CN112892362B - Continuous mixing device and process based on cleaning agent - Google Patents
Continuous mixing device and process based on cleaning agent Download PDFInfo
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- CN112892362B CN112892362B CN202110138948.3A CN202110138948A CN112892362B CN 112892362 B CN112892362 B CN 112892362B CN 202110138948 A CN202110138948 A CN 202110138948A CN 112892362 B CN112892362 B CN 112892362B
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F33/00—Other mixers; Mixing plants; Combinations of mixers
- B01F33/80—Mixing plants; Combinations of mixers
- B01F33/82—Combinations of dissimilar mixers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F27/00—Mixers with rotary stirring devices in fixed receptacles; Kneaders
- B01F27/05—Stirrers
- B01F27/11—Stirrers characterised by the configuration of the stirrers
- B01F27/19—Stirrers with two or more mixing elements mounted in sequence on the same axis
- B01F27/191—Stirrers with two or more mixing elements mounted in sequence on the same axis with similar elements
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F27/00—Mixers with rotary stirring devices in fixed receptacles; Kneaders
- B01F27/60—Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a horizontal or inclined axis
- B01F27/70—Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a horizontal or inclined axis with paddles, blades or arms
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F35/00—Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
- B01F35/80—Forming a predetermined ratio of the substances to be mixed
- B01F35/88—Forming a predetermined ratio of the substances to be mixed by feeding the materials batchwise
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F2101/00—Mixing characterised by the nature of the mixed materials or by the application field
- B01F2101/24—Mixing of ingredients for cleaning compositions
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- Chemical Kinetics & Catalysis (AREA)
- Processing And Handling Of Plastics And Other Materials For Molding In General (AREA)
- Accessories For Mixers (AREA)
Abstract
The invention discloses a continuous mixing device based on a cleaning agent, which comprises an external fixed machine shell, an upper connecting frame body, storage box parts, a continuous mixing component, a collecting and discharging component and a conveying calandria, wherein the upper connecting frame body is vertically embedded and fixed in the middle of the upper end face of the external fixed machine shell, a plurality of storage box parts are arranged in an array manner on the inner circumference of the upper connecting frame body, each storage box part is vertically fixed in the upper connecting frame body in an equal height manner, the continuous mixing component is arranged on the lower side in the upper connecting frame body and is positioned under the storage box parts, the discharging and collecting component is communicated below the continuous mixing component, and the collecting and discharging component collects and concentrates mixed materials formed by various preparation raw materials after the preparation raw materials are mixed in different proportions; and a conveying calandria is arranged below the collecting and discharging assembly.
Description
Technical Field
The invention relates to the technical field of cleaning agent processing and preparation equipment, in particular to a continuous mixing device and a process based on a cleaning agent.
Background
The cleaning agent is a liquid prepared mainly by a surfactant, a bactericide, a polishing agent, an imported penetration agent, a unique brightness factor and other high-tech environmental protection technologies, and has the characteristics of strong decontamination, permeability, bactericidal power, polishing brightness and the like; the hard dirt on the surface and in the gaps of various ceramic tiles can be quickly and thoroughly cleaned; the unique seepage force and polishing brightness factor can more rapidly remove lime scale, cement scale, water rust, electric welding marks, various heavy oil stains and the like; in the prior art, for the preparation of the cleaning agent, generally, after the selection and mixing proportion of each preparation material are determined, the preparation material is subjected to mixing process processing to form a cleaning agent with content characteristics of a certain specific fragrance, color number, viscosity and the like; the proportioning process is relatively single, so that once the proportion is out of order or the characteristics need to be adjusted after later-stage preparation is finished, the proportion cannot be quickly changed, and defective products are easily generated.
Disclosure of Invention
In order to achieve the purpose, the invention provides the following technical scheme: a continuous mixing device based on a cleaning agent comprises an external fixed machine shell, an upper connecting frame body, storage box parts, a continuous mixing component, a collecting and discharging component and a conveying pipe, wherein a built-in concave position for mounting the upper connecting frame body is arranged on the upper end face of the external fixed machine shell, the upper connecting frame body is vertically embedded and fixed in the middle of the upper end face of the external fixed machine shell, a plurality of storage box parts are arranged in the upper connecting frame body in an array mode, the storage box parts are vertically fixed in the upper connecting frame body in equal height, and a plurality of preparation raw materials are stored in the storage box parts;
a continuous blending assembly is arranged on the lower side in the upper connecting frame body, is positioned under the material storage box piece and mixes two or more than two preparation raw materials in the material storage box piece;
a collecting and discharging component is communicated with the lower part of the continuous mixing and blending component, and after various preparation raw materials are mixed in different proportions, the collecting and discharging component collects and concentrates the formed mixed materials;
a conveying calandria is arranged below the collection discharge assembly and conveys the collected preparation materials to an external processing device, and the external processing device performs forming processing and packaging;
and a material guide pump piece is also rotatably arranged on the conveying discharge pipe.
