CN120038835A - Full-automatic brickmaking production line - Google Patents
Full-automatic brickmaking production line Download PDFInfo
- Publication number
- CN120038835A CN120038835A CN202510517600.3A CN202510517600A CN120038835A CN 120038835 A CN120038835 A CN 120038835A CN 202510517600 A CN202510517600 A CN 202510517600A CN 120038835 A CN120038835 A CN 120038835A
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- China
- Prior art keywords
- frame
- lifting
- conveying
- tray
- transmission
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B15/00—General arrangement or layout of plant ; Industrial outlines or plant installations
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B11/00—Apparatus or processes for treating or working the shaped or preshaped articles
- B28B11/24—Apparatus or processes for treating or working the shaped or preshaped articles for curing, setting or hardening
- B28B11/245—Curing concrete articles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B13/00—Feeding the unshaped material to moulds or apparatus for producing shaped articles; Discharging shaped articles from such moulds or apparatus
- B28B13/02—Feeding the unshaped material to moulds or apparatus for producing shaped articles
- B28B13/0215—Feeding the moulding material in measured quantities from a container or silo
- B28B13/023—Feeding the moulding material in measured quantities from a container or silo by using a feed box transferring the moulding material from a hopper to the moulding cavities
- B28B13/0235—Feeding the moulding material in measured quantities from a container or silo by using a feed box transferring the moulding material from a hopper to the moulding cavities the feed box being provided with agitating means, e.g. stirring vanes to avoid premature setting of the moulding material
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B13/00—Feeding the unshaped material to moulds or apparatus for producing shaped articles; Discharging shaped articles from such moulds or apparatus
- B28B13/04—Discharging the shaped articles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B17/00—Details of, or accessories for, apparatus for shaping the material; Auxiliary measures taken in connection with such shaping
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B17/00—Details of, or accessories for, apparatus for shaping the material; Auxiliary measures taken in connection with such shaping
- B28B17/02—Conditioning the material prior to shaping
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B17/00—Details of, or accessories for, apparatus for shaping the material; Auxiliary measures taken in connection with such shaping
- B28B17/04—Exhausting or laying dust
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P40/00—Technologies relating to the processing of minerals
- Y02P40/60—Production of ceramic materials or ceramic elements, e.g. substitution of clay or shale by alternative raw materials, e.g. ashes
Landscapes
- Engineering & Computer Science (AREA)
- Ceramic Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Mechanical Engineering (AREA)
- Manufacturing & Machinery (AREA)
- Structural Engineering (AREA)
- Devices For Post-Treatments, Processing, Supply, Discharge, And Other Processes (AREA)
Abstract
The invention belongs to the technical field of brick making, and particularly relates to a full-automatic brick making production line which comprises material distribution equipment, material mixing equipment, crushing equipment, forming equipment, stacking equipment, tray conveying equipment and a curing kiln, wherein conveying belts are arranged between the material distribution equipment and the material mixing equipment and between the material mixing equipment and the crushing equipment, and the forming equipment is arranged at the output position of the crushing equipment. The invention relates to a full-automatic brick making production line, which is characterized in that after maintenance is finished, a tray is taken down and then is placed on a lifting assembly at an input position of a conveying frame, the lifting assembly conveys the tray on the conveying frame and is placed below a cleaning assembly, a plurality of brush heads are driven to be attached to the upper part of the tray through a plurality of lifting cylinders, the surface of the tray is cleaned through rotation of the brush heads, and the air is blown out from a hollow hose through the cooperation of a fan, so that the fragments brushed off by the tray are blown away, and the dust suction assembly is matched to suck the fragments, so that the tray is automatically aligned for cleaning when the tray is retracted, and the fragments are prevented from accumulating.
Description
Technical Field
The invention belongs to the technical field of brick making, and particularly relates to a full-automatic brick making production line.
Background
The brick making process includes crushing the material into fine grains, mixing the grains with other material, pressing to form green brick, and low temperature curing in curing mechanism to obtain the brick product.
