Butyl rubber coating device for hollow glass
By designing a fixed structure for the coating device, the problem of time-consuming and labor-intensive operation by multiple people is solved, enabling a fast and efficient coating process for a single person, which is suitable for borders of different sizes.
Patent Information
- Application Number
- CN202422117426.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-08-30
AI Technical Summary
When using a butyl rubber coating machine, if the frame is large, multiple people are needed to support and operate it, which makes the operation time-consuming, labor-intensive, and inefficient.
A butyl sealant coating device for insulating glass was designed, comprising a coating machine body and fixing structures on both sides of the conveyor belt. Stable fixing of frames of different sizes is achieved by adjusting bolts and limiting structures, and the coating process can be completed by a single person.
It enables coating to be completed by a single person, reducing labor intensity, improving work efficiency, and is applicable to borders of different widths, making the operation more time-saving and labor-saving.
Smart Images

Figure CN223475471U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of butyl rubber coating machine, specifically a butyl rubber coating device for insulating glass. Background Art
[0002] Insulating glass was originally designed to solve the problem of water vapor or frost that frequently appeared on glass. Two panes of glass were assembled together with a certain gap between them, forming the prototype of insulating glass. From its initial simple structure to its current high-performance sound and heat insulation material, insulating glass has been widely used and has become an important part of modern architectural design.
[0003] The insulating glass unit consists of the original glass sheet, spacer, desiccant, sealing material, frame, and intermediate gas layer. Before the frame is installed onto the original glass sheet, butyl sealant needs to be applied to both sides of the frame, which requires the use of a butyl sealant coating machine.
[0004] When using a butyl rubber coating machine, if the frame is small, only one worker needs to hold it by hand. The frame moves on the conveyor belt and is then coated by the coating mechanism. However, if the frame is large, at least two workers need to hold it together, and another person needs to be sent to the exit to catch it. This operation is time-consuming, labor-intensive, complicated, and has high labor intensity and low work efficiency. Utility Model Content
[0005] In view of the above-mentioned problems in the existing technology, the technical problem to be solved by this utility model is to provide a butyl sealant coating device for insulating glass, so as to solve the problem that when dealing with large frames that need to be coated, at least two workers are required to hold the frame together, and then another person is required at the exit to catch it. The operation is time-consuming, labor-intensive, complicated and troublesome, with high labor intensity and low work efficiency.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0007] A butyl sealant coating device for insulating glass includes: a coating machine body and a coating mechanism located on the upper surface of the coating machine body. The coating machine body is equipped with a conveyor belt. The two ends of the coating mechanism are respectively provided with a first fixing structure and a second fixing structure. The first fixing structure and the second fixing structure are both located on both sides of the conveyor belt and connected to the coating machine body. Even when encountering a relatively large frame, multiple people are not required to complete the work. This saves time and effort, is convenient and fast, greatly reduces labor intensity, and greatly improves work efficiency.
[0008] Both the first and second fixing structures include: support plates fixedly connected to the main body of the coating machine and located on both sides of the conveyor belt, and the support plates are threadedly connected to adjusting bolts. The inner end of the adjusting bolts is connected to a limiting structure, and the limiting structure cooperates with the conveyor belt to move the aluminum frame on the conveyor belt. The user can adjust the position of the limiting structure according to the actual situation, which is equivalent to adjusting the distance between the placement slots on both sides of the conveyor belt. This is suitable for frames of different widths and greatly improves the applicability of the device.
[0009] Furthermore, the limiting structure includes: a limiting plate movably connected to the adjusting bolt, and the inner side of the limiting plate is provided with a telescopic groove with a horizontal opening, and the inside of the telescopic groove is provided with a fixing block. The inner side of the fixing block is connected to the bottom end of the telescopic groove by a spring. When the vertical edge of the frame passes the fixing block, the fixing block retracts inward to allow the frame to pass. After the vertical edge of the frame passes the fixing block, the fixing block pops out to facilitate fixing the horizontal edge of the frame.
