Airport apron equipment detection integrated device

By designing a comprehensive equipment inspection device for apron equipment including steel frame ring, bracket, hole sleeve, quick joint, vernier caliper, circular horizontal steel plate, hand-twisted step screw and lock nut, the problems of low detection accuracy and cumbersome operation in the prior art are solved, and the rapid and accurate detection of refueling bolt wells and high and low-point equipment are achieved, which reduces safety hazards and improves production efficiency.

CN223021251UActive Publication Date: 2025-06-24CHINA AVIATION FUEL CO LTD ANHUI BRANCH
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Patent Information

Application Number
CN202422077811.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-06-24
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The lack of special detection tools with unified standards in the prior art leads to poor measurement accuracy, large errors, cumbersome operation, large workload, low efficiency, and difficult to complete the inspection quickly and accurately in a harsh working environment, affecting the sliding in and outgoing of the aircraft.

Method used

A comprehensive equipment inspection device for apron equipment is designed, including steel frame rings, brackets, hole sleeves, quick joints, vernier calipers, circular horizontal steel plates, hand-twisted step screws and locking nuts. Through the combination and coordinated work of these components, rapid and accurate detection of refueling bolt wells and high and low-point equipment is achieved.

Benefits of technology

The device simplifies operation, improves detection speed and accuracy, reduces safety hazards, and has a simple and multi-functional equipment structure, which conforms to the design concept of cost reduction and efficiency improvement. It can be quickly matched, improves production efficiency and reduces usage costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a comprehensive device for airport apron equipment detection, which relates to the technical field of airport apron equipment detection, and comprises a steel frame ring, two vertical and horizontal supports are fixed in the steel frame ring, a hole sleeve is fixed in the two supports together, a quick connector is mounted in the hole sleeve, a vernier caliper is mounted at the bottom end of the quick connector, and the vernier caliper is connected with the steel frame ring. And a circular horizontal steel plate is additionally arranged on one side of the steel frame ring 1. When the deviation of the ground well refueling bolt equipment is measured, the quick connector is installed in the hole sleeve, the part is placed on a step of a ground well barrel of the refueling bolt, the quick connector is rotated, a positioning pointer on the vernier caliper is adjusted to be aligned with the center point of the refueling bolt, the equipment is taken out, data on the vernier caliper are aligned with eyes, and the well deviation data of the refueling bolt are obtained. When high-point equipment and low-point equipment are measured, the quick connector is reversely installed, the steel ring is reversely clamped on the high-point equipment and the low-point equipment, and data are obtained through the same operation.
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Description

Technical Field

[0001] The utility model relates to the technical field of apron equipment detection, in particular to a comprehensive apron equipment detection device. Background Technique

[0002] For the fuel filling plug well and the high and low point devices, due to multiple welding processes in the construction and pipeline branches, after a relatively long period, if ground settlement occurs, problems such as construction in the surrounding soil area, etc., during use, due to metal fatigue stress in the pipeline, the fuel filling plug well and the high and low point equipment will shift and skew. When the equipment shift and skew approach the critical point of shift and skew, there are certain potential safety hazards for this equipment. Therefore, strict measurement and calibration of relevant equipment are required.

[0003] At present, for a comprehensive apron equipment detection device in the prior art, there is no dedicated detection tool with a unified standard, the measurement accuracy is poor, the error is large, the operation is cumbersome, and there are a large number of fuel filling plug wells and high and low point equipment on the ground, resulting in a large workload, low work efficiency, a very demanding time requirement for the working environment, a short working window period, and the need for fast speed and accurate measurement during operation to ensure that it does not affect the taxiing in and out of the aircraft. Content of the Utility Model

[0004] The purpose of the utility model is to solve the problems in the prior art that there is no dedicated detection tool with a unified standard, the measurement accuracy is poor, the error is large, the operation is cumbersome, and there are a large number of fuel filling plug wells and high and low point equipment on the ground, resulting in a large workload, low work efficiency, a very demanding time requirement for the working environment, a short working window period, the need for fast speed and accuracy, and the inability to affect the taxiing in and out of the aircraft, and to propose a comprehensive apron equipment detection device.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme: A comprehensive apron equipment detection device, including a steel frame ring, two vertically horizontal brackets are fixed inside the steel frame ring, a hole sleeve is fixedly installed inside the two brackets, a quick connector is installed inside the hole sleeve, a vernier caliper is installed at the bottom end of the quick connector, a circular horizontal steel plate is additionally provided on one side of the steel frame ring 1, four hand-tightening stepped screws are equidistantly threadedly connected to the bottom end of the circular horizontal steel plate, steel sheet feet are provided at the bottom ends of the four hand-tightening stepped screws, and locking nuts are threadedly connected to the outer walls of the four hand-tightening stepped screws.

[0006] Preferably, the two brackets are fixedly cross-intersected, and the hole sleeve is fixed at the intersection of the two brackets.

