CN211098928U - Heating and feeding device in MBS resin production - Google Patents

Heating and feeding device in MBS resin production Download PDF

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Publication number
CN211098928U
CN211098928U CN202021102254.1U CN202021102254U CN211098928U CN 211098928 U CN211098928 U CN 211098928U CN 202021102254 U CN202021102254 U CN 202021102254U CN 211098928 U CN211098928 U CN 211098928U
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kettle
heating device
type
pipe
gas
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CN202021102254.1U
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李景亮
吴志朋
杜如国
王泷正
李成禄
刘炳军
季成岗
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Shandong Yigong Material Technology Co.,Ltd.
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Shandong Yigong Chemical Co ltd
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Abstract

The utility model discloses a intensification feed arrangement in MBS resin production, include from last one-level breakdown of emulsion cauldron down distributing, second grade breakdown of emulsion cauldron, tertiary breakdown of emulsion cauldron, one-level breakdown of emulsion cauldron, second grade breakdown of emulsion cauldron, tertiary breakdown of emulsion cauldron settlement temperature is 40 ℃ ~50 ℃ respectively, 60 ℃ ~70 ℃, 85 ℃ ~95 ℃, one-level breakdown of emulsion cauldron, second grade breakdown of emulsion cauldron, tertiary breakdown of emulsion cauldron one side is equipped with heating device I respectively, heating device II, heating device III, and one-level breakdown of emulsion cauldron, second grade breakdown of emulsion cauldron, tertiary breakdown of emulsion cauldron structure is identical, describe as an example with one-level breakdown of emulsion cauldron: the one-level demulsification kettle comprises kettle bodies, two adjacent kettle bodies are connected through a supporting frame, and a stirrer and a spiral exhaust pipe are arranged in each kettle body. The utility model discloses not only remain prior art's advantage, moreover the utility model discloses can retrieve the inside heat of second grade breakdown of emulsion cauldron, tertiary breakdown of emulsion cauldron to can avoid appearing the extravagant condition of the internal portion heat of cauldron.

