CN203155230U - An internal rotation successive automatic oil refining machine with a feeder and a reactor coaxially integrated - Google Patents

An internal rotation successive automatic oil refining machine with a feeder and a reactor coaxially integrated Download PDF

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Publication number
CN203155230U
CN203155230U CN 201220497005 CN201220497005U CN203155230U CN 203155230 U CN203155230 U CN 203155230U CN 201220497005 CN201220497005 CN 201220497005 CN 201220497005 U CN201220497005 U CN 201220497005U CN 203155230 U CN203155230 U CN 203155230U
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China
Prior art keywords
reactor
auger
feeder
flange
fixed
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Expired - Fee Related
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CN 201220497005
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Chinese (zh)
Inventor
李艺
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Individual
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Individual
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Abstract

An internal rotation successive automatic oil refining machine with a feeder and a reactor coaxially integrated comprises a first bearing seat (1), a feed port (2), a feeder (3), a first head (4), a reactor (5), an auger (6), a second head (7), a second bearing seat (8), a deslagging auger (9), and a slag-receiving bucket (10); wherein: the first bearing seat (1) is connected with a first flange (13) and an auger sleeve (33) through a fixing plate (34); the auger sleeve (33) is fixed to the head (4); the first head (4) is fixed on one end of the reactor (5) through a second flange (16) and a fifth flange (32); the second head (4) is fixed on the other end of the reactor (5) through a third flange (22) and a fourth flange four (27); the second bearing seat (8) is fixed on the middle part outside the second head (7); the lower part of one end of the reactor is connected with the slag-receiving bucket (10) through a slag dropping tube (28); the deslagging auger (9) is arranged inside the slag-receiving bucket (10); and the auger (6) is arranged inside the feeder (3) and the reactor (5), and is fixed through the first bearing seat (1) and the second bearing seat (8). In this way, a successive reaction device is formed, wherein materials are fed through the feed port, via the feeder, the materials are continuously pushed to the slag dropping tube and discharged into the slag-receiving bucket, then the slag are discharged through the deslagging auger, and oil gas from material reactive evaporation is distilled off through a gas exit pipe (21). The structure of the internal rotation successive automatic oil refining machine with the feeder and reactor coaxially integrated of the utility model is novel in that a feed auger and the auger inside the reactor is integrated, the auger sleeve is both a feeder and an automatically dense compressing sealer, while the reactor has a greater reaction space which may help to loosen materials and reduce resistance in mixing and propulsion, thus being very practical.

Description

A kind of feeder, the continuously automatic oil refining machine of the coaxial integrated inward turning of reactor
Affiliated technical field
The utility model belongs to the chemical industry equipment field, is specifically related to a kind of solid, liquid charging stock reaction unit.
Technical background
The outside rotation of the existing kettle of known cracker is the whole rotational structure of reaction kettle body.Evolute reactor advantage is that reaction kettle body is heated evenly because 360 degree rotate; But this integrally rotated reactor is owing to constantly rotating, so some drawbacks such as the parts sealing difficulty that exists equipment charging in process of production, deslagging, cracked gas to distillate is big, kettle flexible distortion at high temperature make troubles for production and safety.Also there is at present the utility model of " a kind of damaged tire, waste plastics, liquid charging stock inner-rotary type continuous reaction apparatus " (application number 20112030463.4) applied for by me that charging and reactor branch are arranged, its compact conformation and practicality, but complicated a little.
Summary of the invention
In order to solve the deficiency that existing horizontal evolute reactor is the whole rotation technique of reaction kettle body aspect, the utility model provides a kind of reaction kettle body not rotate, and the inner auger rotation of kettle, and feeder is integrated with the auger in the reactor, sealing effectiveness better and can continuous feed, the novel device of continuous cracking, continuous discharging slag.
The concrete scheme that the utility model solves its technical problem is: design a reactor (5), specifically by bearing block one (1), charging aperture (2), feeder (3), end socket one (4), reactor (5), auger (6), end socket two (7), bearing block two (8), the auger of slagging tap (9), connect inder pot (10) and form; Wherein: bearing block one (1) is connected with auger sleeve pipe (33) with flange one (13) by fixed head (34); Auger sleeve pipe (33) is fixed on the end socket one (4); One of reactor (5) is fixing end socket one (4) by flange two (16), flange five (32); End socket two (7) is being fixed by flange three (22) and flange four (27) in the reactor other end; Fixing bearing block two (8) at the outer middle side part of end socket two (7); In the bottom of one of reactor by slag dropping tube (28) with connect inder pot (10) and be connected; The auger (9) of slagging tap is arranged on and connects in the inder pot; Auger (6) is arranged in feeder (3) and the reactor (5), and fixing by bearing block one (1) and bearing block two (8).
Feeder (3) is fixed on one centre of reactor (5), and the feeder diameter is less than the reactor diameter.
Auger (6) is made up of. minor spiral blade (14), king bolt blade (30) and axle (31), and wherein: it is interior and fixing minor spiral blade (14) at this section that a section of axle (31) stretches into auger sleeve pipe (33); Another section of axle (31) stretches in the kettle (29), and is fixing king bolt blade (30) at this section.
Implementing the useful effect of the utility model is: the one, can realize serialization production; The 2nd, kettle does not rotate, and has reduced vibration, has increased the whole stability of reaction kettle body; The 3rd, reactor is not yielding, longer service life; The 4th, material, distillate gas, reaction residues is all passing in and out in non-rotary pipeline, its better tightness.
Description of drawings
Below in conjunction with specific embodiment, the utility model is further described.
Fig. 1 is the utility model overall structure figure;
Fig. 2 is the reaction kettle body cut-away view.
Among the figure, 1. bearing block one, 2. charging aperture, 3. feeder, 4. end socket one, 5. reactor, and 6. auger, 7. end socket two, 8. bearing block two, and the auger of 9. slagging tap 10. connects inder pot, 11. screws one, 12.. screw two, 13. flanges one, 14. minor spiral blade, 15. screws three, 16. flange two, 17. standby pipes one, 18. standby pipes two, 19. thermometers, 20. Pressure gauge, 21. escape pipes, 22. flanges three, 23, cover plate one, 24. screw four, 25. bearings, 26. screws five, 27. flange four, 28. slag dropping tubes, 29. kettlies, 30. king bolt blades, 31. axle, 32. flanges, five, 33. auger sleeve pipes, 34. fixed head, 35. bearings, two, 36. cover plates two.
The specific embodiment
In Fig. 1, reactor (5) by bearing block one (1) charging aperture (2), feeder (3), end socket one (4), reactor (5), auger (6), end socket two (7), bearing block two (8), the auger of slagging tap (9), connect inder pot (10) and form; Wherein: be provided with bearing two (35) and cover plate two (36) is fixing with screw one (11) in the bearing block one (1); Bearing block one (1) is connected with auger sleeve pipe (33) with flange one (13) by fixed head (34), auger sleeve pipe (33) is fixed on the end socket one (4), one of reactor (5) is fixing end socket one (4) by flange two (16), flange five (32), and wherein: flange two (16), flange five (32) connect with screws three (15); End socket two (7) is being fixed by flange three (22) and flange four (27) in the reactor other end, and wherein flange three (22) is connected with screw five (26) with flange four (27); Fixing bearing block two (8) at the outer middle side part of end socket two (7), be provided with bearing one (25) in the bearing block two (8), and with screw four (24) cover plate one (23) is being fixed on the bearing block two (8); In the bottom of one of reactor by slag dropping tube (28) with connect inder pot (10) and be connected; The auger (9) of slagging tap is arranged on and connects in the inder pot; Auger (6) is arranged in feeder (3) and the reactor (5), and fixing by bearing block one (1) and bearing block two (8); Feeder (3) is fixed on one centre of reactor (5), and the feeder diameter is less than the reactor diameter.
Auger in Fig. 2 (6) is made up of. minor spiral blade (14), king bolt blade (30) and axle (31), and wherein: it is interior and fixing minor spiral blade (14) at this section that a section of axle (31) stretches into auger sleeve pipe (33); Another section of axle (31) stretches in the kettle (29), and is fixing king bolt blade (30) at this section.

