SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that just not enough to above-mentioned prior art provides a building waste regeneration preparation environment-friendly composite mountain flour device, can recycle building waste, convenient to use, production efficiency is high, greatly reduced manufacturing cost, ten minutes environmental protection is high-efficient.
The utility model adopts the technical proposal that: the environment-friendly composite stone powder device for recycling construction waste comprises symmetrically arranged support plates, wherein a rectangular coarse crushing tank, a rectangular fine crushing tank and a rectangular refined mixing tank are sequentially fixed on the inner sides of the support plates from top to bottom through fixing supports, the coarse crushing tank is connected with the refined mixing tank through a first conveying pipe, the refined mixing tank is connected with the refined mixing tank through a second conveying pipe, a feeding hopper communicated with the coarse crushing tank is arranged at the top of the coarse crushing tank, a first crushing shaft is horizontally arranged on the inner side wall of the coarse crushing tank, a first motor for driving the first crushing shaft to rotate is arranged on one outer side wall of the coarse crushing tank, a plurality of groups of crushing teeth are arranged on the outer surface of the first crushing shaft around the axis of the first crushing shaft, first inclined blocks are symmetrically arranged on the inner bottom surface of the coarse crushing tank by taking the first conveying pipe as a center, and a fine crushing assembly is arranged at a position, close to the top, inside the fine crushing, the fine crushing component comprises mounting plates which are symmetrically arranged on two inner side walls of a fine crushing tank, two transverse rods are horizontally arranged between the two mounting plates, at least two rotating shafts perpendicular to the transverse rods are arranged between the two transverse rods, each rotating shaft is sleeved with a crushing roller, a second motor for driving the rotating shafts to rotate is arranged on the outer side of one transverse rod and corresponds to the rotating shaft, second inclined blocks are symmetrically arranged on the inner bottom surface of the fine crushing tank by taking a second conveying pipe as a center, a second crushing shaft is vertically arranged on the inner bottom surface of the refined mixing tank, a third motor for driving the second crushing shaft to rotate is arranged at the bottom of the refined mixing tank, a plurality of groups of crushing blades are arranged on the outer surface of the second crushing shaft around the axis of the second crushing shaft, an inclined feeding channel communicated with the inner side wall of the refined mixing tank is arranged close to the top, and a discharging port, and a vibrating screen is arranged at the position below the discharge port between the two supporting plates through a support, and a material receiving disc is arranged at the position below the vibrating screen between the supports.
In one embodiment, the bottom of the supporting plate is provided with a rubber pad.
In one embodiment, the refined mixing tank is welded to the inclined feed channel.
In one embodiment, the inclined feeding channel comprises a feeding hopper body, the bottom of the feeding hopper body is connected with the feeding channel, the top of the feeding hopper body is provided with a hopper cover hinged with the feeding hopper body, guide plates in sealing connection with the inner side walls of the feeding channel are arranged in a crossed mode at intervals, and a flow guide channel is formed between the guide plates and the inner wall of the feeding channel.
In one embodiment, a rubber plug matched with the discharge port is arranged at the discharge port.
In one embodiment, the vibrating screen is a linear vibrating screen.
The beneficial effects of the utility model reside in that:
1. the bottom of the supporting leg is provided with a rubber pad, so that the vibration generated in the crushing process can be reduced;
2. the coarse crushing tank, the fine crushing tank and the refining mixing tank are arranged from top to bottom, so that the process of manufacturing the stone powder is very coherent, and the requirement of manual moving in the manufacturing process is avoided;
3. the arrangement of the first inclined block and the second inclined block ensures that materials cannot be deposited in the tank in the production process;
4. the inclined feeding channel is provided with a hopper cover matched with the inclined feeding channel, so that other impurities can be prevented from being mixed in the production process;
5. the guide channel formed between the guide plate and the feeding channel in the inclined feeding channel can control the feeding flow rate and prevent the feeding from being too fast.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1, 2 and 3, an environment-friendly composite stone powder device prepared by recycling construction waste comprises support plates 1 which are symmetrically arranged, a rectangular coarse crushing tank 4, a rectangular fine crushing tank 11 and a rectangular refined mixing tank 18 are sequentially fixed on the inner sides of the support plates 1 from top to bottom through a fixing support 3, the coarse crushing tank 4 is connected with the refined crushing tank 11 through a first conveying pipe 10, the refined crushing tank 11 is connected with the refined mixing tank 18 through a second conveying pipe 18, a feed hopper 5 communicated with the inner part of the coarse crushing tank 4 is arranged at the top of the coarse crushing tank 4, a first crushing shaft 7 is horizontally arranged on the inner side wall of the coarse crushing tank 4, a first motor 6 for driving the first crushing shaft 7 to rotate is arranged on one outer side wall of the coarse crushing tank 4, a plurality of groups of crushing teeth 8 are arranged on the outer surface of the first crushing shaft 7 around the axis, first inclined blocks 9 are symmetrically arranged on the inner bottom surface of the coarse crushing tank 4 by taking the first conveying pipe 10 as a center, the inside position that is close to the top of refined garrulous jar 11 is equipped with the refined garrulous subassembly, the refined garrulous subassembly sets up in the mounting panel 12 of the double-phase internal wall of refined garrulous jar 11 including the symmetry, two the level is equipped with two horizontal poles 13 between the mounting panel 12, two be equipped with between the horizontal pole 13 at least two with horizontal pole 13 vertically pivot 14, every crushing roller 15 has all been cup jointed in the pivot 14, one of them horizontal pole 13 outside and pivot 14 correspond the position and all are equipped with drive pivot 14 pivoted second motor 16, the bottom uses second conveying pipeline 18 to be equipped with second sloping block 17 as central symmetry in the refined garrulous jar 11, the bottom surface is equipped with second crushing shaft 21 perpendicularly in the refined blending tank 19, 19 bottoms of refined blending tank are equipped with drive second crushing shaft 21 pivoted third motor 20, second crushing shaft 21 surface is equipped with array crushing blade 22 around its axis, 19 one of refined blending tank is close to the top position and is equipped with rather than the slope feeding expert of inside intercommunication And a discharge hole 24 is formed in the bottom of the refining mixing tank 19, a vibrating screen 26 is arranged at a position below the discharge hole 24 between the two support plates 1 through a support 25, and a receiving disc 27 is arranged at a position below the vibrating screen 26 between the support 25.
