CN213133166U - Automatic reation kettle of accuse temperature - Google Patents

Automatic reation kettle of accuse temperature Download PDF

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Publication number
CN213133166U
CN213133166U CN202021567532.0U CN202021567532U CN213133166U CN 213133166 U CN213133166 U CN 213133166U CN 202021567532 U CN202021567532 U CN 202021567532U CN 213133166 U CN213133166 U CN 213133166U
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China
Prior art keywords
reation kettle
kettle body
fixedly connected
reaction kettle
outlet pipe
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CN202021567532.0U
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Chinese (zh)
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张小平
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Sichuan Jiemuyuan Synthetic Material Co ltd
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Sichuan Jiemuyuan Synthetic Material Co ltd
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Abstract

The utility model discloses an automatic reation kettle of accuse temperature relates to reation kettle technical field. The utility model provides an automatic reation kettle of accuse temperature, includes the reation kettle body, the four corners fixedly connected with reation kettle footing of reation kettle body bottom, and the top of the reation kettle body passes through fastening bolt fixedly connected with reation kettle lid, one side fixedly connected with blowing pipe of reation kettle body bottom, fixedly connected with inlet tube and outlet pipe respectively are in the both sides at reation kettle lid top, the inside of the reation kettle body is provided with the cooling tube, inlet tube and outlet pipe are connected with the both ends stationary phase of cooling tube respectively. The utility model discloses a setting of inlet tube, outlet pipe and cooling tube has realized utilizing microthermal cooling water to carry out quick cooling to the material in the reation kettle to make this utility model reation kettle can reach quick refrigerated operation requirement, through the setting of heating ring, realized can heaing up to reation kettle.

