CN206746524U - The esterification kettle device of Intelligent adjustment temperature - Google Patents

The esterification kettle device of Intelligent adjustment temperature Download PDF

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Publication number
CN206746524U
CN206746524U CN201720531006.0U CN201720531006U CN206746524U CN 206746524 U CN206746524 U CN 206746524U CN 201720531006 U CN201720531006 U CN 201720531006U CN 206746524 U CN206746524 U CN 206746524U
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CN
China
Prior art keywords
holding vessel
screw thread
water pump
drainpipe
delay relay
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Expired - Fee Related
Application number
CN201720531006.0U
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Chinese (zh)
Inventor
黄涛
任海澜
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Zhuhai United New Material Co Ltd Gaolan
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Zhuhai United New Material Co Ltd Gaolan
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Priority to CN201720531006.0U priority Critical patent/CN206746524U/en
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Abstract

The utility model discloses the esterification kettle device of Intelligent adjustment temperature, including reactor, bottom plate, holding vessel, dividing plate, heating tube, temperature controller, first water pump, first drainpipe, second water pump, second drainpipe, temperature sensor, semiconductor cooler, first time-delay relay, second time-delay relay, connecting tube, the esterification kettle device of the Intelligent adjustment temperature, clever structure, it is powerful, it is simple to operate, by using the device, can be achieved that processing is heated or cooled to reactor without staff manual hand manipulation, it ensure that reactor lactonizes the process requirements of processing with this, not only reduce the working strength of staff, it is also effective to have ensured that reactor lactonizes the stability of processing effect.

