CN115532102A - Raw material mixing device for processing water-in-water exterior wall coating - Google Patents

Raw material mixing device for processing water-in-water exterior wall coating Download PDF

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Publication number
CN115532102A
CN115532102A CN202211217393.2A CN202211217393A CN115532102A CN 115532102 A CN115532102 A CN 115532102A CN 202211217393 A CN202211217393 A CN 202211217393A CN 115532102 A CN115532102 A CN 115532102A
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China
Prior art keywords
wall
water
exterior wall
liquid
module
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CN202211217393.2A
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Chinese (zh)
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CN115532102B (en
Inventor
孟森
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Shandong Xiner Building Materials Technology Co ltd
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Shandong Xiner Building Materials Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/80Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis
    • B01F27/88Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis with a separate receptacle-stirrer unit that is adapted to be coupled to a drive mechanism
    • 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
    • B01F35/20Measuring; Control or regulation
    • B01F35/22Control or regulation
    • B01F35/221Control or regulation of operational parameters, e.g. level of material in the mixer, temperature or pressure
    • B01F35/2218Weight of at least one component to be mixed
    • 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
    • B01F35/71Feed mechanisms
    • B01F35/716Feed mechanisms characterised by the relative arrangement of the containers for feeding or mixing the components
    • B01F35/7164Feed mechanisms characterised by the relative arrangement of the containers for feeding or mixing the components the containers being placed in parallel before contacting the contents
    • 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
    • B01F35/71Feed mechanisms
    • B01F35/717Feed mechanisms characterised by the means for feeding the components to the mixer
    • B01F35/7176Feed mechanisms characterised by the means for feeding the components to the mixer using pumps
    • 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
    • B01F35/80Forming a predetermined ratio of the substances to be mixed
    • B01F35/88Forming a predetermined ratio of the substances to be mixed by feeding the materials batchwise
    • B01F35/881Forming a predetermined ratio of the substances to be mixed by feeding the materials batchwise by weighing, e.g. with automatic discharge
    • 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)
  • Accessories For Mixers (AREA)

Abstract

The invention discloses a raw material mixing device for processing water-in-water exterior wall paint, which comprises an assembly shell, a central control module, an information input module, a storage module, an instruction issuing module and a data feedback module, wherein a top cover is arranged at the top of the assembly shell, a material weighing mechanism is arranged in the assembly shell, a material conveying mechanism is fixedly arranged on the outer wall of the assembly shell, the mechanism divides pressure values generated by a measuring and calculating component into a plurality of stages in a mode of automatically measuring the volume of each emulsion through the filling sequence of each emulsion, and judges whether each emulsion reaches a mixing standard according to the data of each stage, so that the capacity of the device for automatically calculating the amount of emulsion is realized, the problem of high error easily generated when the emulsion is manually weighed is eliminated, the defects in the patent are effectively solved, and the problem that the dispersion uniformity of color grains in a later-stage finished product is influenced due to overlarge amount of a certain colored emulsion caused by measuring error is prevented.

Description

Raw material mixing device for processing water-in-water exterior wall coating
Technical Field
The invention relates to the technical field of water-in-water coating preparation equipment, in particular to a raw material mixing device for processing a water-in-water exterior wall coating.
Background
The water-in-water multicolor paint is technically named as liquid stone and is commonly called as the water-in-water multicolor paint, the water-in-water multicolor paint is actually a dispersed water phase of an aqueous emulsion paint and is a multiphase suspension of a continuous phase formed by a protective glue solution, the water-in-water multicolor paint mainly consists of the continuous phase and a dispersed phase, and the continuous phase and the dispersed phase are both aqueous paints, so the water-in-water multicolor paint is called as water-in-water paint, and compared with the dispersed phase, the continuous phase has the characteristics of low concentration and low viscosity.
In the prior art, as in the chinese patent application No.: CN 213376185U discloses a raw materials mixing device is used in processing of building exterior wall coating, including the staving that keeps warm, the staving that keeps warm is fixed to be equipped with the compounding bucket, the fixed transfer line that is equipped with of buncher, the fixed connection pad that is equipped with of transfer line, the fixed (mixing) shaft that is equipped with of connection pad, the fixed a plurality of stirring rods that are equipped with of (mixing) shaft, the stirring rod is all fixed to be equipped with a plurality of stirring posts, the staving that keeps warm is fixed to be equipped with the inlet tube, the fixed water pump that is equipped with of inlet tube, the fixed connecting pipe that is equipped with of water pump, the fixed supporting seat that is equipped with of water pump, the fixed storage water tank that is equipped with of supporting seat, the fixed heating element that is equipped with of storage water tank symmetry, the staving that keeps warm is fixed to be equipped with the outlet pipe, the storage water injection pipeline, the utility model discloses on ordinary mixing device's basis, set up water-bath heating, stirring and cleaning device, improved the degree of mixing uniformity and be convenient for the clearance, reduced intensity of labour.
