Automatic production equipment for wear-resistant super-hydrophobic coating

By implementing electric drive for adjusting the distance of the crushing rollers and the stirring mechanism in the superhydrophobic coating production equipment, the problem of poor crushing effect has been solved, and the processing efficiency and product quality have been improved.

CN224100585UActive Publication Date: 2026-04-10NANTONG SHIPPING COLLEGE +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In the current production process of superhydrophobic coatings, the distance between the crushing rollers cannot be flexibly adjusted, resulting in poor crushing effect and affecting processing efficiency and product quality.

Method used

An automated production equipment for wear-resistant superhydrophobic coatings was designed. The equipment features a crushing mechanism that allows for flexible adjustment of the distance between two sets of crushing rollers, and a stirring mechanism that electrically drives the stirring rod to ensure uniform mixing of the coating.

Benefits of technology

It improves the crushing effect, reduces over-crushing or under-crushing, improves processing efficiency and production quality, and ensures the uniformity of coating composition.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of coating automatic production, and discloses wear-resistant super-hydrophobic coating automatic production equipment which comprises a base, a box body is connected in the base, supporting blocks are connected to the periphery of the upper portion in the box body respectively, the inner sides of the four sets of supporting blocks are connected with a smashing box, a smashing mechanism is arranged in the smashing box, and the smashing mechanism is arranged on the base. A stirring bin is arranged on the lower portion in the box body, and a stirring mechanism is arranged on the right side in the stirring bin. The crusher has the advantages that the distance between the two groups of crushing rollers can be flexibly adjusted through the crushing mechanism, so that the processing requirements of different raw materials are met, the crushing effect is improved, the condition of excessive crushing or insufficient crushing is effectively reduced, and the processing efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of paint automation production technology, and specifically relates to a kind of wear-resistant superhydrophobic paint automation production equipment. BACKGROUND

[0002] Superhydrophobic phenomenon widely exists in nature, such as lotus leaves, butterfly wings, water strider legs, etc. all show excellent superhydrophobic performance. Superhydrophobic coating is composed of micro-nano structure and surface with low surface energy, with the characteristics of water static contact angle greater than 150° and rolling angle less than 10°. Related research on superhydrophobic surface is one of the frontiers and hotspots of international scientific research in recent twenty years, and breakthroughs have been made in the design of surfaces with self-cleaning, corrosion-resistant, drag-reducing, waterproof, oil-repellent, anti-fog and ice-resistant functions and interface properties. Common superhydrophobic structures such as ordered micropillars, porous structures, nanowires and micro-nanoparticle clusters have scattering and diffraction phenomena for visible light, so the prepared coating is milky white and has poor transparency. In addition to all the excellent properties of ordinary superhydrophobic surfaces, transparent superhydrophobic surfaces can also ensure the transparency of light, thereby significantly improving the performance of related equipment and products, and showing wide application prospects in photovoltaic equipment, buildings, automobiles, electronic manufacturing and textiles.

[0003] At present, superhydrophobic paint is generally first crushed in the production process, and a crushing roller is usually used for crushing treatment, but the applicant finds that the distance between the crushing rollers in the prior art cannot be flexibly adjusted, which cannot adapt to different processing and production needs, affecting the crushing effect. Therefore, the utility model provides a kind of wear-resistant superhydrophobic paint automation production equipment. UTILITY MODEL CONTENT

[0004] The utility model aims to provide a kind of wear-resistant superhydrophobic paint automation production equipment, through the crushing mechanism, the distance between the two groups of crushing rollers can be flexibly adjusted, the processing needs of different raw materials are met, the crushing effect is improved, the situation of excessive crushing or insufficient crushing is effectively reduced, and the processing efficiency is improved. At the same time, the stirring mechanism drives the stirring rod by electricity, further ensures the uniform stirring of the paint in the stirring bin, avoids uneven composition of the paint, and effectively improves the production quality.