As a preferred technical scheme of the present invention, the continuous mixing assembly includes a bearing cylinder, a fixing ring seat, a transfer ball, a rotating electrical machine, a mounting post seat and an inner mixing assembly, wherein the bearing cylinder is coaxially mounted in the upper connecting frame, and the fixing ring seat is sleeved on the outer side of the circumference of the bearing cylinder;
the inner circumferential side wall of the upper connecting frame body is provided with an annular groove for limiting and driving the switching ball pieces, the fixed ring seat is rotatably connected with the upper connecting frame body through a plurality of switching ball pieces, the upper connecting frame body is provided with a rotating motor, and the output end of the rotating motor drives the bearing barrel piece to do unidirectional circular rotation motion through the meshing transmission action of an external gear;
a plurality of isolation plate pieces are arranged on the inner circumference of the bearing barrel piece, and the bearing barrel piece is uniformly divided into a plurality of mixing chambers by the isolation plate pieces;
the inner part of the bearing cylinder piece is coaxially and vertically fixed with an installation column base in a penetrating mode, a plurality of inner mixing assemblies are arranged on the installation column base, each inner mixing assembly corresponds to the mixing cavity one to one, and multiple preparation raw materials are uniformly mixed after entering the mixing cavities.
As a preferred technical scheme of the invention, the inner mixing component comprises a stirring roller part, an internal motor, an installation support, guide support parts and a connecting support, wherein the cross section of the inner circumferential side wall of the bearing cylinder part is of an arc structure, a plurality of guide support parts are obliquely arranged on the circumferential side wall of the installation column seat through bearings and can relatively rotate, the internal motor is installed in the installation column seat, and the output end of the internal motor is connected with the guide support parts for transmission through the meshing action of bevel gears;
a stirring roller piece is coaxially arranged at one end of the guide support piece, a connecting support is fixed in the bearing barrel piece, and the connecting support is rotatably connected with one end of the stirring roller piece;
the guide support piece extends into one side of the mounting column seat and is rotatably sleeved with a mounting support, and the mounting support is fixed with the inner wall of the mounting column seat.
As a preferred technical scheme of the invention, the middle part of the connecting support is coaxially provided with a limiting support rod, and one end of the limiting support rod extends into the stirring roller piece;
the edge of the circumference of one side, close to the stirring roller piece, of the connecting support is of a corrugated structure, a plurality of auxiliary guide wheels are arranged on the upper circumference of the stirring roller piece in a relatively rotating manner and rotate along the edge of the connecting support through the auxiliary guide wheels, so that when the stirring roller piece rotates and stirs, the stirring roller piece performs local axial reciprocating offset motion;
a first connecting spring is arranged between the limiting support rod and the stirring roller piece;
and a second connecting spring is arranged at one end of the stirring roller piece extending into the guide support piece.
As a preferred technical scheme of the invention, the upper end of each mixing cavity is obliquely provided with a material guide seat;
the port department that is located each guide seat installs the arc flitch, evenly set up a plurality of defeated material row mouths that are used for arranging the material on the arc flitch.
As a preferred technical scheme of the invention, the lower end surface of the storage box is communicated with a feeding spray seat through a continuous shrinkage pipe, one side of the feeding spray seat is hinged on the inner wall of the upper connecting frame body, the other side of the feeding spray seat is hinged with an adjustable telescopic rod, the adjustable telescopic rod is rotatably connected with the storage box, and the feeding spray seat is controlled to be in sealing connection with a material guide seat by the telescopic action of the adjustable telescopic rod;
an elastic ring piece is arranged on the inner ring of the material guide seat, a plurality of intercepting pieces are arranged on the inner circumference of the elastic ring piece in an array mode, and each intercepting piece is used for intercepting and cleaning the port of the material guide seat when the material supply spraying seat is separated from the material guide seat;
a plurality of reset springs are further arranged between the cut-off piece and the elastic ring piece.
