High-consistency slurry mixing system
Technical Field
The utility model relates to the technical field of slurry mixing equipment, in particular to a high-consistency slurry mixing system.
Background
The waterproof coiled material needs to be made of waterproof materials in the processing process, the waterproof materials are slurry formed by mixing various solid materials and liquid materials, and the slurry is coated on the base material of the waterproof coiled material in the processing process. When mixing solid and liquid material, generally adopt agitated vessel to go on, agitated vessel can include the jar body of vertical setting, be provided with driving motor on the jar body, be provided with by driving motor driven installation axle in the jar body, be provided with a plurality of stirring leaves on the installation axle, it is internal with the leading-in jar of material through feeder hopper (or inlet pipe) that sets up on the jar body, then start driving motor, the installation axle rotates and drives stirring leaf and to stir the mixture to form the thick liquids, then when needing to use through setting up the row material pipe in jar body bottom derive can. However, since the waterproof material has a greater consistency than that of the general slurry, the material at the bottom of the tank is difficult to move upward in the later stage during the processing, so that there may be a difference in agitation between the upper and lower materials, and the upper and lower slurry components may be different, and in order to avoid such a problem, the processing time is required to be prolonged, and the overall processing efficiency may not be improved.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model provides a high-consistency slurry mixing system, which solves the problem that the efficiency is low because a longer time is required for mixing materials with higher consistencies in the prior art.
According to the embodiment of the utility model, the high-consistency slurry mixing system comprises a tank body which is vertically arranged, a discharge pipe which is communicated with the tank body is arranged at the bottom of the tank body, a feed hopper which is communicated with the tank body is fixedly connected to the upper end of the tank body, the discharge pipe vertically penetrates through the tank body, a through hole is formed in the side wall of one end of the discharge pipe, which is positioned outside the tank body, of the discharge pipe, a valve for controlling the opening and closing of the discharge pipe is further arranged at one end of the discharge pipe, a rotary driver is fixedly arranged outside the top of the tank body, the rotary driver is connected with a mounting shaft which coaxially penetrates through the tank body and coaxially extends into the discharge pipe, a first spiral which is positioned in the discharge pipe and above the valve is fixedly arranged on the mounting shaft in a surrounding manner, a second spiral which is positioned above the discharge pipe is fixedly arranged on the mounting shaft in a surrounding manner, and the second spiral is positioned at the lower end of the tank body.
In the above embodiment, the first spiral is arranged in the discharge pipe, the second spiral is further arranged above the first spiral, and when the device is operated, the first spiral and the second spiral can both lift the materials below the device upwards, so that the materials are more fully mixed, and the materials are more efficiently stirred, so that the total required processing time can be properly shortened, and the problem that the efficiency is lower due to the longer time required for mixing the materials with larger consistence in the prior art is solved.
Further, the rotary driver comprises a driving motor and a speed reducer connected with the driving motor, and the speed reducer is connected with the mounting shaft.
Further, the through holes comprise a plurality of through holes which are equidistantly arranged in a surrounding mode and extend into a long frame-shaped structure along the radial direction of the discharging pipe.
Further, the inner wall of the lower edge of the through hole is arranged in line with the inner wall of the bottom of the tank body.
Further, the second spiral is of a gradual change structure with a large upper part and a small lower part.
Further, the first fixing sleeve is fixedly connected to the mounting shaft and located above the second spiral, the stirring rod is fixedly connected to the first fixing sleeve and comprises a cross rod fixedly connected with the first fixing sleeve and an arc-shaped rod fixedly connected with the cross rod, and the arc-shaped rod is located outside the second spiral and is of a structure extending downwards and bending inwards at the lower end.
Further, the second fixed sleeve is fixedly connected to the mounting shaft and located above the first fixed sleeve, and the plurality of stirring blades extending transversely are fixedly connected to the second fixed sleeve.
Further, the tank comprises a supporting frame, the lower end of the tank body is fixed on the supporting frame, and the supporting frame is fixedly connected with a reinforcing cylinder which is fixedly encircling the discharge pipe.
Further, the reinforcement cylinder is fixedly connected with the support frame through a plurality of connecting rods.
Further, the reinforcement cylinder is located above the valve.
Compared with the prior art, the utility model has the following beneficial effects:
Through in the row material pipe of jar body bottom to and set up first spiral and second spiral respectively in jar body lower extreme, when the operation, first spiral and second spiral homoenergetic upwards promote the material of below, thereby make more abundant blending between the upper and lower material, play more efficient stirring, consequently can suitably shorten the processing duration that generally needs, solved among the prior art when mixing the great material of consistence and need longer time to lead to the problem of inefficiency.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present utility model;
FIG. 2 is an enlarged schematic view of the partial structure at A in FIG. 1;
In the above figures:
The device comprises a tank body 1, a discharge pipe 2, a feed hopper 3, a through hole 4, a valve 5, a mounting shaft 6, a first screw 7, a second screw 8, a driving motor 9, a speed reducer 10, an agitating rod 11, an agitating blade 12, a first fixing sleeve 13, a cross rod 14, an arc-shaped rod 15, a second fixing sleeve 16, a supporting frame 17, a reinforcing cylinder 18 and a connecting rod 19.