[0007] Preferably, spacer rings are fixedly installed at both the positive and negative ends inside the hole sleeve, and the quick connector is placed inside the hole sleeve through the spacer rings.

[0008] Preferably, the female head of the quick connector is arranged above the hole sleeve, the male head of the quick connector is arranged below the hole sleeve, and the vernier caliper is installed on the male head of the quick connector.

[0009] Preferably, four through-threaded holes matching the hand-tightened step screws are evenly distributed in the circular horizontal steel plate.

[0010] Compared with the prior art, the advantages and positive effects of the utility model are:

[0011] In the utility model, this device is divided into two detection devices. The first detection device: when we measure the offset of the ground well oiling hydrant well equipment, first install the quick connector into the hole sleeve, then put this component on the ground well barrel step, rotate the quick connector, adjust the positioning pointer on the vernier caliper to align with the center point of the oiling hydrant, take out the equipment, align the data on the vernier caliper, and get the displacement data of the hydrant well. When we measure the high and low point equipment, first install the quick connector in reverse, and turn the steel ring on the high and low point well barrel steps in reverse, and get the data by the same operation. The second detection device: on the horizontal workbench, a digital level is placed on the circular horizontal steel plate, and the circular horizontal steel plate is adjusted to the level by adjusting the height of the hand-tightening step screw (the hand-tightening step screw can emerge from the other side of the circular horizontal steel plate), and the locking nut on the hand-tightening step screw is tightened to lock the hand-tightening step screw. When testing the ground well oiling hydrant well equipment, the steel sheet support foot is reversed on the oiling hydrant plane of the diameter, and the digital level is placed on the circular horizontal steel plate, and the data is read out, and the measurement is completed. When measuring high and low point equipment, place the equipment upside down. Since the length of the hand-tightened step screw is greater than the high and low point heads, the bottom of the hand-tightened step screw falls on the flange platform at the lower end of the high and low points. The digital level can be placed on the flat plate to read the data and complete the measurement. This device is easy to operate and can quickly monitor values ​​to reduce safety hazards. The equipment has a simple structure and can be quickly matched to improve production efficiency and reduce use costs. The equipment is multifunctional and can simultaneously meet the monitoring of gas hydrants and high and low point equipment, meeting the design concept of reducing costs and increasing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 A stereoscopic diagram of a comprehensive device for detecting apron equipment is proposed for the utility model;

[0013] Figure 2 A stereoscopic diagram of a comprehensive device for detecting apron equipment is proposed for the utility model;

[0014] Figure 3 A cross-sectional view of the internal structure of a steel frame ring of a comprehensive device for detecting apron equipment is proposed for the utility model;

[0015] Figure 4This is a schematic diagram of the circular horizontal steel plate structure of a comprehensive device for apron equipment detection proposed by the present utility model.

[0016] Legend: 1. Steel frame ring; 2. Bracket; 3. Bush; 4. Quick coupling; 5. Vernier caliper; 6. Circular horizontal steel plate; 7. Hand-tightening stepped screw; 8. Locking nut; 9. Through-hole thread; 10. Steel sheet support foot; 11. Spacer ring. Detailed implementation mode

[0017] In order to more clearly understand the above-mentioned objects, features and advantages of the present utility model, the following further describes the present utility model with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0018] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the present utility model is not limited by the specific embodiments disclosed in the following specification.

[0019] Embodiment 1, as Figures 1-4 shown, the present utility model provides a comprehensive device for apron equipment detection, including a steel frame ring 1. Two vertically horizontal brackets 2 are fixed inside the steel frame ring 1. A bush 3 is jointly fixed inside the two brackets 2. A quick coupling 4 is installed inside the bush 3. A vernier caliper 5 is installed at the bottom end of the quick coupling 4. A circular horizontal steel plate 6 is additionally provided on one side of the steel frame ring 1. Four hand-tightening stepped screws 7 are equidistantly threadedly connected to the bottom end of the circular horizontal steel plate 6. Steel sheet support feet 10 are provided at the bottom ends of the four hand-tightening stepped screws 7. Locking nuts 8 are threadedly connected to the outer walls of the four hand-tightening stepped screws 7.

[0020] The effects achieved by the entire embodiment 1 are as follows: first, when we measure the offset of the ground well gas hydrant well equipment, first install the quick connector 4 into the hole sleeve 3, and then place this component on the ground well barrel step of the gas hydrant, by rotating the quick connector 4, adjust the positioning pointer on the vernier caliper 5 to align with the center point of the gas hydrant, take out the equipment, align the eyes with the data on the vernier caliper 5, and obtain the gas hydrant well offset data. When we measure high and low point equipment, first install the quick connector 4 in reverse, and turn the steel frame ring 1 to the high and low point bucket step well. The same operation is used to obtain data. Second: On the horizontal workbench, place a digital level on the circular horizontal steel plate 6. Adjust the height of the hand-tightened step screw 7 so that the hand-tightened step screw 7 does not come out of the other side of the circular horizontal steel plate 6. Adjust the circular horizontal steel plate 6 to the level, tighten the locking nut 8 on the hand-tightened step screw 7 to lock the hand-tightened step screw 7. When testing the ground well oil hydrant well equipment, reverse the steel sheet support foot 10 on the oil hydrant plane of the diameter, place the digital level on the circular horizontal steel plate 6, read the data, and the measurement is completed. When measuring high and low point equipment, place the equipment in reverse. Because the length of the hand-tightened step screw 7 is greater than the high and low point head equipment, the bottom of the hand-tightened step screw 7 falls on the flange platform at the lower end of the high and low point head, and the digital level can be placed on the flat plate.

