Dispersion and filtration equipment for preparing anti-wear and anti-corrosion coatings and preparation method thereof
By designing a dispersion and filtration equipment for the preparation of anti-wear and anti-corrosion coatings and adopting a multi-structure combination of deformable bulk materials and filtering mechanisms, the problem of insufficient self-cleaning of traditional equipment is solved, the rapid dispersion and filtration of the coating is achieved, and the user experience and processing effect of the equipment are improved.
Patent Information
- Application Number
- CN202411552072.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2044-11-01
AI Technical Summary
Traditional dispersed filtration equipment lacks a self-cleaning structure, which causes the filter holes to be easily clogged, affecting the normal use of the equipment.
A dispersion and filtration equipment for the preparation of anti-wear and anti-corrosion coatings was designed. It includes a deformable bulking mechanism and a deformable filtration mechanism. The equipment adopts the mutual cooperation of multiple stirring structures to achieve rapid dispersion and filtration of the coating and has a self-cleaning function.
It achieves rapid and full dispersion and filtration of the coating, avoids clogging of the filter structure, and improves the use experience and processing effect of the equipment.
Smart Images

Figure CN119186065B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of coating mixing, and in particular relates to a dispersion filtering device for preparing an anti-wear and anti-corrosion coating and a preparation method thereof. Background Art
[0002] Paint is generally a homogeneous mixture of fillers, paints and solvents. The interactions between the various components of the paint are very complex, so the system is extremely unstable and often prone to separation. The corresponding dispersion and filtration equipment is required in the preparation process of the paint.
[0003] The traditional dispersion and filtration equipment includes a base plate, a universal self-locking wheel, a support seat, a column, a dispersion cylinder, a fixed plate, a motor, a pulley, a belt, a rotating shaft, a limit hole, a pressing plate, a support plate, a connecting frame, a fixing frame, a fixing rod, a positioning column and a connecting rod. The advantage of this equipment is that it is easy to install and disassemble, and it is easy to clean the anti-corrosion coating on the dispersion cylinder.
[0004] Traditional dispersed filtering equipment filters the paint through a filter frame and filter holes during use. However, due to the lack of a self-cleaning structure, the filter holes on the filter frame of traditional dispersed filtering equipment are easily clogged, affecting the user's normal use of the equipment and urgently needs improvement. Summary of the Invention
[0005] The purpose of the present invention is to provide a dispersion and filtration device for preparing anti-wear and anti-corrosion coatings to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a dispersion and filtration device for preparing anti-wear and anti-corrosion coatings, comprising a bulk metal tank, a plurality of injection and pressure relief pipes are provided on the top of the bulk metal tank, a plurality of unloading metal pipes are provided at the bottom of the bulk metal tank, a deformable bulk mechanism for dispersing and heating the material is provided inside the bulk metal tank, a deformable filtering mechanism for adjusting the posture of the deformable bulk mechanism and for cooperating with the deformable bulk mechanism to filter and disperse the material is provided at the bottom of the bulk metal tank, the deformable bulk mechanism comprises a first adjustable speed power output component, the first adjustable speed power output component is fixedly connected to the bulk metal tank, a hollow material storage tube is provided below the first adjustable speed power output component, and a transmission is provided at the output end of the first adjustable speed power output component. A metal shaft, a pressure-regulating metal disk is provided at the bottom of the transmission metal shaft and is sealed and rotatably connected to the hollow material storage tube. A plurality of limiting feeding holes are provided on the upper surface of the pressure-regulating metal disk, and a plurality of deformable elastic sealing plates corresponding to the limiting feeding holes are provided on the lower surface of the pressure-regulating metal disk. The deformable elastic sealing plates are fixedly connected to the pressure-regulating metal disk. A plurality of first hollow material conveying pipes are provided at the bottom of the hollow material storage tube, and the first hollow material conveying pipes pass through the bottom wall of the hollow material storage tube, and the first hollow material conveying pipes are fixedly connected to the hollow material storage tube. A plurality of second hollow material conveying pipes for spraying materials are provided on the side wall of the hollow material storage tube, and the second hollow material conveying pipes pass through the side wall of the hollow material storage tube, and the hollow material storage tubes are fixedly connected to the second hollow material conveying pipe.