However, the above patents have the following disadvantages:
the water-in-water coating comprises the following basic raw materials: emulsion paint, mill base and mixing of colors emulsion, its manufacture process, the mill base that will need respectively fully fuses with the emulsion paint now, will prepare equivalent granulation emulsion again to fuse into the granulation emulsion in proper order with the mixed emulsion that many have the colour, further carry out the dispersion of colour grain through stirring mixing equipment, and above-mentioned coating preparation process need carry out strict measurement to the material proportion of each step, prevent that certain colour content is too much, lead to the finished product colour grain to disperse the effect relatively poor.
Because of the coating preparation in-process, the colour distribution kind is not single, and the interpolation of every kind of coloured emulsion is accomplished for stepping, but the device that the above-mentioned patent is related, because inner structure's unicity, can't be before the raw materials pours into, can independently carry out the weighing of coloured emulsion, need artifically to measure every kind of raw materials earlier, nevertheless mixing equipment inner space is great, the raw materials volume that each time mixing stirring can bear is just more, and bearing part itself also has the quality, the volume of every kind of emulsion can not accurately be judged during making artifical measurement, lead to the volume numerical value of every kind of emulsion to produce the deviation, influence later stage finished product's effect.
Therefore, a raw material blending device for water-in-water exterior wall coating processing is provided so as to solve the problems provided in the prior art.
Disclosure of Invention
The invention aims to provide a raw material mixing device for processing water-in-water exterior wall coatings, which is characterized in that through a material weighing mechanism connected with an assembly shell, firstly, color-mixing emulsion is poured into a mixing barrel, the pressure generated at the bottom of the mixing barrel is higher along with the gradual increase of the emulsion in the mixing barrel, the mixing barrel is in close contact with a metering scale, the generated pressure value can be input into a central control module through a data feedback module in the form of an electric signal, after the granulation emulsion reaches a specified amount, the colored emulsion is poured step by step, as each emulsion is poured into the mixing barrel, the metering scale generates a new pressure value, the data feedback module transmits data, the central control module judges whether the poured emulsion reaches a specified value range according to the value change of each stage, and then, an instruction issuing module rapidly controls the opening and closing of an extraction part.
In order to achieve the purpose, the invention provides the following technical scheme: a raw material mixing device for water-in-water exterior wall coating processing comprises an assembly shell, a central control module, an information input module, a storage module, an instruction issuing module and a data feedback module, wherein a top cover is arranged at the top of the assembly shell, a material weighing mechanism is arranged inside the assembly shell, a material conveying mechanism is fixedly arranged on the outer surface wall of the assembly shell, and a stirring and mixing mechanism is arranged at the top of the top cover;
the material weighing mechanism comprises a group of metal plates, a T-shaped slide way is arranged inside each metal plate, a T-shaped slide way is movably inserted inside each T-shaped slide way, a mixing barrel is fixedly arranged between the outer walls of the T-shaped slide ways, an annular groove is formed in the bottom of the inner wall of the assembling shell, a metering scale is fixedly arranged inside the annular groove, a wiring end of the metering scale is connected with an inner flat cable in the assembling shell, a reinforcing plate A is fixedly arranged on one side of the outer wall of the assembling shell, an L-shaped frame is welded on the outer wall of the reinforcing plate A, a group of inner connecting rods is fixedly inserted inside the L-shaped frame, and a display assembly is fixedly sleeved between the outer walls of the inner connecting rods;
the material conveying mechanism comprises a reinforcing plate B, a U-shaped frame is welded on the outer surface wall of the reinforcing plate B, a transverse plate is fixedly mounted between the inner wall of the U-shaped frame and the outer wall of the assembling shell, a liquid storage tank is fixedly mounted inside the transverse plate, the reinforcing plate B is fixedly mounted on the rear surface of the assembling shell, a set of grafting plate is welded on the outer surface wall of the reinforcing plate B, one set of two liquid storage tanks is fixedly mounted inside one of the grafting plate, and a liquid drainage connector A and two liquid conveying hoses A are fixedly mounted at the bottom of the top cover respectively.
