Precipitation device for preparing defoaming agent

By combining a horizontal separator and a power unit, the defoamer sedimentation equipment achieves automated separation and non-stop operation, solving the problems of low automation and poor production continuity of existing equipment, and improving production efficiency.

CN224024333UActive Publication Date: 2026-03-24DALIAN AIDUOWEI STEEL SURFACE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing defoamer sedimentation equipment has a low degree of automation, requiring manual collection of sediment by pausing the feeding process, resulting in poor production continuity and limited capacity, necessitating frequent shutdowns for cleaning.

Method used

The system employs a horizontal separator and power unit to achieve automatic separation and discharge of defoamer sedimentation and waste liquid. Combined with a stirring and conveying device and a drainage and cooling device, the system enhances the level of automation and allows for continuous operation without shutdown.

Benefits of technology

It enables automated separation and discharge of defoamer sediment, improving production continuity and automation, and reducing the frequency of downtime for cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of defoaming agent precipitation equipment, in particular to a precipitation device for defoaming agent preparation, which is provided with a horizontal separator to automatically separate and discharge precipitates, so that the automation degree is improved, continuous operation can be realized without shutdown, and the production continuity is improved. Comprising a body; the device further comprises a stirring and conveying device, a horizontal separator, a power device, a drainage and cooling device and a plurality of wear-resistant sleeves, the stirring and conveying device, the horizontal separator and the power device are all mounted on the machine body, and the drainage and cooling device and the wear-resistant sleeves are all mounted on the horizontal separator; the machine body provides support, the stirring and conveying device stirs a defoaming agent and a precipitating agent, the horizontal separator separates defoaming agent precipitation and waste liquid, the power device provides power for the horizontal separator, the drainage cooling device discharges water to cool the power device, and the wear-resistant sleeve can reduce wear of the horizontal separator.
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Description

Technical Field

[0001] This utility model relates to the technical field of defoamer precipitation equipment, and in particular to a precipitation device for preparing defoamers. Background Technology

[0002] Defoamers are substances that can reduce the surface tension of water, solutions, suspensions, etc., prevent foam formation, or reduce or eliminate existing foam. They are a commonly used type of industrial additive. In order to improve the defoaming ability of defoamers, it is usually necessary to remove undissolved precipitates from the defoamers.

[0003] Existing defoamer precipitation equipment, such as the Chinese utility model patent CN219440987U (a precipitation device for preparing defoamer), represents a class of prior art whose main structure includes: a precipitation tank, an adjustment structure, a stirring tank, and a filtration structure. The precipitation tank stores the defoamer, the adjustment structure regulates the speed at which the defoamer is flushed into the precipitation tank, the stirring tank stirs to prepare the defoamer, and the filtration structure filters the defoamer.

[0004] However, the existing technology and equipment still have the following problems when in use: the existing machines need to stop feeding and workers need to manually collect the sediment when collecting sediment, the automation level of the machines is low, and the existing machines can only hold a limited amount of sediment, requiring frequent shutdowns for cleaning, resulting in poor production continuity. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides a sedimentation device for defoamer preparation, which automatically separates and discharges sediment by setting a horizontal separator, thereby improving the degree of automation and enabling continuous operation without stopping the machine, thus improving the continuity of production.

[0006] This utility model discloses a sedimentation device for preparing defoamer, comprising a machine body; it also includes a stirring and conveying device, a horizontal separator, a power unit, a drainage and cooling device, and multiple wear-resistant sleeves. The stirring and conveying device, the horizontal separator, and the power unit are all mounted on the machine body, while the drainage and cooling device and multiple wear-resistant sleeves are all mounted on the horizontal separator. The machine body provides support, the stirring and conveying device stirs the defoamer and sediment, the horizontal separator separates the sediment from the waste liquid, the power unit provides power to the horizontal separator, the drainage and cooling device drains water to cool the power unit, and the wear-resistant sleeves reduce the wear of the horizontal separator.

[0007] Preferably, the body includes a support base one, multiple support bases two, support base three, a base plate, a bracket one, multiple sets of brackets two and multiple brackets three, the base plate is installed on the top of the support base one, multiple support bases two and support base three, and bracket one, multiple sets of brackets two and multiple brackets three are all installed on the top of the base plate; providing support.

