CN220091338U - Stratum control hydrogel production device applied to offshore loose sandstone - Google Patents

Stratum control hydrogel production device applied to offshore loose sandstone Download PDF

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Publication number
CN220091338U
CN220091338U CN202321451595.3U CN202321451595U CN220091338U CN 220091338 U CN220091338 U CN 220091338U CN 202321451595 U CN202321451595 U CN 202321451595U CN 220091338 U CN220091338 U CN 220091338U
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cavity
chamber
discharge
offshore
hybrid
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CN202321451595.3U
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董明杰
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Chengdu Evolusen Energy Technology Co ltd
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Chengdu Evolusen Energy Technology Co ltd
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Abstract

The utility model discloses a stratum control hydrogel production device applied to offshore loose sandstone, which comprises an equipment box and is characterized in that: the device comprises a device box, and is characterized in that a plurality of partition plates are arranged in the device box in a connected mode, the partition plates divide the device box into a first material cavity, a second material cavity, a water storage cavity, a mixing cavity, a collecting cavity and a discharging cavity, injection ports are arranged in the first material cavity, the second material cavity and the water storage cavity, a first control switch valve is arranged in the first material cavity, the second material cavity and the water storage cavity, and a mixing motor is arranged in the mixing cavity in a connected mode, and compared with the prior art, the device has the advantages that: 1. the automatic weighing machine has the advantages that the automatic weighing machine is provided with the liquid level sensor, the weighing sensor and the weighing plate, automatic proportioning can be conducted on the automatic weighing machine, manual weighing is not needed, manual load is reduced, and the automatic weighing machine is 2 provided with the fixed ring, the fixed rod, the fixed seat, the rotating motor, the rotating shaft and the rotating blades, can provide power for a mixture in the transportation process, and is convenient to discharge.