Preferably, the outer wall of the assembly shell is provided with an input jack, the input jack is fixedly connected with a group of information lines in the input jack, the input ends of the information lines are connected with the wiring end of the display assembly, and the information lines are arranged, so that data recorded in the display assembly can be rapidly guided into a control system of the device.
Preferably, the top fixed mounting of U type frame has the lantern ring A of connection, the fixed inserting of the interior table wall of lantern ring A of connection is equipped with booster pump A, the fixed intercommunication of booster pump A's input has fortune liquid hose B, fortune liquid hose B's feed liquor end runs through the exterior wall of liquid reserve tank to be linked together with the inside of liquid reserve tank, booster pump A's the fixed intercommunication of output has fortune liquid hose C, fortune liquid hose C's play liquid end and drainage connector A's feed liquor end are linked together mutually, set up fortune liquid hose B and fortune liquid hose C, can be with in the mixing drum is continuously carried to the mixing drum of the mixing of colors emulsion of stock in the liquid reserve tank.
Preferably, it is a set of the inside fixed mounting of one in the grafting board has two connecting sleeve rings B, two the interior table wall of connecting sleeve ring B all is fixed to be inserted and is equipped with and increases pump B, two the output of increasing pump B all is fixed the intercommunication has fortune liquid hose D, two the output of increasing pump B all is fixed the intercommunication has, two play liquid end communicate with fortune liquid hose A's feed liquor end respectively, set up fortune liquid hose D and, can pour into the inside of mixing drum in proper order with the coloured emulsion of deposit in two liquid storages to the mixture of emulsion.
Preferably, stirring mixing mechanism includes the installation hole, the top at the top cap is seted up to the installation hole, the top of top cap is fixed to be inserted and is equipped with a set of metal pole, and is a set of fixed cover is equipped with the connection lantern ring C between the exterior wall of metal pole, fixed inserting is equipped with servo motor between the interior table wall of installation hole and connection lantern ring C, sets up servo motor, can provide power support for the stirring of mixed emulsion and the dispersion of colouring grain.
Preferably, servo motor's bottom fixed mounting has a limit sleeve, servo motor's output fixedly connected with transfer line, limit sleeve's inside is arranged in the outward appearance wall activity of transfer line, sets up limit sleeve, and the stability when the servo motor is done is improved to the rocking amplitude about producing when effectively restricting the transfer line and rotating.
Preferably, the fixed cover of exterior wall of transfer line is equipped with the linking plate, the bottom fixed mounting of linking plate has the gangbar, the exterior wall fixed mounting of gangbar has a set of triangle flabellum, the inner wall top fixed mounting of gangbar has electric telescopic handle, the fixed cover of electric telescopic handle's output is equipped with fixed pullover, the exterior wall welded connection of fixed pullover has a set of U type to connect A, and is a set of all fixed the inserting between every inner wall both sides in the U type connects A is equipped with horizontal pole A, and the equal movable sleeve of exterior wall of every horizontal pole A is equipped with the traction lever, sets up electric telescopic handle, utilizes swing joint nature between horizontal pole A and traction lever when electric telescopic handle contracts, and the angle between traction lever and electric telescopic handle diminishes, and the puddler is then in the state of contracting, otherwise when electric telescopic handle is in tensile, the angle grow of traction lever, then the puddler is in the state of expansion under the traction lever pulls.
Preferably, the outer wall fixed mounting of gangbar has a set of U type to connect B, and is a set of all fixed the inserting is equipped with horizontal pole B between every inner wall both sides in the U type connects B, and every horizontal pole B's outer wall all activity cover is equipped with the puddler, and is a set of every outer wall one end is inserted respectively and is established in the inside of puddler in the traction lever, utilizes the relation of connection between traction lever and puddler, and the produced orbit direction of electric telescopic handle can be under the traction of traction lever for the puddler can be sustainable shrink and expand.
Preferably, the output end of the information input module is electrically connected with the input end of the central control module, the output end of the storage module is electrically connected with the input end of the central control module, the output end of the central control module is in signal connection with the input end of the instruction issuing module, and the output end of the data feedback module is electrically connected with the input end of the central control module, so that the pressure value obtained by the metering component can be rapidly input into the central control module, the central control module judges data, and finally the driving component is controlled to be opened and closed.