[0008] Preferably, the mixing and conveying device includes a conveying cylinder, an auger, a first reducer, a first motor, a mixing cylinder, a mixer, a second reducer, a second motor, two feed pipes, and a solenoid valve. The conveying cylinder is fixedly installed at the top of a support. A discharge port is located at the front end of the conveying cylinder, and a feed inlet is located at the top end. The auger is rotatably installed inside the conveying cylinder. The first reducer is fixedly installed at the rear end of the conveying cylinder and rotatably connected between the conveying cylinder and the auger. The first motor is fixedly installed at the rear end of the first reducer and provides power to the conveying cylinder through the first reducer. A second discharge port is located at the bottom end of the mixing cylinder, and the mixing cylinder is installed at the top of the feed inlet of the first conveying cylinder through the second discharge port. A guide slope is provided at the bottom end of the inside of the mixing cylinder. The mixing drum has two feed inlets. A stirrer is rotatably mounted inside the top of the mixing drum. A reducer is fixedly mounted at the top of the mixing drum and rotatably connected between the reducer and the mixing drum. A motor is fixedly mounted at the top of the reducer and provides power to the stirrer through the reducer. Two feed pipes are connected to the tops of the two feed inlets of the mixing drum. A solenoid valve is installed in the discharge port of the mixing drum. The feed pipes facilitate feeding material into the mixing drum. The motor provides power to drive the stirrer to rotate and stir the defoamer and precipitant, increasing the precipitation speed of the defoamer. The solenoid valve controls the discharge of material from inside the mixing drum. The motor provides power to drive the auger to rotate and transport the defoamer precipitate and waste liquid.

[0009] Preferably, the horizontal separator includes a separating cylinder, a separating roller, a rotary joint, a collecting box, and a collecting roller. The separating cylinder is fixedly installed on the top of multiple sets of supports. A discharge port is provided at the front end of the separating cylinder, and multiple liquid discharge ports are provided at the rear end. The separating roller is rotatably installed inside the separating cylinder. A feed inlet is provided at the rear end of the separating roller, and multiple discharge ports are provided in the middle of the separating roller. The rotary joint is rotatably installed at the rear end of the separating roller and is fixedly installed on the separating cylinder. The rotary joint is connected to the conveying cylinder. The collecting box is fixedly installed at the front end of the separating cylinder, and a discharge port is provided at the bottom end of the collecting box. The collecting roller is rotatably installed at the front end of the separating roller and is rotatably installed inside the collecting box. A discharge port is provided on the side end of the collecting roller. There are multiple discharge ports 6; the rotary joint facilitates continuous feeding into the separation roller while it rotates. Defoamer precipitate and waste liquid enter the feed port 3 of the separation roller through the rotary joint. The rotation of the separation roller causes the material to be discharged through the discharge port 4 of the separation roller. At the same time, the separation roller transports the material. Under the centrifugal force of the separation roller, the material is separated into liquid and solid parts. The liquid part flows backward and is discharged to the outside through the liquid outlet of the separation cylinder. The solid part enters the collection roller through the discharge port 3 of the separation cylinder. The collection roller rotates in the opposite direction to the separation roller, throwing the defoamer precipitate through the discharge port 6 of the collection roller into the collection box. Under the action of gravity, the defoamer precipitate is discharged to the outside through the discharge port 5 of the collection box.

[0010] Preferably, the power unit includes two brackets four, a reducer three, a motor three, a shaft, pulley one, pulley two, multiple belts one, pulley three, pulley four, and multiple belts two. Both brackets four are fixedly mounted on the top of the base plate. The reducer three is fixedly mounted on the two brackets four. The motor three is fixedly mounted on the front end of the reducer three. The reducer four is fixedly mounted on the front end of the reducer three, and the motor three provides power to the reducer four through the reducer three. The shaft is rotatably mounted on the rear end of the reducer four and on the multiple brackets three. Pulley one is rotatably mounted on the front end of the reducer four. Pulley two is fixedly mounted on the side end of the separating roller. Multiple belts one are mounted on pulley one and pulley two. Pulley three is rotatably mounted on the front end of the shaft. Pulley four is fixedly mounted on the front end of the collecting roller. Multiple belts two are mounted on pulley three and pulley four. The motor three provides power, which is transmitted through the reducer three, reducer four, shaft, pulley one, pulley two, belt one, pulley three, pulley four, and belts two, driving the separating roller and collecting roller to rotate in opposite directions.

