CN213416894U - Do benefit to reation kettle for pharmacy of microbial fermentation - Google Patents

Do benefit to reation kettle for pharmacy of microbial fermentation Download PDF

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Publication number
CN213416894U
CN213416894U CN202021884170.8U CN202021884170U CN213416894U CN 213416894 U CN213416894 U CN 213416894U CN 202021884170 U CN202021884170 U CN 202021884170U CN 213416894 U CN213416894 U CN 213416894U
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kettle body
tube
pipe
kettle
microbial fermentation
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CN202021884170.8U
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Chinese (zh)
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邢朝云
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Shandong Xiehe University
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Shandong Xiehe University
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Abstract

The utility model discloses a do benefit to reation kettle for pharmacy of microbial fermentation, including the cauldron body, its characterized in that: the improved kettle is characterized in that a feed inlet and a safety valve are arranged at the top of the kettle body, a motor is arranged on the kettle body, an output end at the bottom of the motor is connected with a vertical rotating shaft extending into the kettle body, stirring blades are uniformly arranged at the bottom of the rotating shaft, a bottom plate is arranged at the bottom in the kettle body, a vortex tube is arranged below the bottom plate, the vortex tube is connected with a cold air tube and a hot air tube extending out of the kettle body, a cold discharge tube extending out of the kettle body is arranged at one side of the cold air tube in a communicated manner, a heat inlet tube is arranged at one side of the hot air tube in a communicated manner, a net tube and a heat conducting plate are arranged on the inner wall of. The utility model discloses a higher or lower temperature can be adjusted to vortex tube and each solenoid valve's conversion control messenger's network management, guarantees the effect of inside microbial fermentation.

