Waste plastic processing, recycling and regenerating device
Technical Field
The utility model belongs to the technical field of waste plastic processing, and particularly relates to a waste plastic processing, recycling and regenerating device.
Background
Waste plastics are popular terms and do not refer to waste, old and unused plastic products. Most plastic products, especially a large number of disposable plastic products, have no great change in the properties of the plastic material after use, so that the plastic products can be recycled and reprocessed into plastic products by a proper method for reuse.
The plastic is a recyclable resource, the waste plastic can be reused after being recycled through a series of treatments, the waste plastic is required to be crushed and crushed after being recycled, the traditional mode is to crush the waste plastic, and the crushed plastic particles are large and further require subsequent treatments, so that the waste plastic processing, recycling and regenerating device is provided to solve the problems.
Disclosure of Invention
The utility model aims to provide a waste plastic processing, recycling and regenerating device for solving the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a regenerating unit is retrieved in waste plastic processing, includes the collection box, be equipped with crushing subassembly and filter element in the collection box, one side of collection box is equipped with circulating assembly, be equipped with drive assembly in the circulating assembly, drive assembly connects under the collection box.
As a preferred embodiment, the recycling bin comprises a bin body, a feeding hole, a protective shell, an observation plate and a discharge pipe, wherein the feeding hole is formed in the bin body, the protective shell is connected to the front face of the bin body, the observation plate is connected to one side of the bin body in a clamping mode, the discharge pipe is connected to the bottom end of the bin body in a clamping mode, and the circulating assembly is arranged on the other side of the bin body.
As a preferred implementation mode, the crushing assembly comprises two crushing rollers, the two crushing rollers are arranged in the box body, one ends of the two crushing rollers are connected with gears, the two gears are meshed, the other ends of the crushing rollers are connected with a first motor, and the first motor is connected with the back surface of the box body.
As a preferred implementation mode, the filter assembly comprises a filter plate, wherein the filter plate is clamped in the box body, and two material guide plates are connected to the filter plate.
As a preferred embodiment, the circulation assembly comprises a fixed shell, the fixed shell is connected with the box body, the top end of the fixed shell is connected with a feeding pipe, and the top end of the feeding pipe is connected with the box body.
As a preferred implementation mode, the driving assembly comprises a second motor and a material blocking shell, the second motor is connected with the fixed shell, the top end of the second motor is connected with the fan blade through a first belt wheel, the fan blade is arranged in the fixed shell, the first belt wheel is in transmission connection with a second belt wheel through a belt, the second belt wheel is connected with a spiral conveying rod, the spiral conveying rod is arranged in a material discharging pipe, and the lower part of the material discharging pipe is connected with the material blocking shell.
Compared with the prior art, the utility model has the beneficial effects that:
according to the recycling device, the waste plastics are poured into the recycling device through the smashing component, the filtering component, the circulating component and the driving component, the smashing component works to smash the waste plastics, plastic particles with qualified sizes move to the bottom of the recycling device through the filtering component, unqualified plastic particles roll into the circulating component, the driving component works to move the plastic particles entering the circulating component onto the smashing component again and then smash the plastic particles again, the operation is simple, the device can smash the plastic with high efficiency, and meanwhile, the plastic particles at the bottom of the filtering component are smoothly discharged from the recycling device under the action of the driving component and then are continuously subjected to regeneration processing operation;
according to the utility model, the filter plate and the material guide plates are arranged, and as the filter plate is inclined, plastic particles above the filter plate can roll between the two material guide plates under the action of self gravity so as to automatically move into the material inlet pipe.
Drawings
FIG. 1 is a schematic view of a three-dimensional structure of the present utility model;
FIG. 2 is a schematic diagram of a cross-sectional structure of the present utility model in front perspective view;
FIG. 3 is a schematic view of an enlarged structure of FIG. 2A according to the present utility model;
FIG. 4 is a schematic view showing the structure of the bottom perspective view of the present utility model;
FIG. 5 is a schematic view of an enlarged structure at B in FIG. 4 according to the present utility model;
FIG. 6 is a schematic view of a cross-sectional structure of the present utility model in a top view and in a perspective view;
fig. 7 is a schematic view showing a sectional structure of a top perspective view of the housing of the present utility model.
In the figure: 1. a recovery box; 11. a case; 12. a feed inlet; 13. a protective shell; 14. an observation plate; 15. a discharge pipe; 2. a crushing assembly; 21. a pulverizing roller; 22. a gear; 23. a first motor; 3. a filter assembly; 31. a filter plate; 32. a material guide plate; 4. a circulation assembly; 41. a fixed case; 42. a feed pipe; 5. a drive assembly; 51. a second motor; 52. a fan blade; 53. a first pulley; 54. a belt; 55. a second pulley; 56. a screw conveyor rod; 57. and a material blocking shell.
Detailed Description
The utility model is further described below with reference to examples.