[0011] Preferably, the drainage and cooling device includes a bracket five and a baffle plate. The bracket five is fixedly installed at the rear end of the separator cylinder, and a drain pipe is provided on the side end of the bracket five. The baffle plate is installed at the rear end of the reducer four, and a water guide groove is also provided on the side end of the reducer four. The bracket five and the baffle plate, together with the water guide groove of the reducer four, guide the waste liquid to flow through the rotating shaft, reducer four, motor three, and reducer three, thereby cooling the rotating shaft, reducer four, motor three, and reducer three and preventing the machine from overheating.

[0012] Preferably, the multiple wear-resistant sleeves are detachably installed in the multiple discharge ports of the separating roller; the wear-resistant sleeves replace the separating roller in bearing the impact of defoamer sedimentation, preventing wear on the separating roller and extending its service life.

[0013] Compared with the prior art, the advantages of this utility model are: it can automatically separate and discharge the sediment, with a high degree of automation; and it can run continuously without stopping, with a high degree of production continuity. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the isometric structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the isometric structure of this utility model;

[0016] Figure 3 This is a schematic diagram of the isometric cross-sectional structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the isometric cross-sectional structure of this utility model;

[0018] Figure 5 This is an isometric structural diagram of the fuselage;

[0019] Figure 6 This is an isometric structural schematic diagram of the power unit and the drainage and cooling device;

[0020] Figure 7 This is a schematic diagram of the isometric cross-sectional structure of a horizontal separator;

[0021] Figure 8 This is a schematic diagram of the isometric cross-sectional structure of the mixing and conveying device;

[0022] Figure 9 This is a schematic diagram of the isometric cross-sectional structure of a horizontal separator;

[0023] Figure 10 This is a schematic diagram of the isometric cross-sectional structure of the wear-resistant sleeve.

[0024] The attached diagram is labeled as follows: 01. Machine body; 11. Support base one; 12. Support base two; 13. Support base three; 14. Base plate; 15. Bracket one; 16. Bracket two; 17. Bracket three; 02. Mixing and conveying device; 21. Conveying cylinder; 22. Screwdriver; 23. Reducer one; 24. Motor one; 25. Mixing cylinder; 26. Agitator; 27. Reducer two; 28. Motor two; 29. ​​Feeding pipe; 30. Solenoid valve; 03. Horizontal separator; 31. Separating cylinder; 32. Separating roller; 33. Rotary joint; 34. Collection box; 35. Collection roller; 04. Power unit; 41. Support four; 42. Reducer three; 43. Motor three; 44. Reducer four; 45. Shaft; 46. Pulley one; 47. Pulley two; 48. Belt one; 49. Pulley three; 50. Pulley four; 71. Belt two; 05. Drainage and cooling device; 51. Support five; 52. Water baffle; 06. Wear-resistant sleeve. Detailed Implementation

[0025] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.

[0026] Example 1

[0027] like Figures 1 to 4As shown, the device includes a body 01; it also includes a stirring and conveying device 02, a horizontal separator 03, a power unit 04, a drainage and cooling device 05, and multiple wear-resistant sleeves 06. The stirring and conveying device 02, the horizontal separator 03, and the power unit 04 are all mounted on the body 01, and the drainage and cooling device 05 and multiple wear-resistant sleeves 06 are all mounted on the horizontal separator 03. The body 01 provides support, the stirring and conveying device 02 stirs the defoamer and precipitant, the horizontal separator 03 separates the defoamer precipitate and waste liquid, the power unit 04 provides power to the horizontal separator 03, the drainage and cooling device 05 drains water to cool the power unit 04, and the wear-resistant sleeves 06 can reduce the wear of the horizontal separator 03.

[0028] like Figure 5 As shown, the fuselage 01 includes a support base 11, multiple support bases 2 12, support base 3 13, a base plate 14, a bracket 15, multiple sets of brackets 2 16 and multiple sets of brackets 3 17. The base plate 14 is installed on the top of the support base 11, multiple support bases 2 12 and support base 3 13, and the brackets 15, multiple sets of brackets 2 16 and multiple sets of brackets 3 17 are all installed on the top of the base plate 14.

[0029] like Figure 8 As shown, the mixing and conveying device 02 includes a conveying cylinder 21, an auger 22, a first reducer 23, a first motor 24, a mixing cylinder 25, a stirrer 26, a second reducer 27, a second motor 28, two feed pipes 29, and a solenoid valve 30. The conveying cylinder 21 is fixedly installed at the top of the support 15. A discharge port 1 is provided at the front end of the conveying cylinder 21, and a feed port 1 is provided at the top end of the conveying cylinder 21. The auger 22 is rotatably installed inside the conveying cylinder 21. The first reducer 23 is fixedly installed at the rear end of the conveying cylinder 21, and the first reducer 23 passes through the conveying cylinder 21 and is rotatably connected to the auger 22. The first motor 24 is fixedly installed at the rear end of the first reducer 23, and the first motor 24 provides power to the conveying cylinder 21 through the first reducer 23. The bottom end of the mixing drum 25 is provided with a discharge port 2. The mixing drum 25 is installed at the top of the feed port 1 of the conveying drum 21 through the discharge port 2. The bottom end of the mixing drum 25 is provided with a guide slope. The top end of the mixing drum 25 is provided with two feed ports 2. The agitator 26 is rotatably installed at the top of the mixing drum 25. The reducer 27 is fixedly installed at the top of the mixing drum 25 and is rotatably connected between the mixing drum 25 and the agitator 26. The motor 28 is fixedly installed at the top of the reducer 27 and provides power to the agitator 26 through the reducer 27. Two feed pipes 29 are respectively connected to the top of the two feed ports 2 of the mixing drum 25. The solenoid valve 30 is installed in the discharge port 2 of the mixing drum 25.

[0030] like Figure 1 , Figure 7 and Figure 9As shown, the horizontal separator 03 includes a separation cylinder 31, a separation roller 32, a rotary joint 33, a collection box 34, and a collection roller 35. The separation cylinder 31 is fixedly installed on the top of multiple sets of support brackets 16. The front end of the separation cylinder 31 is provided with a discharge port 3, and the rear end of the separation cylinder 31 is provided with multiple liquid discharge ports. The separation roller 32 is rotatably installed inside the separation cylinder 31. The rear end of the separation roller 32 is provided with a feed port 3, and the middle part of the separation roller 32 is provided with multiple discharge ports 4. The rotary joint 33 is rotatably installed at the rear end of the separation roller 32 and is fixedly installed on the separation cylinder 31. The rotary joint 33 is connected to the conveying cylinder 21. The collection box 34 is fixedly installed at the front end of the separation cylinder 31 and is provided with a discharge port 5 at the bottom end of the collection box 34. The collection roller 35 is rotatably installed at the front end of the separation roller 32 and is rotatably installed inside the collection box 34. The side end of the collection roller 35 is provided with multiple discharge ports 6.

[0031] like Figure 1 and Figure 2 As shown, the power unit 04 includes two brackets 41, a reducer 42, a motor 43, a reducer 44, a shaft 45, a pulley 46, a pulley 47, multiple belts 48, pulleys 49, pulleys 50, and multiple belts 71. The two brackets 41 are fixedly mounted on the top of the base plate 14. The reducer 42 is fixedly mounted on the two brackets 41. The motor 43 is fixedly mounted on the front end of the reducer 42, and the reducer 44 is fixedly mounted on the front end of the reducer 42. Three 43 provides power to four 44 through three 42. The rotating shaft 45 is rotatably mounted on the rear end of four 44 and multiple brackets three 17. Pulley one 46 is rotatably mounted on the front end of four 44. Pulley two 47 is fixedly mounted on the side end of separating roller 32. Multiple belts one 48 are mounted on pulley one 46 and pulley two 47. Pulley three 49 is rotatably mounted on the front end of rotating shaft 45. Pulley four 50 is fixedly mounted on the front end of collecting roller 35. Multiple belts two 71 are mounted on pulley three 49 and pulley four 50.

[0032] like Figure 1 and Figure 6 As shown, the drainage and cooling device 05 includes a bracket 51 and a baffle plate 52. The bracket 51 is fixedly installed at the rear end of the separator 31, and a drain pipe is provided on the side end of the bracket 51. The baffle plate 52 is installed at the rear end of the reducer 44, and a water guide groove is also provided on the side end of the reducer 44.

[0033] First, defoamer and precipitant are introduced into the mixing drum 25. The feed pipe 29 facilitates the feeding of materials into the mixing drum 25. Then, motor 28, solenoid valve 30, and motor 24 are turned on. Motor 28 provides power to drive the agitator 26 to rotate and stir the defoamer and precipitant, increasing the sedimentation speed of the defoamer. Solenoid valve 30 controls the discharge of materials from the mixing drum 25. Motor 24 provides power to drive the auger 22 to rotate and transport the defoamer sediment and waste liquid. Then, motor 343 is turned on. Motor 343 provides power, which is transmitted through reducer 342, reducer 44, shaft 45, pulley 146, pulley 247, belt 148, pulley 349, pulley 450, and belt 271, driving the separating roller 32 and collecting roller 35 to rotate in opposite directions. Rotary joint 33 facilitates continuous feeding into the separating roller 32 while it is rotating. The defoamer sediment and waste liquid are transported through rotary joint 33. The material enters the feed inlet 3 of the separating roller 32. The rotating separating roller 32 causes the material to be discharged through the discharge port 4 of the separating roller 32. At the same time, the separating roller 32 transports the material. Under the centrifugal force of the separating roller 32, the material is separated into liquid and solid parts. The liquid part flows backward and is discharged to the outside through the drain port of the separating cylinder 31. The bracket 51 and the baffle 52, together with the water guide groove of the reducer 44, guide the waste liquid to flow through the rotating shaft 45, reducer 44, motor 43 and reducer 42, and cool the rotating shaft 45, reducer 44, motor 43 and reducer 42 to prevent the machine from overheating. The solid part enters the collecting roller 35 through the discharge port 3 of the separating cylinder 31. The collecting roller 35 rotates in the opposite direction to the separating roller 32, and throws the defoamer precipitate through the discharge port 6 of the collecting roller 35 into the collecting box 34. The defoamer precipitate is discharged to the outside through the discharge port 5 of the collecting box 34 under the action of gravity.

[0034] Example 2

[0035] In addition to Example 1, it also includes:

[0036] like Figure 10 As shown, the plurality of wear-resistant sleeves 06 are detachably installed in the plurality of discharge ports 4 of the separating roller 32;

[0037] First, defoamer and precipitant are introduced into the mixing drum 25. The feed pipe 29 facilitates feeding materials into the mixing drum 25. Then, motor 28, solenoid valve 30, and motor 24 are turned on. Motor 28 provides power to drive the agitator 26 to rotate, stirring the defoamer and precipitant and increasing the sedimentation speed of the defoamer. Solenoid valve 30 controls the discharge of materials from inside the mixing drum 25. Motor 24 provides power to drive the auger 22 to rotate, transporting the defoamer sediment and waste liquid. Then, motor 3... 43. Motor 3 provides power, which is transmitted through reducer 3 42, reducer 44, rotating shaft 45, pulley 1 46, pulley 2 47, belt 1 48, pulley 3 49, pulley 4 50, and belt 2 71, driving the separating roller 32 and collecting roller 35 to rotate in opposite directions. Rotary joint 33 facilitates continuous feeding into the separating roller 32 when it rotates. Defoamer sediment and waste liquid enter the feed inlet 3 of the separating roller 32 through rotary joint 33. The rotation of the separating roller 32 causes the material to... The material is discharged through the discharge port 4 of the separating roller 32. The wear-resistant sleeve 06 replaces the separating roller 32 to withstand the impact of defoamer sedimentation, preventing wear on the separating roller 32 and extending its service life. At the same time, the separating roller 32 transports the material. Under the centrifugal force of the separating roller 32, the material is separated into liquid and solid parts. The liquid part flows backward and is discharged to the outside through the drain port of the separating cylinder 31. The bracket 51 and the baffle 52, together with the water guide groove of the reducer 44, guide the waste liquid to flow through the rotating shaft. 45, 44, 43, and 42 reducers cool the shaft 45, reducer 44, motor 43, and reducer 42 to prevent the machine from overheating. The solid part enters the collection roller 35 through the discharge port 3 of the separation cylinder 31. The collection roller 35 rotates in the opposite direction to the separation roller 32, throwing the defoamer precipitate through the discharge port 6 of the collection roller 35 into the collection box 34. The defoamer precipitate is discharged to the outside through the discharge port 5 of the collection box 34 under the action of gravity.

[0038] like Figures 1 to 10As shown, this utility model discloses a sedimentation device for preparing defoamer. During operation, defoamer and sedimentant are first introduced into the stirring drum 25. The feed pipe 29 facilitates the feeding of materials into the stirring drum 25. Then, motor 28, solenoid valve 30, and motor 24 are turned on. Motor 28 provides power to drive the stirrer 26 to rotate, stirring the defoamer and sedimentant and increasing the sedimentation speed of the defoamer. Solenoid valve 30 controls the discharge of materials from inside the stirring drum 25. Motor 24 provides power to drive the auger 22 to rotate. The defoamer precipitate and waste liquid are transported, and then motor 343 is turned on. Motor 343 provides power, which is transmitted through reducer 342, reducer 44, rotating shaft 45, pulley 1 46, pulley 2 47, belt 1 48, pulley 3 49, pulley 4 50, and belt 2 71, driving the separating roller 32 and collecting roller 35 to rotate in opposite directions. Rotary joint 33 facilitates continuous feeding into the separating roller 32 while it is rotating. The defoamer precipitate and waste liquid enter the separating roller 32 through the rotary joint 33. In the third feed inlet, the rotating separating roller 32 causes the material to be discharged through the discharge port 4 of the separating roller 32. The wear-resistant sleeve 06 replaces the separating roller 32 to withstand the impact of defoamer sedimentation, preventing wear on the separating roller 32 and extending its service life. At the same time, the separating roller 32 transports the material. Under the centrifugal force of the separating roller 32, the material is separated into liquid and solid parts. The liquid part flows backward and is discharged to the outside through the drain port of the separating cylinder 31. The bracket 51 and the baffle 52 work together with the water guide groove of the reducer 44 to guide the water... The waste liquid flows through the rotating shaft 45, reducer 44, motor 43, and reducer 42 to cool down the rotating shaft 45, reducer 44, motor 43, and reducer 42, preventing the machine from overheating. The solid part enters the collection roller 35 through the discharge port 3 of the separation cylinder 31. The collection roller 35 rotates in the opposite direction to the separation roller 32, throwing the defoamer precipitate through the discharge port 6 of the collection roller 35 into the collection box 34. The defoamer precipitate is discharged to the outside through the discharge port 5 of the collection box 34 under the action of gravity.

[0039] The motor 24, reducer 27, solenoid valve 30, rotary joint 33, motor 43, pulley 46, pulley 47, multiple belts 48, pulley 3, pulley 40, and multiple belts 71 of this utility model are purchased from the market. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.

[0040] The main function achieved by this utility model is: by setting up a horizontal separator 03, the sediment is automatically separated and discharged, improving the degree of automation, and can run continuously without stopping, thus improving production continuity; it solves the existing technical problems that require the feeding of materials to be stopped and workers to collect the sediment manually when collecting sediment, resulting in low automation, and that the existing machines can only hold a limited amount of sediment, requiring frequent shutdowns for cleaning, resulting in poor production continuity.

[0041] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A precipitation apparatus for preparing defoamer, comprising a body (01); characterized in that, It also includes a stirring and conveying device (02), a horizontal separator (03), a power unit (04), a drainage and cooling device (05), and multiple wear-resistant sleeves (06). The stirring and conveying device (02), the horizontal separator (03), and the power unit (04) are all installed on the machine body (01), and the drainage and cooling device (05) and multiple wear-resistant sleeves (06) are all installed on the horizontal separator (03). The machine body (01) provides support, the stirring and conveying device (02) stirs the defoamer and precipitant, the horizontal separator (03) separates the defoamer precipitate and waste liquid, the power unit (04) provides power to the horizontal separator (03), the drainage and cooling device (05) drains water to cool the power unit (04), and the wear-resistant sleeves (06) can reduce the wear of the horizontal separator (03).

2. The precipitation apparatus for preparing defoamer as described in claim 1, characterized in that, The fuselage (01) includes a support base one (11), multiple support base two (12), support base three (13), a base plate (14), a bracket one (15), multiple sets of bracket two (16) and multiple sets of bracket three (17). The base plate (14) is installed on the top of the support base one (11), multiple support base two (12) and support base three (13), and the bracket one (15), multiple sets of bracket two (16) and multiple sets of bracket three (17) are all installed on the top of the base plate (14).

3. The precipitation apparatus for preparing defoamer as described in claim 2, characterized in that, The mixing and conveying device (02) includes a conveying cylinder (21), an auger (22), a first reducer (23), a first motor (24), a mixing cylinder (25), a mixer (26), a second reducer (27), a second motor (28), two feed pipes (29), and a solenoid valve (30). The conveying cylinder (21) is fixedly installed at the top of the first support (15). The front end of the conveying cylinder (21) is provided with a discharge port, and the top end of the conveying cylinder (21) is provided with a feed port. The auger (22) is rotatably installed inside the conveying cylinder (21). The first reducer (23) is fixedly installed at the rear end of the conveying cylinder (21), and the first reducer (23) is rotatably connected between the conveying cylinder (21) and the auger (22). The first motor (24) is fixedly installed at the rear end of the first reducer (23), and the first motor (24) lifts the conveying cylinder (21) through the first reducer (23). The mixing drum (25) is equipped with a discharge port 2 at the bottom. The mixing drum (25) is installed at the top of the feed port 1 of the conveying drum (21) through the discharge port 2. The mixing drum (25) is equipped with a guide slope at the bottom inside. The mixing drum (25) is equipped with two feed ports 2 at the top. The agitator (26) is rotatably installed at the top inside the mixing drum (25). The reducer 2 (27) is fixedly installed at the top of the mixing drum (25) and the reducer 2 (27) is rotatably connected between the mixing drum (25) and the agitator (26). The motor 2 (28) is fixedly installed at the top of the reducer 2 (27) and the motor 2 (28) provides power to the agitator (26) through the reducer 2 (27). Two feed pipes (29) are respectively connected to the top of the two feed ports 2 of the mixing drum (25). The solenoid valve (30) is installed in the discharge port 2 of the mixing drum (25).

4. The precipitation apparatus for preparing defoamer as described in claim 3, characterized in that, The horizontal separator (03) includes a separation cylinder (31), a separation roller (32), a rotary joint (33), a collection box (34), and a collection roller (35). The separation cylinder (31) is fixedly installed on the top of multiple sets of support brackets (16). The front end of the separation cylinder (31) is provided with a discharge port (3), and the rear end of the separation cylinder (31) is provided with multiple liquid discharge ports. The separation roller (32) is rotatably installed inside the separation cylinder (31). The rear end of the separation roller (32) is provided with a feed port (3), and the middle part of the separation roller (32) is provided with multiple discharge ports (4). Rotary joint (33) is rotatably installed at the rear end of separation roller (32) and fixedly installed on separation cylinder (31). Rotary joint (33) and conveying cylinder (21) are connected. Collection box (34) is fixedly installed at the front end of separation cylinder (31). Discharge port five is provided at the bottom end of collection box (34). Collection roller (35) is rotatably installed at the front end of separation roller (32) and rotatably installed inside collection box (34). Multiple discharge ports six are provided on the side end of collection roller (35).

5. The precipitation apparatus for preparing defoamer as described in claim 4, characterized in that, The power unit (04) includes two brackets (41), a reducer (42), a motor (43), a reducer (44), a shaft (45), a pulley (46), a pulley (47), multiple belts (48), a pulley (49), a pulley (50), and multiple belts (71). The two brackets (41) are fixedly mounted on the top of the base plate (14). The reducer (42) is fixedly mounted on the two brackets (41). The motor (43) is fixedly mounted on the front end of the reducer (42). The reducer (44) is fixedly mounted on the front end of the reducer (42), and the motor (45)... 43) Power is supplied to reducer four (44) through reducer three (42). Shaft (45) is rotatably mounted on the rear end of reducer four (44) and multiple brackets three (17). Pulley one (46) is rotatably mounted on the front end of reducer four (44). Pulley two (47) is fixedly mounted on the side end of separation roller (32). Multiple belts one (48) are mounted on pulley one (46) and pulley two (47). Pulley three (49) is rotatably mounted on the front end of shaft (45). Pulley four (50) is fixedly mounted on the front end of collection roller (35). Multiple belts two (71) are mounted on pulley three (49) and pulley four (50).

6. The precipitation apparatus for preparing defoamer as described in claim 5, characterized in that, The drainage and cooling device (05) includes a bracket (51) and a baffle (52). The bracket (51) is fixedly installed at the rear end of the separator (31), and a drain pipe is provided on the side end of the bracket (51). The baffle (52) is installed at the rear end of the reducer (44), and a water guide groove is also provided on the side end of the reducer (44).

7. The precipitation apparatus for preparing defoamer as described in claim 6, characterized in that, The multiple wear-resistant sleeves (06) are detachably installed in the multiple discharge ports of the separating roller (32).

Citation Information

Patent Citations

  • Precipitation device for preparing defoaming agent

    CN219440987U