Description

Heating and feeding device in MBS resin production
Technical Field
The utility model relates to a intensification feed arrangement specifically is a intensification feed arrangement in MBS resin production.
Background
The prior art discloses the application numbers as follows: CN191620088340.5 is a heating and feeding device in MBS resin production, which comprises a first-stage demulsification kettle, a second-stage demulsification kettle, a third-stage demulsification kettle, a discharge port, a kettle body and a feed port, the structures of the first-stage demulsification kettle, the second-stage demulsification kettle and the third-stage demulsification kettle are completely the same, the discharge port of the first-stage demulsification kettle is connected with the feed port of the second-stage demulsification kettle, the discharge hole of the second-stage demulsification kettle is connected with the feed hole of the third-stage demulsification kettle, a stirrer and a spiral heating exhaust pipe are arranged in the kettle body, the stirrer is connected with the motor, one end of the heating exhaust pipe is connected with the air inlet valve, the other end of the heating exhaust pipe is connected with the spherical exhaust head, the surface of the kettle body is provided with a feed inlet, a discharge outlet, a pneumatic valve and a demulsifier feed inlet, the discharge outlet is provided with a discharge detection port, the bottom of the stirrer is provided with an anchor plate type stirring blade, and the middle of the stirrer is connected with a spiral stirring blade. The utility model utilizes the series connection of the emulsion breaking kettles to form three-level emulsion breaking to achieve better emulsion breaking effect, simultaneously increase the material retention time, adapt to large-scale production and prevent material blockage, realize rapid temperature rise through the heating exhaust pipe to improve the utilization rate of energy, shorten the production period, effectively save the cost and reduce the waste; however, the utility model discloses accomplish the breakdown of emulsion work after, can not retrieve the heat of each internal portion of cauldron, cause the thermal waste of the internal portion of cauldron easily.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a intensification feed arrangement in MBS resin production to solve the problem that prior art exists.
In order to achieve the above object, the utility model provides a following technical scheme:
a temperature rise feeding device in MBS resin production comprises a first-stage demulsification kettle, a second-stage demulsification kettle and a third-stage demulsification kettle which are distributed from top to bottom, wherein the first-stage demulsification kettle, the second-stage demulsification kettle and the third-stage demulsification kettle are respectively provided with a set temperature of 40-50 ℃, 60-70 ℃ and 85-95 ℃, the first-stage demulsification kettle and the second-stage demulsification kettle, one side of the third-stage demulsification kettle is respectively provided with a heating device I, a heating device II and a heating device III, the first-stage demulsification kettle, the second-stage demulsification kettle and the third-stage demulsification kettle are completely the same in structure, the first-stage demulsification kettle is described by taking the first-stage demulsification kettle as an example, the first-stage demulsification kettle comprises a kettle body, two adjacent kettle bodies are connected through a supporting frame, a stirrer and a spiral exhaust pipe are arranged inside the kettle body, the top surface of the kettle body is provided with a motor, the stirrer is connected with the motor, the bottom of the stirrer is provided with an anchor plate type stirring blade, the middle of the stirring demulsification stirrer is connected with the spiral type stirring blade, the outer diameter of the stirring blade is smaller than the inner diameter of the exhaust pipe, one end of the exhaust pipe is connected with a gas outlet of the heating device I, the other end of the other end is connected with a spherical exhaust head, the exhaust pipe connected with a vertical pipe connected with a feeding pipe connected with a spherical exhaust pipe connected with a feeding pipe of a heating device II, the vertical pipe, the heating device I, the vertical pipe, the feeding pipe of the heating device II, the vertical pipe of the heating device II, the heating device.
According to the temperature-rising feeding device in MBS resin production, the heating device I, the heating device II and the heating device III are all arranged on the corresponding kettle bodies through the mounting plates.
According to the heating and feeding device in MBS resin production, the motor is arranged on the corresponding kettle body through the mounting frame, and the stirrer is sleeved with the alloy protective sleeve.
According to the heating and feeding device in MBS resin production, the control panel is arranged on the front side of the kettle body of the secondary demulsification kettle, and the heating device I, the heating device II, the heating device III, the motor, the electric valve I and the electric valve II are all electrically connected with the control panel.
According to the heating and feeding device in MBS resin production, the kettle body is internally provided with the heat preservation layer and the temperature detection device, and the temperature detection device is electrically connected with the control panel.