The following examples are illustrative of the present utility model but are not intended to limit the scope of the utility model. The conditions in the examples can be further adjusted according to specific conditions, and simple modifications of the method of the utility model under the premise of the conception of the utility model are all within the scope of the utility model as claimed.
Referring to fig. 1-7, the utility model provides a waste plastic processing, recycling and regenerating device, which comprises a recycling box 1, wherein the recycling box 1 comprises a box body 11, a feed inlet 12, a protective shell 13, an observation plate 14 and a discharge pipe 15, the feed inlet 12 is arranged on the box body 11, and waste plastic can be poured into two crushing rollers 21 in the box body 11 through the feed inlet 12 by arranging the feed inlet 12;
the protective shell 13 is connected to the front of the box 11, the observation plate 14 is clamped at one side of the box 11, the discharge pipe 15 is clamped at the bottom end of the box 11, the circulation assembly 4 is arranged at the other side of the box 11, the recovery box 1 is internally provided with the crushing assembly 2 and the filtering assembly 3, the crushing assembly 2 comprises two crushing rollers 21, the two crushing rollers 21 are arranged in the box 11, and the crushing rollers 21 can crush waste plastics by arranging the crushing rollers 21 and oppositely rotating the two crushing rollers 21;
one end of each of the two crushing rollers 21 is connected with a gear 22, the two gears 22 are meshed, the two crushing rollers 21 connected with the two gears 22 can oppositely rotate due to the meshing of the two gears 22 by arranging the gears 22, and one of the crushing rollers 21 can be driven to rotate by the rotating first motor 23 by arranging the first motor 23;
the other end of the crushing roller 21 is connected with a first motor 23, the first motor 23 is connected with the back of the box 11, the filtering assembly 3 comprises a filtering plate 31, the filtering plate 31 is clamped in the box 11, and the filtering plate 31 can carry out filtering operation on crushed waste plastics by arranging the filtering plate 31;
two guide plates 32 are connected to the filter plate 31, and the two guide plates 32 can guide the crushed plastics on the filter plate 31 by arranging the guide plates 32 so that larger plastic particles can move into the feed pipe 42;
one side of the recovery box 1 is provided with a circulating assembly 4, the circulating assembly 4 is internally provided with a driving assembly 5, the circulating assembly 4 comprises a fixed shell 41, the fixed shell 41 is connected with the box 11, the top end of the fixed shell 41 is connected with a feed pipe 42, the top end of the feed pipe 42 is connected with the box 11, the driving assembly 5 is connected under the recovery box 1, the driving assembly 5 comprises a second motor 51 and a material blocking shell 57, the second motor 51 is connected with the fixed shell 41, the top end of the second motor 51 is connected with a fan blade 52 through a first belt pulley 53, the working second motor 51 can drive the first belt pulley 53 to rotate through a belt 54, and the rotating first belt pulley 53 can drive the second belt pulley 55 to rotate through the belt 54;
the fan blade 52 is arranged in the fixed shell 41, the first belt pulley 53 is in transmission connection with the second belt pulley 55 through the belt 54, the second belt pulley 55 is connected with the spiral conveying rod 56, and the spiral conveying rod 56 is arranged, so that the rotating spiral conveying rod 56 can convey plastic particles under the filter plate 31;
the screw conveying rod 56 is arranged in the discharge pipe 15, the lower part of the discharge pipe 15 is connected with the blocking shell 57, and the blocking shell 57 is arranged to block plastic particles discharged from the discharge pipe 15, so that the plastic particles cannot adhere to the outside of the second belt wheel 55 and the belt 54.
The working principle and the using flow of the utility model are as follows: waste plastic is poured into the box 11 through the feed inlet 12, the first motor 23 and the second motor 51 are controlled to work, the first motor 23 is operated to drive one of the crushing rollers 21 to rotate, the rotating crushing roller 21 drives one of the gears 22 to rotate, the rotating gear 22 drives the other crushing roller 21 to rotate in opposite directions through the other gear 22, the two crushing rollers 21 which rotate in opposite directions can crush the waste plastic falling above the waste plastic, the crushed plastic falls onto the filter plate 31, the fine plastic passes through the filter plate 31 to move to the bottom of the box 11, plastic particles on the filter plate 31 move into the feed pipe 42 under the action of the two guide plates 32, the second motor 51 is operated to drive the first belt wheel 53 and the fan blades 52 to rotate, the rotating fan blades 52 can blow the plastic particles entering the feed pipe 42 upwards to move onto the two crushing rollers 21, the two crushing rollers 21 which rotate in opposite directions continue to crush the plastic particles, the first belt wheel 53 which rotates drives the second belt wheel 55 to rotate through the belt 54, the second belt wheel 55 which drives the spiral conveying rod 56 to rotate, the plastic particles on the bottom of the spiral conveying rod 56 to discharge the plastic particles from the bottom of the box 11 to the bottom of the box 11.
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.