As a preferred technical scheme of the invention, the collecting and discharging assembly comprises a main driving wheel, a transmission wheel part, connecting branch pipes, a collecting cavity part and a laminated discharge pipe, wherein the collecting cavity part is coaxially arranged in the mounting column seat, the upper end of the collecting cavity part is communicated with a plurality of connecting branch pipes, and each connecting branch pipe is respectively communicated with the mixing cavity;
the lower end of the collecting cavity piece is provided with a laminated calandria;
and the lower end of the bearing cylinder part can be relatively provided with a plurality of main driving wheels, each main driving wheel is provided with a transmission wheel part through a transmission belt part in a linkage manner, and each transmission wheel part extrudes and merges the converged mixed materials in the laminated exhaust pipe through the circumferential rotation effect.
In a preferred embodiment of the present invention, the laminated rack pipe is provided with a plurality of pressing members on the outer circumference.
A continuous mixing process based on cleaning agents comprises the following steps:
s1, preparing a preparation material; the storage box parts which are provided with the flavoring agent, the solubilizer, the foaming agent, the pigment and the coconut oil are respectively inversely arranged on the upper connecting frame body, and the storage box parts can carry out constant-pressure feeding through the feeding spray seat;
s2, mixing multiple materials; according to the content proportion of the preparation process of the cleaning agent, one preparation material is respectively and automatically taken and injected into different mixing cavities in advance, and then another or more preparation materials are injected into the mixing cavities according to the characteristic that the materials are easy to fuse and merge, so that the premixing preparation is realized, and the content of the preparation materials in each mixing cavity is moderate;
s3, uniformly mixing the materials; the stirring roller pieces are driven by a built-in motor to carry out mixing and stirring work;
s4, collecting current and concentrating; the premixed materials in the mixing cavities are conveyed to the flow collecting cavity piece through the connecting branch pipe to be mixed, and are extruded and converged by the transmission wheel piece;
s5, preparing drainage; the material guide pump piece conveys the preparation material to external processing equipment through a conveying pipe bank for final procedure processing and packaging.
Compared with the prior art, the invention provides a continuous mixing device and a process based on a cleaning agent, and the device and the process have the following beneficial effects:
according to the invention, a mixing procedure is added in the preparation process of the cleaning agent preparation-based continuous mixing component, and multi-material pre-selection and mixing proportion are carried out on the cleaning agent preparation-based continuous mixing component, so that the cleaning agent preparation-based continuous mixing component can carry out secondary adjustment on a certain mixed material in subsequent preparation adjustment without influencing the content ratio of the whole preparation material, thereby improving the preparation efficiency and reducing the generation of defective products; the material storage box part is circumferentially arranged in the upper connecting frame body, and various different preparation materials are stored in the material storage box part, selected and mixed under the rotating action of the mixing chambers of the bearing barrel part, so that the pre-mixing of the preparation materials is realized, then the materials are gathered and mixed by the gathering and discharging assembly to form a cleaning agent with the final content characteristic, and the cleaning agent is conveyed to an external processing device through a conveying calandria to be molded and packaged; in order to further improve the refinement degree of the preparation process, stirring roller pieces are arranged in each mixing cavity for mixing and stirring, and the mixing roller pieces are made to axially slide and rotate in an inclined reciprocating manner, so that the mixing quality is improved; the material guide seat is internally provided with the cut-off piece, so that the cut-off treatment can be effectively carried out on the material supply spray seat of each material, and the influence of glue threads generated in the material supply process on the material ratio is prevented.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a continuous compounding assembly according to the present invention;
FIG. 3 is a schematic view of the construction of an inner compounding assembly of the present invention;
FIG. 4 is a partial schematic view of an agitator member according to the present invention;
FIG. 5 is a schematic view of a feeding nozzle base according to the present invention;
FIG. 6 is a partial schematic view of a material guide seat according to the present invention;
FIG. 7 is a schematic view of the structure of the collection and discharge assembly of the present invention;
in the figure: the device comprises an external fixed machine shell 1, an upper connecting frame body 2, a material storage box 3, a continuous mixing component 4, a load-bearing barrel 401, a fixed ring 402, a switching ball 403, a mounting column 404, a rotating motor 405, a collecting and discharging component 5, a main driving wheel 501, a driving wheel 502, a connecting branch 503, a collecting cavity 504, a laminated calandria 505, a conveying calandria 6, a material guiding pump 601, an internal mixing component 7, a guiding branch 701, a stirring roller 702, an internal motor 703, a mounting bracket 704, a connecting support 705, a limiting support 706, a connecting spring I707, a connecting spring II 708, an arc-shaped flitch 709, a material guiding seat 710, a material supplying spray seat 8, a continuous shrinkage pipe 801, an adjustable expansion rod 802, an elastic ring 803, an elastic ring 804 and a reset spring 805.
