Shock-proof meter oil filling equipment

By designing a shock-resistant meter oil filling equipment that uses the pressure of differential liquid level pressure, the problems of oil leakage and low oil filling efficiency in existing oil filling equipment are solved, and an efficient, low waste and clean oil filling process is achieved.

CN223019993UActive Publication Date: 2025-06-24CHONGQING KUNLUN INSTR CO LTD
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Patent Information

Application Number
CN202422125844.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-06-24
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

Existing oil filling equipment can easily cause oil leakage and waste oil during the oil filling process, which is not conducive to cleaning, and the oil filling time is too long and the efficiency is low.

Method used

A shock-resistant meter oil filling equipment is designed to use the pressure generated by the liquid level height difference to realize the flow of oil, including the connecting pipeline between the silicone oil tank and the oil filling rack, the oil outlet valve, the grid frame and the oil recovery plate and other components to ensure that the oil will not overflow or splash during the oil filling process, and the oil filling efficiency will be improved through the branched oil outlet pipeline.

Benefits of technology

It achieves no oil leakage during the oil filling process, reduces oil waste, improves oil filling efficiency, and facilitates cleaning and improves the oil filling environment through the design of the oil recycling plate.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223019993U_ABST
Patent Text Reader

Abstract

The utility model relates to oil filling equipment, in particular to shock-proof meter oil filling equipment. Comprising a silicone oil tank body and an oil filling frame, the silicone oil tank body is communicated with the oil filling frame through a connecting pipeline, a plurality of oil outlet valves are arranged on the oil filling frame, a grid frame is arranged below the oil outlet valves, an oil recovery plate is arranged below the grid frame, and the placement position of the silicone oil tank body is higher than the placement position of the oil filling frame. According to the shock-proof meter oil filling equipment adopting the scheme, oil filling is completed through pressure generated by the liquid level height difference, external equipment is not needed for pressurization, and the use cost is reduced; an oil recovery plate is designed, so that cleaning is facilitated, and meanwhile, the oil filling environment can be cleaner. And the pipeline design is more reasonable, and compared with previous equipment, the oil filling amount is larger, and the efficiency is higher.
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Description

Technical Field

[0001] The utility model relates to the field of oil-filled equipment, in particular to an oil-filled equipment for shock-resistant meters. Background Art

[0002] The oil-filled equipment for shock-resistant meters is used for oil filling in production. The existing oil-filled equipment needs to rely on an oil pump or external pressurization to complete the oil flow and achieve the oil filling process. And during the oil filling process, oil leakage will occur, which not only wastes oil, is not conducive to cleaning, but also affects the oil filling environment. At the same time, the existing oil-filled equipment has a too long oil filling time, resulting in low efficiency. Summary of the Utility Model

[0003] The utility model aims to provide an oil-filled equipment for shock-resistant meters with high oil filling efficiency, low use cost and easy cleaning.

[0004] An oil-filled equipment for shock-resistant meters in this solution includes a silicone oil box body and an oil filling rack. The silicone oil box body and the oil filling rack are connected and communicated through a connecting pipeline. A plurality of oil outlet valves are arranged on the oil filling rack. A grid rack is arranged below the oil outlet valves, and a recovered oil plate is arranged below the grid rack. The placement position of the silicone oil box body is higher than the placement position of the oil filling rack.

[0005] The advantages of the utility model are as follows: Since the placement position of the silicone oil box body is higher than the placement position of the oil filling rack, by using the pressure generated by the liquid level height difference, the oil can flow from the silicone oil box body along the connecting pipeline to the oil filling rack, and the oil filling is completed by controlling the oil outlet valve. During the oil filling process, the overflowed or splashed oil passes through the grid rack and drips onto the recovered oil plate, and the leaked oil will not flow to the surrounding environment, and centralized collection is also convenient for cleaning.

[0006] Further, the recovered oil plate is a concave structure with a lower middle and higher ends. A plurality of oil leakage ports are arranged at the bottom of the middle concave part of the recovered oil plate. The designed recovered oil plate can make the leaked oil flow to the center, which is convenient for centralized collection from the oil leakage ports and convenient for cleaning.

[0007] Further, one end of the connecting pipeline is communicated with the bottom oil outlet of the silicone oil box body, and the other end is communicated with an oil outlet pipeline. The oil outlet pipeline is arranged on the oil filling rack, and a plurality of the oil outlet valves are arranged on the oil outlet pipeline. There is no need for additional power equipment to flow out from the bottom oil outlet, and the oil outlet pipeline is used to control the oil outlet flow direction.