[0005] To achieve the above utility model purposes, the technical scheme provided by the utility model is as follows: a kind of wear-resistant superhydrophobic paint automation production equipment, including base, the base is connected with box inside, the box is connected with support block around inside upper side respectively, four groups of support block inboard are connected with crushing box, the crushing mechanism is arranged in the crushing box, the stirring bin is arranged in the lower part of the box, the stirring mechanism is arranged in the right side of the stirring bin;

[0006] The crushing mechanism comprises a first fixed block and a second fixed block, the front sides of the first fixed block and the second fixed block are respectively connected with support frames, the inner sides of the two groups of support frames are respectively connected with first crushing rollers and second crushing rollers, the rear sides of the first crushing rollers and the second crushing rollers are respectively connected with first gears and second gears, the inner sides of the first gears and the second gears are respectively hinged with third gears and fourth gears, the third gears and the fourth gears are mutually hinged, the lower side of the first gear is hinged with a fifth gear, the lower side of the fifth gear is hinged with a sixth gear, and the sixth gear is connected on the support frame in a matching manner.

[0007] Further, the rear sides of the support frames are respectively hinged with first rotating rods and second rotating rods, the rear sides of the first gear and the fifth gear are respectively connected on the first rotating rods, the rear side of the second gear is connected on the second rotating rod, the inner sides of the first rotating rods and the second rotating rods are respectively hinged with third rotating rods and fourth rotating rods, the third rotating rods and the fourth rotating rods are mutually hinged, the rear side of the fourth gear is connected at the hinged position of the third rotating rod and the fourth rotating rod, and the rear side of the third gear is connected on the third rotating rod.

[0008] Further, the rear side of the first fixed block is connected with a first driving motor, the output end of the first driving motor penetrates through the first fixed block and is connected on the sixth gear, the outer sides of the first rotating rod and the second rotating rod are respectively connected with electric push rods, the outer sides of the support frames are respectively hinged with first movable rods and second movable rods, and the middle parts of the first movable rods and the second movable rods are respectively connected on the first crushing roller and the second crushing roller.

[0009] Further, the stirring mechanism comprises a second driving motor, the output end of the second driving motor is connected with a driving rod, the driving rod penetrates through the left side of the box body and is connected with a stirring column, the stirring column is located on the inner side of the stirring bin, and the outer side of the stirring column is connected with a stirring rod.

[0010] Further, a first feeding port is arranged above the crushing box, a discharging pipe is connected below the crushing box, a first electromagnetic valve is connected in the middle of the discharging pipe, a second feeding port is connected on the outer side of the box body, and the other end of the second feeding port is located above the inner part of the stirring bin.

[0011] Further, a discharging port is connected below the inner part of the box body, and a second electromagnetic valve is connected in the middle of the discharging port.

[0012] Further, support legs are respectively connected around the lower side of the base.

[0013] The utility model discloses a compared with prior art's advantage lies in: through the smashing mechanism can make two groups of flexible adjustment between the distance of the smashing roller, satisfy the processing demand of different raw materials, improve the smashing effect, effectively reduce the condition of excessive crushing or insufficient crushing, improve the processing efficiency, simultaneously, the stirring mechanism passes through the electric drive stirring rod, further guarantee the uniform stirring of coating in the stirring bin, avoid the uneven coating composition, effectively improve the production quality. BRIEF DESCRIPTION OF DRAWINGS

[0014] ATTACHED Figure 1 It is the main body structure schematic diagram of a kind of wear-resistant super-hydrophobic coating automatic production equipment of the utility model;

[0015] ATTACHED Figure 2 It is the main body sectional view of a kind of wear-resistant super-hydrophobic coating automatic production equipment of the utility model;

[0016] ATTACHED Figure 3 It is the smashing box sectional view of a kind of wear-resistant super-hydrophobic coating automatic production equipment of the utility model;

[0017] ATTACHED Figure 4 It is the smashing mechanism schematic diagram of a kind of wear-resistant super-hydrophobic coating automatic production equipment of the utility model.

