CN208914406U - A kind of plastic grains vulcanization plant convenient for classification - Google Patents
A kind of plastic grains vulcanization plant convenient for classification Download PDFInfo
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- CN208914406U CN208914406U CN201821533214.5U CN201821533214U CN208914406U CN 208914406 U CN208914406 U CN 208914406U CN 201821533214 U CN201821533214 U CN 201821533214U CN 208914406 U CN208914406 U CN 208914406U
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- level
- shell
- sieve
- plastic grains
- storing box
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Abstract
The utility model discloses a kind of plastic grains vulcanization plants convenient for classification, including pedestal and second level material storing box, bracket is fixed on the pedestal, and cradle top is provided with shell, the cover top portion is provided with feed hopper, and feeding funnel bottom part offers feed inlet, feed inlet runs through cover top portion simultaneously, the cover top portion is provided with motor, and motor is rotatably connected to motor shaft, the motor shaft is rotatably connected to agitating shaft through cover top portion, and agitating shaft is arranged in sulfur still, side bottom inside the shell is arranged in sulfur still simultaneously, infrared ray heating tube is provided at the top of the outer side of shell, and infrared ray heating tube runs through cover top portion.This is convenient for the plastic grains vulcanization plant of classification, it is provided with sulfur still, infrared ray heating tube, agitating shaft, screening storehouse, level-one material storing box, three-level material storing box and second level material storing box, the a series of activities stored from vulcanization sizing to sizing screening to plastic grains can be completed in a device, and use is more convenient.
Description
Technical field
The utility model relates to plastic cement production technical field, specially a kind of plastic grains vulcanization plant convenient for classification.
Background technique
In plastic cement production, the plastic grains by primary processing is needed to carry out vulcanization sizing, vulcanization sizing needs higher
Temperature, therefore with regard to needing to use plastic grains vulcanization plant.
Existing plastic grains vulcanization plant carries out vulcanization sizing to plastic grains using the mode of heating mostly, usually makes
Device inside is heated with electric heating wire, but electric heating wire heating is preheated, therefore extends vulcanization time,
Usual vulcanizing equipment has a single function, and lacks and carries out sizing screening to the plastic grains that vulcanization is completed, therefore uses not enough just
Victory, in view of the above-mentioned problems, needing to improve existing equipment.
Utility model content
The purpose of this utility model is to provide a kind of plastic grains vulcanization plants convenient for classification, to solve above-mentioned background
The existing plastic grains vulcanization plant proposed in technology carries out vulcanization sizing to plastic grains using the mode of heating mostly, leads to
Electric heating wire is often used to heat to device inside, but electric heating wire heating is preheated, therefore extends vulcanization
Time, usual vulcanizing equipment have a single function, and lack the problem of carrying out sizing screening to the plastic grains that vulcanization is completed.
To achieve the above object, the utility model provides the following technical solutions: a kind of plastic grains vulcanization convenient for classification
Device, pedestal and second level material storing box are fixed with bracket on the pedestal, and cradle top is provided with shell, the cover top portion
It is provided with feed hopper, and feeding funnel bottom part offers feed inlet, while feed inlet runs through cover top portion, the cover top portion setting
There is motor, and motor is rotatably connected to motor shaft, the motor shaft is rotatably connected to agitating shaft, and agitating shaft through cover top portion
It is arranged in sulfur still, while side bottom, the outer side of shell top are provided with infrared heating inside the shell for sulfur still setting
Pipe, and infrared ray heating tube runs through cover top portion, while shell side offers thermovent, the sulfur still bottom and valve phase
Connection, and valve runs through outer casing bottom, the valve is connected with discharge port, and is connected on the right side of discharge port and screening the top of the warehouse
It connects, level-one sieve is provided in the screening storehouse, and be provided with second level sieve below level-one sieve, the screening storehouse left side and one
Grade discharge nozzle is connected, and screens and be connected on the right side of storehouse with second level discharge nozzle, and the level-one discharge nozzle is connected with level-one material storing box
It connects, and is provided with three-level material storing box on the right side of level-one material storing box, while three-level material storing box is connected with screening orlop portion, the second level
It is connected at the top of material storing box with second level discharge nozzle.
Preferably, the vertical section of the feed hopper is trapezoidal, and feeding funnel bottom part is provided with 4 feed inlets.
Preferably, the cross section of the sulfur still is circle, and the inner bottom surface of sulfur still is arcuate structure.
Preferably, the infrared ray heating tube is provided with 2, and central point phase of 2 infrared ray heating tubes about shell
Symmetrically.
Preferably, the surface of the level-one sieve and second level sieve is step structure, and the surface of step structure is
Incline structure.