[0021] Embodiment 2, as Figures 1-4 As shown, two brackets 2 are fixed in a cross shape, a hole sleeve 3 is fixed at the intersection of the two brackets 2, spacer rings 11 are fixed at both ends of the hole sleeve 3, and the quick connector 4 is placed in the hole sleeve 3 through the spacer ring 11. The female head of the quick connector 4 is arranged above the hole sleeve 3, and the male head of the quick connector 4 is arranged below the hole sleeve 3, and a vernier caliper 5 is installed on the male head of the quick connector 4. Four through-threaded holes 9 matching the hand-tightened step screw 7 are equidistantly distributed in the circular horizontal steel plate 6.

[0022] The effect achieved by the entire embodiment 2 is that, through the setting of the through-threaded hole 9, it is convenient to manually screw the step screw 7 and the circular horizontal steel plate 6 together by threading, and through the setting of the spacer ring 11, the quick connector 4 is limited to prevent the quick connector 4 from falling directly.

[0023] Working principle: When the device is used, first: when we measure the offset of the ground well gas hydrant well equipment, first install the quick connector 4 into the hole sleeve 3, and then put this component on the step of the gas well bucket, by rotating the quick connector 4, adjust the positioning pointer on the vernier caliper 5 to align with the center point of the gas hydrant, take out the device, align the data on the vernier caliper 5, and obtain the gas hydrant well offset data. When we measure high and low point equipment, first install the quick connector 4 in reverse, and turn the steel frame ring 1 to the high and low point well barrel steps, and the same operation to get the data, second: on the horizontal workbench, place a digital level on the circular horizontal steel plate 6, and adjust the height of the hand-tightened step screw 7 so that the hand-tightened step screw 7 does not come out of the other side of the circular horizontal steel plate 6, adjust the circular horizontal steel plate 6 to the level, tighten the locking nut 8 on the hand-tightened step screw 7 to lock the hand-tightened step screw 7, when testing the well oil hydrant equipment, put the steel sheet support foot 10 on the oil hydrant plane of the diameter, place the digital level on the circular horizontal steel plate 6, read the data, and the measurement is completed. When measuring high and low point equipment, place the equipment in reverse. Because the length of the hand-tightened step screw 7 is greater than the high and low point heads, the bottom of the hand-tightened step screw 7 falls on the flange platform at the lower end of the high and low point equipment, and the digital level can be placed on the flat plate.

[0024] The above description is only a preferred embodiment of the present invention and does not limit the present invention in other forms. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes and apply it to other fields. However, any simple modification, equivalent change and modification made to the above embodiment based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still falls within the protection scope of the technical solution of the present invention.

Claims

1. A comprehensive device for detecting apron equipment, comprising a steel frame ring (1), characterized in that: Two vertical and horizontal brackets (2) are fixed in the steel frame ring (1), and a hole sleeve (3) is fixed in the two brackets (2). A quick connector (4) is installed in the hole sleeve (3), and a vernier caliper (5) is installed at the bottom end of the quick connector (4). A circular horizontal steel plate (6) is also provided on one side of the steel frame ring (1), and four hand-tightened step screws (7) are equidistantly threaded at the bottom end of the circular horizontal steel plate (6). The bottom ends of the four hand-tightened step screws (7) are all provided with steel sheet support feet (10), and the outer walls of the four hand-tightened step screws (7) are all threadedly connected with locking nuts (8).

2. The comprehensive device for detecting apron equipment according to claim 1 is characterized in that: The two brackets (2) are cross-fixed, and the hole sleeve (3) is fixed at the intersection of the two brackets (2).

3. The comprehensive device for detecting apron equipment according to claim 1 is characterized in that: Spacer rings (11) are fixed at both the front and back ends of the hole sleeve (3), and the quick connector (4) is placed in the hole sleeve (3) through the spacer ring (11).

4. The comprehensive device for detecting apron equipment according to claim 1 is characterized in that: The female head of the quick connector (4) is arranged above the hole sleeve (3), the male head of the quick connector (4) is arranged below the hole sleeve (3), and the vernier caliper (5) is mounted on the male head of the quick connector (4).

5. The comprehensive device for detecting apron equipment according to claim 1 is characterized in that: Four through-threaded holes (9) matching the hand-tightened step screw rod (7) are evenly distributed in the circular horizontal steel plate (6).

Citation Information

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