CN221182476U - Novel uniform anti-sticking dispersion machine - Google Patents

Novel uniform anti-sticking dispersion machine Download PDF

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Publication number
CN221182476U
CN221182476U CN202323168472.1U CN202323168472U CN221182476U CN 221182476 U CN221182476 U CN 221182476U CN 202323168472 U CN202323168472 U CN 202323168472U CN 221182476 U CN221182476 U CN 221182476U
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dispersion
tabs
sticking
dispenser
shaft
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CN202323168472.1U
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朱超浪
伊华盛
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Fujian Minghong Resin Co ltd
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Fujian Minghong Resin Co ltd
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Abstract

The utility model relates to a novel uniform anti-adhesive dispersing machine which comprises a storage vat, an exhaust cover, a stirring assembly and a driving motor, wherein the exhaust cover is arranged above the storage vat, the stirring assembly is rotatably arranged on the exhaust cover through the driving motor, the stirring assembly comprises a stirring shaft, a first dispersing disc, a second dispersing disc, a third dispersing disc and a first scraping plate, the stirring shaft is arranged on the exhaust cover in a lifting manner, the first dispersing disc, the second dispersing disc and the third dispersing disc are sequentially arranged from top to bottom along the central line of the stirring shaft, the first dispersing disc, the second dispersing disc and the third dispersing disc are respectively and detachably arranged on the stirring shaft, the third dispersing disc is of a downward concave arc-shaped curved surface structure, and more than three through holes are formed in the third dispersing disc. The utility model has the advantages of convenient operation, uniform dispersion and effective improvement of the dispersion efficiency, and can solve the problem of anti-sticking of raw materials in the dispersion process.