Claims (3)

1. a feeder, the coaxial integrated inward turning of reactor oil refining machine automatically continuously is characterized in that: the pump utility model by bearing block one (1), charging aperture (2), feeder (3), end socket one (4), reactor (5), auger (6), end socket two (7), bearing block two (8), the auger of slagging tap (9), connect inder pot (10) and form; Wherein: bearing block one (1) is connected with auger sleeve pipe (33) with flange one (13) by fixed head (34); Auger sleeve pipe (33) is fixed on the end socket one (4); One of reactor (5) is fixing end socket one (4) by flange two (16), flange five (32); End socket two (7) is being fixed by flange three (22) and flange four (27) in reactor (5) other end; Fixing bearing block two (8) at the outer middle side part of end socket two (7); In the bottom of one of reactor by slag dropping tube (28) with connect inder pot (10) and be connected; The auger (9) of slagging tap is arranged on and connects in the inder pot; Auger (6) is arranged in feeder (3) and the reactor (5), and fixing by bearing block one (1) and bearing block two (8).
2. a kind of feeder according to claim 1, the coaxial integrated inward turning of reactor oil refining machine automatically continuously, it is characterized in that: feeder (3) is fixed on one centre of reactor (5).
3. a kind of feeder according to claim 1, the coaxial integrated inward turning of reactor oil refining machine automatically continuously, it is characterized in that: auger (6) is made up of. minor spiral blade (14), king bolt blade (30) and axle (31), and wherein: it is interior and fixing minor spiral blade (14) at this section that a section of axle (31) stretches into auger sleeve pipe (33); Another section of axle (31) stretches in the kettle (29), and is fixing king bolt blade (30) at this section.
CN 201220497005 2012-09-27 2012-09-27 An internal rotation successive automatic oil refining machine with a feeder and a reactor coaxially integrated Expired - Fee Related CN203155230U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220497005 CN203155230U (en) 2012-09-27 2012-09-27 An internal rotation successive automatic oil refining machine with a feeder and a reactor coaxially integrated

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220497005 CN203155230U (en) 2012-09-27 2012-09-27 An internal rotation successive automatic oil refining machine with a feeder and a reactor coaxially integrated

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CN203155230U true CN203155230U (en) 2013-08-28

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108311091A (en) * 2018-04-10 2018-07-24 浙江圣效化学品有限公司 Industrial chemicals production equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108311091A (en) * 2018-04-10 2018-07-24 浙江圣效化学品有限公司 Industrial chemicals production equipment

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GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130828

Termination date: 20130927