CN205404335U - Reation kettle result viscosity detection device - Google Patents

Reation kettle result viscosity detection device Download PDF

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Publication number
CN205404335U
CN205404335U CN201620192097.5U CN201620192097U CN205404335U CN 205404335 U CN205404335 U CN 205404335U CN 201620192097 U CN201620192097 U CN 201620192097U CN 205404335 U CN205404335 U CN 205404335U
Authority
CN
China
Prior art keywords
reation kettle
cushion chamber
reactor
result
impeller
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620192097.5U
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Chinese (zh)
Inventor
于永坤
崔成武
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shandong Longshenghe Chemical Co Ltd
Original Assignee
Shandong Longshenghe Chemical Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shandong Longshenghe Chemical Co Ltd filed Critical Shandong Longshenghe Chemical Co Ltd
Priority to CN201620192097.5U priority Critical patent/CN205404335U/en
Application granted granted Critical
Publication of CN205404335U publication Critical patent/CN205404335U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a reation kettle result viscosity detection device, includes: set up in the flow measurement chamber of reation kettle bottom, the rotation is installed in the impeller of flow measurement intracavity, the encoder of being connected with the impeller transmission, cushion chamber and set up being used for on the cushion chamber and make the cushion chamber be in the vacuum pump of vacuum state, in the time need carrying out viscosity detection to the result in the reation kettle, it makes the interior vacuum state that is in of cushion chamber to open the vacuum pump, open I back on the valve this moment under the effect of negative pressure, in result among the reation kettle returns and flows in the cushion chamber through the discharging pipe, the in -process that the result flows can drive the rotating impeller in the flow measurement chamber, the impeller drives the encoder and sends out news, thereby can measure reaction product's mobile speed, thereby judge its viscosity. Open valve II after the detection finishes, the effect of pressure in reation kettle down, the result passes through to have avoided the waste of result during the feed back duct flow goes into reation kettle, detection efficiency is high simultaneously, operates safety.

Description

Reactor product viscosity detecting device
Technical field
This utility model reactor product viscosity detecting device.
Background technology
It is known that, carry out in Chemical Manufacture it is generally required to the viscosity of its interior product is detected utilizing reactor, existing detection mode is typically all the artificial baiting valve certain product of extraction of opening and carries out viscosity measurements, not only cause the waste of product, detection efficiency is low simultaneously, and the temperature of product is often all significantly high, there is certain danger.
Summary of the invention
This utility model is in order to overcome the deficiency of above technology, it is provided that a kind of reactor product viscosity detecting device being easy to the viscosity of product in reactor carries out detection in real time.
This utility model overcomes its technical problem be the technical scheme is that
A kind of reactor product viscosity detecting device, including: be arranged at the flow detection chamber bottom reactor, rotate be installed on the impeller of flow detection intracavity and encoder that impeller is in transmission connection, cushion chamber and be arranged on cushion chamber for making cushion chamber be in the vacuum pump of vacuum state, described cushion chamber one end is connected with the bottom of reactor through flow detection chamber by discharge nozzle, its other end is connected with the top of reactor by feed back pipe, described discharge nozzle and be respectively arranged with valve I and valve II on feed back pipe.
In order to prevent cooling off for the material detected, also include being set in feed back pipe tail end serpentine pipe, be respectively arranged at the temperature sensor I in reactor and in feed back pipe and temperature sensor II, for the fuel tank holding conduction oil and the electric heater being arranged in fuel tank, the entrance point of described serpentine pipe is connected with tank bottoms through pump by flowline, and the port of export of described serpentine pipe is connected with the top of fuel tank by oil return pipe.
The beneficial effects of the utility model are: when needing the product in reactor is carried out viscosity measurements, open vacuum pump and make to be in cushion chamber vacuum state, now open after valve I under the effect of negative pressure, product in reactor is flowed in cushion chamber back through discharge nozzle, the process of product flowing can drive the wheel rotation in flow detection chamber, impeller drives encoder sender, such that it is able to measure the flowing velocity of product, thus judging its viscosity.Open valve II after detection, under pressure effect in a kettle., product enters in reactor by feed back pipe flow, it is to avoid the waste of product, and detection efficiency is high simultaneously, operates safety.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
In figure, 1. reactor 2. temperature sensor I 3. discharge nozzle 4. flow detection chamber 5. impeller 6. valve I 7. cushion chamber 8. vacuum pump 9. feed back pipe 10. valve II 11. temperature sensor II 12. serpentine pipe 13. fuel tank 14. electric heater 15. flowline 16. pump 17. oil return pipe.
Detailed description of the invention
Below in conjunction with accompanying drawing 1, this utility model is described further.
A kind of reactor product viscosity detecting device, including: be arranged at the flow detection chamber 4 bottom reactor 1, rotate be installed in flow detection chamber 4 impeller 5 and impeller 5 be in transmission connection encoder, cushion chamber 7 and be arranged on cushion chamber 7 for making cushion chamber 7 be in the vacuum pump 8 of vacuum state, cushion chamber 7 one end is connected through the bottom in flow detection chamber 4 with reactor 1 by discharge nozzle 3, its other end is connected with the top of reactor 1 by feed back pipe 9, discharge nozzle 3 and be respectively arranged with valve I 6 and valve II 10 on feed back pipe 9.When needing the product in reactor 1 is carried out viscosity measurements, open vacuum pump 8 to make to be in vacuum state in cushion chamber 7, now open after valve I 6 under the effect of negative pressure, product in reactor 1 is flowed in cushion chamber 7 back through discharge nozzle 3, the process of product flowing can drive the impeller 5 in flow detection chamber to rotate, impeller 5 drives encoder sender, such that it is able to measure the flowing velocity of product, thus judging its viscosity.Open valve II 10 after detection, under the pressure effect in reactor 1, product flows in reactor 1 by feed back pipe 9, it is to avoid the waste of product, and detection efficiency is high simultaneously, operates safety.
Further, also include being set in feed back pipe 9 tail end serpentine pipe 12, be respectively arranged at the temperature sensor I 2 in reactor 1 and in feed back pipe 9 and temperature sensor II 11, for the fuel tank 13 holding conduction oil and the electric heater 14 being arranged in fuel tank 13, the entrance point of serpentine pipe 12 is connected with bottom fuel tank 13 through pump 16 by flowline 15, and the port of export of serpentine pipe 12 is connected with the top of fuel tank 13 by oil return pipe 17.Electric heater 14 is by the heat-conducting oil heating in fuel tank 13, conduction oil after heating is pumped in serpentine pipe 12 by pump 16, product in feed back pipe 9 is fully heated by serpentine pipe 12, temperature sensor I 2 detects the temperature in reactor 2, temperature sensor II 11 detects the temperature in feed back pipe 9, make the temperature flowing back into the product of reactor 1 identical with the temperature of product in reactor 1 thereby through conduction oil, it is prevented that the rotten situation that temperature difference causes occurs.