In the existing environment-friendly brick manufacturing process, the procedures of manufacturing green bricks, curing the green bricks and packing finished bricks are related, and the procedures are completed by adopting a brick making mechanism, a curing mechanism and a packing machine respectively, wherein bricks are required to be stacked on a tray in the stage of feeding to a curing kiln, the surface of just-molded bricks is more moist, partial brick fragments can be adhered to the tray in the curing process, and the fragments can be stacked after long-term use, so that the surface of the tray is uneven, and the bricks are not stacked when stacked.
Disclosure of Invention
In view of the defects in the prior art, the technical problem to be solved by the invention is to provide a full-automatic brick making production line which can automatically align the tray for cleaning when the tray is retracted, so as to prevent chips from accumulating.
In order to solve the technical problems, the technical scheme adopted by the invention is that the full-automatic brick making production line comprises material distribution equipment, material mixing equipment, crushing equipment, forming equipment, stacking equipment, tray conveying equipment and curing kilns, wherein conveying belts are arranged between the material distribution equipment and the material mixing equipment and between the material mixing equipment and the crushing equipment, the forming equipment is arranged at the output position of the crushing equipment, the stacking equipment is arranged between the forming equipment and the tray conveying equipment, and the curing kilns are positioned on one side, far away from the forming equipment, of the tray conveying equipment;
The tray conveying equipment comprises a conveying frame and two lifting assemblies, wherein the two lifting assemblies are respectively arranged at two ends of the conveying frame, the two lifting assemblies are correspondingly arranged at the input position and the output position of the curing kiln, a cleaning assembly is arranged on the conveying frame and positioned at a position close to the output position of the curing kiln, the cleaning assembly comprises a supporting frame, a plurality of lifting cylinders and a plurality of brush heads, the supporting frame is arranged on the conveying frame, the lifting cylinders are equidistantly arranged on the supporting frame along the width of the conveying frame, the output ends are arranged towards the conveying frame and are provided with rotating machines, the brush heads are respectively arranged on the rotating machines of the lifting cylinders, fans are arranged on two symmetrical sides of the supporting frame, the supporting frame is provided with guide pipes, the fans on two sides are respectively provided with air outlet pipes communicated with the guide pipes, the brush heads are internally provided with air cavities, the hollow hoses are respectively communicated with the air cavities, the air cavities are rotatably provided with rotating rings, the guide pipes are respectively connected with the conveying pipes, and the corresponding air cavities are respectively arranged on the dust suction ends of the dust suction units.
The lower end of the hollow hose is provided with a plurality of bristle brush strips along the wall of the hose at equal intervals.
The dust collection assembly comprises a dust collection barrel, a conical guide barrel and a filter cover, wherein the conical guide barrel is arranged above the dust collection barrel, a small-diameter opening of the conical guide barrel is communicated with the dust collection barrel, one side of the top of the conical guide barrel is provided with a suction pipe, the suction pipe is arranged in a supporting frame along the suction of the suction pipe, the dust collection cover is arranged on the suction pipe, the filter cover is arranged at the top of the conical guide barrel, the fan is arranged on the filter cover, and the input end of the fan is communicated with the conical guide barrel.
The lifting assembly comprises a lifting frame and two lifting chains, wherein the two lifting chains are symmetrically arranged on two sides of the lifting frame and are positioned on two sides of the transmission frame, driving machines for driving the two lifting chains are arranged on the lifting frame, a plurality of supporting plates are arranged on the lifting chains at equal intervals, an auxiliary guide groove is arranged on one side, facing the transmission frame, of the lifting frame, and guide wheels which roll in the auxiliary guide groove are arranged on the supporting plates.
And the output part of the curing kiln are respectively provided with a primary-secondary vehicle, and the two lifting assemblies are respectively arranged corresponding to the two primary-secondary vehicles.
The brick clamping machine is installed on one side of the transmission frame, the brick clamping machine is close to the position of the curing kiln output, and a transfer belt is arranged below the brick clamping machine.
The crushing equipment comprises a material bearing groove, a conveying belt and a crushing bin, wherein the material bearing groove is positioned below a conveying belt output port of the mixer, the conveying belt is arranged at the bottom in the material bearing groove, the crushing bin is arranged at the output port of the material bearing groove, a crushing cutter group is arranged in the crushing bin, and a driving motor for driving the crushing cutter group to rotate is arranged below the material bearing groove.
