CN219252444U - Quick crushing type mixing stirrer - Google Patents

Quick crushing type mixing stirrer Download PDF

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Publication number
CN219252444U
CN219252444U CN202223608976.6U CN202223608976U CN219252444U CN 219252444 U CN219252444 U CN 219252444U CN 202223608976 U CN202223608976 U CN 202223608976U CN 219252444 U CN219252444 U CN 219252444U
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China
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stirring
kettle
plate
kettle body
rapid
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CN202223608976.6U
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Chinese (zh)
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王龙飞
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Zhejiang University Of Technology Shaoxing Keqiao Research Institute Co ltd
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Zhejiang University Of Technology Shaoxing Keqiao Research Institute Co ltd
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Abstract

The utility model discloses a rapid crushing type mixing stirrer which comprises a kettle body, a stirrer, a crushing mechanism and a controller, wherein the crushing mechanism comprises a pore plate, a pressing plate, a supporting rod, a linear conveying mechanism and a bracket, the pore plate is detachably arranged in an inner cavity of the kettle body and surrounds the kettle wall and the kettle bottom of the kettle body together to form a stirring cavity, the pressing plate is positioned on one side of the pore plate opposite to the kettle bottom of the kettle body, the bracket is arranged on the periphery of the outside of the kettle body, the linear conveying mechanism is arranged on the bracket and connected with the pressing plate through the supporting rod and drives the pressing plate to be close to or far away from the pore plate, the stirrer stirs materials positioned in the stirring cavity, and the controller is respectively electrically connected with the stirrer and the crushing mechanism, so that the stirring time can be greatly shortened, and the dyeing and finishing efficiency can be improved.

