CN117531417A - Processing device for water-based industrial paint - Google Patents

Processing device for water-based industrial paint Download PDF

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Publication number
CN117531417A
CN117531417A CN202410033111.6A CN202410033111A CN117531417A CN 117531417 A CN117531417 A CN 117531417A CN 202410033111 A CN202410033111 A CN 202410033111A CN 117531417 A CN117531417 A CN 117531417A
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CN
China
Prior art keywords
stirring
driving
driving shaft
bevel gear
water
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Granted
Application number
CN202410033111.6A
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Chinese (zh)
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CN117531417B (en
Inventor
杨万霖
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Chengdu Sanyang New Material Technology Co ltd
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Chengdu Sanyang New Material Technology Co ltd
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Priority to CN202410033111.6A priority Critical patent/CN117531417B/en
Publication of CN117531417A publication Critical patent/CN117531417A/en
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Publication of CN117531417B publication Critical patent/CN117531417B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F33/00Other mixers; Mixing plants; Combinations of mixers
    • B01F33/80Mixing plants; Combinations of mixers
    • B01F33/83Mixing plants specially adapted for mixing in combination with disintegrating operations
    • B01F33/8305Devices with one shaft, provided with mixing and milling tools, e.g. using balls or rollers as working tools; Devices with two or more tools rotating about the same axis
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F33/00Other mixers; Mixing plants; Combinations of mixers
    • B01F33/80Mixing plants; Combinations of mixers
    • B01F33/836Mixing plants; Combinations of mixers combining mixing with other treatments
    • B01F33/8361Mixing plants; Combinations of mixers combining mixing with other treatments with disintegrating
    • B01F33/83613Mixing plants; Combinations of mixers combining mixing with other treatments with disintegrating by grinding or milling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F35/00Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
    • B01F35/181Preventing generation of dust or dirt; Sieves; Filters
    • B01F35/187Preventing generation of dust or dirt; Sieves; Filters using filters in mixers, e.g. during venting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2101/00Mixing characterised by the nature of the mixed materials or by the application field
    • B01F2101/30Mixing paints or paint ingredients, e.g. pigments, dyes, colours, lacquers or enamel

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

The invention relates to the technical field of water-based industrial paint. The invention discloses a processing device for water-based industrial paint, which aims to solve the problems that in the process of producing the water-based industrial paint, raw materials of the water-based industrial paint are generally required to be poured into a stirrer, and then the raw materials are uniformly stirred by controlling the stirrer, so that the water-based industrial paint is mixed, and the raw materials of the water-based industrial paint are agglomerated and cannot be completely ground and crushed in the stirring process, so that the raw materials of the water-based industrial paint are not uniform in stirring, the raw materials cannot be fully mixed, the mixing effect is low, the paint surface is not smooth enough due to broken slag, and the yield is reduced. The invention can further grind and crush the water-based raw material agglomerations during stirring by working the synchronous grinding device, so that the water-based raw material agglomerations are fused with each other in an accelerating way, and the crushed slag can be subjected to secondary treatment, so that the mixing effect and the yield are greatly improved.

Description

Processing device for water-based industrial paint
Technical Field
The invention relates to the technical field of water-based industrial paint, in particular to a processing device for water-based industrial paint.
Background
The water-based industrial paint mainly uses water as a diluent, does not need a curing agent and a few solvents of thinner, is a novel environment-friendly antirust and anticorrosive paint different from the oil-based industrial paint, has extremely wide application range, can see the body and shadow everywhere, such as bridges, steel structures, ships, electromechanics, steel products and the like, is energy-saving and environment-friendly, can not cause harm and pollution to human bodies and the environment, is welcomed by users, is a development direction of the future coating industry, and is a substitute product of the oil-based paint.
In the prior art, in the process of producing the aqueous industrial paint, the raw materials of the proportioned aqueous industrial paint are generally required to be poured into a stirrer, and then the raw materials are uniformly stirred by controlling the stirrer, so that the production of the aqueous industrial paint is finished, and the raw materials of the aqueous industrial paint contain some aqueous raw material agglomerations with smaller volumes.
Disclosure of Invention
The invention aims to provide a processing device for water-based industrial paint, which is used for solving the problems in the background technology. In order to achieve the above purpose, the present invention provides the following technical solutions: the utility model provides a processingequipment for aqueous industrial paint, includes the agitator, the agitator sets up on the horizontal plane, the agitator is the cavity setting, be equipped with the division board in the agitator, division board is divided into stirring space and filtration space about with the agitator inner space respectively, stirring space is located the top of division board, filtration space is located the below of division board, the top of agitator is equipped with annotates the one end that expects mouthful and annotates the material mouth and is linked together with stirring space, the side of agitator is equipped with the one end and the filtration space of bleeder valve and is linked together, be equipped with drive stirring subassembly in the agitator and be located stirring space, be equipped with on the drive stirring subassembly and stir the kibbling synchronous grinder of aqueous raw materials in stirring mixing to aqueous raw materials, synchronous grinder is located the top of division board and is located stirring space, the through-hole has been seted up to the center department of division board, be equipped with the solenoid valve in the through-hole, the below of through-hole is equipped with filters anti-blocking subassembly, filter subassembly is located the filtration space, synchronous grinder includes stirring subassembly and mixing subassembly, setting up stirring subassembly and stirring subassembly, stirring subassembly and stirring subassembly are located the setting up in stirring subassembly.