The material distributor comprises three material storage tanks, wherein the lower parts of the three material storage tanks are respectively provided with a movable transmission assembly, each movable transmission assembly comprises a guide rail, a movable frame and a transmission belt, the guide rails are arranged below the material storage tanks, the movable frames are movably arranged on the guide rails, the transmission belts are arranged on the movable frames, the bottoms of the material storage tanks are provided with output ports attached to the transmission surfaces of the transmission belts, the output ports are provided with openings towards the output sides of the transmission belts, the output positions of the transmission belts are provided with the transmission belts, and the conveying directions of the transmission belts and the transmission directions of the transmission belts are perpendicular to each other on a horizontal plane.
Compared with the prior art, the invention has the following beneficial effects:
1. The invention relates to a full-automatic brick making production line, which is characterized in that after maintenance is finished, a tray is taken down and then is placed on a lifting assembly at an input position of a conveying frame, the lifting assembly conveys the tray on the conveying frame and is placed below a cleaning assembly, a plurality of brush heads are driven to be attached to the upper part of the tray through a plurality of lifting cylinders, the surface of the tray is cleaned through rotation of the brush heads, and the air is blown out from a hollow hose through the cooperation of a fan, so that the fragments brushed off by the tray are blown away, and the dust suction assembly is matched to suck the fragments, so that the tray is automatically aligned for cleaning when the tray is retracted, and the fragments are prevented from accumulating.
2. When the full-automatic brick making production line is used for brick laying production, required materials are transported by a material distributor through a conveyor belt and are placed on a mixer for mixing, the mixed materials have some humidity and are easy to agglomerate, the mixed materials enter a crushing device for further crushing into fine particles, then enter a forming machine for compression forming, the formed bricks are stacked on a tray of a tray conveyor through a stacking machine, and then are transported and placed in a curing kiln, so that the full-automatic brick making is realized.
3. According to the full-automatic brick making production line, suction force is provided by the fan, and the suction pipe and the dust accumulation cover are matched to suck the blown scraps into the conical guide barrel, because structural wind of the conical guide barrel can swirl in the conical guide barrel, a wind flow track of the structural wind enters the conical guide barrel through the suction pipe and then flows under the conical guide barrel in a swirling manner, so that the central part of the conical guide barrel flows towards the fan, a flow gap is formed between the formed vortex and the inner wall of the conical guide barrel, the scraps are blown by the wind in the conical guide barrel to be attached to the inner wall of the conical guide barrel to fall down in a spiral manner and are placed in the dust collection barrel, and dust collection and blowing work is carried out by the fan.
Drawings
FIG. 1 is a schematic diagram of a fully automatic brick making production line;
FIG. 2 is a schematic view of the structure of the tray transfer apparatus of the present invention;
FIG. 3 is a schematic view of a cleaning assembly according to the present invention;
FIG. 4 is a schematic view of a brush head according to the present invention;
FIG. 5 is a schematic view of a dust collection assembly according to the present invention;
FIG. 6 is a schematic view of another view of the cleaning assembly of the present invention;
FIG. 7 is an enlarged schematic view of the structure of the present invention A;
FIG. 8 is a schematic view of a lifting assembly according to the present invention;
FIG. 9 is a schematic structural view of the cloth device of the present invention;
FIG. 10 is a schematic diagram of a mobile transmission assembly according to the present invention;
fig. 11 is a schematic structural view of the pulverizing apparatus of the present invention.
The drawing shows 1, a material distribution device, 101, a material storage tank, 102, a movable transmission assembly, 103, a guide rail, 104, a movable frame, 105, a transmission belt, 106 and a conveying belt;
2. mixing equipment, crushing equipment, 301, a material bearing groove, 302, a conveyor belt, 303, a crushing bin, 304, a crushing cutter set, 305 and a driving motor;
4. forming equipment, stacking equipment, pallet conveying equipment, 601, a conveying frame, 602, a lifting assembly, 603, a lifting frame, 604, a lifting chain, 605 and a supporting plate;
7. a maintenance kiln 701, a primary-secondary vehicle;
8. cleaning components, 801, a supporting frame, 802, a lifting cylinder, 803, a brush head, 804, a rotating machine, 805, a fan, 806, a conduit, 807, an air outlet pipe, 808, an air cavity, 809, a hollow hose, 8010, a rotating ring, 8011, a transmission pipe, 8012 and bristle brush strips;
9. The dust collection device comprises a dust collection assembly 901, a dust collection barrel 902, a conical guide barrel 903, a filter cover 904, a suction pipe 905, a dust accumulation cover 10, a brick clamping machine 11 and a transfer belt.
