Energy-saving and environment-friendly lubricating oil storage equipment

By introducing a stirring mechanism and a liquid outlet controller into the lubricating oil storage equipment, the problems of lubricating oil solidification, sedimentation, and leakage are solved, achieving uniformity of lubricating oil and environmental protection.

CN223591508UActive Publication Date: 2025-11-25HENAN LANNAI TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520028877.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-11-25
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Existing lubricating oil storage equipment is prone to solidification or sedimentation when stationary, leading to an imbalance in the composition ratio and poor lubrication effect. At the same time, the storage equipment is prone to lubricating oil leakage due to the drain valve not being closed properly, which pollutes the environment.

Method used

A stirring mechanism and a liquid outlet controller are installed inside the equipment tank. The stirring mechanism stirs and turns the liquid by means of a stirring shaft and a stirring rod meshing with bevel gears to prevent solidification or sedimentation. The liquid outlet controller prevents leakage by means of a liquid-blocking ball and a spring structure.

Benefits of technology

It effectively prevents lubricating oil from solidifying or settling, maintains uniform composition, prevents leakage, ensures lubrication effect, and protects the environment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223591508U_ABST
    Figure CN223591508U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of lubricating oil storage, and discloses energy-saving and environment-friendly lubricating oil storage equipment which comprises an equipment tank, a plurality of bevel gear rings and a liquid outlet controller, and a stirring mechanism is arranged in the equipment tank. A bevel gear meshed with a bevel gear ring is arranged at one end of a stirring rod, overturning stirring can be conducted while the stirring rod conducts rotating stirring, and the phenomenon that lubricating oil is solidified or precipitated is prevented; the liquid blocking ball can automatically abut against the liquid passing hole under the action of the first spring and the pressure of the lubricating oil, so that leakage of the lubricating oil is prevented, and environment pollution is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of lubricating oil storage technology, specifically to an energy-saving and environmentally friendly lubricating oil storage device. Background Technology

[0002] Lubricating oil is a liquid or semi-solid lubricant used in various types of automobiles and mechanical equipment to reduce friction and protect machinery and processed parts. It mainly plays a role in lubrication, auxiliary cooling, rust prevention, cleaning, sealing and buffering. The storage of lubricating oil requires the use of lubricating oil storage equipment.

[0003] Currently, some lubricating oil storage devices on the market are prone to solidification or sedimentation when storing lubricating oil. This is because the lubricating oil remains stagnant for extended periods. Once additives settle, the proportions of different components in the lubricating oil become unbalanced. Sedimentation can also lead to uneven viscosity distribution. The lubricating oil near the bottom may become more viscous due to the sedimentation of solid particles or heavier components, while the lubricating oil at the top will be relatively thinner. This will reduce the lubricating effect of the lubricating oil in the equipment and prevent the formation of a stable oil film. When using such lubricating oil, its performance will be greatly reduced. Furthermore, lubricating oil storage devices are prone to leakage due to improperly closed drain valves, resulting in environmental pollution.

[0004] Therefore, we propose an energy-saving and environmentally friendly lubricating oil storage device to solve the problems mentioned above. Utility Model Content

[0005] The purpose of this invention is to solve the problems of some current lubricating oil storage devices. When storing lubricating oil, the lubricating oil is prone to solidification or sedimentation because it is in a static state for a long time. When using such lubricating oil, its performance will be greatly reduced. In addition, lubricating oil storage devices are prone to leakage of lubricating oil due to the drain valve not being closed properly, thus polluting the environment.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: an energy-saving and environmentally friendly lubricating oil storage device, comprising: a tank, wherein a stirring mechanism is provided inside the tank, and a liquid outlet pipe is provided near the bottom of the tank;

[0007] The stirring mechanism includes a stirring shaft, on which a plurality of stirring rods are provided, and a bevel gear is provided at one end of each stirring rod;

[0008] Multiple bevel gear rings are installed inside the equipment tank, and the bevel gear rings mesh with bevel gears;

[0009] A liquid dispensing controller is installed at one end of a liquid dispensing pipe. The liquid dispensing controller includes a control pipe with a liquid passage chamber inside and liquid passage holes at both ends. A first spring and a liquid-blocking ball are installed inside the control pipe. A T-shaped liquid passage groove is provided on the liquid-blocking ball. A connecting pipe is sleeved on the control pipe. A connecting rod is provided at the opening of the connecting pipe, and a top column is connected to the connecting rod.

