High-efficient mixer of precast concrete brick raw materials
Technical Field
The utility model relates to the technical field of concrete precast brick production, in particular to a high-efficiency mixer for concrete precast brick raw materials.
Background
The precast concrete brick is a solid concrete brick (hereinafter referred to as brick) which is mainly used for building a wall body and is increasingly widely applied in recent years, and is prepared by adding water, stirring, forming and curing, cement, aggregate, admixture, and the like according to requirements.
The existing concrete precast brick raw material mixer is simple in structure, most of the concrete precast brick raw material mixer is directly stirred through stirring blades, the raw materials are poured in batches, the situation that finished products are unevenly mixed can occur only through a stirring mode, and the materials after mixing are directly discharged through a discharge outlet, if the mixture ratio is dry, the situation that blockage can occur is low in practicality, certain adverse effects are brought to the using process of people, and in order to solve the defects of the prior art, the concrete precast brick raw material high-efficiency mixer is provided.
Disclosure of utility model
The utility model mainly aims to provide an efficient mixer for concrete precast brick raw materials, which can effectively solve the problems in the background technology.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
the utility model provides a high-efficient mixer of precast concrete brick raw materials, includes the agitator tank, agitator tank top symmetry is provided with two feeder hoppers, the agitator tank upper end is provided with a motor, the output of a motor runs through the agitator tank and is provided with a dwang, a dwang surface is provided with a stirring vane, agitator tank lower extreme internal surface is provided with the seal receptacle, a dwang lower extreme runs through the seal receptacle and is provided with a gear, a gear both sides all are provided with No. two gears, no. two gear upper ends are provided with No. two dwang, no. two dwang surface is provided with No. two stirring vane, no. two dwang surface are provided with two mounting panels, the mounting panel upper end is provided with the dispersion board.
Preferably, the agitator tank left side is provided with the runner pipe, be provided with connecting pipe and No. two connecting pipes between agitator tank and the runner pipe, the runner pipe top is provided with No. two motors, no. two motor's output runs through the runner pipe and is provided with No. three dwang, no. three dwang surface is provided with helical blade, the agitator tank lower extreme is provided with the bracing piece, the bracing piece lower extreme is provided with the base, the agitator tank right-hand member is provided with the discharging pipe, the discharging pipe right-hand member is provided with No. three motors, no. three motor's output runs through the discharging pipe and is provided with No. four dwang, no. four dwang surface is provided with helical blade No. two, the discharging pipe lower extreme is provided with row's material pipe, row material pipe middle part is provided with the solenoid valve.
Preferably, the two feed hoppers are all welded at the top of the stirring tank, the first motor is detachably connected with the top of the stirring tank, the output end of the first motor is provided with a coupler, the output end of the first motor penetrates through the stirring tank and is detachably connected with the first rotating rod through the coupler, and the first stirring blade is welded on the outer surface of the first rotating rod.
Preferably, the lower extreme of a dwang runs through the seal seat and welds with a gear, two No. two gears all with a gear engagement, no. two dwang welds in No. two gear upper ends, no. two stirring vane welds in No. two dwang surface.
Preferably, a first connecting pipe and a second connecting pipe are welded between the flow pipe and the stirring tank, the second motor is detachably connected with the top of the flow pipe, a coupler is arranged at the output end of the second motor, the output end of the second motor penetrates through the flow pipe and is detachably connected with the third rotating rod through the coupler, and the first helical blade is welded on the outer surface of the third rotating rod.
Preferably, the third motor is detachably connected with the outer surface of the right end of the discharging pipe, the output end of the third motor is provided with a coupler, the output end of the third motor penetrates through the discharging pipe and is detachably connected with the fourth rotating rod through the coupler, and the second helical blade is welded on the outer surface of the fourth rotating rod.
Advantageous effects
Compared with the prior art, the utility model has the following beneficial effects:
1. According to the utility model, through the stirring tank, the feeding hopper, the first motor, the first rotating rod, the first stirring blade, the sealing seat, the first gear, the second rotating rod, the second stirring blade, the mounting plate and the dispersing plate, the raw materials can be uniformly mixed and stirred, the practicability is high, when the stirring tank is used, various raw materials are respectively poured into the stirring tank through the two feeding hoppers, the first motor is started to drive the first rotating rod to rotate, the first gear at the other end of the first rotating rod drives the second gear to rotate, at the moment, the two second rotating rods also rotate along with the rotation, the mounting plate and the dispersing plate are simultaneously driven to rotate, at the moment, the raw materials are scattered by the mounting plate and the dispersing plate when the feeding hopper falls down, after the raw materials and water are poured into the stirring tank, the first rotating rod drives the first stirring blades to stir the raw materials in the stirring tank, and the second rotating rods drive the second stirring blades to rotate, and the second rotating rods and the first rotating rods and the second rotating rods are opposite in the rotating direction, so that the raw materials can be uniformly mixed and the raw materials can be uniformly stirred.
