Production equipment of irradiation-free nano environmental protection glue

By using hot air blowers and ultraviolet reflectors instead of UV curing machines, the problems of short life and high energy consumption of UV curing equipment in the production of nano-environmentally friendly glue are solved, achieving cost savings and efficiency improvements.

CN117774195BActive Publication Date: 2025-10-17ANTA (CHINA) CO LTD +1
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Patent Information

Application Number
CN202311804288.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-26
Publication Date
2025-10-17
Estimated Expiration
2043-12-26

AI Technical Summary

Technical Problem

In the existing production process of nano-environmentally friendly glue, UV light curing equipment has a short lifespan and high energy consumption, resulting in increased production costs.

Method used

A hot air blower is used instead of a UV curing machine. The hot air blower blows in air containing ultraviolet rays to cure the nano-environmental glue. The ultraviolet reflector is combined to enhance the curing efficiency and avoid the use of a UV curing machine.

Benefits of technology

The production cost of nano environmentally friendly glue is reduced, production efficiency is improved, and energy consumption is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of nanometer environment-friendly glue, in particular to production equipment of irradiation-free nanometer environment-friendly glue. The top of a stirring bin is provided with a feeding port; one side of the stirring bin outwardly extends and is provided with a first connecting pipe; the other end of the first connecting pipe is connected with a treatment bin on one side of the stirring bin; the other side of the treatment bin outwardly extends and is provided with a second connecting pipe; the other end of the second connecting pipe is connected with a solidification bin on one side of the treatment bin; the top of the solidification bin is rotatably provided with a cover plate; one side of the cover plate is provided with a hot air fan; and the inside of the solidification bin is provided with multiple molds. In the application, the production raw materials of the glue can be treated through the stirring bin and the treatment bin; then the glue raw materials are poured into the molds in the inside of the solidification bin; the glue raw materials can be reinforced through the hot air fan; therefore, the UV light solidification machine is not needed, and the cost of nanometer environment-friendly glue production is saved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of nanometer environment-friendly glue, and particularly relates to a production equipment of irradiation-free nanometer environment-friendly glue. BACKGROUND

[0002] The nanometer glue is a new type of structural adhesive, which has a mixture of thermal, electronic and mechanical properties, and is more environmentally friendly and durable due to its lower moisture absorption and improved aging resistance.

[0003] The nanometer glue is neither plastic nor rubber, and its main material is silicon, which is derived from natural ingredients in sand and stone crystals in nature, does not contain bisphenol A and plasticizers, is non-toxic and odorless, and is a green and environmentally friendly material. At the same time, it has excellent flexibility, can be folded, bent and not easy to deform, so that the product has excellent storage and storage characteristics. The product can be diluted and sprayed on the surface of dry and porous inorganic building materials such as bricks, cement, stone, gypsum, lime, imitation porcelain paint, asbestos products, perlite, insulation board and the like to form a colorless long-acting waterproof layer. The product can also be directly coated on the surface of the building to form a high-elasticity waterproof film for waterproofing. It can also be combined with ordinary portland cement to form JS composite waterproof paint.

[0004] At present, the nanometer environment-friendly glue on the market needs to be stirred, ultrasonically treated, centrifugally separated and filtered after adding various materials, and finally UV light curing is performed, so that the production of the nanometer environment-friendly glue is completed. The traditional curing process equipment adopts a UV mercury lamp tube, and the service life of the lamp is only 500 to 1000 hours. In addition, the lamp needs to be preheated before each use, so the actual effective use time is much lower than 500 hours. Therefore, the use of the UV light curing machine greatly increases the production cost of the nanometer environment-friendly glue, and the UV light curing machine also consumes a large amount of energy, further increasing the production cost of the nanometer environment-friendly glue. SUMMARY

[0005] The present application relates to the technical field of nanometer environment-friendly glue, and particularly relates to a production equipment of irradiation-free nanometer environment-friendly glue.

[0006] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:

[0007] The production equipment of the irradiation-free nanometer environment-friendly glue comprises a stirring bin, a feeding port is arranged at the top of the stirring bin, a first connecting pipe is arranged outside one side of the stirring bin, the other end of the first connecting pipe is connected with a treatment bin on one side of the stirring bin, a second connecting pipe is arranged outside the other side of the treatment bin, the other end of the second connecting pipe is connected with a curing bin on one side of the treatment bin, a cover plate is rotatably arranged at the top of the curing bin, a hot air machine is arranged on one side of the cover plate, and a plurality of molds are arranged in the curing bin.

[0008] Preferably, the first connecting pipe extends outward from the middle lower part of the stirring bin and extends into the middle upper part of the processing bin, and the second connecting pipe extends outward from the middle lower part of the other side of the processing bin and extends into one side of the top of the solidification bin.