Detailed Description
The technical scheme of the utility model is further described below with reference to the accompanying drawings and examples.
In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the device or element being referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present utility model.
In an exemplary embodiment, as shown in fig. 1 and 2, the embodiment provides a high-consistency slurry mixing system, which comprises a tank body 1 vertically arranged, a discharge pipe 2 communicated with the tank body 1 is arranged at the bottom of the tank body 1, a feed hopper 3 communicated with the discharge pipe 3 is fixedly connected to the upper end of the tank body 1, the discharge pipe 2 vertically penetrates through the tank body 1, a through hole 4 is further formed in the side wall of one end of the discharge pipe 2, a valve 5 for controlling the opening and closing of the discharge pipe 2 is further arranged at one end of the discharge pipe 2 outside the tank body 1, a rotary driver is fixedly arranged outside the top of the tank body 1, the rotary driver is connected with a mounting shaft 6, the mounting shaft 6 coaxially penetrates through the tank body 1 and coaxially extends into the discharge pipe 2, a first spiral 7 positioned in the discharge pipe 2 and above the valve 5 is fixedly and circumferentially arranged on the mounting shaft 6, a second spiral 8 positioned above the discharge pipe 2 is fixedly and circumferentially arranged on the side wall of the tank body 1, the second spiral 8 is positioned at the lower end of the tank body 1, a rotary driver is fixedly arranged on the mounting shaft 6, a rotary driver is fixedly arranged on the top of the tank body, a rotary driver is fixedly arranged on the mounting shaft and coaxially extends into the discharge pipe 2, a first spiral 8, and a rotary driver is connected with the first spiral 8, and a rotary spiral 8 can simultaneously realize the stirring function, and the stirring function of the second spiral 8.
In the above embodiment, similarly to the prior art, the feeding hopper 3 is used for guiding the material into the tank body 1, and the difference is that, during operation, the rotation driver operates to enable the installation shaft 6 to rotate, thereby driving the first screw 7 and the second screw 8 to rotate, the rotation directions of the first screw 7 and the second screw 8 are the same, and the material can be synchronously lifted upwards/pushed downwards, so that the lower layer material can be better moved upwards, the upper material and the lower material can be more fully fused, and more efficient stirring is achieved, therefore, the overall required processing time can be properly shortened, and the problem that the efficiency is lower due to longer time when the material with larger consistency is mixed in the prior art is solved; more specifically, the rotary driver includes driving motor 9 and the speed reducer 10 of being connected with driving motor 9, speed reducer 10 is connected with installation axle 6, still be provided with stirring rod 11 and stirring leaf 12 on the installation axle 6, still fixedly connected with is located the first fixed cover 13 of second spiral 8 top on the installation axle 6 promptly, first fixed cover 13 fixedly connected with stirring rod 11, stirring rod 11 includes horizontal pole 14 and the arc pole 15 with horizontal pole 14 fixed connection with first fixed cover 13 fixed connection, arc pole 15 is located the second spiral 8 and is downwardly extending and the structure of lower extreme inturned, still fixedly connected with is located the second fixed cover 16 of first fixed cover 13 top on the installation axle 6, still fixedly connected with a plurality of stirring leaves 12 of transversely extending on the second fixed cover 16, stirring rod 11 and stirring leaf 12 cooperate with first spiral 7 and second spiral 8 for the material stirring mixes more effectively.
As shown in fig. 1 and 2, the through holes 4 arranged on the discharge pipe 2 can enable materials to pass through the inside and outside of the discharge pipe 2, when the first spiral 7 pushes the materials upwards, the materials at the lower end of the tank body 1 at the periphery of the discharge pipe 2 can enter from the through holes 4, so that the materials at the bottom of the tank body 1 can also participate in stirring thoroughly, the efficiency is further improved, more details, the through holes 4 comprise a plurality of through holes 4 which are arranged in an equidistant and encircling manner and extend into a frame-shaped structure along the radial direction of the discharge pipe 2, the inner walls of the lower edges of the through holes 4 are arranged in an aligned manner with the inner walls of the bottom of the tank body 1, so that the materials at the bottom of the tank body 1 enter the discharge pipe 2 more smoothly, and the through holes 4 can also enable the materials to enter more smoothly when the discharge is carried out, and the materials are prevented from being retained at the bottom of the tank body 1 and cannot be led out.
As shown in fig. 1, the system further comprises a supporting frame 17, the lower end of the tank body 1 is fixed on the supporting frame 17, the supporting frame 17 is fixedly connected with a reinforcing tube 18 which is fixedly encircling the outer side of the discharge tube 2, the reinforcing tube 18 is arranged to improve the structural stability of the lower end of the discharge tube 2, in particular, the reinforcing tube 18 is fixedly connected with the supporting frame 17 through a plurality of connecting rods 19, the valve 5 is arranged below the reinforcing tube 18, the installation shaft 6 rotates in the system operation, the reinforcing tube 18 wraps the outer side of the discharge tube 2, and a more stable circumferential limit is provided for the lower end of the discharge tube 2, so that the discharge tube 2 is more stable, and meanwhile, the lower end of the installation shaft 6 is not rocked, so that smooth and stable operation of the system is ensured.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.