Preferably, the outer surface walls of a group of metal plates are fixedly arranged on the inner surface wall of the assembly housing, the outer surface wall of the reinforcing plate B is fixedly arranged on one side of the outer surface wall of the assembly housing, and the connection relationship between the metal plates, the reinforcing plate B and the whole device is determined.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention presets the kind of the coating to be mixed by arranging a material weighing mechanism and manually operating a display component before preparing the coating, the formulated command is quickly input into a central control module by an information input module, the central control module calls a program operation instruction stored in a storage module at the moment to determine the number of parts to be opened and the starting sequence, firstly, the color-mixing emulsion is poured into the mixing cylinder, the pressure generated at the bottom of the mixing cylinder is higher along with the gradual increase of the emulsion in the mixing cylinder, the mixing cylinder is in close contact with a metering scale, the generated pressure value is input into the central control module by a data feedback module in the form of an electric signal, and after the granulating emulsion reaches the specified amount, the colored emulsion is poured step by step, because each emulsion generates a new pressure value when being poured into the mixing cylinder, the mechanism divides the pressure value generated by the measuring and calculating part into a plurality of stages through the filling sequence of each emulsion in an autonomous metering mode, judges whether each emulsion reaches a mixing standard according to the data of each stage, realizes the capability of the device for autonomously calculating the emulsion amount, and eliminates the problem of high error easily generated when the emulsion is manually weighed, effectively solve not enough that above-mentioned patent exists, prevent to lead to certain coloured milk volume too big because of metering error, influence the homogeneity that the colour grain diverged in the finished product of later stage.
2. According to the invention, by arranging the stirring and uniformly mixing mechanism, after a plurality of weighted emulsions are statically placed in the mixing cylinder, the driving part in the starting mechanism drives a plurality of structures on the linkage rod to rotate, and because the triangular fan blades are uniformly distributed on the linkage rod and have small area of the blade surface, when the mixing cylinder rotates at high speed, a vortex is formed at the bottom of the mixing cylinder, so that the mixed emulsion is diffused towards the inner wall of the mixing cylinder from bottom to top, and the aim of accelerating mixing of the plurality of emulsions is fulfilled.
Drawings
FIG. 1 is a perspective view of a front view structure of a raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 2 is a side view of a raw material mixing device for water-in-water exterior wall coating processing of the present invention;
FIG. 3 is an enlarged perspective view of a material weighing mechanism structure in the raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 4 is an enlarged perspective view of a mixing drum structure in the raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 5 is an enlarged perspective view of a material conveying mechanism in the raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 6 is an enlarged perspective view of the structure of a stirring and mixing mechanism in the raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 7 is an enlarged perspective view of the structure at the position A in FIG. 1 of a raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 8 is an enlarged perspective view of the structure at B in FIG. 6 of a raw material mixing device for water-in-water exterior wall paint processing of the present invention;
FIG. 9 is a control system diagram of a raw material mixing device for water-in-water exterior wall coating processing of the present invention.
In the figure:
1. assembling the shell;
2. a top cover;
3. a material weighing mechanism; 301. a metal plate; 302. a T-shaped slideway; 303. a ring groove; 304. weighing; 305. a T-shaped slide rail; 306. a mixing drum; 307. a reinforcing plate A; 308. an L-shaped frame; 309. an inner connecting rod; 310. a display component; 311. an input jack; 312. an information line;
4. a material conveying mechanism; 401. a reinforcing plate B; 402. a U-shaped frame; 403. a transverse plate; 404. a liquid storage tank; 405. a connecting lantern ring A; 406. a booster pump A; 407. a liquid drainage joint A; 408. a reinforcing plate B; 409. a grafting plate; 410. a liquid storage tank; 411. a connecting lantern ring B; 412. a pump B is added; 413. a liquid conveying hose A; 414. a liquid conveying hose B; 415. a liquid conveying hose C; 416. a liquid conveying hose D;
5. a stirring and uniformly mixing mechanism; 501. mounting holes; 502. a metal rod; 503. a connecting lantern ring C; 504. a servo motor; 505. a transmission rod; 506. a limiting sleeve; 507. a connection plate; 508. a linkage rod; 509. a triangular fan blade; 510. an electric telescopic rod; 511. fixing the sleeve head; 512. a U-shaped joint A; 513. a U-shaped joint B; 514. a draw bar; 515. a stirring rod;
6. a central control module;
7. an information input module;
8. a storage module;
9. an instruction issuing module;
10. and a data feedback module.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-9, the present invention provides a technical solution: the utility model provides a raw materials mixing device is used in processing of water-in-water outer wall coating, is including assembling shell 1, well accuse module 6, information input module 7, storage module 8, instruction issue module 9 and data feedback module 10, and the top of assembling shell 1 is provided with top cap 2, and the inside of assembling shell 1 is provided with material weighing machine and constructs 3, and the exterior wall fixed mounting of assembling shell 1 has material conveying mechanism 4, and the top of top cap 2 is provided with stirring mixing mechanism 5.
