CN205860674U - A kind of Flos Chrysanthemi microwave vacuum continuous drier - Google Patents

A kind of Flos Chrysanthemi microwave vacuum continuous drier Download PDF

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Publication number
CN205860674U
CN205860674U CN201620371898.8U CN201620371898U CN205860674U CN 205860674 U CN205860674 U CN 205860674U CN 201620371898 U CN201620371898 U CN 201620371898U CN 205860674 U CN205860674 U CN 205860674U
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CN
China
Prior art keywords
valve
feeding warehouse
feeding
vacuum
discharging bin
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
CN201620371898.8U
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Chinese (zh)
Inventor
周燕
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Yancheng Teachers University
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Yancheng Teachers University
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Priority to CN201620371898.8U priority Critical patent/CN205860674U/en
Application granted granted Critical
Publication of CN205860674U publication Critical patent/CN205860674U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

This utility model relates to a kind of device, particularly to a kind of Flos Chrysanthemi microwave vacuum continuous drier.It is characterized in that: vacuum pump is connected with water collector, water collector is connected with condensing tube shell, inlet valve is connected with feeding warehouse, feeding warehouse is connected with feeding warehouse extraction valve, feeding warehouse extraction valve is connected with discharging bin extraction valve, feeding warehouse is connected with feeding warehouse feeding valve, feeding warehouse feeding valve is connected with vacuum chamber, vent valve, vacuum meter, overflow valve, outlet valve is connected with vacuum chamber respectively, microwave generating assembly is had in vacuum chamber, material container is connected with weight sensor, weight sensor is connected with control system, first temperature sensor, humidity sensor is connected with control system respectively, control system is connected with condensing tube by the second temperature sensor.Owing to using technique scheme, this utility model have the advantage that and good effect be: practical.

Description

A kind of Flos Chrysanthemi microwave vacuum continuous drier
Technical field
This utility model relates to a kind of device, particularly to a kind of Flos Chrysanthemi microwave vacuum continuous drier.
Background technology
At present, be dried be Flos Chrysanthemi storage important means and the important procedure of the industrialization course of processing.Traditional Getrocknete Chrysanthemen drying method and the drying means that employing is more at present, mostly be the principle of hot air drying, and production cost is relatively low, but loss of effective components is also big, has had a strong impact on the quality of Flos Chrysanthemi.In recent years, along with microwave and the development of vacuum technique, microwave vacuum drying technology is applied at Flos Chrysanthemi manufacture field.
Summary of the invention
Technical problem to be solved in the utility model is: provides a kind of Flos Chrysanthemi microwave vacuum continuous drier, can utilize the continuous drying Flos Chrysanthemi of microwave vacuum.
nullThis utility model solves the technical scheme is that this utility model of its technical problem by vacuum pump、Water collector、Feeding warehouse extraction valve、Feeding warehouse、Inlet valve、Feeding warehouse feeding valve、Vent valve、Vacuum meter、Microwave generating assembly、Overflow valve、First temperature sensor、Humidity sensor、Control system、Vacuum chamber、Second temperature sensor、Weight sensor、Material container、Outlet valve、Discharging bin discharge valve、Discharging bin、Discharging bin extraction valve、Drain valve、Refrigeration unit、Condensing tube and water pump condensing tube shell composition,It is characterized in that: vacuum pump is connected with water collector,Water collector is connected with condensing tube shell,Inlet valve is connected with feeding warehouse,Feeding warehouse is connected with feeding warehouse extraction valve,Feeding warehouse extraction valve is connected with discharging bin extraction valve,Feeding warehouse is connected with feeding warehouse feeding valve,Feeding warehouse feeding valve is connected with vacuum chamber,Vent valve、Vacuum meter、Overflow valve、Outlet valve is connected with vacuum chamber respectively,Microwave generating assembly is had in vacuum chamber,Material container is connected with weight sensor,Weight sensor is connected with control system,First temperature sensor、Humidity sensor is connected with control system respectively,Control system is connected with condensing tube by the second temperature sensor,Discharging bin is respectively and outlet valve、Discharging bin discharge valve、Discharging bin extraction valve is connected,Refrigeration unit、Water pump and condensing tube series connection,Drain valve is connected with condensing tube shell.
Owing to using technique scheme, this utility model have the advantage that and good effect be: practical.
Accompanying drawing explanation
With embodiment, this utility model is further illustrated below in conjunction with the accompanying drawings.
Fig. 1 is structural representation of the present utility model.
1. vacuum pump in figure, 2. water collector, 3. feeding warehouse extraction valve, 4. feeding warehouse, 5. inlet valve, 6. feeding warehouse feeding valve, 7. vent valve, 8. vacuum meter, 9. microwave generating assembly, 10. overflow valve, 11. first temperature sensors, 12. humidity sensors, 13. control systems, 14. vacuum chambers, 15. second temperature sensors, 16. weight sensors, 17. material containers, 18. outlet valves, 19. discharging bin discharge valves, 20. discharging bins, 21. discharging bin extraction valves, 22. drain valves, 23. refrigeration unit, 24. condensing tubes, 25. water pumps, 26. condensing tube shells.
Detailed description of the invention
nullIn Fig. 1,Vacuum pump (1) is connected with water collector (2),Water collector (2) is connected with condensing tube shell (26),Inlet valve (5) is connected with feeding warehouse (4),Feeding warehouse (4) is connected with feeding warehouse extraction valve (3),Feeding warehouse extraction valve (3) is connected with discharging bin extraction valve (21),Feeding warehouse (4) is connected with feeding warehouse feeding valve (6),Feeding warehouse feeding valve (6) is connected with vacuum chamber (14),Vent valve (7)、Vacuum meter (8)、Overflow valve (10)、Outlet valve (18) is connected with vacuum chamber (14) respectively,Microwave generating assembly (9) is had in vacuum chamber (14),Material container (17) is connected with weight sensor (16),Weight sensor (16) is connected with control system (13),First temperature sensor (11)、Humidity sensor (12) is connected with control system (13) respectively,Control system (13) is connected with condensing tube (24) by the second temperature sensor (15),Discharging bin (20) respectively with outlet valve (18)、Discharging bin discharge valve (19)、Discharging bin extraction valve (21) is connected,Refrigeration unit (23)、Water pump (25) and condensing tube (24) series connection,Drain valve (22) is connected with condensing tube shell (26).Control system is disclosed technology.
Operation principle of the present utility model is: being sent in feeding warehouse after over cleaning device cleans up and remove major part free water by Flos Chrysanthemi, vacuum pump starts to bleed simultaneously, when vacuum reaches setting value in vacuum chamber, feeding warehouse progressively continuous charging enters vacuum chamber.When there being Flos Chrysanthemi in vacuum chamber, microwave generating assembly is started working heating, makes the temperature of Flos Chrysanthemi and air in vacuum chamber raise.Owing to the pressure in vacuum chamber is relatively low so that in vacuum chamber, the boiling point of water is also with reduction.When the temperature in vacuum chamber and pressure reach the boiling point of water, in vacuum chamber, the in-house water of Flos Chrysanthemi is vaporized and bleeds along with vacuum pump and be pulled away.Along with the continuous work of vacuum pump, the steam of gasification is brought in water collector, and owing to the unit that is cooled of the temperature in water collector drops to about 0 DEG C, the steam of relatively-high temperature is the most easily condensed into water, and the water collected is released by browser at the bottom of the catchment.By the effect of catchmenting of water collector low temperature environment, removing the most of steam in air, the air of relatively dry is discharged in air by vacuum pump.