[0007] As a further solution of the present invention: a plurality of adjustable temperature heating elements for heating the material are arranged inside the hollow material storage tube, and the adjustable temperature heating elements are fixedly connected to the hollow material storage tube; a plurality of rotatable bulk material elements for stirring and dispersing the material are arranged on the transmission metal shaft, and the rotatable bulk material elements are fixedly connected to the transmission metal shaft.
[0008] As a further solution of the present invention: the deformable filtering mechanism includes a first adjustable transmission metal plate, a filter metal box is arranged above the first adjustable transmission metal plate, the filter metal box is fixedly connected to the hollow material storage tube, and a second adjustable speed power output component for driving the filter metal box to rotate is arranged in the middle of the upper surface of the first adjustable transmission metal plate, and a plurality of first deformable position adjustment components for adjusting the height of the first adjustable transmission metal plate are arranged on both sides of the second adjustable speed power output component, and a filter metal mesh cover is arranged on the top of the filter metal box, and the filter metal mesh cover is fixedly connected to the filter metal box.
[0009] As a further solution of the present invention: a movable transmission disk is provided inside the filter metal box, and a movable elastic blocking block is provided on the top of the movable transmission disk for sealing the top open end of the filter metal mesh cover; an anti-tilt metal rod is provided in the middle of the lower surface of the movable transmission disk, and the anti-tilt metal rod is fixedly connected to the movable transmission disk; an anti-tilt limiting tube which is slidably connected to the anti-tilt metal rod is fixedly connected to the inside of the filter metal box; and a third deformable position adjustment component is provided at the bottom of the filter metal box for cooperating with the anti-tilt metal rod to drive the movable elastic blocking block to move toward the direction close to the transmission metal shaft.
[0010] As a further solution of the present invention: one end of the third deformable position adjusting member is fixedly connected to the anti-tilt metal rod, and the other end of the third deformable position adjusting member is fixedly connected to the filter metal box. The top of the filter metal box is provided with a movable knocking ring for knocking the filter metal mesh cover, and the top of the filter metal box is provided with several second deformable position adjusting members for vibrating the movable knocking ring.
[0011] As a further solution of the present invention: one end of the second deformable position adjusting member is fixedly connected to the filter metal box, and the other end of the second deformable position adjusting member is fixedly connected to the movable knocking ring. A plurality of limiting slag discharge holes are provided on the lower surface of the filter metal box, and a plurality of detachable sealing baffles are provided at both ends of the lower surface of the filter metal box for sealing the limiting slag discharge holes.
[0012] As a further solution of the present invention: the upper surface of the first adjustable transmission metal plate is provided with an anti-tilt support tube for supporting the filter metal box, the anti-tilt support tube is fixedly connected to the first adjustable transmission metal plate, and the top of the anti-tilt support tube is provided with a plurality of protective metal balls corresponding to the filter metal box, one end of the first deformable position adjustment part is fixedly connected to the first adjustable transmission metal plate, and the other end of the first deformable position adjustment part is fixedly connected to the bulk metal tank.
[0013] As a further solution of the present invention: a plurality of metal hanging plates are provided on the side of the bulk metal tank, the metal hanging plates are provided at the top of the side of the bulk metal tank, the metal hanging plates are fixedly connected to the bulk metal tank, and a plurality of detachable warning parts for displaying information are provided on the side of the metal hanging plates, and the detachable warning parts are provided at the bottom of the side of the metal hanging plates.
[0014] As a further solution of the present invention: a detachable anti-collision insulation cover is provided at the bottom of the bulk metal tank, an anti-dumping support plate is provided below the bulk metal tank, the anti-dumping support plate is fixedly connected to the bulk metal tank, and a plurality of anti-dumping counterweight plates are provided inside the anti-dumping support plate, the anti-dumping counterweight plates are provided at the bottom of the anti-dumping support plate, and the anti-dumping counterweight plates are fixedly connected to the anti-dumping support plate.
[0015] A method for preparing an anti-wear and anti-corrosion coating uses any of the above-mentioned dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating.