[0010] Furthermore, the stirring rod includes a rod body rotatably connected to the stirring shaft, and a plurality of uniformly distributed stirring plates are provided on the rod body.

[0011] Furthermore, a push plate is provided on the outer surface of the connecting pipe near one end, and a limit ring is provided on the inner surface of the connecting pipe near one end. A limit groove is provided on the outer surface of the control pipe to slide and connect with the limit ring. A limit post is provided in the limit groove. A limit hole is provided on the limit ring to slide and connect with the limit post. A second spring is sleeved on the limit post. A first external thread is provided on the outer surface of the connecting pipe.

[0012] Furthermore, a protective box is provided on the outside of the equipment tank, the liquid discharge controller is located inside the protective box, a protective cover is provided on the protective box, and a second external thread is provided on the outer surface of the protective box, and an internal thread adapted to the second external thread is provided on the inner wall of the protective cover.

[0013] Furthermore, the equipment tank includes an upper top plate, the lower surface of which is connected to an inner tank and an outer shell, an insulation cavity is provided between the inner tank and the outer shell, and a heat insulation pad is provided on the upper surface of the upper top plate.

[0014] Furthermore, a drive motor is provided on the top of the equipment tank, and the drive motor is connected to the stirring shaft.

[0015] Furthermore, the upper top plate is provided with a liquid inlet that communicates with the inner tank, and a bolt plug is provided at the liquid inlet.

[0016] The beneficial effects of this utility model are as follows: By setting a stirring mechanism and a bevel gear ring inside the equipment tank, and setting a bevel gear that meshes with the bevel gear ring at one end of the stirring rod, the stirring rod can rotate and stir simultaneously, preventing the lubricating oil from solidifying or settling. By setting a liquid outlet controller at one end of the liquid outlet pipe, when the liquid outlet is not being drained, the liquid blocking ball will automatically press against the liquid outlet under the action of the first spring and the pressure of the lubricating oil to prevent the lubricating oil from leaking and avoid polluting the environment. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the energy-saving and environmentally friendly lubricating oil storage device of this utility model;

[0018] Figure 2 This is a cross-sectional structural schematic diagram of the energy-saving and environmentally friendly lubricating oil storage device of this utility model;

[0019] Figure 3 This is a utility model Figure 2 A magnified schematic diagram of the local structure A;

[0020] Figure 4 This is a utility model Figure 2 A magnified schematic diagram of the local structure B;

[0021] Figure 5 This is a utility model Figure 2 A magnified schematic diagram of the local structure C;

[0022] Figure 6 This is a schematic diagram of the stirring rod structure of the energy-saving and environmentally friendly lubricating oil storage device of this utility model.

[0023] The names corresponding to each mark in the diagram:

[0024] 1. Equipment tank; 101. Top plate; 102. Inner tank body; 103. Outer shell; 104. Insulation cavity; 2. Stirring mechanism; 21. Stirring shaft; 22. Stirring rod; 221. Rod body; 222. Stirring plate; 23. Bevel gear; 3. Discharge pipe; 4. Bevel gear ring; 5. Discharge controller; 51. Control pipe; 511. Liquid passage chamber; 512. Liquid passage hole; 513. Limiting groove; 52. First spring; 53. Liquid blocking ball; 531. T-shaped liquid passage groove; 6. Connecting pipe; 61. First external thread; 7. Top column; 8. Push plate; 9. Limiting ring; 10. Limiting post; 11. Second spring; 12. Protective box; 121. Second external thread; 13. Protective cover; 14. Heat insulation pad; 15. Drive motor; 16. Bolt plug; 17. Bearing. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.