Description

Novel uniform anti-sticking dispersion machine
Technical Field
The utility model relates to the technical field of dispersing devices, in particular to a novel uniform anti-sticking dispersing machine.
Background
The dispersing machine is used for crushing, dispersing, emulsifying and mixing pasty liquid raw materials with different viscosities, and the high-speed shearing, impacting, crushing and dispersing of the materials are carried out through high-efficiency stirring equipment with upper and lower saw teeth of a dispersing disc, so that the functions of rapid mixing, dissolving, dispersing and refining are achieved. However, in the existing dispersing machine, the stirring component is limited by the structure and does not have the function of moving up and down, so that the quality is affected by the uneven dispersion of the whole raw materials, and meanwhile, the raw materials to be dispersed are stuck on the inner wall of the storage vat in the dispersing process, so that the dispersion is uneven.
Disclosure of utility model
In order to overcome the defects in the prior art, the technical problems to be solved by the utility model are as follows: the novel uniform anti-sticking dispersing machine can be used for uniformly dispersing and solving the anti-sticking problem of raw materials in the dispersing process, and effectively improving the dispersing efficiency.
In order to solve the technical problems, the utility model adopts the following technical scheme: the utility model provides a novel even antiseized nature dispenser, includes storage vat, exhaust lid, stirring subassembly and driving motor, the exhaust lid sets up the top of storage vat, stirring subassembly passes through driving motor rotatable setting is covered in the exhaust, stirring subassembly includes (mixing) shaft, first dispersion disk, second dispersion disk, third dispersion disk and first scraper blade, (mixing) shaft liftable setting is covered in the exhaust, first dispersion disk, second dispersion disk and third dispersion disk follow down in proper order along the (mixing) shaft central line, first dispersion disk, second dispersion disk and third dispersion disk detachable setting respectively are on the (mixing) shaft, the third dispersion disk is the circular arc curved surface structure of undercut, set up the through-hole more than three on the third dispersion disk, first scraper blade is connected with the (mixing) shaft detachable, first scraper blade offsets with the inner wall of storage vat and sets up.
Further, the first dispersion disk includes a first dispersion disk main body, 10 or more first tabs and 10 or more second tabs are distributed in sequence along the circumference of the first dispersion disk main body, 10 or more first tabs are respectively arranged towards the exhaust cover, 10 or more second tabs are respectively arranged towards the storage barrel, and the first tabs and the second tabs are arranged in a staggered manner.
Further, the second dispersion disk includes a second dispersion disk main body, more than 12 third tabs and more than 12 fourth tabs are distributed along the circumference of the second dispersion disk main body in sequence, more than 12 third tabs are respectively arranged towards the exhaust cover, more than 12 fourth tabs are respectively arranged towards the storage barrel, and the third tabs and the fourth tabs are staggered.
Further, the second dispersion disk main body is provided with more than two auxiliary dispersion grooves, and the more than two auxiliary dispersion grooves are arranged at intervals along the circumferential direction of the second dispersion disk main body.
Further, the stirring device further comprises a second scraping plate, the second scraping plate is arranged on the stirring shaft, the second scraping plate is propped against the inner wall of the storage barrel, and the first scraping plate and the second scraping plate are symmetrically arranged along the central line of the stirring shaft.
Further, the device also comprises a viewing window, wherein the viewing window is arranged on the exhaust cover.
Further, the diameter of the third dispersion plate is larger than that of the second dispersion plate.
Further, still include supplementary vibrator, supplementary vibrator includes first support column, second support column, locating plate and movable rod, the one end of first support column is connected with the bottom of storage vat, the movable rod is connected to the other end of first support column, the one end of second support column is connected to the other end of movable rod, the other end of second support column sets up on the locating plate.
Further, the device also comprises a spring, wherein the spring is sleeved on the movable rod.