[0016] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a simple structure and is easy to use. When in use, the paint is sprayed and dispersed through the mutual cooperation of multiple structures, and the paint is quickly and fully dispersed through the mutual cooperation of multiple stirring structures. Secondly, the present invention can filter and uniformly heat the paint during the bulking process, so that the equipment has a better processing effect on the paint. In addition, the present invention can collect and store filtered impurities, and can self-clean the filtering structure to avoid affecting the user's normal use of the equipment due to blockage of the filtering structure, thereby improving the user's experience of using the equipment, and is worthy of promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the structure of a dispersion and filtration device for preparing anti-wear and anti-corrosion coatings;
[0018] Figure 2 This is a schematic structural diagram of a deformable bulking mechanism in a dispersion and filtration device for preparing anti-wear and anti-corrosion coatings;
[0019] Figure 3 This is a schematic structural diagram of a deformable filtering mechanism in a dispersion filtering device for preparing anti-wear and anti-corrosion coatings;
[0020] Figure 4 This is a schematic diagram of the structure of a filter metal mesh cover in a dispersion filtration device for preparing anti-wear and anti-corrosion coatings;
[0021] In the figure: 1- detachable anti-collision insulation cover, 2- deformable bulk material mechanism, 3- metal hanging plate, 4- injection pressure relief pipe, 5- detachable warning piece, 6- deformable filter mechanism, 7- bulk material metal tank, 8- unloading metal pipe, 9- anti-dumping support plate, 10- anti-dumping counterweight plate, 20- first hollow material conveying pipe, 21- adjustable temperature heating element, 22- pressure regulating metal plate, 23- second hollow material conveying pipe, 24- hollow material storage pipe, 25- first adjustable speed power output element, 26- transmission metal shaft, 27- rotatable bulk material element, 28- limited feeding hole, 29- Deformable elastic sealing plate, 60-anti-tilt support tube, 61-second adjustable speed power output part, 62-first adjustable transmission metal plate, 63-first deformable position adjustment part, 64-removable sealing baffle, 65-filter metal mesh cover, 66-filter metal box, 67-second deformable position adjustment part, 68-removable elastic sealing block, 691-anti-tilt limit tube, 692-third deformable position adjustment part, 693-removable knocking ring, 694-limited slag discharge hole, 695-protective metal ball, 696-anti-tilt metal rod, 697-removable transmission disk. DETAILED DESCRIPTION
[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0023] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected" and "set" should be understood in a broad sense. For example, it can be fixedly connected or set, or detachably connected or set, or integrally connected or set.
[0024] For those skilled in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0025] See also Figure 1 The present embodiment provides a dispersion and filtration device for preparing anti-wear and anti-corrosion coatings, including a bulk metal tank 7, a plurality of injection and pressure relief pipes 4 are provided on the top of the bulk metal tank 7, a plurality of unloading metal pipes 8 are provided at the bottom of the bulk metal tank 7, a deformable bulk mechanism 2 for dispersing and heating the material is provided inside the bulk metal tank 7, and a deformable filtering mechanism 6 for adjusting the posture of the deformable bulk mechanism 2 and cooperating with the deformable bulk mechanism 2 to filter and disperse the material is provided at the bottom of the bulk metal tank 7.
[0026] See also Figure 1 and Figure 2 In one embodiment, in order to make the use of the deformable bulk material mechanism 2 more reliable, in this embodiment, preferably, the deformable bulk material mechanism 2 includes a first adjustable speed power output part 25, the first adjustable speed power output part 25 is an electric motor, the first adjustable speed power output part 25 is fixedly connected to the bulk material metal tank 7, a hollow material storage tube 24 is provided below the first adjustable speed power output part 25, the output end of the first adjustable speed power output part 25 is provided with a transmission metal shaft 26, the bottom of the transmission metal shaft 26 is provided with a pressure-regulating metal disk 22 which is sealed and rotatably connected to the hollow material storage tube 24, the pressure-regulating metal disk 22 can move vertically along the hollow material storage tube 24 while rotating, a plurality of limiting feeding holes 28 are provided on the upper surface of the pressure-regulating metal disk 22, and a plurality of deformable elastic sealing plates 29 corresponding to the limiting feeding holes 28 are provided on the lower surface of the pressure-regulating metal disk 22, the deformable elastic sealing plates 29 are rubber plates, and the deformable elastic sealing plates 29 and the pressure-regulating metal disk 22 is fixedly connected, and several first hollow material conveying pipes 20 are arranged at the bottom of the hollow material storage pipe 24, and the first hollow material conveying pipe 20 is arranged through the bottom wall of the hollow material storage pipe 24, and the first hollow material conveying pipe 20 is fixedly connected to the hollow material storage pipe 24, and several second hollow material conveying pipes 23 for spraying the material are arranged on the side wall of the hollow material storage pipe 24, and the second hollow material conveying pipe 23 is arranged through the side wall of the hollow material storage pipe 24, and the hollow material storage pipe 24 is fixedly connected to the second hollow material conveying pipe 23, and several adjustable temperature heating elements 21 for heating the material are arranged inside the hollow material storage pipe 24, and the adjustable temperature heating element 21 is an electric heating plate, and the adjustable temperature heating element 21 is fixedly connected to the hollow material storage pipe 24, and several rotatable bulk material parts 27 for stirring and dispersing the material are arranged on the transmission metal shaft 26, and the rotatable bulk material parts 27 are fixedly connected to the transmission metal shaft 26 by welding.
