CN218189189U - Cooling stirrer for viscosity reducer - Google Patents

Cooling stirrer for viscosity reducer Download PDF

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Publication number
CN218189189U
CN218189189U CN202222708697.0U CN202222708697U CN218189189U CN 218189189 U CN218189189 U CN 218189189U CN 202222708697 U CN202222708697 U CN 202222708697U CN 218189189 U CN218189189 U CN 218189189U
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cooling
outer jar
inner chamber
pipe
welded
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CN202222708697.0U
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Chinese (zh)
Inventor
赵晖
刘佳
肖利平
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Karamay Boao Industry And Trade Co ltd
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Karamay Boao Industry And Trade Co ltd
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Abstract

The utility model discloses a cooling agitator for viscosity reducer, including the outer jar of body, the supporting leg has all been welded in the four corners of outer jar of body bottom, the rear side welding of outer jar of body top surface outer lane has the backup pad, the positive surface of backup pad is run through and is provided with the raw materials and advances the pipe, inner tank device is installed to the bottom of outer jar of body inner chamber, agitating unit is installed at the top of outer jar of body inner chamber. The utility model discloses an electromagnetic butterfly valve, the outer jar of body, inner tank device, cooling device, agitating unit, a supporting plate, the raw materials advances the cooperation of pipe and outer calandria and uses, can carry out the formula that flows cooling to the viscosity breaker, the cooling efficiency of cooling agitator is higher like this, solved current cooling agitator when cooling the viscosity breaker, because of can not flow the cooling to the viscosity breaker, make viscosity breaker cooling process smooth inadequately, can't accomplish feeding ejection of compact on one side, thereby lead to cooling agitator to appear the lower problem of cooling efficiency.