As shown in fig. 1-4 and 7, the material weighing mechanism 3 includes a set of metal plates 301, a T-shaped slide way 302 is disposed inside each of the set of metal plates 301, a T-shaped slide way 305 is movably inserted inside each of the set of T-shaped slide ways 302, a mixing drum 306 is fixedly mounted between outer walls of the set of T-shaped slide ways 305, a ring groove 303 is disposed at the bottom of an inner wall of the assembly housing 1, a scale 304 is fixedly mounted inside the ring groove 303, a terminal of the scale 304 is connected with an inner flat cable inside the assembly housing 1, a reinforcing plate a307 is fixedly mounted on one side of an outer wall of the assembly housing 1, an L-shaped frame 308 is welded to an outer wall of the reinforcing plate a307, a set of inner connection rods 309 is fixedly inserted inside the L-shaped frame 308, and a display assembly 310 is fixedly mounted between outer walls of the set of inner connection rods 309.
As shown in fig. 1-2 and 5, the material conveying mechanism 4 includes a reinforcing plate B401, a U-shaped frame 402 is welded on an outer surface wall of the reinforcing plate B401, a transverse plate 403 is fixedly installed between an inner wall of the U-shaped frame 402 and an outer wall of the assembly housing 1, a liquid storage tank 404 is fixedly installed inside the transverse plate 403, a reinforcing plate B408 is fixedly installed on a rear surface of the assembly housing 1, a group of grafting plates 409 is welded on an outer surface wall of the reinforcing plate B408, two liquid storage tanks 410 are fixedly installed inside one of the group of grafting plates 409, and a liquid discharge joint a407 and two liquid conveying hoses a413 are respectively fixedly installed at the bottom of the top cover 2.
Referring to fig. 1 and 7, the outer wall of the assembly housing 1 is provided with an input jack 311, a set of information lines 312 is fixedly connected to the inside of the input jack 311, the input ends of the set of information lines 312 are all connected to the terminals of the display module 310, and the data recorded in the display module 310 can be quickly imported into the control system of the device by setting the information lines 312.
According to the fig. 1-2 and 5-6, a connecting collar a405 is fixedly installed at the top of the U-shaped frame 402, a booster pump a406 is fixedly inserted into the inner surface wall of the connecting collar a405, an input end of the booster pump a406 is fixedly communicated with a liquid conveying hose B414, a liquid inlet end of the liquid conveying hose B414 penetrates through the outer surface wall of the liquid storage tank 404 and is communicated with the inside of the liquid storage tank 404, an output end of the booster pump a406 is fixedly communicated with a liquid conveying hose C415, a liquid outlet end of the liquid conveying hose C415 is communicated with a liquid inlet end of the liquid discharge connector a407, and the toner emulsion stored in the liquid storage tank 404 can be continuously conveyed into the mixing barrel 306 by arranging the liquid conveying hose B414 and the liquid conveying hose C415.
According to the drawings of fig. 1-2 and 5-6, two connecting lantern rings B411 are fixedly installed inside one of the group of grafting plates 409, the inner surface walls of the two connecting lantern rings B411 are fixedly inserted with the additional pumps B412, the output ends of the two additional pumps B412 are fixedly communicated with the liquid conveying hoses D416, the output ends of the two additional pumps B412 are fixedly communicated with 417, the liquid outlet ends of the two 417 are respectively communicated with the liquid inlet ends of the liquid conveying hoses a413, and by arranging the liquid conveying hoses D416 and 417, colored emulsions stored in the two liquid storage tanks 410 can be sequentially poured into the mixing cylinder 306 and mixed.
According to fig. 1-2 and fig. 6, the stirring and mixing mechanism 5 includes a mounting hole 501, the mounting hole 501 is disposed at the top of the top cover 2, a set of metal rods 502 is fixedly inserted at the top of the top cover 2, a connecting lantern ring C503 is fixedly sleeved between the outer walls of the set of metal rods 502, a servo motor 504 is fixedly inserted between the mounting hole 501 and the inner wall of the connecting lantern ring C503, and the servo motor 504 is disposed to provide power support for stirring of the mixed emulsion and dispersion of color particles.