[0008] Further, the oil outlet pipeline includes a first oil outlet branch and a second oil outlet branch. One ends of the first oil outlet branch and the second oil outlet branch are both communicated with the connecting pipeline, and a plurality of oil outlet valves are arranged on both the first oil outlet branch and the second oil outlet branch. Designing the oil outlet pipeline with branches can increase the oil filling efficiency.

[0009] Further, the other ends of the first oil outlet branch and the second oil outlet branch are communicated through a connecting tail pipe. The interconnection between pipelines facilitates hydraulic stability.

[0010] Further, the silicone oil box body is arranged on the box body base.

[0011] Further, a plurality of leakage holes are arranged on the grid frame.

[0012] Further, the silicone oil box body includes an inverted oil tank and an oil discharge area. An overflow partition is arranged between the inverted oil tank and the oil discharge area, and the height of the overflow partition is less than the depth of the silicone oil box body.

[0013] The advantages of the present utility model are as follows: The oil filling is completed by using the pressure generated by the liquid level height difference, without the need for external equipment pressurization, reducing the use cost; The oil recovery plate is designed, which is convenient for cleaning and can make the oil filling environment cleaner. The pipeline design is more reasonable. Compared with the previous equipment, the oil filling amount is larger and the efficiency is higher. Description of the Drawings

[0014] Figure 1 It is a schematic structural diagram of an oil filling device for a shock-resistant meter of the present utility model.

[0015] Figure 2 It is a three-dimensional structure diagram of an oil filling device for a shock-resistant meter of the present utility model.

[0016] Figure 3 It is a schematic structural diagram of the silicone oil box body in the present utility model.

[0017] In the figure, 1 is the silicone oil box body, 2 is the oil filling rack, 3 is the connecting pipeline, 4 is the oil outlet valve, 5 is the grid frame, 6 is the oil recovery plate, 7 is the oil leakage port, 8 is the first oil outlet branch, 9 is the second oil outlet branch, 10 is the connecting tail pipe, 11 is the box body base, 1-1 is the inverted oil tank, 1-2 is the oil discharge tank, 1-3 is the overflow partition, and 1-4 is the lifting ring. Specific Embodiments

[0018] The following further describes the present utility model in detail with reference to the drawings and specific embodiments:

[0019] According to Figure 1 、 2 As shown in

[0020] 1, 2, and 3, an oil filling device for a shock-resistant meter in the present solution includes a silicone oil box body 1 and an oil filling rack 2. The silicone oil box body 1 is arranged on the box body base 11. The silicone oil box body 1 and the oil filling rack 2 are communicated through a connecting pipeline 3. The placement position of the silicone oil box body 1 is higher than that of the oil filling rack 2. By using the pressure generated by the liquid level height difference, the oil can flow from the silicone oil box body 1 along the connecting pipeline 3 to the oil filling rack 2, without the need for external equipment pressurization, reducing the use cost.

[0020] There are multiple oil outlet valves 4 provided on the oil filling rack 2. Below the oil outlet valves 4, there is a grid rack 5. In this embodiment, multiple leakage holes are provided on the grid rack 5. Below the grid rack 5, there is a recovered oil plate 6. The recovered oil plate 6 is a concave structure with a lower middle and higher ends. At the bottom of the middle concave part of the recovered oil plate 6, there are two oil leakage ports 7. The recovered oil plate 6 designed in this way can make the leaked oil flow towards the center, facilitating centralized collection from the oil leakage ports 7.

[0021] Control the oil outlet valve 4 to complete oil filling. During the oil filling process, the oil that overflows or splashes passes through the grid rack 5 and drips onto the recovered oil plate 6, preventing the leaked oil from flowing into the surrounding environment. Moreover, centralized collection is convenient for cleaning, and at the same time, it can make the oil filling environment cleaner.

[0022] As a further improvement of this embodiment, one end of the connecting pipeline 3 is connected to the bottom oil outlet of the silicone oil tank 1, and the other end is connected to an oil outlet pipeline. The oil outlet pipeline is arranged on the oil filling rack 2, and multiple oil outlet valves 4 are arranged on the oil outlet pipeline. There is no need for additional power equipment to flow out from the bottom oil outlet, and the oil outlet pipeline is used to control the oil flow direction.

[0023] See details Figure 2 The oil outlet pipeline includes a first oil outlet branch 8 and a second oil outlet branch 9. One ends of the first oil outlet branch 8 and the second oil outlet branch 9 are both connected to the connecting pipeline 3. Multiple oil outlet valves 4 are provided on both the first oil outlet branch 8 and the second oil outlet branch 9, and the multiple oil outlet valves 4 are evenly spaced. Designing the oil outlet pipeline with branches can improve the oil filling efficiency.

