Tile pressing device with feeding structure
Technical Field
The utility model relates to the technical field of tile pressing devices, in particular to a tile pressing device with a feeding structure.
Background
The tile pressing device is an important device for producing and processing encaustic tiles, and the produced encaustic tiles are flat and beautiful in appearance, even in paint lines, high in strength and durable, and widely applied to industrial and civil buildings, such as houses, warehouses, gymnasiums, exhibition halls, movie theatres and other house surfaces and walls.
But the discharging pipe of current material loading structure is mostly fixed, and when discharging pipe and ejection of compact position interval were great, can lead to the raw materials to splash, and the material loading structure is but automatic feeding, but is inconvenient to carry raw materials ration, leads to the material loading always.
Disclosure of utility model
The present utility model aims to solve at least one of the technical problems existing in the prior art.
Therefore, one purpose of the utility model is to provide a tile pressing device with a feeding structure, wherein a fixed plate, a fixed pipe, a hand wheel, a rotating shaft and a sealing plate are arranged in a hopper, and the hand wheel is rotated to drive the rotating shaft and the sealing plate to rotate together, so that the flow and the rest of the raw materials of the encaustic tiles in the fixed pipe can be controlled, the quantitative feeding is realized, and the continuous feeding is avoided.
The tile pressing device with the feeding structure comprises a hopper, wherein the hopper is positioned at the upper end of the feeding mechanism, a tile pressing die is arranged on one side of the feeding mechanism, a supporting seat is arranged below the feeding mechanism, two ends of the supporting seat are fixedly connected with the hopper and the feeding mechanism respectively, the feeding mechanism comprises a feeding cylinder, a discharging pipe is arranged on one side of the lower end of the feeding cylinder, an extension pipe is sleeved on the outer wall of the discharging pipe, electric push rods are arranged at the front end and the rear end of the discharging pipe, and two ends of each electric push rod are fixedly connected with the discharging pipe and the extension pipe through fixing blocks respectively.
Preferably, the hopper is fixedly connected with the feeding cylinder through a feeding pipe, a fixing plate is arranged in the hopper, and a fixing pipe is arranged in the fixing plate.
Preferably, the below of fixed plate is provided with the pivot, fixedly be provided with the shrouding on the outer wall of pivot, and the shrouding is located fixed intraductal, the one end of pivot extends to the external connection of hopper has the hand wheel.
Preferably, a driving shell is fixedly arranged on one side of the feeding cylinder, a motor is installed on the driving shell, and a driving wheel is arranged at the output end of the motor.
Preferably, a screw transmission shaft is arranged in the feeding cylinder, one end of the screw transmission shaft extends to the inner part of the driving shell and is connected with a synchronous wheel, and the synchronous wheel is in transmission connection with the driving wheel through a belt.
Preferably, the tile pressing die comprises an upper die and a lower die, hydraulic cylinders are arranged on two sides of the lower die, and the telescopic ends of the hydraulic cylinders are fixedly connected with the upper die.
Preferably, a storage chamber is arranged above the upper die, and a feed inlet is arranged at the upper end of the storage chamber.
Preferably, a chute is arranged in the extension pipe, and the blanking pipe is in sliding connection with the chute through a sliding block.
Compared with the prior art, the utility model has the following beneficial effects:
1. According to the tile pressing device with the feeding structure, the fixed plate, the fixed pipe, the hand wheel, the rotating shaft and the sealing plate are arranged in the hopper, and the hand wheel is rotated to drive the rotating shaft and the sealing plate to rotate together, so that the flow and the rest of encaustic tile raw materials in the fixed pipe can be controlled, quantitative feeding is realized, and the continuous feeding is avoided.
2. According to the tile pressing device with the feeding structure, the extension pipe is driven by the electric push rod to drive the extension pipe to move on the outer wall of the blanking pipe, so that the distance between the blanking pipe and the feeding hole is adjusted, raw materials can smoothly enter the feeding hole, and raw materials are prevented from splashing.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a cross-sectional view of a hopper of the present utility model;
FIG. 3 is a schematic diagram of the internal structure of the feeding mechanism of the present utility model;
fig. 4 is an isometric view of an extension tube of the present utility model.
The feeding device comprises a feeding mechanism 1, a hopper 2, a feeding mechanism 3, a tile pressing die 4, a supporting seat 5, an extension pipe 101, a fixing plate 102, a fixing pipe 103, a feeding pipe 104, a rotating shaft 105, a sealing plate 106, a hand wheel 201, a feeding cylinder 202, a screw transmission shaft 203, a synchronous wheel 204, a driving wheel 205, a motor 206, a belt 207, a driving shell 208, a blanking pipe 301, a storage chamber 302, a feeding hole 303, an upper die 304, a lower die 305, a hydraulic cylinder 501, a sliding groove 502, a sliding block 503, an electric push rod 504 and a fixing block.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In order to solve among the prior art, the discharging pipe of material loading structure is mostly fixed, and when discharging pipe and ejection of compact position interval were great, can lead to the raw materials to splash, and the material loading structure is though can automatic feeding, but is inconvenient to the quantitative transport of raw materials, leads to the technical problem of material loading always, please refer to fig. 1-4, provides following technical scheme:
In this embodiment, a tile pressing device with feeding structure, including hopper 1, hopper 1 is located the upper end of feed mechanism 2, and one side of feed mechanism 2 is provided with tile pressing mould 3, and the below of feed mechanism 2 is provided with supporting seat 4, and the both ends of supporting seat 4 respectively with hopper 1 and feed mechanism 2 fixed connection, feed mechanism 2 includes feed cylinder 201, and one side of feed cylinder 201 lower extreme is provided with unloading pipe 208, pours the color tile raw materials into hopper 1 and carries by feed mechanism 2, and tile pressing mould 3 is used for the shaping of color tile raw materials.
