Aerated concrete block compounding device
Technical Field
The utility model relates to the field of aerated concrete production equipment, in particular to a mixing device for aerated concrete blocks.
Background
The aerated concrete is a light porous silicate product prepared by taking siliceous materials and calcareous materials as main raw materials, adding a gas former, and carrying out the processes of batching, stirring, pouring, precuring, cutting, autoclaving, curing and the like.
When the existing aerated concrete block is produced, raw materials and ingredients of the aerated concrete need to be stirred firstly, however, the stirring paddle only stirs nearby materials, the raw materials and the ingredients which are just added into the barrel from different feeding pipes are respectively accumulated, the mixing and stirring are difficult to carry out, and the mixing is not uniform.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a mixing device for aerated concrete blocks.
The novel stirring shaft has the innovation points that the feeding plates which are not positioned on the same plane are arranged on the stirring shaft, so that raw materials and ingredients falling into the barrel from the through holes of the feeding plates are thrown and dispersed during the rotation of the stirring shaft, are not easy to accumulate, and are convenient for the stirring shaft to fully stir and mix.
In order to realize the purpose of the utility model, the technical proposal of the utility model is as follows:
the aerated concrete block mixing device comprises a barrel, wherein a stirring shaft is vertically arranged in the barrel, the upper end of the stirring shaft is connected with a driving motor, a plurality of feeding holes are formed in the upper end of the barrel, a plurality of feeding plates which are in one-to-one correspondence with the feeding holes are vertically arranged on the stirring shaft at intervals, and the feeding plates are not positioned on the same plane; a first cavity is respectively arranged in each feeding plate, a first rotary joint communicated with the first cavity is respectively arranged above each feeding plate, and a plurality of through holes communicated with the first cavity are respectively arranged at the bottom of each feeding plate; and a feeding pipe is arranged between each feeding port and the corresponding first rotary joint. During the material loops through inlet pipe, first rotary joint from each feed inlet and enters into the charging plate, driving motor drive (mixing) shaft rotated, and then driven the charging plate rotation on the different planes for the material is thrown away from each through-hole and is dispersed, is difficult for piling up in the barrel, and the (mixing) shaft intensive mixing of being convenient for mixes.
Preferably, a rotor of the driving motor is fixedly connected with a driving gear positioned outside the cylinder body;
a driven gear meshed with the driving gear is arranged on the stirring shaft; a feeding groove with an opening at the top is vertically arranged in the stirring shaft, and the upper end of the feeding groove is communicated with a second rotary joint; a feeding pump is arranged outside the barrel, and a pipeline is communicated between one end of the second rotary joint, which is far away from the feeding groove, and an inlet of the feeding pump; a raw material plate is horizontally arranged on the stirring shaft, and a second cavity communicated with the feeding groove is formed in the raw material plate; and the bottom of the raw material plate is provided with blanking rods communicated with the second cavity, and the orientation of each blanking rod is different. The driving motor drives the driving gear to rotate, so as to drive the driven gear to rotate and further drive the stirring shaft to rotate; raw materials enter the cylinder body through the feeding pump, the feeding groove and the raw material plate, and the stirring shaft is fully utilized; the blanking rod can disperse the raw materials to different directions, so that the raw materials and the ingredients are convenient to mix, the ingredients are not easy to stack, and the mixing is convenient.
Preferably, the lower end of the stirring shaft is horizontally provided with stirring blades, and a plurality of stirring rods with the lower ends contacting with the bottom in the barrel are vertically arranged below the stirring blades. The stirring shaft drives the stirring rod to rotate through the stirring blades, so that the raw materials and the ingredients are stirred and mixed when being just sprayed to the bottom in the barrel body; when the materials in the barrel are more, the materials are mixed and stirred by the feeding plate and the raw material plate under the rotation of the stirring shaft.
Preferably, the ends of the stirring blades far away from the stirring shaft are respectively and vertically provided with scrapers contacting with the inner side wall of the cylinder. Be provided with the scraper blade, can scrape the material that glues on the barrel inside wall and fall, prevent that the material from gluing to influence on the barrel inside wall cleanly, or cause the material extravagant.
Preferably, each feed inlet is provided with a feed hopper. Be provided with the feeder hopper, can make things convenient for the batching to enter into in the feed inlet.