[0024] In this embodiment, the other ends of the first oil outlet branch 8 and the second oil outlet branch 9 are connected through a connecting tail pipe 10. The interconnection between the pipelines is convenient for hydraulic stability. The pipeline design is more reasonable. Compared with the previous equipment, the oil filling volume is larger and the efficiency is higher. In this embodiment, the other ends of the first oil outlet branch 8 and the second oil outlet branch 9 are connected through a connecting tail pipe 10. The interconnection between the pipelines is convenient for hydraulic stability. The pipeline design is more reasonable. Compared with the previous equipment, the oil filling volume is larger and the efficiency is higher.

[0025] As a further improvement of this embodiment, the silicone oil tank 1 includes an inverted oil tank 1-1 and a discharge oil tank 1-2. There is an overflow partition 1-3 between the inverted oil tank 1-1 and the discharge oil tank 1-2. The overflow partition 1-3 is arranged vertically, and its bottom is fixedly arranged on the bottom of the silicone oil tank 1. The height of the overflow partition 1-3 is less than the depth of the silicone oil tank 1. In this embodiment, the height of the overflow partition 1-3 is about 2 / 3 of the depth of the silicone oil tank 1. The inverted oil tank 1-1 and the discharge oil tank 1-2 are each provided with a tank cover above, and a lifting ring 1-4 is provided on the tank cover. The silicone oil tank 1 adopts a partition design, and the oil tank 1-1 and the discharge oil tank 1-2 are separated by the overflow partition 1-3, which can effectively handle the impurities and bubbles in the original silicone oil and make the silicone oil flowing into the oil filling rack 2 cleaner.

[0026] The above are only the embodiments of the present utility model, and common knowledge such as the specific structures and characteristics known in the solutions is not described in detail herein. It should be noted that for those skilled in the art, without departing from the structure of the present utility model, several deformations and improvements can be made, and these should also be regarded as the protection scope of the present utility model, and these will not affect the implementation effect of the present utility model and the practicability of the patent.

Claims

1. A shock-resistant oil filling device, characterized in that: The invention comprises a silicone oil box (1) and an oil filling rack (2), wherein the silicone oil box (1) and the oil filling rack (2) are connected via a connecting pipeline (3), a plurality of oil outlet valves (4) are arranged on the top of the oil filling rack (2), a grid rack (5) is arranged below the oil outlet valves (4), an oil recovery plate (6) is arranged below the grid rack (5), and the placement position of the silicone oil box (1) is higher than the placement position of the oil filling rack (2).

2. The oil-filling device for a shock-resistant meter according to claim 1, characterized in that: The oil recovery plate (6) is a concave structure with a lower middle portion and higher ends. The bottom of the concave middle portion of the oil recovery plate (6) is provided with a plurality of oil leakage ports (7).

3. The oil filling device for earthquake-resistant meter according to claim 1, characterized in that: One end of the connecting pipeline (3) is connected to the bottom oil outlet of the silicone oil box (1), and the other end is connected to the oil outlet pipeline, the oil outlet pipeline is arranged on the oil filling frame (2), and a plurality of oil outlet valves (4) are arranged on the oil outlet pipeline.

4. The oil filling device for earthquake-resistant meter according to claim 3, characterized in that: The oil outlet pipeline comprises a first oil outlet branch (8) and a second oil outlet branch (9); one end of the first oil outlet branch (8) and the second oil outlet branch (9) are both connected to the connecting pipeline (3); and a plurality of oil outlet valves (4) are provided on the first oil outlet branch (8) and the second oil outlet branch (9).

5. The oil filling device for earthquake-resistant meter according to claim 4, characterized in that: The other ends of the first oil outlet branch (8) and the second oil outlet branch (9) are connected via a connecting tail pipe (10).

6. The oil-filling device for a shock-resistant meter according to claim 1, characterized in that: The silicone oil box (1) is arranged on a box base (11).

7. The oil filling device for earthquake-resistant meter according to claim 1, characterized in that: The grid frame (5) is provided with a plurality of leakage holes.

8. The oil filling device for earthquake-resistant meter according to claim 1, characterized in that: The silicone oil box (1) comprises an oil pouring box (1-1) and an oil draining box (1-2), an overflow baffle (1-3) is provided between the oil pouring box (1-1) and the oil draining box (1-2), and the height of the overflow baffle (1-3) is less than the depth of the silicone oil box (1).