Detailed Description
Referring to fig. 1, the present invention provides a technical solution: a continuous mixing device based on a cleaning agent comprises an external fixed machine shell 1, an upper connecting frame body 2, storage box parts 3, a continuous mixing assembly 4, a collecting and discharging assembly 5 and a conveying pipe 6, wherein the upper end face of the external fixed machine shell 1 is provided with a built-in concave position for mounting the upper connecting frame body 2, the upper connecting frame body 2 is vertically embedded and fixed in the middle of the upper end face of the external fixed machine shell 1, the inner circumference array of the upper connecting frame body 2 is provided with a plurality of storage box parts 3, each storage box part 3 is vertically fixed in the upper connecting frame body 2 in equal height, and a plurality of preparation raw materials are stored in the storage box parts 3;
moreover, a continuous mixed component 4 is arranged at the lower side in the upper connecting frame body 2, the continuous mixed component 4 is positioned under the material storage box component 3, and two or more than two preparation raw materials in the material storage box component 3 are mixed;
a collecting and discharging component 5 is communicated below the continuous mixed component 4, and after various preparation raw materials are mixed in different proportions, the collecting and discharging component 5 collects and concentrates the formed mixed materials;
a conveying calandria 6 is arranged below the collecting and discharging assembly 5, and the conveying calandria 6 conveys the collected preparation materials to an external processing device (not shown in the figure), and the external processing device performs forming processing and packaging;
the conveying calandria 6 is also rotatably provided with a material guide pump 601, and the cleaning agent preparation material is divided into a plurality of different types for pre-mixing and proportioning, namely, a blending process is added in the preparation process, so that the cleaning agent preparation material can be conveniently secondarily adjusted for a certain characteristic in the later adjustment process, the whole content proportion is not influenced, and the preparation efficiency is improved.
Referring to fig. 2, in this embodiment, the continuous mixing assembly 4 includes a bearing cylinder 401, a fixing ring seat 402, a switching ball 403, a rotating electrical machine 405, a mounting column seat 404, and an inner mixing assembly 7, wherein the bearing cylinder 401 is coaxially mounted in the upper connection frame 2, and the fixing ring seat 402 is sleeved on the outer side of the circumference of the bearing cylinder 401;
an annular groove for limiting and driving the adapting ball elements 403 is formed in the inner circumferential side wall of the upper connecting frame body 2, the fixed ring seat 402 is rotatably connected with the upper connecting frame body 2 through the plurality of adapting ball elements 403, a rotating motor 405 is installed on the upper connecting frame body 2, and the output end of the rotating motor 405 drives the bearing cylinder element 401 to perform unidirectional circular rotation motion through the meshing transmission action of an external gear;
a plurality of isolation plate pieces (not shown in the figure) are arranged on the inner circumference of the bearing cylinder piece 401, and each isolation plate piece divides the bearing cylinder piece 401 into a plurality of mixing chambers;
Referring to fig. 3, in this embodiment, the inner mixing component 7 includes a stirring roller 702, an internal motor 703, a mounting bracket 704, a guide support 701 and a connecting support 705, wherein a cross section of an inner circumferential sidewall of the bearing cylinder 401 is an arc-shaped structure, a plurality of guide supports 701 are obliquely arranged on a circumferential sidewall of the mounting column base 404 through bearings, the internal motor 703 is mounted in the mounting column base 404, and an output end of the internal motor 703 is connected with the guide supports 701 through a bevel gear engagement for transmission;
a stirring roller member 702 is coaxially installed at one end of the guide support member 701, a connecting support 705 is fixed in the bearing cylinder member 401, and the connecting support 705 is rotatably connected with one end of the stirring roller member 702;
the guide support 701 extends into one side of the mounting column base 404 and is further rotatably sleeved with a mounting bracket 704, and the mounting bracket 704 is fixed with the inner wall of the mounting column base 404.