Description

Quick crushing type mixing stirrer
[ field of technology ]
The utility model relates to the technical field of stirrers, in particular to the technical field of rapid crushing type mixing stirrers.
[ background Art ]
The dye itself is colored, and is a substance which can obtain vivid and firm color and luster of other substances in a molecular state or a dispersed state. Before dyeing cloth, several kinds of monochromatic dyes are mixed and stirred to obtain slurry with required color, and dyeing and finishing of cloth is started. In addition, the existing mixing and stirring mode specifically uses a motor to drive a stirring paddle to rotate in a cylinder body so as to stir the dye.
To reduce the stirring dead space, the structure of the stirring paddles has been modified in various ways by the skilled man. Wherein, the utility model patent with publication number of CN207822915U discloses a printing and dyeing raw material stirring device which is provided with a stirring paddle with a helical blade; the utility model patent with publication number of CN114682123A discloses a high-efficiency printing and dyeing raw material stirring device, which is provided with a plurality of stirring paddles with a plurality of stirring blades with widths gradually increasing from top to bottom and keeping consistent; the utility model patent with publication number of CN218012191U discloses a printing raw material mixing stirring device for printing, which is provided with a plurality of vertical stirring rods directly serving as stirring paddles. However, the stirring paddles with the special structure cannot quickly crush large-block-shaped dye into small blocks, and only the flowing speed of slurry is increased to increase the dissolving speed of the dye, so that the stirring efficiency is low, the dyeing and finishing process is affected, and especially when the blocks of the dye are large.
[ utility model ]
The utility model aims to solve the problems in the prior art and provides a rapid crushing type mixing stirrer which can greatly shorten the stirring time and improve the dyeing and finishing efficiency.
In order to achieve the above purpose, the utility model provides a rapid crushing type mixing stirrer, which comprises a kettle body, a stirrer, a crushing mechanism and a controller, wherein the crushing mechanism comprises an orifice plate, a pressing plate, a supporting rod, a linear conveying mechanism and a bracket, the orifice plate is detachably arranged in an inner cavity of the kettle body and jointly surrounds a kettle wall and a kettle bottom of the kettle body to form a stirring cavity, the pressing plate is positioned on one side of the orifice plate, which is opposite to the kettle bottom of the kettle body, the bracket is arranged on the periphery of the outside of the kettle body, the linear conveying mechanism is arranged on the bracket and connected with the pressing plate through the supporting rod and drives the pressing plate to be close to or far away from the orifice plate, and the stirrer is used for stirring materials positioned in the stirring cavity and is electrically connected with the stirrer and the crushing mechanism respectively.
Preferably, the stirrer comprises a stirring motor, stirring paddles and gears, wherein a plurality of stirring paddles are vertically arranged in a stirring cavity respectively and are rotatably connected with the kettle bottom of the kettle body, an output shaft of the stirring motor is connected with a stirring shaft of one stirring paddle, and a plurality of gears are respectively arranged outside the stirring shaft of each stirring paddle and are meshed with each other in sequence.
Preferably, a plurality of pins corresponding to the through holes of the pore plate one by one are arranged on one side, opposite to the pore plate, of the pressing plate, and each pin can be respectively inserted into the corresponding through hole when the pressing plate is driven to move downwards.
Preferably, the pressing plate and the pore plate are hollow truncated cone-shaped.
Preferably, the inner wall of the kettle body is provided with an annular convex wall extending inwards, the bottom end of the pore plate is provided with an annular supporting ring, and the annular supporting ring is erected on the annular convex wall and magnetically attracted with the annular convex wall.
Preferably, the linear conveying mechanism comprises support plates, a conveying motor, a screw rod, a screw nut and a sliding rail, wherein the screw rod is rotatably connected between the two support plates and driven to rotate by the conveying motor, the screw nut is in threaded connection with the screw rod and is simultaneously connected with the sliding rail in a sliding mode, and the sliding rail, the conveying motor and the two support plates are respectively fixed on the support.
Preferably, a discharge hole is formed in the kettle wall of the kettle body and close to the bottom, and a discharge tap is mounted at the discharge hole.
Preferably, the kettle further comprises a lifting machine box and universal wheels, wherein the lifting machine box is arranged at the bottom of the kettle body, and a plurality of universal wheels are respectively fixed on the bottom surface of the lifting machine box.
The utility model has the beneficial effects that:
1) By arranging the pore plate, the pressing plate, the supporting rod, the linear conveying mechanism and the bracket to jointly form the crushing mechanism, the linear conveying mechanism can be used for driving the pressing plate to approach or separate from the pore plate so as to crush the dye, and then the crushing mechanism is matched with the stirrer positioned in the stirring cavity, so that the crushed dye is gradually dissolved in water in the stirring process, the stirring time is greatly shortened, and the dyeing and finishing efficiency is improved;
2) The pressing plate and the pore plate are hollow round tables, so that the contact area between the pressing plate and the pore plate can be increased, the crushing efficiency is improved, and dye can be prevented from being accumulated on the pressing plate to a certain extent;
3) The annular convex wall and the annular supporting ring which can be magnetically attracted are respectively arranged on the kettle body and the orifice plate, so that the orifice plate can be temporarily fixed by utilizing magnetic force in the working process to avoid the orifice plate from being separated from the original position along with the up-and-down movement of the pressing plate, and the orifice plate can be directly placed or pulled out before and after the use so as to be convenient for cleaning the orifice plate.
The features and advantages of the present utility model will be described in detail by way of example with reference to the accompanying drawings.
[ description of the drawings ]
