Coating device for coated glass
By adjusting the number of nozzles through an adaptive mechanism, the problem of inaccurate spraying on different glass widths in existing coating devices is solved, thereby improving coating quality and saving coating material.
Patent Information
- Application Number
- CN202520145408.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing coating equipment uses a fixed number of nozzles when coating glass of different widths, which leads to inaccurate coating area, easily resulting in coating areas that are too large or too small, affecting coating quality and causing waste of coating material.
An adaptive mechanism was designed, including a plate, infusion port, chute, baffle and clamping plate, which can automatically adjust the number of nozzles according to the width of the glass to ensure the accuracy of the spraying area and reduce film waste.
It enables automatic adjustment of the number of spray nozzles based on the glass width, ensuring the accuracy of the spraying area, avoiding spraying too large or too small areas, improving the coating quality and reducing film waste.
Smart Images

Figure CN223780154U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a coated glass technical field, specifically is a kind of coated glass's coating device. BACKGROUND
[0002] Coated glass is coated with one or more layers of metal, alloy or metal compound film on the surface of glass, or metal ions are migrated to the surface layer of glass, to change the optical properties of glass, to meet certain requirements of a glass deep processing product;In the prior art, the authorized publication number CN 220788412 U proposes a coating device for multilayer coated glass, including coating box, two H-shaped plates are fixedly connected to the inner wall of coating box, coating mechanism is arranged in the inside of H-shaped plate, heating mechanism is arranged on the top of coating box, coating mechanism includes shaft and first bevel gear, shaft is rotatably connected in the inside of H-shaped plate, first bevel gear is rotatably connected in the inside of H-shaped plate, although the coating of glass can be realized, but in the coating process, the number of spray head used when coating glass is certain, when coating glass of different width, it is easy to appear that spraying area is too large or too small, affect the coating quality of glass, cause the waste of film material. SUMMARY
[0003] The technical problem to be solved by the utility model is to overcome the defects of the prior art, provide a coating device for coated glass, which automatically adjusts the number of spray heads for spraying film material according to the width of glass, compared with the film material sprayed from the fixed number of spray heads, the spraying area is more accurate, avoids that the spraying area is too large or too small, ensures the spraying quality of coated glass while reducing the waste of film material, and effectively solves the problems in the background art.
[0004] To achieve the above object, the utility model provides the following technical scheme: a coating device for coated glass, including coating shell, the lower end of coating shell is equipped with conveying belt, the upper end of coating shell is equipped with coating spray head respectively, and further including self-adapting mechanism;
[0005] Self-adapting mechanism: it includes plate body, infusion hole, chute, baffle and, the plate body is arranged on the top wall of coating shell, the inner part of plate body is respectively provided with longitudinally distributed infusion hole, coating spray head is respectively arranged on the lower surface of plate body and is communicated with the corresponding infusion hole in vertical position, the inner part of plate body is respectively provided with chute, the inside of chute is horizontally slidably connected with baffle, infusion hole is installed in cooperation with baffle, the number of spray heads for spraying film material is adjusted automatically according to the width of glass, compared with the film material sprayed from the fixed number of spray heads, the spraying area is more accurate, avoids that the spraying area is too large or too small, ensures the spraying quality of coated glass while reducing the waste of film material.
[0006] Further, the self-adapting mechanism further comprises clamping plates and adjusting plates, the clamping plates are longitudinally and limitingly and slidingly connected to the front and rear ends of the inner wall of the coated shell respectively, springs are arranged between the clamping plates and the inner wall of the coated shell, the upper ends of the clamping plates are provided with the adjusting plates, the adjusting plates are slidingly connected with the longitudinal grooves of the plate body, and the adjusting plates are installed in cooperation with the baffle plates to adjust the position of the baffle plates.
[0007] Further, the self-adapting mechanism further comprises supports and limit springs, the supports are arranged at the lower ends of the sliding grooves respectively, the supports are slidingly connected with the round holes of the adjacent baffle plates in the transverse direction, and the limit springs are arranged between the baffle plates and the inner walls of the sliding grooves respectively, the limit springs are movably sleeved on the outer curved surfaces of the supports, and the limit springs provide elastic limiting for the positions of the baffle plates.
[0008] Further, the upper surfaces of the baffle plates are provided with cylinders, the cylinders are located in the longitudinal grooves of the plate body, the cylinders are respectively in surface contact with the adjacent adjusting plates, and the adjusting plates are facilitated to exert force on the baffle plates.