2. According to the utility model, through the flow pipe, the first connecting pipe, the second motor, the third rotating rod, the first helical blade, the supporting rod, the base, the discharging pipe, the third motor, the fourth rotating rod, the second helical blade, the discharging pipe and the electromagnetic valve, the prefabricated brick raw materials can be mixed and stirred more efficiently by matching with the stirring device, the situation that the prefabricated brick raw materials are blocked during discharging can be avoided, when the raw materials are stirred, the raw materials can flow into the flow pipe through the first connecting pipe, the second motor is started to drive the third rotating rod to rotate, the first helical blade can convey the materials upwards along with the rotation of the third rotating rod, the second helical blade can convey the materials into the stirring tank again through the second connecting pipe after the conveying of the top end, the electromagnetic valve is started to drive the fourth rotating rod to rotate through the third motor, the second helical blade can convey the materials in the stirring tank to the right along with the rotation of the fourth rotating rod, and finally the electromagnetic valve is discharged, the situation that the prefabricated brick raw materials can be blocked during the discharging process can be avoided, the prefabricated brick can be mixed more efficiently and the situation can be avoided, and the situation that the prefabricated brick is blocked under the action of the second helical blade can be prevented from being blocked.
Drawings
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic view of the internal structure of the stirring tank and the discharging pipe of the utility model;
FIG. 3 is a schematic diagram of the prefabricated brick raw material stirring device of the utility model;
fig. 4 is a schematic structural view of a precast brick material lifting device of the present utility model.
The device comprises a stirring tank, a feeding hopper, a motor No. 1, a rotating rod No. 4, a stirring blade No. 5, a sealing seat, a gear No. 7, a gear No. 8, a gear No. two, a rotating rod No. 9, a stirring blade No. 10, a mounting plate No. 12, a dispersing plate, a flow pipe No. 13, a connecting pipe No. 14, a connecting pipe No. 15, a connecting pipe No. 16, a motor No. two, a rotating rod No. 17, a rotating rod No. 18, a spiral blade No. 19, a supporting rod, a base, a discharging pipe No. 21, a motor No. 22, a rotating rod No. 23, a spiral blade No. 24, a spiral blade No. 25, a discharging pipe and a solenoid valve.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
As shown in fig. 1-3, the high-efficiency mixer for concrete precast brick raw materials comprises a mixing tank 1, two feed hoppers 2 are symmetrically welded at the top of the mixing tank 1, a first motor 3 is detachably connected to the upper end of the mixing tank 1, a first rotating rod 4 is detachably connected to the output end of the first motor 3 through a coupler arranged on the mixing tank 1, a first stirring blade 5 is welded on the outer surface of the first rotating rod 4, a sealing seat 6 is arranged on the inner surface of the lower end of the mixing tank 1, a first gear 7 is welded on the lower end of the first rotating rod 4 through the sealing seat 6, a second gear 8 is meshed with two sides of the first gear 7, a second rotating rod 9 is welded on the upper end of the second gear 8, a second stirring blade 10 is welded on the outer surface of the second rotating rod 9, two mounting plates 11 are welded on the outer surface of the second rotating rod 9, a dispersing plate 12 is arranged on the upper end of the mounting plates 11, pouring various raw materials into the stirring tank 1 through the two feed hoppers 2, simultaneously starting the first motor 3 to drive the first rotating rod 4 to rotate, at the moment, the first gear 7 at the other end of the first rotating rod 4 drives the two second gears 8 to rotate, at the moment, the two second rotating rods 9 also rotate along with the rotation, at the moment, the mounting plate 11 and the dispersing plate 12 are driven to rotate, at the moment, the raw materials are scattered by the mounting plate 11 and the dispersing plate 12 when the raw materials are poured down from the feed hoppers 2, after the raw materials and the water are poured, the first rotating rod 4 drives the first stirring blades 5 to stir the raw materials in the stirring tank 1 during rotation, at the moment, the two second rotating rods 9 drive the second stirring blades 10 to rotate, at the moment, the two second rotating rods 9 and the first rotating rod 4 rotate in opposite directions, so that the raw materials in the stirring tank 1 can be better mixed and stirred, can be efficient carry out even mixing to the raw materials and stir, the practicality is higher.