Description

Cooling stirrer for viscosity reducer
Technical Field
The utility model relates to a viscosity breaker production technical field specifically is a cooling agitator for viscosity breaker.
Background
The viscosity reducer is an organic polymer with inorganic affinity groups, the crude oil viscosity reducer enables thick oil in a stratum to be changed into an emulsified state taking water as an external phase from a water-in-oil emulsified state by reducing the tension of an oil-water interface, the viscosity of the thick oil is greatly reduced, the recovery rate is obviously improved, and the high-temperature viscosity reducer for the drilling fluid is developed abroad, belongs to an oilfield chemical agent added in the drilling fluid, and is characterized in that methyl chlorosilane, modified polyacrylonitrile dissolved by water, an organic tin catalyst and fluorinated alkyl siloxane are subjected to heating and pressurizing reaction to form a base solution, then humic acid is added, and the base solution is reacted at 150-180 ℃ to obtain the silicofluoride high-temperature viscosity reducer for the drilling fluid.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a cooling agitator for viscosity reducer possesses and carries out the refrigerated advantage of formula that flows to the viscosity reducer, has solved current cooling agitator and when cooling the viscosity reducer, because of can not carry out the cooling that flows to the viscosity reducer for viscosity reducer cooling process is smooth inadequately, and the ejection of compact on one side of the feeding can't be accomplished to leading to cooling agitator to appear the lower problem of cooling efficiency.
In order to achieve the above purpose, the utility model provides a following technical scheme: the utility model provides a cooling agitator for viscosity reducer, includes the outer jar of body, the supporting leg has all been welded in the four corners of outer jar of body bottom, the rear side welding of outer jar of body top surface outer lane has the backup pad, the positive surface of backup pad is run through and is provided with the raw materials and advances the pipe, inner tank device is installed to the bottom of outer jar of body inner chamber, agitating unit is installed at the top of outer jar of body inner chamber, agitating unit's bottom extends to the inner chamber of inner tank device, the fixed intercommunication of center department of inner tank device bottom has outer calandria, outer calandria's bottom is run through the outer jar of body and is installed the electromagnetism butterfly valve, cooling device is installed to the inner chamber of the outer jar of body.
Preferably, the inner tank device comprises a plurality of supporting blocks, the outer sides of the supporting blocks are welded and fixed with the bottom of the outer ring of the inner cavity of the outer tank body, supporting ring rings are welded on the inner sides of the supporting blocks, and the top of each supporting ring penetrates through the inner tank body.
Preferably, the surface of the outer ring of the inner tank body is welded with a heat dissipation block, the top of the inner tank body extends to the top of the inner cavity of the outer tank body, and the center of the bottom of the inner cavity of the inner tank body is provided with a liquid discharge hole matched with the outer discharge pipe in use in a penetrating mode.
Preferably, agitating unit includes the bracing piece, the quantity of bracing piece is three, and three bracing piece is annular array distribution in the inner chamber of the outer jar of body, the outside of bracing piece and the top welded fastening of the inner wall of the outer jar of body, the inboard welding of bracing piece has the supporting disk.
Preferably, the center of the top surface of the supporting plate is fixedly connected with a stirring motor through a bolt, the bottom of the output end of the stirring motor penetrates through the supporting plate and is welded with a stirring shaft, and the surface of the outer ring of the stirring shaft is welded with a stirring rod.
Preferably, cooling device advances pipe and cooling water calandria including the cooling water, the right side that the cooling water advances the pipe runs through to outer jar of body inner chamber's top and fixedly connected with outlet coil pipe, the left side of cooling water calandria runs through to outer jar of body inner chamber's bottom and fixedly connected with return water coil pipe, the rivers hole has all been seted up on the surface of outlet coil pipe bottom and the surface at return water coil pipe top, the ring flange has all been welded on the left side that the cooling water advances the pipe and the right side of cooling water calandria, the fixed surface intercommunication of cooling water calandria bottom has U type intake pipe, one side that the cooling water calandria was kept away from to U type intake pipe runs through to outer jar of body inner chamber's bottom.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model discloses an electromagnetic butterfly valve, the outer jar of body, the inner tank device, a cooling device, agitating unit, a supporting plate, the raw materials advances the cooperation of pipe and outer calandria and uses, can carry out the formula that flows cooling to the viscosity breaker, cooling agitator's cooling efficiency is higher like this, solved current cooling agitator when cooling the viscosity breaker, because of can not carry out the cooling that flows to the viscosity breaker, make viscosity breaker cooling process smooth inadequately, can't accomplish feeding ejection of compact on one side, thereby lead to the lower problem of cooling efficiency to appear in the cooling agitator, be worth promoting.
2. The utility model discloses a set up the supporting leg, can provide the support to the outer jar of body, through the electromagnetism butterfly valve, can control opening and closing of outer calandria, through the backup pad, can advance the pipe to the raw materials and provide the support.
Drawings
FIG. 1 is an isometric view of the structure of the present invention;
FIG. 2 is a bottom view of the structure of the present invention;
FIG. 3 is an isometric view of the stirring device of the present invention;
FIG. 4 is an isometric view of the inner tank assembly of the present invention;
fig. 5 is an axonometric view of the structure of the cooling device of the present invention.