Description

The esterification kettle device of Intelligent adjustment temperature
Technical field
It the utility model is related to reaction kettle device, more particularly to the esterification kettle device of Intelligent adjustment temperature.
Background technology
In use, for not being the reaction kettle device processed for esterification, the reactor is working reactor In, staff needs timing to carry out that processing is heated or cooled to reactor, reaches the technological requirement being esterified when processing, mesh with this Before, the mode being heated or cooled of Traditional control reactor is realized by staff manual hand manipulation mode, this Kind mode wastes time and energy, and adds the working strength of staff, when staff is carried out because being busy with one's work to forget to reactor When being heated or cooled, it virtually have impact on reactor and lactonize the effect of processing, in view of disadvantages described above, is necessary design intelligence in fact Adjust the esterification kettle device of temperature.
Utility model content
Technical problem to be solved in the utility model is:The esterification kettle device of Intelligent adjustment temperature is provided, come Solution reactor traditional at present is simple in construction, and function is single, adds the working strength of staff, have impact in reactor The problem of being esterified processing effect.
In order to solve the above technical problems, the technical solution of the utility model is:The reaction kettle of the esterification dress of Intelligent adjustment temperature Put, including reactor, in addition to bottom plate, holding vessel, dividing plate, heating tube, temperature controller, the first water pump, the first drainpipe, the second water Pump, the second drainpipe, temperature sensor, semiconductor cooler, the first time-delay relay, the second time-delay relay, connecting tube, institute The holding vessel stated is located at the top of bottom plate, and described holding vessel is connected with base thread, and described dividing plate is located in holding vessel inside End, described dividing plate are weldingly connected with holding vessel, and described heating tube is located on the left of holding vessel inner bottom, described heating tube It is connected with holding vessel screw thread, described temperature controller is on the left of storage tank wall front end, described temperature controller and holding vessel screw thread It is connected, the first described water pump is located at holding vessel top left side, and the first described water pump is connected with holding vessel screw thread, and described the One drainpipe is located at the top of the first water pump, and first described drainpipe one end is connected with the first water pump screw thread, and described first Drainpipe is wound in reactor, and the first described drainpipe is connected with reactor screw thread, and the first described drainpipe other end passes through Wear lower end on the left of holding vessel with holding vessel screw thread to be connected, the second described water pump upper end on the right side of storage tank wall is described Second water pump is connected with holding vessel screw thread, and the second described drainpipe is located at the top of the second water pump, the second described drainpipe one End is connected with the second water pump screw thread, and the second described drainpipe other end is connected with first row water pipe thread, described temperature Sensor is located at holding vessel inner right side lower end, and described temperature sensor is connected with holding vessel screw thread, described semiconductor system Cooler is located at holding vessel inner right side top, and described semiconductor cooler is connected with holding vessel screw thread, the described first delay On the left of storage tank wall front end, the first described time-delay relay is connected relay with holding vessel screw thread, and described second On the right side of storage tank wall front end, the second described time-delay relay is connected time-delay relay with holding vessel screw thread, described Connecting tube is through lower end on the right side of holding vessel, and described connecting tube one end is connected with holding vessel screw thread, and described connecting tube is another End is connected with first row water pipe thread.
Further, described first row pipe outer wall is additionally provided with the first magnetic valve, the first described magnetic valve and first row Water pipe thread is connected.
Further, described connection pipe outer wall is additionally provided with second solenoid valve, and described second solenoid valve is with being connected pipe screw thread It is connected.
Further, the first described water pump bottom is additionally provided with heat supply water pipe, described heat supply water pipe and the first water pump screw thread It is connected, and described heat supply water pipe runs through holding vessel.
Further, cooling water pipe, described cooling water pipe and the second water pump screw thread are additionally provided with the left of the second described water pump It is connected, and described cooling water pipe runs through holding vessel.
Further, lower end is additionally provided with transformer, described transformer and holding vessel screw thread on the right side of described storage tank wall It is connected.
Further, plug is additionally provided with the right side of described transformer, described plug is connected with transformer wire.
Compared with prior art, the esterification kettle device of the Intelligent adjustment temperature, in use, first in the effect of dividing plate Under so that holding vessel is internally divided into left and right two parts, and left and right two parts are equipped with the water under room temperature state, work inside holding vessel Personnel first strike out temperature controller and semiconductor cooler with the hand, by opening temperature controller so that heating tube is left to holding vessel inside Water under the temperature state of side room is heated, and is with state of the water in heating that this allows under holding vessel inside left room temperature state Hot water, when the temperature value set by heating tube reaches temperature controller, heating tube is stopped, synchronous, by opening semiconductor system Cooler so that semiconductor cooler freezes to the water under holding vessel inner right side room temperature state, is allowed with this inside holding vessel Water under the room temperature state of right side is in the state of cold water, and water after right side is freezed in holding vessel is that the temperature of cold water reaches temperature During standard value set by sensor, semiconductor cooler is stopped, and according to actual use situation, staff first strikes with the hand The first magnetic valve is driven, then