Preferably, the right end bottom surface of the level-one discharge nozzle and level-one sieve left side bottom surface be in same level, and one
Elevation of water where grade discharge nozzle right end is higher than the place elevation of water of second level discharge nozzle left end bottom surface, while second level discharges
Pipe left end bottom surface and second level sieve right end bottom surface are in same level.
Compared with prior art, the utility model has the beneficial effects that the plastic grains vulcanization plant of classification should be convenient for,
(1) it is provided with sulfur still, agitating shaft, infrared ray heating tube and shell, the plastic cement of vulcanization sizing will be carried out
Grain pours into sulfur still, issues infrared light by infrared ray heating tube and heats to the agitating shaft of interior of shell, infrared ray
Heating tube heats rapid and homogeneous heating, then is slowly stirred by the rotation of agitating shaft the plastic grains inside sulfur still
It mixes, is heated evenly each plastic grains, to improve the vulcanization sizing quality of plastic grains, use is more convenient;
(2) screening storehouse, level-one sieve, second level sieve, level-one discharge nozzle, second level discharge nozzle, level-one material storing box, three are provided with
Grade material storing box and second level material storing box, level-one sieve and second level screen surface are mesh-structured, and the mesh of level-one screen surface
Diameter of movement is greater than the mesh-structured diameter of second level screen surface, when the plastic grains that vulcanization sizing finishes enter in screening storehouse
When, it can be three kinds of different grades of plastic grains by the mesh-structured screening of level-one sieve and second level sieve, and respectively correspond
It falls into level-one material storing box, three-level material storing box and second level material storing box, use is more convenient.
Detailed description of the invention
Fig. 1 is the utility model positive structure diagram;
Fig. 2 is side structure schematic view on the left of the utility model;
Fig. 3 is the utility model overlooking structure diagram;
Fig. 4 is the enlarged structure schematic diagram in the utility model Fig. 1 at A;
Fig. 5 is the enlarged structure schematic diagram in the utility model Fig. 1 at B.
In figure: 1, pedestal, 2, bracket, 3, shell, 4, feed hopper, 5, feed inlet, 6, motor, 7, motor shaft, 8, agitating shaft,
9, sulfur still, 10, infrared ray heating tube, 11, thermovent, 12, valve, 13, discharge port, 14, screening storehouse, 15, level-one sieve,
16, second level sieve, 17, level-one discharge nozzle, 18, second level discharge nozzle, 19, level-one material storing box, 20, three-level material storing box, 21, second level storage
Hopper.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-5 is please referred to, the utility model provides a kind of technical solution: a kind of plastic grains vulcanization dress convenient for classification
It sets, including pedestal 1, bracket 2, shell 3, feed hopper 4, feed inlet 5, motor 6, motor shaft 7, agitating shaft 8, sulfur still 9, infrared ray
Heating tube 10, thermovent 11, valve 12, discharge port 13, screening storehouse 14, level-one sieve 15, second level sieve 16, level-one discharge nozzle
17, second level discharge nozzle 18, level-one material storing box 19, three-level material storing box 20 and second level material storing box 21 are fixed with bracket 2 on pedestal 1, and
It is provided with shell 3 at the top of bracket 2, is provided with feed hopper 4 at the top of shell 3, and 4 bottom of feed hopper offers feed inlet 5, while into
Material mouth 5 is provided with motor 6 at the top of 3 top of shell, shell 3, and motor 6 is rotatably connected to motor shaft 7, and motor shaft 7 runs through
Agitating shaft 8 is rotatably connected at the top of shell 3, and agitating shaft 8 is arranged in sulfur still 9, while sulfur still 9 is arranged in shell 3
On same straight line, 3 outside top of shell is provided with infrared ray for side bottom, the central point of motor 6 and the central point of sulfur still 9
Heating tube 10, and infrared ray heating tube 10 runs through 3 top of shell, while 3 side of shell offers thermovent 11,9 bottom of sulfur still
Portion is connected with valve 12, and valve 12 runs through 3 bottom of shell, and valve 12 is connected with discharge port 13, and discharge port 13 and sieve
It selects 14 top right side of storehouse to be connected, screens in storehouse 14 and be provided with level-one sieve 15, and be provided with second level sieve below level-one sieve 15
Net 16,14 left side of screening storehouse are connected with level-one discharge nozzle 17, and screen 14 right side of storehouse and be connected with second level discharge nozzle 18, level-one
Discharge nozzle 17 is connected with level-one material storing box 19, and three-level material storing box 20 is provided on the right side of level-one material storing box 19, while three-level is stored up
Hopper 20 is connected with screening 14 bottom of storehouse, and the inner bottom surface in screening storehouse 14 is arcuate structure, 21 top of second level material storing box and two
Grade discharge nozzle 18 is connected.
