CN215842675U - Quick compounding mechanism of high machine that mixes - Google Patents

Quick compounding mechanism of high machine that mixes Download PDF

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Publication number
CN215842675U
CN215842675U CN202122145262.5U CN202122145262U CN215842675U CN 215842675 U CN215842675 U CN 215842675U CN 202122145262 U CN202122145262 U CN 202122145262U CN 215842675 U CN215842675 U CN 215842675U
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box
feeding
mixing
discharging
discharging box
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CN202122145262.5U
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陈良川
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Suzhou Zhenghong Polymer Material Co ltd
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Suzhou Zhenghong Polymer Material Co ltd
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Abstract

The utility model provides a quick mixing mechanism of a high-speed mixer, which belongs to the technical field of high-speed mixers and comprises a feeding box, a mixing cylinder and a discharging box, wherein the feeding box is positioned at the left side of the discharging box; the motor drives the pivot and rotates, the pivot drives feeding spiral leaf respectively, stirring piece and ejection of compact spiral leaf rotate, feeding spiral leaf is continuous send into the material inside the compounding section of thick bamboo, and two motors drive compounding section of thick bamboo and rotate between feeding box and ejection of compact box, stirring piece rotates along with compounding section of thick bamboo rotation, because the cooperation of gear and ring gear is used and make stirring piece and stirring piece revolve to opposite, lead to the chamber and can play the effect of buffering and reposition of redundant personnel to the material of stirring, let the material rapid mixing even, the problem of current high-speed mixer's compounding mechanism to the material inhomogeneous of mixing is solved.

Description

Quick compounding mechanism of high machine that mixes
Technical Field
The utility model provides a quick material mixing mechanism of a high-speed mixer, and belongs to the technical field of high-speed mixers.
Background
The barrel body of the high-speed mixer adopts an arc-shaped structure, the mixing mechanism mainly utilizes a special blade structure, the principle is that materials form a vortex shape through the rotation of blades, the materials rise along the conical wall of the fixed mixing tank under the action of centrifugal force and are in a reverse rotation motion state to form a vortex motion, the materials with different densities are easily mixed uniformly in a short time, and the high-speed mixer is suitable for mixing and stirring the materials such as powder, particles, auxiliaries, toner, color master, plastics and the like.
Present high-speed mixer's compounding mechanism is with the vertical setting of mixing barrel, and wherein stirring vane generally all sets up the bottom at the vertical mixing barrel of putting, and after the mixing barrel was put into to the material inside, stirring vane only can stir the material of mixing barrel bottom, and the inside upper portion material of mixing barrel need rely on gravity and centrifugal force to roll mixing barrel bottom and just can be stirred by stirring vane to lead to the material to mix inhomogeneous easily, influenced the quality that the material mixes.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects of the prior art, provides a quick material mixing mechanism of a high-speed mixer, and solves the problem that the material is mixed unevenly by the material mixing mechanism of the conventional high-speed mixer.
The technical scheme adopted by the utility model for solving the technical problems is as follows: a fast mixing mechanism of a high mixing machine comprises a feeding box, a mixing barrel and a discharging box;
the feeding box is positioned at the left side of the discharging box, the mixing barrel is positioned between the feeding box and the discharging box, the left end and the right end of the mixing barrel respectively penetrate through the insides of the feeding box and the discharging box and are communicated with the insides of the feeding box and the discharging box, and rotating shafts are inserted among the feeding box, the mixing barrel and the discharging box;
the feeding spiral blade is arranged inside the feeding box, the discharging spiral blade is arranged inside the discharging box, the outer part of the rotating shaft penetrates through the inner sides of the feeding spiral blade and the discharging spiral blade respectively, and the outer part of the rotating shaft is welded with the feeding spiral blade and the discharging spiral blade respectively;
a plurality of groups of stirring pieces distributed in a surrounding manner are fixed on the outer wall of the rotating shaft and positioned in the mixing barrel, each group of stirring pieces is provided with at least three stirring pieces which are arranged in a left-right manner, a through cavity is formed in the middle of each stirring piece, an inclined piece is fixed at one end, far away from the rotating shaft, in each through cavity, and a scraping piece is fixed at the outer end between the inclined pieces in each group;
a plurality of stirring pieces which are arranged in an annular mode are fixed on the inner wall of the mixing cylinder, and a separation blade and a push-pull blade are arranged inside the discharging box and located at the upper end and the lower end of the left side of the discharging spiral blade respectively.