Description

Automatic reation kettle of accuse temperature
Technical Field
The utility model relates to a reation kettle technical field specifically is an automatic reation kettle of accuse temperature.
Background
The reaction kettle is a container for supplying materials to carry out physical or chemical reaction, and the heating, evaporation, cooling and low-speed mixing functions required by the process are realized through the structural design and parameter configuration of the container.
At present, for physical or chemical reactions with the reaction temperature lower than 100 ℃, substances are sensitive to the reaction temperature, and when the temperature is too high and is difficult to reduce, reaction failure is caused, so that cooling needs to be carried out quickly during reaction, but the cooling rate of most of reaction kettles on the market at present cannot meet the cooling requirement, and therefore, the reaction kettle capable of automatically controlling the temperature is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic reation kettle of accuse temperature to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an automatic reation kettle of accuse temperature, includes the reation kettle body, the four corners fixedly connected with reation kettle footing of reation kettle body bottom, and the top of the reation kettle body passes through fastening bolt fixedly connected with reation kettle lid, one side fixedly connected with blowing pipe of reation kettle body bottom, the both sides difference fixedly connected with inlet tube and the outlet pipe at reation kettle lid top, the inside of the reation kettle body is provided with the cooling tube, inlet tube and outlet pipe are connected with the both ends stationary phase of cooling tube respectively, one side fixed mounting that the top of reation kettle lid is close to the outlet pipe has temperature sensor, the outside fixedly connected with heating collar of the reation kettle body.
Preferably, the inside intermediate position fixed mounting of reation kettle body bottom has a rotation piece, the intermediate position fixed mounting of reation kettle lid has the (mixing) shaft, two at least second puddlers of middle part fixedly connected with of (mixing) shaft, and two at least first puddlers of bottom fixedly connected with of (mixing) shaft, the top fixedly connected with reduction gears of (mixing) shaft, and reduction gears's top fixed mounting has driving motor, the bottom of (mixing) shaft with rotate a movable looks coupling.
Preferably, temperature sensor's temperature measurement end is located the internal intermediate position of reation kettle, the middle part fixed mounting of inlet tube has the solenoid valve of intaking, the middle part fixed mounting of outlet pipe has the water solenoid valve, the pipe diameter of inlet tube, outlet pipe and cooling pipe is unanimous mutually, inlet tube and outlet pipe respectively with cooling pipe looks adaptation, the model of solenoid valve of intaking and water solenoid valve is unanimous mutually, the solenoid valve of intaking, the solenoid valve of going out water, temperature sensor and heating coil all are connected with the PLC switch board.
Preferably, the inside fixed mounting of heating circle has the heating rod more than ten at least, heating circle and heating rod looks adaptation, heating circle and reation kettle body looks adaptation.
Preferably, the reaction kettle body is matched with the reaction kettle cover, and the reaction kettle body is fixedly connected with the reaction kettle bottom foot in a welding mode.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the utility model provides an automatic reation kettle of accuse temperature, through the setting of inlet tube, outlet pipe and cooling tube, has realized utilizing microthermal cooling water to cool off fast the material in the reation kettle to make this utility model reation kettle can reach quick refrigerated operation requirement, through the setting of heating ring, realized can heaing up to reation kettle.
(2) The utility model provides an automatic reation kettle of accuse temperature, through the setting of (mixing) shaft and second puddler, has realized can stirring the inside reaction mass of reation kettle, when intensification and cooling, can reach better temperature rise and cooling effect.
Drawings
Fig. 1 is a front view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
fig. 3 is a flow chart of the automatic temperature control of the present invention.
In the figure: 1. a reaction kettle bottom foot; 2. a reaction kettle body; 3. a reaction kettle cover; 4. a rotating member; 5. a stirring shaft; 6. a first stirring rod; 7. a second stirring rod; 8. a speed reduction mechanism; 9. a drive motor; 10. a water inlet pipe; 11. a water outlet pipe; 12. a water inlet electromagnetic valve; 13. a water outlet electromagnetic valve; 14. a temperature sensor; 15. heating a ring; 16. a heating rod; 17. a cooling duct; 18. and discharging the material pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1 and fig. 2, the utility model provides a technical solution: the utility model provides an automatic reation kettle of accuse temperature, including the reation kettle body 2, four corners fixedly connected with reation kettle footing 1 of the 2 bottoms of the reation kettle body, and fastening bolt fixedly connected with reation kettle lid 3 is passed through at the top of the reation kettle body 2, as shown in the figure one side fixedly connected with blowing pipe 18 of the 2 bottoms of the reation kettle body, as shown in the figure, fixedly connected with inlet tube 10 and outlet pipe 11 respectively are in the both sides at 3 tops of reation kettle lid as shown in the figure, as shown in the figure the inside of the reation kettle body 2 is provided with cooling tube 17, as shown in the figure inlet tube 10 and outlet pipe 11 are connected with cooling tube 17's both ends stationary phase respectively, as shown in the figure one side fixed mounting that the top of reation kettle lid 3 is close to outlet pipe 11.
As shown in fig. 2, a rotating member 4 is fixedly mounted at an intermediate position inside the bottom of the reaction kettle body 2 as shown in the figure, a stirring shaft 5 is fixedly mounted at an intermediate position of the reaction kettle cover 3 as shown in the figure, at least two second stirring rods 7 are fixedly connected to the middle of the stirring shaft 5 as shown in the figure, at least two first stirring rods 6 are fixedly connected to the bottom of the stirring shaft 5, a speed reducing mechanism 8 is fixedly connected to the top end of the stirring shaft 5 as shown in the figure, a driving motor 9 is fixedly mounted on the top of the speed reducing mechanism 8, and the bottom end of the stirring shaft 5 is movably.
As shown in fig. 2, the temperature measuring end of the temperature sensor 14 is located in the middle of the inside of the reaction kettle body 2, as shown in the figure, the middle of the water inlet pipe 10 is fixedly provided with a water inlet electromagnetic valve 12, as shown in the figure, the middle of the water outlet pipe 11 is fixedly provided with a water outlet electromagnetic valve 13, as shown in the figure, the pipe diameters of the water inlet pipe 10, the water outlet pipe 11 and the cooling pipeline 17 are consistent, as shown in the figure, the water inlet pipe 10 and the water outlet pipe 11 are respectively matched with the cooling pipeline 17, as shown in the figure, the models of the water inlet electromagnetic valve 12 and the water outlet electromagnetic valve 13 are consistent, and as shown.
