Leaked oil collecting pot for special equipment
By using a T-shaped tie rod, spring structure, and sealing ring design, the problems of inconvenient disassembly and poor sealing of traditional oil leakage collection devices are solved, enabling quick fixing of the oil can and accurate monitoring of oil leakage, thus improving the convenience and reliability of equipment maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINESE PEOPLES LIBERATION ARMY UNIT 95778
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-28
AI Technical Summary
Traditional oil leak collection methods are inconvenient to disassemble, have poor sealing performance, cannot quantify the amount of oil leaked, and require modification of the original structure, which affects the reliability of the equipment and maintenance costs, and cannot monitor the oil leak situation in real time.
The T-shaped tie rod and spring structure enable the oil can to be quickly fixed to the outside of the equipment skin. Combined with the design of the sealing ring and the moving mechanism, it supports quantitative monitoring of oil leakage. The oil leakage pipe can be quickly inserted and sealed by hand tightening and bevel gear pair.
It enables quick fixing and disassembly of the oil can, has good sealing performance, and can accurately monitor oil leakage during equipment operation, reducing modification costs and improving maintenance efficiency and data accuracy.
Smart Images

Figure CN224171433U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of special equipment technology, specifically to a special equipment oil leakage collection container. Background Technology
[0002] Traditional oil leak collection methods in aviation, machinery, and other fields often employ fixed oil tanks or simple containers, which suffer from problems such as inconvenient disassembly, poor sealing, and inability to quantify the amount of oil leaked. Some equipment requires modification of its original structure to install the collection device, affecting equipment reliability and increasing maintenance costs. Existing oil leak collection devices cannot monitor oil leaks in real time during equipment operation, reducing maintenance efficiency and data accuracy. Therefore, a special equipment, the oil leak collection container, is proposed. Utility Model Content
[0003] The purpose of this utility model is to address the defects and shortcomings of the existing technology by providing a special equipment oil leakage collection can. The T-shaped pull rod and spring structure enable the oil can to be quickly fixed to the outside of the equipment skin without modifying the original equipment. It is easy to disassemble and the fixation is reliable. The oil leakage can structure supports quantitative monitoring of oil leakage during the parking period, making the work more convenient, faster and more accurate and reliable.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it comprises two oil leaking containers, left and right; a spout is connected through the oil leaking containers;
[0005] It also includes:
[0006] The partition is fixed between the two oil leak cans on the left and right; the partition has a through hole running vertically through the middle.
[0007] The T-shaped tie rod is movably inserted into the hole of the partition, with the crossbar of the T-shaped tie rod at the bottom;
[0008] A spring is sleeved on the lower part of the T-shaped tie rod, with one end of the spring fixed to the T-shaped tie rod and the other end of the spring fixed to the partition.
[0009] The buckle is fixed to the upper end of the T-shaped pull rod.
[0010] Preferably, the two sealing rings are respectively embedded in the inner ring wall of the spout; the inner ring wall of the sealing ring is inclined from the outside to the inside from top to bottom.
[0011] Preferably, several pull plates are arranged in a ring and abut against the bottom of the inner ring wall of the sealing ring; the upper inner ring wall of the pull plate is inclined from the outside to the inside from top to bottom, and several balls are rolled and embedded in the lower part of the pull plate.
[0012] Preferably, the bottom of the pull plate is provided with a moving mechanism, and an annular groove is opened in the inner ring wall of the spout, with the moving mechanism located in the annular groove.
[0013] Preferably, the moving mechanism comprises:
[0014] The movable plate, wherein there are several movable plates, and each is fixed to the bottom of the pull plate;
[0015] The number of No. 1 screws is several, and each screw is threaded through the movable plate.
[0016] The lifting blocks are of several types, and each type is screwed to the outer end of the first screw via a bearing; a drive mechanism is connected to the bottom of the lifting blocks.
[0017] The limiting rods are of several kinds and are movably inserted into the movable plate, with the other end of the limiting rods fixed to the lifting block;
[0018] The first bevel gear pair consists of several bevel gear pairs, with the inner bevel gears respectively sleeved and fixed on the first screw. The other bevel gear of the first bevel gear pair is located above the lifting block.
[0019] The square rods are of several types, and each square rod is inserted and fixed inside another bevel gear of the first bevel gear pair. The bottom of the square rods is screwed onto the lifting block via bearings. The central axes of the square rods and the lifting block are not aligned.
[0020] The connecting pipes are in multiple quantities and are movably sleeved on the square rod. The upper end of the connecting pipe is screwed into the annular groove through a bearing. The multiple connecting pipes are connected by a first transmission wheel and a first transmission belt.