Claims (2)

1. a reactor product viscosity detecting device, it is characterized in that, including: it is arranged at the flow detection chamber (4) of reactor (1) bottom, rotation is installed on the impeller (5) in flow detection chamber (4), the encoder being in transmission connection with impeller (5), cushion chamber (7) and be arranged at being used on cushion chamber (7) and make cushion chamber (7) be in the vacuum pump (8) of vacuum state, described cushion chamber (7) one end is connected through the bottom of flow detection chamber (4) with reactor (1) by discharge nozzle (3), its other end is connected with the top of reactor (1) by feed back pipe (9), described discharge nozzle (3) and feed back pipe (9) are respectively arranged with valve I (6) and valve II (10).
2. reactor product viscosity detecting device according to claim 1, it is characterized in that: also include being set in the serpentine pipe (12) of feed back pipe (9) tail end, it is respectively arranged at the temperature sensor I (2) in reactor (1) and in feed back pipe (9) and temperature sensor II (11), for the fuel tank (13) holding conduction oil and the electric heater (14) being arranged in fuel tank (13), the entrance point of described serpentine pipe (12) is connected with fuel tank (13) bottom through pump (16) by flowline (15), the port of export of described serpentine pipe (12) is connected with the top of fuel tank (13) by oil return pipe (17).
CN201620192097.5U 2016-03-14 2016-03-14 Reation kettle result viscosity detection device Expired - Fee Related CN205404335U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620192097.5U CN205404335U (en) 2016-03-14 2016-03-14 Reation kettle result viscosity detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620192097.5U CN205404335U (en) 2016-03-14 2016-03-14 Reation kettle result viscosity detection device

Publications (1)

Publication Number Publication Date
CN205404335U true CN205404335U (en) 2016-07-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620192097.5U Expired - Fee Related CN205404335U (en) 2016-03-14 2016-03-14 Reation kettle result viscosity detection device

Country Status (1)

Country Link
CN (1) CN205404335U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107185467A (en) * 2017-07-06 2017-09-22 广东弘擎电子材料科技有限公司 A kind of glue preparation system
CN114509368A (en) * 2021-12-24 2022-05-17 安吉科广新材料科技有限公司 Output detection device and method for optical cement coating

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107185467A (en) * 2017-07-06 2017-09-22 广东弘擎电子材料科技有限公司 A kind of glue preparation system
CN114509368A (en) * 2021-12-24 2022-05-17 安吉科广新材料科技有限公司 Output detection device and method for optical cement coating
CN114509368B (en) * 2021-12-24 2024-06-11 安吉科广新材料科技有限公司 Output detection device and method for optical cement coating

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C14 Grant of patent or utility model
GR01 Patent grant
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: 20160727

Termination date: 20190314