[0027] In another embodiment, the deformable bulk material mechanism 2 includes a first adjustable speed power output part 25, which is a pneumatic motor. The first adjustable speed power output part 25 is fixedly connected to the bulk material metal tank 7. A hollow material storage tube 24 is provided below the first adjustable speed power output part 25, and a transmission metal shaft 26 is provided at the output end of the first adjustable speed power output part 25. A pressure-regulating metal disk 22 is provided at the bottom of the transmission metal shaft 26, which is sealed and rotatably connected to the hollow material storage tube 24. The pressure-regulating metal disk 22 can move vertically along the hollow material storage tube 24 while rotating. A plurality of limiting feeding holes 28 are provided on the upper surface of the pressure-regulating metal disk 22, and a plurality of deformable elastic sealing plates 29 corresponding to the limiting feeding holes 28 are provided on the lower surface of the pressure-regulating metal disk 22. The deformable elastic sealing plate 29 is a silicone plate. The deformable elastic sealing plate 29 is fixedly connected to the pressure-regulating metal disk 22, and the hollow material storage tube 2 A plurality of first hollow material conveying pipes 20 are provided at the bottom, and the first hollow material conveying pipes 20 pass through the bottom wall of the hollow material storage pipe 24 and are fixedly connected to the hollow material storage pipe 24. A plurality of second hollow material conveying pipes 23 for spraying the material are provided on the side wall of the hollow material storage pipe 24, and the second hollow material conveying pipes 23 pass through the side wall of the hollow material storage pipe 24 and are fixedly connected to the second hollow material conveying pipes 23. A plurality of adjustable temperature heating elements 21 for heating the material are provided inside the hollow material storage pipe 24. The adjustable temperature heating elements 21 are electric heating rods and are fixedly connected to the hollow material storage pipe 24 by screws. A plurality of rotatable bulk material elements 27 for stirring and dispersing the material are provided on the transmission metal shaft 26. The rotatable bulk material elements 27 and the transmission metal shaft 26 are an integrally formed structure.
[0028] See also Figure 1 、 Figure 3 and Figure 4In one embodiment, in order to make the use of the deformable filtering mechanism 6 more reliable, in this embodiment, preferably, the deformable filtering mechanism 6 includes a first adjustable transmission metal plate 62, and a filter metal box 66 is provided above the first adjustable transmission metal plate 62. The filter metal box 66 is fixedly connected to the hollow material storage tube 24, and a second adjustable speed power output 61 for driving the filter metal box 66 to rotate is provided in the middle of the upper surface of the first adjustable transmission metal plate 62. The second adjustable speed power output 61 is an electric motor, and a plurality of first deformable position adjusting members 63 for adjusting the height of the first adjustable transmission metal plate 62 are provided on both sides of the second adjustable speed power output 61. The first deformable position adjusting member 63 is a hydraulic cylinder, and one end of the first deformable position adjusting member 63 is fixedly connected to the first adjustable transmission metal plate 62, and the other end of the first deformable position adjusting member 63 is fixedly connected to the bulk metal tank 7. , a filter metal mesh cover 65 is provided on the top of the filter metal box 66, and the filter metal mesh cover 65 is fixedly connected to the filter metal box 66. A movable transmission disk 697 is provided inside the filter metal box 66, and a movable elastic blocking block 68 is provided on the top of the movable transmission disk 697 for blocking the top open end of the filter metal mesh cover 65. The movable elastic blocking block 68 is a rubber block. An anti-tilt metal rod 696 is provided in the middle of the lower surface of the movable transmission disk 697. The anti-tilt metal rod 696 is fixedly connected to the movable transmission disk 697. An anti-tilt limiting tube 691 that is slidably connected to the anti-tilt metal rod 696 is fixedly connected to the inside of the filter metal box 66. A third deformable position adjusting member 692 is provided at the bottom of the filter metal box 66 for cooperating with the anti-tilt metal rod 696 to drive the movable elastic blocking block 68 to move toward the direction close to the transmission metal shaft 26. The third deformable position adjusting member 692 is a spring;
