moves to contact the spray switch 62, pressing the spray switch 62. Pressing the spray switch 62 activates the spray plate 61, causing it to spray cleaning fluid onto the surface of the material 9. The cleaning fluid penetrates the adhesive layer along the scraping gaps. The material is deeply dissolved, making it easier for residual adhesive residue on the surface of material 9 to fall off, so that the residual adhesive residue on the surface of material 9 can be wiped off more thoroughly, thereby improving the adhesive wiping effect of material 9 and further improving the adhesive wiping efficiency. The bent push rod 65 continues to move and will disengage from the arc-shaped baffle 63. The reset spring 64 will reset and drive the arc-shaped baffle 63 to reset. The reset arc-shaped baffle 63 will disengage from the spray switch 62, so that the spray plate 61 stops spraying cleaning liquid. This process is repeated so that the spray plate 61 can spray cleaning liquid onto the surface of material 9 after adhesive scraping in sequence.
[0045] Example 4
[0046] Based on Example 3, such as Figures 1-10 As shown, it also includes a support rod 71 and a hot air gun 72. Each of the electric sliders 32 has a support rod 71 bolted to one side. The support rod 71 is horizontally arranged, and a hot air gun 72 is bolted to each of the support rods 71.
[0047] Initially, the staff activated four hot air guns 72. The movement of the electric slider 32 would move the support rod 71, which in turn would move the hot air guns 72. The hot air guns 72 heated the surface of the material 9, softening the residual adhesive on the surface of the material 9. This allowed the three-sided brush plate 42 to scrape off the residual adhesive on the surface of the material 9 more quickly, and also allowed the two cleaning cloths 45 and the cleaning sponge rod 46 to wipe away the residual adhesive residue on the surface of the material 9 more quickly.
[0048] Example 5
[0049] Based on Example 4, such as Figures 1-10 As shown, it also includes a ring scraper 8, and each of the support rods 71 is bolted to a ring scraper 8.
[0050] The movement of the electric slider 32 drives the ring scraper 8 to move. Before the material 9 comes into contact with the three-sided brush plate 42, the ring scraper 8 will first come into contact with the three-sided brush plate 42, removing residual adhesive residue from the three-sided brush plate 42, allowing the three-sided brush plate 42 to better scrape off residual adhesive from the surface of the material 9. As the ring scraper 8 continues to move, it will disengage from the three-sided brush plate 42. Before the material 9 comes into contact with the two cleaning cloths 45 and the cleaning sponge rod 46, the ring scraper 8 will first come into contact with the two cleaning cloths 45 and the cleaning sponge rod 46. The contact between the cleaning cloths 45 and the cleaning sponge rod 46 removes residual adhesive residue, allowing them to better wipe the surface of the material 9. The scraper rod 8 then disengages from the cleaning sponge rod 46. This process is repeated, ensuring that the three-sided brush plate 42, the two cleaning cloths 45, and the cleaning sponge rod 46 are cleaned before each application of adhesive to the material 9, thus enabling them to continuously apply adhesive to the material 9.
[0051] In the description of this invention, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
Claims
1. An automatic glue-applying device for multi-faceted products, characterized in that, The device includes support legs, support ring frames, a limiting transmission mechanism, and an adhesive wiping mechanism. A support ring frame is fixedly connected between the top ends of the four support legs. The support ring frame is equipped with a limiting transmission mechanism and an adhesive wiping mechanism. The limiting transmission mechanism includes an electric slide rail, an electric slider, a rotating shaft, a limiting frame, and friction rings. An electric slide rail is fixedly connected to the top of the support ring frame. Four electric sliders are slidably connected to the electric slide rail. A rotating shaft is rotatably connected to each electric slider. A limiting frame is fixedly connected to the upper part of each rotating shaft. Material is placed on three of the limiting frames. Four friction rings are fixedly connected to each limiting frame. The material is located between the four friction rings, and all four friction rings are in contact with the material. The adhesive wiping mechanism includes support columns, support connecting rods, three-sided brush plates, inclined support plates, a first return spring, a cleaning cloth, a cleaning sponge rod, and a second return spring. Four support columns are fixedly connected to the support ring frame, and three-sided brush plates are fixedly connected between the four support columns. Two support connecting rods are fixedly connected to the support ring frame. Each support connecting rod has two inclined support plates slidably connected to its upper part. The two inclined support plates form a group. A first return spring is connected between each support connecting rod and the two inclined support plates. A cleaning cloth is fixedly connected between each group of inclined support plates. Both cleaning cloths are made of elastic material. A cleaning sponge rod is slidably connected between the tops of the two support connecting rods. A second return spring is connected between each support connecting rod and the cleaning sponge rod. It also includes a reciprocating mechanism. The limiting transmission mechanism is equipped with a reciprocating mechanism, which includes a gear, a rack, a guide ring plate, and a guide rod. A gear is fixedly connected to each of the rotating shafts. Two racks are fixedly connected to the support ring frame. One of the gears meshes with the rack, and the other gears mesh with the rack. A guide ring plate is fixedly connected to each of the electric sliders. A guide groove is opened on each guide ring plate. A guide rod is slidably connected to each of the limiting frames. The top end of each guide rod contacts the bottom end of the material, and the bottom end of each guide rod is slidably connected to the guide groove of the guide ring plate. It also includes a spraying mechanism, which is provided on the support ring frame. The spraying mechanism includes a spray plate, a spray switch, an arc-shaped baffle, a return spring, and a bent push rod. A spray plate is fixedly connected to one side of the support ring frame. A spray switch is provided on the spray plate, and the spray plate and the spray switch are connected by a circuit. An arc-shaped baffle is slidably connected to the support ring frame. The arc-shaped baffle and the spray switch are located on the same horizontal line. A return spring is connected between the arc-shaped baffle and the support ring frame. A bent push rod is fixedly connected to one side of each electric slider.
2. The automatic multi-face glue-applying equipment for products according to claim 1, characterized in that, The inner side of the three-sided brush plate is provided with several brushes.
3. The automatic multi-face glue-applying equipment for products according to claim 1, characterized in that, The spray plate is provided with several spray heads.
4. The automatic multi-face glue-applying equipment for products according to claim 1, characterized in that, It also includes a support rod and a hot air gun. Each of the electric sliders is fixedly connected to one side of the support rod, and a hot air gun is fixedly connected to each of the support rods.
5. The automatic multi-face glue-applying equipment for products according to claim 4, characterized in that, It also includes a ring scraper, with a ring scraper fixedly connected to each of the support rods.
Citation Information
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