[0026] Embodiments of this utility model:

[0027] like Figures 1-6As shown, this utility model provides an energy-saving and environmentally friendly lubricating oil storage device, including a tank 1, multiple bevel gear rings 4, and a liquid outlet controller 5. A stirring mechanism 2 is installed inside the tank 1, and a liquid outlet pipe 3 is located near the bottom of the tank 1. The stirring mechanism 2 includes a stirring shaft 21, and a drive motor 15 is installed at the top of the tank 1. The drive motor 15 is connected to the stirring shaft 21, enabling the stirring mechanism 2 to be stirred by starting the drive motor 15. Multiple stirring rods 22 are installed on the stirring shaft 21, and a bevel gear 23 is installed at one end of each stirring rod 22. Multiple bevel gear rings 4 are installed inside the tank 1, and the bevel gear rings 4 mesh with the bevel gear 23. 2 includes a rod 221 rotatably connected to a stirring shaft 21. Multiple evenly distributed stirring plates 222 are provided on the rod 221. A bearing 17 adapted to the rod 221 is provided on the stirring shaft 21. With this arrangement, as the stirring rod 22 rotates around the stirring shaft 21, the stirring plates 222 of the stirring rod 22 rotate around the rod 221 through the meshing of the bevel gear ring 4 and the bevel gear 23 to perform stirring. The stirring rod 22 can both stir and tumble, making the movement of materials more complex and diverse. The tumbling action can allow lubricating oil to be exchanged between different layers, breaking the stratification phenomenon that may be formed by simple stirring.

[0028] like Figure 2 and Figure 5 As shown, the liquid discharge controller 5 is located at one end of the liquid discharge pipe 3. The liquid discharge controller 5 includes a control pipe 51, a liquid passage chamber 511 is opened in the control pipe 51, and liquid passage holes 512 are opened at both ends of the control pipe 51. A first spring 52 and a liquid blocking ball 53 are installed in the control pipe 51. A T-shaped liquid passage groove 531 is opened on the liquid blocking ball 53. A connecting pipe 6 is sleeved on the control pipe 51. A connecting rod is installed at the opening of the connecting pipe 6. A top column 7 is connected to the connecting rod. It is worth mentioning that the diameter of the liquid blocking ball 53 is larger than the diameter of the liquid passage hole 512 and smaller than the inner diameter of the liquid passage chamber 511.

[0029] like Figures 2-5 As shown, a push plate 8 is provided on the outer surface of the connecting pipe 6 near one end, and a limit ring 9 is provided on the inner surface of the connecting pipe 6 near one end. A limit groove 513 is provided on the outer surface of the control pipe 51, which is slidably connected to the limit ring 9. A limit post 10 is provided in the limit groove 513. A limit hole is provided on the limit ring 9, which is slidably connected to the limit post 10. A second spring 11 is sleeved on the limit post 10. A first external thread 61 is provided on the outer surface of the connecting pipe 6. With this arrangement, after the liquid is drained, the connecting pipe 6 and the top post 7 will automatically reset under the action of the second spring 11.

[0030] like Figures 1-2 ,as well as Figure 5As shown, a protective box 12 is provided on the outside of the equipment tank 1, and the liquid discharge controller 5 is located inside the protective box 12. A protective cover 13 is provided on the protective box 12, and a second external thread 121 is provided on the outer surface of the protective box 12. An internal thread that matches the second external thread 121 is provided on the inner wall of the protective cover 13. With this arrangement, the liquid discharge controller 5 can be protected by the cooperation of the protective box 12 and the protective cover 13 to prevent accidental contact.

[0031] like Figures 1-2 As shown, the equipment tank 1 includes an upper top plate 101. The lower surface of the upper top plate 101 is connected to an inner tank 102 and an outer shell 103. A heat insulation cavity 104 is provided between the inner tank 102 and the outer shell 103. A heat insulation pad 14 is provided on the upper surface of the upper top plate 101. An inlet communicating with the inner tank 102 is provided on the upper top plate 101. A bolt plug 16 is provided at the inlet. Through this arrangement, the lubricating oil in the inner tank 102 is heat-insulated.