[0029] See also Figure 3 and Figure 4In one embodiment, in order to make the functions of the deformable filtering mechanism 6 more abundant, in this embodiment, preferably, one end of the third deformable position adjusting member 692 is fixedly connected to the anti-tilt metal rod 696, and the other end of the third deformable position adjusting member 692 is fixedly connected to the filter metal box 66. The top of the filter metal box 66 is provided with a movable knocking ring 693 for knocking the filter metal mesh cover 65. The top of the filter metal box 66 is provided with several second deformable position adjusting members 67 for vibrating the movable knocking ring 693. The second deformable position adjusting member 67 is a spring. When the filter metal box 66 moves back and forth vertically, the movable knocking ring 693 moves back and forth vertically under the vibration action of the second deformable position adjusting member 67. At this time, the filter metal mesh cover 65 is knocked by the movable knocking ring 693. , by knocking, the debris retained on the filter metal mesh cover 65 falls off, thereby realizing self-cleaning of the filter metal mesh cover 65, one end of the second deformable position adjusting member 67 is fixedly connected to the filter metal box 66, and the other end of the second deformable position adjusting member 67 is fixedly connected to the movable knocking ring 693, and a plurality of limiting slag discharge holes 694 are provided on the lower surface of the filter metal box 66, and a plurality of detachable blocking baffles 64 are provided at both ends of the lower surface of the filter metal box 66 for blocking the limiting slag discharge holes 694, and an anti-tilt support tube 60 is provided on the upper surface of the first adjustable transmission metal plate 62 for supporting the filter metal box 66, and the anti-tilt support tube 60 is fixedly connected to the first adjustable transmission metal plate 62, and a plurality of protective metal balls 695 corresponding to the filter metal box 66 are provided on the top of the anti-tilt support tube 60.
[0030] In another embodiment, the deformable filtering mechanism 6 includes a first adjustable transmission metal plate 62, a filter metal box 66 is arranged above the first adjustable transmission metal plate 62, and the filter metal box 66 is fixedly connected to the hollow material storage tube 24. A second adjustable speed power output part 61 for driving the filter metal box 66 to rotate is arranged in the middle of the upper surface of the first adjustable transmission metal plate 62. The second adjustable speed power output part 61 is an air motor. A plurality of first deformable position adjustment parts 63 for adjusting the height of the first adjustable transmission metal plate 62 are arranged on both sides of the second adjustable speed power output part 61. The first deformable position adjustment part 63 is a cylinder. One end of the first deformable position adjustment part 63 is fixedly connected to the first adjustable transmission metal plate 62, and the other end of the first deformable position adjustment part 63 is fixedly connected to the bulk metal tank 7. The top of the filter metal box 66 is provided with a The filter metal mesh cover 65 is fixedly connected to the filter metal box 66. A movable transmission disk 697 is provided inside the filter metal box 66. A movable elastic blocking block 68 is provided on the top of the movable transmission disk 697 for blocking the top open end of the filter metal mesh cover 65. The movable elastic blocking block 68 is a silicone block. An anti-tilt metal rod 696 is provided in the middle of the lower surface of the movable transmission disk 697. The anti-tilt metal rod 696 is fixedly connected to the movable transmission disk 697. An anti-tilt limiting tube 691 that is slidably connected to the anti-tilt metal rod 696 is fixedly connected to the inside of the filter metal box 66. A third deformable position adjusting member 692 is provided at the bottom of the filter metal box 66 for cooperating with the anti-tilt metal rod 696 to drive the movable elastic blocking block 68 to move toward the direction close to the transmission metal shaft 26. The third deformable position adjusting member 692 is a metal spring.