[0021] The second bevel gear pair has one bevel gear fixedly fitted to a connecting tube, and the other bevel gear of the second bevel gear pair is connected to a rotating shaft. The rotating shaft passes through the spout and is connected to a hand-tightening device.
[0022] Preferably, the drive mechanism comprises:
[0023] The number of No. 2 screws is several, and each of them is threaded through the bottom of the lifting block. The No. 2 screws are screwed to the bottom of the annular groove through bearings.
[0024] The number of the second transmission wheel is several, and each of them is sleeved and fixed to the bottom of the second screw. The several second transmission wheels are connected by the second transmission belt.
[0025] The No. 3 bevel gear pair has one bevel gear fixed on the No. 1 and No. 2 screws, and the other bevel gear of the No. 3 bevel gear pair is connected to the No. 2 rotating shaft. The No. 2 rotating shaft passes through the spout and is connected to the No. 2 hand screw.
[0026] Compared with the prior art, the beneficial effects of this utility model are:
[0027] 1. The T-shaped tie rod and spring structure enable the oil can to be quickly fixed to the outside of the equipment skin without modifying the original equipment. It is easy to disassemble and the fixation is reliable.
[0028] 2. The dual oil can structure supports quantitative monitoring of oil leakage during storage, making the work more convenient, faster, and the monitoring more accurate and reliable. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the structure of this utility model.
[0030] Figure 2 This is a cross-sectional view of the spout in this utility model.
[0031] Figure 3 yes Figure 2 Enlarged view of part A in the image.
[0032] Figure 4 yes Figure 2 Enlarged view of part B in the image.
[0033] Explanation of reference numerals in the attached figures:
[0034] 1. Oil can, 2. Spout, 2-1. Ring groove, 3. Partition, 4. T-shaped pull rod, 5. Spring, 6. Buckle, 7. Sealing ring, 8. Pull plate, 9. Ball bearing, 10. Moving mechanism, 10-1. Moving plate, 10-2. No. 1 screw, 10-3. Lifting block, 10-4. Drive mechanism, 10-4. No. 2 screw, 10-4-1. No. 2 transmission wheel, 10-4-2. No. 3 bevel gear pair, 10-4-3. No. 2 rotating shaft, 10-4-4. No. 2 hand-tightening mechanism, 10-4-5. No. 2 transmission belt, 10-4-6. Limiting rod, 10-5. No. 1 bevel gear pair, 10-6. Square rod, 10-7. Connecting pipe, 10-8. No. 1 transmission wheel, 10-9. No. 1 transmission belt, 10-10. No. 2 bevel gear pair, 10-11. No. 1 rotating shaft, 10-12. No. 1 hand-tightening mechanism, 10-13. Detailed Implementation
[0035] The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0036] The specific implementation method adopts the following technical solution:
[0037] Example 1:
[0038] Please see Figure 1-3 This embodiment 1 includes two oil leak pots 1, one on the left and one on the right; a spout 2 is connected through the oil leak pot 1.
[0039] It also includes:
[0040] Partition 3 is fixed between the two oil cans 1 on the left and right; a through hole is provided in the middle of partition 3.
[0041] T-shaped tie rod 4, wherein the T-shaped tie rod 4 is movably inserted into the hole of the partition 3, and the crossbar of the T-shaped tie rod 4 is at the bottom;
[0042] Spring 5 is sleeved on the lower part of T-shaped pull rod 4. One end of spring 5 is fixed to T-shaped pull rod 4, and the other end of spring 5 is fixed to partition 3.
[0043] Buckle 6, which is fixed to the upper end of T-shaped pull rod 4;
[0044] The sealing ring 7 consists of two rings, each embedded in the inner ring wall of the spout 2. The inner ring wall of the sealing ring 7 is inclined from the outside to the inside from top to bottom.
[0045] A pull plate 8, comprising several pull plates arranged in a ring, rests against the bottom of the inner ring wall of the sealing ring 7; the upper inner ring wall of the pull plate 8 is inclined from top to bottom and from the outside to the inside, and the lower part of the pull plate 8 is fitted with several rolling balls 9; a moving mechanism 10 is provided at the bottom of the pull plate 8, and an annular groove 2-1 is formed in the inner ring wall of the spout 2, the moving mechanism 10 being disposed within the annular groove 2-1; the moving mechanism 10 includes:
[0046] Movable plate 10-1, there are several movable plates 10-1, and they are respectively fixed to the bottom of the pull plate 8;
[0047] There are several screws 10-2, and each screw 10-2 is threadedly threaded through the movable plate 10-1.