[0009] Further, the self-adapting mechanism further comprises clamping plates, the clamping plates are arranged at the lower ends of the clamping plates respectively, the right ends of the clamping plates are inclined plates, and the two clamping plates are rotatably connected with the rollers between the upper and lower inner walls of the grooves in the opposite inner sides, so that glasses of different widths can enter between the two clamping plates.
[0010] Further, the front and rear inner walls of the coated shell are provided with guide columns, the guide columns pass through the interiors of the adjacent springs and are slidingly connected with the guide holes in the surfaces of the clamping plates in the longitudinal direction, so as to provide guiding support for the movement of the clamping plates.
[0011] Further, the upper end of the coated shell is provided with a storage box, the discharge pipe of the storage box is in communication with the feeding hole of the plate body, a feeding pump is connected in series in the middle of the discharge pipe of the storage box, the front surface of the coated shell is provided with a single-chip microcomputer, the input end of the single-chip microcomputer is electrically connected with an external power supply, the conveying belt is an electric conveying belt, and the input ends of the conveying belt and the feeding pump are electrically connected with the output end of the single-chip microcomputer, so as to control the start and stop of the whole device.
[0012] Compared with the prior art, the coating device for the coated glass has the following advantages:
[0013] The number of spray heads for spraying the coating material can be adjusted according to the width of the glass, the spraying area is more accurate compared with the case that the coating material is sprayed from the fixed number of spray heads, the spraying area is prevented from being too large or too small, the waste of the coating material is reduced, and the spraying quality of the coated glass is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 The figure is a structural schematic view of the utility model;
[0015] Figure 2It is the structure schematic diagram of the front view section of the whole device of the utility model.
[0016] Figure 3 It is the structure schematic diagram of the front view section of the adaptive mechanism of the utility model.
[0017] Figure 4 It is the structure schematic diagram of the top view section of the adaptive mechanism of the utility model.
[0018] Figure 5 It is the structure schematic diagram of the side view section of the whole device of the utility model.
[0019] In the drawing: 1 is coated shell, 2 is conveying belt, 3 is coating nozzle, 4 is adaptive mechanism, 41 is plate body, 42 is infusion hole, 43 is chute, 44 is baffle, 45 is clamping plate, 46 is adjusting plate, 47 is clamping plate, 48 is support column, 49 is limit spring, 5 is guide column, 6 is spring, 7 is roller, 8 is cylinder, 9 is storage box, 10 is material conveying pump, 11 is single-chip microcomputer. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0021] Please refer to Figures 1-5 The embodiment provides a kind of technical scheme: a coating device of coated glass, including coating shell 1, provide support for the setting of coating component, the lower end of coating shell 1 is equipped with conveying belt 2, the rotation of the body of conveying belt 2 is influenced by the friction between glass and conveying belt 2, drives glass to move, the upper end of coating shell 1 is equipped with coating nozzle 3 respectively, realizes the coating of glass by film material from coating nozzle 3, and further include adaptive mechanism 4;
[0022] The adaptive mechanism 4 comprises a plate body 41, infusion holes 42, sliding grooves 43, baffle plates 44, and the plate body 41 is arranged on the top wall of the plated shell 1, the inner part of the plate body 41 is respectively provided with longitudinally distributed infusion holes 42, the plated nozzle 3 is respectively arranged on the lower surface of the plate body 41 and communicates with the infusion holes 42 corresponding to the vertical position, the inner part of the plate body 41 is respectively provided with sliding grooves 43, the inner part of the sliding groove 43 is horizontally and slidingly connected with the baffle plate 44, the infusion hole 42 is cooperatively arranged with the baffle plate 44, the upper end of the infusion hole 42 communicates with the shunt hole of the plate body 41, the infusion hole 42 is respectively located between the two baffle plates 44 corresponding to the horizontal position, by changing the position of the baffle plate 44, when the two baffle plates 44 corresponding to the horizontal position are close to each other, the two baffle plates 44 corresponding to the horizontal position are used to block the infusion hole 42, and the flow of the film material in the infusion hole 42 is blocked.When the two baffles 44 corresponding to the transverse position are relatively opened, the flow of the film material in the delivery hole 42 is not blocked, the film material is sprayed out of the film coating nozzle 3, the number of the film coating nozzle 3 spraying the film material is adjusted, different widths of glass are coated, the self-adaptive mechanism 4 further comprises clamping plates 45 and adjusting plates 46, the clamping plates 45 are respectively longitudinally limited and slidingly connected to the front and rear ends of the inside of the film coating shell 1, springs 6 are arranged