[0018] As shown in the figure: 1, base; 2, box; 3, support block; 4, smashing box; 5, first feed inlet; 6, blanking tube; 601, first electromagnetic valve; 7, smashing mechanism; 701, first fixed block; 702, second fixed block; 703, support frame; 704, first smashing roller; 705, second smashing roller; 706, sixth gear; 707, fifth gear; 708, first gear; 709, first rotating rod; 710, third rotating rod; 711, fourth rotating rod; 712, second rotating rod; 713, second gear; 714, fourth gear; 715, third gear; 716, first drive motor; 717, first movable rod; 718, second movable rod; 719, electric push rod; 8, stirring bin; 9, stirring mechanism; 901, second drive motor; 902, drive rod; 903, stirring column; 904, stirring rod; 10, second feed inlet; 11, discharge port; 12, second electromagnetic valve; 13, support leg. DETAILED DESCRIPTION

[0019] In order to make the content of the utility model more easily be clearly understood, below will combine the drawings in the utility model embodiment, the technical scheme in the utility model embodiment is clearly and completely described. Wherein same part is shown with same reference numerals. It needs to be explained that, the words "front", "back", "left", "right", "up" and "down" in following description refer to the direction in the drawing, and the words "in" and "out" refer to the direction towards or away from the geometric center of specific component respectively.

[0020] In conjunction with the attached Figure 1 to the attached Figure 4 The utility model provides a kind of automatic production equipment of wear-resistant super-hydrophobic coating, including base 1, the inside box 2 of being connected with of base 1, the inside upper portion of box 2 is respectively connected with support block 3 around, four groups of support block 3 inside are connected with pulverization box 4, the inside of pulverization box 4 is equipped with pulverization mechanism 7, the inside lower portion of box 2 is equipped with stirring bin 8, the inside right side of stirring bin 8 is equipped with stirring mechanism 9;

[0021] The crushing mechanism 7 comprises a first fixed block 701 and a second fixed block 702, the front side of the first fixed block 701 and the second fixed block 702 is respectively connected with a support frame 703, the inner side of the two groups of support frames 703 is respectively connected with a first crushing roller 704 and a second crushing roller 705, the rear side of the first crushing roller 704 and the second crushing roller 705 is respectively connected with a first gear 708 and a second gear 713, the inner side of the first gear 708 and the second gear 713 is respectively hinged with a third gear 715 and a fourth gear 714, the third gear 715 and the fourth gear 714 are hinged with each other, the lower side of the first gear 708 is hinged with a fifth gear 707, the lower side of the fifth gear 707 is hinged with a sixth gear 706, the middle of the sixth gear 706 is connected with the support frame 703 in a matched manner, further, the rear side of the support frame 703 is respectively hinged with a first rotating rod 709 and a second rotating rod 712, the rear side of the first gear 708 and the fifth gear 707 is connected on the first rotating rod 709, the rear side of the second gear 713 is connected on the second rotating rod 712, the inner side of the first rotating rod 709 and the second rotating rod 712 is respectively hinged with a third rotating rod 710 and a fourth rotating rod 711, the third rotating rod 710 and the fourth rotating rod 711 are hinged with each other, the rear side of the fourth gear 714 is connected at the hinged place of the third rotating rod 710 and the fourth rotating rod 711, the rear side of the third gear 715 is connected on the third rotating rod 710. Further, the rear side of the first fixed block 701 is connected with a first driving motor 716, the output end of the first driving motor 716 penetrates through the first fixed block 701 and is connected on the sixth gear 706, the outer side of the first rotating rod 709 and the second rotating rod 712 is respectively connected with an electric push rod 719, the outer side of the support frame 703 is respectively hinged with a first movable rod 717 and a second movable rod 718, the middle of the first movable rod 717 and the second movable rod 718 is respectively connected on the first crushing roller 704 and the second crushing roller 705, the first driving motor 716 drives the sixth gear 706 to rotate, further drives the fifth gear 707 to rotate, further drives the first gear 708 to rotate, so that the first crushing roller 704 rotates, at the same time, the rotation of the first gear 708 drives the third gear 715 to rotate, further drives the fourth gear 714 to rotate, further drives the second gear 713 to rotate, further drives the second crushing roller 705 to rotate, and crushing is carried out, when it is needed to adjust the distance between the first crushing roller 704 and the second crushing roller 705, the electric push rod 719 drives the first rotating rod 709 and the second rotating rod 712 to rotate respectively, further drives the third rotating rod 710 and the fourth rotating rod 711 to rotate, further drives the first crushing roller 704 and the second crushing roller 705 to adjust, so as to meet the processing needs of different raw materials, improve the crushing effect, effectively reduce the situation of excessive crushing or insufficient crushing, and improve the processing efficiency.