Specifically, a feeding hopper is mounted at the upper end of the feeding box, and the lower end of the feeding hopper penetrates into the feeding box and is communicated with the feeding box.
Specifically, motor one is installed to the feed box left end and be located the pivot left, the pivot rotates with feed box and ejection of compact box outer end respectively and is connected, the pivot left end is connected with the power take off end of motor one.
Specifically, the outer wall of the mixing barrel is sleeved with a toothed ring, the toothed ring is connected with a gear in the front meshing transmission mode, the right end of the gear is connected with a second motor in the front transmission mode, and the left end and the right end of the mixing barrel are respectively connected with the right end of the feeding box and the left end of the discharging box in a rotating mode.
Specifically, the scraping blades are distributed annularly, and the stirring pieces are distributed on the outer sides of the scraping blades.
Specifically, the push-pull piece is located below the separation blade, the rotating shaft penetrates through the inside of the separation blade and is connected with the separation blade in a rotating mode, the separation blade is fixedly connected with the top end of the inner portion of the discharge box, the lower end of the push-pull piece extends out of the lower end of the discharge box and is connected with the lower end of the discharge box in a sliding mode, the four corners of the left end of the push-pull piece are respectively fixed with a limiting block, the two limiting blocks in the front of and at the back of the upper end are located inside the discharge box, the two limiting blocks in the front of and at the back of the lower end are located below the discharge box, and the lower end of the discharge box is located at the right side of the push-pull piece and is connected with a discharge pipe penetrating through the discharge box through a flange.
Specifically, the inclination angle of the inclined sheet is forty-five degrees.
Compared with the prior art, the utility model has the following beneficial effects: the feeding hopper is used for feeding materials into the feeding box, the motor drives the rotating shaft to rotate, the rotating shaft drives the feeding spiral blade respectively, the stirring blade and the discharging spiral blade rotate, the feeding spiral blade continuously feeds the materials into the mixing barrel, the motor drives the mixing barrel to rotate between the feeding box and the discharging box, the stirring component rotates along with the rotation of the mixing barrel, the rotation directions of the stirring component and the stirring blade are opposite due to the matching of a gear and a toothed ring, the through cavity can play a role in buffering and shunting the stirred materials, the scraping blade can avoid the materials from being adhered to the inner wall of the mixing barrel, the materials are stirred uniformly and rapidly, the pushing and pulling piece is pulled downwards to separate the pushing and pulling piece from the separation blade, and the discharging spiral blade takes the materials out of the discharging pipe.
Drawings
FIG. 1 is a schematic view of the overall external structure of the present invention;
FIG. 2 is a cross-sectional view of the overall internal structure of the present invention;
FIG. 3 is a schematic view of the overall internal structure of the present invention;
FIG. 4 is a schematic view of the external structure of the stirring blade of the present invention;
FIG. 5 is a schematic view of the inner wall structure of the mixing barrel of the present invention;
FIG. 6 is a bottom view of the outer structure of the baffle plate and the push-pull plate of the present invention
Fig. 7 is a partially enlarged view of structure a of the present invention.
In the figure: 1-feeding box, 2-discharging box, 3-feeding hopper, 4-motor I, 5-feeding spiral blade, 6-discharging spiral blade, 7-separation blade, 8-push-pull blade, 9-limiting block, 10-motor II, 11-gear, 12-toothed ring, 13-mixing barrel, 14-stirring blade, 15-inclined blade, 16-scraping blade, 17-through cavity, 18-stirring piece, 19-rotating shaft and 20-discharging pipe.