Description

Stratum control hydrogel production device applied to offshore loose sandstone
Technical Field
The utility model relates to the technical field of hydrogel control production tools, in particular to a stratum hydrogel control production device applied to offshore loose sandstone.
Background
The offshore loose sandstone is a sedimentary rock and is mainly formed by cementing sand grains, wherein the sand grain content is more than fifty percent, most of sandstone is composed of quartz or feldspar, the quartz and the feldspar are the most common components for forming a crust and are often used for manufacturing building materials and paving materials, the offshore loose sandstone is required to be used for controlling hydrogel in the process of mining and the like, in the process of producing the controlled hydrogel, water and different materials are required to be mixed in proportion, and in the present stage, the different materials and the water are required to be manually weighed in advance, so that the manual load is increased, and after the formation is finished, the materials are gelatinous, so that the plugging phenomenon is easy to occur in the transportation process.
Disclosure of Invention
The technical problem to be solved by the utility model is to overcome the problems, and design a stratum control hydrogel production device which can automatically mix and reduce the blocking condition and is applied to offshore loose sandstone.
In order to solve the technical problems, the technical scheme provided by the utility model is as follows: stratum control hydrogel production device for offshore loose sandstone, including equipment box, its characterized in that: the utility model discloses a device box, including equipment box, collection chamber, discharge chamber, mixing shaft, collecting chamber, discharge chamber, first material chamber, second material chamber and water storage chamber, equipment box internal connection is equipped with a plurality of division boards, the division board separates the equipment box and is equipped with first material chamber, second material chamber, mixing chamber, collecting chamber and discharge chamber, first material chamber, second material chamber and water storage chamber all are equipped with the filling port, mixing chamber connection is equipped with hybrid motor, hybrid motor connection is equipped with the mixing shaft, the mixing shaft connection is equipped with mixing blade, the mixing chamber connection is equipped with the second control switch valve, the collecting chamber connection is equipped with the collecting chamber, the discharge chamber connection is equipped with the discharge port.
As an improvement, water storage chamber internal connection is equipped with level sensor, mixing chamber internal connection is equipped with weighing sensor, the weighing sensor connection is equipped with weighing plate, can carry out automatic ratio to water and different materials, need not the manual work and weighs in advance, reduces the manual load.
As an improvement, the internal connection of the mixing cavity is provided with a heating layer, and the internal connection of the mixing cavity is provided with a temperature sensor.
As an improvement, collect and fight the connection and be equipped with fixed ring, fixed ring connects and is equipped with a plurality of dead levers, the dead lever is connected jointly and is equipped with the fixing base, the fixing base is connected and is equipped with the rotating electrical machines, the rotating electrical machines is connected and is equipped with the rotation axis, the rotation axis is connected and is equipped with rotating vane, can reduce in the transportation, appears blocking up the phenomenon.
As an improvement, the discharge cavity is connected with a discharge motor, the discharge motor is connected with a discharge shaft, and the discharge shaft is connected with a discharge blade, so that the mixture can be conveniently discharged.
As an improvement, the outside of the discharge cavity is connected with a vacuum pump, the vacuum pump is connected with a vacuum pipe, the vacuum pipe is connected with a third control switch valve, so that vacuum can be extracted in the mixing process, and the gas components in the mixture are reduced.
As an improvement, a controller is connected with the outer side of the equipment box.
Compared with the prior art, the utility model has the advantages that:
1. the stratum control hydrogel production device applied to offshore loose sandstone is provided with the liquid level sensor, the weighing sensor and the weighing plate, can be automatically proportioned, does not need to weigh in advance manually, and reduces the manual load.
2. The stratum control hydrogel production device applied to offshore loose sandstone is provided with a fixed ring, a fixed rod, a fixed seat, a rotating motor, a rotating shaft and rotating blades, and can provide power for the mixture in the transportation process so as to facilitate the discharge of the mixture.
Drawings
FIG. 1 is a schematic diagram of a formation control hydrogel manufacturing apparatus for use in offshore unconsolidated sandstone according to the present utility model.
FIG. 2 is a schematic view of a stationary ring structure of a formation control hydrogel manufacturing apparatus for offshore loose sandstone according to the present utility model.
As shown in the figure: 1. an equipment box; 2. a partition plate; 3. a first material chamber; 4. a second material chamber; 5. a water storage chamber; 6. a mixing chamber; 7. a collection chamber; 8. a discharge chamber; 9. an injection port; 10. a first control switching valve; 11. a hybrid motor; 12. a mixing shaft; 13. mixing blades; 14. a second control switching valve; 15. a collection bucket; 16. a discharge port; 17. a liquid level sensor; 18. a weighing sensor; 19. a weighing plate; 20. a heating layer; 21. a temperature sensor; 22. fixing the circular ring; 23. a fixed rod; 24. a fixing seat; 25. a rotating electric machine; 26. a rotation shaft; 27. rotating the blades; 28. discharging the motor; 29. a discharge shaft; 30. a discharge blade; 31. a vacuum pump; 32. a vacuum tube; 33. a third control switching valve; 34. and a controller.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1-2, a stratum control hydrogel production device applied to offshore loose sandstone comprises an equipment box 1, a controller 34 is connected and arranged on the outer side of the equipment box 1, a plurality of division plates 2 are arranged in the inner connection of the equipment box 1, the division plates 2 divide the equipment box 1 and are provided with a first material cavity 3, a second material cavity 4, a water storage cavity 5, a mixing cavity 6, a collecting cavity 7 and a discharge cavity 8, the first material cavity 3, the second material cavity 4 and the water storage cavity 5 are all provided with injection ports 9, the first material cavity 3, the second material cavity 4 and the water storage cavity 5 are all provided with first control switch valves 10, the water storage cavity 5 is internally connected and provided with liquid level sensors 17, the mixing cavity 6 is connected and provided with a mixing motor 11, the mixing motor 11 is connected and provided with a mixing shaft 12, the mixing shaft 12 is connected and provided with mixing blades 13, the inner connection of the mixing cavity 6 is provided with a weighing sensor 18, the weighing sensor 18 is connected and is provided with a weighing plate 19, the inner connection of the mixing cavity 6 is provided with a heating layer 20, the inner connection of the mixing cavity 6 is provided with a temperature sensor 21, the mixing motor 6 is connected with a second control switch 4 and the discharge port 26, the collecting shaft is connected with a plurality of rotary shafts 25, the discharge port 25 is connected and is connected with a fixed seat 25, the discharge port 25 is connected and is connected with a fixed shaft 25, the fixed 25 is connected with a fixed 25, the rotary shaft is connected with a fixed 25, the rotary 25 is connected and is connected with a fixed 25, and a rotary 25, and a fixed 25 is connected with a rotary 25, and a rotary 25 is connected and a fixed 25, and a fixed 25 rotary 25 is connected. The outside connection of discharge chamber 8 is equipped with vacuum pump 31, the vacuum pump 31 is connected and is equipped with vacuum tube 32, the vacuum tube 32 is connected and is equipped with third control switch valve 33, and vacuum tube 32 is located the setting of mixing chamber 6 back side top, and all electric devices in this device all are external to be equipped with the power, and this is common prior art so not too much to describe.
In the concrete implementation of the utility model, different materials and water to be mixed are respectively injected into the first material cavity 3, the second material cavity 4 and the water storage cavity 5, the rated mass, the water quantity, the heating temperature and the mixing time of the different materials are set through the controller 34, after the setting is finished, the first control switch valve 10 corresponding to the first material cavity 3 is opened, the materials in the first material cavity 3 are injected into the mixing cavity 6, the weighing sensor 18 and the weighing plate 19 weigh the materials, after the rated mass is achieved, the first control switch valve 10 is closed, the second material cavity 4 is operated in the same way, then the first control switch valve 10 corresponding to the water storage cavity 5 is opened, water is injected into the mixing cavity 6, the change of the injected water quantity is detected through the liquid level sensor 17, after the water quantity is achieved, the first control switch valve 10 is closed, the vacuum pump 31 is operated, the heating layer 20 and the mixing motor 11 are operated, the materials are heated and mixed, after the heating is finished, the second control switch valve 14, the rotating motor 25 and the discharging blades 28 are operated, the glue-like, the extrusion force is reduced, and the mixture is discharged through the rotary extrusion force is reduced through the rotary extrusion force and the extrusion force is reduced in the process of discharging the glue 30.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.

