Hollow glass aluminum frame filler sealing device
Patent Information
- Application Number
- CN202521329788.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-06-27
AI Technical Summary
[0006]因此,本实用新型目的是通过伺服电机驱动转动螺柱与从动螺柱的传动设计,利用转动轮与从动轮的外径差实现铝框的差异化移动,确保铝框在填料封口过程中位置稳定,装置在加工完成后,可通过反向转动伺服电机,同步带动铝框限位块与固定板复位并带出铝框,无需人工深入设备内部操作,解决了传统设备无法自动复位铝框的难题,显著降低工人劳动强度,提高生产效率
通过伺服电机驱动转动螺柱与从动螺柱的传动设计,利用转动轮与从动轮的外径差实现铝框的差异化移动,确保铝框在填料封口过程中位置稳定,装置在加工完成后,可通过反向转动伺服电机,同步带动铝框限位块与固定板复位并带出铝框,无需人工深入设备内部操作,解决了传统设备无法自动复位铝框的难题,显著降低工人劳动强度,提高生产效率。
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Figure CN224742264U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of aluminum frame processing equipment, and in particular to a sealing device for filler in aluminum frames of insulating glass. Background Technology
[0002] In the field of insulating glass production, aluminum frame filler sealing is a key process that directly affects the sealing performance and overall quality of insulating glass. However, existing insulating glass aluminum frame filler sealing equipment has obvious defects in operation, which restricts production efficiency and ease of operation.
[0003] The existing aluminum frame fixing and removal relies on manual operation. The fixing component can only push the aluminum frame under the punching and filling component to complete the filling and sealing. However, after the operation is completed, the fixing component cannot drive the aluminum frame to reset synchronously when it resets. This means that workers have to manually and carefully remove the aluminum frame from inside the equipment, which is not only time-consuming and labor-intensive, but also prone to deformation or damage to the aluminum frame due to improper operation, affecting product quality.
[0004] With the increasing adoption of automated production of insulating glass, there is a need for a filler sealing device that can automatically position, fix, and reset the aluminum frame, in order to reduce manual intervention, improve production efficiency, and ensure product consistency. Utility Model Content
[0005] In view of the above-mentioned problem that with the popularization of automated production of insulating glass, there is a need for a filler sealing device that can realize automatic positioning, fixing and resetting of aluminum frame in order to reduce manual intervention, improve production efficiency and ensure product consistency, this utility model is proposed.
[0006] Therefore, the purpose of this utility model is to achieve differentiated movement of the aluminum frame by using a servo motor to drive the rotating stud and the driven stud, and utilizing the difference in outer diameter between the rotating wheel and the driven wheel. This ensures that the aluminum frame is in a stable position during the filling and sealing process. After processing, the device can rotate the servo motor in the opposite direction to synchronously drive the aluminum frame limit block and the fixing plate to reset and bring out the aluminum frame. This eliminates the need for manual operation inside the equipment, solves the problem that traditional equipment cannot automatically reset the aluminum frame, significantly reduces the labor intensity of workers, and improves production efficiency.
[0007] To solve the above technical problems, this utility model provides the following technical solution: a sealing device for aluminum frame filler of hollow glass, including a fixed base and two supporting connecting columns on one side of the fixed base, a limiting connecting platform on the two supporting connecting columns, and a movable base plate on one side of the limiting connecting platform; The limiting component includes a positioning moving block installed on one side of the movable base plate, an aluminum frame mounting block on one side of the positioning moving block, and an aluminum frame limiting block on one side of the aluminum frame mounting block; The rotating assembly includes a rotating stud installed inside the positioning moving block, a rotating wheel on the rotating stud, and a servo motor on one side of the rotating stud.
[0008] As a preferred embodiment of the insulating glass aluminum frame filler sealing device of this utility model, the movable base plate is provided with a limiting baffle on one side and a constraint baffle on the other side, and two guide constraint columns are provided between the limiting baffle and the constraint baffle, and two positioning insertion slots are provided on the positioning moving block.