Detailed Description
Referring to fig. 1-7, the present invention provides a technical solution: a fast mixing mechanism of a high mixing machine comprises a feeding box 1, a mixing barrel 13 and a discharging box 2;
the feeding box 1 is positioned at the left side of the discharging box 2, the mixing cylinder 13 is positioned between the feeding box 1 and the discharging box 2, the left end and the right end of the mixing cylinder 13 respectively penetrate through the feeding box 1 and the discharging box 2 and are communicated with the feeding box 1 and the discharging box 2, and a rotating shaft 19 is jointly inserted among the feeding box 1, the mixing cylinder 13 and the discharging box 2;
the feeding spiral blade 5 is arranged inside the feeding box 1, the discharging spiral blade 6 is arranged inside the discharging box 2, the outer part of the rotating shaft 19 penetrates through the inner sides of the feeding spiral blade 5 and the discharging spiral blade 6 respectively, and the outer part of the rotating shaft 19 is welded with the feeding spiral blade 5 and the discharging spiral blade 6 respectively;
a plurality of groups of stirring blades 14 distributed in a surrounding manner are fixed on the outer wall of the rotating shaft 19 and positioned in the mixing barrel 13, at least three stirring blades 14 are arranged in each group and arranged left and right, a through cavity 17 is formed in the middle of each stirring blade 14, an inclined blade 15 is fixed at one end, far away from the rotating shaft 19, in each through cavity 17, and a scraping blade 16 is fixed at the outer end between the inclined blades 15 in each group;
a plurality of stirring pieces 18 which are arranged in an annular shape are fixed on the inner wall of the mixing cylinder 13, and a blocking piece 7 and a push-pull piece 8 are respectively arranged in the discharging box 2 and at the left upper end and the left lower end of the discharging spiral blade 6;
a motor I4 is arranged at the left end of the feeding box 1 and positioned at the left of the rotating shaft 19, the rotating shaft 19 is respectively and rotatably connected with the outer ends of the feeding box 1 and the discharging box 2, the left end of the rotating shaft 19 is connected with the power output end of the motor I4, the motor I4 drives the rotating shaft 19 to rotate, the rotating shaft 19 respectively rotates at the left end of the feeding box 1, the inside of the baffle 7 and the right end of the discharging box 2, the rotating shaft 19 respectively drives the feeding helical blade 5, the stirring blade 14 and the discharging helical blade 6 to rotate, a toothed ring 12 is sleeved on the outer wall of the mixing barrel 13, a gear 11 is in meshing transmission connection with the front of the toothed ring 12, a motor II 10 is in transmission connection with the right end of the gear 11 and positioned at the front of the mixing barrel 13, the left end and the right end of the mixing barrel 13 are respectively and rotatably connected with the right end of the feeding box 1 and the left end of the discharging box 2, the motor II 10 drives the gear 11 to rotate, the gear 11 drives the toothed ring 12 to rotate in the opposite direction of the gear 11, so as to drive the mixing barrel 13 to rotate by the toothed ring 12, the mixing cylinder 13 rotates between the feeding box 1 and the discharging box 2, wherein the stirring piece 18 rotates along with the rotation of the mixing cylinder 13, and due to the matching use of the gear 11 and the gear ring 12, the direction of the rotation of the mixing cylinder 13 is opposite to that of the rotating shaft 19, so that the rotation directions of the stirring piece 18 and the stirring sheet 14 are opposite, and the stirring piece 18 and the stirring sheet 14 can simultaneously and quickly mix the materials uniformly;
the push-pull sheet 8 is positioned below the separation blade 7, the outer part of the rotating shaft 19 penetrates through the inner part of the separation blade 7 and is rotationally connected with the separation blade 7, the separation blade 7 is fixedly connected with the top end of the inner part of the discharging box 2, the lower end of the push-pull sheet 8 extends out of the lower end of the discharging box 2 and is slidably connected with the lower end of the discharging box 2, four corners of the left end of the push-pull sheet 8 are respectively fixed with a limiting block 9, the front limiting block 9 and the rear limiting block 9 at the upper end are positioned in the inner part of the discharging box 2, the front limiting block 9 and the rear limiting block 9 at the lower end are positioned at the right side of the push-pull sheet 8 and are connected with a discharging pipe 20 penetrating into the inner part of the discharging box 2 through a flange, the push-pull sheet 8 is pushed upwards to enable the upper end of the push-pull sheet 8 to contact with the lower end of the separation blade 7, so that the discharging box 2 is separated from the mixing barrel 13, the front limiting block 9 and the rear limiting block 9 at the lower end are just contacted with the lower end of the discharging box 2, the front limiting block 9 and the push-pull