[0009] Preferably, the second connecting pipe extends into the solidification bin and is connected with a cross pipe, both sides of the cross pipe are provided with a plurality of branch pipes corresponding to the molds and extending outward, and the bottom of each branch pipe is provided with an electric discharge port corresponding to the mold.

[0010] Preferably, a rotating shaft is arranged on one side of the second connecting pipe above the solidification bin, a cover plate is arranged on one side of the rotating shaft, and the cover plate is opened and closed by rotating the rotating shaft.

[0011] Preferably, one end of the cover plate is provided with a mounting seat, a mounting pipe of the mounting seat is arranged downward and a hot air machine is mounted in the mounting pipe, and an output end of the hot air machine corresponds to one side of the solidification bin.

[0012] Preferably, a plurality of air outlets are arranged on both sides of the solidification bin, and a dust screen is arranged on each air outlet.

[0013] Preferably, grooves are arranged downward on both sides of the solidification bin, a ball joint is arranged in the interior of each groove, a limiting rod is mounted on the ball joint, and a telescopic structure is arranged in the interior of the limiting rod.

[0014] Preferably, a limiting block is arranged below the cover plate corresponding to the groove, and a limiting cavity is arranged in the bottom of the limiting block.

[0015] Preferably, an ultrasonic treatment instrument, a centrifugal separator and a filter screen are arranged in the interior of the processing bin from top to bottom.

[0016] The beneficial effects of the present application are that the stirring bin and the processing bin can be used to treat the raw materials of the glue, then the glue raw materials are poured into the molds in the interior of the solidification bin, and the hot air machine can be used to reinforce the glue raw materials, so that the UV light curing machine is not needed, and the cost of the production of the nano environmental protection glue is saved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a structure schematic view of the production equipment of the nano environmental protection glue without irradiation proposed in the present application;

[0018] Figure 2 It is a structure schematic view of the solidification bin of the production equipment of the nano environmental protection glue without irradiation proposed in the present application;

[0019] Figure 3 It is an internal structure schematic view of the solidification bin of the production equipment of the nano environmental protection glue without irradiation proposed in the present application;

[0020] Figure 4 A structure schematic view of the limiting rod of the production equipment of the irradiation-free nano environmental protection glue is proposed in the present application when it is extended;

[0021] Figure 5 A top view structure schematic view of the limiting rod of the production equipment of the irradiation-free nano environmental protection glue is proposed in the present application when it is retracted.

[0022] In the figure: 1 stirring bin, 2 feed inlet, 3 first connecting pipe, 4 treatment bin, 5 second connecting pipe, 6 curing bin, 7 rotating shaft, 8 cover plate, 9 mounting seat, 10 hot air blower, 11 air outlet, 12 limiting block, 13 limiting rod, 14 groove, 15 ball head hinge, 16 cross pipe, 17 branch pipe, 18 mold. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all.

[0024] REFERENCE Figures 1-5 The production equipment of the irradiation-free nano environmental protection glue comprises a stirring bin 1, the top of the stirring bin 1 is provided with a feed inlet 2, one side of the stirring bin 1 outwardly extends and is provided with a first connecting pipe 3, the other end of the first connecting pipe 3 is connected with a treatment bin 4 on one side of the stirring bin 1; the other side of the treatment bin 4 outwardly extends and is provided with a second connecting pipe 5, the other end of the second connecting pipe 5 is connected with a curing bin 6 on one side of the treatment bin 4, the top of the curing bin 6 is rotatably provided with a cover plate 8, one side of the cover plate 8 is provided with a hot air blower 10, and the inside of the curing bin 6 is provided with a plurality of molds 18.

[0025] The hot air blower 10 can blow air into the inside of the curing bin 6, and there are a large number of ultraviolet rays in the air because of the sun's radiation. Since ultraviolet rays can be transmitted through the wind, the hot air blower 10 can continuously blow the wind source into the inside of the curing bin 6, so as to replace the ultraviolet rays generated by the UV light curing machine. The inside of the curing bin 6 is coated with an ultraviolet reflecting agent, so that the wall of the curing bin 6 does not absorb the ultraviolet rays, thereby enhancing the absorption efficiency of the nano environmental protection glue in the mold 18 to the ultraviolet rays. The heated wind can make the blown wind dry, so that the nano environmental protection glue in the mold 18 can be more quickly solidified.

[0026] The first connecting pipe 3 extends outward from the middle lower part of the stirring bin 1 and extends into the middle upper part of the processing bin 4, and the second connecting pipe 5 extends outward from the middle lower part of the other side of the processing bin 4 and extends into one side of the top of the curing bin 6. The material for producing nano environmental protection glue is poured into the stirring bin 1 through the feeding port 2 for stirring, and after the stirring is completed, the material enters the upper part of the processing bin 4 through the first connecting pipe 3, and then the various mechanisms inside the processing bin 4 can further process the production raw materials.

