A composite molding equipment for waterproof, heat-insulating and root-piercing-resistant coiled materials

By designing adhesive spraying components, heating components, adhesive temperature detection components, and adhesive scraping components, the problems of uneven adhesive spraying, uneven heating, and inability to quickly scrape off adhesive in roll-to-roll composite molding equipment have been solved, improving the composite quality and adhesion, and realizing automated control and efficient production.

CN120056580BActive Publication Date: 2025-10-28NANTONG RUIRUI WATERPROOF NEW TECH DEV CO LTD
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Patent Information

Application Number
CN202510251015.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-10-28
Estimated Expiration
2045-03-04

AI Technical Summary

Technical Problem

Existing roll-to-roll lamination equipment suffers from problems such as uneven glue spraying, inability to adjust the heating air angle, poor glue heating uniformity, inability to automatically control glue temperature, and inability to quickly scrape off glue after lamination, resulting in a decline in lamination quality.

Method used

The device employs a combination design of a glue spraying assembly, a heating assembly, a glue temperature detection assembly, and a glue scraping assembly. Through the coordinated operation of components such as the No. 7 support rod, a fan, and a microcomputer control box, it achieves uniform glue spraying, uniform heating, automatic temperature control, and rapid removal of excess glue.

Benefits of technology

It improves the quality of roll-to-roll composite molding, ensures uniformity of adhesive spraying, uniformity of heating and temperature control, enhances the adhesion of the adhesive, and quickly removes excess adhesive, thus improving the overall quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a waterproof, heat-insulating, and root-penetration-resistant roll material composite molding equipment. This invention relates to the field of roll material composite molding technology, and includes a protective shell, a door, a No. 7 port, a support plate, a pressing shaft, and a glue spraying assembly. The outer wall of the protective shell is fitted with a door, and the outer wall of the protective shell has a No. 7 port, a No. 9 port, a No. 3 port, and a material outlet. The No. 7 support rod provides support for the No. 7 cylinder. The roll material raw material enters the protective shell through the No. 7, No. 9, and No. 3 ports respectively. At this time, the electronic pump starts, drawing glue from the glue storage hood into the No. 7 pipe. When the pressure of the glue movement reaches a certain level, it drives the sealing rod to move. The movement of the sealing rod drives the No. 9 support rod to move, which in turn drives the No. 7 spring to move. The movement of the No. 7 spring causes the sealing rod to move away from the support ring, opening the No. 7 pipe.
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Description

Technical Field

[0001] This invention relates to the field of roll composite molding technology, specifically to a waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment. Background Technology

[0002] Waterproof, heat-insulating, and root-penetration-resistant membrane composite molding equipment is specifically designed for producing composite materials with waterproof, heat-insulating, and root-penetration-resistant properties. The emergence of this equipment meets the market demand for multifunctional waterproof materials. This type of membrane not only has excellent waterproof performance but also effectively resists the penetration of plant roots, while also providing heat insulation, offering more comprehensive protection for modern buildings. However, uneven adhesive spraying in existing membrane composite molding equipment reduces the quality of the membrane composite molding process.

[0003] The shortcomings of existing roll-to-roll composite molding equipment are:

[0004] 1. Patent document CN118663804A discloses a multi-layer metal composite material structure tube coil forming equipment, "including a placement and mounting platform, with transport rollers symmetrically distributed and rotatably connected on the sides of the placement and mounting platform that are close to each other, and forming rollers rotatably connected on the sides of the placement and mounting platform that are close to each other, the forming rollers being located above the two transport rollers, both the forming rollers and the transport rollers including a rotating drum and a rotating shaft, and an adjustment component provided on the placement and mounting platform, the adjustment component being symmetrically arranged on the left and right sides of the placement and mounting platform. This device, by setting the adjustment component, allows the user to automatically adjust the distance between the rollers to the required height of the material when processing metal materials of different thicknesses, and at the same time, relies on the gravity of the rollers to squeeze and clamp the metal material to be coiled and formed, and can be adjusted accordingly according to the change of the sheet thickness during processing, applicable to sheets of various thicknesses, improving the applicability and flexibility of the equipment, and improving production efficiency and output." However, the uneven glue spraying of existing coil composite forming equipment reduces the quality of coil composite forming;

[0005] 2. Patent document CN106945322A discloses a flooring composite molding machine and flooring production line equipment and its production method. "The flooring composite molding machine includes a molding frame, a top wear-resistant layer unwinding device, a middle printed layer unwinding device, a bottom anti-slip layer unwinding device, a flooring substrate molding device, a flooring layer composite device, and a flooring embossing device. The bottom anti-slip layer unwinding device, the middle printed layer unwinding device, and the top wear-resistant layer unwinding device are all mounted on the molding frame. The flooring substrate molding device includes a flooring substrate heating and molding roller group and a molding drive device connected to the flooring substrate heating and molding roller group to drive the flooring substrate heating and molding roller group. The flooring substrate heating and molding roller group includes two flooring substrate heating and molding rollers rotatably supported on the molding frame. This invention can automatically composite the top wear-resistant layer, the middle printed layer, the molded base layer, and the bottom anti-slip layer, improving equipment capacity, saving labor, and making equipment operation more user-friendly." However, existing roll-to-roll composite molding equipment cannot adjust the heating air angle, reducing the uniformity of glue heating and decreasing glue adhesion.

[0006] 3. Patent document CN102806745B discloses a production process for an integrated waterproof and thermal insulation board, "including the following steps: first, a reinforcing isolation material is laminated onto one side of the waterproof membrane; then, the waterproof membrane with the reinforcing isolation material is preheated using a preheating device; after preheating, a thermal insulation material is laminated onto the side of the waterproof membrane with the reinforcing isolation material; finally, another preheated waterproof membrane is covered on the surface of the thermal insulation material. By setting a reinforcing isolation material on one side of the waterproof membrane, not only can the bonding strength between the thermal insulation material and the waterproof membrane be enhanced, but the waterproof membrane and the thermal insulation material can also be effectively isolated, avoiding long-term contact between the waterproof membrane and the thermal insulation material to prevent chemical reactions, and preventing the migration of plasticizers in the membrane, thus ensuring product quality; adding a preheating process for the waterproof membrane before laminating the waterproof membrane and the thermal insulation material can prevent the waterproof layer and the thermal insulation layer from peeling off after the board is formed, further improving the performance and quality of the board." However, the temperature of the adhesive spraying process in the existing membrane lamination molding equipment cannot be automatically controlled, which reduces the lamination quality.