The utility model has the beneficial effects that: through set gradually first dispersion impeller, second dispersion impeller and third dispersion impeller from last down on the (mixing) shaft, utilize the through-hole cooperation on the third dispersion impeller of the circular arc curved surface of undercut and the third dispersion impeller, drive the pulpiness raw materials of bottom to second dispersion impeller and first dispersion impeller carry out intensive mixing and dispersion etc. many times, cooperate the (mixing) shaft of liftable simultaneously, stir the pulpiness raw materials of different co-altitude in the storage vat for dispersed more evenly, effectually improved dispersion efficiency. The first scraping plate is additionally arranged, the inner wall of the storage vat can be scraped through rotation of the stirring shaft, and the situation that part of raw materials are mixed and dispersed unevenly because of being stuck to the inner wall of the vat is avoided. The utility model not only can realize uniform dispersion, but also can solve the problem of sticking of raw materials in the dispersing process, and effectively improves the dispersing efficiency.
Drawings
FIG. 1 is a schematic structural view of a novel uniform anti-tackiness dispenser according to an embodiment of the utility model;
FIG. 2 is a front view of a novel uniform anti-tack dispenser in accordance with an embodiment of the utility model;
FIG. 3 is a schematic structural view showing a stirring assembly of a novel uniform anti-sticking dispersion machine according to an embodiment of the present utility model;
fig. 4 is a front view of a stirring assembly of a novel uniform anti-sticking dispenser according to an embodiment of the present utility model.
Fig. 5 is a cross-sectional view showing a novel uniform anti-sticking dispenser according to an embodiment of the present utility model.
Description of the reference numerals:
1. A storage barrel; 2. An exhaust cover; 3. A stirring assembly; 31. a stirring shaft; 32. A first dispersion plate; 321. A first dispersion disk main body; 322. a first tab; 323. A second tab; 33. A second dispersion disk; 331. a second divider body; 332. a third tab; 333. A fourth tab; 334. an auxiliary dispersion tank; 34. A third dispersion plate; 35. A first scraper; 5. a second scraper; 6. An observation window; 7. An auxiliary vibration device; 71. a first support column; 72. A second support column; 73. A positioning plate; 74. a movable rod; 75. And (3) a spring.
Detailed Description
In order to describe the technical contents, the achieved objects and effects of the present utility model in detail, the following description will be made with reference to the embodiments in conjunction with the accompanying drawings.
Referring to fig. 1 to 5, the present utility model provides the following technical solutions: the utility model provides a novel even antiseized nature dispenser, includes storage vat 1, exhaust lid 2, stirring subassembly 3 and driving motor 4, exhaust lid 2 sets up the top of storage vat 1, stirring subassembly 3 passes through driving motor 4 rotatable setting is on exhaust lid 2, stirring subassembly 3 includes (mixing) shaft 31, first dispersion dish 32, second dispersion dish 33, third dispersion dish 34 and first scraper blade 35, (mixing) shaft 31 liftable setting is on exhaust lid 2, first dispersion dish 32, second dispersion dish 33 and third dispersion dish 34 follow the (mixing) shaft 31 central line from last down set gradually, first dispersion dish 32, second dispersion dish 33 and third dispersion dish 34 respectively detachable set up on (mixing) shaft 31, third dispersion dish 34 is concave circular arc type curved surface structure, set up the through-hole 341 more than three on the third dispersion dish 34, first scraper blade 35 can dismantle with (mixing) shaft 31 and be connected, first scraper blade 35 offsets with the inner wall setting of storage vat 1.
From the above description, the beneficial effects of the utility model are as follows: through set gradually first dispersion disk 32, second dispersion disk 33 and third dispersion disk 34 from last down on (mixing) shaft 31, utilize the cooperation of the through-hole 341 on the third dispersion disk 34 of the circular-arc curved surface that is concave downwards, drive the pulpiness raw materials of bottom to second dispersion disk 33 and first dispersion disk 32 and carry out intensive mixing and dispersion etc. many times, cooperate simultaneously on liftable (mixing) shaft 31, stir the pulpiness raw materials of different co-altitude in the storage vat 1 for dispersed more evenly, effectually improved dispersion efficiency. The first scraping plate 35 is additionally arranged, and can scrape the inner wall of the storage vat 1 through the rotation of the stirring shaft 31, so that the situation that part of raw materials are mixed and dispersed unevenly because of being stuck on the inner wall of the vat is avoided. The utility model not only can realize uniform dispersion, but also can solve the problem of sticking of raw materials in the dispersing process, and effectively improves the dispersing efficiency. Preferably, a discharge hole is formed in the storage barrel, and the discharge hole is formed in the bottom of the storage barrel; preferably, the exhaust cover is provided with an exhaust port; preferably, the stirring shaft is arranged on the exhaust cover in a lifting manner, and the lifting manner can be an air cylinder, a screw rod assembly, a gear rack combination or a telescopic rod. Preferably, the stirring shaft is lifted and lowered by the air cylinder. Preferably, the driving motor and the stirring shaft are connected in a manner of two gears meshed or belt driven. Preferably, the shape of the through hole is round, oval or water drop.
