CN216449480U - Device for nondestructive testing of ship surface - Google Patents

Device for nondestructive testing of ship surface Download PDF

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Publication number
CN216449480U
CN216449480U CN202122879643.6U CN202122879643U CN216449480U CN 216449480 U CN216449480 U CN 216449480U CN 202122879643 U CN202122879643 U CN 202122879643U CN 216449480 U CN216449480 U CN 216449480U
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install bin
mounting panel
test probe
electric putter
ultrasonic wave
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CN202122879643.6U
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Chinese (zh)
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杨栋杰
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Shanxi Institute of Mechanical and Electrical Engineering
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Shanxi Institute of Mechanical and Electrical Engineering
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Abstract

The utility model discloses a device for nondestructive testing of a ship surface, and relates to the field of nondestructive testing. The technical points are as follows: including detection device, detection device includes ultrasonic wave detection instrument and test probe, and ultrasonic wave detection instrument and test probe pass through the connection of electric lines, and the ultrasonic wave detection instrument is connected with the install bin, and the install bin is connected with the frame, and the frame is connected in unmanned aerial vehicle body downside, install bin week side fixedly connected with electric putter one end, and electric putter other end fixedly connected with mounting panel, mounting panel and test probe are connected. The utility model has the advantages that: can take detection device to accomplish the detection operation to the boats and ships surface through unmanned aerial vehicle, remove swiftly, mobility is better to be convenient for detect the recovery of finishing back detection device, convenient and practical.