[0031] See also Figure 3 and Figure 4In one embodiment, in order to make the function of the deformable filter mechanism 6 more abundant, in this embodiment, preferably, one end of the third deformable position adjusting member 692 is fixedly connected to the anti-tilt metal rod 696, and the other end of the third deformable position adjusting member 692 is fixedly connected to the filter metal box 66. The top of the filter metal box 66 is provided with a movable knocking ring 693 for knocking the filter metal mesh cover 65. The top of the filter metal box 66 is provided with several second deformable position adjusting members 67 for vibrating the movable knocking ring 693. The second deformable position adjusting member 67 is a metal spring. When the filter metal box 66 moves back and forth vertically, the movable knocking ring 693 moves back and forth vertically under the vibration action of the second deformable position adjusting member 67. At this time, the filter metal mesh cover 65 is knocked by the movable knocking ring 693. Hitting, by knocking, the debris retained on the filter metal mesh cover 65 is dropped off, thereby realizing self-cleaning of the filter metal mesh cover 65, one end of the second deformable position adjusting member 67 is fixedly connected to the filter metal box 66, and the other end of the second deformable position adjusting member 67 is fixedly connected to the movable knocking ring 693, and a plurality of limiting slag discharge holes 694 are provided on the lower surface of the filter metal box 66, and a plurality of detachable blocking baffles 64 for blocking the limiting slag discharge holes 694 are provided at both ends of the lower surface of the filter metal box 66, and an anti-tilt support tube 60 for supporting the filter metal box 66 is provided on the upper surface of the first adjustable transmission metal plate 62, and the anti-tilt support tube 60 is fixedly connected to the first adjustable transmission metal plate 62, and a plurality of protective metal balls 695 corresponding to the filter metal box 66 are provided on the top of the anti-tilt support tube 60.
[0032] See also Figure 1 In one embodiment, in order to make the function of the equipment richer, in this embodiment, preferably, a plurality of metal hanging plates 3 are provided on the side of the bulk metal tank 7, and the metal hanging plates 3 are arranged on the top of the side of the bulk metal tank 7. The metal hanging plates 3 are fixedly connected to the bulk metal tank 7. The side of the metal hanging plates 3 is provided with a plurality of detachable warning parts 5 for displaying information. The detachable warning parts 5 are handwritten fluorescent plates. The detachable warning parts 5 are arranged at the bottom of the side of the metal hanging plates 3. A detachable anti-collision insulation cover 1 is provided at the bottom of the bulk metal tank 7. The detachable anti-collision insulation cover 1 is a rubber cover. An anti-dumping support plate 9 is provided below the bulk metal tank 7. The anti-dumping support plate 9 is fixedly connected to the bulk metal tank 7. A plurality of anti-dumping counterweight plates 10 are provided inside the anti-dumping support plate 9. The anti-dumping counterweight plates 10 are iron plates. The anti-dumping counterweight plates 10 are arranged at the bottom of the anti-dumping support plate 9. The anti-dumping counterweight plates 10 are fixedly connected to the anti-dumping support plate 9.
[0033] In another embodiment, a plurality of metal hanging plates 3 are provided on the side of the bulk metal tank 7, and the metal hanging plates 3 are provided at the top of the side of the bulk metal tank 7, and the metal hanging plates 3 are fixedly connected to the bulk metal tank 7. A plurality of detachable warning parts 5 for displaying information are provided on the side of the metal hanging plates 3, and the detachable warning parts 5 are LCD screens, and the detachable warning parts 5 are provided at the bottom of the side of the metal hanging plates 3. A detachable anti-collision insulation cover 1 is provided at the bottom of the bulk metal tank 7, and the detachable anti-collision insulation cover 1 is a sponge cover. An anti-dumping support plate 9 is provided below the bulk metal tank 7, and the anti-dumping support plate 9 is fixedly connected to the bulk metal tank 7. A plurality of anti-dumping counterweight plates 10 are provided inside the anti-dumping support plate 9, and the anti-dumping counterweight plates 10 are marble plates. The anti-dumping counterweight plates 10 are provided at the bottom of the anti-dumping support plate 9, and the anti-dumping counterweight plates 10 are fixedly connected to the anti-dumping support plate 9.
[0034] A method for preparing an anti-wear and anti-corrosion coating uses the above-mentioned dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating.
[0035] The working principle and use process of the present invention are as follows: When in use, the coating to be processed (hereinafter referred to as the material) that needs to be dispersed and filtered is injected into the interior of the bulk metal tank 7 through the injection pressure relief pipe 4, so that the material is immersed in the hollow material storage tube 24. Then, the first adjustable speed power output member 25 drives the transmission metal shaft 26 to rotate. At this time, the rotating rotatable bulk material member 27 stirs and disperses the material. At the same time, the second adjustable speed power output member 61 drives the hollow material storage tube 24 and the transmission metal shaft 26 to rotate in the opposite direction. At this time, the rotating hollow material storage tube 24 and the second hollow material conveying tube 23 cooperate with each other to further disperse the material.