The vertical section of the feed hopper 4 of this example is trapezoidal, and 4 bottom of feed hopper is provided with 4 feed inlets 5, will need to vulcanize
After qualitative plastic grains pour into feed hopper 4, plastic grains can by 4 feed inlets 5 evenly into sulfur still 9 inside,
Make to feed more convenient.
The cross section of sulfur still 9 is circle, and the inner bottom surface of sulfur still 9 is arcuate structure, convenient for plastic grains in sulphur
The inside for changing kettle 9 can assemble from 9 bottom inside center of trend sulfur still, discharge after being formed convenient for vulcanization.
Infrared ray heating tube 10 is provided with 2, and 2 infrared ray heating tubes 10 are symmetrical about the central point of shell 3, and 2
Calorific value can be improved in a infrared ray heating tube 10, makes to heat rapider, raising speed of production inside shell 3.
The surface of level-one sieve 15 and second level sieve 16 is step structure, and the surface of step structure is bevelled junction
Structure, plastic grains under gravity, can voluntarily be moved, mobile in level-one sieve 15 and 16 surface of second level sieve
In the process, plastic grains diameter is less than the meeting of 16 surface mesh diameter of movement of level-one sieve 15 or second level sieve across level-one sieve
15 or second level sieve 16 fall, so that screening process is carried out more smooth.
The right end bottom surface of level-one discharge nozzle 17 and 15 left side bottom surface of level-one sieve are in same level, and level-one discharge nozzle
Elevation of water where 17 right ends is higher than the place elevation of water of 18 left end bottom surface of second level discharge nozzle, while second level discharge nozzle 18
Left end bottom surface and 16 right end bottom surface of second level sieve are in same level, when plastic grains are moved to level-one sieve 15 or second level sieve
It when 16 bottom of net, can enter directly into level-one discharge nozzle 17 or second level discharge nozzle 18, or enter screening 14 bottom of storehouse, thus
Directly correspondence enters in level-one material storing box 19, three-level material storing box 20 and second level material storing box 21.
Working principle: when being convenient for the plastic grains vulcanization plant of classification using this, it will need to vulcanize the modeling of sizing first
Glue particle pours into feed hopper 4, and plastic grains pass through feed inlet 5 and enter in sulfur still 9, powers on, and starts motor 6 and red
Outside line heating tube 10, infrared ray heating tube 10 issue infrared ray and begin to warm up to 3 inside of shell and sulfur still 9, and motor 6 passes through electricity
Arbor 7 drives agitating shaft 8 to start to stir the plastic grains in sulfur still 9, and during vulcanization, thermovent 11 helps shell 3
Internal extra heat is dispersed into outside shell 3, after plastic grains vulcanization sizing, opens valve 12, plastic grains pass through
Discharge port 13 enters 15 right side of level-one sieve in screening storehouse 14, and under gravity, plastic grains start to sieve along level-one
The surface of net 15 is to moving on the left of level-one sieve 15, and in the process of moving, diameter is less than 15 surface mesh structure of level-one sieve
The plastic grains of diameter pass through level-one sieve 15, fall on second level sieve 16, the plastic cement remained above level-one sieve 15
Grain enters in level-one discharge nozzle 17, and finally falls into level-one material storing box 19 and stored, the plastic cement on 16 surface of second level sieve
Particle, under gravity, plastic grains start along the surface of second level sieve 16 to moving on the right side of second level sieve 16, in movement
During, the plastic grains that diameter is less than 16 surface mesh diameter of movement of second level sieve pass through second level sieve 16, fall in screening
14 bottom of storehouse, and finally fall into three-level material storing box 20 and stored, the plastic grains that 16 surface of second level sieve leaves enter
In second level discharge nozzle 18, and finally falls into second level material storing box 21 and stored, corresponding different size, to level-one material storing box
19, the plastic grains stored in three-level material storing box 20 and second level material storing box 21 are collected use, this just completes entire work
Make, and the content being not described in detail in this specification belongs to the prior art well known to professional and technical personnel in the field.
Term " center ", " longitudinal direction ", " transverse direction ", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom",
The orientation or positional relationship of the instructions such as "inner", "outside" is to be based on the orientation or positional relationship shown in the drawings, and is only for ease of description
The utility model simplifies description, rather than indicates or imply signified device or element and must have a particular orientation, be spy
Fixed orientation construction and operation, thus should not be understood as the limitation that content is protected to the utility model.