Preferably, the drive stirring subassembly includes rotating turret, tooth piece, drive shaft, install bin, driving motor, fixed rotating member and stirring leaf, the rotating turret sets up at the top of division board and is located stirring space, the side of rotating turret and stirring barrel inner wall fixed connection, the tooth piece is equipped with a plurality of, a plurality of the tooth piece evenly sets up and is located the rotating turret and keep away from one side of division board around the center department of rotating turret, the drive shaft sets up the center department at the stirring space and is located stirring space, the top of drive shaft rotates with the top in the stirring barrel to be connected, the bottom of drive shaft rotates with the rotating turret to be connected, the install bin sets up the top at the top of stirring barrel and the top fixed connection of install bin, the install bin is the cavity setting, the vertical setting of driving motor is at the top fixed connection of install bin and driving motor, the output end down just is connected with the top of drive shaft, the drive shaft is close to the both sides symmetry at the stirring barrel top has been seted up and has been run through the groove, the fixed rotating member is equipped with two and just is located the stirring barrel top fixed connection at two side of two sets up at the same level of a side of a fixed part and a fixed slot, two sets up in the two side of a fixed rotating face down the stirring leaf and is equipped with one and is rotated the fixed groove and is set up respectively.
Preferably, the grinding stirring assembly comprises a limiting transmission frame, a first rotating rod, a second rotating rod, grinding sheets, a protruding arc-shaped part, rolling balls and a drainage plate, wherein the driving shaft is hollow, the limiting transmission frame is provided with two, two limiting transmission frames are symmetrically arranged on two sides of the driving shaft and close to the top of the partition plate, two side ends of the limiting transmission frames are fixedly connected with the side ends of the adjacent driving shaft, one end of the first rotating rod, which is horizontally arranged in the driving shaft and is far away from the center of the driving shaft, passes through the side wall of the driving shaft and the adjacent limiting transmission frame, the first rotating rod is in rotating fit with the side wall of the driving shaft and the adjacent limiting transmission frame, the second rotating rod is horizontally sleeved on one end of the first rotating rod, which is close to the center of the driving shaft, and is in rotating fit with the adjacent limiting transmission frame, one end of the first rotating rod and the second rotating rod, which is far away from each other, is respectively provided with one grinding sheet and is fixedly connected with the side ends of the first rotating rod, one end of the first rotating rod and the second rotating rod, one end of the second rotating rod is far away from the side wall of the partition plate, one end of the first rotating rod is respectively provided with one grinding sheet, one grinding sheet is fixedly connected with the side ends of the first rotating rod, one grinding sheet is respectively, and the two grinding sheets are respectively arranged on the two ends of the side walls of the first rotating sheets are respectively, and the first grinding sheets are respectively, and the two grinding sheets are respectively arranged on the two opposite sides and the adjacent two grinding sheets are respectively, and are respectively, each grinding sheets are arranged on the two opposite side and each side and the adjacent side opposite side, each side and each side is arranged on the adjacent side and the adjacent side. The two drainage plates are symmetrically and oppositely arranged.
Preferably, the stirring regulation component is provided with two, two stirring regulation components are symmetrically and oppositely arranged in the driving shaft and are respectively positioned at the side ends of one stirring page, each stirring regulation component comprises a supporting rod, a first crank, a second crank and a first bevel gear, the supporting rods are arranged on the side ends of the fixed rotating parts, which are close to the center of the driving shaft, and are fixedly connected with the side ends of the fixed rotating parts, the side ends of the supporting rods are in sliding fit with the inner wall of the driving shaft up and down, the first crank is arranged on one end of the supporting rods, which is far away from the fixed rotating parts, and one end of the first crank is in rotary connection with the first crank, the second crank is arranged on the other end of the first crank and is in rotary connection with the inner wall of the driving shaft, the first bevel gear is arranged on the outer side of the driving shaft and is fixedly connected with the center of the second crank, and the bottom of the first bevel gear is meshed with a plurality of tooth blocks at the top of the rotating frame.
Preferably, the linkage mixing assembly comprises a central shaft, a driving gear, two sliding frames, sliding pieces, a driving rod, arc racks, a second bevel gear, a third bevel gear and a fourth bevel gear, wherein the central shaft is arranged in the driving shaft, the top of the central shaft is rotationally connected with the top in the driving shaft, the driving gear is arranged on the central shaft, the center of the driving gear is fixedly connected with the central shaft, the two sliding frames are respectively arranged at the bottom of one stirring page, the top of each sliding frame is fixedly connected with the bottom of the stirring page, the two sliding frames are symmetrically arranged, the two sliding pieces are respectively arranged, one end of each sliding piece is respectively arranged on one sliding frame, one end of each sliding piece is in sliding fit with the sliding frame, the driving rod is provided with two sliding frames, each driving rod is arranged at the other end of the sliding part, one end of each driving rod is in running fit with the other end of the sliding part, the other end of each driving rod passes through the outer wall of an adjacent driving shaft and is in sliding fit with the outer wall of the adjacent driving shaft, two arc racks are arranged, the two arc racks are symmetrically arranged at two sides of the driving gear, the side ends of the two arc racks are in sliding fit with the inner wall of the driving shaft, the side ends of each arc rack are respectively in running connection with one end of the driving shaft adjacent to the side ends of the driving rod, the tooth socket ends of the two arc racks are respectively meshed with two sides of the driving gear, a second bevel gear is arranged on the first rotating rod and is fixedly connected with the first bevel gear, a third bevel gear is arranged on the second rotating rod and is fixedly connected with the second bevel gear, and a fourth bevel gear is arranged at one end of the center shaft far away from the inner top of the driving shaft and is fixedly connected with the driving shaft, the fourth bevel gear is arranged at an included angle of 90 degrees with the second bevel gear and the third bevel gear, and two sides of the fourth bevel gear are respectively meshed with the second bevel gear and the third bevel gear.