Description

Do benefit to reation kettle for pharmacy of microbial fermentation
Technical Field
The utility model relates to a pharmacy reation kettle field specifically indicates a do benefit to reation kettle for pharmacy of microbial fermentation.
Background
The reaction kettle is widely applied to the industries of food, medicine, chemical industry and the like, people have no strangeness on the structure of the reaction kettle, but microorganisms are required to be added when the existing medicine is prepared, and the microorganisms are fermented in the reaction kettle. However, the existing reaction kettle for pharmacy is not suitable for microbial fermentation; there are the following disadvantages: heating and cooling are carried out through different device settings, space is occupied, the structure is complex, and higher or lower temperature can not be conveniently adjusted.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the main objective is to solve prior art's not enough, provides a do benefit to reation kettle for pharmacy of microbial fermentation, makes the network management can adjust higher or lower temperature through vortex tube and each solenoid valve's conversion control, guarantees the effect of inside microbial fermentation.
In order to solve the technical problem, the utility model provides a technical scheme does: the utility model provides a do benefit to reation kettle for pharmacy of microbial fermentation, includes the cauldron body, cauldron body top is equipped with feed inlet and relief valve, be equipped with the motor on the cauldron body, motor bottom output is connected and is equipped with the vertical internal pivot of cauldron of stretching into, the pivot bottom evenly is equipped with stirring vane, the internal bottom of cauldron is equipped with the bottom plate, the bottom plate below is equipped with vortex tube, vortex tube connects the hot-blast pipe that is equipped with the cold air duct and stretches out the cauldron body, cold air duct one side switch-on is equipped with the row cold pipe that stretches out the cauldron body, hot-blast pipe one side switch-on is equipped with into the heat pipe, all be equipped with network management and heat-conducting plate on cauldron internal wall and the bottom plate, the cold air duct passes the bottom plate and the network management.
As an improvement, one end of the hot air pipe extending out of the kettle body is provided with a first electromagnetic valve, a second electromagnetic valve is arranged at the interface of the cold air pipe and the net pipe, a third electromagnetic valve is arranged at the interface of the heat inlet pipe and the net pipe, and a fourth electromagnetic valve is arranged on the cold discharge pipe.
As an improvement, the net pipes are of a frame structure formed by surrounding net-shaped pipe bodies.
As an improvement, one side of the vortex tube is communicated with an air vent which is provided with a protruding kettle body through a pipeline.
As an improvement, the top of the net pipe is communicated with an exhaust pipe extending out of the kettle body, and an electromagnetic switch valve is arranged at the exhaust pipe.
As an improvement, the side wall of the kettle body is provided with a controller, a temperature sensor and a pressure sensor are arranged in the kettle body, and a display panel and a control switch are arranged on the controller.
Compared with the prior art, the utility model the advantage lie in: when heating is needed, the third electromagnetic valve and the fourth electromagnetic valve are opened, the first electromagnetic valve and the second electromagnetic valve are closed, stable airflow is introduced from the air vent, hot air obtained by the work of the vortex tube is introduced into the net pipe through the hot air pipe and the heat inlet pipe, the electromagnetic switch valve at the air outlet is opened, the air in the interior is discharged, the net pipe is filled with the hot air, cold air obtained is discharged and collected through the cold air pipe and the cold discharge pipe, the heat transfer is convenient due to the arrangement of the heat conducting plate, the temperature in the kettle body is ensured to be increased to proper temperature, when cooling is needed, the third electromagnetic valve and the fourth electromagnetic valve are closed, the first electromagnetic valve and the second electromagnetic valve are opened, the hot air is discharged and collected through the hot air pipe, the cold air is introduced into the net pipe through the cold air pipe, the cooling effect is achieved, no redundant cooling device is needed, the operation and the use are convenient.
Drawings
FIG. 1 is a schematic structural view of a reaction kettle for pharmacy, which is beneficial to microbial fermentation.
FIG. 2 is a schematic side view of the mesh tube in the reaction kettle for pharmacy, which is beneficial to microbial fermentation.
As shown in the figure: 1. the device comprises a kettle body, 2 parts of a feed inlet, 3 parts of a safety valve, 4 parts of a motor, 5 parts of a rotating shaft, 6 parts of a stirring blade, 7 parts of a bottom plate, 8 parts of a vortex tube, 9 parts of a net tube, 10 parts of a heat conducting plate, 11 parts of an exhaust tube, 12 parts of a cold air tube, 13 parts of a hot air tube, 14 parts of a cold exhaust tube, 15 parts of a heat inlet tube, 16 parts of a first electromagnetic valve, 17 parts of a second electromagnetic valve, 18 parts of a third electromagnetic valve, 19 parts of a fourth electromagnetic valve, 20 parts of an air.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
With the attached drawing, the reaction kettle for pharmacy beneficial to microbial fermentation comprises a kettle body 1, wherein the top of the kettle body 1 is provided with a feed inlet 2 and a safety valve 3, the kettle body 1 is provided with a motor 4, the output end of the bottom of the motor 4 is connected with a rotating shaft 5 vertically extending into the kettle body 1, the bottom of the rotating shaft 5 is uniformly provided with stirring blades 6, the bottom in the kettle body 1 is provided with a bottom plate 7, a vortex tube 8 is arranged below the bottom plate 7, the vortex tube 8 is connected with a cold air tube 12 and a hot air tube 13 extending out of the kettle body 1, one side of the cold air pipe 12 is communicated with a cold discharge pipe 14 extending out of the kettle body 1, one side of the hot air pipe 13 is communicated with a hot inlet pipe 15, the inner wall of the kettle body 1 and the bottom plate 7 are both provided with a mesh pipe 9 and a heat conducting plate 10, the cold air pipe 12 penetrates through the bottom plate 7 to be communicated with the mesh pipe 9, and the heat inlet pipe 15 penetrates through the bottom plate 7 to be communicated with the mesh pipe 9.
One end of the hot air pipe 13 extending out of the kettle body 1 is provided with a first electromagnetic valve 16, a second electromagnetic valve 17 is arranged at the joint of the cold air pipe 12 and the net pipe 9, a third electromagnetic valve 18 is arranged at the joint of the heat inlet pipe 15 and the net pipe 9, and a fourth electromagnetic valve 19 is arranged on the cold discharge pipe 14.
The net pipe 9 is a frame structure formed by surrounding net pipe bodies.
One side of the vortex tube 8 is communicated with an air vent 20 which extends out of the kettle body 1 through a pipeline.
The top of the net pipe 9 is communicated with an exhaust pipe 11 extending out of the kettle body 1, and an electromagnetic switch valve is arranged at the exhaust pipe 11.
The kettle is characterized in that a controller 21 is arranged on the side wall of the kettle body 1, a temperature sensor and a pressure sensor are arranged inside the kettle body 1, and a display panel and a control switch are arranged on the controller 21.
When the utility model is implemented, when the heating is needed, the third electromagnetic valve and the fourth electromagnetic valve are opened, the first electromagnetic valve and the second electromagnetic valve are closed, stable air flow is introduced from the vent, the vortex tube works to obtain hot air which is introduced into the network management through the hot air tube and the heat inlet tube, the electromagnetic switch valve at the exhaust port is opened to discharge the internal air, the network management is filled with the hot air, and the cold air is collected through the cold air tube and the guide discharge of the cold air tube, because the heat conducting plate is arranged to facilitate the heat transfer, the temperature in the kettle body is ensured to be improved to proper temperature, when the cooling is needed, the third electromagnetic valve and the fourth electromagnetic valve are closed, the first electromagnetic valve and the second electromagnetic valve are opened, the hot air is collected through the hot air tube, the cold air is introduced into the network management through the cold air tube, the cooling effect is achieved, unnecessary cooling devices are not needed, the real-time, the operation and the use are convenient.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (6)