[0027] The second connecting pipe 5 extends into the curing bin 6 and is connected with the cross pipe 16, the cross pipe 16 has a plurality of branch pipes 17 extending outward on both sides corresponding to the mold 18, and the bottom of each branch pipe 17 is provided with an electric discharge port corresponding to the mold 18. The raw material treated by the processing bin 4 enters the inside of the curing bin 6 through the second connecting pipe 5. The raw material enters the cross pipe 16 inside the curing bin 6 from the second connecting pipe 5, and then enters each branch pipe 17 through the cross pipe 16. The bottom of the branch pipe 17 is provided with an electric discharge port, so that the discharge of the glue raw material can be controlled. When the electric discharge port is opened, the glue raw material can enter the mold 18 below the branch pipe 17, and then the purpose of curing can be achieved in the mold 18.

[0028] The upper side of the curing bin 6 is provided with a rotating shaft 7 on one side of the second connecting pipe 5, one side of the rotating shaft 7 is provided with a cover plate 8, and the cover plate 8 is opened and closed by rotating the rotating shaft 7.

[0029] One end of the cover plate 8 is provided with a mounting seat 9, and the mounting pipe of the mounting seat 9 is downwardly provided and mounted with a hot air fan 10, and the output end of the hot air fan 10 corresponds to one side of the curing bin 6. When the cover plate 8 is opened, the blowing end of the hot air fan 10 can rotate with the cover plate 8, so that the blowing end of the hot air fan 10 can be aligned with the opening of the cover plate 8, so that the hot air fan 10 can blow air into the inside of the curing bin 6.

[0030] A plurality of air outlets 11 are formed on both sides of the curing bin 6, and a dust screen is arranged on each air outlet 11. The air entering the inside of the curing bin 6 can be discharged through the air outlet 11.

[0031] The two sides of the solidification bin 6 are provided with grooves 14 downward, the inside of the grooves 14 is provided with a ball joint 15, the ball joint 15 is provided with a limiting rod 13, and the inside of the limiting rod 13 is provided with a telescopic structure. The bottom of the cover plate 8 is provided with a limiting block 12 corresponding to the groove 14, and the bottom of the limiting block 12 is provided with a limiting cavity. The user can adjust the angle of the limiting rod 13 through the ball joint 15, then extend the limiting rod 13. The top of the limiting rod 13 is clamped in the limiting cavity at the bottom of the limiting block 12, so that the limiting rod 13 is clamped, and the limiting rods 13 on both sides can support the cover plate 8 and prevent it from falling. When the cover plate 8 is closed, the limiting rod 13 returns to the groove 14, and the limiting block 12 also enters the inside of the groove 14 when the cover plate 8 is closed.

[0032] The inside of the processing bin 4 is provided with an ultrasonic processor, a centrifugal separator and a filter screen from top to bottom. The ultrasonic processor, the centrifugal separator and the filter screen provided in the inside of the processing bin 4 can perform ultrasonic treatment, centrifugal separation and filtration operation steps on the glue after stirring.

[0033] In the present application, the user can add 10%-20% polyvinyl alcohol and deionized water into the inside of the stirring bin 1, then stir until completely dissolved. Then pour 5%-10% polyacrylic acid into the inside of the stirring bin 1 and continue to stir until completely dissolved. Then add appropriate amount of boric acid and sodium hydroxide into the stirring bin to adjust the pH value to 7-8. Then the raw materials in the stirring bin 1 can enter the upper part of the processing bin 4 through the first connecting pipe 3, and the ultrasonic processor, the centrifugal separator and the filter screen provided in the inside of the processing bin 4 can perform ultrasonic treatment, centrifugal separation and filtration operation steps on the glue after stirring.

[0034] Further, when the processing bin 4 completes the processing of the raw materials, the raw materials enter the horizontal pipe 16 in the inside of the solidification bin 6 from the second connecting pipe 5, then enter each branch pipe 17 through the horizontal pipe 16. The bottom of the branch pipe 17 is provided with an electric discharge port, so as to control the discharge of the glue raw materials. When the electric discharge port is opened, the glue raw materials can enter the mold 18 below the branch pipe 17.

[0035] Further, the user can adjust the angle of the limiting rod 13 in the groove 14 through the ball joint 15, then extend the limiting rod 13. The top of the limiting rod 13 is clamped in the limiting cavity at the bottom of the limiting block 12, so that the limiting rod 13 is clamped, and the limiting rods 13 on both sides can support the cover plate 8 and prevent it from falling. When the cover plate 8 is closed, the limiting rod 13 returns to the groove 14, and the limiting block 12 also enters the inside of the groove 14 when the cover plate 8 is closed.