[0022] Further, the stirring mechanism 9 comprises a second driving motor 901, the output end of the second driving motor 901 is connected with a driving rod 902, the driving rod 902 penetrates through the left side of the box body 2 and is connected with a stirring column 903, the stirring column 903 is located inside the stirring bin 8, the outer side of the stirring column 903 is connected with a stirring rod 904, the second driving motor 901 drives the driving rod 902 to rotate, further drives the stirring rod 903 to rotate, and further drives the stirring rod 904 to mix and stir the raw materials inside the stirring bin 8.

[0023] Further, the upper side of the pulverizing box 4 is provided with a first feeding port 5, the lower side of the pulverizing box 4 is connected with a discharging pipe 6, the middle of the discharging pipe 6 is connected with a first electromagnetic valve 601 in a matched mode, the outer side of the box body 2 is connected with a second feeding port 10, the other end of the second feeding port 10 is located above the inside of the stirring bin 8, after pulverization, the first electromagnetic valve 601 controls the discharging pipe 6 to discharge the raw materials inside the pulverizing box 4, so that the raw materials enter the stirring bin 8 for stirring.

[0024] Further, the lower side of the box body 2 is connected with a discharging port 11, the middle of the discharging port 11 is connected with a second electromagnetic valve 12 in a matched mode, the second electromagnetic valve 12 controls the discharging port 11 to discharge, so that the raw materials after pulverization and stirring are discharged.

[0025] Further, the lower side of the base 1 is connected with supporting legs 13.

[0026] The specific implementation manner of the utility model discloses: in the use process, first, the raw materials are added through the first feed inlet 5, make it enter into the smashing box 4, drive the sixth gear 706 rotation through the first drive motor 716, further drive the fifth gear 707 rotation, further drive the first gear 708 rotation, make the first smashing roller 704 rotation, simultaneously, the third gear 715 rotation is driven by the first gear 708 rotation, further drive the fourth gear 714 rotation, further drive the second gear 713 rotation, further drive the second smashing roller 705 rotation, carry out the smashing, when needing to adjust the distance between the first smashing roller 704 and the second smashing roller 705, drive the first rotation rod 709 and the second rotation rod 712 rotation through the electric push rod 719 respectively, further drive the third rotation rod 710 and the fourth rotation rod 711 rotation, further drive the first smashing roller 704 and the second smashing roller 705 adjustment, satisfy the processing demand of different raw materials, improve the smashing effect, effectively reduce through reducing the condition of excessive crushing or insufficient smashing, improve the processing efficiency, when the smashing is finished, control the blanking pipe 6 to the principle in the smashing box 4 and carry out the blanking through the first electromagnetic valve 601, make it enter into the stirring bin 8 and carry out the stirring, drive the driving rod 902 rotation through the second drive motor 901, further drive the stirring rod 903 rotation, further drive the stirring rod 904 and carry out the mixing stirring to the raw materials in the stirring bin 8, finally, control the discharge port 11 and carry out the discharge through the second electromagnetic valve 12, make the raw materials after the smashing stirring and carry out the discharge.

[0027] The above only is the preferred embodiment of the utility model patent, does not use to limit the utility model patent, any modification, equivalent replacement and improvement etc. that are made in the spirit and principle of the utility model patent should include in the protection scope of the utility model patent.