In the above temperature-raising and feeding device for MBS resin production, the first L type pipe and the corresponding second L type pipe are of an integral structure, and the first L type pipe and the second L type pipe are both hard pipes.
According to the heating and feeding device in MBS resin production, the feeding pipe, the discharging pipe, the first vertical pipe, the second vertical pipe, the first L type pipe and the second L type pipe are all high-temperature resistant pipes.
The utility model has the advantages that: the utility model discloses not only remain prior art's advantage, moreover the utility model discloses can retrieve the inside heat of second grade reation kettle, tertiary reation kettle to can avoid appearing the extravagant condition of the internal portion heat of cauldron.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
Fig. 1 is a schematic structural diagram of the present invention; fig. 2 is a schematic structural view of the present invention; fig. 3 is a schematic view of the structure of the stirrer.
The device comprises a first-stage demulsification kettle 1, a second-stage demulsification kettle 2, a third-stage demulsification kettle 3, a third-stage demulsification kettle 4, a heating device I, a heating device II, a heating device III, a kettle body 7, a support frame 8, a stirrer 9, a stirrer 10, an exhaust pipe 11, a motor 12, an anchor plate type stirring blade 13, a spiral stirring blade 14, a spherical exhaust head 15, an electric valve I, a feed pipe 16, a feed pipe 17, a discharge pipe 17, an air pressure valve 18, a demulsifier feed inlet 19, a discharge detection port 20, a first vertical pipe 21, a first vertical pipe 22, a second vertical pipe 23, an electric valve II, a 24 air inlet pipe 25, a first L type pipe 26, a second L, a 27, a mounting plate 28, a mounting frame 29, an alloy protection sleeve 30 and a control panel.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The method comprises the steps of as shown in fig. 1-3, a temperature rise feeding device in MBS resin production comprises a first-stage demulsifying kettle 1, a second-stage demulsifying kettle 2 and a third-stage demulsifying kettle 3 which are distributed from top to bottom, a first-stage demulsifying kettle 1, a second-stage demulsifying kettle 2, a third-stage demulsifying kettle 3, a third-stage demulsifying kettle 2, a fourth-demulsifying 10, a third-stage demulsifying kettle 2, a fourth-demulsifying device 2, a third-stage demulsifying kettle 2, a fourth-stage demulsifying device 2, a fourth-heating device 2, a third-heating device, a third-stage demulsifying kettle 2, a third-heating device, a third-electric valve 2, an electric valve, a third-heating device, an electric valve, a third-stage demulsifying kettle, a third-electric valve, a third-electric-.
Specifically, the heating device I4, the heating device II5, and the heating device III6 according to the present embodiment are all mounted on the corresponding kettle 7 through the mounting plate 27. The heating device I4, the heating device II5 and the heating device III6 can be mounted on the corresponding kettle bodies 7 by arranging the mounting plates 27. Specifically, the motor 11 described in this embodiment is installed on the corresponding kettle body 7 through the mounting frame 28, and the stirrer 9 is sleeved with the alloy protecting jacket 29. The motor 11 can be arranged on the corresponding kettle body 7 by arranging the mounting frame 28; the abrasion between the stirrer 9 and the kettle body 7 can be reduced by arranging the alloy protection sleeve 29.
Further, a control panel 30 is installed on the front side of the kettle body 7 of the secondary demulsification kettle 2, and the heating device I4, the heating device II5, the heating device III6, the motor 11, the electric valve I15 and the electric valve II23 are all electrically connected with the control panel 30. The control panel 30 can control the heating device I4, the heating device II5, the heating device III6, the motor 11, the electric valve I15 and the electric valve II23, and the operation is convenient.
Further, the cauldron body 7 inside be provided with heat preservation and temperature-detecting device, temperature-detecting device is connected with control panel 30 electricity. The heat loss can be reduced by arranging the heat-insulating layer; the temperature detection device can measure the temperature in the kettle body 7, and the operator can accurately master the temperature in the kettle body 7 through the control panel 30 because the temperature detection device is electrically connected with the control panel 30.
Furthermore, the first L-shaped tube 25 and the corresponding second L-shaped tube 26 are integrated, and the first L-shaped tube 25 and the second L-shaped tube 26 are both hard tubes, the first L-shaped tube 25 and the second L-shaped tube 26 are hard tubes, which can meet the use requirement of the present invention.
Furthermore, the feeding pipe 16, the discharging pipe 17, the first vertical pipe 21, the second vertical pipe 22, the first L type pipe 25 and the second L type pipe 26 are all high temperature resistant pipes, and the feeding pipe 16, the discharging pipe 17, the first vertical pipe 21, the second vertical pipe 22, the first L type pipe 25 and the second L type pipe 26 are high temperature resistant pipes, which can meet the use requirement of the present invention.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (7)

