Plastic packaging product raw material processing device
Technical Field
The utility model relates to the technical field of plastic packaging product raw material treatment, in particular to a plastic packaging product raw material treatment device.
Background
The plastic products are the general names of articles for life, industry and the like which are processed by adopting plastic as a main raw material, and comprise all the articles of processes of injection molding, plastic suction and the like which take plastic as the raw material, wherein the plastic is a synthetic polymer material with plasticity, the plastic is a material which takes natural or synthetic resin as the main component, various additives are added, and the plastic can be molded into a certain shape under certain temperature, pressure and the like, and the shape is kept unchanged at normal temperature;
The existing plastic packaging product raw material processing device is generally provided with only a simple stirring rod in a cylinder, so that when the plastic raw materials are stirred and mixed, the materials with a certain height cannot be contacted by the stirring rod, the phenomenon of uneven mixing can occur, and the materials are not convenient to take after being mixed into new materials, so that the practicability is reduced;
accordingly, there is a need for a plastic packaging product raw material processing device that solves the above-mentioned problems.
Disclosure of utility model
The utility model aims to solve the defects in the prior art and provides a raw material treatment device for plastic packaging products.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
A raw material treatment device for plastic packaging products comprises a treatment module, a support assembly and a driving cylinder;
The processing module comprises a square frame, a central shaft of a first gear is movably connected with the square frame, the first gear is meshed with a second gear, the central shaft of the second gear is movably connected with the square frame, the end part of the central shaft of the second gear is fixedly connected with the center of one side of the raw material processing cylinder, the central shaft of the first gear is fixedly connected with the center of a first belt pulley, the center of the first belt pulley is fixedly connected with an output shaft of a motor, the motor is fixedly connected with a rectangular plate, and the rectangular plate is fixedly connected with the square frame;
The first belt pulley is connected with the second belt pulley through a belt, a central shaft of the second belt pulley penetrates through and is movably connected with the center of the first gear, the end part of the central shaft of the second belt pulley is fixedly connected with one end part of a circular tube, the circular tube is arranged in the raw material treatment cylinder, two ends of the circular tube respectively penetrate through two sides of the raw material treatment cylinder, the other end of the circular tube is fixedly communicated with an opening part of one end of a rotary joint, and an opening part of one end of the rotary joint penetrates through and is movably connected with the square frame;
the circular tube is fixedly connected with a group of evenly distributed spray heads respectively, the circular tube is fixedly connected with a group of rotating rods respectively, and the inner wall of the raw material treatment cylinder is fixedly connected with a group of evenly distributed baffles respectively.
Preferably, one side of the raw material treatment cylinder is fixedly communicated with the feed inlet, and the edge of the outer wall of the feed inlet is in threaded connection with the inner wall of the feed inlet cover.
Preferably, the support assembly comprises a support plate, wherein a convex plate fixedly arranged on the upper side of the support plate is hinged with two sides of the corresponding shell of the driving cylinder through a pin shaft respectively, and the telescopic rods of the driving cylinders are hinged with the square frame through pin shafts respectively.
Preferably, the support plates are respectively and fixedly connected with symmetrical support frames.
Preferably, the two supporting frames are hinged with the square frame through pin shafts respectively.
Compared with the prior art, the utility model has the beneficial effects that the round pipes are respectively driven to rotate by the processing module, the raw material processing cylinder drives the group of baffles to rotate, at the moment, the liquid pump with the additive outside is started, the additive enters the round pipes through the rotary joint and is sprayed out through the spray head, meanwhile, the rotating baffles can enable the plastic raw materials to be overturned and lifted, the plastic raw materials with the additive sprayed in the raw material processing cylinder are better mixed and processed by the rotating rod to form new materials, when the materials in the raw material processing cylinder are required to be taken out, the opening of the feed inlet is downward, the driving cylinder is started, one end of the feed inlet is inclined, the feed inlet cover is opened, and the materials in the raw material processing cylinder are discharged through the feed inlet.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic perspective view of the present utility model.
Fig. 3 is a schematic perspective view of the present utility model.
Fig. 4 is a schematic view of a connection structure of the present utility model with parts cut away.
Fig. 5 is a schematic view of a part connection structure of the present utility model.
In the figure:
The device comprises a processing module 11, a feed port cover 12, a raw material processing cylinder 13, a baffle plate 14, a rotary joint 15, a feed port 16, a first gear 17, a rectangular plate 18, a motor 19, a second gear 110, a belt 111, a second belt pulley 112, a rotating rod 113, a spray head 114, a circular pipe 115, a first belt pulley 116 and a square frame;
2, a supporting component 21, a supporting plate 22 and a supporting frame;
3. The cylinder is driven.
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.