second solenoid valve is closed with hand, staff opens the first time-delay relay and the first water with hand again Pump, now, pass through the effect of the first water pump so that the hot water of holding vessel inside left is discharged into by the first water pump by heat supply water pipe In one drainpipe, then by the first drainpipe by hot water return to holding vessel inside left, by with upper type so that hot water is In the state circulated in one drainpipe, allow hot water to heat the first drainpipe with this, finally cause the first draining Pipe heats to reactor, meets that reactor lactonizes the process requirements of processing with this, when set by the first time-delay relay Time when reaching, the first water pump and the first magnetic valve are closed, synchronous, second solenoid valve, the second time-delay relay and Second water pump is opened simultaneously, now, passes through the effect of the second water pump so that the second water pump is by the cold water of holding vessel inner right side It is discharged into the second drainpipe by cooling water pipe, then is discharged into by the second drainpipe in the first drainpipe, then will be cold by the first drainpipe Water is discharged into connecting tube, then by connecting tube by cold-water reflux to holding vessel inner right side, by with upper type so that cold water is In the state circulated in one drainpipe, allow cold water to cool down the first drainpipe with this, finally cause the first draining Pipe cools down to reactor, meets that reactor lactonizes the process requirements of processing with this, when set by the second time-delay relay Time when reaching, the second water pump and second solenoid valve are closed, synchronous, the first magnetic valve, the first time-delay relay and First water pump is opened simultaneously, i.e., the device heats to reactor again, by with upper type, finally causing the dress Put and the heating of alternative expression circulation, cooling treatment are carried out to reactor, the esterification kettle device of the Intelligent adjustment temperature, structure is skilful It is wonderful, it is powerful, it is simple to operate, by using the device, be can be achieved without staff manual hand manipulation to reactor Processing is heated or cooled, ensure that reactor lactonizes the process requirements of processing with this, not only reduce the work of staff Make intensity, it is also effective to have ensured that reactor lactonizes the stability of processing effect, meanwhile, plug is to connect extraneous electricity Source, extraneous power supply is allowed to be powered to the device with this, transformer is in order to ensure the stability of the device voltage, described temperature Degree sensor be connected with semiconductor cooler signal wire, described temperature sensor model WZP-035, described temperature controller and Heating tube signal wire is connected, the first described time-delay relay respectively with the first water pump, the first magnetic valve, second solenoid valve, Two water pumps and the second time-delay relay signal wire are connected, the second described time-delay relay respectively with the second water pump, second electricity Magnet valve, the first magnetic valve, the first water pump and the first time-delay relay signal wire are connected.
Brief description of the drawings
Fig. 1 is the partial front elevation view of the esterification kettle device of Intelligent adjustment temperature;
Fig. 2 is the inside partial sectional view of holding vessel.
Reactor 1, bottom plate 2, holding vessel 3, dividing plate 4, heating tube 5, temperature controller 6, the first water pump 7, the first drainpipe 8, Two water pumps 9, the second drainpipe 10, temperature sensor 11, semiconductor cooler 12, the first time-delay relay 13, second delay after Electrical equipment 14, connecting tube 15, second solenoid valve 101, transformer 301, plug 302, heat supply water pipe 701, the first magnetic valve 801, confession Cold water pipe 901.
Following embodiment will combine above-mentioned accompanying drawing and further illustrate.
Embodiment
Hereinafter, a variety of specific details are elaborated, to provide the saturating of the concept to forming described embodiment basis Thorough understanding.However, it will be apparent to those skilled in the art that described embodiment can be in these no specific details In it is some or all in the case of put into practice.In other cases, well-known processing step is not specifically described.
As shown in Figure 1 and Figure 2, the esterification kettle device of Intelligent adjustment temperature, including reactor 1, bottom plate 2, holding vessel 3, Dividing plate 4, heating tube 5, temperature controller 6, the first water pump 7, the first drainpipe 8, the second water pump 9, the second drainpipe 10, temperature sensor 11st, semiconductor cooler 12, the first time-delay relay 13, the second time-delay relay 14, connecting tube 15, described holding vessel 3 In the top of bottom plate 2, described holding vessel 3 is connected with the screw thread of bottom plate 2, and described dividing plate 4 is located at the inside middle-end of holding vessel 3, described Dividing plate 4 be weldingly connected with holding vessel 3, described heating tube 5 is located on the left of the inner bottom of holding vessel 3, described heating tube 5 with The screw thread of holding vessel 3 is connected, and described temperature controller 6 is located on the left of the outer wall front end of holding vessel 3, described temperature controller 6 and the spiral shell of holding vessel 3 Line is connected, and the first described water pump 7 is located at the top left side of holding vessel 3, and the first described water pump 7 is connected with the screw thread of holding vessel 3, institute The first drainpipe 8 stated is located at the top of the first water pump 7, and described one end of the first drainpipe 8 is connected with the screw thread of the first water pump 7, and The first described drainpipe 8 is wound in reactor 1, and the first described drainpipe 8 is connected with the screw thread of reactor 1, and described first The other end of drainpipe 8 is connected through the left side lower end of holding vessel 3 with the screw thread of holding vessel 3, and the second described water pump 9 is located at holding vessel 3 Upper end on the right side of outer wall, the second described water pump 9 are connected with the screw thread of holding vessel 3, and the second described drainpipe 10 is located at the second water pump 9 Top, described one end of the second drainpipe 10 are connected with the screw thread of the second water pump 9, and the described other end of the second drainpipe 10 and The screw thread of one drainpipe 8 is connected, and described temperature sensor 11 is located at the inner right side lower end of holding vessel 3, described temperature sensor 11 are connected with the screw thread of holding vessel 