[0032] Specifically, by opening the bolt plug 16, lubricating oil is introduced into the inner tank 102 of the equipment tank 1 through the liquid inlet for storage. The drive motor 15 is started to drive the stirring shaft 21 of the stirring mechanism 2 to rotate, which in turn drives the stirring rod 22 to rotate. Under the meshing of the bevel gear ring 4 and the bevel gear 23, the stirring plate 222 of the stirring rod 22 rotates around the rod body 221 as the axis, so that the stirring rod 22 can both stir and rotate to stir the lubricating oil. When discharging the lubricating oil, the protective cover 13 is removed by rotating it, the external conduit is connected to the connecting pipe 6 and pushed, so that the top column 7 moves and pushes open the liquid blocking ball 53, allowing the lubricating oil to enter the external conduit and then be discharged. When the lubricating oil is not being discharged, the external conduit is simply removed, and the connecting pipe 6 and the top column 7 will automatically reset under the action of the second spring 11, no longer pushing the liquid blocking ball 53. The liquid blocking ball 53 resets and contacts the liquid passage hole 512 to block the lubricating oil and prevent it from flowing out.

Claims

1. An energy-saving and environmentally friendly lubricating oil storage device, characterized in that, include: Equipment tank (1), wherein a stirring mechanism (2) is provided inside the equipment tank (1), and a liquid outlet pipe (3) is provided near the bottom of the equipment tank (1); The stirring mechanism (2) includes a stirring shaft (21), a plurality of stirring rods (22) are provided on the stirring shaft (21), and a bevel gear (23) is provided at one end of the stirring rod (22); Multiple bevel gear rings (4) are installed inside the equipment tank (1), and the bevel gear rings (4) mesh with bevel gears (23); A liquid discharge controller (5) is set at one end of the liquid discharge pipe (3). The liquid discharge controller (5) includes a control pipe (51). A liquid passage chamber (511) is opened in the control pipe (51), and liquid passage holes (512) are opened at both ends of the control pipe (51). A first spring (52) and a liquid blocking ball (53) are provided in the control pipe (51). A T-shaped liquid passage groove (531) is opened on the liquid blocking ball (53). A connecting pipe (6) is sleeved on the control pipe (51). A connecting rod is provided at the opening of the connecting pipe (6), and a top column (7) is connected to the connecting rod.

2. The energy-saving and environmentally friendly lubricating oil storage device according to claim 1, characterized in that: The stirring rod (22) includes a rod body (221) rotatably connected to the stirring shaft (21), and a plurality of uniformly distributed stirring plates (222) are provided on the rod body (221).

3. The energy-saving and environmentally friendly lubricating oil storage device according to claim 1, characterized in that: A push plate (8) is provided on the outer surface of the connecting pipe (6) near one end, and a limit ring (9) is provided on the inner surface of the connecting pipe (6) near one end. A limit groove (513) is provided on the outer surface of the control pipe (51) and is slidably connected to the limit ring (9). A limit post (10) is provided in the limit groove (513). A limit hole is provided on the limit ring (9) and is slidably connected to the limit post (10). A second spring (11) is sleeved on the limit post (10). A first external thread (61) is provided on the outer surface of the connecting pipe (6).

4. The energy-saving and environmentally friendly lubricating oil storage device according to claim 1, characterized in that: The equipment tank (1) is provided with a protective box (12) on the outside. The liquid discharge controller (5) is located inside the protective box (12). The protective box (12) is provided with a protective cover (13). The outer surface of the protective box (12) is provided with a second external thread (121). The inner wall of the protective cover (13) is provided with an internal thread that matches the second external thread (121).

5. The energy-saving and environmentally friendly lubricating oil storage device according to claim 1, characterized in that: The equipment tank (1) includes an upper top plate (101), the lower surface of which is connected to an inner tank (102) and an outer shell (103), a heat insulation cavity (104) is provided between the inner tank (102) and the outer shell (103), and a heat insulation pad (14) is provided on the upper surface of the upper top plate (101).

6. The energy-saving and environmentally friendly lubricating oil storage device according to claim 1, characterized in that: The equipment tank (1) is equipped with a drive motor (15) on top, and the drive motor (15) is connected to the stirring shaft (21).

7. The energy-saving and environmentally friendly lubricating oil storage device according to claim 5, characterized in that: The upper top plate (101) is provided with a liquid inlet that communicates with the inner tank (102), and a bolt plug (16) is provided at the liquid inlet.