[0009] As a preferred embodiment of the insulating glass aluminum frame filler sealing device of this utility model, each of the guide constraint posts is inserted into the inner side of the corresponding positioning insertion slot, the positioning moving block is provided with an internal thread, the inner side of the internal thread is provided with a rotating stud, a servo motor is fixedly provided on one side of the limiting baffle, and one end of the rotating stud passes through the limiting baffle and is connected to the servo motor.
[0010] As a preferred embodiment of the insulating glass aluminum frame filler sealing device of this utility model, wherein: one end of the rotating stud is movably inserted into the inner side of the constraint baffle, an aluminum frame mounting block is provided on one side of the positioning moving block, an movable fixing groove is opened on the aluminum frame mounting block, an aluminum frame fixing plate is provided on one side of the aluminum frame mounting block, and an aluminum frame limiting block is provided on one side of the aluminum frame mounting block.
[0011] As a preferred embodiment of the insulating glass aluminum frame filler sealing device of this utility model, one end of the aluminum frame limiting block is inserted into the inner side of the movable fixing groove, a movable sleeve is provided inside the movable fixing groove, one side of the movable sleeve is connected to the aluminum frame limiting block, a driven stud is provided inside the movable sleeve, and one end of the driven stud is movably inserted into the inner side of the aluminum frame mounting block.
[0012] As a preferred embodiment of the insulating glass aluminum frame filler sealing device of this utility model, the driven stud is provided with a driven wheel, the driven wheel and the rotating wheel are sleeved with a transmission belt, a rotating insertion post is provided on one side of the driven wheel, and one end of the rotating insertion post passes through the limiting baffle and is suspended in the air.
[0013] As a preferred embodiment of the insulating glass aluminum frame filler sealing device of this utility model, wherein: one side of the aluminum frame limiting block is in contact with the surface of the aluminum frame mounting block, an aluminum frame to be filled is provided between the aluminum frame limiting block and the aluminum frame fixing plate, the positioning moving block is engaged with the rotating stud through the internal thread, and the moving sleeve is engaged with the driven stud through the thread.
[0014] The beneficial effects of this utility model are: By using a servo motor to drive the rotating stud and driven stud, the aluminum frame is moved differently by utilizing the difference in outer diameter between the rotating wheel and the driven wheel. This ensures that the aluminum frame is in a stable position during the filling and sealing process. After processing, the device can rotate the servo motor in the opposite direction to synchronously drive the aluminum frame limit block and the fixing plate to reset and remove the aluminum frame. This eliminates the need for manual operation inside the equipment, solving the problem that traditional equipment cannot automatically reset the aluminum frame, significantly reducing the labor intensity of workers and improving production efficiency. Attached Figure Description
[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Among them: Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0016] Figure 2 This is a partial side view of the structure of this utility model.
[0017] Figure 3 This is a schematic diagram of the aluminum frame mounting block structure of this utility model.
[0018] Figure 4 This is a schematic diagram of the driven stud structure of this utility model.
[0019] Figure 5 This is a partial structural diagram of the present utility model.