Detailed Description
In order to make the above features and advantages of the present invention more comprehensible, embodiments accompanied with figures are described in detail below.
As shown in fig. 1 to 11, the embodiment provides a full-automatic brick making production line, which comprises a material distribution device 1, a material mixing device 2, a crushing device 3, a forming device 4, a stacking device 5, a tray conveying device 6 and a curing kiln 7, wherein conveying belts are respectively arranged between the material distribution device 1 and the material mixing device 2 and between the material mixing device 2 and the crushing device 3, the forming device 4 is arranged at the output of the crushing device 3, the stacking device 5 is arranged between the forming device 4 and the tray conveying device 6, and the curing kiln 7 is positioned at one side of the tray conveying device 6 far away from the forming device 4;
The tray conveying device 6 comprises a conveying frame 601 and two lifting assemblies 602, the two lifting assemblies 602 are respectively arranged at two ends of the conveying frame 601, the two lifting assemblies 602 are correspondingly located at an input position and an output position of a curing kiln 7, a cleaning assembly 8 is mounted on the conveying frame 601, the cleaning assembly 8 is located at a position close to the output position of the curing kiln 7, the cleaning assembly 8 comprises a supporting frame 801, a plurality of lifting cylinders 802 and a plurality of brush heads 803, the supporting frame 801 is mounted on the conveying frame 601, the lifting cylinders 802 are equidistantly mounted on the supporting frame 801 along the width of the conveying frame 601, an output end faces the conveying frame 601 and is provided with a rotating machine 804, the brush heads 803 are respectively mounted on rotating machines 804 of the lifting cylinders 802, fans 805 are mounted on two symmetrical sides of the supporting frame 801, the supporting frame 801 are provided with guide pipes 806, the fans 805 on two sides are respectively mounted with air outlet pipes 807 communicated with the guide pipes 806, an air cavity 808 is respectively arranged in the brush heads 803, the plurality of the brush heads 809 are respectively provided with a plurality of hollow hoses 803, the hollow hoses 8013 are respectively communicated with the air cavity 8013, the air cavity 808 is rotatably mounted on the supporting frame 8013, and the rotating ends of the guide pipes 8011 are respectively connected with the rotating machines 8011, and the corresponding dust suction pipes 805 are connected with the dust suction pipes 805. Specifically, the lower end of the hollow hose 809 is provided with a plurality of bristle brush strips 8012 equidistant along the wall of the hose itself. The hollow hose 809 blows air and the bristle brush strip 8012 cleans, which enables stable cleaning while blowing air. When bricklaying production is carried out, required materials are transported and placed on a mixer through a material distributor to be mixed, some humidity exists in the mixed materials and is easy to agglomerate, the mixed materials enter a smashing device 3 to be further smashed into fine particles, then the fine particles enter a forming machine to be pressed and formed, the formed bricks are stacked on a tray of a tray conveyor through a stacking machine, then the formed bricks are transported and placed on a curing kiln 7, full-automatic brickmaking is achieved, after the curing is finished, the formed bricks are placed on a lifting assembly 602 at the input position of a conveying frame 601 after being taken down, the lifting assembly 602 conveys the formed bricks on the conveying frame 601, then the formed bricks are placed under a cleaning assembly 8, a plurality of brush heads 803 are driven to be attached to the upper side of the formed bricks through rotation of the brush heads 803, wind is blown out from a hollow hose 809 through a fan 805, accordingly the formed bricks are blown away by the brushes of the formed pallets, the formed bricks are sucked by the dust collection assembly 9, and the formed pallets are automatically aligned to be cleaned when the formed by returning the dust collection assembly is achieved, and the chips are prevented from being stacked.
