Building construction compounding mixer
Technical Field
The utility model relates to the technical field of building equipment, in particular to a building construction mixing stirrer.
Background
The stirrer is one kind of building engineering machine and is used mainly in stirring cement, sand and stone, dry powder mortar and other building material. The machine is a machine in which a shaft with blades rotates in a cylinder or a tank to stir and mix a plurality of raw materials into a mixture or a proper consistency. The stirrer is classified into a forced stirrer, a single-horizontal-shaft stirrer, a double-horizontal-shaft stirrer, etc.
Most of the existing mixers are used for rotating and stirring raw materials, the stirring mode is single, the raw materials are not convenient to stir rapidly, meanwhile, dust is easy to accumulate on the inner wall of the mixer in the feeding process, the cleanliness of the inside of the mixer is reduced, and the subsequent cleaning is inconvenient.
Therefore, there is a need to provide a building construction mixer, which aims to solve the above problems.
Disclosure of Invention
Aiming at the defects existing in the prior art, the embodiment of the utility model aims to provide a building construction mixing mixer so as to solve the problems in the background art.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides a construction compounding mixer, includes the agitator tank, the agitator tank outside symmetry is provided with the pillar, the agitator tank top is provided with throws the material funnel, be connected with the water injection pipe on the agitator tank, be equipped with the guide case in the agitator tank, the guide case is connected with throwing the material funnel through the support, it is provided with the air duct to rotate on the agitator tank, be provided with in the agitator tank with air duct matched with stirring subassembly, the one end and the guide case top of air duct are linked together, the other end of air duct runs through the agitator tank and is connected with the rotating assembly who sets up in the agitator tank outside, the agitator tank outside is equipped with air duct matched with air pump.
As a further aspect of the present utility model, the rotating assembly includes:
the driven bevel gear is arranged on the air guide pipe and positioned outside the stirring box;
and the driving bevel gear is meshed with the driven bevel gear and connected with a rotating motor arranged on the stirring box.
As a further aspect of the present utility model, the agitation assembly includes:
the connecting rings are provided with a plurality of connecting rings and are arranged on the air duct, and guide cylinders are symmetrically arranged on two sides of each connecting ring;
the lifting rod is arranged in the guide cylinder in a sliding manner;
the fixed racks are provided with a plurality of guide pipes and distributed on the guide pipes;
the rotating rods are provided with a plurality of rotating rods and are respectively arranged on two sides of the air duct, the rotating rods are in rotary connection with corresponding lifting rods, stirring paddles are arranged at one ends of the rotating rods, far away from the air duct, in a staggered manner, and transmission gears meshed with the fixed racks are arranged at the other ends of the rotating rods;
the transmission module is arranged between the stirring box and the lifting rod.
As a further aspect of the present utility model, the transmission module includes:
the sloping cam plate is arranged at the bottom of the stirring tank and is in rotary fit with the air duct;
the annular groove is arranged on one side of the swash plate, which is close to the lifting rod;
the sliding block is in sliding fit with the annular groove and is movably connected with the lifting rod.
As a further scheme of the utility model, inclined planes are symmetrically arranged on two sides of one end of the guide box, which is close to the feeding funnel, and a plurality of through holes are formed in the bottom of the guide box.
As a further scheme of the utility model, a discharge port is arranged at the bottom of the stirring tank, and a sealing plug is arranged at the discharge port.
In summary, compared with the prior art, the embodiment of the utility model has the following beneficial effects:
according to the utility model, raw materials can be separately fed through the guide box and the feeding hopper, the raw materials are prevented from being piled up, dust removal treatment can be carried out in the stirring box through the cooperation of the air pump, the air guide pipe, the guide box and the through hole, the raw materials can be reciprocally and swingably stirred through the cooperation of the rotating assembly, the air guide pipe and the stirring assembly, the stirring effect of the raw materials is improved, and the effects of separate feeding, high-efficiency dust removal, high-efficiency stirring, simplicity, convenience and practicability are achieved.
In order to more clearly illustrate the structural features and efficacy of the present utility model, the present utility model will be described in detail below with reference to the accompanying drawings and examples.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the utility model.
Fig. 2 is an enlarged view of a in fig. 1.
Fig. 3 is a schematic structural diagram of a guide box in an embodiment of the utility model.
Reference numerals: 1-supporting column, 2-stirring box, 3-water injection pipe, 4-feeding funnel, 5-bracket, 6-material guiding box, 7-through hole, 8-air duct, 9-driven bevel gear, 10-driving bevel gear, 11-rotating motor, 12-air pump, 13-discharge port, 14-sealing plug, 15-connecting ring, 16-guiding cylinder, 17-lifting rod, 18-rotating rod, 19-stirring paddle, 20-fixed rack, 21-transmission gear, 22-sloping cam plate, 23-ring groove and 24-sliding block.
Description of the embodiments
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Specific implementations of the utility model are described in detail below in connection with specific embodiments.