The utility model has the beneficial effects that:
1. according to the utility model, the feeding plates which are not positioned on the same plane are arranged on the stirring shaft, so that raw materials and ingredients falling into the cylinder from the through holes of the feeding plates are thrown and dispersed during the rotation of the stirring shaft, are not easy to accumulate, and are convenient for the stirring shaft to fully stir and mix; the stirring is carried out while feeding, and the stirring efficiency is higher.
2. The feeding trough, the feeding pump, the raw material plate and the blanking rod are arranged, so that raw materials and ingredients can be distinguished, and the blanking rod can disperse the raw materials to different directions, so that the raw materials and the ingredients can be conveniently mixed.
3. According to the utility model, the stirring blades and the stirring rod are arranged, so that the raw materials and the ingredients can be stirred while entering the barrel, and the material mixing efficiency is accelerated.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the feeding plate and the first rotary joint.
In the figure:
1. a barrel; 11. a feed hopper; 2. a drive motor; 21. a driving gear; 22. a driven gear; 3. a feed plate; 31. a first rotary joint; 32. a feed pipe; 4. a stirring shaft; 41. a second rotary joint; 5. a raw material plate; 51. a blanking rod; 6. a stirring blade; 61. a stirring rod; 7. a squeegee; 8. a feed pump; 81. a pipeline.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
The described embodiments are only some embodiments of the utility model, not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
As shown in figure 1, the aerated concrete block mixing device comprises a barrel body 1, wherein a plurality of feeding holes are formed in the upper end of the barrel body 1, and a feeding hopper 11 is arranged on each feeding hole. A driving motor 2 is vertically arranged outside the upper part of the barrel 1, a driving gear 21 positioned outside the barrel 1 is fixedly connected to a rotor of the driving motor 2, a stirring shaft 4 is vertically arranged in the barrel 1, and a driven gear 22 meshed with the driving gear 21 is arranged on the stirring shaft 4; the lower end of the stirring shaft 4 is horizontally provided with a stirring blade 6, and a plurality of stirring rods 61 with the lower ends contacting with the bottom in the barrel 1 are vertically arranged below the stirring blade 6 along the length direction. The end parts of the stirring blades 6 far away from the stirring shaft 4 are respectively and vertically provided with a scraping plate 7 with one side contacting with the inner side wall of the barrel 1.
As shown in fig. 1, a feeding chute with an open top is vertically arranged in the center of the stirring shaft 4, and the upper end of the feeding chute is communicated with a second rotary joint 41; a feeding pump 8 is arranged outside the barrel 1, and a pipeline 81 is communicated between one end of the second rotary joint 41, which is far away from the feeding groove, and an inlet of the feeding pump 8; the stirring shaft 4 is horizontally provided with a raw material plate 5 positioned above the stirring blade 6, a second cavity communicated with the feeding groove is arranged in the raw material plate 5, the bottom of the raw material plate 5 is provided with blanking rods 51 communicated with the second cavity, and the orientation of each blanking rod 51 is different.
As shown in fig. 1 and 2, a plurality of feeding plates 3 corresponding to the feeding ports one by one are vertically arranged on the stirring shaft 4 at intervals, the feeding plates 3 are not in the same plane, and the feeding plates 3 are positioned above the raw material plate 5; a first cavity is respectively arranged in each feeding plate 3, a first rotary joint 31 communicated with the first cavity is respectively arranged above each feeding plate 3, and a plurality of through holes communicated with the first cavity are respectively arranged at the bottom of each feeding plate 3; a feed pipe 32 is arranged in each feed opening and between the corresponding first rotary joint 31.
In view of the above, it is desirable to provide,
when the aerated concrete block mixing device is used, various ingredients enter the feeding holes from the corresponding feeding hoppers 11 and then enter the first cavity from the corresponding feeding pipes 32; the raw material enters the second cavity through the feeding pump 8 and the pipeline 81; then, the driving motor 2 drives the driving gear 21 to rotate, the stirring shaft 4 is driven to rotate through the driven gear 22, and the ingredients and the raw materials are thrown into the barrel body 1 from all directions, so that the materials are not easy to accumulate; when the stirring shaft 4 rotates to throw the materials, the stirring rod 61 is driven by the stirring blades 6 to stir and mix the materials, so that the material mixing efficiency is improved.