CN204162636U - A kind of trioxymethylene reactor and reboiler hang syndeton - Google Patents
A kind of trioxymethylene reactor and reboiler hang syndeton Download PDFInfo
- Publication number
- CN204162636U CN204162636U CN201420514544.5U CN201420514544U CN204162636U CN 204162636 U CN204162636 U CN 204162636U CN 201420514544 U CN201420514544 U CN 201420514544U CN 204162636 U CN204162636 U CN 204162636U
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- China
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- reactor
- reboiler
- trioxymethylene
- hang
- siphon pipe
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Abstract
A kind of trioxymethylene reactor and reboiler hang syndeton, belong to trioxymethylene building-up reactions equipment technical field, are subject to stress and produce vibrations, and improve speed of reaction when heating for avoiding equipment, promote that the conversion of trioxymethylene generates.Its technical scheme is: reactor carries out suspension by suspension system and installs, and the top of reboiler is by soft connected suspended in reactor bottom, and siphonal upper end is connected to reactor bottom, and lower end is connected to bottom reboiler.Reactor of the present utility model and reboiler entirety hang, and reduce the stress suffered when heating; Reboiler is directly communicated with reactor immediately below reactor, and solution can be full of reboiler all the time, can not be subject to the impact of liquid level in reactor, reduce technology difficulty, handled easily in production operation; Reactor is connected with bottom reboiler by siphon pipe, is formed from siphon circulation, can play stirring action to solution, strengthens intermolecular contact, promotes that the conversion of trioxymethylene generates.
Description
Technical field
The utility model relate to trioxymethylene reactor and reboiler mounting structure, belong to trioxymethylene building-up reactions equipment technical field.
Background technology
Trioxymethylene building-up reactions equipment comprises reactor and reboiler, the structure of the conversion unit that existing trioxymethylene synthesis uses in producing is that reboiler is in reactor side, reactor bottom is connected with pipeline with bottom reboiler, and reboiler top is connected with sidewall of reactor by pipeline.Reboiler hot-fluid enters reactor by reaction side.The shortcoming that this structure exists is: first, and during equipment heating, suffered stress is excessive, causes equipment to shake, easily makes structure deteriorate; Secondly, heat transfer effect affects restriction technological operation by liquid level, and in reactor, solution can not be stirred, and in solution, each component contacts is insufficient, affects speed of reaction.At present, the problems referred to above are not effectively solved in trioxymethylene is produced.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of trioxymethylene reactor and reboiler hangs syndeton, this suspension syndeton is subject to stress and produces vibrations when equipment can be avoided to heat, and improve speed of reaction, promote that the conversion of trioxymethylene generates.
The technical scheme solved the problems of the technologies described above is:
A kind of trioxymethylene reactor and reboiler hang syndeton, it comprises reactor, reboiler, its improvements are, it also has siphon pipe, be flexible coupling, suspension system, reactor carries out suspension by suspension system and installs, the top of reboiler by soft connected suspended in reactor bottom, reboiler top is connected by being flexible coupling with reactor bottom, siphonal upper end is connected to reactor bottom, be positioned at the side of reboiler, siphonal lower end is connected to bottom reboiler, and liquid phase feeding pipeline, gas phase discharging pipeline are connected to the top of reactor.
Above-mentioned trioxymethylene reactor and reboiler hang syndeton, described in be flexible coupling for bilayer structure, between ectonexine, tensimeter is set.
Above-mentioned trioxymethylene reactor and reboiler hang syndeton, and described siphon pipe upper end and reactor adopt and be flexible coupling.
The beneficial effects of the utility model are:
1. reactor and reboiler entirety hang, and make device freely can carry out thermal expansion downwards when heating, thus reduce the device stress suffered when heating;
2. reboiler is arranged on immediately below reactor, and be directly communicated with reactor, solution can be full of reboiler all the time, can not be subject to the impact of liquid level in reactor, reduce technology difficulty, handled easily in actual production operation;
3. reactor is connected with bottom reboiler by siphon pipe, when reboiler heats, internal solution forms siphonic effect by thermogenesis density difference by siphon pipe, in reactor, solution enters into bottom reboiler by siphon pipe, and rising after solution is heated in reboiler enters reactor, is formed from siphon circulation, stirring action can be played to solution, make the distribution of solution each component more even, strengthen intermolecular contact, promote that the conversion of trioxymethylene generates.
Of the present utility model scientific and reasonable for structure, extend the work-ing life of equipment, reduce technology difficulty, the conversion facilitating trioxymethylene generates, and significantly improves the economic benefit of enterprise.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
In figure, mark is as follows: reactor 1, reboiler 2, be flexible coupling 3, siphon pipe 4, suspension system 5, liquid phase feeding pipeline 6, gas phase discharging pipeline 7.