1. A temperature rise feeding device in MBS resin production is characterized by comprising a first-stage demulsification kettle (1), a second-stage demulsification kettle (2) and a third-stage demulsification kettle (3) which are distributed from top to bottom, wherein the first-stage demulsification kettle (1), the second-stage demulsification kettle (2) and one side of the third-stage demulsification kettle (3) are respectively provided with a heating device I (4), a heating device II (5) and a heating device III (6), the first-stage demulsification kettle (1), the second-stage demulsification kettle (2) and the third-stage demulsification kettle (3) are completely the same in structure, the first-stage demulsification kettle (1) comprises a kettle body (7), two adjacent kettle bodies (7) are connected through a supporting frame (8), a stirrer (9) and a spiral exhaust pipe (10) are arranged inside the kettle body (7), a motor (11) is arranged on the top surface of the demulsification kettle (7), the stirrer (9) is connected with the motor (11), an anchor stirring blade (9) is arranged at the bottom of the stirrer (9), the discharge pipe (16) is connected with a discharge pipe (16) at the upper end of the first-stage demulsification kettle (16), a gas inlet pipe (16) of the second-type heating device I (16), a gas inlet pipe (16) and a gas-type heating device I (16), a gas-type standpipe (17), a gas-type standpipe (16) are respectively arranged on the heating device I (17), a gas-type standpipe (16) is connected with a gas-type standpipe (17), a gas-type standpipe (16) on the heating device I-type standpipe (17), a gas-type standpipe (16) is arranged on the heating device I-type standpipe (3), a gas-type standpipe (17), a gas inlet pipe (3), a gas-type standpipe (17) is connected with a gas-type standpipe 17), a gas-type standpipe 17) is arranged on the upper-type standpipe 17, a gas-type standpipe 17.
2. The heating and feeding device for MBS resin production according to claim 1, wherein: and the heating device I (4), the heating device II (5) and the heating device III (6) are all arranged on the corresponding kettle body (7) through mounting plates (27).
3. The heating and feeding device for MBS resin production according to claim 1, wherein: the motor (11) is arranged on the corresponding kettle body (7) through a mounting frame (28), and the stirrer (9) is sleeved with an alloy protective sleeve (29).
4. The heating and feeding device for MBS resin production according to claim 1, wherein: and a control panel (30) is installed on the front side of the kettle body (7) of the secondary demulsification kettle (2), and the heating device I (4), the heating device II (5), the heating device III (6), the motor (11), the electric valve I (15) and the electric valve II (23) are electrically connected with the control panel (30).
5. The elevated temperature feeding device in MBS resin production according to claim 1 or 4, characterized in that: the kettle body (7) is internally provided with a heat preservation layer and a temperature detection device, and the temperature detection device is electrically connected with the control panel (30).
6. The device for increasing temperature and feeding in MBS resin production according to claim 1, wherein the first L type pipe (25) and the corresponding second L type pipe (26) are integrated into a whole, and the first L type pipe (25) and the second L type pipe (26) are both hard pipes.
7. The heating feeding device for MBS resin production according to claim 1, wherein the feeding pipe (16), the discharging pipe (17), the first vertical pipe (21), the second vertical pipe (22), the first L type pipe (25) and the second L type pipe (26) are all high temperature resistant pipes.
CN202021102254.1U 2020-06-16 2020-06-16 Heating and feeding device in MBS resin production Active CN211098928U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021102254.1U CN211098928U (en) 2020-06-16 2020-06-16 Heating and feeding device in MBS resin production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021102254.1U CN211098928U (en) 2020-06-16 2020-06-16 Heating and feeding device in MBS resin production

Publications (1)

Publication Number Publication Date
CN211098928U true CN211098928U (en) 2020-07-28

Family

ID=71687877

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021102254.1U Active CN211098928U (en) 2020-06-16 2020-06-16 Heating and feeding device in MBS resin production

Country Status (1)

Country Link
CN (1) CN211098928U (en)

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Address after: 257000 south of Mingyuan Road, east of Jingyi road and north of weiqi Road, Blue Economic Development Zone, Hekou District, Dongying City, Shandong Province

Patentee after: Shandong Yigong Material Technology Co.,Ltd.

Address before: 257000 south of Mingyuan road and east of Jingyi Road, Blue Economic Development Zone, Hekou District, Dongying City, Shandong Province

Patentee before: Shandong Yigong Chemical Co.,Ltd.