Sealing device for fire retardant coating filling

The automatic installation of the sealing cover is achieved through the disc and clamping block mechanism. Combined with the positioning and fixation of the fixed rod and the movable rod, it solves the problems of high labor intensity and slow production speed in the traditional fire retardant coating filling and sealing operations, and improves production efficiency and device stability.

CN223327792UActive Publication Date: 2025-09-12ANHUI LANYAN NEW MATERIAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422763416.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-09-12
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The filling and sealing operations of traditional fire retardant coatings are labor-intensive, slow in production speed, and the sealing machine has difficulty stabilizing the container, which affects the processing rate.

Method used

The disc and clamping block mechanism are used to realize the automatic installation of the sealing cap. The positioning and fixation of the fixed rod and the movable rod are combined, and the pressure sensor and roller are used to test the anti-extrusion force and deformation of the container.

Benefits of technology

The automatic installation of the sealing cap and the container is realized, the labor intensity of the staff is reduced, the production speed is increased, and the stability and ease of use of the device are enhanced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223327792U_ABST
    Figure CN223327792U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of fireproof coatings, in particular to a sealing device for fireproof coating filling, which comprises a fixing part, a transmission roller is arranged at the bottom of the fixing part, first open grooves are formed above two sides of the inner wall of the fixing part in a penetrating manner, and a conveying belt is arranged inside the first open grooves. A disc is movably installed on the top of the inner wall of the fixing piece, a clamping mechanism is arranged on the disc, and second open grooves are formed in the lower portions of the two sides of the inner wall of the fixing piece. Through the arrangement of the disc and the clamping blocks, automatic feeding of a container and a sealing cover is completed through the transmission roller and the conveying belt, the sealing cover is clamped to the container through the clamping blocks, then the sealing cover is fixed to the top of a container opening through the abutting disc, and installation of the sealing cover and the container is completed through extrusion movement of the clamping blocks on the edge of the sealing cover. By means of the operation mode, automation of installation of the container and the sealing cover is achieved, the production speed is guaranteed, and the labor intensity of workers is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of fire retardant coatings, in particular to a sealing device for filling fire retardant coatings. Background Art

[0002] Fire retardant coatings are specialized coatings used on combustible substrates to reduce their flammability, slow the spread of fire, and ultimately improve their fire resistance. These coatings are applied to combustible substrates to alter their surface combustion characteristics and slow the spread of fire, or to building components to improve their fire resistance.

[0003] The canned containers need to be sealed, and sealing is to install the sealing cap above the container mouth. The traditional operation method is that the staff manually install the sealing cap and the container using tools, but this operation method increases the labor intensity of the staff and the production speed cannot be guaranteed. In addition, the existing sealing machine directly places the container under the sealing machine and then seals the container. During the sealing process, it is difficult for the workbench of the sealing machine to ensure that the container is not tipped over by external factors, which affects the processing rate. Utility Model Content

[0004] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a sealing device for filling fire retardant coatings.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A sealing device for filling fire-retardant paint includes a fixing part, a transmission roller is provided at the bottom of the fixing part, a first slot is provided through the upper part of both sides of the inner wall of the fixing part, a conveyor belt is provided inside the first slot, a disc is movably mounted on the top of the inner wall of the fixing part, a clamping mechanism is provided on the disc, a second slot is provided below both sides of the inner wall of the fixing part, a third slot is provided through the bottom end of the inner wall of the second slot, an electric extension rod is movably mounted inside the third slot, the extended end of the electric extension rod faces the transmission roller, and the extended end of the electric extension rod is provided with an auxiliary mechanism.

[0007] Preferably, a first sliding groove is provided at the top of the inner wall of the fixing member, a first electric slider is slidably installed inside the first sliding groove, an electric telescopic rod is installed at the bottom of the first electric slider, the telescopic end of the electric telescopic rod faces downward, the telescopic end of the electric telescopic rod is connected to the top of the disc, a second rotating motor is embedded in the top of the disc, and the mounting end of the second rotating motor is connected to the telescopic end of the electric telescopic rod.

[0008] Preferably, the clamping mechanism includes a clamping block, a plurality of fourth sliding grooves are evenly opened on the bottom of the disc, a fourth electric slider is slidably installed inside the fourth sliding groove, a clamping block is movably installed on the bottom of the fourth electric slider, a second electric lifting rod is embedded in the top of the clamping block, and the mounting end of the second electric lifting rod is connected to the fourth electric slider.