[0020] Explanation of reference numerals in the attached figures: 1. Fixed base; 2. Support connecting column; 3. Limiting connecting platform; 4. Movable base plate; 5. Limiting baffle; 6. Constraint baffle; 7. Guide constraint column; 8. Rotating stud; 9. Rotating wheel; 10. Servo motor; 11. Positioning moving block; 12. Aluminum frame mounting block; 13. Aluminum frame fixing plate; 14. Movable fixing groove; 15. Positioning insertion groove; 16. Internal thread; 17. Aluminum frame limiting block; 18. Moving sleeve; 19. Driven stud; 20. Driven wheel; 21. Transmission belt; 22. Aluminum frame to be filled; 23. Rotating insertion column. Detailed Implementation
[0021] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Example 1
[0022] Reference Figure 1-4This is the first embodiment of the present invention, which provides a sealing device for aluminum frame filler of hollow glass, including a fixed base 1 and two supporting connecting columns 2 on one side of the fixed base 1. The two supporting connecting columns 2 are provided with limiting connecting platforms 3. A movable base plate 4 is provided on one side of the limiting connecting platform 3. A positioning moving block 11 is installed on one side of the movable base plate 4. An aluminum frame mounting block 12 is provided on one side of the positioning moving block 11. An aluminum frame limiting block 17 is provided on one side of the aluminum frame mounting block 12. A limiting baffle 5 is provided on one side of the movable base plate 4. A constraint baffle 6 is provided on one side of the movable base plate 4. Two guide constraint columns 7 are provided between the limiting baffle 5 and the constraint baffle 6. Two positioning insertion slots 15 are opened on the positioning moving block 11. Each guide constraint post 7 is inserted into the inner side of the corresponding positioning insertion slot 15. The positioning moving block 11 has an internal thread 16, and a rotating stud 8 is provided inside the internal thread 16. A servo motor 10 is fixedly provided on one side of the limiting baffle 5. One end of the rotating stud 8 passes through the limiting baffle 5 and is connected to the servo motor 10. The other end of the rotating stud 8 is movably inserted into the inner side of the constraint baffle 6. An aluminum frame mounting block 12 is provided on one side of the positioning moving block 11. A movable fixing slot 14 is provided on the aluminum frame mounting block 12. An aluminum frame fixing plate 13 is provided on one side of the aluminum frame mounting block 12. An aluminum frame limiting block 17 is provided on one side of the aluminum frame mounting block 12. Example 2
[0023] Reference Figure 2-5 This is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is that it includes a rotating stud 8 installed inside the positioning moving block 11, a rotating wheel 9 on the rotating stud 8, a servo motor 10 on one side of the rotating stud 8, one end of the aluminum frame limiting block 17 inserted into the inner side of the movable fixing groove 14, a movable sleeve 18 inside the movable fixing groove 14, one side of the movable sleeve 18 connected to the aluminum frame limiting block 17, a driven stud 19 inside the movable sleeve 18, and one end of the driven stud 19 movably inserted into the inner side of the aluminum frame mounting block 12. A driven wheel 20 is provided on the driven stud 19. A transmission belt 21 is sleeved on the driven wheel 20 and the rotating wheel 9. A rotating plug 23 is provided on one side of the driven wheel 20. One end of the rotating plug 23 passes through the limiting baffle 5 and is suspended. One side of the aluminum frame limiting block 17 is in contact with the surface of the aluminum frame mounting block 12. An aluminum frame to be filled 22 is provided between the aluminum frame limiting block 17 and the aluminum frame fixing plate 13. The positioning moving block 11 is engaged with the rotating stud 8 through the internal thread 16. The moving sleeve 18 is engaged with the driven stud 19 through the thread.
[0024] In use, the aluminum frame 22 to be filled is placed on the aluminum frame mounting block 12, located between the aluminum frame limiting block 17 and the aluminum frame fixing plate 13. The servo motor 10 is started, which drives the rotating stud 8 to rotate. The rotating stud 8 engages with the positioning moving block 11 through the internal thread 16, driving the positioning moving block 11 to move along the guide constraint post 7 towards the limiting baffle 5. At the same time, the rotating wheel 9 on the rotating stud 8 drives the driven wheel 20 to rotate through the transmission belt 21. The driven wheel 20 drives the driven stud 19 to rotate.
[0025] Since the outer diameter of the rotating wheel 9 is smaller than that of the driven wheel 20, and the rotation speed of the rotating stud 8 is higher than that of the driven stud 19, the positioning moving block 11 drives the aluminum frame limiting block 17 to move quickly toward the limiting baffle 5. Meanwhile, the aluminum frame fixing plate 13 moves slowly through the threaded engagement of the moving sleeve 18 and the driven stud 19. Finally, the aluminum frame fixing plate 13 gradually approaches the aluminum frame limiting block 17, clamping and fixing the aluminum frame 22 to be filled. When the positioning moving block 11 moves to the set position, the aluminum frame 22 to be filled is exactly below the upper processing equipment (drilling and filling equipment). The equipment automatically performs drilling, filling and sealing operations on the aluminum frame.