Further, the first dispersion disk 32 includes a first dispersion disk main body 321, 10 or more first tabs 322, and 10 or more second tabs 323, the 10 or more first tabs 322 and the 10 or more second tabs 323 are sequentially distributed along the circumference of the first dispersion disk main body 321, the 10 or more first tabs 322 are respectively disposed toward the air discharge cap 2, the 10 or more second tabs 323 are respectively disposed toward the storage bucket 1, and the first tabs 322 and the second tabs 323 are alternately disposed.
Further, the second dispersion disk 33 includes a second dispersion disk main body 331, 12 or more third fins 332, and 12 or more fourth fins 333, the 12 or more third fins 332, and the 12 or more fourth fins 333 are sequentially distributed along the circumference of the second dispersion disk main body 331, the 12 or more third fins 332 are respectively disposed toward the exhaust cover 2, the 12 or more fourth fins 333 are respectively disposed toward the storage bucket 1, and the third fins 332 and the fourth fins 333 are staggered.
Further, the second dispersion disk main body 331 is provided with more than two auxiliary dispersion grooves 334, and the more than two auxiliary dispersion grooves 334 are arranged at intervals along the circumferential direction of the second dispersion disk main body 331.
As can be seen from the above description, the number of the first tabs 322 and the second tabs 323 is preferably 16, and the number of the third tabs 332 and the fourth tabs 333 is preferably 18. Preferably, the diameters of the first dispersion plate and the second dispersion plate are the same. By arranging different total lugs on the first dispersion plate and the second dispersion plate, stirring of different degrees is realized through different gaps between adjacent lugs. Preferably, the auxiliary dispersing groove 334 on the second dispersing disc main body 331 has a fan-shaped structure, the auxiliary dispersing groove 334 with a fan-shaped structure is formed on the second dispersing disc main body 331 to stir the raw materials of the third dispersing disc 34, the raw materials are stirred by the second dispersing disc 33, and then the raw materials are sent to the first dispersing disc 32 to be fully dispersed by the cooperation of the second dispersing disc 33 and the auxiliary dispersing groove 334, so that the dispersion is more uniform, and the dispersion efficiency is effectively improved.
Further, the stirring device further comprises a second scraper 5, the second scraper 5 is arranged on the stirring shaft 31, the second scraper 5 is propped against the inner wall of the storage vat 1, and the first scraper 35 and the second scraper 5 are symmetrically arranged along the central line of the stirring shaft 31.
From the above description, the first scraping plate 35 and the second scraping plate 5 which are symmetrically arranged scrape the inner wall of the storage vat 1 in a reciprocating manner, so that the raw materials adhered to the inner wall of the storage vat 1 are scraped off to be well mixed and dispersed with the raw materials in the vat, and the dispersing efficiency is effectively improved. Preferably, the first scraper 35 and the second scraper 5 are respectively L-shaped, one end of the L-shaped is fixed on the stirring shaft through a connecting piece, and the other end of the L-shaped is arranged towards the storage vat and near the bottom of the storage vat. Preferably, the materials of the first scraping plate and the second scraping plate can be changed according to the viscosity of the dispersed raw materials.
Further, a viewing window 6 is further included, and the viewing window 6 is disposed on the exhaust cover 2.
As can be seen from the above description, preferably, the transparent plate is disposed on the observation window 6, so that an operator can observe the dispersion situation of the storage vat 1 at any time. Preferably, the number of the observation windows is 2, and the 2 observation windows are respectively arranged on the exhaust hood. The size of the observation window can be set correspondingly according to the size of the storage barrel.
Further, the diameter of the third dispersion plate 34 is larger than the diameter of the second dispersion plate 33.
As can be seen from the above description, it is preferable that the diameter of the third dispersion plate 34 is greater than one half of the diameter of the storage bucket 1; preferably, the third dispersion plate 34 is directly two thirds of the storage vat 1, and the large-sized circular arc-shaped curved surface third dispersion plate 34 can stir the materials at the bottom greatly, and simultaneously is easy to stir to obtain the materials with larger dynamic viscosity. Preferably, the third dispersion plate 34 is an integrally formed structure. Preferably, the bottom structure of the storage vat 1 is adapted to the shape of the third dispersion plate 34, so as to prevent raw materials from accumulating.
Further, the auxiliary vibration device 7 is further included, the auxiliary vibration device 7 comprises a first supporting column 71, a second supporting column 72, a positioning plate 73 and a movable rod 74, one end of the first supporting column 71 is connected with the bottom of the storage bucket 1, the other end of the first supporting column 71 is connected with the movable rod 74, the other end of the movable rod 74 is connected with one end of the second supporting column 72, and the other end of the second supporting column 72 is arranged on the positioning plate 73.