In the figure: 1 supporting leg, 2 electromagnetic butterfly valves, 3 outer tank bodies, 4 inner tank devices, 41 inner tank bodies, 42 radiating blocks, 43 supporting blocks, 44 supporting ring rings, 5 cooling devices, 51 cooling water inlet pipes, 52 water outlet coils, 53 water flow holes, 54 water return coils, 55U-shaped water taking pipes, 56 cooling water discharging pipes, 6 stirring devices, 61 supporting plates, 62 stirring rods, 63 stirring shafts, 64 supporting rods, 65 stirring motors, 7 supporting plates, 8 raw material inlet pipes and 9 outer discharging pipes.
Detailed Description
Referring to fig. 1-5, a cooling stirrer for viscosity reducers comprises an outer tank body 3, wherein supporting legs 1 are welded at four corners of the bottom of the outer tank body 3, a supporting plate 7 is welded at the rear side of an outer ring of the top surface of the outer tank body 3, a raw material inlet pipe 8 penetrates through the front surface of the supporting plate 7, an inner tank device 4 is installed at the bottom of an inner cavity of the outer tank body 3, a stirring device 6 is installed at the top of the inner cavity of the outer tank body 3, the bottom of the stirring device 6 extends into the inner cavity of the inner tank device 4, an outer exhaust pipe 9 is fixedly communicated with the center of the bottom of the inner tank device 4, the bottom of the outer exhaust pipe 9 penetrates through the outer tank body 3 and is provided with an electromagnetic butterfly valve 2, a cooling device 5 is installed in the inner cavity of the outer tank body 3, the supporting legs 1 are arranged to support the outer tank body 3, the electromagnetic butterfly valve 2 is used to control the opening and closing of the outer exhaust pipe 9, and the supporting plate 7 is used to support the raw material inlet pipe 8;
the inner tank device 4 comprises a plurality of supporting blocks 43, the outer sides of the supporting blocks 43 are welded and fixed with the bottom of the outer ring of the inner cavity of the outer tank body 3, supporting ring rings 44 are welded on the inner sides of the supporting blocks 43, the top of each supporting ring 44 penetrates through the inner tank body 41, and the surface of the outer ring of the inner tank body 41 is in interference fit with the inner cavity of the supporting ring 44;
the surface of the outer ring of the inner tank body 41 is welded with a heat dissipation block 42, the top of the inner tank body 41 extends to the top of the inner cavity of the outer tank body 3, a liquid discharge hole matched with the outer discharge pipe 9 is formed in the center of the bottom of the inner cavity of the inner tank body 41 in a penetrating mode, the discharge end of the raw material inlet pipe 8 is located at the top of the inner tank body 41, and the feed end of the raw material inlet pipe 8 is welded with a flange connection plate;
the stirring device 6 comprises three support rods 64, the three support rods 64 are distributed in an annular array in the inner cavity of the outer tank body 3, the outer sides of the support rods 64 are fixedly welded with the top of the inner wall of the outer tank body 3, and the inner sides of the support rods 64 are welded with the support plate 61;
the center of the top surface of the supporting plate 61 is fixedly connected with a stirring motor 65 through a bolt, the bottom of the output end of the stirring motor 65 penetrates through the supporting plate 61 and is welded with a stirring shaft 63, the surface of the outer ring of the stirring shaft 63 is welded with a stirring rod 62, and the bottom of the stirring shaft 63 extends to the bottom of the inner cavity of the inner tank body 41;
the cooling device 5 comprises a cooling water inlet pipe 51 and a cooling water discharge pipe 56, the right side of the cooling water inlet pipe 51 penetrates through the top of the inner cavity of the outer tank body 3 and is fixedly connected with a water outlet coil pipe 52, the left side of the cooling water discharge pipe 56 penetrates through the bottom of the inner cavity of the outer tank body 3 and is fixedly connected with a water return coil pipe 54, water flow holes 53 are formed in the surface of the bottom of the water outlet coil pipe 52 and the surface of the top of the water return coil pipe 54, flanges are welded on the left side of the cooling water inlet pipe 51 and the right side of the cooling water discharge pipe 56, a U-shaped water taking pipe 55 is fixedly communicated with the surface of the bottom of the cooling water discharge pipe 56, one side, away from the cooling water discharge pipe 56, of the U-shaped water taking pipe 55 penetrates through the bottom of the inner cavity of the outer tank body 3, the left side of the cooling water inlet pipe 51 is connected with an external cooling water inlet pipe through a flange, the right side of the cooling water discharge pipe 56 is connected with an external cooling water return pipe through a flange, and a water pump is installed on one side of the external cooling water inlet pipe and the external cooling water return pipe.
When the viscosity reducer is used for the first time, the cooling water at the bottom of the water return coil 54 enters the cooling water discharge pipe 56 through the U-shaped water taking pipe 55, the cooling water source continuously enters the space between the outer tank 3 and the inner tank 41 under the action of the water pump and is continuously discharged out of the space between the outer tank 3 and the inner tank 41, the viscosity reducer firstly needs to be filled with the cooling water between the outer tank 3 and the inner tank 41 through the raw material inlet pipe 8, the viscosity reducer enters the inner cavity of the inner tank 41 through the raw material inlet pipe 8 to start discharging the cooling water, the water is simultaneously fed in when the viscosity reducer reaches two thirds of the inner cavity of the inner tank 41, the electromagnetic butterfly valve 2 and the stirring motor 65 are started by using the external controller, the stirring motor 65 operates to drive the movable rod 62 to stir, the cooled viscosity reducer is discharged through the outer discharge pipe 9, and the viscosity reducer also continuously enters the inner tank 41 when the viscosity reducer is discharged.
In conclusion: this cooling agitator for viscosity reducer, through electromagnetic butterfly valve 2, the outer jar of body 3, inner tank device 4, cooling device 5, agitating unit 6, backup pad 7, the cooperation that the raw materials advances pipe 8 and outer discharge pipe 9 is used, solved current cooling agitator and when cooling the viscosity reducer, because of can not flow the cooling to the viscosity reducer for viscosity reducer cooling process is smooth inadequately, can't accomplish feeding ejection of compact on one side, thereby leads to the lower problem of cooling efficiency to appear in the cooling agitator.