[0026] After processing, the servo motor 10 rotates in the opposite direction, and the rotating stud 8 and the driven stud 19 rotate in the same direction. The positioning moving block 11 drives the aluminum frame limiting block 17 to move and reset towards the constraint baffle 6. At the same time, the aluminum frame fixing plate 13 slowly separates due to the slow rotation of the driven stud 19. Together, they bring the processed aluminum frame out of the equipment. When it moves to the initial position, the aluminum frame limiting block 17 and the aluminum frame fixing plate 13 are completely released, and the worker can directly take out the aluminum frame to complete the entire filling sealing process.
[0027] The remaining structure is the same as that in Example 1.
[0028] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A sealing device for aluminum frame filler in insulating glass, characterized in that: It includes a fixed base (1) and two supporting connecting columns (2) on one side of the fixed base (1). The two supporting connecting columns (2) are provided with limiting connecting platforms (3), and the limiting connecting platforms (3) are provided with a movable base plate (4) on one side. The limiting component includes a positioning moving block (11) installed on one side of the movable base plate (4), an aluminum frame mounting block (12) is provided on one side of the positioning moving block (11), and an aluminum frame limiting block (17) is provided on one side of the aluminum frame mounting block (12). The rotating assembly includes a rotating stud (8) installed inside the positioning moving block (11), a rotating wheel (9) is provided on the rotating stud (8), and a servo motor (10) is provided on one side of the rotating stud (8). A limiting baffle (5) is provided on one side of the movable base plate (4), and a constraint baffle (6) is provided on one side of the movable base plate (4). Two guide constraint posts (7) are provided between the limiting baffle (5) and the constraint baffle (6). Two positioning insertion slots (15) are opened on the positioning moving block (11). Each guide constraint post (7) is inserted into the inner side of the corresponding positioning insertion slot (15). An internal thread (16) is opened on the positioning moving block (11). A rotating stud (8) is provided inside the internal thread (16). The limiting baffle (5) is provided on one side of the movable base plate (4), and a constraint baffle (6) is provided on the other side of the movable base plate (4). A servo motor (10) is fixedly provided on one side of the baffle (5). One end of the rotating stud (8) passes through the limiting baffle (5) and is connected to the servo motor (10). One end of the rotating stud (8) is movably inserted into the inner side of the constraint baffle (6). An aluminum frame mounting block (12) is provided on one side of the positioning moving block (11). An movable fixing groove (14) is opened on the aluminum frame mounting block (12). An aluminum frame fixing plate (13) is provided on one side of the aluminum frame mounting block (12). An aluminum frame limiting block (17) is provided on one side of the aluminum frame mounting block (12). One end of the aluminum frame limiting block (17) is inserted into the inner side of the movable fixing groove (14). The movable fixing groove (14) is provided with a movable sleeve (18). One side of the movable sleeve (18) is connected to the aluminum frame limiting block (17). The movable sleeve (18) is provided with a driven stud (19) inside. One end of the driven stud (19) is movably inserted into the inner side of the aluminum frame mounting block (12). The driven stud (19) is provided with a driven wheel (20), and a transmission belt (21) is sleeved on the driven wheel (20) and the rotating wheel (9). A rotating plug (23) is provided on one side of the driven wheel (20), and one end of the rotating plug (23) passes through the limiting baffle (5) and is suspended in the air.
2. The insulating glass aluminum frame filler sealing device according to claim 1, characterized in that: The aluminum frame limiting block (17) is attached to the surface of the aluminum frame mounting block (12) on one side. An aluminum frame to be filled (22) is provided between the aluminum frame limiting block (17) and the aluminum frame fixing plate (13). The positioning moving block (11) is engaged with the rotating stud (8) through the internal thread (16). The moving sleeve (18) is engaged with the driven stud (19) through the thread.