Preferably, the anti-blocking component comprises a filter pipeline, a first filter hole, a permeable plate, a second filter hole and annular blades, wherein the filter pipeline is vertically arranged at the through hole and is fixedly connected with the top of the filter pipeline and the bottom of the partition plate, the first filter hole with the same size is uniformly formed in the side wall of the filter pipeline, the permeable plate is arranged at one end, far away from the partition plate, of the filter pipeline, the side end of the permeable plate is fixedly connected with the filter pipeline, the second filter holes with the same size are uniformly formed in the permeable plate, each second filter hole is provided with annular blades at one end, close to the partition plate, of the second filter hole, the side ends of the annular blades are fixedly connected with the inner wall of the second filter hole, and the sizes of the annular blades are the same as those of the second filter hole.
Preferably, a plurality of convex blocks with the same size are arranged on the surface of each rolling ball.
Preferably, a transparent visual window is arranged at the side end of the stirring barrel.
Compared with the prior art, the invention has the beneficial effects that:
when the device is used, firstly, workers place raw materials of water paint into a stirring space in a stirring barrel through a material injection port arranged at the top of the stirring barrel, then the stirring assembly is controlled to work, so that the raw materials of the water paint in the stirring space are uniformly stirred and conveyed to a partition plate under the action of gravity, the water industrial paint is mixed, as the water raw materials contain a plurality of water raw material agglomerations with smaller volumes, when the stirring assembly is driven to work, the water raw material agglomerations gradually sink and are positioned on the partition plate through the force generated when the stirring assembly is driven to work, and meanwhile, as the synchronous grinding device is arranged on the stirring assembly, the synchronous grinding device above the partition plate can synchronously work, so that the water raw material agglomerations with smaller volumes are crushed and crushed on the partition plate through the matched work between the arranged grinding stirring assembly and the partition plate, so that the water industrial paint raw materials are more uniformly stirred during stirring, the water industrial paint raw materials are fully mixed, the mixing effect is improved, when the synchronous grinding assembly is driven to work, the stirring assembly is adjusted, the whole stirring assembly is driven to tilt, the stirring assembly is further adjusted, the stirring direction is adjusted, and the whole stirring assembly is further is adjusted, and the stirring assembly is further is driven to be in the stirring, and the stirring assembly is further, the stirring assembly is adjusted, and the whole stirring direction is adjusted, and the stirring assembly is further is adjusted, the method further fuses the water-based raw material coagulation blocks which are ground and crushed and conveyed upwards and downwards, thereby improving the fusion rate, after the water-based paint raw materials are mixed, the mixed water-based raw materials enter the filtering anti-blocking assembly through the through hole by opening the electromagnetic valve, the water-based raw material coagulation blocks and the slag in the mixed water-based raw materials are filtered by the filtering anti-blocking assembly, the produced water-based industrial paint enters the filtering space, finally, the produced water-based industrial paint is taken out by the discharging valve, thereby avoiding the phenomenon that the paint surface of the produced water-based industrial paint is not smooth enough and simultaneously avoiding influencing the paint surface quality, furthermore, the yield is improved, the water-based raw material agglomerating slag precipitated at the bottom of the filtering anti-blocking component after filtering can enter through the impact force of each water-based raw material, so that the slag is further crushed at the bottom of the filtering anti-blocking component, the filtering anti-blocking component is prevented from being blocked after long-time use, the service time of the device is prolonged, the practicability of the device is further improved, and the effects that the mixing effect is low and the yield is insufficient are achieved when the water-based raw material agglomerating slag existing in the raw material is fully stirred and completely ground and crushed are achieved.
According to the invention, after a worker places the raw materials of the water paint into the stirring space in the stirring barrel through the material injection port arranged at the top of the stirring barrel, the driving motor is controlled to work, so that the driving shaft is driven to rotate at the center in the stirring barrel, and the two stirring pages are driven to rotate in the stirring space in the stirring barrel, so that the raw materials of the water paint in the stirring space are uniformly stirred and mixed, and are conveyed to the partition plate under the action of gravity, so that the water industrial paint is mixed.
According to the invention, when the stirring assembly is controlled to work so as to drive the driving shaft to rotate, and then two stirring blades are driven to rotate in the stirring space, the grinding blades are synchronously driven to rotate, the grinding blades are rotated through the grinding balls arranged in the convex arc part, and simultaneously, the grinding blades are synchronously rolled on the partition plate, so that the water-based raw material condensation blocks sunk on the partition plate are ground and crushed, the stirring angle of the water-based industrial paint raw material is more uniform during stirring, the water-based industrial paint raw material is fully mixed, the mixing effect is improved, when the driving shaft rotates, the two first bevel gears positioned outside the driving shaft rotate under the action of the plurality of tooth blocks on one side of the rotating frame far away from the partition plate, the two supporting rods are driven to slide up and down in the driving shaft through the first crank and the second crank which are arranged, the fixed rotating pieces positioned in the two through grooves on the two sides of the driving shaft are driven to swing up and down, the flexible sealing gaskets are arranged, the water-based raw material is prevented from entering the inside the driving shaft, the two stirring blades are driven to swing up and down, the stirring blades are regulated to stir the angle in stirring process, the stirring blades are fully mixed, the stirring blades are driven to slide up and down, the stirring blades are driven to slide in the sliding direction from the other side of the rotating frame to the rotating frame, and the stirring blades are further rotated in the other end is further rotated, and the stirring blades slide up and the stirring blades are driven to slide up and slide down in the rotating direction, and the stirring blades are driven to slide up and the other end is driven to slide up and the stirring blade in the rotating direction, and the stirring blade is further in the stirring direction is rotated, thereby make the actuating lever drive arc rack slide along the inner wall of actuating shaft, carry out the gliding in-process at the slider, thereby give the longer time of rolling of ball that rolls, through two arc racks that set up, when two arc racks remove towards the direction of actuating shaft relatively, thereby drive gear and rotate, thereby drive the center pin and rotate, thereby drive fourth bevel gear and rotate, and then drive third bevel gear and fourth bevel gear respectively and carry out the rotation of opposite direction, thereby drive first dwang and second dwang and carry out the rotation of opposite direction respectively on a spacing transmission frame, thereby drive two and grind the page or leaf and carry out the upset of opposite direction, through two drainage plates that set up, when two grind page or leaf upset back take place to rotate, produce the power that upwards promotes, thereby carry the aqueous raw materials condensation piece that the grinding was smashed upwards and fuse with the aqueous raw materials of downward transport between further, further improvement fusion rate.