[0009] Preferably, a first electric lifting rod is embedded and installed in the center of the bottom of the disc, with the lifting end of the first electric lifting rod facing downward, and the lifting end of the first electric lifting rod is connected to an abutment disc.

[0010] Preferably, second sliding grooves are vertically opened on both inner walls of the third slot, and a second electric slider is installed on one side of the electric extension rod close to the second sliding groove, and the second electric slider is slidably installed inside the second sliding groove.

[0011] Preferably, the auxiliary mechanism includes a fixed rod and a movable rod, the extended end of the electric extension rod is installed with a fixed rod, and two movable rods are movably installed on the side of the fixed rod away from the electric extension rod, and the two movable rods are both provided with a fourth slot on the side close to each other, and a pressure sensor is installed at the bottom end of the inner wall of the fourth slot, and a spring telescopic rod is slidably installed inside the fourth slot, and the end of the spring telescopic rod close to the pressure sensor is in contact with the pressure sensor, and the end of the spring telescopic rod away from the pressure sensor is rotatably installed with a roller.

[0012] Preferably, a third slide groove is provided on the side of the fixed rod away from the electric extension rod, and a third electric slider is installed on the end of the movable rod close to the fixed rod. The third electric slider is slidably installed inside the third slide groove, and a first rotating motor is embedded in the end of the movable rod close to the fixed rod, and the mounting end of the first rotating motor is connected to the third electric slider.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] The utility model is provided with a disc and a clamping block, and the automatic loading of the container and the sealing cover is completed by the transmission roller and the conveyor belt. The clamping block clamps the sealing cover to the container, and then fixes the sealing cover to the top of the container mouth through the abutment disc. The sealing cover and the container are installed by the squeezing movement of the clamping block on the edge of the sealing cover. This operation mode realizes the automation of the installation of the container and the sealing cover, ensures the production speed, and reduces the labor intensity of the staff.

[0015] The utility model is provided with a fixed rod, a movable rod and a pressure sensor. When the fixed rod abuts the container, the third electric slider slides in the third slide groove, so that the two movable rods can abut the container. Then, the fixed rod and the movable rod both move to the preset position. Through this operation mode, the container can be positioned, which facilitates the subsequent sealing of the container by the device.

[0016] When the container and the sealing cover are installed, the fixed rod and the movable rod can also fix the container. By fixing the container with the fixed rod and the movable rod, the sealing cover is more stable during installation, thereby increasing the functional stability of the device.

[0017] After the container and the sealing cover are installed, the movable rod is moved close to the container so that the roller abuts and squeezes the outside of the container. At this time, the spring telescopic rod is squeezed, and the spring telescopic rod squeezes the pressure sensor. The pressure sensor transmits the pressure value to the background control system, and until the pressure sensor reaches the preset pressure value, the second electric slider slides in the second slide groove, causing the movable rod to move up and down on the outside of the container, and the disc lifts the container. The disc is then driven to rotate by the second rotating motor, and the spring telescopic rod abuts against the outside of the container and moves up and down. Through this operation mode, the roller can roll on the outside of the container, and the anti-extrusion force test of the container can be completed. During the test, the deformation detection of the container can also be completed according to the change of pressure value, which increases the convenience of use of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0019] Figure 2 This is a schematic diagram of the fixing structure of the utility model;

[0020] Figure 3 For the utility model Figure 2 A in the middle is an enlarged structural diagram;

[0021] Figure 4 This is a schematic diagram of the installation structure of the fixed rod and the movable rod of the utility model;

[0022] Figure 5 This is a schematic diagram of the installation structure of the pressure sensor of the utility model;

[0023] Figure 6 This is a schematic diagram of the installation structure of the abutment plate of the present utility model;

[0024] Figure 7 This is a schematic diagram of the installation structure of the second rotating motor of the present invention;

[0025] Figure 8 This is a schematic diagram of the installation structure of the first electric lifting rod of the utility model;

[0026] Figure 9 This is a schematic diagram of the installation structure of the second electric lifting rod of the utility model.