Claims (6)

1. The utility model provides a cooling agitator for viscosity reducer, includes outer jar body (3), its characterized in that: supporting legs (1) have all been welded in the four corners of the outer jar of body (3) bottom, the rear side welding of the outer jar of body (3) top surface outer lane has backup pad (7), the positive surface of backup pad (7) runs through and is provided with raw materials and advances pipe (8), inner tank device (4) are installed to the bottom of the outer jar of body (3) inner chamber, agitating unit (6) are installed at the top of the outer jar of body (3) inner chamber, the inner chamber of inner tank device (4) is extended to the bottom of agitating unit (6), the fixed intercommunication of center department of inner tank device (4) bottom has outer calandria (9), the bottom of outer calandria (9) runs through the outer jar of body (3) and installs electromagnetic butterfly valve (2), cooling device (5) are installed to the inner chamber of the outer jar of body (3).
2. The cooling agitator for viscosity reducer according to claim 1, wherein: the inner tank device (4) comprises a plurality of supporting blocks (43), the outer sides of the supporting blocks (43) are welded and fixed with the bottom of the outer ring of the inner cavity of the outer tank body (3), supporting ring rings (44) are welded on the inner sides of the supporting blocks (43), and the top of each supporting ring (44) penetrates through the inner tank body (41).
3. The cooling agitator for viscosity reducer according to claim 2, wherein: the surface welding of the inner tank body (41) outer lane has radiating block (42), the top of the inner tank body (41) extends to the top of the inner chamber of the outer tank body (3), the center department of the inner chamber bottom of the inner tank body (41) runs through and sets up the outage that uses with outer calandria (9) cooperation.
4. The cooling agitator for viscosity reducer according to claim 1, wherein: agitating unit (6) are including bracing piece (64), the quantity of bracing piece (64) is three, and three bracing piece (64) is the annular array and distributes in the inner chamber of the outer jar body (3), the outside of bracing piece (64) and the top welded fastening of the outer jar body (3) inner wall, the inboard welding of bracing piece (64) has supporting disk (61).
5. The cooling agitator for viscosity reducer according to claim 4, wherein: the stirring device is characterized in that a stirring motor (65) is fixedly connected to the center of the top surface of the supporting plate (61) through a bolt, the bottom of the output end of the stirring motor (65) penetrates through the supporting plate (61) and is welded with a stirring shaft (63), and a stirring rod (62) is welded to the surface of the outer ring of the stirring shaft (63).
6. The cooling agitator for viscosity reducer according to claim 1, wherein: cooling device (5) advance pipe (51) and cooling water calandria (56) including the cooling water, the right side that the cooling water advances pipe (51) runs through to the top and the fixedly connected with of outer jar body (3) inner chamber and goes out water coil pipe (52), the left side of cooling water calandria (56) runs through to the bottom and the fixedly connected with of outer jar body (3) inner chamber and return water coil pipe (54), water flow hole (53) have all been seted up on the surface of going out water coil pipe (52) bottom and the surface at return water coil pipe (54) top, the ring flange has all been welded on the left side of cooling water advances pipe (51) and the right side of cooling water calandria (56), the fixed surface intercommunication of cooling water calandria (56) bottom has U type intake pipe (55), one side that cooling water calandria (56) was kept away from to U type intake pipe (55) runs through to the bottom of outer jar body (3) inner chamber.
CN202222708697.0U 2022-10-14 2022-10-14 Cooling stirrer for viscosity reducer Active CN218189189U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222708697.0U CN218189189U (en) 2022-10-14 2022-10-14 Cooling stirrer for viscosity reducer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222708697.0U CN218189189U (en) 2022-10-14 2022-10-14 Cooling stirrer for viscosity reducer

Publications (1)

Publication Number Publication Date
CN218189189U true CN218189189U (en) 2023-01-03

Family

ID=84640981

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222708697.0U Active CN218189189U (en) 2022-10-14 2022-10-14 Cooling stirrer for viscosity reducer

Country Status (1)

Country Link
CN (1) CN218189189U (en)

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