Hopper 1 passes through conveying pipe 103 and goes up feed cylinder 201 fixed connection, and the inside of hopper 1 is provided with fixed plate 101, and the inside of fixed plate 101 is provided with fixed pipe 102, and the encaustic tile raw materials falls on fixed plate 101, goes out the ejection of compact through fixed pipe 102.
The below of fixed plate 101 is provided with pivot 104, and the fixed shrouding 105 that is provided with on the outer wall of pivot 104, and shrouding 105 are located fixed pipe 102, and the one end of pivot 104 extends to the external connection of hopper 1 and has hand wheel 106, through rotating hand wheel 106, and then drives pivot 104 and shrouding 105 and rotate together to can control the flow and the static of the interior encaustic tile raw materials of fixed pipe 102, avoid the material loading always.
In this embodiment, a driving housing 207 is fixedly disposed on one side of the feeding barrel 201, a motor 205 is mounted on the driving housing 207, a driving wheel 204 is disposed on an output end of the motor 205, a spiral transmission shaft 202 is disposed inside the feeding barrel 201, one end of the spiral transmission shaft 202 extends to an inner portion of the driving housing 207 and is connected with a synchronizing wheel 203, the synchronizing wheel 203 is in transmission connection with the driving wheel 204 through a belt 206, an output end of the synchronizing wheel 203 drives the driving wheel 204 to transmit through a starting motor 205, and then the synchronizing wheel 203 is in transmission through the action of the belt 206, so that the spiral transmission shaft 202 is in transmission to convey encaustral tile raw materials to a blanking pipe 208.
In this embodiment, the tile pressing mold 3 includes an upper mold 303 and a lower mold 304, hydraulic cylinders 305 are mounted on two sides of the lower mold 304, and telescopic ends of the hydraulic cylinders 305 are fixedly connected with the upper mold 303, mold cavities are formed in the upper mold 303 and the lower mold 304, when the hydraulic cylinders 305 drive the upper mold 303 to compress the lower mold 304, the mold cavities in the upper mold 303 and the lower mold 304 form a molding cavity, and a feeding channel is formed in the upper mold 303, so that raw materials in the storage chamber 301 enter the mold cavities through the feeding channel.
A material storage chamber 301 is arranged above the upper die 303, and a feed inlet 302 is arranged at the upper end of the material storage chamber 301.
The outer wall of the blanking pipe 208 is sleeved with the extension pipe 5, the front end and the rear end of the blanking pipe 208 are respectively provided with the electric push rod 503, two ends of the electric push rod 503 are fixedly connected with the blanking pipe 208 and the extension pipe 5 respectively through the fixing blocks 504, a sliding groove 501 is formed in the extension pipe 5, the blanking pipe 208 is slidably connected with the sliding groove 501 through the sliding block 502, the extension pipe 5 is aligned with the feed inlet 302, the extension pipe 5 can be driven to move on the outer wall of the blanking pipe 208 through the driving of the electric push rod 503, and therefore the distance between the blanking pipe 208 and the feed inlet 302 is adjusted, raw materials can smoothly enter the feed inlet 302, raw material splashing is avoided, the sliding groove 501 and the sliding block 502 are matched, and stability in the sliding process of the extension pipe 5 is guaranteed.
The working principle is that when the feeding device is used, the encaustic tile raw material is poured into the hopper 1, the encaustic tile raw material falls on the fixed plate 101, the encaustic tile raw material is discharged through the fixed pipe 102, the rotating shaft 104 and the sealing plate 105 are driven to rotate together through the rotating hand wheel 106, so that the flow and the rest of the encaustic tile raw material in the fixed pipe 102 can be controlled, the raw material enters the upper feeding cylinder 201 through the feeding pipe 103, the output end of the feeding cylinder is driven by the driving wheel 204 through the starting motor 205, and then the spiral driving shaft 202 is driven by the belt 206 to drive the synchronous wheel 203, the encaustic tile raw material is spirally conveyed to the discharging pipe 208, the extension pipe 5 is aligned to the feeding hole 302, the extension pipe 5 can be driven to move on the outer wall of the discharging pipe 208 through the driving of the electric push rod 503, the distance between the discharging pipe 208 and the feeding hole 302 can be adjusted, the raw material can smoothly enter the feeding hole 302, when the upper die 303 and the lower die 304 are driven by the hydraulic cylinder 305 to compress the lower die 304, the die groove inside the upper die 303 and the lower die 304 into a forming die cavity, the feeding channel is formed on the upper die 303, and the raw material in the storage chamber 301 enters the die feeding channel through the feeding channel.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.