[0027] In the figure: 1. fixing part; 2. transmission roller; 3. first slot; 4. conveyor belt; 5. second slot; 6. first slide; 7. first electric slider; 8. electric telescopic rod; 9. disc; 10. third slot; 11. second slide; 12. second electric slider; 13. electric extension rod; 14. fixing rod; 15. third slide; 16. third electric slider; 17. movable rod; 18. spring telescopic rod; 19. roller; 20. first rotating motor; 21. fourth slot; 22. pressure sensor; 23. abutment plate; 24. clamping block; 25. second rotating motor; 26. first electric lifting rod; 27. fourth slide; 28. fourth electric slider; 29. ​​second electric lifting rod. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0029] Reference Figure 1-9 A sealing device for filling fire retardant coatings includes a fixing member 1, a transmission roller 2 provided at the bottom of the fixing member 1, a first slot 3 extending through the upper portion of the inner wall of the fixing member 1 on both sides, a conveyor belt 4 provided within the first slot 3, a disc 9 movably mounted on the top portion of the inner wall of the fixing member 1, and a clamping mechanism provided on the disc 9, a second slot 5 extending through the lower portion of the inner wall of the fixing member 1 on both sides, a third slot 10 extending through the lower portion of the inner wall of the second slot 5, and an electric extension rod 13 movably mounted within the third slot 10, the extension end of the electric extension rod 13 facing the transmission roller 2, and an auxiliary mechanism provided at the extension end of the electric extension rod 13. The transmission roller 2 loads the container, the conveyor belt 4 loads the sealing cap, the clamping mechanism can clamp the sealing cap and secure the container, and can also install the sealing cap on the container. The auxiliary mechanism can position the container and detect the container's anti-extrusion force and deformation.

[0030] As a technical optimization solution of the present invention, a first chute 6 is formed at the top of the inner wall of the fixing member 1. A first electric slider 7 is slidably mounted within the first chute 6. An electric telescopic rod 8 is mounted at the bottom of the first electric slider 7. The telescopic end of the electric telescopic rod 8 faces downward and is connected to the top of the disc 9. A second rotary motor 25 is embedded in the top of the disc 9, and the mounting end of the second rotary motor 25 is connected to the telescopic end of the electric telescopic rod 8. The sliding of the first electric slider 7 in the first chute 6 drives the electric telescopic rod 8 to move, which in turn drives the disc 9 to extend, and the second rotary motor 25 drives the disc 9 to rotate.

[0031] As a technical optimization solution of the present invention, the clamping mechanism includes a clamping block 24. A plurality of fourth chutes 27 are evenly distributed on the bottom of the disc 9. A fourth electric slider 28 is slidably mounted within the fourth chutes 27. The clamping block 24 is movably mounted on the bottom of the fourth electric slider 28. A second electric lift rod 29 is embedded in the top of the clamping block 24. The mounting end of the second electric lift rod 29 is connected to the fourth electric slider 28. The sliding of the fourth electric slider 28 in the fourth chutes 27 allows the clamping block 24 to move on the disc 9, and the second electric lift rod 29 drives the clamping block 24 to rise and fall.

[0032] As a technical optimization solution of the present invention, a first electric lift rod 26 is embedded in the center of the bottom of the disk 9. The lifting end of the first electric lift rod 26 faces downward and is connected to the abutment plate 23. The first electric lift rod 26 drives the abutment plate 23 to move downward and abut the top of the sealing cover, thereby fixing the sealing cover and ensuring a more stable installation between the sealing cover and the container.

[0033] As a technical optimization solution of the present invention, a second chute 11 is vertically formed on both inner walls of the third slot 10. A second electric slider 12 is mounted on the side of the electric extension rod 13 adjacent to the second chute 11. The second electric slider 12 slides within the second chute 11. The second electric slider 12 slides within the second chute 11, causing the electric extension rod 13 to move up and down.

[0034] As a technical optimization solution of the present invention, the auxiliary mechanism includes a fixed rod 14 and a movable rod 17. The extended end of the electric extension rod 13 is installed with a fixed rod 14. Two movable rods 17 are movably installed on the side of the fixed rod 14 away from the electric extension rod 13. The two movable rods 17 are both provided with a fourth slot 21 on the side close to each other. A pressure sensor 22 is installed at the bottom end of the inner wall of the fourth slot 21. A spring telescopic rod 18 is slidably installed inside the fourth slot 21. The end of the spring telescopic rod 18 close to the pressure sensor 22 is in contact with the pressure sensor 22, and the end of the spring telescopic rod 18 away from the pressure sensor 22 is rotatably installed with a roller 19. The roller 19 abuts against and squeezes the outside of the container. At this time, the spring telescopic rod 18 is squeezed, and the spring telescopic rod 18 squeezes the pressure sensor 22. The pressure sensor 22 transmits the pressure value to the background control system, and until the pressure sensor 22 reaches the preset pressure value, the second electric slider 12 slides in the second slide groove 11, so that the movable rod 17 moves up and down on the outside of the container, and the disc 9 lifts the container. The disc 9 is then driven to rotate by the second rotary motor 25. Combined with the spring telescopic rod 18 abutting against the outside of the container and moving up and down, this operation mode allows the roller 19 to roll on the outside of the container, and the anti-extrusion force test of the container can be completed. During the test, the deformation detection of the container can also be completed according to the change of the pressure value, which increases the convenience of use of the device.