In an embodiment of the utility model, referring to fig. 1 and 3, the building construction mixing mixer comprises a mixing box 2, wherein a support column 1 is symmetrically arranged outside the mixing box 2, a feeding funnel 4 is arranged at the top of the mixing box 2, a water injection pipe 3 is connected to the mixing box 2, a material guide box 6 is arranged in the mixing box 2, the material guide box 6 is connected with the feeding funnel 4 through a support 5, an air duct 8 is rotatably arranged on the mixing box 2, an agitating component matched with the air duct 8 is arranged in the mixing box 2, one end of the air duct 8 is communicated with the top of the material guide box 6, the other end of the air duct 8 penetrates through the mixing box 2 and is connected with a rotating component arranged outside the mixing box 2, and an air pump 12 matched with the air duct 8 is arranged outside the mixing box 2.
In this embodiment, through guide box 6 and charging hopper 4, can separate the material, avoid the raw materials to pile up together, through the cooperation of air pump 12, air duct 8, guide box 6 and through-hole 7, can carry out dust removal processing in agitator tank 2, through the cooperation of rotating assembly, air duct 8 and agitator assembly, can carry out reciprocal swing stirring to the raw materials, improve the stirring effect of raw materials, possess and separately throw the material, high-efficient dust removal, high-efficient stirring and simple and convenient practical's effect, wherein, guide box 6 is close to the one end bilateral symmetry of charging hopper 4 and is equipped with the inclined plane, guide box 6 bottom is equipped with a plurality of through-hole 7, and air pump 12 is taken out guide box 6 inside air through air duct 8 for guide box 6 inside is in the negative pressure state, and the air in the agitator tank 2 gets into guide box 6 through-hole 7, and the air drives in the dust entering guide box 6, can set up purification module at the output of air duct 8, can concentrate the collection to the dust, agitator tank 2 bottom is equipped with discharge gate 13, discharge gate 13 department is equipped with 14 sealing plug.
In one embodiment of the utility model, see fig. 1, the rotating assembly comprises a driven bevel gear 9, the driven bevel gear 9 being arranged on the air duct 8 and outside the stirring tank 2; a drive bevel gear 10, said drive bevel gear 10 being in engagement with the driven bevel gear 9 and being connected to a rotating motor 11 mounted on the agitator tank 2.
The stirring assembly comprises a plurality of connecting rings 15, the connecting rings 15 are arranged on the air duct 8, and guide cylinders 16 are symmetrically arranged on two sides of the connecting rings 15; a lifting rod 17, wherein the lifting rod 17 is slidably arranged in the guide cylinder 16; the fixed racks 20 are provided with a plurality of fixed racks 20 and distributed on the guide tube 16; the bull stick 18, bull stick 18 is equipped with a plurality of and respectively in the both sides of air duct 8, bull stick 18 rotates with the lifter 17 that corresponds to be connected, the bull stick 18 is kept away from the one end of air duct 8 and is provided with the stirring rake 19 alternately, the other end of bull stick 18 is provided with the drive gear 21 with fixed rack 20 engaged with.
In the embodiment, the rotating motor 11 drives the driving bevel gear 10 to rotate, the driving bevel gear 10 drives the air duct 8 to rotate in a mode of meshing with the driven bevel gear 9, the air duct 8 drives the guide cylinder 16 to synchronously rotate through the connecting ring 15, the guide cylinder 16 drives the rotating rod 18 to rotate around the axis of the air duct 8 through the lifting rod 17, and the rotating rod 18 fully agitates raw materials in a mode of driving the agitating paddles 19 to synchronously rotate.
In one embodiment of the present utility model, referring to fig. 1 and 2, the stirring assembly further comprises a transmission module, wherein the transmission module is arranged between the stirring tank 2 and the lifting rod 17, the transmission module comprises a sloping cam plate 22, and the sloping cam plate 22 is arranged at the bottom of the stirring tank 2 and is in running fit with the air duct 8; a ring groove 23, wherein the ring groove 23 is arranged at one side of the swash plate 22 close to the lifting rod 17; the sliding block 24 is in sliding fit with the annular groove 23 and is movably connected with the lifting rod 17.
In this embodiment, in the process of rotating the lifting rod 17 around the air duct 8, the lifting rod 17 drives the sliding block 24 to slide in the annular groove 23, and since the annular groove 23 is arranged on the swash plate 22, the sliding block 24 drives the lifting rod 17 to reciprocate in the process of sliding in the annular groove 23, the lifting rod 17 drives the rotating rod 18 to synchronously lift, the rotating rod 18 drives the transmission gear 21 to synchronously lift in the reciprocating lifting process, the transmission gear 21 drives the rotating rod 18 to rotate in a manner of meshing with the fixed rack 20, and the rotating rod 18 drives the stirring paddles 19 to synchronously rotate, so that the raw materials are fully stirred, and the stirring effect of the raw materials is improved.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.