According to the illustration in fig. 6, a limiting sleeve 506 is fixedly mounted at the bottom of the servo motor 504, a transmission rod 505 is fixedly connected to the output end of the servo motor 504, the outer wall of the transmission rod 505 is movably arranged inside the limiting sleeve 506, and the limiting sleeve 506 is arranged to effectively limit the left-right shaking amplitude generated when the transmission rod 505 rotates, so that the stability of the servo motor 504 in working is improved.
According to the fig. 6 and 8, the outer wall of the transmission rod 505 is fixedly sleeved with a connecting plate 507, the bottom of the connecting plate 507 is fixedly provided with a connecting rod 508, the outer wall of the connecting rod 508 is fixedly provided with a group of triangular fan blades 509, the top of the inner wall of the connecting rod 508 is fixedly provided with an electric telescopic rod 510, the output end of the electric telescopic rod 510 is fixedly sleeved with a fixed sleeve head 511, the outer wall of the fixed sleeve head 511 is welded with a group of U-shaped joints a512, a cross rod a is fixedly inserted between two sides of each inner wall of the group of U-shaped joints a512, the outer wall of each cross rod a is movably sleeved with a traction rod 514, by arranging the electric telescopic rod 510, when the electric telescopic rod 510 retracts, the angle between the traction rod a and the traction rod 514 is reduced, and the stirring rod 515 is in a retracted state, otherwise when the electric telescopic rod 510 is in an extended state, the angle of the traction rod 514 is increased, and the stirring rod 515 is in an extended state under the traction of the traction rod 514.
According to the drawings of fig. 6 and 8, a group of U-shaped joints B513 is fixedly installed on the outer wall of the linkage rod 508, a cross rod B is fixedly inserted between two sides of each inner wall in the group of U-shaped joints B513, a stirring rod 515 is movably sleeved on the outer wall of each cross rod B, one end of each outer wall of a group of traction rods 514 is respectively inserted into the stirring rod 515, and the stirring rod 515 can be continuously contracted and expanded by the traction rods 514 and the direction of a track generated by the electric telescopic rod 510 under the traction of the traction rods 514.
As shown in fig. 9, the output end of the information input module 7 is electrically connected to the input end of the central control module 6, the output end of the storage module 8 is electrically connected to the input end of the central control module 6, the output end of the central control module 6 is in signal connection with the input end of the instruction issuing module 9, the output end of the data feedback module 10 is electrically connected to the input end of the central control module 6, and the flow direction of information data in the central control module 6, the information input module 7, the storage module 8, the instruction issuing module 9 and the data feedback module 10 is determined, so that the pressure value obtained by the metering component can be rapidly input into the central control module 6, and the central control module 6 determines data, and finally controls the driving component to be turned on or turned off.
As shown in fig. 1 to 3 and 5, the outer surface walls of a set of metal plates 301 are all fixedly mounted on the inner surface wall of the assembly housing 1, and the outer surface wall of the reinforcing plate B401 is fixedly mounted on one side of the outer surface wall of the assembly housing 1, so as to determine the connection relationship between the metal plates 301 and the reinforcing plate B401 and the whole device.
The effect that its whole mechanism reached does: firstly, the device is moved to a designated working area, the bottom of the assembly housing 1 is fully contacted with the ground, the mixing cylinder 306 is placed in the assembly housing 1 by utilizing the movable connection between the T-shaped slide rail 302 and the T-shaped slide rail 305, and is fully contacted with the metering scale 304, the initial pressure data acquired by the metering scale 304 is the net weight of the cylinder, after the data is transmitted into the central control module 6, the data is hidden so that the metering scale 304 is in a zero state, the top cover 2 is covered on the top of the assembly housing 1, and the connected parts are placed in the mixing cylinder 306.
The manual operation display component 310 sets the content of each emulsion according to the content displayed on the interface, the set data is guided into the central control module 6 through the information input module 7, the booster pump A406 in the connecting collar A405 is started, the impeller inside the booster pump rotates to generate an adsorption effect, the color-mixing emulsion stored in the liquid storage tank 404 is quickly extracted, the liquid is conveyed through the liquid conveying hose B414 and the liquid conveying hose C415, the liquid is continuously poured into the mixing cylinder 306 from the liquid discharging joint A407, the pressure applied to the metering scale 304 is larger as the liquid in the mixing cylinder 306 is continuously increased, the generated pressure value is quickly input into the central control module 6 through the data feedback module 10, and after the poured emulsion reaches the designated content, the command issuing module 9 controls the closing of the driving part to stop the pouring of the emulsion.