[0035] As a technical optimization solution of the present invention, a third chute 15 is defined on the side of the fixed rod 14 away from the electric extension rod 13. A third electric slider 16 is mounted on the end of the movable rod 17 near the fixed rod 14. The third electric slider 16 slides within the third chute 15. A first rotary motor 20 is embedded in the end of the movable rod 17 near the fixed rod 14. The mounting end of the first rotary motor 20 is connected to the third electric slider 16. The sliding of the third electric slider 16 in the third chute 15 allows the movable rod 17 to move on the fixed rod 14. The first rotary motor 20 drives the movable rod 17 to rotate, allowing the movable rod 17 to switch between different usage states according to user needs.

[0036] When the present invention is in use, the electrical equipment in the device is powered by an external power supply through a wire. The device is equipped with a background control system to control the electrical equipment in the device. The model of the pressure sensor 22 used in the device is LFC-09A, and the drive roller 2 and the conveyor belt 4 are existing mature technologies, so they will not be elaborated on in detail.

[0037] When the device is in use, the container to be sealed is conveyed to the bottom of the disc 9 by the transmission roller 2. At this time, the transmission roller 2 at this location stops rotating, the electric extension rod 13 drives the fixed rod 14 to extend, and the first rotary motor 20 drives the movable rod 17 to rotate, so that the two spring telescopic rods 18 rotate to the side away from each other. When the fixed rod 14 abuts the container, the third electric slider 16 slides in the third slide groove 15, so that the two movable rods 17 can abut the container. Then, the fixed rod 14 and the movable rod 17 both move to the preset position. Through this operation mode, the positioning of the container can be completed, which is convenient for the device to seal the container later.

[0038] When the container and the sealing cover are installed, the fixed rod 14 and the movable rod 17 can also fix the container. By fixing the container with the fixed rod 14 and the movable rod 17, the sealing cover is more stable during installation, thereby increasing the functional stability of the device.

[0039] The sealing cap is loaded onto the conveyor belt 4 by a robot or manually, and then the conveyor belt 4 transports the sealing cap. The first electric slider 7 slides in the first chute 6, causing the disc 9 to move toward the conveyor belt 4 and slide to above the sealing cap. The fourth electric slider 28 slides in the fourth chute 27, causing the clamping block 24 to move away from the center of the disc 9 and move to a preset position. The second electric lifting rod 29 drives the clamping block 24 to move downward, causing the bottom of the clamping block 24 to move to the same horizontal height as the bottom of the sealing cap. The clamping block 24 moves close to the center of the disc 9, causing the clamping block 24 to clamp the sealing cap. Then, the disc 9 drives the sealing cap to move above the container.

[0040] At this time, the electric telescopic rod 8 drives the disc 9 to move downward until the bottom of the sealing cover abuts the top of the container, and the first electric lifting rod 26 drives the abutting plate 23 to move toward the sealing cover, and makes the bottom of the abutting plate 23 abut the top of the sealing cover, the clamping block 24 moves away from the sealing cover and releases the sealing cover, and the disc 9 moves upward to the preset position. During the upward movement of the disc 9, the abutting plate 23 always abuts the top of the sealing cover through the extension of the first electric lifting rod 26, and the clamping block 24 moves toward the center of the disc 9 and moves When it reaches the preset position, the clamping block 24 moves downward through the extension of the second electric lifting rod 29. In the process of the clamping block 24 moving downward, the clamping block 24 squeezes the outer ring of the sealing cover to be bent downward to the preset bending state, and the clamping block 24 moves away from the center of the disc 9 and moves to the preset position. Then the clamping block 24 continues to move downward to the preset position. At this time, the clamping block 24 moves toward the center of the disc 9 again, and the clamping block 24 squeezes the edge of the bent part of the outer ring of the sealing cover into the outer ring of the container mouth. At this time, the installation of the container and the sealing cover is completed.