sheet 8 is locked, the feeding hopper 3 is installed at the upper end of the feeding box 1, the lower end of the hopper 3 penetrates into the feeding box 1 and is communicated with the feeding box 1, the feeding hopper 3 is used for feeding materials into the feeding box 1, the feeding spiral blade 5 plays a role in propelling the materials in the feeding box 1 in the rotating process, the materials creep from left to right along with the rotation of the feeding spiral blade 5, the feeding spiral blade 5 continuously feeds the materials into the mixing barrel 13, the inclined blade 15 revolves around the rotating shaft 19 in the rotating process of the stirring piece 18, the inclination angle of the inclined blade 15 is forty-five degrees, a certain space is left in the through cavity 17 according to the inclination angle of the inclined blade 15, so that the stirring piece 14 flows through the through cavity 17 in the rotating process, the through cavity 17 can play a role in buffering and distributing the stirred materials, the inclined blade 15 has the same stirring role as the stirring piece 14 at the same time, the stirring piece 18 is respectively matched with the stirring piece 14 and the inclined blade 15 for use, and can further enhance the mixing force of the materials, the scraping blades 16 are annularly distributed, the stirring pieces 18 are distributed on the outer sides of the scraping blades 16, meanwhile, the scraping blades 16 continuously clean the stirring pieces 18 along with the rotation of the stirring pieces 14, the scraping blades 16 can prevent materials from being adhered to the inner wall of the mixing barrel 13, and the materials stay in the mixing barrel 13 and are stirred along with the rotating stirring pieces 14, the inclined pieces 15, the scraping blades 16 and the stirring pieces 18 because the closed push-pull pieces 8 separate the discharging box 2 from the mixing barrel 13, so that the materials are quickly and uniformly stirred, and the aim of quickly and uniformly mixing the materials is fulfilled;
after the materials are uniformly mixed, the push-pull sheet 8 is pulled downwards to separate the push-pull sheet 8 from the blocking piece 7, the front and rear limiting blocks 9 at the lower end are separated from the lower end of the discharge box 2, the front and rear limiting blocks 9 at the upper end are contacted with the lower end inside the discharge box 2, so that the push-pull sheet 8 is opened, the front and rear limiting blocks 9 at the upper end limit the opened push-pull sheet 8 to prevent the push-pull sheet 8 from falling, so that the material box 2 is communicated with the mixing barrel 13, the principle of the material pushed by the discharge spiral blade 6 is basically the same as that of the feeding spiral blade 5, the specific operation process of the discharge spiral blade 6 refers to the feeding spiral blade 5, the material is fed into the discharge box 2 from the mixing barrel 13 by the discharge spiral blade 6, the material flows out inside the discharge pipe 20 by the rotating discharge spiral blade 6, and the material is convenient to be taken out through the discharge pipe 20.

Claims (7)

1. The utility model provides a quick compounding mechanism of high machine that mixes, includes feeding box (1), mixing cylinder (13) and ejection of compact box (2), its characterized in that:
the feeding box (1) is positioned at the left side of the discharging box (2), the mixing cylinder (13) is positioned between the feeding box (1) and the discharging box (2), the left end and the right end of the mixing cylinder (13) respectively penetrate through the feeding box (1) and the discharging box (2) and are communicated with the feeding box and the discharging box, and a rotating shaft (19) is jointly inserted between the feeding box (1), the mixing cylinder (13) and the discharging box (2);
the feeding spiral blade (5) is arranged inside the feeding box (1), the discharging spiral blade (6) is arranged inside the discharging box (2), the outer part of the rotating shaft (19) penetrates through the inner sides of the feeding spiral blade (5) and the discharging spiral blade (6) respectively, and the outer part of the rotating shaft (19) is welded with the feeding spiral blade (5) and the discharging spiral blade (6) respectively;
a plurality of groups of stirring pieces (14) distributed in a surrounding manner are fixed on the outer wall of the rotating shaft (19) and positioned in the mixing barrel (13), at least three stirring pieces (14) in each group are arranged in a left-right manner, a through cavity (17) is formed in the middle of each stirring piece (14), an inclined piece (15) is fixed at one end, far away from the rotating shaft (19), in each through cavity (17), and a scraping piece (16) is fixed at the outer end between the inclined pieces (15) in each group;
a plurality of stirring pieces (18) which are arranged in an annular mode are fixed on the inner wall of the mixing cylinder (13), and a blocking piece (7) and a push-pull piece (8) are arranged inside the discharging box (2) and are positioned at the upper end and the lower end of the left side of the discharging spiral blade (6) respectively.