[0007] 4. Patent document CN112590229B discloses a multi-layer composite material bonding and molding production equipment, "including: a base, fixedly set on a working plane; an unwinding assembly, fixedly set at one end of the base, which unwinds the multi-layer composite material, which moves from one end of the base to the other end, with an adhesive between the multi-layer composite materials; a heating assembly, fixedly set on the base and located at the rear end of the unwinding assembly, which heats the multi-layer composite material conveyed there to melt the adhesive; an extrusion assembly, fixedly set on the base and located at the rear end of the heating assembly, which extrudes and bonds the multi-layer composite material; and a winding assembly, fixedly set at the other end of the base, which winds the bonded and molded multi-layer composite material. In this invention, the multi-layer composite material is heated to melt the adhesive, then extruded and molded, and finally wound up, which increases production efficiency and saves production costs." However, existing roll-to-roll composite molding equipment cannot quickly remove excess adhesive from the rolled material after composite molding, reducing the overall quality of the roll material. Summary of the Invention

[0008] The purpose of this invention is to provide a waterproof, heat-insulating, and root-penetration-resistant roll composite molding equipment to solve the technical problem mentioned in the background art of uneven adhesive spraying in existing roll composite molding equipment, which reduces the quality of roll composite molding.

[0009] To achieve the above objectives, the present invention provides the following technical solution: a waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment, comprising a protective shell, a door, a first and seventh opening, a support plate, a pressing shaft, and a spraying assembly. The outer wall of the protective shell is fitted with the door, and the outer wall of the protective shell has a first and seventh opening, a ninth opening, a third opening, and a discharge port. The inner wall of the protective shell is fitted with a pressing shaft, a spraying assembly, and a support plate. The inner wall of the spraying assembly is fitted with a heating assembly and a glue temperature detection assembly. The roll material consists of a waterproof layer material, a heat-insulating layer material, and a root-barrier layer material.

[0010] The adhesive spraying assembly includes a No. 7 cover, an adhesive storage cover, an electronic pump, a No. 7 pipe, a No. 7 nozzle, a No. 5 port, a sealing rod, and a support ring. The No. 7 cover is located on the inner wall of the protective shell, the adhesive storage cover is located on the inner wall of the No. 7 cover, the electronic pump penetrates through the outer wall of the No. 7 cover, the No. 5 port is located on the outer wall of the No. 7 cover, the No. 7 pipe penetrates through the inner wall of the No. 5 port, and one end of the No. 7 pipe is connected to the output end of the electronic pump, the support ring is located on the inner wall of the No. 7 pipe, the No. 7 nozzle penetrates through the outer wall of the No. 7 pipe, a No. 7 support rod is installed on the inner wall of the No. 7 support rod, a No. 7 cylinder is installed on the outer wall of the No. 7 support rod, the sealing rod penetrates through the inner wall of the No. 7 cylinder, a No. 9 support rod is installed on the outer wall of the sealing rod, a No. 7 spring is installed on the outer wall of the No. 9 support rod, and one end of the No. 7 spring is connected to the outer wall of the support ring.

[0011] Preferably, the sealing rod is moved by the support of the No. 7 pipe, which is an inverted F-shape.

[0012] Preferably, the heating assembly includes a heating element, a fan, a dust filter, a No. 3 support rod, a pneumatic head, a No. 9 spring, an adjusting plate, and a connecting rod. The heating element is located on the inner wall of the No. 7 cover, the fan is located on the inner wall of the No. 7 cover, the dust filter penetrates through the outer wall of the No. 7 cover, the No. 3 support rod is located on the inner wall of the No. 7 cover, the pneumatic head is located on the outer wall of the No. 3 support rod, the output end of the pneumatic head is equipped with the No. 3 plate, the No. 9 spring is located on the outer wall of the No. 3 plate, and one end of the No. 9 spring is connected to the outer wall of the No. 3 support rod. Several adjusting plates are installed on the outer wall of the No. 3 support rod through a rotating shaft, and the adjusting plates are connected to each other through a rotating shaft with a connecting rod. The output end of the pneumatic head is connected to the outer wall of the adjusting plate through a rotating shaft.

[0013] Preferably, the adjustment plate is angled via a rotating shaft, and the heating element is located between the fan and the third support rod.

[0014] Preferably, the adhesive temperature detection component includes an adhesive temperature detection block and a microcomputer control box. The adhesive temperature detection block is located on the outer wall of pipe No. 7, and the microcomputer control box is located on the outer wall of the protective shell. The adhesive temperature detection block is electrically connected to the microcomputer control box, and the microcomputer control box is electrically connected to the heating component. The adhesive temperature detection block is used to detect the real-time adhesive temperature parameters of the sprayed adhesive, and the microcomputer control box is used to detect the appropriate adhesive temperature parameters of the sprayed adhesive. The appropriate adhesive temperature for spraying adhesive is 40~60℃.

[0015] Preferably, the real-time glue temperature parameter of the sprayed glue is transmitted to the microcomputer control box. The microcomputer control box compares the real-time glue temperature parameter with the suitable glue temperature parameter. When the real-time glue temperature parameter is greater than the suitable glue temperature parameter, it is set to a high glue temperature state. When the real-time glue temperature parameter is less than the suitable glue temperature parameter, it is set to a low glue temperature state. When the real-time glue temperature parameter is within the suitable glue temperature parameter, it is set to a suitable glue temperature state.

[0016] Preferably, the outer wall of the support plate is equipped with a scraping component, which is used to scrape off excess adhesive after the roll material is laminated.