Referring to fig. 4, in this embodiment, a limit strut 706 is coaxially disposed in the middle of the connecting support 705, and one end of the limit strut 706 extends into the stirring roller 702;
the circumferential edge of one side of the connecting support 705 close to the stirring roller 702 is of a corrugated structure, a plurality of auxiliary guide wheels are arranged on the circumference of the stirring roller 702 in a relatively rotatable manner, and the auxiliary guide wheels rotate along the edge of the connecting support 705, so that when the stirring roller 702 rotates and stirs, the stirring roller simultaneously performs local axial reciprocating offset motion;
a first connecting spring 707 is also arranged between the limiting support rod 706 and the stirring roller member 702;
and, the one end that the stirring roller spare 702 stretched into the direction branch 701 is arranged and is equipped with connecting spring two 708 for this stirring roller spare can be with sinking in the preparation material of compounding cavity bottom on circulating the stream, improves the mixing effect.
In this embodiment, the upper end of each mixing chamber is obliquely provided with a material guiding seat 710;
the port department that is located each guide seat 710 installs arc flitch 709, evenly set up a plurality of defeated material row mouths that are used for arranging the material on the arc flitch 709.
Referring to fig. 5 and 6, in this embodiment, the lower end surface of the material storage box 3 is communicated with a material supply spraying seat 8 through a continuous shrinkage pipe 801, one side of the material supply spraying seat 8 is hinged to the inner wall of the upper connecting frame body 2, the other side of the material supply spraying seat 8 is hinged to an adjustable expansion link 802, the adjustable expansion link 802 is rotatably connected with the material storage box 3, and the material supply spraying seat 8 is controlled to be in sealing engagement with a material guide seat 710 by the expansion and contraction action of the adjustable expansion link 802;
an elastic ring member 803 is arranged on the inner ring of the material guide seat 710, a plurality of closure members 804 are arranged on the inner circumference of the elastic ring member 803 in an array manner, and each closure member 804 can perform closure cleaning on the port of the material guide seat 710 when the material guide seat 8 is separated from the material guide seat 710;
a plurality of reset springs 805 are further arranged between the cut-off piece 804 and the elastic ring piece 803, and after the feeding spray seat finishes feeding, the cut-off piece cuts off the port of the cut-off piece, so that the cut-off piece is prevented from generating rubber wires when being separated from the guide seat, and the internal mixed adjustment cleaning effect is ensured.
Referring to fig. 7, in the present embodiment, the collecting and discharging assembly 5 includes a main driving wheel 501, a driving wheel 502, a connecting branch pipe 503, a collecting cavity 504, and a stacked discharge pipe 505, wherein the collecting cavity 504 is coaxially disposed in the mounting column base 404, the upper end of the collecting cavity 504 is communicated with a plurality of connecting branch pipes 503, and each connecting branch pipe 503 is respectively communicated with the mixing chamber;
the lower end of the collecting cavity piece 504 is provided with a laminated calandria 505;
moreover, a plurality of main driving wheels 501 are arranged at the lower end of the bearing cylinder 401 in a relatively rotatable manner, each main driving wheel 501 is provided with a transmission wheel member 502 through a transmission belt member in a linkage manner, and each transmission wheel member 502 extrudes and merges the gathered mixed materials in the stacked calandria 505 through a circumferential rotation effect.
In this embodiment, the laminated rack pipe 505 has a plurality of extrusion members disposed on the outer circumference thereof, and the extrusion members are staggered during rotation, thereby improving the blending effect.
A continuous mixing process based on cleaning agents comprises the following steps:
s1, preparing a preparation material; the storage box components 3 storing the flavoring agents (which can be set with various flavors and can be selected by themselves), the solubilizing agents, the foaming agents (which can be classified according to the foam molding proportion), the pigments (which can be classified with various color numbers and can be selected by themselves) and the coconut oil materials and the like are respectively inversely arranged on the upper connecting frame body 2, and the constant-pressure feeding can be carried out through the feeding spray seat 8;
s2, mixing multiple materials; according to the content proportion of the preparation process of the cleaning agent, one preparation material is respectively and automatically taken and injected into different mixing cavities in advance, and then another or more preparation materials are injected into the mixing cavities according to the characteristic that the materials are easy to fuse and merge, so that the premixing preparation is realized, and the content of the preparation materials in each mixing cavity is moderate;
s3, uniformly mixing the materials; each stirring roller 702 is driven by a built-in motor 703 to perform mixing and stirring work;
s4, collecting current and concentrating; the premixed materials in each mixing chamber are conveyed to a collecting cavity piece 504 through a connecting branch pipe 503 to be mixed, and are extruded and converged by a transmission wheel piece 502;
s5, preparing drainage; the material guiding pump 601 conveys the preparation material to the external processing equipment through the conveying calandria 6 and carries out the final procedure processing and packaging
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can substitute or change the technical solution of the present invention and the inventive concept within the technical scope of the present invention, and the technical solution and the inventive concept thereof should be covered by the scope of the present invention.