According to the invention, after the water paint raw materials are mixed, the mixed water paint raw materials enter the filter pipeline through the through hole by opening the electromagnetic valve, the water industrial paint without the water raw material coagulated and crushed slag enters the filter space through the first filter hole, the water industrial paint with the water raw material coagulated and crushed slag enters the bottom of the filter pipeline and stays on the permeable plate at the bottom of the filter pipeline, the crushed slag is further crushed on the annular blade in the second filter hole by the impact force of each water raw material entering, so that the filter anti-blocking assembly is prevented from being blocked after long-time use, the service time of the device is prolonged, the practicability of the device is further improved, and finally the device is taken out through the discharge valve, so that the paint surface of the produced water industrial paint is prevented from being unsmooth, the paint surface quality is prevented from being influenced, and the yield is further improved.
According to the invention, the convex blocks with the same size are arranged on the surface of the rolling ball, so that the friction force of the rolling ball when rolling the water-based raw material agglomerations is increased, the water-based raw material agglomerations are crushed more thoroughly, and the rolling effect is further increased.
According to the invention, through the visual window, a worker can conveniently observe the stirring process when stirring the water-based raw materials, and simultaneously, when the water-based raw materials stored in the filtering space are excessive, the discharging valve is timely opened to take out the internal water-based raw materials, so that the convenience in working is further improved.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic diagram of a second perspective structure of the present invention;
FIG. 3 is a cross-sectional view of a mixing drum in accordance with the present invention;
FIG. 4 is a schematic view of a partial perspective structure of the present invention;
FIG. 5 is a cross-sectional view of a drive shaft according to the present invention;
FIG. 6 is a schematic view of a part of the driving stirring assembly and the synchronous grinding device according to the present invention;
FIG. 7 is an enlarged schematic view of area A of FIG. 6;
FIG. 8 is a schematic diagram showing a part of the driving stirring assembly and the synchronous grinding device according to the present invention;
FIG. 9 is a schematic view of a portion of a driving stirring assembly and a synchronous grinding device according to the present invention;
FIG. 10 is a schematic view of a partial perspective view of a synchronous grinding device according to the present invention;
FIG. 11 is an enlarged schematic view of area B of FIG. 10;
FIG. 12 is a schematic perspective view of a separator plate and filter anti-blocking assembly according to the present invention;
Fig. 13 is a schematic view of a partial perspective structure of a filtering anti-blocking assembly according to the present invention.
In the figure: 1. a stirring barrel; 2. a partition plate; 3. a stirring cavity; 4. a filter cavity; 5. a material injection port; 6. a discharge valve; 7. driving the stirring assembly; 71. a rotating frame; 72. tooth blocks; 73. a drive shaft; 74. a mounting box; 75. a driving motor; 76. fixing the rotating member; 77. stirring pages; 8. a synchronous grinding device; 81. a grinding and stirring assembly; 811. a limit transmission frame; 812. a first rotating lever; 813. a second rotating lever; 814. grinding the sheet; 815. a convex arc portion; 816. rolling balls; 817. a drainage plate; 82. a stirring adjustment assembly; 821. a support rod; 822. a first crank; 823. a second crank; 824. a first bevel gear; 83. a linkage mixing assembly; 831. a central shaft; 832. a drive gear; 833. a carriage; 834. a slider; 835. a driving rod; 836. an arc-shaped rack; 837. a second bevel gear; 838. a third bevel gear; 839. a fourth bevel gear; 9. a through hole; 10. filtering the anti-blocking component; 101. a filter tube; 102. a first filter aperture; 103. a permeate plate; 104. a second filter aperture; 105. an annular blade; 11. a protruding block; 12. and a visual window.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which are obtained by a worker of ordinary skill in the art without creative efforts, are within the protection scope of the present invention based on the embodiments of the present invention.
Referring to fig. 1 to 13, the present invention provides a technical solution: including agitator 1, agitator 1 sets up on the horizontal plane, agitator 1 is the cavity setting, be equipped with division board 2 in the agitator 1, division board 2 divide into stirring cavity 3 and filter cavity 4 respectively about with agitator 1 inner space, stirring cavity 3 is located the top of division board 2, filter cavity 4 is located the below of division board 2, the top of agitator 1 is equipped with annotates material mouth 5 and annotates the one end of material mouth 5 and is linked together with stirring cavity 3, the side of agitator 1 is equipped with discharge valve 6 and the one end and the filter cavity 4 of discharge valve 6 are linked together, be equipped with drive stirring subassembly 7 and be located stirring cavity 3 in the agitator 1, be equipped with on the drive stirring subassembly 7 and stir the synchronous grinder 8 that smashes to the water-based raw materials condensation piece when mixing the water-based paint raw materials, synchronous grinder 8 is located the top of division board 2 and is located stirring cavity 3, through-hole 9 has been seted up to the center department of division board 2, be equipped with in through-hole 9, be equipped with the solenoid valve 9 and be equipped with down and filter cavity 10 and filter cavity 3 in the filter cavity 8, the drive stirring subassembly is equipped with in the drive stirring subassembly 81 and is located the stirring subassembly and is set up at the filter cavity 8, and is located the drive subassembly is 81, and is set up in the stirring subassembly is 81, and is in the drive stirring subassembly is 81.