[0017] Preferably, the adhesive scraping assembly includes a No. 3 cover, an adhesive scraper, an adhesive guide plate, a collection cover, a No. 5 card block, a T-shaped frame, and a No. 6 spring. The No. 3 cover is located on the outer wall of the support plate, the adhesive scraper is located on the outer wall of the No. 3 cover, the outer wall of the No. 3 cover has a No. 27 opening, the adhesive guide plate passes through the inner wall of the No. 27 opening, the collection cover passes through the outer wall of the No. 3 cover, the outer wall of the No. 3 cover has a No. 8 opening, the T-shaped frame is located on the inner wall of the No. 3 cover, a No. 6 slide cylinder is installed on the outer wall of the T-shaped frame, the inner wall of the No. 8 opening has a No. 5 card block installed through it, and the outer wall of the No. 5 card block is connected to the outer wall of the No. 6 slide cylinder, the No. 6 spring is located on the outer wall of the No. 5 card block, and one end of the No. 6 spring is connected to the outer wall of the T-shaped frame, the top of the collection cover has a No. 6 slot, and the outer wall of the No. 5 card block extends to the inner wall of the No. 6 slot.

[0018] Preferably, the guide plate is located above the collection cover, the scraper is located above the guide plate, and the sixth slide cylinder moves with the support of the T-shaped frame.

[0019] Preferably, the method of using the composite molding equipment includes the following steps:

[0020] Step S1: The function of the No. 7 support rod is to provide support for the No. 7 cylinder. The roll material enters the protective shell through the No. 7 port, No. 9 port and No. 3 port respectively. At this time, the electronic pump starts to draw the glue in the colloid storage hood into the No. 7 pipe. After the pressure of the glue movement reaches the required level, it drives the sealing rod to move. The movement of the sealing rod drives the No. 9 support rod to move. The movement of the No. 9 support rod drives the No. 7 spring to move. The movement of the No. 7 spring causes the sealing rod to move away from the support ring and open the No. 7 pipe. At this time, the glue is evenly sprayed between the roll material through the No. 7 nozzle, so that the glue spraying of the roll composite molding equipment is uniform and improves the quality of roll composite molding.

[0021] Step S2: The fan rotates and generates suction, drawing air through the dust filter into the No. 7 hood. At this time, the heating element is activated, and the air is heated by the heating element and blown into the No. 7 pipe to raise the temperature of the adhesive inside. The pneumatic head is activated, which moves the No. 3 plate. The movement of the No. 3 plate moves the No. 9 spring. The movement of the No. 9 spring causes the pneumatic head to move the adjusting plate through the rotating shaft. The movement of the adjusting plate moves the connecting rod. The movement of the connecting rod adjusts the angle of the airflow. Adjusting the angle of the heating airflow improves the uniformity of adhesive heating and enhances the adhesive's adhesion.

[0022] Step S3: When the microcomputer control box detects a high glue temperature, it stops the heating component. After the heating component stops, the glue temperature detection block continuously monitors the real-time glue temperature parameters until the microcomputer control box detects a low glue temperature or a suitable glue temperature. When the microcomputer control box detects a low glue temperature, it starts the heating component. After the heating component starts, the glue temperature detection block continuously monitors the real-time glue temperature parameters until the microcomputer control box detects a high glue temperature or a suitable glue temperature. When the microcomputer control box detects a suitable glue temperature, it maintains the power of the heating component. After the heating component maintains the power, the glue temperature detection block continuously monitors the real-time glue temperature parameters until the microcomputer control box detects a high glue temperature or a low glue temperature. This automatic glue temperature control during glue spraying in the roll composite molding equipment improves the composite quality.

[0023] Step S4: When the composite-formed roll material is discharged through the outlet, its edge contacts the scraper, causing the glue to be scraped onto the surface of the guide plate. The glue then enters the collection hood through the guide plate and the second and seventh ports. At this time, pulling the fifth card block moves the sixth slide cylinder. The movement of the sixth slide cylinder causes the fifth card block to move the sixth spring. The movement of the sixth spring causes the fifth card block to move out of the sixth card slot. At this time, pulling the collection hood removes the waste glue from the mobile phone. The excess glue in the composite-formed roll material is quickly scraped off, improving the overall quality of the roll material.

[0024] Compared with the prior art, the beneficial effects of the present invention are:

[0025] 1. The present invention uses a No. 7 support rod to provide support for the No. 7 cylinder. The roll material enters the protective shell through the No. 7 port, No. 9 port, and No. 3 port respectively. At this time, the electronic pump starts to draw the glue in the colloid storage hood into the No. 7 pipe. When the pressure of the glue movement reaches the required level, it drives the sealing rod to move. The movement of the sealing rod drives the No. 9 support rod to move. The movement of the No. 9 support rod drives the No. 7 spring to move. The movement of the No. 7 spring causes the sealing rod to move away from the support ring and open the No. 7 pipe. At this time, the glue is evenly sprayed between the roll material through the No. 7 nozzle, so that the glue spraying of the roll composite molding equipment is uniform and the quality of roll composite molding is improved.

[0026] 2. This invention uses a fan to generate suction, drawing air through a dust filter into the No. 7 hood. At this time, the heating element is activated, and the air is heated by the heating element and blown into the No. 7 pipe to raise the temperature of the adhesive inside. The pneumatic head is activated, which moves the No. 3 plate. The movement of the No. 3 plate moves the No. 9 spring. The movement of the No. 9 spring causes the pneumatic head to move the adjusting plate through the rotating shaft. The movement of the adjusting plate moves the connecting rod. The movement of the connecting rod adjusts the angle of the airflow. Adjusting the angle of the heating airflow improves the uniformity of adhesive heating and enhances the adhesive's adhesion.