[0010] Furthermore, the lower side of the telescopic groove is provided with a placement groove, and the lower and inner sides of the placement groove are provided with openings. The lower opening of the placement groove is at the same level as the upper surface of the conveyor belt, which facilitates the frame to contact the conveyor belt even when it is located in the placement groove.
[0011] Furthermore, the lower inner side of the fixing block is provided with a downward-facing groove, and a rotating shaft is embedded in the groove. A pulley is provided on the rotating shaft. The pulley corresponds to the placement groove and the diameter of the pulley is greater than the depth of the groove, ensuring that the pulley can contact the frame.
[0012] Furthermore, the upper outer side of the fixing block is chamfered, and the feeding side of the fixing block is chamfered to facilitate the movement of the frame inside the entry limiting structure.
[0013] Furthermore, the upper inner side of the limiting plate is chamfered, and the feeding end of the limiting plate is chamfered, which facilitates the movement of the frame inside the limiting structure.
[0014] Furthermore, the length of the placement groove in the limiting plate of the second fixing structure is greater than the length of the placement groove in the limiting plate of the first fixing structure, to prevent the side of the frame that has been coated with glue by the coating mechanism from touching the placement groove, thus ensuring the integrity of the butyl glue.
[0015] Beneficial effects: Compared with the prior art, this application has the following advantages:
[0016] 1. This butyl sealant coating device for insulating glass requires only one unit to complete the process, even when dealing with large frames. The operator simply feeds the frame into the inlet of the limiting plate of the first fixing structure. The fixing block contracts under the pressure of the vertical edge of the frame. After the vertical edge of the frame passes the fixing block, the fixing block rebounds and presses down on the bottom edge of the frame. Under the action of the conveyor belt and pulleys, the frame moves to the coating mechanism for sealant application and then enters the second fixing structure. The fixing principle of the second fixing structure is the same as that of the first fixing structure. During this process, the operator only needs to operate at the inlet and outlet of the device, eliminating the need for multiple people to work together. This saves time and effort, is convenient and fast, greatly reduces labor intensity, and significantly improves work efficiency.
[0017] 2. The limiting structure of the butyl sealant coating device for insulating glass is movable. The user can adjust the position of the limiting structure by adjusting the bolts. The user can adjust the position of the limiting structure according to the actual situation, which is equivalent to adjusting the distance between the placement slots on both sides of the conveyor belt. It is suitable for frames of different widths, greatly improving the applicability of the device. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of a butyl sealant coating device for insulated glass.
[0019] Figure 2 This is a partial structural diagram of a butyl sealant coating device for insulating glass.
[0020] Figure 3 This is a schematic diagram of the first fixed structure;
[0021] Figure 4 This is a schematic diagram of the second fixed structure;
[0022] Reference numerals in the attached drawings: 1. Coating machine body; 2. Coating mechanism; 3. Conveyor belt; 4. First fixed structure; 5. Second fixed structure; 6. Support plate; 7. Adjusting bolt; 8. Limiting structure; 9. Limiting plate; 10. Telescopic groove; 11. Spring; 12. Fixing block; 13. Placement groove; 14. Rotating shaft; 15. Pulley. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings.
[0024] like Figure 1 , Figure 2 and Figure 3 and Figure 4As shown, a butyl sealant coating device for insulating glass includes: a coating machine body 1 and a coating mechanism 2 located on the upper surface of the coating machine body 1. The coating and the body 1 and the coating structure are consistent with the prior art. A conveyor belt 3 is provided on the coating machine body 1. A first fixing structure 4 and a second fixing structure 5 are respectively provided at both ends of the coating mechanism 2. The first fixing structure 4 and the second fixing structure 5 cooperate with each other, and both the first fixing structure 4 and the second fixing structure 5 are located on both sides of the conveyor belt 3 and connected to the coating machine body 1. During use, the user only needs to operate at the feeding end of the first fixing structure 4 and the discharging end of the second fixing structure 5. The frame can move automatically within the first fixing structure 4, without the need for multiple people to work together. It saves time and effort, is convenient and fast, greatly reduces labor intensity, and greatly improves work efficiency.