In this embodiment, as shown in fig. 1, 2 and 3, the stirring assembly 7 includes a rotating frame 71, a tooth block 72, a driving shaft 73, a mounting box 74, a driving motor 75, a fixed rotating member 76 and stirring blades 77, the rotating frame 71 is disposed at the top of the partition plate 2 and is located in the stirring cavity 3, the side end of the rotating frame 71 is fixedly connected with the inner wall of the stirring barrel 1, the tooth block 72 is provided with a plurality of teeth blocks 72, which evenly surrounds the center of the rotating frame 71 and is located on one side of the rotating frame 71 far away from the partition plate 2, the driving shaft 73 is disposed at the center of the stirring barrel 1 and is located in the stirring cavity 3, the top of the driving shaft 73 is rotationally connected with the top of the stirring barrel 1, the bottom of the driving shaft 73 is rotationally connected with the rotating frame 71, the mounting box 74 is disposed at the top of the stirring barrel 1 and is fixedly connected with the top of the stirring barrel 1, the mounting box 74 is in a hollow manner, the driving motor 75 is vertically disposed in the mounting box 74 and is vertically disposed at the bottom of the mounting box 74 and is fixedly connected with the top of the stirring barrel 1, the two sealing blades 76 are respectively disposed at two sides of the sealing grooves 76, which are respectively and are fixedly connected with each sealing pieces 76 are disposed at two sides of the sealing grooves 76 and are respectively and rotatably connected with the two side of the sealing pieces which are fixedly connected with each sealing piece 76 and are disposed at the two sides of the sealing pieces and each sealing piece 76 is rotatably and rotatably connected with the sealing piece. The two stirring sheets 77 are symmetrically and oppositely arranged;
After the raw materials of the water paint are placed into the stirring cavity 3 in the stirring barrel 1 through the material injection port 5 arranged at the top of the stirring barrel 1 by a worker, the driving motor 75 is controlled to work so as to drive the driving shaft 73 to rotate at the center in the stirring barrel 1, and accordingly the two stirring pages 77 are driven to rotate in the stirring cavity 3 in the stirring barrel 1, the raw materials of the water paint positioned in the stirring cavity 3 are uniformly stirred and mixed, and the raw materials are conveyed to the partition plate 2 under the action of gravity, so that the water paint is mixed.
In this embodiment, as shown in fig. 4, 5, 6, 7, 8, 9, 10 and 11, the grinding and stirring assembly 81 includes a limit transmission frame 811, a first rotating rod 812, a second rotating rod 813, a grinding blade 814, a protruding arc portion 815, a grinding ball 816 and a drainage plate 817, the driving shaft 73 is in a hollow arrangement, two limit transmission frames 811 are symmetrically disposed on two sides of the driving shaft 73 and near the top of the partition plate 2, two side ends of the limit transmission frames 811 are fixedly connected with side ends of the adjacent driving shaft 73, one end of the first rotating rod 812, which is far from the center of the driving shaft 73, is horizontally disposed in the driving shaft 73 and penetrates through the side wall of the driving shaft 73 and the adjacent limit transmission frame 811, the first rotating rod 812 is in a rotating fit with the side wall of the driving shaft 73 and the adjacent limit transmission frame 811, the second rotating rod 813 is horizontally sleeved on one end of the first rotating rod 812 close to the center of the driving shaft 73 and is in rotating fit with the first rotating rod, one end of the second rotating rod 813 far away from the first rotating rod 812 penetrates through the side wall of the adjacent driving shaft 73 and the adjacent limit transmission frame 811 and is in rotating fit with the adjacent limit transmission frame 811, two grinding sheets 814 are arranged on one end of the first rotating rod 812 and one end of the second rotating rod 813 far away from each other, one grinding sheet 814 is respectively arranged on one end of the first rotating rod 812 and one end of the second rotating rod 813 far away from each other and is fixedly connected with the side end of the first rotating rod, a protruding arc-shaped part 815 is arranged at the bottom of the grinding sheet 814, a mounting groove is formed in the protruding arc-shaped part 815, a plurality of grinding balls 816 are arranged in the mounting groove at equal distances and are in rotating connection with the inner wall of the mounting groove, a plurality of grinding balls 816 are mutually tangent, and the bottoms of the plurality of grinding balls 816 are all in contact with the top of the partition plate 2, the two sides of the grinding sheet 814 are arc-shaped, the two flow guiding plates 817 are provided, each flow guiding plate 817 is respectively arranged at the bottom of the side end of the grinding sheet 814 far away from the driving shaft 73, the top of the flow guiding plate 817 is fixedly connected with the bottom of the grinding sheet 814, and the two flow guiding plates 817 are symmetrically and oppositely arranged;
The stirring adjusting assemblies 82 are two, the two stirring adjusting assemblies 82 are symmetrically and oppositely arranged in the driving shaft 73 and are respectively positioned at the side ends of one stirring blade 77, each stirring adjusting assembly 82 comprises a supporting rod 821, a first crank 822, a second crank 823 and a first bevel gear 824, the supporting rod 821 is arranged on the side end of the fixed rotating member 76 close to the center of the driving shaft 73 and is fixedly connected with the side end of the fixed rotating member 76, the side end of the supporting rod 821 is in sliding fit with the inner wall of the driving shaft 73 up and down, the first crank 822 is arranged on the end of the supporting rod 821 far from the fixed rotating member 76, one end of the first crank 822 is rotatably connected with the end of the first crank 823, the other end of the second crank 823 is arranged on the other end of the first crank 822 and is rotatably connected with the inner wall of the driving shaft 73, the center of the first bevel gear 824 is fixedly connected with one end of the second bevel gear 823 far from the first crank 822, and the bottom ends of the first bevel gear 824 are meshed with the plurality of teeth 72 of the top frames 71;