[0027] 3. This invention, through the installation of a microcomputer control box, detects a high glue temperature and stops the heating component. After the heating component stops, the glue temperature detection block continuously monitors the real-time glue temperature parameters until the microcomputer control box detects a low or suitable glue temperature. When the microcomputer control box detects a low glue temperature, it starts the heating component. After the heating component starts, the glue temperature detection block continuously monitors the real-time glue temperature parameters until the microcomputer control box detects a high or suitable glue temperature. When the microcomputer control box detects a suitable glue temperature, it maintains the power of the heating component. After the heating component maintains the power, the glue temperature detection block continues to monitor the real-time glue temperature parameters until the microcomputer control box detects a high or low glue temperature. This allows for automatic glue temperature control during the glue spraying process in the roll-to-roll composite molding equipment, improving the composite quality.

[0028] 4. In this invention, when the composite-molded roll is discharged through the outlet, its edge contacts the scraper, causing the glue to be scraped onto the surface of the guide plate. The glue then enters the collection hood through the guide plate and the second and seventh ports. At this time, pulling the fifth card block moves the sixth slide cylinder, which in turn moves the fifth card block and the sixth spring. The movement of the sixth spring causes the fifth card block to move out of the sixth slot. Pulling the collection hood removes the waste glue from the mobile phone. The excess glue in the composite-molded roll is quickly scraped off, improving the overall quality of the roll. Attached Figure Description

[0029] Figure 1 This is a front view structural diagram of the present invention;

[0030] Figure 2 It is a front structural schematic diagram of the present invention;

[0031] Figure 3 This is a schematic diagram of the No. 7 cover structure of the present invention;

[0032] Figure 4 For the present invention Figure 3 A schematic diagram of structure A;

[0033] Figure 5 This is a schematic diagram of the No. 3 support rod structure of the present invention;

[0034] Figure 6 This is a schematic diagram of the adjustment plate structure of the present invention;

[0035] Figure 7 For the present invention Figure 3 A schematic diagram of the C-structure;

[0036] Figure 8 This is a schematic diagram of the adhesive temperature control process of the present invention;

[0037] Figure 9 This is a schematic diagram of the collection cover structure of the present invention;

[0038] Figure 10 For the present invention Figure 9 A schematic diagram of the B structure.

[0039] In the diagram: 1. Protective shell; 2. Door body; 3. Microcomputer control box; 4. No. 1 port 7; 5. No. 9 port; 6. No. 3 port; 7. Discharge port; 9. Pressing shaft; 10. No. 7 cover; 11. Colloid storage cover; 12. Electronic pump; 13. No. 7 pipe; 14. No. 7 nozzle; 15. No. 7 support rod; 16. No. 7 cylinder; 18. No. 9 support rod; 19. Support ring; 20. No. 7 spring; 21. Sealing rod; 23. Dust filter screen; 24. Fan; 25. Heating element; 26. Support rod No. 3; 28. Pneumatic head; 29. ​​Spring No. 9; 30. Adjustment plate; 31. Connecting rod; 32. Cover No. 3; 33. Scraper; 34. No. 2-7 port; 35. Glue guide plate; 36. Collection cover; 37. Slot No. 6; 38. Port No. 8; 39. T-shaped frame; 40. Slide cylinder No. 6; 41. Card block No. 5; 42. Spring No. 6; 43. Glue temperature detection block; 45. Port No. 5; 48. Support plate. Detailed Implementation

[0040] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0041] In the description of this invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0042] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand this according to the specific circumstances.

[0043] Example 1: Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 This invention provides an embodiment of a waterproof, heat-insulating, and root-penetration-resistant roll material composite molding equipment, comprising a protective shell 1, a door 2, a first and seventh opening 4, a support plate 48, a pressing shaft 9, and a glue spraying assembly. The door 2 is installed on the outer wall of the protective shell 1. The outer wall of the protective shell 1 has a first and seventh opening 4, a ninth opening 5, a third opening 6, and a discharge port 7. The inner wall of the protective shell 1 is installed with the pressing shaft 9, the glue spraying assembly, and the support plate 48. The inner wall of the glue spraying assembly has a heating component and a glue temperature detection component. The roll material is a waterproof layer material. The insulation layer material and root barrier layer material are installed on the outer wall of the support plate 48. The scraper assembly is used to scrape off excess adhesive after the roll material is laminated. After the roll material raw material enters the protective shell 1, it is pressed into a roll material by the pressing shaft 9. The roll material is discharged through the support plate 48 and the discharge port 7. The waterproof, heat-insulating and root-penetration resistant roll material is formed by the pressing of the waterproof layer material, the insulation layer material and the root barrier layer material. The adhesive spraying assembly includes a No. 7 cover 10, an adhesive storage cover 11, an electronic pump 12, a No. 7 pipe 13, a No. 7 nozzle 14, a No. 5 port 45, a sealing rod 21 and a support ring 19. The No. 7 cover 10 is located on the inner wall of the protective shell 1, the adhesive storage cover 11 is located on the inner wall of the No. 7 cover 10, and the electronic pump 12 penetrates through the No. 7 cover 10. The outer wall of 0, port 45 is opened on the outer wall of hood 10, pipe 13 of hood 7 passes through the inner wall of port 45, and one end of pipe 13 of hood 7 is connected to the output end of electric pump 12, support ring 19 is located on the inner wall of pipe 13 of hood 7, nozzle 14 of hood 7 passes through the outer wall of pipe 13 of hood 7, support rod 15 of hood 7 is installed on the inner wall of pipe 13 of hood 7, cylinder 16 of hood 7 is installed on the outer wall of support rod 15 of hood 7, sealing rod 21 passes through the inner wall of cylinder 16 of hood 7, support rod 18 of hood 9 is installed on the outer wall of sealing rod 21, spring 20 of hood 7 is installed on the outer wall of support rod 18 of hood 9, and one end of spring 20 of hood 7 is connected to the outer wall of support ring 19, sealing rod 21 moves by the support of cylinder 16 of hood 7, hood 7 Pipe 13 is inverted F-shaped. The function of support rod 15 is to provide support for cylinder 16. The roll material enters the protective shell 1 through port 4, port 5, and port 6 respectively. At this time, the electronic pump 12 starts to draw the glue in the colloid storage hood 11 into pipe 13. When the pressure of the glue movement reaches the required level, it drives the sealing rod 21 to move. The movement of the sealing rod 21 drives the support rod 18 to move. The movement of the support rod 18 drives the spring 20 to move. The movement of the spring 20 causes the sealing rod 21 to move away from the support ring 19 and open pipe 13. At this time, the glue is evenly sprayed between the roll material through nozzle 14, realizing the function of uniform glue spraying and improving the quality of roll composite molding in the roll composite molding equipment.