Further, a spring 75 is further included, and the spring 75 is sleeved on the movable rod 74.
As can be seen from the above description, it is preferable that the number of the first support post 71, the second support post 72, the positioning plate 73, the movable rod 74 and the spring 75 is 4, and the 4 auxiliary vibration devices are symmetrically arranged in pairs. When the driving motor 4 drives the stirring shaft 31 to work, the vibration effect of the whole device can be increased through the action of the spring 75 on the movable rod 74, so that the raw materials are dispersed. The positioning plate 73 may be fixed at the installation position by a connection member. Preferably, the first support column 71 may be integrally formed with the storage bucket 1, or may be detachable.
Referring to fig. 1 to 5, a first embodiment of the present utility model is as follows: the novel uniform anti-sticking dispersing machine comprises a storage vat 1, an exhaust cover 2, a stirring assembly 3 and a driving motor 4, wherein the exhaust cover 2 is arranged above the storage vat 1, the stirring assembly 3 is rotatably arranged on the exhaust cover 2 through the driving motor 4, the stirring assembly 3 comprises a stirring shaft 31, a first dispersing disc 32, a second dispersing disc 33, a third dispersing disc 34 and a first scraper 35, the stirring shaft 31 is arranged on the exhaust cover 2 in a lifting manner, the first dispersing disc 32, the second dispersing disc 33 and the third dispersing disc 34 are sequentially arranged from top to bottom along the central line of the stirring shaft 31, The first dispersing disc 32, the second dispersing disc 33 and the third dispersing disc 34 are respectively and detachably arranged on the stirring shaft 31, the third dispersing disc 34 is of a downward concave arc-shaped curved surface structure, more than three through holes 341 are formed in the third dispersing disc 34, the first scraping plate 35 is detachably connected with the stirring shaft 31, and the first scraping plate 35 is propped against the inner wall of the storage vat 1; The first dispersion disk 32 includes a first dispersion disk main body 321, 10 or more first tabs 322, and 10 or more second tabs 323, wherein 10 or more first tabs 322 and 10 or more second tabs 323 are sequentially distributed along the circumference of the first dispersion disk main body 321, 10 or more first tabs 322 are respectively disposed toward the exhaust cover 2, 10 or more second tabs 323 are respectively disposed toward the storage bucket 1, and the first tabs 322 and the second tabs 323 are alternately disposed; the second dispersion disk 33 includes a second dispersion disk main body 331, 12 or more third fins 332, and 12 or more fourth fins 333, the 12 or more third fins 332, and the 12 or more fourth fins 333 are sequentially distributed along the circumference of the second dispersion disk main body 331, the 12 or more third fins 332 are respectively disposed toward the exhaust cover 2, the 12 or more fourth fins 333 are respectively disposed toward the storage bucket 1, and the third fins 332 and the fourth fins 333 are alternately disposed; The second dispersion disk main body 331 is provided with more than two auxiliary dispersion grooves 334, and the more than two auxiliary dispersion grooves 334 are arranged at intervals along the circumferential direction of the second dispersion disk main body 331; the device further comprises a second scraper 5, wherein the second scraper 5 is arranged on the stirring shaft 31, the second scraper 5 is propped against the inner wall of the storage vat 1, and the first scraper 35 and the second scraper 5 are symmetrically arranged along the central line of the stirring shaft 31; further comprising a viewing window 6, said viewing window 6 being provided on said exhaust cover 2; the diameter of the third dispersion disk 34 is larger than the diameter of the second dispersion disk 33; the auxiliary vibration device 7 comprises a first support column 71, a second support column 72, a positioning plate 73 and a movable rod 74, wherein one end of the first support column 71 is connected with the bottom of the storage vat 1, the other end of the first support column 71 is connected with the movable rod 74, the other end of the movable rod 74 is connected with one end of the second support column 72, and the other end of the second support column 72 is arranged on the positioning plate 73; And a spring 75 is also included, and the spring 75 is sleeved on the movable rod 74.
In conclusion, the novel uniform anti-sticking dispersing machine provided by the utility model has the advantages of convenience in operation, uniformity in dispersion and capability of solving the anti-sticking problem of raw materials in the dispersing process and effectively improving the dispersing efficiency.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent changes made by the specification and drawings of the present utility model, or direct or indirect application in the relevant art, are included in the scope of the present utility model.