the linkage mixing assembly 83 comprises a central shaft 831, a driving gear 832, a sliding frame 833, a sliding piece 834, driving rods 835, arc racks 836, a second bevel gear 837, a third bevel gear 838 and a fourth bevel gear 839, wherein the central shaft 831 is arranged in the driving shaft 73, the top of the central shaft 831 is rotationally connected with the top of the driving shaft 73, the driving gears 832 are arranged on the central shaft 831 and the center of the driving gears 832 is fixedly connected with the central shaft 831, the sliding frames 833 are provided with two, each sliding frame 833 is respectively arranged at the bottom of one stirring page 77, the top of the sliding frame 833 is fixedly connected with the bottom of the stirring page 77, the two sliding frames 833 are symmetrically arranged, the sliding pieces 834 are provided with two sliding pieces, one end of each sliding frame 833 is in sliding fit with the sliding frame 833, each driving rod 835 is provided with two driving rods 835, one end of each driving rod 835 is respectively arranged at the other end of the sliding piece 834 and is fixedly connected with one end of the adjacent bevel gears 836, the two adjacent to the two arc racks 836 are respectively arranged at two sides of the two arc racks 836, the two adjacent to the two arc racks 836 are respectively in sliding connection with the two arc racks 836, the two arc racks 836 are respectively arranged at two sides of the two arc racks 836 are in the two sides of the arc racks 836, the arc racks are respectively meshed with each arc rack 836, the two adjacent to each other are in the arc racks are in a sliding connection with the two, the fourth bevel gear 839 is disposed at one end of the central shaft 831 away from the inner top of the driving shaft 73 and is fixedly connected with the central shaft 831, an included angle of 90 degrees is formed between the fourth bevel gear 839 and the second bevel gear 837 and between the fourth bevel gear 839 and the third bevel gear 838, and two sides of the fourth bevel gear 839 are respectively meshed with the second bevel gear 837 and the third bevel gear 838;
When the stirring assembly 7 is driven to work by control, the driving shaft 73 is driven to rotate, and then the two stirring blades 77 are driven to rotate in the stirring cavity 3, so that the grinding blades 814 are synchronously driven to rotate, the grinding blades 814 rotate, and simultaneously, the grinding blades 814 synchronously roll on the partition plate 2 through the rolling balls 816 arranged in the convex arc-shaped parts 815, so that the water-based raw material agglomerations sinking on the partition plate 2 are crushed, the water-based industrial paint raw materials are stirred more uniformly during stirring, the water-based industrial paint raw materials are fully mixed, the mixing effect is improved, when the driving shaft 73 rotates, the two first bevel gears 824 positioned outside the driving shaft 73 rotate under the action of the plurality of tooth blocks 72 positioned on one side of the rotating frame 71 and far away from the partition plate 2, and the first crank 822 and the second crank 823 are arranged, thereby driving the two support rods 821 to slide up and down in the driving shaft 73, thereby driving the fixed rotating parts 76 positioned in the through grooves at two sides of the driving shaft 73 to swing up and down, preventing the flexible paint raw materials from entering the driving shaft 73 through the arranged flexible sealing gasket, further driving the two stirring pages 77 to swing up and down, thereby adjusting the inclination angle of the stirring pages 77 in the stirring process, thereby changing the stirring direction, further stirring the water-based raw materials from multiple directions, further improving the stirring effect, swinging up and down on the two stirring pages 77, driving the sliding parts 834 at the bottom of the stirring pages 77 to slide on the sliding frame 833, driving the other ends of the sliding parts 834 to rotate anticlockwise on the driving rods 835, after the stirring pages 77 swing to a certain position, the sliding parts 834 are abutted against the side ends of the sliding frame 833, the other end of the sliding piece 834 stops rotating and pushes the driving rod 835 to the direction of the driving shaft 73, so that the driving rod 835 drives the arc-shaped racks 836 to slide along the inner wall of the driving shaft 73, in the sliding process of the sliding piece 834, longer rolling time is given to the rolling balls 816, through the two arc-shaped racks 836, when the two arc-shaped racks 836 move relatively to the direction of the driving shaft 73, the driving gear 832 is driven to rotate, the central shaft 831 is driven to rotate, the fourth bevel gear 839 is driven to rotate, the third bevel gear 838 and the fourth bevel gear 839 are driven to rotate in opposite directions respectively, the first rotating rod 812 and the second rotating rod 813 are driven to rotate in opposite directions on the limiting transmission frame 811 respectively, the two grinding sheets 814 are driven to overturn in opposite directions, and when the two grinding sheets 814 rotate after overturning, upward pushing force is generated, and therefore the water-based raw materials after grinding and crushing are conveyed upwards and the water-based raw materials conveyed downwards are fused, and the fusion rate is further improved.
In this embodiment, as shown in fig. 12 and 13, the filter anti-blocking assembly 10 includes a filter pipe 101, a first filter hole 102, a permeable plate 103, a second filter hole 104 and an annular blade 105, where the filter pipe 101 is vertically disposed at the through hole 9 and the top of the filter pipe 101 is fixedly connected with the bottom of the partition plate 2, the side wall of the filter pipe 101 is uniformly provided with the first filter hole 102 with the same size, the permeable plate 103 is disposed at one end of the filter pipe 101 far away from the partition plate 2 and the side end of the permeable plate 103 is fixedly connected with the filter pipe 101, the permeable plate 103 is uniformly provided with the second filter hole 104 with the same size, one end of each second filter hole 104 close to the partition plate 2 is provided with the annular blade 105, the side end of the annular blade 105 is fixedly connected with the inner wall of the second filter hole 104, and the size of the annular blade 105 is the same as the size of the second filter hole 104;
after the water paint raw materials are mixed, the mixed water paint raw materials enter the filter pipeline 101 through the through hole 9 by opening the electromagnetic valve, the water industrial paint which does not contain water paint coagulated and crushed slag enters the filter cavity 4 through the first filter hole 102, the water industrial paint which contains water paint coagulated and crushed slag enters the bottom of the filter pipeline 101 and stays on the permeable plate 103 at the bottom of the filter pipeline 101, the crushed slag is further crushed on the annular blade 105 in the second filter hole 104 through the impact force of each water paint entering, the filter anti-blocking assembly 10 is prevented from being blocked after long-time use, the service time of the device is further prolonged, the practicability of the device is further improved, and finally the water industrial paint is taken out through the discharge valve 6, so that the paint surface of the water industrial paint which is produced is finished is prevented from being insufficiently smooth, the paint surface quality is prevented from being influenced, and the yield is improved.