[0044] Example 2: Please refer to Figure 2 , Figure 5 and Figure 6 One embodiment of the present invention provides a heating assembly comprising a heating element 25, a fan 24, a dust filter 23, a No. 3 support rod 26, a pneumatic head 28, a No. 9 spring 29, an adjusting plate 30, and a connecting rod 31. The heating element 25 is located on the inner wall of the No. 7 cover 10, the fan 24 is located on the inner wall of the No. 7 cover 10, the dust filter 23 penetrates through the outer wall of the No. 7 cover 10, the No. 3 support rod 26 is located on the inner wall of the No. 7 cover 10, the pneumatic head 28 is located on the outer wall of the No. 3 support rod 26, the No. 3 plate is installed at the output end of the pneumatic head 28, the No. 9 spring 29 is located on the outer wall of the No. 3 plate, and one end of the No. 9 spring 29 is connected to the outer wall of the No. 3 support rod 26. Several adjusting plates 30 are installed on the outer wall of the No. 3 support rod 26 via a rotating shaft, and the adjusting plates 30 are connected to each other via a rotating shaft using a connecting rod 31. The output end of 28 is connected to the outer wall of the adjusting plate 30 via a rotating shaft. The adjusting plate 30 is adjusted in angle via the rotating shaft. The heating element 25 is located between the fan 24 and the third support rod 26. The fan 24 rotates to generate suction, which draws air through the dust filter 23 into the seventh hood 10. At this time, the heating element 25 is activated, and the air is heated by the heating element 25 and blown towards the seventh pipe 13 to raise the temperature of the glue inside. The pneumatic head 28 is activated to move the third plate. The movement of the third plate moves the ninth spring 29. The movement of the ninth spring 29 causes the pneumatic head 28 to move the adjusting plate 30 via the rotating shaft. The movement of the adjusting plate 30 moves the connecting rod 31. The movement of the connecting rod 31 adjusts the angle of the airflow, thereby improving the heating uniformity of the glue and enhancing its adhesion.

[0045] Example 3: Please refer to Figure 2 , Figure 3 , Figure 7 and Figure 8One embodiment of the present invention provides: the glue temperature detection component includes a glue temperature detection block 43 and a microcomputer control box 3. The glue temperature detection block 43 is located on the outer wall of pipe No. 7 13, and the microcomputer control box 3 is located on the outer wall of the protective shell 1. The glue temperature detection block 43 and the microcomputer control box 3 are electrically connected, and the microcomputer control box 3 is electrically connected to the heating component. The glue temperature detection block 43 is used to detect the real-time glue temperature parameter of the sprayed glue, and the microcomputer control box 3 is used to detect the appropriate glue temperature parameter of the sprayed glue. The appropriate glue temperature of the sprayed glue is 40~60℃. The real-time glue temperature parameter of the sprayed glue is transmitted to the microcomputer control box 3. The microcomputer control box 3 compares the real-time glue temperature parameter of the sprayed glue with the appropriate glue temperature parameter of the sprayed glue. When the real-time glue temperature parameter of the sprayed glue is greater than the appropriate glue temperature parameter of the sprayed glue, it is set to a high glue temperature state; when the real-time glue temperature parameter of the sprayed glue is less than the appropriate glue temperature parameter of the sprayed glue, it is set to a low glue temperature state. The real-time glue temperature parameter of the sprayed glue is within the appropriate glue temperature parameter range. To ensure the adhesive temperature is at a suitable level, when the microcomputer control box 3 detects a high adhesive temperature, it controls the heating component to stop. After the heating component stops, the adhesive temperature detection block 43 continuously monitors the real-time adhesive temperature parameters until the microcomputer control box 3 detects a low or suitable adhesive temperature. When the microcomputer control box 3 detects a low adhesive temperature, it controls the heating component to start. After the heating component starts, the adhesive temperature detection block 43 continuously monitors the real-time adhesive temperature parameters until the microcomputer control box 3 detects a high or suitable adhesive temperature. When the microcomputer control box 3 detects a suitable adhesive temperature, it controls the heating component to maintain its power. After the heating component maintains its power, the adhesive temperature detection block 43 continues to monitor the real-time adhesive temperature parameters until the microcomputer control box 3 detects a high or low adhesive temperature. This achieves the function of automatic temperature control during adhesive spraying in the roll-to-roll composite molding equipment, improving the composite quality.

[0046] Example 4: Please refer to Figure 2 , Figure 9 and Figure 10An embodiment of the present invention provides: the glue-scraping assembly includes a No. 3 cover 32, a glue-scraping blade 33, a glue-guide plate 35, a collection cover 36, a No. 5 card block 41, a T-shaped frame 39, and a No. 6 spring 42. The No. 3 cover 32 is located on the outer wall of the support plate 48, the glue-scraping blade 33 is located on the outer wall of the No. 3 cover 32, the outer wall of the No. 3 cover 32 has a second No. 7 opening 34, the glue-guide plate 35 penetrates through the inner wall of the second No. 7 opening 34, the collection cover 36 penetrates through the outer wall of the No. 3 cover 32, the outer wall of the No. 3 cover 32 has an No. 8 opening 38, the T-shaped frame 39 is located on the inner wall of the No. 3 cover 32, a No. 6 slide cylinder 40 is installed on the outer wall of the T-shaped frame 39, the inner wall of the No. 8 opening 38 is penetrated through the No. 5 card block 41, and the outer wall of the No. 5 card block 41 is connected to the outer wall of the No. 6 slide cylinder 40, the No. 6 spring 42 is located on the outer wall of the No. 5 card block 41, and one end of the No. 6 spring 42 is connected to the outer wall of the T-shaped frame 39. The top of the collection cover 36 is provided with a sixth card slot 37, and the outer wall of the fifth card strip 41 extends to the inner wall of the sixth card slot 37. The guide plate 35 is located above the collection cover 36, and the scraper 33 is located above the guide plate 35. The sixth slide cylinder 40 moves under the support of the T-shaped frame 39. When the composite formed roll material is discharged through the discharge port 7, its edge contacts the scraper 33, causing the glue to be scraped onto the surface of the guide plate 35. The glue enters the collection cover 36 through the guide plate 35 and the second and seventh ports 34. At this time, the fifth card strip 41 is pulled to move the sixth slide cylinder 40. The movement of the sixth slide cylinder 40 causes the fifth card strip 41 to move the sixth spring 42. The movement of the sixth spring 42 causes the fifth card strip 41 to move out of the sixth card slot 37. At this time, the collection cover 36 is pulled to remove the waste glue from the mobile phone, realizing the function of quickly scraping off the excess glue of the composite formed roll material and improving the overall quality of the roll material.