3, and described semiconductor cooler 12 is located at the inner right side top of holding vessel 3, described semiconductor Refrigerator 12 is connected with the screw thread of holding vessel 3, and the first described time-delay relay 13 is located on the left of the outer wall front end of holding vessel 3, described The first time-delay relay 13 be connected with the screw thread of holding vessel 3, the second described time-delay relay 14 is located at the outer wall front end of holding vessel 3 Right side, the second described time-delay relay 14 are connected with the screw thread of holding vessel 3, and described connecting tube 15 is under the right side of holding vessel 3 End, described one end of connecting tube 15 is connected with the screw thread of holding vessel 3, and the described other end of connecting tube 15 and the spiral shell of the first drainpipe 8 Line is connected, and the described outer wall of the first drainpipe 8 is additionally provided with the first magnetic valve 801, the first described magnetic valve 801 and the first draining The screw thread of pipe 8 is connected, and the described outer wall of connecting tube 15 is additionally provided with second solenoid valve 101, described second solenoid valve 101 and connecting tube 15 screw threads are connected, and the described bottom of the first water pump 7 is additionally provided with heat supply water pipe 701, the described water pump 7 of heat supply water pipe 701 and first Screw thread is connected, and described heat supply water pipe 701 runs through holding vessel 3, and the described left side of the second water pump 9 is additionally provided with cooling water pipe 901, Described cooling water pipe 901 is connected with the screw thread of the second water pump 9, and described cooling water pipe 9 runs through holding vessel 3, described storage Lower end is additionally provided with transformer 301 on the right side of the outer wall of tank 3, and described transformer 301 is connected with the screw thread of holding vessel 3, described transformer 301 right sides are additionally provided with plug 302, and described plug 302 is connected with the wire of transformer 301.
The esterification kettle device of the Intelligent adjustment temperature, in use, first in the presence of dividing plate 4 so that holding vessel 3 Left and right two parts are internally divided into, the inside left and right two parts of holding vessel 3 are equipped with the water under room temperature state, and staff first strikes with the hand Temperature controller 6 and semiconductor cooler 12 are opened, by opening temperature controller 6 so that heating tube 5 is to the inside left room temperature of holding vessel 3 Water under state is heated, and is hot water with state of the water in heating that this allows under the inside left room temperature state of holding vessel 3, When the temperature value set by heating tube 5 reaches temperature controller 6, heating tube 5 is stopped, synchronous, by opening semiconductor refrigerating Device 12 so that semiconductor cooler 12 freezes to the water under the inner right side room temperature state of holding vessel 3, and holding vessel 3 is allowed with this Water under inner right side room temperature state is in the state of cold water, and water after right side is freezed in holding vessel 3 is that the temperature of cold water reaches During to standard value set by temperature sensor 11, semiconductor cooler 12 is stopped, and according to actual use situation, work people Member first strikes out the first magnetic valve 801 with the hand, then closes second solenoid valve 101 with hand, and staff opens the first delay with hand again The water pump 7 of relay 13 and first, now, pass through the effect of the first water pump 7 so that the first water pump 7 is by the inside left of holding vessel 3 Hot water be discharged into by heat supply water pipe 701 in the first drainpipe 8, then by the first drainpipe 8 will hot water return it is left to the inside of holding vessel 3 Side, by with upper type so that hot water, in the state circulated, hot water is allowed to first row with this in the first drainpipe 8 Water pipe 8 is heated, and finally the first drainpipe 8 is heated to reactor 1, meets that reactor 1 lactonizes processing with this Process requirements, when reaching the time set by the first time-delay relay 13, the first water pump 7 and the quilt of the first magnetic valve 801 Close, synchronous, second solenoid valve 101, the second time-delay relay 14 and the second water pump 9 are opened simultaneously, now, pass through second The effect of water pump 9 so that the cold water of the inner right side of holding vessel 3 is discharged into the second drainpipe 10 by the second water pump 9 by cooling water pipe 901 It is interior, then be discharged into by the second drainpipe 10 in the first drainpipe 8, then cold water is discharged into connecting tube 15 by the first drainpipe 8, then by Connecting tube 15 by cold-water reflux to the inner right side of holding vessel 3, by with upper type so that cold water is in the first drainpipe 8 The state circulated, allow cold water to cool down the first drainpipe 8 with this, finally the first drainpipe 8 is entered to reactor 1 Row cooling, meet that reactor lactonizes the process requirements of processing, reaches when the time set by the second time-delay relay 14 with this When, the second water pump 9 and second solenoid valve 101 are closed, synchronous, the first magnetic valve 801, the first time-delay relay 13 and the One water pump 7 is opened simultaneously, i.e., the device heats to reactor 1 again, by with upper type, finally causing the dress Heating, the cooling treatment that alternative expression circulation is carried out to reactor 1 are put, meanwhile, plug 302 is in order to connect extraneous power supply, with this Extraneous power supply is allowed to be powered to the device, transformer 301 is in order to ensure the stability of the device voltage, described temperature pass Sensor 11 is connected with the signal wire of semiconductor cooler 12, the described model WZP-035 of temperature sensor 11, described temperature controller 6 are connected with the signal wire of heating tube 5, the first described time-delay relay 13 respectively with the first water pump 7, the first magnetic valve 801, second Magnetic valve 101, the second water pump 9 and the signal wire of the second time-delay relay 14 are connected, and the second described time-delay relay 14 is distinguished With the second water pump 9, second solenoid valve 101, the first magnetic valve 801, the first water pump 7 and the signal wire phase of the first time-delay relay 13 Even.
The utility model is not limited to above-mentioned specific embodiment, and one of ordinary skill in the art visualizes from above-mentioned Hair, without performing creative labour, a variety of conversion made, all falls within the scope of protection of the utility model.