Further sequentially starting the additional pumps B412 in the connecting sleeve ring B411, pumping the colored emulsion stored in the liquid storage tank 410 step by step, conveying the liquid through the liquid conveying hoses D416 and 417, continuously pouring the colored emulsion into the mixing barrel 306 from the liquid conveying hose A413, generating a new pressure value on the surface of the metering scale 304 after one colored hot liquid is covered on the color mixing emulsion, quickly inputting the new pressure value into the central control module 6 through the data feedback module 10, hiding the weight value of the color mixing emulsion, metering the colored emulsion, controlling the closing of one additional pump B412 through the instruction issuing module 9 after the colored emulsion reaches the set value, stopping the pouring of one colored emulsion, further starting the other additional pump B412, continuously pouring the other colored emulsion into the mixing barrel 306, obtaining the data input in the metering scale 304 through the central control module 6 according to the method, and metering the colored emulsion.
After each emulsion is poured, the servo motor 504 between the connecting sleeve ring C503 and the mounting hole 501 is started, and acts on the transmission rod 505 and the linkage rod 508 to drive the set of triangular blades 509 and the stirring rod 515 to rotate, at this time, the set of triangular blades 509 can rotate at a high speed at the bottom of the mixing cylinder 306, and the emulsions flow from top to bottom to form a central vortex to accelerate the mixing of each emulsion, and at the same time, the electric telescopic rod 510 in the linkage rod 508 is started to extend and retract up and down in the linkage rod 508, and the movement connectivity between the cross rod a and the traction rod 514, and the cross rod B and the stirring rod 515 is utilized to make the movement track generated by the electric telescopic rod 510 under the traction of the traction rod 514 to force the stirring rod 515 to continuously expand and contract to accelerate the dispersion of color particles of the mixed emulsion.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (10)

1. The utility model provides a water-in-water outer wall paint processing is with raw materials mixing device which characterized in that: the device comprises an assembly shell (1), a central control module (6), an information input module (7), a storage module (8), an instruction issuing module (9) and a data feedback module (10), wherein a top cover (2) is arranged at the top of the assembly shell (1), a material weighing mechanism (3) is arranged inside the assembly shell (1), a material conveying mechanism (4) is fixedly arranged on the outer surface wall of the assembly shell (1), and a stirring and uniformly mixing mechanism (5) is arranged at the top of the top cover (2);
the material weighing mechanism (3) comprises a group of metal plates (301), a T-shaped slide way (302) is arranged inside each metal plate (301), a T-shaped slide way (305) is movably inserted inside each T-shaped slide way (302), a mixing drum (306) is fixedly arranged between the outer walls of the T-shaped slide ways (305), an annular groove (303) is arranged at the bottom of the inner wall of the assembly shell (1), a metering scale (304) is fixedly arranged inside the annular groove (303), a terminal of the metering scale (304) is connected with an inner flat cable in the assembly shell (1), a reinforcing plate A (307) is fixedly arranged on one side of the outer wall of the assembly shell (1), an L-shaped frame (308) is welded on the outer wall of the reinforcing plate A (307), a group of inner connecting rods (309) is fixedly inserted inside the L-shaped frame (308), and a display assembly (310) is fixedly sleeved between the outer walls of the group of inner connecting rods (309);
material conveying mechanism (4) include reinforcing plate B (401), the exterior wall welded joint of reinforcing plate B (401) has U type frame (402), fixed mounting has diaphragm (403) between the inner wall of U type frame (402) and the outer wall of assembly shell (1), the inside fixed mounting of diaphragm (403) has liquid reserve tank (404), the rear surface fixed mounting of assembly shell (1) has reinforcing plate B (408), the exterior wall welded joint a set of grafting board (409) of reinforcing plate B (408), and is a set of the inside fixed mounting of one in grafting board (409) has two liquid storage tanks (410), the bottom of top cap (2) is fixed mounting respectively has flowing back joint A (407) and two fortune liquid hose A (413).