[0047] The method of using this composite molding equipment includes the following steps:

[0048] Step S1: The function of the No. 7 support rod 15 is to provide support for the No. 7 cylinder 16. The roll material enters the protective shell 1 through the No. 7 port 4, No. 9 port 5, and No. 3 port 6 respectively. At this time, the electronic pump 12 starts to draw the glue in the colloid storage cover 11 into the No. 7 pipe 13. After the pressure of the glue movement reaches the target, it drives the sealing rod 21 to move. The movement of the sealing rod 21 drives the No. 9 support rod 18 to move. The movement of the No. 9 support rod 18 drives the No. 7 spring 20 to move. The movement of the No. 7 spring 20 causes the sealing rod 21 to move away from the support ring 19 and open the No. 7 pipe 13. At this time, the glue is evenly sprayed between the roll material through the No. 7 nozzle 14, so that the glue spraying of the roll composite molding equipment is uniform and improves the quality of roll composite molding.

[0049] Step S2: The fan 24 rotates to generate suction, which draws air through the dust filter 23 into the No. 7 hood 10. At this time, the heating element 25 is activated, and the air is heated by the heating element 25 and blown into the No. 7 pipe 13 to raise the temperature of the glue inside. The pneumatic head 28 is activated to move the No. 3 plate. The movement of the No. 3 plate moves the No. 9 spring 29. The movement of the No. 9 spring 29 causes the pneumatic head 28 to move the adjusting plate 30 through the rotating shaft. The movement of the adjusting plate 30 moves the connecting rod 31. The movement of the connecting rod 31 adjusts the angle of the airflow. Adjusting the angle of the heating airflow improves the uniformity of glue heating and improves the adhesiveness of the glue.

[0050] Step S3: When the microcomputer control box 3 detects a high glue temperature, it controls the heating component to stop. After the heating component stops, the glue temperature detection block 43 continuously monitors the real-time glue temperature parameters until the microcomputer control box 3 detects a low glue temperature or a suitable glue temperature. When the microcomputer control box 3 detects a low glue temperature, it controls the heating component to start. After the heating component starts, the glue temperature detection block 43 continuously monitors the real-time glue temperature parameters until the microcomputer control box 3 detects a high glue temperature or a suitable glue temperature. When the microcomputer control box 3 detects a suitable glue temperature, it controls the heating component to maintain power. After the heating component maintains power, the glue temperature detection block 43 continuously monitors the real-time glue temperature parameters until the microcomputer control box 3 detects a high glue temperature or a low glue temperature. This allows the glue temperature to be automatically controlled during glue spraying in the roll composite molding equipment, improving the composite quality.

[0051] Step S4: When the composite-formed roll material is discharged through the discharge port 7, its edge contacts the scraper 33, causing the glue to be scraped onto the surface of the guide plate 35. The glue then enters the collection cover 36 through the guide plate 35 and the second and seventh ports 34. At this time, pulling the fifth card plate 41 moves the sixth slide cylinder 40. The movement of the sixth slide cylinder 40 causes the fifth card plate 41 to move the sixth spring 42. The movement of the sixth spring 42 causes the fifth card plate 41 to move out of the sixth card slot 37. At this time, pulling the collection cover 36 removes the waste glue from the mobile phone. The excess glue in the composite-formed roll material is quickly scraped off, improving the overall quality of the roll material.