Claims (7)

1. the esterification kettle device of Intelligent adjustment temperature, including reactor, it is characterised in that also including bottom plate, holding vessel, every Plate, heating tube, temperature controller, the first water pump, the first drainpipe, the second water pump, the second drainpipe, temperature sensor, semiconductor system Cooler, the first time-delay relay, the second time-delay relay, connecting tube, described holding vessel are located at the top of bottom plate, described storage Tank is connected with base thread, and described dividing plate is located at middle-end inside holding vessel, and described dividing plate is weldingly connected with holding vessel, described Heating tube be located on the left of holding vessel inner bottom, described heating tube is connected with holding vessel screw thread, and described temperature controller is located at Store on the left of tank wall front end, described temperature controller is connected with holding vessel screw thread, and the first described water pump is located at the top of holding vessel Left side, the first described water pump are connected with holding vessel screw thread, and the first described drainpipe is located at the top of the first water pump, and described the One drainpipe one end is connected with the first water pump screw thread, and the first described drainpipe is wound in reactor, the first described draining Pipe is connected with reactor screw thread, and the first described drainpipe other end is connected through lower end on the left of holding vessel with holding vessel screw thread, The second described water pump upper end on the right side of storage tank wall, the second described water pump is connected with holding vessel screw thread, and described the Two drainpipes are located at the top of the second water pump, and second described drainpipe one end is connected with the second water pump screw thread, and described second The drainpipe other end is connected with first row water pipe thread, and described temperature sensor is located at holding vessel inner right side lower end, described Temperature sensor be connected with holding vessel screw thread, described semiconductor cooler is located at holding vessel inner right side top, described Semiconductor cooler is connected with holding vessel screw thread, and the first described time-delay relay is described on the left of storage tank wall front end The first time-delay relay be connected with holding vessel screw thread, the second described time-delay relay on the right side of storage tank wall front end, The second described time-delay relay is connected with holding vessel screw thread, and described connecting tube is through lower end on the right side of holding vessel, described company Adapter one end is connected with holding vessel screw thread, and the described connecting tube other end is connected with first row water pipe thread.
2. the esterification kettle device of Intelligent adjustment temperature as claimed in claim 1, it is characterised in that the first described draining Pipe outer wall is additionally provided with the first magnetic valve, and the first described magnetic valve is connected with first row water pipe thread.
3. the esterification kettle device of Intelligent adjustment temperature as claimed in claim 2, it is characterised in that outside described connecting tube Wall is additionally provided with second solenoid valve, and described second solenoid valve is connected with being connected pipe screw thread.
4. the esterification kettle device of Intelligent adjustment temperature as claimed in claim 3, it is characterised in that the first described water pump Bottom is additionally provided with heat supply water pipe, and described heat supply water pipe is connected with the first water pump screw thread, and described heat supply water pipe is through storage Tank.
5. the esterification kettle device of Intelligent adjustment temperature as claimed in claim 4, it is characterised in that the second described water pump Left side is additionally provided with cooling water pipe, and described cooling water pipe is connected with the second water pump screw thread, and described cooling water pipe is through storage Tank.
6. the esterification kettle device of Intelligent adjustment temperature as claimed in claim 5, it is characterised in that outside described holding vessel Lower end is additionally provided with transformer on the right side of wall, and described transformer is connected with holding vessel screw thread.
7. the esterification kettle device of Intelligent adjustment temperature as claimed in claim 6, it is characterised in that described transformer is right Side is additionally provided with plug, and described plug is connected with transformer wire.
CN201720531006.0U 2017-05-15 2017-05-15 The esterification kettle device of Intelligent adjustment temperature Expired - Fee Related CN206746524U (en)

Priority Applications (1)

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CN201720531006.0U CN206746524U (en) 2017-05-15 2017-05-15 The esterification kettle device of Intelligent adjustment temperature

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Application Number Priority Date Filing Date Title
CN201720531006.0U CN206746524U (en) 2017-05-15 2017-05-15 The esterification kettle device of Intelligent adjustment temperature

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109261095A (en) * 2018-11-16 2019-01-25 尚福平 Chemical Manufacture Multiple Cycle cooling device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109261095A (en) * 2018-11-16 2019-01-25 尚福平 Chemical Manufacture Multiple Cycle cooling device
CN109261095B (en) * 2018-11-16 2021-01-01 宁夏佰斯特医药化工有限公司 Chemical production multiple circulating cooling device

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Granted publication date: 20171215