Claims (9)

1. Novel even antiseized nature dispenser, its characterized in that, including storage vat, exhaust lid, stirring subassembly and driving motor, the exhaust lid sets up the top of storage vat, stirring subassembly passes through driving motor rotatable setting is covered in the exhaust, stirring subassembly includes (mixing) shaft, first dispersion impeller, second dispersion impeller, third dispersion impeller and first scraper blade, the liftable setting of (mixing) shaft is covered in the exhaust, first dispersion impeller, second dispersion impeller and third dispersion impeller follow down in proper order along the (mixing) shaft central line, first dispersion impeller, second dispersion impeller and third dispersion impeller detachable setting respectively are on the (mixing) shaft, the third dispersion impeller is concave circular arc curved surface structure, set up the through-hole more than three on the third dispersion impeller, first scraper blade is connected with the (mixing) shaft is detachable, first scraper blade offsets with the inner wall of storage vat.
2. The novel uniform anti-sticking dispenser according to claim 1, wherein the first dispenser comprises a first dispenser body, 10 or more first tabs and 10 or more second tabs, the 10 or more first tabs and the 10 or more second tabs being distributed in sequence along the circumference of the first dispenser body, respectively, the 10 or more first tabs being disposed toward the vent cover, respectively, the 10 or more second tabs being disposed toward the storage tank, respectively, and the first tabs and the second tabs being staggered.
3. The novel uniform anti-sticking dispenser according to claim 1, wherein the second dispenser comprises a second dispenser body, 12 or more third tabs and 12 or more fourth tabs, the 12 or more third tabs and the 12 or more fourth tabs being distributed in sequence along the circumference of the second dispenser body, respectively, the 12 or more third tabs being disposed toward the vent cover, respectively, the 12 or more fourth tabs being disposed toward the storage tank, respectively, the third tabs and the fourth tabs being staggered.
4. The novel uniform anti-sticking dispenser according to claim 3, wherein the second dispersion disk main body is provided with more than two auxiliary dispersion grooves, and the more than two auxiliary dispersion grooves are arranged at intervals along the circumferential direction of the second dispersion disk main body.
5. The novel uniform anti-sticking dispersion machine according to claim 1, further comprising a second scraper blade, wherein the second scraper blade is arranged on the stirring shaft, the second scraper blade is arranged against the inner wall of the storage barrel, and the first scraper blade and the second scraper blade are symmetrically arranged along the central line of the stirring shaft.
6. The novel uniform, anti-sticking dispenser of claim 1, further comprising a viewing window disposed on said vent cover.
7. The novel uniform anti-sticking dispenser of claim 1, wherein the diameter of said third dispersion disk is greater than the diameter of said second dispersion disk.
8. The novel uniform anti-sticking dispersion machine according to claim 1, further comprising an auxiliary vibration device, wherein the auxiliary vibration device comprises a first support column, a second support column, a positioning plate and a movable rod, one end of the first support column is connected with the bottom of the storage vat, the other end of the first support column is connected with the movable rod, the other end of the movable rod is connected with one end of the second support column, and the other end of the second support column is arranged on the positioning plate.
9. The novel uniform anti-sticking dispenser of claim 8, further comprising a spring, said spring being sleeved on the movable bar.
CN202323168472.1U 2023-11-22 2023-11-22 Novel uniform anti-sticking dispersion machine Active CN221182476U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323168472.1U CN221182476U (en) 2023-11-22 2023-11-22 Novel uniform anti-sticking dispersion machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323168472.1U CN221182476U (en) 2023-11-22 2023-11-22 Novel uniform anti-sticking dispersion machine

Publications (1)

Publication Number Publication Date
CN221182476U true CN221182476U (en) 2024-06-21

Family

ID=91523353

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323168472.1U Active CN221182476U (en) 2023-11-22 2023-11-22 Novel uniform anti-sticking dispersion machine

Country Status (1)

Country Link
CN (1) CN221182476U (en)

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