2. The fast mixing mechanism of a high mixing machine as set forth in claim 1, characterized in that: the feeding hopper (3) is installed at the upper end of the feeding box (1), and the lower end of the feeding hopper (3) penetrates into the feeding box (1) and is communicated with the feeding box.
3. The fast mixing mechanism of a high mixing machine as set forth in claim 1, characterized in that: feed box (1) left end just is located pivot (19) left and installs motor (4), pivot (19) rotate with feed box (1) and ejection of compact box (2) outer end respectively and are connected, pivot (19) left end is connected with the power take off end of motor (4).
4. The fast mixing mechanism of a high mixing machine as set forth in claim 1, characterized in that: mixing cylinder (13) outer wall has cup jointed ring gear (12), ring gear (12) the place ahead meshing transmission is connected with gear (11), gear (11) right-hand member just is located mixing cylinder (13) the place ahead transmission and is connected with motor two (10), mixing cylinder (13) are controlled both ends and are rotated with feed box (1) right-hand member and play feed box (2) left end respectively and are connected.
5. The fast mixing mechanism of a high mixing machine as set forth in claim 1, characterized in that: the scraping blades (16) are annularly distributed, and the stirring pieces (18) are distributed on the outer sides of the scraping blades (16).
6. The fast mixing mechanism of a high mixing machine as set forth in claim 1, characterized in that: the material discharging box is characterized in that the push-pull piece (8) is located below the separation blade (7), the rotating shaft (19) penetrates through the inside of the separation blade (7) and is connected with the separation blade in a rotating mode, the separation blade (7) is fixedly connected with the top end of the inside of the material discharging box (2), the lower end of the push-pull piece (8) extends out of the lower end of the material discharging box (2) and is connected with the lower end of the material discharging box in a sliding mode, limiting blocks (9) are fixed to four corners of the left end of the push-pull piece (8), the limiting blocks (9) in the front and the back of the upper end are located inside the material discharging box (2), the limiting blocks (9) in the front and the back of the lower end are located below the material discharging box (2), and the lower end of the material discharging box (2) is located on the right side of the push-pull piece (8) and is connected with a material discharging pipe (20) penetrating through the inside of the material discharging box (2) through a flange.
7. The fast mixing mechanism of a high mixing machine as set forth in claim 1, characterized in that: the inclination angle of the inclined sheet (15) is forty-five degrees.
CN202122145262.5U 2021-09-06 2021-09-06 Quick compounding mechanism of high machine that mixes Active CN215842675U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115253852A (en) * 2022-06-21 2022-11-01 中维化纤股份有限公司 Stirring equipment for processing and producing organic chemical raw materials
WO2023221280A1 (en) * 2022-05-19 2023-11-23 广东邦普循环科技有限公司 Lithium battery positive electrode material processing device
GB2621922A (en) * 2022-05-19 2024-02-28 Guangdong Brunp Recycling Technology Co Ltd Lithium battery positive electrode material processing device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023221280A1 (en) * 2022-05-19 2023-11-23 广东邦普循环科技有限公司 Lithium battery positive electrode material processing device
GB2621922A (en) * 2022-05-19 2024-02-28 Guangdong Brunp Recycling Technology Co Ltd Lithium battery positive electrode material processing device
CN115253852A (en) * 2022-06-21 2022-11-01 中维化纤股份有限公司 Stirring equipment for processing and producing organic chemical raw materials

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