Claims (7)

1. Stratum control hydrogel production device applied to offshore loose sandstone, comprising an equipment box (1), and being characterized in that: the utility model discloses a device box, including equipment box (1), equipment box (1) internal connection is equipped with a plurality of division board (2), division board (2) separate equipment box (1) be equipped with first material chamber (3), second material chamber (4), water storage chamber (5), hybrid chamber (6), collect chamber (7) and discharge chamber (8), first material chamber (3), second material chamber (4) and water storage chamber (5) all are equipped with filling port (9), first material chamber (3), second material chamber (4) and water storage chamber (5) all are equipped with first control switch valve (10), hybrid chamber (6) are connected and are equipped with hybrid motor (11), hybrid motor (11) are connected and are equipped with hybrid shaft (12), hybrid shaft (12) are connected and are equipped with hybrid blade (13), hybrid chamber (6) are connected and are equipped with second control switch valve (14), collect chamber (7) are connected and are equipped with and collect fill (15), discharge chamber (8) are connected and are equipped with discharge port (16).
2. The formation control hydrogel manufacturing apparatus for use in offshore loose sandstone of claim 1, wherein: the water storage cavity (5) internal connection is equipped with liquid level sensor (17), hybrid cavity (6) internal connection is equipped with weighing sensor (18), weighing sensor (18) connection is equipped with weighing plate (19).
3. The formation control hydrogel manufacturing apparatus for use in offshore loose sandstone of claim 1, wherein: the mixing cavity (6) is internally connected with a heating layer (20), and the mixing cavity (6) is internally connected with a temperature sensor (21).
4. The formation control hydrogel manufacturing apparatus for use in offshore loose sandstone of claim 1, wherein: the collecting hopper (15) is connected and is equipped with fixed ring (22), fixed ring (22) are connected and are equipped with a plurality of dead levers (23), dead lever (23) connect jointly and are equipped with fixing base (24), fixing base (24) are connected and are equipped with rotating electrical machines (25), rotating electrical machines (25) are connected and are equipped with rotation axis (26), rotation axis (26) are connected and are equipped with rotary vane (27).
5. The formation control hydrogel manufacturing apparatus for use in offshore loose sandstone of claim 1, wherein: the discharge cavity (8) is connected and is provided with a discharge motor (28), the discharge motor (28) is connected and is provided with a discharge shaft (29), and the discharge shaft (29) is connected and is provided with a discharge blade (30).
6. The formation control hydrogel manufacturing apparatus for use in offshore loose sandstone of claim 1, wherein: the outside connection of discharge chamber (8) is equipped with vacuum pump (31), vacuum pump (31) connection is equipped with vacuum tube (32), vacuum tube (32) connection is equipped with third control switch valve (33).
7. The formation control hydrogel manufacturing apparatus for use in offshore loose sandstone of claim 1, wherein: the outside of the equipment box (1) is connected with a controller (34).
CN202321451595.3U 2023-06-08 2023-06-08 Stratum control hydrogel production device applied to offshore loose sandstone Active CN220091338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321451595.3U CN220091338U (en) 2023-06-08 2023-06-08 Stratum control hydrogel production device applied to offshore loose sandstone

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321451595.3U CN220091338U (en) 2023-06-08 2023-06-08 Stratum control hydrogel production device applied to offshore loose sandstone

Publications (1)

Publication Number Publication Date
CN220091338U true CN220091338U (en) 2023-11-28

Family

ID=88867287

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321451595.3U Active CN220091338U (en) 2023-06-08 2023-06-08 Stratum control hydrogel production device applied to offshore loose sandstone

Country Status (1)

Country Link
CN (1) CN220091338U (en)

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