As shown in fig. 2, at least ten heating rods 16 are fixedly installed inside the heating ring 15, as shown in the figure, the heating ring 15 is adapted to the heating rods 16, and as shown in the figure, the heating ring 15 is adapted to the reaction vessel body 2.
As shown in fig. 1 and fig. 2, the reaction vessel body 2 and the reaction vessel cover 3 are adapted as shown in the figure, and the reaction vessel body 2 and the reaction vessel bottom 1 are fixedly connected by welding as shown in the figure.
As shown in FIG. 3, the temperature control steps are as follows:
s1: the temperature sensor 14 tests the temperature inside the reaction kettle body 2 in real time and transmits the measured temperature to the PLC control cabinet;
s2: when the measured temperature is higher than the set temperature and exceeds three ℃, the heating ring 15 is automatically closed, the water inlet electromagnetic valve 12 and the water outlet electromagnetic valve 13 are simultaneously opened, the further water inlet pipe 10, the cooling pipeline 17 and the water outlet pipe 11 are communicated, and further cooling water flows in from the water inlet pipe 10 and flows out from the water outlet pipe 11, so that the aim of cooling the reaction kettle body 2 is fulfilled;
s3: when the measured temperature does not exceed the set temperature by three degrees centigrade, the water inlet electromagnetic valve 12 and the water outlet electromagnetic valve 13 are automatically closed, meanwhile, the system judges whether the set temperature is higher than the measured temperature by three degrees centigrade, when the set temperature is not higher, the system normally operates, when the set temperature is higher than the set temperature, the heating ring 15 is automatically opened, and the heating rod 16 in the further heating ring 15 heats the reaction kettle body 2.
The working principle is as follows: when the utility model is used for reacting materials, firstly, the temperature sensor 14 tests the temperature inside the reaction kettle body 2 in real time and transmits the measured temperature to the PLC control cabinet, and further when the measured temperature is more than three degrees centigrade than the set temperature, the system automatically closes the heating ring 15, and simultaneously opens the water inlet electromagnetic valve 12 and the water outlet electromagnetic valve 13, the further water inlet pipe 10, the cooling pipeline 17 and the water outlet pipe 11 are communicated, further cooling water flows in from the water inlet pipe 10 and flows out from the water outlet pipe 11, thereby achieving the purpose of cooling the reaction kettle body 2, when the measured temperature is not more than three degrees centigrade than the set temperature, the water inlet electromagnetic valve 12 and the water outlet electromagnetic valve 13 are automatically closed, and simultaneously, the system judges whether the set temperature is more than three degrees centigrade than the measured temperature, when the set temperature is not high, the system normally operates, when the set temperature is more than three degrees centigrade, the heating ring 15 is, the reaction vessel body 2 is heated by a heating rod 16 inside the further heating ring 15.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides an automatic reation kettle of accuse temperature, includes the reation kettle body (2), four corners fixedly connected with reation kettle footing (1) of the reation kettle body (2) bottom, and fastening bolt fixed connection reation kettle lid (3) are passed through at the top of the reation kettle body (2), one side fixedly connected with blowing pipe (18) of the reation kettle body (2) bottom, its characterized in that: the utility model discloses a reaction kettle cover, including the reation kettle lid (3), the both sides at reation kettle lid (3) top are fixedly connected with inlet tube (10) and outlet pipe (11) respectively, the inside of the reation kettle body (2) is provided with cooling tube (17), inlet tube (10) and outlet pipe (11) are connected with the both ends stationary phase of cooling tube (17) respectively, one side fixed mounting that the top of reation kettle lid (3) is close to outlet pipe (11) has temperature sensor (14), the outside fixedly connected with heating collar (15) of the reation kettle body (2).
2. The automatic temperature control reaction kettle according to claim 1, characterized in that: the reactor comprises a reaction kettle body (2), wherein a rotating part (4) is fixedly arranged at the middle position inside the bottom of the reaction kettle body (2), a stirring shaft (5) is fixedly arranged at the middle position of a reaction kettle cover (3), at least two second stirring rods (7) are fixedly connected to the middle part of the stirring shaft (5), at least two first stirring rods (6) are fixedly connected to the bottom of the stirring shaft (5), a speed reducing mechanism (8) is fixedly connected to the top of the stirring shaft (5), a driving motor (9) is fixedly arranged at the top of the speed reducing mechanism (8), and the bottom of the stirring shaft (5) is in movable phase coupling with the rotating part (4).
3. The automatic temperature control reaction kettle according to claim 2, characterized in that: the temperature measurement end of temperature sensor (14) is located the inside intermediate position of the reation kettle body (2), the middle part fixed mounting of inlet tube (10) has water inlet solenoid valve (12), the middle part fixed mounting of outlet pipe (11) has water outlet solenoid valve (13), the pipe diameter of inlet tube (10), outlet pipe (11) and cooling pipe (17) is unanimous, inlet tube (10) and outlet pipe (11) respectively with cooling pipe (17) looks adaptation, the model of water inlet solenoid valve (12) and water outlet solenoid valve (13) is unanimous mutually, water inlet solenoid valve (12), water outlet solenoid valve (13), temperature sensor (14) and heating collar (15) all are connected with the PLC switch board.
4. The automatic temperature control reaction kettle according to claim 3, characterized in that: the inside fixed mounting of heating circle (15) has heating rod (16) more than ten at least, heating circle (15) and heating rod (16) looks adaptation, heating circle (15) and reation kettle body (2) looks adaptation.
5. The automatic temperature control reaction kettle according to claim 3, characterized in that: the reaction kettle body (2) is matched with the reaction kettle cover (3), and the reaction kettle body (2) is fixedly connected with the reaction kettle bottom foot (1) in a welding mode.
CN202021567532.0U 2020-08-01 2020-08-01 Automatic reation kettle of accuse temperature Active CN213133166U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021567532.0U CN213133166U (en) 2020-08-01 2020-08-01 Automatic reation kettle of accuse temperature

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021567532.0U CN213133166U (en) 2020-08-01 2020-08-01 Automatic reation kettle of accuse temperature

Publications (1)

Publication Number Publication Date
CN213133166U true CN213133166U (en) 2021-05-07

Family

ID=75735515

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021567532.0U Active CN213133166U (en) 2020-08-01 2020-08-01 Automatic reation kettle of accuse temperature

Country Status (1)

Country Link
CN (1) CN213133166U (en)

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