[0036] At the same time, the first deformable position adjusting member 63 is controlled to continuously extend and contract. At this time, the filter metal box 66 drives the hollow material storage tube 24 to perform vertical reciprocating movement. When the filter metal box 66 moves upward, the material under the pressure regulating metal disk 22 drives the movable elastic blocking block 68 to move downward and enter the interior of the filter metal box 66. At this time, the material is filtered and impurities are removed by the filter metal mesh cover 65 in the filter metal box 66. The impurity-removed material is conveyed by the first hollow material conveying pipe 20 and enters the interior of the hollow material storage tube 24. Then, the material is ejected to the outside through the second hollow material conveying pipe 23. During the ejection process, the rotation and vertical reciprocating movement of the second hollow material conveying pipe 23 are coordinated to achieve all-round, rapid and uniform dispersion of the material.
[0037] When the filter metal box 66 moves downward, the deformable elastic sealing plate 29 loses its sealing effect on the limiting feed hole 28. At this time, part of the material above the pressure-regulating metal disk 22 passes through the limiting feed hole 28 and enters the bottom of the pressure-regulating metal disk 22, thereby forming a pressurized injection mechanism similar to the working principle of a syringe through the mutual cooperation of multiple structures, and realizing rapid dispersion of the material through injection, and circulating the material through continuous extraction and injection, thereby filtering the material during the circulation process of the material, and realizing uniform heating of the material by turning on the power of the adjustable temperature heating element 21, so as to ensure the fluidity of the material and avoid the reduction of the fluidity of the material in a low temperature environment, thereby improving the applicability of the equipment. In addition, the filter metal box 66 can realize self-cleaning of the filter metal mesh cover 65 during the reciprocating movement;
[0038] Thus, through the mutual cooperation of multiple structures, the paint is sprayed and dispersed, and through the mutual cooperation of multiple stirring structures, the paint is quickly and fully dispersed. Secondly, the present invention can filter and evenly heat the paint during the bulking process, so that the equipment has a better processing effect on the paint. In addition, the present invention can collect and store filtered impurities, and can self-clean the filtering structure to avoid affecting the user's normal use of the equipment due to blockage of the filtering structure, thereby improving the user's experience of using the equipment. In addition, the present invention has a simple structure, is easy to use, and is worthy of promotion and use.
[0039] 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 embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
[0040] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. A dispersion and filtration device for preparing anti-wear and anti-corrosion coatings, comprising a bulk metal tank, a plurality of injection and pressure relief pipes provided on the top of the bulk metal tank, and a plurality of discharge metal pipes provided on the bottom of the bulk metal tank, characterized in that: The interior of the bulk metal tank is provided with a deformable bulk mechanism for dispersing and heating the material, the bottom of the bulk metal tank is provided with a deformable filtering mechanism for adjusting the posture of the deformable bulk mechanism and for cooperating with the deformable bulk mechanism to filter and disperse the material, the deformable bulk mechanism includes a first adjustable speed power output component, the first adjustable speed power output component is fixedly connected to the bulk metal tank, a hollow material storage tube is provided below the first adjustable speed power output component, the output end of the first adjustable speed power output component is provided with a transmission metal shaft, the bottom of the transmission metal shaft is provided with a pressure regulating metal disk which is sealed and rotatably connected to the hollow material storage tube, and the upper portion of the pressure regulating metal disk is provided with a transmission metal shaft. A plurality of limiting material feeding holes are provided on the surface, a plurality of deformable elastic sealing plates corresponding to the limiting material feeding holes are provided on the lower surface of the pressure regulating metal disk, the deformable elastic sealing plates are fixedly connected to the pressure regulating metal disk, a plurality of first hollow material conveying pipes are provided at the bottom of the hollow material storage tube, the first hollow material conveying pipes are arranged through the bottom wall of the hollow material storage tube, the first hollow material conveying pipes are fixedly connected to the hollow material storage tube, a plurality of second hollow material conveying pipes for spraying materials are provided on the side wall of the hollow material storage tube, the second hollow material conveying pipes are arranged through the side wall of the hollow material storage tube, and the hollow material storage tubes are fixedly connected to the second hollow material conveying pipe; The deformable filtering mechanism includes a first adjustable transmission metal plate, a filter metal box is provided above the first adjustable