[0052] Working principle: After the roll material enters the protective shell 1, it is pressed into a roll by the pressing shaft 9. The roll material is discharged through the support plate 48 and the discharge port 7. The function of the seventh support rod 15 is to provide support for the seventh cylinder 16. The roll material enters the protective shell 1 through the first seventh port 4, the ninth port 5, and the third port 6 respectively. At this time, the electronic pump 12 starts to draw the glue in the colloid storage hood 11 into the seventh pipe 13. When the pressure of the glue movement reaches the required level, it drives the sealing rod 21 to move. The movement of the sealing rod 21 drives the ninth support rod 18 to move. The movement of the ninth support rod 18 drives the seventh spring 20 to move. The movement of the seventh spring 20 causes the sealing rod 21 to move away from the support ring 19, opening the seventh pipe 13. At this time, the glue flows through the seventh nozzle. 14. The adhesive is evenly sprayed onto the roll material, ensuring uniform adhesive application and improving the quality of the roll composite molding. Fan 24 rotates, generating suction that draws air through dust filter 23 into hood 10. At this time, heater 25 starts, and the airflow is heated by the heater 25 and blown onto pipe 13 to raise the temperature of the adhesive inside. Pneumatic head 28 starts, moving plate 3. The movement of plate 3 moves spring 29, which in turn moves spring 29, causing pneumatic head 28 to move adjusting plate 30 via a rotating shaft. Adjusting plate 30 moves connecting rod 31, which adjusts the airflow angle. This adjustment improves the uniformity of adhesive heating and enhances adhesive adhesion. Microcomputer control box 3. When a high glue temperature is detected, the microcomputer control box 3 stops the heating component. After the heating component stops, the glue temperature detection block 43 continuously monitors the real-time glue temperature parameters until the microcomputer control box 3 detects a low glue temperature or a suitable glue temperature. When the microcomputer control box 3 detects a low glue temperature, it starts the heating component. After the heating component starts, the glue temperature detection block 43 continuously monitors the real-time glue temperature parameters until the microcomputer control box 3 detects a high glue temperature or a suitable glue temperature. When the microcomputer control box 3 detects a suitable glue temperature, it controls the heating component to maintain power. After the heating component maintains power, the glue temperature detection block 43 continues to monitor the real-time glue temperature parameters until the microcomputer control box 3 detects a low glue temperature or a suitable glue temperature. When the control box 3 detects a high or low glue temperature, it automatically controls the glue temperature during the glue spraying process of the roll composite molding equipment to improve the composite quality. When the composite-molded roll is discharged through the discharge port 7, its edge contacts the scraper 33, causing the glue to be scraped onto the surface of the guide plate 35. The glue then enters the collection hood 36 through the guide plate 35 and the second and seventh ports 34. At this time, pulling the fifth card plate 41 moves the sixth slide cylinder 40. The movement of the sixth slide cylinder 40 causes the fifth card plate 41 to move the sixth spring 42. The movement of the sixth spring 42 causes the fifth card plate 41 to move out of the sixth card slot 37. At this time, pulling the collection hood 36 removes the waste glue from the roll. The excess glue in the composite-molded roll is quickly scraped off, improving the overall quality of the roll.

[0053] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment, comprising a protective shell (1), a door (2), a first and seventh opening (4), a support plate (48), a pressing shaft (9), and a glue spraying assembly, characterized in that: The outer wall of the protective shell (1) is equipped with a door (2), the outer wall of the protective shell (1) is provided with a first seven-port (4), the outer wall of the protective shell (1) is provided with a nine-port (5), the outer wall of the protective shell (1) is provided with a three-port (6), the outer wall of the protective shell (1) is provided with a discharge port (7), the inner wall of the protective shell (1) is equipped with a pressing shaft (9), the inner wall of the protective shell (1) is equipped with a glue spraying assembly, the inner wall of the protective shell (1) is equipped with a support plate (48), the inner wall of the glue spraying assembly is equipped with a heating assembly, the inner wall of the glue spraying assembly is equipped with a glue temperature detection assembly, and the roll material raw materials are waterproof layer material, heat insulation layer material and root barrier layer material; The adhesive spraying assembly includes a No. 7 cover (10), an adhesive storage cover (11), an electronic pump (12), a No. 7 pipe (13), a No. 7 nozzle (14), a No. 5 port (45), a sealing rod (21), and a support ring (19). The No. 7 cover (10) is located on the inner wall of the protective shell (1), the adhesive storage cover (11) is located on the inner wall of the No. 7 cover (10), the electronic pump (12) penetrates through the outer wall of the No. 7 cover (10), the No. 5 port (45) is opened on the outer wall of the No. 7 cover (10), the No. 7 pipe (13) penetrates through the inner wall of the No. 5 port (45), and one end of the No. 7 pipe (13) is connected to the electronic pump. The output end of the pump (12) is connected, the support ring (19) is located on the inner wall of the seventh pipe (13), the seventh nozzle (14) penetrates the outer wall of the seventh pipe (13), the inner wall of the seventh pipe (13) is equipped with the seventh support rod (15), the outer wall of the seventh support rod (15) is equipped with the seventh cylinder (16), the sealing rod (21) penetrates the inner wall of the seventh cylinder (16), the outer wall of the sealing rod (21) is equipped with the ninth support rod (18), the outer wall of the ninth support rod (18) is equipped with the seventh spring (20), and one end of the seventh spring (20) is connected to the outer wall of the support ring (19); The heating assembly includes a heating element (25), a fan (24), a dust filter (23), a third support rod (26), a pneumatic head (28), a ninth spring (29), an adjustment plate (30), and a connecting rod (31). The heating element (25) is located on the inner wall of the seventh cover (10), the fan (24) is located on the inner wall of the seventh cover (10), the dust filter (23) penetrates the outer wall of the seventh cover (10), the third support rod (26) is located on the inner wall of the seventh cover (10), and the pneumatic head (28)... 28) Located on the outer wall of the third support rod (26), the output end of the pneumatic head (28) is equipped with the third plate, the ninth spring (29) is located on the outer wall of the third plate, and one end of the ninth spring (29) is connected to the outer wall of the third support rod (26). The outer wall of the third support rod (26) is equipped with several adjustment plates (30) through a rotating shaft. The adjustment plates (30) are connected to each other through a rotating shaft with a connecting rod (31). The output end of the pneumatic head (28) is connected to the outer wall of the adjustment plate (30) through a rotating shaft. The outer wall of the support plate (48) is equipped with a scraping component, which is used to scrape off excess adhesive after the roll material is laminated. The adhesive scraping assembly includes a No. 3 cover (32), an adhesive scraper (33), an adhesive guide plate (35), a collection cover (36), a No. 5 card holder (41), a T-shaped frame (39), and a No. 6 spring (42). The No. 3 cover (32) is located on the outer wall of the support plate (48), and the adhesive scraper (33) is located on the outer wall of the No. 3 cover (32). The outer wall of the No. 3 cover (32) has a No. 27 opening (34). The adhesive guide plate (35) penetrates the inner wall of the No. 27 opening (34). The collection cover (36) penetrates the outer wall of the No. 3 cover (32). The outer wall of the No. 3 cover (32) has an No. 8 opening (38). The T-shaped frame (39) is located on the inner wall of the third cover (32). The outer wall of the T-shaped frame (39) is equipped with the sixth slide cylinder (40). The inner wall of the eighth opening (38) is connected by the fifth card row (41), and the outer wall of the fifth card row (41) is connected to the outer wall of the sixth slide cylinder (40). The sixth spring (42) is located on the outer wall of the fifth card row (41), and one end of the sixth spring (42) is connected to the outer wall of the T-shaped frame (39). The top of the collection cover (36) is provided with the sixth card slot (37), and the outer wall of the fifth card row (41) extends to the inner wall of the sixth card slot (37).