Claims (4)
1. The utility model provides a thoughtlessly join in marriage device in succession based on cleaner, its includes external fixation casing (1), goes up and connects support body (2), storage box spare (3), joins in succession and joins in marriage subassembly (4), collects row's material subassembly (5) and carry calandria (6), wherein, the up end of external fixation casing (1) is equipped with and is used for the installation go up the built-in concave position of connection support body (2), it fixes to go up the vertical embedding of connection support body (2) the up end middle part of external fixation casing (1), its characterized in that: a plurality of storage box pieces (3) are arranged on the inner circumference of the upper connecting frame body (2) in an array mode, each storage box piece (3) is vertically fixed in the upper connecting frame body (2) in an equal height mode, and a plurality of preparation raw materials are stored in the storage box pieces (3);
moreover, a continuous mixed component (4) is arranged on the lower side in the upper connecting frame body (2), the continuous mixed component (4) is positioned under the material storage box component (3), and two or more than two preparation raw materials in the material storage box component (3) are mixed;
a collecting and discharging component (5) is communicated below the continuous mixed component (4), and after various preparation raw materials are mixed in different proportions, the collecting and discharging component (5) collects and concentrates the formed mixed materials;
a conveying calandria (6) is arranged below the collecting and discharging assembly (5), and the conveying calandria (6) conveys the collected preparation materials to external processing equipment, and the external processing equipment performs forming processing and packaging;
a material guide pump piece (601) is also rotatably arranged on the conveying discharge pipe (6);
the continuous mixing assembly (4) comprises a bearing cylinder piece (401), a fixed ring seat (402), a switching ball piece (403), a rotating motor (405), a mounting column seat (404) and an inner mixing assembly (7), wherein the bearing cylinder piece (401) is coaxially mounted in the upper connecting frame body (2), and the fixed ring seat (402) is sleeved on the outer side of the circumference of the bearing cylinder piece (401);
an annular groove for limiting and driving the switching ball pieces (403) is formed in the inner circumferential side wall of the upper connecting frame body (2), the fixed ring seat (402) is rotatably connected with the upper connecting frame body (2) through the switching ball pieces (403), a rotating motor (405) is mounted on the upper connecting frame body (2), and the output end of the rotating motor (405) drives the bearing cylinder piece (401) to do unidirectional circular rotation motion through the meshing transmission action of an external gear;
a plurality of isolation plate pieces are arranged on the inner circumference of the bearing cylinder piece (401), and the bearing cylinder piece (401) is uniformly divided into a plurality of mixing chambers by the isolation plate pieces;
an installation column base (404) is coaxially and vertically fixed inside the bearing cylinder piece (401) in a penetrating manner, a plurality of inner mixing assemblies (7) are arranged on the installation column base (404), each inner mixing assembly (7) corresponds to the mixing cavity one by one, and a plurality of preparation raw materials are uniformly mixed after entering the mixing cavity;
the inner mixing component (7) comprises a stirring roller member (702), a built-in motor (703), a mounting bracket (704), a guide support member (701) and a connecting support (705), wherein the cross section of the inner circumferential side wall of the bearing barrel member (401) is of an arc-shaped structure, a plurality of guide support members (701) are obliquely arranged on the circumferential side wall of the mounting column base (404) through bearings in a relatively rotatable manner, the built-in motor (703) is mounted in the mounting column base (404), and the output end of the built-in motor (703) is connected with and driven by the guide support members (701) through a bevel gear meshing effect;
a stirring roller piece (702) is coaxially installed at one end of the guide support piece (701), a connecting support (705) is fixed in the bearing cylinder piece (401), and the connecting support (705) is rotatably connected with one end of the stirring roller piece (702);
a mounting bracket (704) is further rotatably sleeved outside one side of the guide support (701) extending into the mounting column base (404), and the mounting bracket (704) is fixed with the inner wall of the mounting column base (404);
a limiting support rod (706) is coaxially arranged in the middle of the connecting support (705), and one end of the limiting support rod (706) extends into the stirring roller piece (702);