Further, the dust collection assembly 9 comprises a dust collection barrel 901, a conical guide barrel 902 and a filter cover 903, wherein the conical guide barrel 902 is arranged above the dust collection barrel 901, a small diameter opening of the conical guide barrel 902 is communicated with the dust collection barrel 901, one side of the top of the conical guide barrel 902 is provided with a suction pipe 904, the suction pipe 904 is arranged in a supporting frame 801 along the suction of the suction pipe 904, a dust accumulation cover 905 is arranged on the suction pipe 904, the filter cover 903 is arranged on the top of the conical guide barrel 902, a fan 805 is arranged on the filter cover 903, and the input end of the fan is communicated with the conical guide barrel 902. The suction force is provided by the fan 805, the blown debris is sucked into the conical guide barrel 902 by matching the suction pipe 904 and the dust accumulation cover 905, because structural wind of the conical guide barrel 902 can form vortex flow in the conical guide barrel 902, the wind flow track of the wind flow enters the conical guide barrel 902 through the suction pipe 904 and then flows in a vortex mode to be arranged below the conical guide barrel 902, so that the wind flow is towards the fan 805 through the central part of the conical guide barrel 902, a flow gap is formed between the formed vortex and the inner wall of the conical guide barrel 902, the debris is blown by wind in the conical guide barrel 902 to be attached to the inner wall in the conical guide barrel 902 to be spirally dropped into the dust collection barrel 901, the collection of the debris is achieved, and dust collection and dust blowing work is carried out through the fan 805.
Further, the lifting assembly 602 comprises a lifting frame 603 and two lifting chains 604, the two lifting chains 604 are symmetrically arranged on two sides of the lifting frame and are positioned on two sides of the transmission frame 601, a driving machine for driving the two lifting chains 604 is arranged on the lifting frame, a plurality of supporting plates 605 are equidistantly arranged on the lifting chains 604, an auxiliary guide groove is arranged on one side, facing the transmission frame 601, of the lifting frame 603, and the supporting plates 605 are provided with guide wheels which roll in the auxiliary guide groove. Specifically, the primary and secondary vehicles 701 are respectively installed at the output and the output of the curing kiln 7, and the two lifting assemblies 602 are respectively arranged corresponding to the two primary and secondary vehicles 701. The transmission frame 601 is used for transmitting the trays below the stacker, then the stacker is carried out, and the trays are transmitted to the lifting assembly 602 at the output position of the transmission frame 601, the lifting assembly 602 is too high, the primary and secondary vehicles 701 are convenient to grasp and transport on the curing kiln 7, the trays are taken down after curing, the trays are placed on the lifting assembly 602 at the input position of the transmission frame 601, the trays are transmitted to the transmission frame 601 through the transmission frame 601, the trays are transmitted to the stacker below through the transmission frame 601, automatic circulation is achieved without manual carrying, an auxiliary guide groove is arranged, the supporting plate 605 can be rocked through the cooperation of the guide groove and the guide wheel when the trays are borne, and bricks in the curing kiln 7 are transported through the two primary and secondary vehicles 701.
Further, a brick clamping machine 10 is installed on one side of the transmission frame 601, the brick clamping machine 10 is close to the position of the output part of the curing kiln 7, and a transfer belt 11 is arranged below the brick clamping machine 10. The brick clamping and conveying machine 10 clamps and conveys the cured bricks on the pallet conveying equipment 6 on the conveying belt 11, and conveys the bricks through the conveying belt 11.
Further, the crushing device 3 comprises a material bearing groove 301, a conveying belt 302 and a crushing bin 303, the material bearing groove 301 is located below a conveying belt output port of the mixer, the conveying belt 302 is arranged at the bottom in the material bearing groove 301, the crushing bin 303 is arranged at the output port of the material bearing groove 301, a crushing cutter group 304 is arranged in the crushing bin 303, and a driving motor 305 for driving the crushing cutter group 304 to rotate is arranged below the material bearing groove 301. The material placed in the material receiving groove 301 is conveyed by the conveyor belt 302, so that the material enters the crushing bin 303, and the crushing cutter group 304 is driven by the driving motor 305 to perform rotary crushing.