[0041] After the container and the sealing cover are installed, the movable rod 17 first moves away from the container, and then the movable rod 17 is driven to rotate by the first rotating motor 20, so that the spring telescopic rod 18 rotates to the side facing the container, and then the movable rod 17 moves close to the container so that the roller 19 abuts and squeezes the outside of the container. At this time, the spring telescopic rod 18 is squeezed, and the spring telescopic rod 18 squeezes the pressure sensor 22. The pressure sensor 22 transmits the pressure value to the background control system, and until the pressure sensor 22 reaches the preset pressure value, the second electric slider 12 slides in the second slide groove 11, so that the movable rod 17 moves up and down on the outside of the container, and the disc 9 lifts the container. Then, the disc 9 is driven to rotate by the second rotating motor 25, and the spring telescopic rod 18 abuts against the outside of the container and moves up and down. Through this operation mode, the roller 19 can roll on the outside of the container, and the anti-extrusion force test of the container can be completed. During the test, the deformation detection of the container can also be completed according to the change of the pressure value, which increases the convenience of use of the device.

[0042] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A sealing device for filling fire retardant coating, comprising a fixing member (1), characterized in that: A transmission roller (2) is provided at the bottom of the fixing member (1), a first slot (3) is provided through the upper part of both sides of the inner wall of the fixing member (1), a conveyor belt (4) is provided inside the first slot (3), a disc (9) is movably installed on the top of the inner wall of the fixing member (1), and a clamping mechanism is provided on the disc (9), a second slot (5) is provided below both sides of the inner wall of the fixing member (1), a third slot (10) is provided through the bottom end of the inner wall of the second slot (5), an electric extension rod (13) is movably installed inside the third slot (10), the extension end of the electric extension rod (13) faces the transmission roller (2), and the extension end of the electric extension rod (13) is provided with an auxiliary mechanism.

2. A sealing device for filling fire retardant coating according to claim 1, characterized in that: A first sliding groove (6) is provided at the top of the inner wall of the fixing member (1), a first electric slider (7) is slidably installed inside the first sliding groove (6), an electric telescopic rod (8) is installed at the bottom of the first electric slider (7), the telescopic end of the electric telescopic rod (8) faces downward, the telescopic end of the electric telescopic rod (8) is connected to the top of the disc (9), a second rotary motor (25) is embedded in the top of the disc (9), and the mounting end of the second rotary motor (25) is connected to the telescopic end of the electric telescopic rod (8).

3. The sealing device for filling fire retardant coating according to claim 1, characterized in that: The clamping mechanism includes a clamping block (24), a plurality of fourth chute grooves (27) are evenly opened at the bottom of the disc (9), a fourth electric slider (28) is slidably installed inside the fourth chute (27), a clamping block (24) is movably installed at the bottom of the fourth electric slider (28), a second electric lifting rod (29) is embedded in the top of the clamping block (24), and the mounting end of the second electric lifting rod (29) is connected to the fourth electric slider (28).

4. The sealing device for filling fire retardant coating according to claim 1, characterized in that: A first electric lifting rod (26) is embedded and installed at the center position of the bottom of the disc (9), with the lifting end of the first electric lifting rod (26) facing downward, and the lifting end of the first electric lifting rod (26) is connected to the abutment disc (23).

5. The sealing device for filling fire retardant coating according to claim 1, characterized in that: A second sliding groove (11) is vertically provided on both inner walls of the third slot (10), and a second electric slider (12) is installed on one side of the electric extension rod (13) close to the second sliding groove (11), and the second electric slider (12) is slidably installed inside the second sliding groove (11).

6. The sealing device for filling fire retardant coating according to claim 1, characterized in that: The auxiliary mechanism comprises a fixed rod (14) and a movable rod (17); the fixed rod (14) is installed at the extended end of the electric extension rod (13); two movable rods (17) are movably installed on the side of the fixed rod (14) away from the electric extension rod (13); the two movable rods (17) are both provided with a fourth slot (21) on the side close to each other; a pressure sensor (22) is installed at the bottom end of the inner wall of the fourth slot (21); a spring telescopic rod (18) is slidably installed inside the fourth slot (21); the end of the spring telescopic rod (18) close to the pressure sensor (22) is in contact with the pressure sensor (22); and the end of the spring telescopic rod (18) away from the pressure sensor (22) is rotatably installed with a roller (19).

7. A sealing device for filling fire retardant coating according to claim 6, characterized in that: A third sliding groove (15) is provided on a side of the fixed rod (14) away from the electric extension rod (13); a third electric slider (16) is installed on one end of the movable rod (17) close to the fixed rod (14); the third electric slider (16) is slidably installed inside the third sliding groove (15); a first rotating motor (20) is embedded and installed on one end of the movable rod (17) close to the fixed rod (14); and the installation end of the first rotating motor (20) is connected to the third electric slider (16).