[0025] Both the first fixed structure 4 and the second fixed structure 5 include: support plates 6 fixedly connected to the coating machine body 1 and located on both sides of the conveyor belt 3. The fixed connection can improve the connection strength, and the support plates 6 are threadedly connected to the adjusting bolts 7. The adjusting bolts 7 can be adjusted by rotating and moving the support plates 6. The inner end of the adjusting bolts 7 is connected to the limiting structure 8. The rotation and movement of the adjusting bolts 7 can drive the limiting structure 8 to move. The limiting structure 8 cooperates with the conveyor belt 3 to move the aluminum frame on the conveyor belt 3. The movement adjustment of the limiting structure 8 is equivalent to adjusting the distance between the placement slots 13 of the limiting structure 8 on both sides of the conveyor belt 3, which is suitable for frames of different widths and greatly improves the applicability of the device.
[0026] The limiting structure 8 includes a limiting plate 9 movably connected to the adjusting bolt 7. The rotation of the adjusting bolt 7 does not cause the limiting plate 9 to rotate, but only causes the rotating plate 9 to move. The inner side of the limiting plate 9 is provided with a horizontally open telescopic groove 10, and the inside of the telescopic groove 10 is provided with a fixing block 12. The inner side of the fixing block 12 is connected to the bottom end of the telescopic groove 10 by a spring 11. When the vertical edge of the frame passes the fixing block 12, the fixing block 12 retracts inward to allow the frame to pass. After the vertical edge of the frame passes the fixing block 12, the fixing block 12 pops out to restrict the horizontal edge of the frame.
[0027] like Figure 2 , Figure 3 and Figure 4 As shown, the lower side of the telescopic groove 10 is provided with a placement groove 13, and the lower side and inner side of the placement groove 13 are provided with openings. The lower opening of the placement groove 13 is at the same level as the upper end face of the conveyor belt 3, which facilitates the contact between the frame and the conveyor belt 3. The placement groove 13 is used to fix the horizontal edge of the frame to ensure the stable operation and movement of the frame.
[0028] The lower inner side of the fixing block 12 is provided with a downward-facing groove, and a rotating shaft 14 is embedded in the groove. A pulley 15 is provided on the rotating shaft 14. The pulley 15 corresponds to the placement groove 13 and the diameter of the pulley 15 is greater than the depth of the groove, ensuring that the pulley 15 can contact the frame. When the horizontal edge of the frame is located inside the placement groove 13, the pulley 15 is located at the upper end of the horizontal edge of the frame. The pulley 15 can effectively prevent the frame from jamming and ensure the normal operation of the frame.
[0029] The upper outer side of the fixing block 12 is chamfered. When the frame is lowered from the upper end of the limiting plate 9, it will pass the upper end of the fixing block 12 first. The chamfer of the fixing block 12 can facilitate the placement of the frame. The feeding side of the fixing block 12 is chamfered. When the vertical edge of the frame is about to pass the fixing block 12, it will pass the feeding side of the fixing block 12 first. The chamfer on the side of the fixing block 12 can facilitate the forward movement of the frame.
[0030] The upper inner side of the limiting plate 9 is chamfered, which makes it easier for the frame to be placed inside the limiting plate 9 from above. The chamfer of the limiting plate 9 is conducive to the placement of the frame. The feeding end of the limiting plate 9 is chamfered. When the vertical edge of the frame is about to enter the limiting plate 9, it will first pass through the feeding end of the limiting plate 9. The chamfer on the side of the limiting plate 9 is conducive to the forward movement of the frame.
[0031] The length of the placement groove 13 in the limiting plate 9 of the second fixing structure 5 is greater than the length of the placement groove 13 in the limiting plate 9 of the first fixing structure 4, so as to prevent the side of the frame that has been coated by the coating mechanism 2 from touching the placement groove 13 and ensuring the integrity of the butyl rubber.