[0036] Further, when the cover plate 8 is opened, the blowing end of the hot air blower 10 can rotate with the cover plate 8, so that the blowing end of the hot air blower 10 can be aligned with the opening of the cover plate 8, so that the hot air blower 10 can blow air into the inside of the curing bin 6. The wind contains a large amount of ultraviolet rays due to the sun's radiation. And because ultraviolet rays can be transmitted through the wind, the hot air blower 10 can continuously blow air into the inside of the curing bin 6, which can replace the ultraviolet rays generated by the UV curing machine. The inside of the curing bin 6 is coated with an ultraviolet reflector, so that the walls of the curing bin 6 will not absorb ultraviolet rays, thereby increasing the absorption efficiency of the ultraviolet rays by the nano environmental protection glue in the mold 18. And by heating the wind, the wind blown in can be dried, so that the nano environmental protection glue in the mold 18 can be more quickly solidified. In this way, the glue can be solidified by replacing the UV curing machine.

[0037] In the present application, the production raw materials of the glue can be treated by the stirring bin 1 and the treatment bin 4, and then the glue raw materials are poured into the mold 18 inside the curing bin 6, and the glue raw materials can be solidified by the hot air blower 10, so that the UV curing machine is not needed, and the cost of producing the nano environmental protection glue is saved.

[0038] The above is only a preferred embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacements or changes within the technical range disclosed in the present application according to the technical solution and inventive concept of the present application, which should be covered within the protection scope of the present application.

Claims

1. A production device for irradiation-free nano-environmental glue, comprising a stirring chamber (1), characterized in that: The top of the stirring chamber (1) is provided with a feed port (2), and a first connecting pipe (3) is provided extending outward from one side of the stirring chamber (1), and the other end of the first connecting pipe (3) is connected to the processing chamber (4) on one side of the stirring chamber (1); A second connecting pipe (5) is provided on the other side of the processing chamber (4) extending outward, and the other end of the second connecting pipe (5) is connected to a curing chamber (6) on one side of the processing chamber (4). A cover plate (8) is rotatably provided on the top of the curing chamber (6), and a hot air blower (10) is provided on one side of the cover plate (8). A plurality of molds (18) are provided inside the curing chamber (6), and the interior of the curing chamber (6) is coated with an ultraviolet reflective agent.

2. The production equipment of the radiation-free nano environmentally friendly glue according to claim 1, characterized in that: The first connecting pipe (3) extends outward from the middle and lower part of the stirring chamber (1) and extends into the middle and upper part of the processing chamber (4); the second connecting pipe (5) extends outward from the middle and lower part of the other side of the processing chamber (4) and extends into one side of the top of the solidification chamber (6).

3. The production equipment of the radiation-free nano environmentally friendly glue according to claim 2, characterized in that: The second connecting pipe (5) is extended into the curing chamber (6) and connected to the transverse pipe (16). Both sides of the transverse pipe (16) are provided with a plurality of branch pipes (17) extending outwards corresponding to the mold (18), and the bottoms of the branch pipes (17) are provided with electric discharge ports corresponding to the mold (18).

4. The production equipment of the radiation-free environmentally friendly nano glue according to claim 1, characterized in that: A rotating shaft (7) is provided on one side of the second connecting pipe (5) above the curing chamber (6), a cover plate (8) is provided on one side of the rotating shaft (7), and the cover plate (8) is opened and closed by rotating the rotating shaft (7).

5. The production equipment of the radiation-free nano environmentally friendly glue according to claim 4, characterized in that: A mounting seat (9) is provided at one end above the cover plate (8), a mounting pipe of the mounting seat (9) is arranged downward and is equipped with a hot air blower (10), and an output end of the hot air blower (10) corresponds to one side of the curing chamber (6).

6. The production equipment of the radiation-free nano-environmental glue according to claim 5, characterized in that: A plurality of air outlets (11) are provided on both sides of the curing chamber (6), and dustproof nets are provided on the air outlets (11).

7. The production equipment of the radiation-free environmentally friendly nano glue according to claim 1, characterized in that: Grooves (14) are provided downwardly on both sides of the curing chamber (6), a ball hinge (15) is provided inside the groove (14), a limiting rod (13) is installed on the ball hinge (15), and a telescopic structure is provided inside the limiting rod (13).

8. The production equipment of the radiation-free environmentally friendly nano glue according to claim 7, characterized in that: A limiting block (12) is provided below the cover plate (8) corresponding to the groove (14), and a limiting cavity is provided at the bottom of the limiting block (12).

9. The production equipment of the radiation-free environmentally friendly nano glue according to claim 1, characterized in that: The interior of the processing chamber (4) is provided with an ultrasonic processor, a centrifugal separator and a filter screen from top to bottom.

Citation Information

Patent Citations

  • Method for preparing multi-strip full-laminated nanometer air-permeable composite film

    CN102327744A

  • Rapid glue curing device

    CN210995110U