[0048] Lifting blocks 10-3, there are several lifting blocks 10-3, and they are respectively screwed to the outer end of the first screw 10-2 through bearings; the bottom of the lifting block 10-3 is connected to the drive mechanism 10-4;
[0049] Limiting rod 10-5, there are several limiting rods 10-5, and they are movably inserted into the movable plate 10-1 respectively. The other end of the limiting rod 10-5 is fixed on the lifting block 10-3.
[0050] The first bevel gear pair 10-6, there are several first bevel gear pairs 10-6, and the inner bevel gears are respectively sleeved and fixed on the first screw 10-2. The other bevel gear of the first bevel gear pair 10-6 is located above the lifting block 10-3.
[0051] Square rod 10-7, there are several square rods 10-7, and each of them is inserted and fixed in another bevel gear of the first bevel gear pair 10-6. The bottom of the square rod 10-7 is screwed onto the lifting block 10-3 through a bearing. The central axes of the square rod 10-7 and the lifting block 10-3 are set on different lines.
[0052] Connecting pipe 10-8, there are several connecting pipes 10-8, and they are movably sleeved on square rod 10-7 respectively. The upper end of the connecting pipe 10-8 is screwed into the annular groove 2-1 through a bearing. The several connecting pipes 10-8 are connected by a first transmission wheel 10-9 and a first transmission belt 10-10.
[0053] The second bevel gear pair 10-11 has one bevel gear fixedly fitted to a connecting pipe 10-8, and the other bevel gear of the second bevel gear pair 10-11 is connected to a first rotating shaft 10-12. The first rotating shaft 10-12 passes through the spout 2 and is connected to a first hand-tightening shaft 10-13.
[0054] Example 2:
[0055] Please see Figure 4 Based on Embodiment 1, the drive mechanism 10-4 includes:
[0056] The number of screws 10-4-1 is several, and each screw is threaded through the bottom of the lifting block 10-3. The screws 10-4-1 are screwed to the bottom of the annular groove 2-1 through bearings.
[0057] The number of the second transmission wheel 10-4-2 is several, and each of them is sleeved and fixed to the bottom of the second screw 10-4-1. The several second transmission wheels 10-4-2 are connected by the second transmission belt 10-4-6.
[0058] The third bevel gear pair 10-4-3 has one bevel gear fixed on the first and second screws 10-4-1. The other bevel gear of the third bevel gear pair 10-4-3 is connected to the second rotating shaft 10-4-4. The second rotating shaft 10-4-4 passes through the spout 2 and is connected to the second hand screw 10-4-5.
[0059] When using this invention, before the two oil leak pipes on the equipment extend into the oil reservoir 1 through the spout 2, turn the first hand screw 10-13. Under the action of the first rotating shaft 10-12 and the second bevel gear pair 10-11, the connecting pipe 10-8 rotates, driving the square rod 10-7 to rotate. Under the action of the first bevel gear pair 10-6, the first screw 10-2 rotates. Under the action of the limiting rod 10-5, the pull plate 8 moves outward, pulling the inner ring wall of the sealing ring 7 outward, making it easier to insert the oil leak pipe. The ball bearing 9 makes it easier for the oil leakage pipe to slide into the spout 2; after insertion, turn the second hand screw 10-4-5 to make the second rotating shaft 10-4-4 rotate. Under the action of the third bevel gear pair 10-4-3, the second screw 10-4-1 rotates, driving the lifting block 10-3 to descend, causing the square rod 10-7 and the pull plate 8 to descend. Turn the first hand screw 10-13 again to move the pull plate 8 below the sealing ring 7, so that the sealing ring 7 abuts against the oil leakage pipe to enhance the sealing performance.
[0060] The T-shaped lever 4 lifts the oil can 1 upwards via the lower spring 5, thus placing the oil can 1 against the equipment skin. The T-shaped lever 4 penetrates through the small hole on the skin and is twisted 90 degrees before being fixed to the outside of the skin by the buckle 6. This allows for monitoring of oil leakage and storage during equipment use and storage. It features no need to modify the original equipment, easy disassembly, reliable fixing, small size, good sealing, quantification, and anti-static properties, making the work more convenient and efficient, and the monitoring more accurate and reliable.
[0061] Compared with the prior art, the beneficial effects of this utility model are:
[0062] 1. By using the No. 1 hand to tighten the 10-13 drive plate 8 to move the sealing ring 7 outward, combined with the ball bearing 9 design, the oil leakage pipe can be quickly inserted and positioned, making operation convenient;
[0063] 2. Using the No. 2 hand-tightening 10-4-5 to control the lifting block 10-3 to drive the square rod 10-7 to descend, and cooperate with the sealing ring 7 to press against the oil leakage pipe to enhance the airtightness;
[0064] 3. The T-shaped tie rod 4 and spring 5 structure enable the oil can 1 to be quickly fixed to the outside of the equipment skin without modifying the original equipment. Disassembly is convenient and the fixation is reliable.