the circumferential edge of one side, close to the stirring roller piece (702), of the connecting support (705) is of a corrugated structure, a plurality of auxiliary guide wheels are arranged on the upper circumference of the stirring roller piece (702) in a relatively rotating manner and rotate along the edge of the connecting support (705) by the auxiliary guide wheels, so that when the stirring roller piece (702) is rotationally stirred, the stirring roller piece simultaneously performs local axial reciprocating offset motion;
a first connecting spring (707) is arranged between the limiting support rod (706) and the stirring roller piece (702);
a second connecting spring (708) is arranged at one end of the stirring roller (702) extending into the guide support piece (701);
the upper end of each mixing cavity is obliquely provided with a material guide seat (710);
arc-shaped material plates (709) are arranged at the end openings of the material guide seats (710), and a plurality of material conveying discharge openings for discharging materials are uniformly formed in the arc-shaped material plates (709);
the lower end face of the material storage box part (3) is communicated with a material supply spraying seat (8) through a continuous shrinkage pipe (801), one side of the material supply spraying seat (8) is hinged to the inner wall of the upper connecting frame body (2), the other side of the material supply spraying seat (8) is hinged to an adjustable expansion link (802), the adjustable expansion link (802) is rotatably connected with the material storage box part (3), and the material supply spraying seat (8) is controlled to be in sealing connection with the material guide seat (710) through the expansion effect of the adjustable expansion link (802);
an elastic ring piece (803) is arranged on the inner ring of the material guide seat (710), a plurality of closure pieces (804) are arranged on the inner circumference array of the elastic ring piece (803), and each closure piece (804) can perform closure cleaning on the port of the material guide seat (710) when the feeding spray seat (8) is separated from the material guide seat;
a plurality of return springs (805) are further arranged between the cut-off piece (804) and the elastic ring piece (803).
2. The continuous mixing and blending device based on cleaning agents as claimed in claim 1, wherein: the collecting and discharging assembly (5) comprises a main driving wheel (501), a transmission wheel piece (502), connecting branch pipes (503), a collecting cavity piece (504) and a laminated discharge pipe (505), wherein the collecting cavity piece (504) is coaxially arranged in the mounting column seat (404), the upper end of the collecting cavity piece (504) is communicated with a plurality of connecting branch pipes (503), and each connecting branch pipe (503) is respectively communicated with the mixing cavity;
the lower end of the collecting cavity piece (504) is provided with a laminated calandria (505);
and the lower end of the bearing cylinder part (401) can be relatively provided with a plurality of main driving wheels (501), each main driving wheel (501) is provided with a transmission wheel part (502) through a transmission belt part in a linkage manner, and each transmission wheel part (502) extrudes and fuses the collected mixed materials in the laminated exhaust pipe (505) through the circumferential rotation effect.
3. The continuous mixing and blending device based on cleaning agents as claimed in claim 2, wherein: the outer circumference of the laminated calandria (505) is provided with a plurality of extruded parts.
4. A continuous compounding process based on cleaning agent, which adopts the continuous compounding device based on cleaning agent as claimed in claim 2 or 3, and is characterized in that: which comprises the following steps:
s1, preparing a preparation material; the storage box parts (3) which store the flavoring agent, the solubilizer, the foaming agent, the pigment and the coconut oil are respectively inverted on the upper connecting frame body (2) and can carry out constant-pressure feeding through the feeding spray seat (8);
s2, mixing multiple materials; according to the content proportion of the preparation process of the cleaning agent, one preparation material is respectively and automatically taken and injected into different mixing cavities in advance, and then another or more preparation materials are injected into the mixing cavities according to the characteristic that the materials are easy to fuse and merge, so that the premixing preparation is realized, and the content of the preparation materials in each mixing cavity is moderate;
s3, uniformly mixing the materials; each stirring roller (702) is driven by an internal motor (703) to carry out mixing and stirring work;
s4, collecting current and concentrating; the premixed materials in each mixing chamber are conveyed to a collecting cavity piece (504) through a connecting branch pipe (503) to be mixed, and are extruded and blended by a transmission wheel piece (502);
s5, preparing drainage; the material guiding pump (601) conveys the preparation material to the external processing equipment through the conveying calandria (6) and the final procedure processing and packaging are carried out.
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