Claims (1)

  1. null1. a Flos Chrysanthemi microwave vacuum continuous drier,By vacuum pump、Water collector、Feeding warehouse extraction valve、Feeding warehouse、Inlet valve、Feeding warehouse feeding valve、Vent valve、Vacuum meter、Microwave generating assembly、Overflow valve、First temperature sensor、Humidity sensor、Control system、Vacuum chamber、Second temperature sensor、Weight sensor、Material container、Outlet valve、Discharging bin discharge valve、Discharging bin、Discharging bin extraction valve、Drain valve、Refrigeration unit、Condensing tube and water pump condensing tube shell composition,It is characterized in that: vacuum pump (1) is connected with water collector (2),Water collector (2) is connected with condensing tube shell (26),Inlet valve (5) is connected with feeding warehouse (4),Feeding warehouse (4) is connected with feeding warehouse extraction valve (3),Feeding warehouse extraction valve (3) is connected with discharging bin extraction valve (21),Feeding warehouse (4) is connected with feeding warehouse feeding valve (6),Feeding warehouse feeding valve (6) is connected with vacuum chamber (14),Vent valve (7)、Vacuum meter (8)、Overflow valve (10)、Outlet valve (18) is connected with vacuum chamber (14) respectively,Microwave generating assembly (9) is had in vacuum chamber (14),Material container (17) is connected with weight sensor (16),Weight sensor (16) is connected with control system (13),First temperature sensor (11)、Humidity sensor (12) is connected with control system (13) respectively,Control system (13) is connected with condensing tube (24) by the second temperature sensor (15),Discharging bin (20) respectively with outlet valve (18)、Discharging bin discharge valve (19)、Discharging bin extraction valve (21) is connected,Refrigeration unit (23)、Water pump (25) and condensing tube (24) series connection,Drain valve (22) is connected with condensing tube shell (26).
CN201620371898.8U 2016-04-22 2016-04-22 A kind of Flos Chrysanthemi microwave vacuum continuous drier Expired - Fee Related CN205860674U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620371898.8U CN205860674U (en) 2016-04-22 2016-04-22 A kind of Flos Chrysanthemi microwave vacuum continuous drier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620371898.8U CN205860674U (en) 2016-04-22 2016-04-22 A kind of Flos Chrysanthemi microwave vacuum continuous drier

Publications (1)

Publication Number Publication Date
CN205860674U true CN205860674U (en) 2017-01-04

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CN201620371898.8U Expired - Fee Related CN205860674U (en) 2016-04-22 2016-04-22 A kind of Flos Chrysanthemi microwave vacuum continuous drier

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108020473A (en) * 2018-01-03 2018-05-11 中国电建集团华东勘测设计研究院有限公司 Consider the Rock And Soil cutting creep instrument and its test method of drying and watering cycle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108020473A (en) * 2018-01-03 2018-05-11 中国电建集团华东勘测设计研究院有限公司 Consider the Rock And Soil cutting creep instrument and its test method of drying and watering cycle

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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: 20170104

Termination date: 20170422