Embodiment
The utility model comprises reactor 1, reboiler 2, be flexible coupling 3, siphon pipe 4, suspension system 5, liquid phase feeding pipeline 6, gas phase discharging pipeline 7.
Show in figure, reactor 1 is tank reactor, and reactor 1 one-piece construction is by suspension system 5 integral hanging, and reactor 1 supports without other, makes device freely can carry out thermal expansion downwards when heating, thus reduces the device stress protection equipment suffered when heating.
Show in figure, the top of reboiler 23 hangs on bottom reactor 1 by being flexible coupling, reboiler 2 top 3 to be connected by being flexible coupling with bottom reactor 1, hot-fluid physical efficiency in reboiler 2 directly enters bottom reactor 1, solution can be full of reboiler 2 all the time, the impact of liquid level in reactor 1 can not be subject in actual production operation, reduce technology difficulty, handled easily.
Show in figure, be flexible coupling 3 for bilayer structure, can be good play ligation and cushioning effect, be flexible coupling 3 ectonexine between tensimeter is set, can effectively monitor be flexible coupling 3 using state.
Show in figure, the upper end of siphon pipe 4 is connected to bottom reactor 1, is positioned at the side of reboiler 2, and the lower end of siphon pipe 4 is connected to bottom reboiler 2, and siphon pipe 4 upper end and reactor 1 adopt and be flexible coupling.Reactor 1 is connected with bottom reboiler 2 by siphon pipe 4, when reboiler 2 heats, internal solution forms siphonic effect by thermogenesis density difference by siphon pipe 4, in reactor 1, solution enters into bottom reboiler 2 by siphon pipe 4, and rising after solution is heated in reboiler 2 enters reactor 1, is formed from siphon circulation, stirring action can be played to solution, make the distribution of solution each component more even, strengthen intermolecular contact, promote that the conversion of trioxymethylene generates.
Show in figure, liquid phase feeding pipeline 6, gas phase discharging pipeline 7 are connected to the top of reactor 1.
Claims (3)
1. a trioxymethylene reactor and reboiler hang syndeton, it comprises reactor (1), reboiler (2), it is characterized in that: it also has siphon pipe (4), be flexible coupling (3), suspension system (5), reactor (1) carries out suspension by suspension system (5) and installs, the top of reboiler (2) hangs on reactor (1) bottom by be flexible coupling (3), reboiler (2) top is connected by be flexible coupling (3) with reactor (1) bottom, the upper end of siphon pipe (4) is connected to reactor (1) bottom, be positioned at the side of reboiler (2), the lower end of siphon pipe (4) is connected to reboiler (2) bottom, liquid phase feeding pipeline (6), gas phase discharging pipeline (7) is connected to the top of reactor (1).
2. trioxymethylene reactor according to claim 1 and reboiler hang syndeton, it is characterized in that: described in be flexible coupling (3) for bilayer structure, between ectonexine, tensimeter is set.
3. trioxymethylene reactor according to claim 1 and 2 and reboiler hang syndeton, it is characterized in that: described siphon pipe (4) upper end and reactor (1) adopt and be flexible coupling.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420514544.5U CN204162636U (en) | 2014-09-09 | 2014-09-09 | A kind of trioxymethylene reactor and reboiler hang syndeton |
Applications Claiming Priority (1)
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CN201420514544.5U CN204162636U (en) | 2014-09-09 | 2014-09-09 | A kind of trioxymethylene reactor and reboiler hang syndeton |
Publications (1)
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CN204162636U true CN204162636U (en) | 2015-02-18 |
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Family Applications (1)
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CN201420514544.5U Withdrawn - After Issue CN204162636U (en) | 2014-09-09 | 2014-09-09 | A kind of trioxymethylene reactor and reboiler hang syndeton |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104193721A (en) * | 2014-09-09 | 2014-12-10 | 唐山中浩化工有限公司 | Trioxymethylene reactor and reboiler suspending and connecting structure |
-
2014
- 2014-09-09 CN CN201420514544.5U patent/CN204162636U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104193721A (en) * | 2014-09-09 | 2014-12-10 | 唐山中浩化工有限公司 | Trioxymethylene reactor and reboiler suspending and connecting structure |
CN104193721B (en) * | 2014-09-09 | 2016-03-02 | 唐山中浩化工有限公司 | A kind of trioxymethylene reactor and reboiler hang syndeton |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20150218 Effective date of abandoning: 20160302 |
|
C25 | Abandonment of patent right or utility model to avoid double patenting |