Although the utility model is described in detail with reference to the foregoing embodiments, come for those skilled in the art
Say, it is still possible to modify the technical solutions described in the foregoing embodiments, or to part of technical characteristic into
Row equivalent replacement, within the spirit and principle of the utility model, any modification, equivalent replacement, improvement and so on should all
It is included within the scope of protection of this utility model.
Claims (6)
1. a kind of plastic grains vulcanization plant convenient for classification, including pedestal (1) and second level material storing box (21), it is characterised in that:
Be fixed with bracket (2) on the pedestal (1), and be provided with shell (3) at the top of bracket (2), be provided at the top of the shell (3) into
Hopper (4), and feed hopper (4) bottom offers feed inlet (5), while feed inlet (5) is through shell (3) top, the shell
(3) top is provided with motor (6), and motor (6) is rotatably connected to motor shaft (7), and the motor shaft (7) is pushed up through shell (3)
Portion is rotatably connected to agitating shaft (8), and agitating shaft (8) setting is interior in sulfur still (9), while sulfur still (9) is arranged in shell (3)
Inside bottom, shell (3) outside top are provided with infrared ray heating tube (10), and infrared ray heating tube (10) runs through shell
(3) top, while shell (3) side offers thermovent (11), sulfur still (9) bottom is connected with valve (12), and
Valve (12) runs through shell (3) bottom, and the valve (12) is connected with discharge port (13), and discharge port (13) and screening storehouse
(14) top right side is connected, and is provided with level-one sieve (15) in the screening storehouse (14), and setting below level-one sieve (15)
Have second level sieve (16), be connected on the left of the screening storehouse (14) with level-one discharge nozzle (17), and screens storehouse (14) right side and two
Grade discharge nozzle (18) is connected, and the level-one discharge nozzle (17) is connected with level-one material storing box (19), and level-one material storing box (19)
Right side is provided with three-level material storing box (20), while three-level material storing box (20) is connected with screening storehouse (14) bottom, the second level storage
It is connected at the top of hopper (21) with second level discharge nozzle (18).
2. a kind of plastic grains vulcanization plant convenient for classification according to claim 1, it is characterised in that: the feed hopper
(4) vertical section is trapezoidal, and feed hopper (4) bottom is provided with 4 feed inlets (5).
3. a kind of plastic grains vulcanization plant convenient for classification according to claim 1, it is characterised in that: the sulfur still
(9) cross section is circle, and the inner bottom surface of sulfur still (9) is arcuate structure.
4. a kind of plastic grains vulcanization plant convenient for classification according to claim 1, it is characterised in that: the infrared ray
Heating tube (10) is provided with 2, and 2 infrared ray heating tubes (10) are symmetrical about the central point of shell (3).
5. a kind of plastic grains vulcanization plant convenient for classification according to claim 1, it is characterised in that: the level-one sieve
The surface of net (15) and second level sieve (16) is step structure, and the surface of step structure is incline structure.
6. a kind of plastic grains vulcanization plant convenient for classification according to claim 1, it is characterised in that: the level-one goes out
The right end bottom surface of expects pipe (17) and level-one sieve (15) left side bottom surface are in same level, and level-one discharge nozzle (17) right end institute
It is higher than the place elevation of water of second level discharge nozzle (18) left end bottom surface, while second level discharge nozzle (18) left end in elevation of water
Bottom surface and second level sieve (16) right end bottom surface are in same level.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821533214.5U CN208914406U (en) | 2018-09-19 | 2018-09-19 | A kind of plastic grains vulcanization plant convenient for classification |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821533214.5U CN208914406U (en) | 2018-09-19 | 2018-09-19 | A kind of plastic grains vulcanization plant convenient for classification |
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CN208914406U true CN208914406U (en) | 2019-05-31 |
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CN201821533214.5U Expired - Fee Related CN208914406U (en) | 2018-09-19 | 2018-09-19 | A kind of plastic grains vulcanization plant convenient for classification |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112847916A (en) * | 2021-01-05 | 2021-05-28 | 抚州同源和纸塑有限公司 | Rotary type classifying screen equipment is used in plastic grain production |
-
2018
- 2018-09-19 CN CN201821533214.5U patent/CN208914406U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112847916A (en) * | 2021-01-05 | 2021-05-28 | 抚州同源和纸塑有限公司 | Rotary type classifying screen equipment is used in plastic grain production |
CN112847916B (en) * | 2021-01-05 | 2022-08-26 | 特立孚塑料(广州)有限公司 | Rotary type classifying screen equipment is used in plastic grain production |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190531 Termination date: 20210919 |