In this embodiment, as shown in fig. 5, a plurality of convex blocks 11 with identical sizes are disposed on the surface of each rolling ball 816; through setting up the protruding piece 11 that the size was unanimous on rolling ball 816 surface to increase the frictional force that rolls ball 816 when rolling the aqueous raw materials caking, thereby make aqueous raw materials caking kibbling more thoroughly, thereby further increase rolls the effect.
In this embodiment, as shown in fig. 1 and 2, a transparent viewing window 12 is provided at a side end of the stirring barrel 1; through the visual window 12 that sets up to the staff of being convenient for is when carrying out aqueous raw materials stirring for observe the stirring process, simultaneously when the aqueous raw materials of depositing in the filter chamber body 4 is too much, in time opens bleeder valve 6, takes out inside aqueous raw materials, thereby further improvement during operation's convenience.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above-described embodiments, and that the above-described embodiments and descriptions are only preferred embodiments of the present invention, and are not intended to limit the invention, and that various changes and modifications may be made therein without departing from the spirit and scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. A processingequipment for waterborne industry lacquer, its characterized in that: including agitator (1), agitator (1) set up on the horizontal plane, agitator (1) is the cavity setting, be equipped with division board (2) in agitator (1), division board (2) divide into agitator cavity (3) and filter cavity (4) about with agitator (1) inner space respectively, agitator cavity (3) are located the top of division board (2), filter cavity (4) are located the below of division board (2), the top of agitator (1) is equipped with annotates material mouth (5) and annotates the one end of material mouth (5) and is linked together with agitator cavity (3), the side of agitator (1) is equipped with bleeder valve (6) and one end and filter cavity (4) of bleeder valve (6) are linked together, be equipped with drive stirring subassembly (7) and be located agitator cavity (3) in agitator cavity (1) in, be equipped with on drive stirring subassembly (7) and carry out the synchronous grinding device who smashes waterborne raw materials condensation and mix in the time to division board (8), be equipped with on the side of agitator (1) and grind the synchronous device (8) and be located the division board (9) of grinding device (9) that link up the center hole (9), the utility model discloses a filter, prevent stifled subassembly (10) is equipped with to the below of through-hole (9), filter and prevent stifled subassembly (10) are located filter cavity (4), synchronous grinder (8) are including grinding stirring subassembly (81), stirring regulation subassembly (82) and linkage mixing subassembly (83), grind stirring subassembly (81) and set up in the bottom of drive stirring subassembly (7) and be located division board (2), stirring regulation subassembly (82) set up in drive stirring subassembly (7), linkage mixing subassembly (83) set up in drive stirring subassembly (7).
2. A processing device for aqueous industrial paints according to claim 1, wherein: the driving stirring assembly (7) comprises a rotating frame (71), a tooth block (72), a driving shaft (73), a mounting box (74), a driving motor (75), a fixed rotating piece (76) and a stirring page (77), wherein the rotating frame (71) is arranged at the top of a partition plate (2) and is positioned in a stirring cavity (3), the side end of the rotating frame (71) is fixedly connected with the inner wall of the stirring barrel (1), the tooth block (72) is provided with a plurality of tooth blocks, the tooth blocks (72) are uniformly arranged around the center of the rotating frame (71) and are positioned on one side, far away from the partition plate (2), of the rotating frame (71), the driving shaft (73) is arranged at the center of the stirring barrel (1) and is positioned in the stirring cavity (3), the top of the driving shaft (73) is rotationally connected with the top of the stirring barrel (1), the mounting box (74) is rotationally connected with the bottom of the rotating frame (71) and is fixedly connected with the top of the stirring barrel (1), the driving shaft (73) is fixedly connected with the motor (75) in the top of the stirring barrel (1), the output end of driving motor (75) sets up downwards and the output is connected with the top of drive shaft (73), the drive shaft (73) is close to the both sides symmetry at agitator (1) top and has seted up and link up the groove, fixed rotating member (76) are equipped with two, each fixed rotating member (76) level sets up respectively in a link up inslot and fixed rotating member (76) both ends respectively with link up the inner wall rotation in groove be connected, each link up on the inslot wall all laid and shelter from the flexible sealing pad in gap when fixed rotating member (76) rotate from top to bottom in link up the inslot, stirring leaf (77) are equipped with two, each stirring leaf (77) side cover is established respectively on a fixed rotating member (76) and rather than fixed connection, two stirring leaf (77) are symmetrical opposite setting.