Further, the material distributor comprises three material storage tanks 101, a movable transmission assembly 102 is arranged below the three material storage tanks 101, the movable transmission assembly 102 comprises a guide rail 103, a movable frame 104 and a transmission belt 105, the guide rail 103 is arranged below the material storage tanks 101, the movable frame 104 is movably arranged on the guide rail 103, the transmission belt 105 is arranged on the movable frame 104, an output port attached to a transmission surface of the transmission belt 105 is arranged at the bottom of the material storage tanks 101, an opening is formed in the output port towards the output side of the transmission belt 105, a conveying belt 106 is arranged at the output position of the transmission belt 105, and the conveying direction of the conveying belt 106 and the conveying direction of the transmission belt 105 are vertically arranged on a horizontal plane. The conveyor belt 105, when moving, brings the material from the output port to the opening, and conveys the material. The storage tank 101 is used for storing materials with different colors, the materials are placed on the conveying belt 105, the conveying belt 105 is used for conveying the materials, the movable frame 104 drives the conveying belt 105 to move on the guide rail 103, the discharging position of the conveying belt 105 is adjusted, the materials are placed at different positions, the conveying belt 106 is used for conveying the materials, the materials are not limited by angles, and various color mixtures are carried out.
While the basic principles and main features of the invention and advantages of the invention have been shown and described, it will be understood by those skilled in the art that the present invention is not limited by the foregoing embodiments, which are described in the foregoing description merely illustrate the principles of the invention, and various changes and modifications may be made therein without departing from the spirit and scope of the invention as defined in the appended claims and their equivalents.
Claims (8)
1. The full-automatic brick making production line is characterized by comprising a material distribution device, a material mixing device, a crushing device, a forming device, a stacking device, a tray conveying device and a curing kiln, wherein conveying belts are arranged between the material distribution device and the material mixing device and between the material mixing device and the crushing device, the forming device is arranged at the output position of the crushing device, the stacking device is arranged between the forming device and the tray conveying device, and the curing kiln is positioned on one side, far away from the forming device, of the tray conveying device;
The tray conveying equipment comprises a conveying frame and two lifting assemblies, wherein the two lifting assemblies are respectively arranged at two ends of the conveying frame, the two lifting assemblies are correspondingly arranged at the input position and the output position of the curing kiln, a cleaning assembly is arranged on the conveying frame and positioned at a position close to the output position of the curing kiln, the cleaning assembly comprises a supporting frame, a plurality of lifting cylinders and a plurality of brush heads, the supporting frame is arranged on the conveying frame, the lifting cylinders are equidistantly arranged on the supporting frame along the width of the conveying frame, the output ends are arranged towards the conveying frame and are provided with rotating machines, the brush heads are respectively arranged on the rotating machines of the lifting cylinders, fans are arranged on two symmetrical sides of the supporting frame, the supporting frame is provided with guide pipes, the fans on two sides are respectively provided with air outlet pipes communicated with the guide pipes, the brush heads are internally provided with air cavities, the hollow hoses are respectively communicated with the air cavities, the air cavities are rotatably provided with rotating rings, the guide pipes are respectively connected with the conveying pipes, and the corresponding air cavities are respectively arranged on the dust suction ends of the dust suction units.
2. The fully automatic brick making production line according to claim 1, wherein the lower end of the hollow hose is provided with a plurality of bristle brush strips along the wall of the hollow hose at equal intervals.
3. The full-automatic brick making production line according to claim 1, wherein the dust collection assembly comprises a dust collection barrel, a conical guide barrel and a filter cover, the conical guide barrel is arranged above the dust collection barrel, a small-diameter opening of the conical guide barrel is communicated with the dust collection barrel, one side of the top of the conical guide barrel is provided with a suction pipe, the suction pipe is arranged in a supporting frame along the suction direction, the suction pipe is adsorbed and provided with a dust accumulation cover, the filter cover is arranged at the top of the conical guide barrel, the fan is arranged on the filter cover, and the input end of the fan is communicated with the conical guide barrel.