[0032] In use, the operator adjusts the position of the limiting structure according to the actual situation so that the distance between the placement slots 13 on both sides of the conveyor belt 3 is consistent with the width of the frame. Then, the operator feeds the frame into the feed end of the limiting plate 9 of the first fixed structure 4. The frame moves forward under the action of the conveyor belt 3. When the vertical edge of the frame passes the fixing block 12, the fixing block 12 retracts inward to allow the frame to pass. After the vertical edge of the frame passes the fixing block 12, the fixing block 12 pops out and restricts the horizontal edge of the frame. The pulley 15 can effectively prevent the frame from jamming and ensure the normal operation of the frame. When the frame enters the coating structure 2, glue can be applied. After the glue is applied, it enters the limiting plate of the second fixed structure 5 for fixing and finally flows out from the discharge port of the second fixed structure 5. During this process, the operator only needs to operate at the feed end and discharge end of the device. It does not require multiple people to complete the work, which saves time and effort, is convenient and fast, greatly reduces labor intensity, and greatly improves work efficiency.
[0033] This utility model provides a concept and implementation method for a butyl sealant coating device for insulating glass. There are many specific applications. The above is only a preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements can be made without departing from the principle of this utility model, and these improvements should also be considered within the protection scope of this utility model.
Claims
1. A butyl sealant coating device for insulating glass, characterized in that, include: The coating machine body (1) and the coating mechanism (2) located on the upper end face of the coating machine body (1) are provided. The coating machine body (1) is provided with a conveyor belt (3). The two ends of the coating mechanism (2) are respectively provided with a first fixing structure (4) and a second fixing structure (5). The first fixing structure (4) and the second fixing structure (5) are both located on both sides of the conveyor belt (3) and connected to the coating machine body (1). The first fixing structure (4) and the second fixing structure (5) both include: a support plate (6) fixedly connected to the coating machine body (1) and located on both sides of the conveyor belt (3), and the support plate (6) is threadedly connected to the adjusting bolt (7), the inner end of the adjusting bolt (7) is connected to the limiting structure (8), and the limiting structure (8) cooperates with the conveyor belt (3) for the aluminum frame to move on the conveyor belt (3).
2. The butyl sealant coating apparatus for insulating glass according to claim 1, characterized in that: The limiting structure (8) includes: a limiting plate (9) movably connected to the adjusting bolt (7), and the inner side of the limiting plate (9) is provided with a transversely open telescopic groove (10), and the inside of the telescopic groove (10) is provided with a fixing block (12), and the inner side of the fixing block (12) is connected to the bottom end of the telescopic groove (10) by a spring (11).
3. The butyl sealant coating apparatus for insulating glass according to claim 2, characterized in that: The lower side of the telescopic groove (10) is provided with a placement groove (13), and the lower and inner sides of the placement groove (13) are provided with openings, and the lower opening of the placement groove (13) is at the same level as the upper surface of the conveyor belt (3).
4. The butyl sealant coating apparatus for insulating glass according to claim 2, characterized in that: The lower inner side of the fixing block (12) is provided with a downward-facing groove, and a rotating shaft (14) is embedded in the groove. A pulley (15) is provided on the rotating shaft (14). The pulley (15) corresponds to the placement groove (13) and the diameter of the pulley (15) is greater than the depth of the groove.
5. The butyl sealant coating apparatus for insulating glass according to claim 4, characterized in that: The upper outer side of the fixed block (12) is chamfered, and the feed side of the fixed block (12) is chamfered.
6. The butyl sealant coating apparatus for insulating glass according to claim 2, characterized in that: The upper inner side of the limiting plate (9) is chamfered, and the feed end of the limiting plate (9) is chamfered.
7. The butyl sealant coating apparatus for insulating glass according to claim 1, characterized in that: The length of the placement groove (13) in the limiting plate (9) of the second fixing structure (5) is greater than the length of the placement groove (13) in the limiting plate (9) of the first fixing structure (4).