In this embodiment, the bottom of the supporting plate 1 is provided with a rubber pad 2.
In this embodiment, the polishing mix tank 19 is welded to the inclined feed channel 23.
In this embodiment, the inclined feeding channel 23 includes a feeding hopper body 231, the bottom of the feeding hopper body 231 is connected with a feeding channel 232, the top of the feeding hopper body 231 is provided with a hopper cover 233 hinged to the feeding hopper body, the inner side wall of the feeding channel 232 is alternately provided with guide plates 234 hermetically connected with the inner side wall thereof at intervals, and a guide channel 235 is formed between the guide plates 234 and the inner wall of the feeding channel 232.
In this embodiment, the discharge port 24 is provided with a rubber stopper matching with the discharge port.
In this embodiment, the vibrating screen 26 is a linear vibrating screen.
The power supply for the first motor 6, the second motor 16 and the third motor 19 is external, and the driving modes of the first motor, the second motor and the third motor are all the prior art, and the detailed description is omitted in the present application.
The quantity of support 3 sets up according to actual conditions with fixed mode to can fix three jars and guarantee that it can normal operating as the principle.
The corresponding positions of the two side walls of the coarse crushing tank 4 are provided with shaft sleeves matched with the first crushing shafts 7, and the first crushing shafts 7 rotate in the shaft sleeves.
Smash tooth 8 and 4 inside wall clearances of coarse crushing jar less, can supply the construction waste after smashing to pass through, and this clearance accessible actual conditions adjusts.
First sloping block 9 sets up relatively and is connected with 4 inside walls of coarse crushing jar, and second sloping block 17 sets up relatively and is connected with 11 inside walls of fine crushing jar, has fully guaranteed the water conservancy diversion effect, can make the faster entering conveying pipeline of the construction waste after smashing.
The crushing rollers 15 are located on two sides below the first conveying pipe 10, gaps between the crushing rollers 15 and the adjacent crushing rollers 15 are arranged according to actual conditions, gaps between the inner side walls of the crushing rollers 15 and the inner side walls of the fine crushing tank 11 are small, the crushed construction waste can pass through, and the gaps can be adjusted according to actual conditions.
The end of the inclined feed channel 23 that is located outside the finishing mix tank 19 is higher than the end that is located inside the finishing mix tank 19.
The mesh aperture of the vibrating screen 26 is sized to allow acceptable stone dust to pass through, and the driving mode of the vibrating screen 26 is prior art and will not be described in detail in this application.
The device for preparing environment-friendly composite stone powder by regenerating construction waste adds the construction waste from a feed hopper 5 into a coarse crushing tank 4, drives a first crushing shaft 7 to rotate through a first motor 6, so that a crushing tooth 8 can crush the construction waste primarily, the arrangement of a first inclined block 9 ensures that the construction waste after coarse crushing can smoothly enter a first material conveying pipe 10 to reach a fine crushing tank 11 without being deposited at the bottom of the coarse crushing tank 4, drives a rotating shaft 14 to rotate through a second motor 16 in the fine crushing tank 11, so that a crushing roller 15 can further crush the construction waste, the arrangement of a second inclined block 17 ensures that the construction waste after fine crushing can smoothly enter a second material conveying pipe 18 to reach a refined mixing tank 19 without being deposited at the bottom of the fine crushing tank 11, drives a second crushing shaft 21 to rotate through a third motor 20 in the refined mixing tank 19, and a crushing blade 22 can crush the construction waste after fine crushing into stone powder meeting the standard, in the process, other types of stone powder can be added through the inclined feeding channel 23, the feeding speed can not be too high due to the existence of the flow guide channel 235, the crushing and refining processes have the stirring and mixing functions, the materials can be discharged from the discharging port 24 after the refining and mixing are finished, the refined and mixed stone powder is screened out to be unqualified for reprocessing through the action of the vibrating screen 26, the stone powder meeting the specification enters the receiving tray 27, and the qualified stone powder can be collected.
The above-mentioned embodiments only express the specific embodiments of the present invention, and the description thereof is specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention.