Waste liquid lifting pump for petrochemical intelligent sewage pool

By using thin oil-lubricated bearing bodies and sliding bearing positioning support structures in the petrochemical smart sewage pool waste liquid lifting pump, the frequent maintenance problem caused by the immersion of the lower rolling bearing is solved, and a longer service life and higher operational reliability are achieved.

CN223398930UActive Publication Date: 2025-09-30SHENYANG IND PUMP MFG CO LTD
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Patent Information

Application Number
CN202520199037.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2025-09-30
Estimated Expiration
2035-02-08

AI Technical Summary

Technical Problem

The lower rolling bearings of the existing petrochemical smart sewage pool waste liquid lifting pumps are immersed in the medium for a long time, causing water to enter the bearing body. Frequent disassembly, cleaning, grease replacement and rolling bearing replacement are required, which reduces the service life.

Method used

The thin oil lubricated bearing body and sliding bearing positioning support structure are adopted. The thin oil lubricated bearing body is located above the liquid level and is isolated by the base plate to prevent the lower rolling bearing from being soaked. An axial isolation sleeve seal is used to prevent the medium from entering the bearing chamber. Combined with the thin oil lubrication system, the bearing life is extended.

Benefits of technology

The service life and operation reliability of the waste liquid lifting pump are improved, the maintenance frequency is reduced, and the operation cost is reduced.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223398930U_ABST
Patent Text Reader

Abstract

A waste liquid lift pump for a petrochemical intelligent sewage pool belongs to the technical field of industrial pumps. The lower part of the foundation plate is connected with a lifting pipe; the lower part of the lifting pipe is connected with a pump cover; the pump cover is detachably connected with a pump body; the lower part of the pump body is connected with a suction pipe; the lower end of the main shaft penetrates through the pump cover from the water pumping pipe, extends into the pump body and is connected with the impeller through a fastening nut, and the upper end of the main shaft is connected with a motor through a coupler. The water pumping device is characterized in that the upper side of the foundation plate is connected with a thin oil lubrication bearing body, the center of the thin oil lubrication bearing body is matched with the main shaft, and the upper side of the thin oil lubrication bearing body is connected with a motor support; the motor is arranged on the motor support, and a sliding bearing is arranged in an inner hole of the pump cover. The utility model can improve the safe operation cycle and impact load resistance, and has the advantages of reliable operation, long service life and high operation efficiency.
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Description

Technical Field

[0001] The utility model belongs to the technical field of industrial pumps, and specifically relates to a waste liquid lifting pump for a petrochemical smart sewage pool. Background Art

[0002] At present, the petrochemical industry at home and abroad has vigorously promoted the intelligent sewage treatment plant optimization system.

[0003] The process parameters are collected and analyzed in real time to comprehensively improve the efficiency and quality of water management, reduce the operating costs of sewage treatment, and inject digital momentum into cost reduction and efficiency improvement.

[0004] For example, CNOOC and Shell Petrochemical Co., Ltd. was the first in China to promote the intelligent wastewater treatment plant optimization system.

[0005] The wastewater pump in the high-density polyethylene unit is a VS4 (vertical submersible pump) made of S-6 material. The medium contains flocculent matter, with a maximum temperature of 60°C and a typical temperature of 45°C. The pump is an imported brand. The impeller, pump body, and other flow-through components are immersed in the medium being transported. The motor and other drive mechanisms are located above the pump foundation. The imported pump has upper and lower rolling bearings lubricated with grease. However, due to the liquid level, the lower rolling bearing is constantly immersed in the medium, causing water to enter the bearing body. This requires frequent disassembly, cleaning, and re-lubrication of the grease and bearings, shortening the service life of the wastewater pump. Utility Model Content

[0006] The present invention aims to solve the above-mentioned problems, make up for the deficiencies of the existing technology, and provide a waste liquid lifting pump for petrochemical smart sewage pools; the present invention can improve the safe operation cycle and resistance to impact loads, and has reliable operation, long service life, and high operating efficiency.

[0007] In order to achieve the above-mentioned purpose, the present utility model adopts the following technical solutions.

[0008] The utility model provides a waste liquid lifting pump for a petrochemical intelligent sewage pool, comprising a base plate, a water lifting pipe connected to the bottom of the base plate, a pump cover connected to the bottom of the water lifting pipe, the pump cover and the pump body detachably connected, a suction pipe connected to the bottom of the pump body, a discharge pipe connected to the side of the pump body, the discharge pipe connected to the base plate, a main shaft is arranged through the base plate, the lower end of the main shaft passes through the pump cover from the water lifting pipe and extends into the pump body and is connected to the impeller through a fixing nut, and the upper end of the main shaft is connected through a coupling It is connected to a motor and is characterized in that a thin oil-lubricated bearing body is connected to the upper side of the base plate, the center of the thin oil-lubricated bearing body cooperates with the main shaft, the upper side of the thin oil-lubricated bearing body is connected to a motor bracket, the motor is arranged on the motor bracket, a sliding bearing is arranged in the inner hole of the pump cover, a rectangular groove is arranged on the upper end face of the sliding bearing, a cylindrical pin is arranged in the rectangular groove, a pressure cover is connected above the pump cover, a concave hole is arranged on the lower end face of the pressure cover, and the cylindrical pin is inserted into the concave hole of the pressure cover.

[0009] Furthermore, the thin oil lubricated bearing body includes a bearing housing, paired angular contact ball bearings, a bearing sleeve, a bearing pressure cover, a dust plate, an oil flinging plate and a bearing body end cover. The inner hole of the paired angular contact ball bearing is sleeved on the bearing sleeve, and the outer ring of the paired angular contact ball bearing is connected to the inner hole of the bearing housing. The main shaft is matched with the inner hole of the paired angular contact ball bearing. The bearing pressure cover and the dust plate are arranged above the paired angular contact ball bearing. The bearing pressure cover is connected to the bearing housing by fastening bolts, and the dust plate is connected to the bearing pressure cover. The oil flinging plate is arranged in the bearing housing and sleeved on the main shaft to rotate with the main shaft. The bearing body end cover is arranged at the lower part of the oil flinging plate and is connected to the lower end of the bearing housing by fastening bolts.

[0010] Furthermore, the paired angular contact ball bearings are provided with flat washers, stop washers and round nuts, which are tightened with the round nuts through threads provided at corresponding parts of the main shaft, and the oil-slinging pan and the paired angular contact ball bearings are fastened by the stop washers.

[0011] Furthermore, an oil collecting chamber with a large cavity structure is provided in the bearing housing below the paired angular contact ball bearings, and an oil return hole is provided inside the bearing housing to return the oil splashed from the upper paired angular contact ball bearings to the oil collecting chamber.

[0012] Furthermore, the dustproof disc is provided with an air release plug component.

[0013] Furthermore, the bearing housing is provided with an oil cup and an oil drain bolt for replenishing oil.

[0014] Furthermore, a shaft sleeve is connected to the main shaft at a position corresponding to the sliding bearing through a key.

[0015] Furthermore, an axial isolation sleeve seal is provided between the main shaft and the base plate.

[0016] Furthermore, the axial isolation sleeve seal includes an inner circle and an outer circle that can rotate relatively, the inner circle is connected to a corresponding position of the main shaft and rotates simultaneously with the main shaft, and the outer circle is fixed in an inner hole set in the base plate.

[0017] Furthermore, a filter component is connected below the suction pipe.

[0018] The beneficial effects of the utility model.

[0019] The utility model provides a sliding bearing positioning support for the rotating shaft of the submerged part of the liquid, and the underwater sliding bearing is connected and fixed, which solves the rotation positioning of the long shaft at the underwater depth, improves the rigidity and rotation stability of the rotating pump shaft and the operating load capacity, reduces operating costs, and prolongs maintenance time; the transmission rolling bearing is lubricated with thin oil, and the thin oil lubricated bearing box is above the liquid level and isolated by the base plate, which avoids the shortcomings of the lower rolling bearing of the original technology being immersed in the medium for a long time, causing water to enter the bearing body, and requiring frequent disassembly, cleaning, replacement of grease and replacement of rolling bearings, thereby improving the service life of the wastewater pump; an axially arranged isolation sleeve type rotary seal is adopted to prevent particles in the conveying liquid from entering the bearing chamber, and prevent liquid from entering the bearing chamber along with the rotating shaft, so that the sealing effect is good and the service life is long. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to make the technical problems, technical solutions and beneficial effects solved by the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0021] Figure 1 It is a schematic diagram of the overall side sectional structure of the utility model.

[0022] Figure 2 It is a schematic diagram of the overall three-dimensional structure of the thin oil lubricated bearing body of the utility model.

[0023] Figure 3 It is a split schematic diagram of the thin oil lubricated bearing body of the utility model.

[0024] Figure 4 It is a schematic side sectional structure diagram of the thin oil lubricated bearing body of the utility model.

[0025] Figure 5 This utility model Figure 1Point A is the structural diagram of the sliding bearing.

[0026] Figure 6 It is a structural schematic diagram of the axial isolation sleeve seal of the utility model.

[0027] Markings in the figure: 1 is the base plate, 2 is the water lifting pipe, 3 is the pump cover, 4 is the pump body, 5 is the suction pipe, 6 is the discharge pipe, 7 is the main shaft, 8 is the impeller, 9 is the coupling, 10 is the motor, 11 is the thin oil lubrication bearing body, 12 is the motor bracket, 13 is the sliding bearing, 14 is the rectangular groove, 15 is the cylindrical pin, 16 is the pressure cover, 17 is the concave hole, 18 is the bearing housing, 19 is the angular contact ball bearing, 20 is the bearing sleeve, 21 is the bearing pressure cover, 22 is the dust plate, 23 is the oil throwing plate, 24 is the bearing body end cover, 25 is the flat washer, 26 is the anti-retraction washer, 27 is the round nut, 28 is the oil collecting chamber, 29 is the oil return hole, 30 is the air bleed plug component, 31 is the oil cup, 32 is the oil drain bolt, 33 is the key, 34 is the shaft sleeve, 35 is the axial isolation sleeve seal, and 36 is the filter component. DETAILED DESCRIPTION

[0028] As shown in the accompanying drawings, this embodiment provides a waste liquid lifting pump for a petrochemical smart sewage pool, including a base plate 1, a water lifting pipe 2 is connected under the base plate 1, a pump cover 3 is connected under the water lifting pipe 2, the pump cover 3 is detachably connected to the pump body 4, a suction pipe 5 is connected under the pump body 4, a filter component 36 is connected under the suction pipe 5 for filtering, a discharge pipe 6 is connected to the side of the pump body 4, the discharge pipe 6 is connected to the base plate 1, a main shaft 7 is arranged through the base plate 1, the lower end of the main shaft 7 passes through the pump cover 3 from the water lifting pipe 2 and extends into the pump body 4 and is connected to the impeller 8 through a fixing nut, and the upper end of the main shaft 7 is connected to the motor 10 through a coupling 9.

[0029] The motor 10 drives the main shaft 7 and the impeller 8 to rotate. After the liquid obtains energy through the impeller 8, it enters the pump body 4 through the suction pipe 5 and is discharged from the outlet along the flow channel of the pump body 4, and flows through the discharge pipe 6 and is output upward.

[0030] A thin oil lubricated bearing body 11 is connected to the upper side of the base plate 1 , the center of the thin oil lubricated bearing body 11 matches the main shaft 7 , and a motor bracket 12 is connected to the upper side of the thin oil lubricated bearing body 11 , and the motor 10 is set on the motor bracket 12 .

[0031] The thin oil lubricated bearing body 11 includes a bearing housing 18 , paired angular contact ball bearings 19 , a bearing sleeve 20 , a bearing cover 21 , a dust plate 22 , an oil slingering plate 23 and a bearing body end cover 24 .

[0032] The inner hole of the paired angular contact ball bearing 19 is sleeved on the bearing sleeve 20, the outer ring of the paired angular contact ball bearing 19 is connected to the inner hole of the bearing box 18, the main shaft 7 is matched with the inner hole of the paired angular contact ball bearing 19, the bearing cover 21 and the dust plate 22 are arranged above the paired angular contact ball bearing 19, the bearing cover 21 is connected to the bearing box 18 by fastening bolts, the dust plate 22 is connected to the bearing cover 21, the oil flinging plate 23 is arranged in the bearing box 18 and sleeved on the main shaft 7 and rotates with the main shaft 7, the bearing body end cover 24 is arranged at the lower part of the oil flinging plate 23 and is connected to the lower end of the bearing box 18 by fastening bolts.

[0033] A flat washer 25, a retaining washer 26 and a round nut 27 are provided on the paired angular contact ball bearings 19, which are tightened through the threads provided on the corresponding parts of the main shaft 7 and the round nut 27, and the oil-slinging plate 23 and the paired angular contact ball bearings 19 are limited and fastened by the retaining washer 26.

[0034] An oil collecting chamber 28 with a large cavity structure is provided below the paired angular contact ball bearings 19 in the bearing housing 18 , and an oil return hole 29 is provided inside the bearing housing 18 to allow the oil splashed from the upper paired angular contact ball bearings to return to the oil collecting chamber 28 .

[0035] The dustproof plate 22 is provided with a vent plug component 30, and the bearing housing 18 is provided with an oil cup 31 for replenishing oil and an oil drain bolt 32. As long as the oil cup 31 for replenishing oil has a minimum oil level display, the lubrication of the angular contact ball bearings 19 can be guaranteed.

[0036] By using thin oil to lubricate the angular contact ball bearings 19, the disadvantages of the original technology of the lower rolling bearing being immersed in the medium for a long time, causing water to enter the bearing body, and requiring frequent disassembly, cleaning, replacement of grease and replacement of rolling bearings are avoided, thereby improving the service life of the wastewater pump.

[0037] A sliding bearing 13 is provided in the inner hole of the pump cover 3. A shaft sleeve 34 is connected to the corresponding sliding bearing 13 on the main shaft 7 through a key 33 and rotates with the pump main shaft 7. A rectangular groove 14 is provided on the upper end face of the sliding bearing 13, and a cylindrical pin 15 is provided in the rectangular groove 14. A pressure cover 16 is connected to the top of the pump cover 3, and a concave hole 17 is provided on the lower end face of the pressure cover 16. The cylindrical pin 15 is inserted into the concave hole 17 of the pressure cover 16.

[0038] By positioning and supporting the rotating shaft of the submerged part with a sliding bearing 13, the underwater sliding bearing 13 is connected and fixed, which solves the problem of rotation positioning of the long axis at the underwater depth, improves the rigidity and rotation stability of the rotating pump shaft and the operating load capacity, reduces operating costs, and extends maintenance time.

[0039] An axial isolation sleeve seal 35 is provided between the main shaft 7 and the base plate 1. The axial isolation sleeve seal 35 includes an inner circle and an outer circle which can rotate relative to each other. The inner circle is connected to the corresponding part of the main shaft 7 and rotates simultaneously with the main shaft 7. The outer circle is fixed in the inner hole provided on the base plate 1 to prevent particles in the conveying liquid from entering the bearing chamber and to prevent the liquid from entering the bearing chamber along with the rotating shaft. The sealing effect is good and the service life is long.

[0040] It can be understood that the above specific description of the present invention is only used to illustrate the present invention and is not limited to the technical solutions described in the implementation methods of the present invention. Ordinary technicians in this field should understand that the present invention can still be modified or replaced by equivalents to achieve the same technical effects; as long as the use requirements are met, they are within the scope of protection of the present invention.

Claims

1. A waste liquid lifting pump for a petrochemical intelligent sewage pool, comprising a base plate (1), a water lifting pipe (2) connected below the base plate (1), a pump cover (3) connected below the water lifting pipe (2), the pump cover (3) being detachably connected to a pump body (4), a suction pipe (5) connected below the pump body (4), a discharge pipe (6) connected to the side of the pump body (4), the discharge pipe (6) being connected to the base plate (1), a main shaft (7) being arranged through the base plate (1), the lower end of the main shaft (7) extending from the water lifting pipe (2) through the pump cover (3) into the pump body (4) and being connected to an impeller (8) through a fixing nut, the upper end of the main shaft (7) being connected to a motor (10) through a coupling (9), and characterized in that: The upper side of the base plate (1) is connected to a thin oil lubricated bearing body (11), the center of the thin oil lubricated bearing body (11) is matched with the main shaft (7), the upper side of the thin oil lubricated bearing body (11) is connected to a motor bracket (12), the motor (10) is arranged on the motor bracket (12), a sliding bearing (13) is arranged in the inner hole of the pump cover (3), the upper end surface of the sliding bearing (13) is provided with a rectangular groove (14), a cylindrical pin (15) is arranged in the rectangular groove (14), a pressure cover (16) is connected above the pump cover (3), the lower end surface of the pressure cover (16) is provided with a concave hole (17), and the cylindrical pin (15) is inserted into the concave hole (17) of the pressure cover (16).

2. The waste liquid lifting pump for a petrochemical smart sewage pool according to claim 1, characterized in that: The thin oil lubricated bearing body (11) comprises a bearing housing (18), paired angular contact ball bearings (19), a bearing sleeve (20), a bearing cover (21), a dust plate (22), an oil-slinging plate (23) and a bearing body end cover (24), wherein the inner holes of the paired angular contact ball bearings (19) are sleeved on the bearing sleeve (20), the outer rings of the paired angular contact ball bearings (19) are connected to the inner holes of the bearing housing (18), the main shaft (7) is matched with the inner holes of the paired angular contact ball bearings (19), and the bearing cover (21) and the dust plate (22) are arranged above the paired angular contact ball bearings (19), the bearing cover (21) is connected to the bearing housing (18) by fastening bolts, the dust plate (22) is connected to the bearing cover (21), the oil-slinging plate (23) is arranged in the bearing housing (18) and is mounted on the main shaft (7) and rotates with the main shaft (7), and the bearing body end cover (24) is arranged at the lower part of the oil-slinging plate (23) and is connected to the lower end of the bearing housing (18) by fastening bolts.

3. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 2, characterized in that: The paired angular contact ball bearings (19) are provided with a flat washer (25), a retaining washer (26) and a round nut (27), which are screwed together with the round nut (27) through a thread provided at a corresponding portion of the main shaft (7), and the retaining washer (26) is used to limit and fasten the oil-slinging plate (23) and the paired angular contact ball bearings (19).

4. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 2, characterized in that: An oil collecting chamber (28) with a large cavity structure is provided in the bearing housing (18) below the paired angular contact ball bearings (19), and an oil return hole (29) is provided inside the bearing housing (18) for returning oil splashed from the paired angular contact ball bearings to the oil collecting chamber (28).

5. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 2, characterized in that: The dustproof disc (22) is provided with an air release plug component (30).

6. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 2, characterized in that: The bearing housing (18) is provided with an oil cup (31) for replenishing oil and an oil drain bolt (32).

7. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 1, characterized in that: A shaft sleeve (34) is connected to the main shaft (7) at a position corresponding to the sliding bearing (13) via a key (33).

8. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 1, characterized in that: An axial isolation sleeve seal (35) is provided between the main shaft (7) and the base plate (1).

9. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 8, characterized in that: The axial isolation sleeve seal (35) comprises an inner circle and an outer circle that are rotatable relative to each other, the inner circle being connected to a corresponding portion of the main shaft (7) and rotating simultaneously with the main shaft (7), and the outer circle being fixed in an inner hole provided on the base plate (1).

10. The waste liquid lifting pump for a petrochemical intelligent sewage pool according to claim 1, characterized in that: A filter component (36) is connected below the suction pipe (5).