A raw material treatment device for plastic packaging products comprises a treatment module 1, a support assembly 2 and a driving cylinder 3;
The processing module 1 comprises a square frame 116, wherein a central shaft of a first gear 16 is movably connected with the square frame 116, the first gear 16 is meshed with a second gear 19, the central shaft of the second gear 19 is movably connected with the square frame 116, the end part of the central shaft of the second gear 19 is fixedly connected with the center of one side of the raw material processing cylinder 12, the central shaft of the first gear 16 is fixedly connected with the center of a first belt pulley 115, the center of the first belt pulley 115 is fixedly connected with an output shaft of a motor 18, the motor 18 is fixedly connected with a rectangular plate 17, and the rectangular plate 17 is fixedly connected with the square frame 116;
the first belt pulley 115 is connected with the second belt pulley 111 through a belt 110, a central shaft of the second belt pulley 111 penetrates through and is movably connected with the center of the first gear 19, an end part of the central shaft of the second belt pulley 111 is fixedly connected with one end part of a circular tube 114, the circular tube 114 is arranged in the raw material treatment barrel 12, two ends of the circular tube 114 respectively penetrate through two sides of the raw material treatment barrel 12, the other end of the circular tube 114 is fixedly communicated with an opening part of one end of a rotary joint 14, and an opening part of one end of the rotary joint 14 penetrates through and is movably connected with the square frame 116;
The circular tubes 114 are respectively fixedly connected with a group of evenly-distributed spray heads 113, the circular tubes 114 are respectively fixedly connected with a group of rotating rods 112, and the inner walls of the raw material treatment cylinders 12 are respectively fixedly connected with a group of evenly-distributed baffle plates 13.
One side of the raw material treatment cylinder 12 is fixedly communicated with a feed inlet 15, and the edge of the outer wall of the feed inlet 15 is in threaded connection with the inner wall of the feed inlet cover 11.
The supporting component 2 comprises a supporting plate 21, a convex plate fixedly arranged on the upper side of the supporting plate 21 is hinged with two sides of the corresponding shell of the driving cylinder 3 through a pin shaft respectively, and telescopic rods of the two driving cylinders 3 are hinged with the square frame 116 through pin shafts respectively.
The supporting plates 21 are respectively and fixedly connected with symmetrical supporting frames 22.
The two supporting frames 22 are hinged to the square frame 116 through pin shafts respectively.
The working principle is that firstly, when a feed inlet 15 faces upwards, a feed port cover 11 is unscrewed, a proper amount of plastic raw material is added into a raw material processing cylinder 12 through the feed inlet 15, the feed port cover 11 is unscrewed, one end of a rotary joint 14 is connected with a liquid pump which is externally provided with additives, then a motor 18 is started, the motor 18 drives a belt pulley I115 to rotate, the belt pulley I115 drives a belt pulley II 111 to rotate through a belt 110, the belt pulley II 111 drives a circular tube 114 to rotate, the circular tube 114 drives a group of spray heads 113 to rotate, meanwhile, the circular tube 114 respectively drives a rotating rod 112 to rotate, the belt pulley I115 drives a gear I16 to rotate, the gear I16 is meshed with a gear II 19 to rotate, the gear II 19 drives the raw material processing cylinder 12 to rotate, the raw material processing cylinder 12 drives a group of baffle 13 to rotate, at the moment, the liquid pump which is externally provided with additives is started, the additives are fed into the circular tube 114 through the rotary joint 14 and sprayed through the spray heads 113, meanwhile, the plastic raw material can be overturned, and the phenomenon that the plastic raw material is not mixed is avoided, and the plastic raw material sprayed in the raw material processing cylinder 12 is better mixed and processed by the rotating baffle 13;
When the material in the raw material processing cylinder 12 needs to be taken out, the opening of the feed inlet 15 is downward, the driving cylinder 3 is started, the telescopic rod of the driving cylinder 3 retracts to drive the square frame 116 to swing, the square frame 116 drives the processing module 1 to incline, as shown in fig. 2, one end of the feed inlet 15 is inclined, at the moment, the driving cylinder 3 is closed, the feed inlet cover 11 is opened, and the material in the raw material processing cylinder 12 is discharged through the feed inlet 15.
The processing module 1 has the beneficial effects that the round pipes 114 respectively drive the rotating rods 112 to rotate, the raw material processing cylinder 12 drives the group of baffles 13 to rotate, at the moment, a liquid pump with additives outside is started, the additives enter the round pipes 114 through the rotary joint 14 and are sprayed out through the spray heads 113, meanwhile, the rotating baffles 13 can enable plastic raw materials to be overturned and lifted, the rotating rods 112 enable the plastic raw materials with the additives sprayed in the raw material processing cylinder 12 to be better mixed and processed, new materials are formed, when the materials in the raw material processing cylinder 12 need to be taken out, the opening of the feed inlet 15 is downward, the driving cylinder 3 is started, one end of the feed inlet 15 is inclined, the feed inlet cover 11 is opened, and the materials in the raw material processing cylinder 12 are discharged through the feed inlet 15.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.