Claims

1. An automated production equipment for wear-resistant superhydrophobic coatings, comprising a base (1), characterized in that, The base (1) is connected to a box (2) inside. Support blocks (3) are connected to the upper four sides of the box (2) respectively. The four sets of support blocks (3) are connected to a crushing box (4) inside. The crushing box (4) is equipped with a crushing mechanism (7) inside. The box (2) is equipped with a stirring chamber (8) at the bottom inside. The stirring chamber (8) is equipped with a stirring mechanism (9) on the right side inside. The crushing mechanism (7) includes a first fixed block (701) and a second fixed block (702). The front sides of the first fixed block (701) and the second fixed block (702) are respectively connected to a support frame (703). The two sets of support frames (703) are respectively connected to a first crushing roller (704) and a second crushing roller (705). The rear sides of the first crushing roller (704) and the second crushing roller (705) are respectively connected to a first gear (708) and a second gear (713). The inner sides of the first gear (708) and the second gear (713) are respectively hinged to a third gear (715) and a fourth gear (714). The third gear (715) and the fourth gear (714) are hinged to each other. The first gear (708) is hinged to a fifth gear (707) below it. The fifth gear (707) is hinged to a sixth gear (706) below it. The sixth gear (706) is connected to the support frame (703) in the middle.

2. The automated production equipment for wear-resistant superhydrophobic coatings according to claim 1, characterized in that, The support frame (703) is hinged to the rear of a first rotating rod (709) and a second rotating rod (712). The rear of the first gear (708) and the fifth gear (707) are respectively connected to the first rotating rod (709), and the rear of the second gear (713) is connected to the second rotating rod (712). The inner sides of the first rotating rod (709) and the second rotating rod (712) are hinged to a third rotating rod (710) and a fourth rotating rod (711). The third rotating rod (710) and the fourth rotating rod (711) are hinged to each other. The rear of the fourth gear (714) is connected to the hinge point of the third rotating rod (710) and the fourth rotating rod (711). The rear of the third gear (715) is connected to the third rotating rod (710).

3. The automated production equipment for wear-resistant superhydrophobic coatings according to claim 2, characterized in that, The first fixed block (701) is connected to the rear side of the first drive motor (716). The output end of the first drive motor (716) passes through the first fixed block (701) and is connected to the sixth gear (706). The first rotating rod (709) and the second rotating rod (712) are respectively connected to the outer side of the electric push rod (719). The first movable rod (717) and the second movable rod (718) are respectively hinged to the outer side of the support frame (703). The first movable rod (717) and the second movable rod (718) are respectively connected to the first crushing roller (704) and the second crushing roller (705).

4. The automated production equipment for wear-resistant superhydrophobic coatings according to claim 1, characterized in that, The stirring mechanism (9) includes a second drive motor (901), the output end of which is connected to a drive rod (902). The drive rod (902) passes through the left side of the housing (2) and is connected to a stirring column (903). The stirring column (903) is located inside the stirring chamber (8), and a stirring rod (904) is connected to the outside of the stirring column (903).

5. The automated production equipment for wear-resistant superhydrophobic coatings according to claim 1, characterized in that, The crushing box (4) is provided with a first feed inlet (5) above it, and a feed pipe (6) is connected to the bottom of the crushing box (4). A first solenoid valve (601) is connected in the middle of the feed pipe (6). A second feed inlet (10) is connected to the outside of the box body (2). The other end of the second feed inlet (10) is located inside the mixing chamber (8) above it.

6. The automated production equipment for wear-resistant superhydrophobic coatings according to claim 1, characterized in that, The lower part of the box (2) is connected to a discharge port (11), and a second solenoid valve (12) is connected in the middle of the discharge port (11).

7. The automated production equipment for wear-resistant superhydrophobic coatings according to claim 1, characterized in that, Support legs (13) are connected to the four sides of the base (1) below.