3. A processing device for aqueous industrial paints according to claim 1, wherein: the grinding stirring assembly (81) comprises a limit transmission frame (811), a first rotating rod (812), a second rotating rod (813), grinding sheets (814), a protruding arc-shaped part (815), grinding balls (816) and a drainage plate (817), wherein the driving shaft (73) is in hollow arrangement, two limit transmission frames (811) are symmetrically arranged on two sides of the driving shaft (73) and close to the top of a separation plate (2), the side ends of the two limit transmission frames (811) are fixedly connected with the side ends of the adjacent driving shafts (73), one end, far away from the center of the driving shaft (73), of the first rotating rod (812) is horizontally arranged in the driving shaft (73) and penetrates through the side wall of the driving shaft (73) and the adjacent limit transmission frame (811), the first rotating rod (812) is in running fit with the side wall of the driving shaft (73) and the adjacent limit transmission frame (811), the second rotating rod (813) is horizontally sleeved on one end, close to the center of the driving shaft (73), in running fit with the side wall of the first rotating rod (812), the second rotating rod (814) is in running fit with the side wall of the adjacent driving shaft (73), the two adjacent rotating rods (814) and penetrates through the side wall of the first rotating rod (811), the utility model discloses a grinding blade (814) is equipped with on the one end that first dwang (812) and second dwang (813) kept away from each other respectively, grind the bottom of blade (814) and all rather than side fixed connection, protruding arc portion (815) have been seted up on protruding arc portion (815), roll ball (816) and be equipped with a plurality of, a plurality of roll ball (816) equal distance set up in the mounting groove and all rotate with the mounting groove inner wall and be connected, a plurality of roll ball (816) tangent to each other set up and the bottom of a plurality of roll ball (816) all contradicts at the top of division board (2), grind the both sides of blade (814) and all be the arc setting, drainage board (817) are equipped with two, each drainage board (817) set up respectively and keep away from the bottom of the side of drive shaft (73) and the bottom fixed connection of drainage board (817) and blade (814), two drainage board (817) are opposite symmetry setting.
4. A processing device for aqueous industrial paints according to claim 1, wherein: the stirring adjusting assemblies (82) are symmetrically and oppositely arranged in the driving shaft (73) and are respectively positioned at the side ends of one stirring blade (77), each stirring adjusting assembly (82) comprises a supporting rod (821), a first crank (822), a second crank (823) and a first bevel gear (824), the supporting rods (821) are arranged at the side ends of the fixed rotating piece (76) close to the center of the driving shaft (73) and are fixedly connected with the side ends of the fixed rotating piece (76), the side ends of the supporting rods (821) are in sliding fit with the inner wall of the driving shaft (73) up and down, the first crank (822) is arranged at one end of the supporting rods (821) far away from the fixed rotating piece (76) and is in rotary connection with the first crank (822), one end of the second crank (823) is arranged at the other end of the first crank (822) and is in rotary connection with the first bevel gear (824), the other end of the second crank (823) is in rotary connection with the inner wall of the driving shaft (73) and is in rotary connection with the bevel gear (824) far away from the center of the first crank (823), the bottom end of the first bevel gear (824) is meshed with a plurality of tooth blocks (72) at the top of the rotating frame (71).
5. A processing device for aqueous industrial paints according to claim 1, wherein: the linkage mixing component (83) comprises a central shaft (831), a driving gear (832), a sliding frame (833), sliding pieces (834), driving rods (835), arc racks (836), a second bevel gear (837), a third bevel gear (838) and a fourth bevel gear (839), wherein the central shaft (831) is arranged in the driving shaft (73) and the top of the central shaft (831) is rotationally connected with the top of the driving shaft (73), the driving gear (832) is arranged on the central shaft (831) and the center of the driving gear (832) is fixedly connected with the central shaft (831), the sliding frames (833) are provided with two sliding pieces, each sliding frame (833) is respectively arranged at the bottom of one stirring page (77) and the top of the sliding frame (833) is fixedly connected with the bottom of the stirring page (77), the two sliding pieces (833) are symmetrically arranged, each sliding piece (834) is respectively arranged on one sliding frame (833) and is fixedly connected with the central shaft (831) at the center of the driving rods (835), one end (834) is matched with the driving rods (835) at one end (835) of the other end (834) respectively, each of the other ends of the driving rods (835) respectively penetrate through the outer walls of the driving shafts (73) adjacent to the driving rods and are in sliding fit with the driving shafts, two arc racks (836) are arranged on two sides of the driving gears (832) symmetrically, side ends of the two arc racks (836) are in sliding fit with the inner walls of the driving shafts (73), side ends of the arc racks (836) are respectively in rotary connection with one end of each adjacent driving rod (835) located in the driving shaft (73), tooth socket ends of the arc racks (836) are respectively meshed with two sides of the driving gears (832), a second bevel gear (837) is arranged on the first rotating rod (812) and is fixedly connected with the first bevel gear, a third bevel gear (838) is arranged on the second rotating rod (813) and is fixedly connected with the second bevel gear, a fourth bevel gear (839) is arranged at one end of the center shaft (831) far away from the inner top of the driving shafts (73) and is fixedly connected with the inner top of the driving shafts, tooth socket ends of the fourth bevel gear (839) are respectively meshed with the second bevel gear (837) and the third bevel gear (838) are respectively meshed with the third bevel gear (838).
6. A processing device for aqueous industrial paints according to claim 1, wherein: the utility model provides a filter anti-blocking assembly (10) is including filtering pipeline (101), first filtration pore (102), permeate board (103), second filtration pore (104) and annular blade (105), the vertical setting of filtering pipeline (101) is in the bottom fixed connection of through-hole (9) department and filtration pipeline (101) and division board (2), first filtration pore (102) of uniform size have evenly been seted up to the lateral wall of filtering pipeline (101), permeate board (103) set up on the one end that division board (2) was kept away from to filtering pipeline (101) and permeate board (103) side and filtration pipeline (101) fixed connection, evenly set up second filtration pore (104) of uniform size on permeate board (103), every second filtration pore (104) all are equipped with annular blade (105) near the one end of division board (2), the side of annular blade (105) all with the inner wall fixed connection of second filtration pore (104), the size of annular blade (105) is unanimous with the size of second filtration pore (104).
7. A processing device for aqueous industrial paints according to claim 3, wherein: and a plurality of convex blocks (11) with the same size are arranged on the surface of each rolling ball (816).
8. A processing device for aqueous industrial paints according to claim 1, wherein: the side end of the stirring barrel (1) is provided with a transparent visual window (12).
CN202410033111.6A 2024-01-10 2024-01-10 Processing device for water-based industrial paint Active CN117531417B (en)

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