between the clamping plates 45 and the inner walls of the film coating shell 1, the upper ends of the clamping plates 45 are provided with the adjusting plates 46, the adjusting plates 46 are slidingly connected with the longitudinal grooves of the plate body 41, the adjusting plates 46 are cooperatively installed with the baffles 44, in the process of glass conveying, the clamping plates 45 drive the adjusting plates 46 to move forward and backward under the pressure of the glass and the elastic force of the springs 6, the positions of the baffles 44 are adjusted by the adjusting plates 46, the self-adaptive mechanism 4 further comprises struts 48 and limiting springs 49, the struts 48 are arranged at the lower ends of the sliding grooves 43, the struts 48 are slidingly connected with the round holes of the adjacent baffles 44 in the transverse direction, the limiting springs 49 are arranged between the baffles 44 and the inner walls of the sliding grooves 43, the limiting springs 49 are movably sleeved on the outer curved surfaces of the struts 48, the struts 48 provide guiding support for the movement of the baffles 44 and the stretching and contraction of the limiting springs 49, the elastic limiting of the baffles 44 is provided by the elastic force of the limiting springs 49, the self-resetting of the baffles 44 is facilitated, the upper surfaces of the baffles 44 are provided with cylinders 8, the cylinders 8 are located in the longitudinal grooves of the plate body 41, the cylinders 8 are respectively in surface contact with the adjacent adjusting plates 46, the cylinders 8 and the adjusting plates 46 are in contact with the inclined surfaces, the baffles 44 are facilitated to be applied with the force, the self-adaptive mechanism 4 further comprises clamping plates 47, the clamping plates 47 are arranged at the lower ends of the clamping plates 45, the right ends of the clamping plates 47 are inclined plates, the two clamping plates 47 are rotatably connected with the rollers 7 through the rotating shafts between the upper and lower inner walls of the grooves on the opposite inner sides, the rollers 7 and the glass are relatively rotated, the friction between the glass and the clamping plates 47 is reduced, the glass of different sizes is facilitated to enter between the two clamping plates 47 through the inclined surfaces of the right ends of the clamping plates 47, the front and rear inner walls of the film coating shell 1 are provided with guiding columns 5, the guiding columns 5 pass through the interiors of the adjacent springs 6 and are slidingly connected with the guiding holes on the surfaces of the clamping plates 45 in the longitudinal direction, the guiding columns 5 provide guiding support for the movement of the clamping plates 45 and the stretching and contraction of the springs 6, the upper end of the film coating shell 1 is provided with a storage tank 9, the film material is stored, the discharge pipe of the storage tank 9 is in communication with the feeding hole of the plate body 41, a feeding pump 10 is connected in series in the middle of the discharge pipe of the storage tank 9, the feeding pump 10 provides power for the conveying of the film material, the front surface of the film coating shell 1 is provided with a single-chip microcomputer 11, the starting and stopping of the whole device is controlled, the input end of the single-chip microcomputer 11 is electrically connected with an external power supply, the conveying belt 2 is an electric conveying belt, the input ends of the conveying belt 2 and the feeding pump 10 are electrically connected with the output end of the single-chip microcomputer 11.
[0023] The working principle of the coating device for the coated glass is as follows: when the coated glass is coated, the glass is placed on the surface of the conveying belt 2, the conveying belt 2 is started by the single-chip microcomputer 11, the belt body of the conveying belt 2 rotates, under the influence of the friction force between the glass and the conveying belt 2, the glass is driven to move and enter the inside of the coating shell 1, in the process of moving of the glass, the glass exerts a force on the inclined surface of the clamping plate 47, overcomes the elastic force of the spring 6, pushes the clamping plate 45 to slide relative to the guide column 5, the glass is clamped by the two clamping plates 47 distributed in front and back, at the same time, the clamping plate 45 drives the adjusting plate 46 to move forward and backward in the longitudinal groove of the plate body 41, the moving distance of the adjusting plate 46 corresponds to the width of the glass, when the adjusting plate 46 contacts with the cylinder 8, the two baffle plates 44 corresponding to the transverse position are close to each other under the top pressure of the adjusting plate 46, the two baffle plates 44 corresponding to the transverse position are used to block the infusion hole 42, and the flow of the film material in the infusion hole 42 is blocked; when the adjusting plate 46 is separated from the cylinder 8, the baffle plate 44 is reset under the elastic force of the limiting spring 49, at this time, the two baffle plates 44 corresponding to the transverse position are relatively opened, the flow of the film material in the infusion hole 42 is not blocked, the film material is sprayed out from the coating nozzle 3, the position of the adjusting plate 46 is automatically changed according to the width of the glass, and a proper number of coating nozzles 3 are selected to coat the glass.