2. The waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment according to claim 1, characterized in that: The sealing rod (21) moves by being supported by the No. 7 cylinder (16), and the No. 7 pipe (13) is inverted F-shaped.

3. The waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment according to claim 2, characterized in that: The adjustment plate (30) is adjusted in angle via a rotating shaft, and the heating element (25) is located between the fan (24) and the third support rod (26).

4. The waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment according to claim 1, characterized in that: The adhesive temperature detection component includes an adhesive temperature detection block (43) and a microcomputer control box (3). The adhesive temperature detection block (43) is located on the outer wall of the No. 7 pipe (13), and the microcomputer control box (3) is located on the outer wall of the protective shell (1). The adhesive temperature detection block (43) is electrically connected to the microcomputer control box (3), and the microcomputer control box (3) is electrically connected to the heating component. The adhesive temperature detection block (43) is used to detect the real-time adhesive temperature parameters of the adhesive spraying, and the microcomputer control box (3) is used to detect the appropriate adhesive temperature parameters of the adhesive spraying. The appropriate adhesive temperature for the adhesive spraying is 40~60℃.

5. The waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment according to claim 4, characterized in that: The real-time glue temperature parameter of the sprayed glue is transmitted to the microcomputer control box (3). The microcomputer control box (3) compares the real-time glue temperature parameter of the sprayed glue with the appropriate glue temperature parameter of the sprayed glue. When the real-time glue temperature parameter of the sprayed glue is greater than the appropriate glue temperature parameter of the sprayed glue, it is set to a high glue temperature state. When the real-time glue temperature parameter of the sprayed glue is less than the appropriate glue temperature parameter of the sprayed glue, it is set to a low glue temperature state. When the real-time glue temperature parameter of the sprayed glue is within the appropriate glue temperature parameter of the sprayed glue, it is set to a suitable glue temperature state.

6. The waterproof, heat-insulating, root-penetration-resistant roll composite molding equipment according to claim 1, characterized in that: The guide plate (35) is located above the collection cover (36), the scraper (33) is located above the guide plate (35), and the sixth slide cylinder (40) moves by means of the support of the T-shaped frame (39).

7. A method of using a waterproof, thermally insulating, root-penetration-resistant membrane composite molding equipment, applicable to the waterproof, thermally insulating, root-penetration-resistant membrane composite molding equipment as described in any one of claims 1-6, characterized in that, The method of using this composite molding equipment includes the following steps: Step S1: The function of the No. 7 support rod (15) is to provide support for the No. 7 cylinder (16). The roll material enters the protective shell (1) through the No. 7 port (4), the No. 9 port (5) and the No. 3 port (6) respectively. At this time, the electronic pump (12) starts to draw the glue in the colloid storage hood (11) into the No. 7 pipe (13). After the pressure of the glue movement reaches the target, it drives the sealing rod (21) to move. The movement of the sealing rod (21) drives the No. 9 support rod (18) to move. The movement of the No. 9 support rod (18) drives the No. 7 spring (20) to move. The movement of the No. 7 spring (20) causes the sealing rod (21) to move away from the support ring (19) and open the No. 7 pipe (13). At this time, the glue is evenly sprayed between the roll material through the No. 7 nozzle (14), so that the glue spraying of the roll composite molding equipment is uniform and the quality of roll composite molding is improved. Step S2: The fan (24) rotates to generate suction, which filters the air through the dust filter (23) and draws it into the No. 7 cover (10). At this time, the heating element (25) is started, and the air is heated by the heating element (25) and blown towards the No. 7 pipe (13) to raise the temperature of the glue inside. The pneumatic head (28) is started to drive the No. 3 plate to move. The movement of the No. 3 plate drives the No. 9 spring (29) to move. The movement of the No. 9 spring (29) causes the pneumatic head (28) to drive the adjustment plate (30) to move through the rotating shaft. The movement of the adjustment plate (30) drives the connecting rod (31) to move. The movement of the connecting rod (31) adjusts the angle of the air. Adjusting the angle of the heating air improves the uniformity of glue heating and improves the adhesiveness of the glue. Step S3: When the microcomputer control box (3) detects a high glue temperature, it controls the heating component to stop. After the heating component stops, the glue temperature detection block (43) continuously detects the real-time glue temperature parameters of the sprayed glue until the microcomputer control box (3) detects a low glue temperature or a suitable glue temperature. When the microcomputer control box (3) detects a low glue temperature, it controls the heating component to start. After the heating component starts, the glue temperature detection block (43) continuously detects the real-time glue temperature parameters of the sprayed glue until the microcomputer control box (3) detects a high glue temperature or a suitable glue temperature. When the microcomputer control box (3) detects a suitable glue temperature, it controls the heating component to maintain power. After the heating component maintains power, the glue temperature detection block (43) continuously detects the real-time glue temperature parameters of the sprayed glue until the microcomputer control box (3) detects a high glue temperature or a low glue temperature. This allows the glue temperature of the roll composite molding equipment to be automatically controlled during glue spraying, thus improving the composite quality. Step S4: When the composite-formed roll material is discharged through the discharge port (7), its edge contacts the scraper (33) to scrape the glue onto the surface of the guide plate (35). The glue enters the collection hood (36) through the guide plate (35) and the second and seventh ports (34). At this time, pull the fifth card plate (41) to move the sixth slide cylinder (40). The movement of the sixth slide cylinder (40) causes the fifth card plate (41) to move the sixth spring (42). The movement of the sixth spring (42) causes the fifth card plate (41) to move out of the sixth card slot (37). At this time, pull the collection hood (36) to remove the waste glue from the mobile phone. The excess glue of the composite-formed roll material is quickly scraped off to improve the overall quality of the roll material.

Citation Information

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