2. The raw material blending device for processing the water-in-water exterior wall paint according to claim 1, which is characterized in that: the outer wall of the assembly shell (1) is provided with an input jack (311), a group of information lines (312) are fixedly connected to the inside of the input jack (311), and the input ends of the information lines (312) are connected with the wiring ends of the display component (310).
3. The raw material blending device for water-in-water exterior wall coating processing according to claim 1, characterized in that: the top fixed mounting of U type frame (402) has the connection lantern ring A (405), the interior table wall of connection lantern ring A (405) is fixed to be inserted and is equipped with booster pump A (406), the fixed intercommunication of input of booster pump A (406) has fortune liquid hose B (414), the exterior wall of liquid reserve tank (404) is run through to the inlet port of fortune liquid hose B (414) to be linked together with the inside of liquid reserve tank (404), the fixed intercommunication of output of booster pump A (406) has fortune liquid hose C (415), the play liquid end of fortune liquid hose C (415) is linked together with the inlet port of drainage connector A (407).
4. The raw material blending device for water-in-water exterior wall coating processing according to claim 1, characterized in that: one of the grafting plates (409) is internally and fixedly provided with two connecting lantern rings B (411), the inner surface wall of each connecting lantern ring B (411) is fixedly provided with an additional pump B (412), the output ends of the additional pumps B (412) are fixedly communicated with a liquid conveying hose D (416), the output ends of the additional pumps B (412) are fixedly communicated with a liquid conveying hose 417, and the liquid outlet ends of the liquid conveying hoses A (413) are respectively communicated with the liquid inlet ends of the liquid conveying hose A (413).
5. The raw material blending device for processing the water-in-water exterior wall paint according to claim 1, which is characterized in that: stirring mixing mechanism (5) are including installation hole (501), the top at top cap (2) is seted up in installation hole (501), the top of top cap (2) is fixed to be inserted and is equipped with a set of metal pole (502), and is a set of fixed cover is equipped with between the exterior wall of metal pole (502) and connects lantern ring C (503), be fixed between the interior table wall of installation hole (501) and connection lantern ring C (503) to be inserted and be equipped with servo motor (504).
6. The raw material blending device for processing the water-in-water exterior wall paint according to claim 5, characterized in that: the bottom fixed mounting of servo motor (504) has spacing sleeve (506), servo motor's (504) output fixedly connected with transfer line (505), the inside of spacing sleeve (506) is arranged in the outward appearance wall activity of transfer line (505).
7. The raw material blending device for water-in-water exterior wall coating processing according to claim 6, characterized in that: the fixed cover of exterior wall of transfer line (505) is equipped with linking plate (507), the bottom fixed mounting of linking plate (507) has gangbar (508), the exterior wall fixed mounting of gangbar (508) has a set of triangle flabellum (509), the inner wall top fixed mounting of gangbar (508) has electric telescopic handle (510), the fixed cover of output of electric telescopic handle (510) is equipped with fixed cover head (511), the exterior wall welding of fixed cover head (511) has a set of U type to connect A (512), and is a set of all fixed the inserting is equipped with horizontal pole A between every inner wall both sides in U type connects A (512), and the equal movable cover of exterior wall of every horizontal pole A is equipped with traction lever (514).
8. The raw material blending device for processing the water-in-water exterior wall paint according to claim 7, characterized in that: the outward appearance wall fixed mounting of gangbar (508) has a set of U type to connect B (513), and is a set of all fixed the inserting is equipped with horizontal pole B between every inner wall both sides in U type connects B (513), and the outward appearance wall of every horizontal pole B all activity cover is equipped with puddler (515), a set of the inside of establishing puddler (515) is inserted respectively to the outer wall one end of every in traction lever (514).
9. The raw material blending device for water-in-water exterior wall coating processing according to claim 1, characterized in that: the output end of the information input module (7) is electrically connected with the input end of the central control module (6), the output end of the storage module (8) is electrically connected with the input end of the central control module (6), the output end of the central control module (6) is in signal connection with the input end of the instruction issuing module (9), and the output end of the data feedback module (10) is electrically connected with the input end of the central control module (6).
10. The raw material blending device for processing the water-in-water exterior wall paint according to claim 1, which is characterized in that: the outer surface walls of the metal plates (301) are fixedly arranged on the inner surface wall of the assembly shell (1), and the outer surface wall of the reinforcing plate B (401) is fixedly arranged on one side of the outer surface wall of the assembly shell (1).
CN202211217393.2A 2022-10-03 2022-10-03 Raw material mixing device for processing water-in-water outer wall paint Active CN115532102B (en)

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