[0024] It is worth noting that the single-chip microcomputer 11 disclosed in the above embodiment can be selected from the AT89C4051 type single-chip microcomputer, and the conveying belt 2 and the material conveying pump 10 can be freely configured according to actual application scenes, the conveying belt 2 can be selected from the RF-PDSSJ type electric conveying belt, the material conveying pump 10 can be selected from the YLX650-80 type spraying pump, and the single-chip microcomputer 11 controls the working of the conveying belt 2 and the material conveying pump 10 by using the method commonly used in the prior art.
[0025] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion by using the contents of the utility model specification and drawings, or direct or indirect application in other related technical fields is also included in the patent protection range of the utility model.
Claims
1. A coating device for coated glass, comprising a coating shell (1), the lower end of the coating shell (1) is provided with a conveying belt (2), the upper end of the coating shell (1) is respectively provided with a coating nozzle (3), characterized in that: It also includes adaptive mechanism (4); The adaptive mechanism (4) further includes clamping plates (45) and adjusting plates (46), the clamping plates (45) are respectively longitudinally limited slidingly connected to the inside front and back ends of the film coating shell (1), and the clamping plates (45) and the inner walls of the film coating shell (1) are both provided with springs (6). The upper ends of the clamping plates (45) are both provided with adjusting plates (46), and the adjusting plates (46) are slidingly connected with the longitudinal grooves of the plate body (41). The adjusting plates (46) are installed in cooperation with the baffle plates (44). 2.The coating device of the coated glass according to claim 1, characterized in that: The adaptive mechanism (4) further includes struts (48) and limiting springs (49), the struts (48) are respectively arranged at the lower ends of the sliding grooves (43), and the struts (48) are slidingly connected with the circular holes of the adjacent baffle plates (44). The limiting springs (49) are respectively arranged between the baffle plates (44) and the inner walls of the sliding grooves (43), and the limiting springs (49) are respectively movably sleeved on the outer curved surfaces of the struts (48). 3.The coating device of the coated glass according to claim 1, characterized in that: The upper surfaces of the baffle plates (44) are both provided with cylinders (8), and the cylinders (8) are located in the longitudinal grooves of the plate body (41). The cylinders (8) are respectively in surface contact with the adjacent adjusting plates (46). 4.The coating device of the coated glass according to claim 2, characterized in that: The adaptive mechanism (4) further includes clamping plates (47), the clamping plates (47) are respectively arranged at the lower ends of the clamping plates (45), and the right ends of the clamping plates (47) are all inclined plates. Rollers (7) are rotatably connected between the upper and lower inner walls of the grooves of the opposite inner sides of the two clamping plates (47) through rotating shafts. 5.The coating device of the coated glass according to claim 2, characterized in that: The front and rear inner walls of the film coating shell (1) are both provided with guide columns (5), the guide columns (5) respectively pass through the interiors of the adjacent springs (6) and are slidingly connected with the guide holes on the surfaces of the clamping plates (45) in the longitudinal direction. 6.The coating device of the coated glass according to claim 2, characterized in that: The upper end of the film coating shell (1) is provided with a storage tank (9), the discharge pipe of the storage tank (9) is in communication with the feeding hole of the plate body (41), a feeding pump (10) is connected in series in the middle of the discharge pipe of the storage tank (9), a single-chip microcomputer (11) is arranged on the front surface of the film coating shell (1), the input end of the single-chip microcomputer (11) is electrically connected with an external power supply, the conveying belt (2) is an electric conveying belt, and the input ends of the conveying belt (2) and the feeding pump (10) are both electrically connected with the output end of the single-chip microcomputer (11). 7.The coating device of the coated glass according to claim 1, wherein:
Citation Information
Patent Citations
Coating device for multi-layer coated glass
CN220788412U