1. The utility model provides a do benefit to reation kettle for pharmacy of microbial fermentation, includes the cauldron body (1), its characterized in that: the device is characterized in that a feed inlet (2) and a safety valve (3) are arranged at the top of the kettle body (1), a motor (4) is arranged on the kettle body (1), an output end at the bottom of the motor (4) is connected with a rotating shaft (5) vertically extending into the kettle body (1), stirring blades (6) are uniformly arranged at the bottom of the rotating shaft (5), a bottom plate (7) is arranged at the bottom in the kettle body (1), a vortex tube (8) is arranged below the bottom plate (7), the vortex tube (8) is connected with a cold air tube (12) and a hot air tube (13) extending out of the kettle body (1), a cold discharge tube (14) extending out of the kettle body (1) is communicated with one side of the cold air tube (12), a heat inlet tube (15) is communicated with one side of the hot air tube (13), a mesh tube (9) and a heat conducting plate (10) are arranged on the inner wall and the bottom plate (7) of the kettle body (1), and, the heat inlet pipe (15) penetrates through the bottom plate (7) to be communicated with the net pipe (9).
2. The pharmaceutical reaction kettle facilitating microbial fermentation according to claim 1, wherein: one end of the hot air pipe (13) extending out of the kettle body (1) is provided with a first electromagnetic valve (16), a second electromagnetic valve (17) is arranged at the joint of the cold air pipe (12) and the net pipe (9), a third electromagnetic valve (18) is arranged at the joint of the heat inlet pipe (15) and the net pipe (9), and a fourth electromagnetic valve (19) is arranged on the cold exhaust pipe (14).
3. The pharmaceutical reaction kettle facilitating microbial fermentation according to claim 1, wherein: the net pipe (9) is a frame structure enclosed by a net pipe body.
4. The pharmaceutical reaction kettle facilitating microbial fermentation according to claim 1, wherein: one side of the vortex tube (8) is communicated with an air vent (20) which extends out of the kettle body (1) through a pipeline.
5. The pharmaceutical reaction kettle facilitating microbial fermentation according to claim 1, wherein: the top of the net pipe (9) is communicated with an exhaust pipe (11) extending out of the kettle body (1), and an electromagnetic switch valve is arranged at the exhaust pipe (11).
6. The pharmaceutical reaction kettle facilitating microbial fermentation according to claim 1, wherein: the cauldron body (1) lateral wall is equipped with controller (21), cauldron body (1) inside is equipped with temperature sensor and pressure sensor, be equipped with display panel and control switch on controller (21).
CN202021884170.8U 2020-09-02 2020-09-02 Do benefit to reation kettle for pharmacy of microbial fermentation Active CN213416894U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021884170.8U CN213416894U (en) 2020-09-02 2020-09-02 Do benefit to reation kettle for pharmacy of microbial fermentation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021884170.8U CN213416894U (en) 2020-09-02 2020-09-02 Do benefit to reation kettle for pharmacy of microbial fermentation

Publications (1)

Publication Number Publication Date
CN213416894U true CN213416894U (en) 2021-06-11

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CN202021884170.8U Active CN213416894U (en) 2020-09-02 2020-09-02 Do benefit to reation kettle for pharmacy of microbial fermentation

Country Status (1)

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CN (1) CN213416894U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113880627A (en) * 2021-11-23 2022-01-04 靳百行 Oxygen supply device for fermentation of agricultural microbial fertilizer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113880627A (en) * 2021-11-23 2022-01-04 靳百行 Oxygen supply device for fermentation of agricultural microbial fertilizer
CN113880627B (en) * 2021-11-23 2023-01-06 深圳市隆族生物科技环保有限公司 Oxygen supply device for fermentation of agricultural microbial fertilizer

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