FIG. 1 is a front view of a rapid-crushing type mixing agitator of the present utility model;
FIG. 2 is a schematic view of the assembly of the kettle body, agitator, orifice plate and platen of the rapid-break type mixing agitator of the present utility model.
In the figure: 1-kettle body, 11-annular convex wall, 2-stirrer, 21-stirring motor, 22-stirring paddle, 23-gear, 3-crushing mechanism, 31-pore plate, 311-through hole, 312-annular rim, 32-pressing plate, 321-contact pin, 33-supporting rod, 34-linear conveying mechanism, 341-supporting plate, 342-conveying motor, 343-screw rod, 344-screw, 345-slide rail, 35-bracket, 4-discharging tap, 5-lifting chassis and 6-universal wheel.
[ detailed description ] of the utility model
Referring to fig. 1 and 2, the rapid crushing type mixing stirrer comprises a kettle body 1, a stirrer 2, a crushing mechanism 3 and a controller, wherein the crushing mechanism 3 comprises a pore plate 31, a pressing plate 32, a supporting rod 33, a linear conveying mechanism 34 and a bracket 35, the pore plate 31 is detachably arranged in an inner cavity of the kettle body 1 and forms a stirring cavity together with a kettle wall and a kettle bottom of the kettle body 1, the pressing plate 32 is positioned on one side of the pore plate 31 opposite to the kettle bottom of the kettle body 1, the bracket 35 is arranged on the periphery of the kettle body 1, the linear conveying mechanism 34 is arranged on the bracket 35 and connected with the pressing plate 32 through the supporting rod 33 and drives the pressing plate 32 to be close to or far away from the pore plate 31, the stirrer 2 stirs materials positioned in the stirring cavity, and the controller is electrically connected with the stirrer 2 and the crushing mechanism 3 respectively. By such design, the linear conveying mechanism 34 can be utilized to drive the pressing plate 32 to approach or separate from the orifice plate 31 so as to crush the dye, and then the pressing plate is matched with the stirrer 2 positioned in the stirring cavity, so that the crushed dye is gradually dissolved in water in the stirring process, the stirring time is greatly shortened, and the dyeing and finishing efficiency is improved.
The stirrer 2 comprises a stirring motor 21, stirring paddles 22 and gears 23, wherein a plurality of stirring paddles 22 are vertically arranged in a stirring cavity respectively and are rotatably connected with the kettle bottom of the kettle body 1, an output shaft of the stirring motor 21 is connected with a stirring shaft of one stirring paddle 22, and a plurality of gears 23 are respectively arranged outside the stirring shaft of each stirring paddle 22 and are meshed with each other in sequence.
The side of the pressing plate 32 facing the orifice plate 31 is provided with a plurality of pins 321 corresponding to the through holes 311 of the orifice plate 31 one by one, and each pin 321 can be respectively inserted into the corresponding through hole 311 when the pressing plate 32 is driven to move downwards so as to avoid the dye from being blocked in each through hole 311.
The pressing plate 32 and the pore plate 31 are hollow round tables, so that the contact area between the pressing plate 32 and the pore plate 31 can be increased, the crushing efficiency is improved, and dye can be prevented from being accumulated on the pressing plate 32 to a certain extent. Wherein the slope of the side walls and the area of the top wall of the platen 32 are freely adjustable as desired.
The inner wall of the kettle body 1 is provided with an annular convex wall 11 extending inwards, the bottom end of the pore plate 31 is provided with an annular supporting ring 312, and the annular supporting ring 312 is erected on the annular convex wall 11 and magnetically attracted with the annular convex wall 11. By the design, the orifice plate 31 can be temporarily fixed by utilizing magnetic force in the working process so as to avoid the orifice plate 31 from being separated from the original position due to the up-and-down movement of the pressing plate 32, and the orifice plate 31 can be directly placed or pulled out before and after the use so as to facilitate the cleaning of the orifice plate 31. In addition, fasteners may be added to assist in connecting the annular flange 11 and the annular rim 312, thereby enhancing the stability of the connection between the annular flange 11 and the annular rim 312.
The linear conveying mechanism 34 comprises support plates 341, a conveying motor 342, a screw 343, a screw 344 and a sliding rail 345, wherein the screw 343 is rotatably connected between the two support plates 341 and is driven to rotate by the conveying motor 342, the screw 344 is in threaded connection with the screw 343 and is simultaneously connected with the sliding rail 345 in a sliding manner, and the sliding rail 345, the conveying motor 342 and the two support plates 341 are respectively fixed on the support 35.
The kettle wall of the kettle body 1 is provided with a discharge hole near the bottom, and the discharge hole is provided with a discharge tap 4.
The kettle body comprises a kettle body 1, and is characterized by further comprising a lifting machine box 5 and universal wheels 6, wherein the lifting machine box 5 is arranged at the bottom of the kettle body 1, and a plurality of universal wheels 6 are respectively fixed on the bottom surface of the lifting machine box 5. In addition, the stirring motor 21, the bottom end of each stirring paddle 22, and each gear 23 can be housed in the elevation chassis 5.
The working process of the utility model comprises the following steps:
first, the orifice plate 31 is placed in the inner cavity of the kettle body 1, so that the annular rim 312 is directly erected and magnetically attached to the top of the annular convex wall 11. Subsequently, the dye and water are poured into the kettle body 1, and the stirrer 2 and the crushing mechanism 3 are started respectively. Then, the conveying motor 342 drives the screw rod 343 to rotate, so that the screw 344 moves up and down along the screw rod 334 and the sliding rail 345 simultaneously, and the pressing plate 32 is driven by the supporting rod 33 to approach or separate from the orifice plate 31. When the pressing plate 32 moves downward, the dye can be gradually crushed, so that the crushed dye enters the stirring cavity along each through hole 311, and each pin 321 can perform dredging work when being inserted into the corresponding through hole 311. At the same time, the stirring motor 21 can drive each stirring paddle 22 to rotate in the stirring cavity through each gear 23 so as to realize stirring. After the completion of the stirring, the discharge tap 4 may be opened to discharge the slurry.
The above embodiments are illustrative of the present utility model, and not limiting, and any simple modifications of the present utility model fall within the scope of the present utility model.