4. The full-automatic brick making production line according to claim 1, wherein the lifting assembly comprises a lifting frame and two lifting chains, the two lifting chains are symmetrically arranged on two sides of the lifting frame and are positioned on two sides of the transmission frame, a driving machine for driving the two lifting chains is arranged on the lifting frame, the lifting chains are equidistantly provided with a plurality of supporting plates, an auxiliary guide groove is arranged on one side, facing the transmission frame, of the lifting frame, and the supporting plates are provided with guide wheels which roll in the auxiliary guide groove.
5. The full-automatic brick making production line according to claim 4, wherein the output part and the output part of the curing kiln are respectively provided with a primary car and a secondary car, and the two lifting assemblies are respectively arranged corresponding to the two primary cars and the secondary car.
6. The full-automatic brick making production line according to claim 4, wherein a brick clamping machine is arranged on one side of the transmission frame, the brick clamping machine is close to the position of the curing kiln output, and a transfer belt is arranged below the brick clamping machine.
7. The full-automatic brick making production line according to claim 1, wherein the crushing equipment comprises a material bearing groove, a conveyor belt and a crushing bin, the material bearing groove is positioned below a conveying belt output port of the mixer, the conveyor belt is arranged at the bottom in the material bearing groove, the crushing bin is arranged at the output port of the material bearing groove, a crushing cutter group is arranged in the crushing bin, and a driving motor for driving the crushing cutter group to rotate is arranged below the material bearing groove.
8. The full-automatic brick making production line according to claim 1, wherein the material distributor comprises three material storage tanks, the movable transmission assemblies are arranged below the three material storage tanks, each movable transmission assembly comprises a guide rail, a movable frame and a transmission belt, the guide rails are arranged below the material storage tanks, the movable frames are arranged on the guide rails in a movable mode, the transmission belts are arranged on the movable frames, an output port attached to the transmission surfaces of the transmission belts is arranged at the bottoms of the material storage tanks, an opening is formed in the output port facing the output side of the transmission belts, the transmission belts are arranged at the output positions of the transmission belts, and the conveying directions of the transmission belts and the transmission directions of the transmission belts are perpendicular to each other on a horizontal plane.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510517600.3A CN120038835A (en) | 2025-04-24 | 2025-04-24 | Full-automatic brickmaking production line |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510517600.3A CN120038835A (en) | 2025-04-24 | 2025-04-24 | Full-automatic brickmaking production line |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN120038835A true CN120038835A (en) | 2025-05-27 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202510517600.3A Pending CN120038835A (en) | 2025-04-24 | 2025-04-24 | Full-automatic brickmaking production line |
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| CN (1) | CN120038835A (en) |
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| CN221700168U (en) * | 2024-03-05 | 2024-09-13 | 湖北华贵食品有限公司 | A device that is used for reciprocating type even autoloading of lotus root area material |
| CN118700301A (en) * | 2024-07-31 | 2024-09-27 | 宜都楚韵建材科技有限公司 | A concrete block pressing machine system |
| CN222060737U (en) * | 2024-03-28 | 2024-11-26 | 长宁县宏鑫建材有限责任公司 | A mixing device |
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2025
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| KR102049498B1 (en) * | 2019-04-03 | 2019-11-27 | 김윤춘 | brick manufacturing method |
| CN214491019U (en) * | 2020-07-06 | 2021-10-26 | 宁夏新汇德工贸有限公司 | Automatic steam-cured brick production line |
| CN220596074U (en) * | 2023-08-25 | 2024-03-15 | 唐山胜利机械制造有限公司 | Reciprocating type cloth shuttle car |
| CN117584266A (en) * | 2023-12-29 | 2024-02-23 | 扬州朗恒机械制造有限公司 | Suspension roller type pipe making machine and wall thickness control method |
| CN221700168U (en) * | 2024-03-05 | 2024-09-13 | 湖北华贵食品有限公司 | A device that is used for reciprocating type even autoloading of lotus root area material |
| CN222060737U (en) * | 2024-03-28 | 2024-11-26 | 长宁县宏鑫建材有限责任公司 | A mixing device |
| CN118700301A (en) * | 2024-07-31 | 2024-09-27 | 宜都楚韵建材科技有限公司 | A concrete block pressing machine system |
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Application publication date: 20250527 |
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