[0065] 4. The dual oil can structure supports quantitative monitoring of oil leakage during storage, making the work more convenient, faster, and the monitoring more accurate and reliable.
[0066] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. Special equipment oil collection container, which includes two oil collection containers (1) on the left and right sides; a spout (2) is connected through the oil collection container (1); Its features are, It also includes: The partition (3) is fixed between the two oil cans (1) on the left and right; the partition (3) has a through hole in the middle; T-shaped tie rod (4), the T-shaped tie rod (4) is movably inserted into the hole of the partition (3), and the crossbar of the T-shaped tie rod (4) is at the bottom; Spring (5), the spring (5) is sleeved on the lower part of the T-shaped pull rod (4), one end of the spring (5) is fixed to the T-shaped pull rod (4), and the other end of the spring (5) is fixed to the partition (3); The buckle (6) is fixed to the upper end of the T-shaped pull rod (4).
2. The special equipment oil leakage collection container according to claim 1, characterized in that: Two sealing rings (7) are respectively embedded in the inner ring wall of the spout (2); the inner ring wall of the sealing ring (7) is inclined from the outside to the inside from top to bottom.
3. The special equipment oil leakage collection container according to claim 1, characterized in that: Several pull plates (8) are arranged in a ring and abut against the bottom of the inner ring wall of the sealing ring (7); the upper inner ring wall of the pull plate (8) is inclined from the outside to the inside from top to bottom, and several balls (9) are rolled and embedded in the lower part of the pull plate (8).
4. The special equipment oil leakage collection container according to claim 1, characterized in that: The bottom of the pull plate (8) is provided with a moving mechanism (10), and the inner ring wall of the spout (2) is provided with a ring groove (2-1), and the moving mechanism (10) is located in the ring groove (2-1).
5. The special equipment oil leakage collection container according to claim 4, characterized in that: The moving mechanism (10) includes: The movable plate (10-1) is of several kinds and is fixed to the bottom of the pull plate (8); The number of No. 1 screws (10-2) is several, and each screw is threaded through the movable plate (10-1). Lifting blocks (10-3), there are several lifting blocks (10-3), and each is screwed to the outer end of the first screw (10-2) through a bearing; the bottom of the lifting block (10-3) is connected to a drive mechanism (10-4). The limiting rod (10-5) is a plurality of such limiting rods (10-5) and is movably inserted into the movable plate (10-1). The other end of the limiting rod (10-5) is fixed on the lifting block (10-3). The first bevel gear pair (10-6) consists of several bevel gear pairs (10-6), with the inner bevel gears respectively sleeved and fixed on the first screw (10-2). The other bevel gear of the first bevel gear pair (10-6) is located above the lifting block (10-3). Square rods (10-7), there are several square rods (10-7), and each of them is inserted into another bevel gear of the first bevel gear pair (10-6). The bottom of the square rods (10-7) is screwed onto the lifting block (10-3) through a bearing. The central axes of the square rods (10-7) and the lifting block (10-3) are set on different lines. There are several connecting pipes (10-8), each movably sleeved on a square rod (10-7). The upper end of each connecting pipe (10-8) is screwed into an annular groove (2-1) via a bearing. The several connecting pipes (10-8) are connected by a first transmission wheel (10-9) and a first transmission belt (10-10). The second bevel gear pair (10-11) has one bevel gear fixedly fitted with a connecting pipe (10-8), and the other bevel gear of the second bevel gear pair (10-11) is connected to a rotating shaft (10-12). The rotating shaft (10-12) passes through the spout (2) and is connected to a hand screw (10-13).
6. The special equipment oil leakage collection container according to claim 5, characterized in that: The drive mechanism (10-4) includes: The number of screws (10-4-1) is several, and each screw is threaded through the bottom of the lifting block (10-3). The screws (10-4-1) are screwed to the bottom of the annular groove (2-1) through bearings. The second transmission wheel (10-4-2) consists of several wheels, each fitted and fixed to the bottom of the second screw (10-4-1). The several second transmission wheels (10-4-2) are connected by the second transmission belt (10-4-6). The third bevel gear pair (10-4-3) consists of one bevel gear fitted and fixed to the first and second screws (10-4-1). The other bevel gear of the third bevel gear pair (10-4-3) is connected to the second rotating shaft (10-4-4). The second rotating shaft (10-4-4) passes through the spout (2) and is connected to the second hand screw (10-4-5).