Claims (8)

1. Quick crushed aggregates formula mixing stirrer, its characterized in that: including the cauldron body (1), agitator (2), crushed aggregates mechanism (3) and controller, crushed aggregates mechanism (3) are including orifice plate (31), clamp plate (32), branch (33), sharp conveying mechanism (34) and support (35), orifice plate (31) detachable install in the inner chamber of the cauldron body (1) and with the cauldron wall and the cauldron bottom of the cauldron body (1) enclose jointly and form stirring cavity, clamp plate (32) are located one side of the cauldron bottom of orifice plate (31) dorsad cauldron body (1), support (35) set up around the outside of the cauldron body (1), sharp conveying mechanism (34) are installed on support (35) and are connected and drive clamp plate (32) are close to or keep away from orifice plate (31) through branch (33), agitator (2) stir the material that is located among the stirring cavity, the controller is connected with agitator (2) and crushed aggregates mechanism (3) electricity respectively.
2. The rapid-crushing type mixing stirrer according to claim 1, wherein: the stirrer (2) comprises a stirring motor (21), stirring paddles (22) and gears (23), wherein the stirring paddles (22) are vertically arranged in a stirring cavity respectively and are rotatably connected with the kettle bottom of the kettle body (1), an output shaft of the stirring motor (21) is connected with a stirring shaft of one stirring paddle (22), and the gears (23) are respectively arranged outside the stirring shafts of the stirring paddles (22) and are meshed with each other in sequence.
3. The rapid-crushing type mixing stirrer according to claim 1, wherein: the pressing plate (32) is provided with a plurality of contact pins (321) corresponding to all through holes (311) of the orifice plate (31) one by one on one side opposite to the orifice plate (31), and all the contact pins (321) can be respectively inserted into the corresponding through holes (311) when the pressing plate (32) is driven to move downwards.
4. The rapid-crushing type mixing stirrer according to claim 1, wherein: the pressing plate (32) and the pore plate (31) are hollow round tables.
5. The rapid-crushing type mixing stirrer according to claim 4, wherein: the inner wall department of cauldron body (1) is equipped with annular convex wall (11) of inwards extending, the bottom of orifice plate (31) is equipped with annular rim (312), annular rim (312) erect on annular convex wall (11) and inhale mutually magnetism with annular convex wall (11).
6. The rapid-crushing type mixing stirrer according to claim 1, wherein: the linear conveying mechanism (34) comprises support plates (341), a conveying motor (342), a screw rod (343), a screw (344) and a sliding rail (345), the screw rod (343) is rotatably connected between the two support plates (341) and driven to rotate by the conveying motor (342), the screw (344) is in threaded connection with the outside of the screw rod (343) and is simultaneously connected with the sliding rail (345) in a sliding mode, and the sliding rail (345), the conveying motor (342) and the two support plates (341) are respectively fixed on the support (35).
7. The rapid-crushing type mixing stirrer according to claim 1, wherein: the kettle is characterized in that a discharging hole is formed in the kettle wall of the kettle body (1) and close to the bottom, and a discharging tap (4) is arranged at the discharging hole.
8. The rapid-onset material mixing agitator of any one of claims 1 to 7, wherein: the novel kettle comprises a kettle body (1), and is characterized by further comprising a lifting machine box (5) and universal wheels (6), wherein the lifting machine box (5) is arranged at the bottom of the kettle body (1), and a plurality of universal wheels (6) are respectively fixed on the bottom surface of the lifting machine box (5).
CN202223608976.6U 2022-12-29 2022-12-29 Quick crushing type mixing stirrer Active CN219252444U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223608976.6U CN219252444U (en) 2022-12-29 2022-12-29 Quick crushing type mixing stirrer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223608976.6U CN219252444U (en) 2022-12-29 2022-12-29 Quick crushing type mixing stirrer

Publications (1)

Publication Number Publication Date
CN219252444U true CN219252444U (en) 2023-06-27

Family

ID=86874005

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223608976.6U Active CN219252444U (en) 2022-12-29 2022-12-29 Quick crushing type mixing stirrer

Country Status (1)

Country Link
CN (1) CN219252444U (en)

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