As shown in fig. 1-4, a flow pipe 13 is arranged at the left side of the stirring tank 1, a first connecting pipe 14 and a second connecting pipe 15 are welded between the stirring tank 1 and the flow pipe 13, a second motor 16 is detachably connected to the top of the flow pipe 13, a third rotating rod 17 is detachably connected to the output end of the second motor 16 penetrating through the flow pipe 13 through a set coupling, a first helical blade 18 is welded to the outer surface of the third rotating rod 17, a discharging pipe 21 is arranged at the right end of the stirring tank 1, a third motor 22 is detachably connected to the right end of the discharging pipe 21, a fourth rotating rod 23 is detachably connected to the output end of the third motor 22 penetrating through the discharging pipe 21 through a set coupling, a second helical blade 24 is welded to the outer surface of the fourth rotating rod 23, a discharging pipe 25 is arranged at the lower end of the discharging pipe 21, an electromagnetic valve 26 is arranged at the middle part of the discharging pipe 25, the raw materials can flow into the flow pipe 13 through the first connecting pipe 14, the second motor 16 is started to drive the third rotating rod 17 to rotate, the first helical blade 18 can convey the materials upwards along with the rotation of the third rotating rod 17, the materials are input into the stirring tank 1 again through the second connecting pipe 15 after being conveyed to the topmost end, the raw materials can be mixed more uniformly, the electromagnetic valve 26 is started, the third motor 22 is started to drive the fourth rotating rod 23 to rotate after the raw materials are mixed, the second helical blade 24 can convey the materials in the stirring tank 1 rightwards along with the rotation of the fourth rotating rod 23 and finally the electromagnetic valve 26 is used for discharging the materials, the situation of blockage in the material discharging process can be avoided under the action of the second helical blade 24, the raw materials of the prefabricated brick can be mixed and stirred more efficiently by matching with the stirring device, meanwhile, the situation of blockage during discharging can be avoided.
During use, a plurality of raw materials can be efficiently and uniformly mixed and stirred, the raw materials are poured into the stirring tank 1 through the two feed hoppers 2, the first motor 3 is started to drive the first rotating rod 4 to rotate, the first gear 7 at the other end of the first rotating rod 4 drives the two second gears 8 to rotate, the two second rotating rods 9 also drive the mounting plate 11 to rotate along with the first stirring blade, the second rotating rod 9, the second stirring blade 10, the mounting plate 11 and the dispersing plate 12 can be used for scattering the raw materials, and after the raw materials and the water are poured into the stirring tank, the first rotating rod 4 can drive the plurality of stirring blades 5 to uniformly stir the raw materials in the stirring tank 1 during rotation, and simultaneously the first rotating rod 4 can be used for stirring the raw materials in the two stirring blades 9, so that the first rotating rod 4 can be more effectively and effectively mixed and stirred, and the first rotating rod 4 can be more conveniently and rapidly stirred, and simultaneously, and more efficient stirring can be realized by the two stirring tank 1 can be realized by the two stirring blades 9; through the arrangement of a flow pipe 13, a first connecting pipe 14, a second connecting pipe 15, a second motor 16, a third rotating rod 17, a first helical blade 18, a supporting rod 19, a base 20, a discharging pipe 21, a third motor 22, a fourth rotating rod 23, a second helical blade 24, the material discharging pipe 25 and the electromagnetic valve 26 can cooperate with the stirring device to mix and stir the prefabricated brick raw materials more efficiently, the situation of blocking can be avoided when the raw materials are discharged simultaneously, when the raw materials are stirred, the raw materials can flow into the flow pipe 13 from the first connecting pipe 14, at this time, the second motor 16 is started to drive the third rotating rod 17 to rotate, the first spiral blade 18 can convey the materials upwards along with the rotation of the third rotating rod 17, the second connecting pipe 15 is input into the stirring tank 1 again after the materials are conveyed to the topmost end, the raw materials can be mixed more uniformly, after the raw materials are mixed, the electromagnetic valve 26 is started, then the third motor 22 is started to drive the fourth rotating rod 23 to rotate, the second spiral blade 24 can convey the materials in the stirring tank 1 rightwards along with the rotation of the fourth rotating rod 23, and finally the electromagnetic valve 26 is used for discharging the raw materials, at this time, the situation of blocking can be avoided in the material discharging process under the action of the second spiral blade 24, the prefabricated brick raw materials can be mixed and stirred more efficiently, and the situation of blocking can be avoided when the materials are discharged simultaneously, and the operation is convenient.
The foregoing has shown and described the basic principles and main features of the present utility model and the advantages of the present utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.