transmission metal plate, the filter metal box is fixedly connected to the hollow material storage tube, a second adjustable speed power output component for driving the filter metal box to rotate is provided in the middle of the upper surface of the first adjustable transmission metal plate, a plurality of first deformable position adjustment components for adjusting the height of the first adjustable transmission metal plate are provided on both sides of the second adjustable speed power output component, a filter metal mesh cover is provided on the top of the filter metal box, the filter metal mesh cover is fixedly connected to the filter metal box, the material is filtered and impurities are removed by the filter metal mesh cover in the filter metal box, and the impurity-removed material is transported by the first hollow material conveying tube into the interior of the hollow material storage tube; A movable transmission disc is provided inside the filter metal box, and a movable elastic blocking block is provided on the top of the movable transmission disc for blocking the top open end of the filter metal mesh cover; an anti-tilt metal rod is provided in the middle of the lower surface of the movable transmission disc, and the anti-tilt metal rod is fixedly connected to the movable transmission disc; an anti-tilt limiting tube slidably connected to the anti-tilt metal rod is fixedly connected to the inside of the filter metal box; a third deformable position adjusting member is provided at the bottom of the filter metal box for cooperating with the anti-tilt metal rod to drive the movable elastic blocking block to move in a direction close to the transmission metal shaft; One end of the third deformable position adjusting member is fixedly connected to the anti-tilt metal rod, and the other end of the third deformable position adjusting member is fixedly connected to the filter metal box. A movable knocking ring for knocking the filter metal mesh cover is provided on the top of the filter metal box, and several second deformable position adjusting members for vibrating the movable knocking ring are provided on the top of the filter metal box.
2. The dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating according to claim 1, characterized in that: The interior of the hollow material storage tube is provided with several adjustable temperature heating elements for heating the material, and the adjustable temperature heating elements are fixedly connected to the hollow material storage tube. The transmission metal shaft is provided with several rotatable bulk material elements for stirring and dispersing the material, and the rotatable bulk material elements are fixedly connected to the transmission metal shaft.
3. The dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating according to claim 2, characterized in that: One end of the second deformable position adjusting member is fixedly connected to the filter metal box, and the other end of the second deformable position adjusting member is fixedly connected to the movable knocking ring. A plurality of limiting slag discharge holes are provided on the lower surface of the filter metal box, and a plurality of detachable sealing baffles for sealing the limiting slag discharge holes are provided at both ends of the lower surface of the filter metal box.
4. The dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating according to claim 3, characterized in that: The upper surface of the first adjustable transmission metal plate is provided with an anti-tilt support tube for supporting the filter metal box. The anti-tilt support tube is fixedly connected to the first adjustable transmission metal plate. A plurality of protective metal balls corresponding to the filter metal box are provided on the top of the anti-tilt support tube. One end of the first deformable position adjustment member is fixedly connected to the first adjustable transmission metal plate, and the other end of the first deformable position adjustment member is fixedly connected to the bulk metal tank.
5. The dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating according to claim 1, characterized in that: Several metal hanging plates are provided on the side of the bulk metal tank, the metal hanging plates are provided on the top of the side of the bulk metal tank, the metal hanging plates are fixedly connected to the bulk metal tank, and several detachable warning parts for displaying information are provided on the side of the metal hanging plates, the detachable warning parts are provided at the bottom of the side of the metal hanging plates.
6. The dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating according to claim 5, characterized in that: A detachable anti-collision insulation cover is provided at the bottom of the bulk metal tank, an anti-dumping support plate is provided below the bulk metal tank, the anti-dumping support plate is fixedly connected to the bulk metal tank, a plurality of anti-dumping counterweight plates are provided inside the anti-dumping support plate, the anti-dumping counterweight plates are provided at the bottom of the anti-dumping support plate, and the anti-dumping counterweight plates are fixedly connected to the anti-dumping support plate.
7. A method for preparing an anti-wear and anti-corrosion coating, characterized in that: The method for preparing the anti-wear and anti-corrosion coating uses the dispersion and filtration equipment for preparing the anti-wear and anti-corrosion coating according to any one of claims 1-6.
Citation Information
Patent Citations
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