Description

Device for nondestructive testing of ship surface
Technical Field
The utility model relates to the technical field of nondestructive testing, in particular to a device for nondestructive testing of a ship surface.
Background
In the construction and inspection of ships, nondestructive inspection of ships has become an important means for shipyards, shipowners, and shipyards to ensure the quality of ships and the safe operation of equipment.
The above prior art solution has the following drawbacks: the existing ship surface nondestructive testing device is fixed in detection position when in use, so that the detection range is smaller, and the detection process is more time-consuming and labor-consuming.
SUMMERY OF THE UTILITY MODEL
In view of the disadvantages of the prior art, the present invention provides a device for nondestructive testing of a ship surface, which has the following advantages: the unmanned aerial vehicle body of setting can take detection device to remove on the boats and ships surface, the mobile mode is convenient, the ultrasonic detection instrument cooperation test probe of setting can accomplish the detection on each surface of boats and ships under unmanned aerial vehicle's drive, convenient and practical, the electric putter of setting can adjust the interval between test probe and the unmanned aerial vehicle body, can nevertheless accomplish the detection near the position on boats and ships surface at the unmanned aerial vehicle body, the security of unmanned aerial vehicle flight in the testing process has been improved.
The above object of the present invention is achieved by the following technical solutions:
the utility model provides a device for boats and ships surface nondestructive test, includes detection device, detection device includes ultrasonic wave detection instrument and test probe, the ultrasonic wave detection instrument with test probe passes through the connection of electric lines, the ultrasonic wave detection instrument is connected with the install bin, the install bin is connected with the frame, the frame attach to unmanned aerial vehicle body downside, install bin week side fixedly connected with electric putter one end, electric putter other end fixedly connected with mounting panel, the mounting panel with test probe connects.
Through adopting above-mentioned technical scheme, the unmanned aerial vehicle body of setting can take detection device to remove on the boats and ships surface, the mobile mode is convenient, the ultrasonic detection instrument cooperation test probe of setting can accomplish the detection on each surface of boats and ships under unmanned aerial vehicle's drive, convenient and practical, the electric putter of setting can adjust the interval between test probe and the unmanned aerial vehicle body, can nevertheless accomplish the detection in the position that the unmanned aerial vehicle body is not excessively close to the boats and ships surface, the security of unmanned aerial vehicle flight in the testing process has been improved.
The present invention in a preferred example may be further configured to: the mounting panel is kept away from electric putter one side fixedly connected with magnet, the magnet annular sets up, a plurality of walking wheels are still installed to mounting panel week side, and are a plurality of the walking wheel set up respectively in the edge of mounting panel.
Through adopting above-mentioned technical scheme, the magnet that sets up can provide certain adsorption affinity when test probe is close to the boats and ships surface, in the testing process, can be so that test probe can be steady move along the boats and ships surface, reduces manual operation and causes test probe to break away from the possibility on boats and ships surface, and the walking wheel of setting is convenient for test probe and is removed along the boats and ships surface.
The present invention in a preferred example may be further configured to: the utility model discloses a telescopic link, including install bin, electric putter, telescopic link, installation bin week side still two telescopic link one ends of fixedly connected with, two the telescopic link flexible direction with electric putter flexible direction is the same, two the telescopic link set up relatively in electric putter both sides, two telescopic link other end fixed connection in the mounting panel.
Through adopting above-mentioned technical scheme, the telescopic link of setting can drive test probe to suitable position under electric putter's drive, can bear the shearing force of vertical direction for electric putter simultaneously, improves electric putter's bearing capacity, promotes the stability of mounting panel at the removal in-process.
The present invention in a preferred example may be further configured to: the installation box is the cuboid structure of cavity setting, and the lower surface sets up for open, the installation box upside is equipped with the passageway that the power supply line passed, the ultrasonic wave detection instrument through a plurality of bolted connection with the installation box is connected.
Through adopting above-mentioned technical scheme, the install bin that sets up can provide the mounted position for the ultrasonic wave detection instrument to connected the install bin and ultrasonic wave detection instrument through the connected mode of bolt, the connected mode is simple reliable.
The present invention in a preferred example may be further configured to: the installation box downside is connected with the waterproof board.
Through adopting above-mentioned technical scheme, the waterproof board that sets up can be when highly lower, prevent that the unrestrained installation box that spatters of water from inside, cause the ultrasonic wave detection instrument to intake, promote the protective effect to the ultrasonic wave detection instrument.
In summary, the utility model includes at least one of the following beneficial technical effects:
1. can take detection device to remove on the boats and ships surface through the unmanned aerial vehicle body that sets up, the mobile mode is convenient, the ultrasonic wave detection instrument cooperation test probe that sets up can accomplish the detection on each surface of boats and ships under unmanned aerial vehicle's drive, convenient and practical, the electric putter of setting can adjust the interval between test probe and the unmanned aerial vehicle body, can nevertheless accomplish the detection near the position on boats and ships surface at the unmanned aerial vehicle body, the security of unmanned aerial vehicle flight in the testing process has been improved.
2. Can provide certain adsorption affinity when test probe is close to the boats and ships surface through the magnet that sets up, in the testing process, can be so that test probe can be steady move along the boats and ships surface, reduce manual operation and cause test probe to break away from the possibility on boats and ships surface, the walking wheel of setting is convenient for test probe and is removed along the boats and ships surface.
3. Can drive test probe to suitable position under electric putter's drive through the telescopic link that sets up, can bear the shearing force of vertical direction for electric putter simultaneously, improve electric putter's bearing capacity, promote the stability of mounting panel at the removal in-process.
Drawings
FIG. 1 is a block diagram of a first perspective of the present invention;
fig. 2 is a structural view of a second perspective of the present invention.
Reference numerals: 1. a detection device; 101. an ultrasonic detector; 102. detecting a probe; 2. installing a box; 3. a frame; 4. an unmanned aerial vehicle body; 5. an electric push rod; 6. mounting a plate; 7. a magnet; 8. a traveling wheel; 9. a telescopic rod; 10. a waterproof board.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1 and fig. 2, the device for nondestructive testing of the surface of a ship disclosed by the utility model comprises a detection device 1, wherein the detection device 1 comprises an ultrasonic detector 101 and a detection probe 102, the ultrasonic detector 101 and the detection probe 102 are connected through an electric wire, the length of the electric wire is not less than the maximum extension length of an electric telescopic rod 9, the ultrasonic detector 101 can be matched with the detection probe 102 to complete the detection of each surface of the ship under the driving of an unmanned aerial vehicle, the device is convenient and practical, the ultrasonic detector is connected with a mounting box 2, a counterweight block is fixedly connected to one side of the mounting box 2, which is far away from the detection probe 102, and is used for balancing the gravity center of the whole device, the mounting box 2 can provide a mounting position for the ultrasonic detector, the mounting box 2 is connected with the ultrasonic detector through a bolt, the connection mode is simple and reliable, and the mounting box 2 is a hollow rectangular structure, the lower surface of the installation box 2 is open, the waterproof plate 10 is connected to the lower side of the installation box 2, the waterproof plate 10 can prevent water waves from splashing inside the installation box 2 when the height is lower, the water enters the ultrasonic detector, the protection effect on the ultrasonic detector is improved, a channel through which a power supply line passes is arranged on the upper side of the installation box 2, the ultrasonic detector 101 is connected with the installation box 2 through a plurality of bolt connections, the installation box 2 is connected with a frame 3, the frame 3 is connected to the lower side of an unmanned aerial vehicle body 4, the unmanned aerial vehicle body 4 can drive the detection device 1 to move on the surface of a ship, the moving mode is convenient, one end of an electric push rod 5 is fixedly connected to the periphery of the installation box 2, the expansion direction of the electric push rod 5 is horizontal, the other end of the electric push rod 5 is fixedly connected with an installation plate 6, the electric push rod 5 can adjust the distance between the detection probe 102 and the unmanned aerial vehicle body 4, and detection can be completed at a position where the unmanned aerial vehicle body 4 is not excessively close to the surface of the ship, the flying safety of the unmanned aerial vehicle in the detection process is improved, one end of each of two telescopic rods 9 is fixedly connected to the periphery of the installation box 2, the telescopic direction of each of the two telescopic rods 9 is the same as that of the electric push rod 5, the two telescopic rods 9 are oppositely arranged on two sides of the electric push rod 5, the telescopic rods 9 can drive the detection probe 102 to a proper position under the driving of the electric push rod 5, meanwhile, the electric push rod 5 can bear the shearing force in the vertical direction, the bearing capacity of the electric push rod 5 is improved, the stability of the mounting plate 6 in the moving process is improved, the other ends of the two telescopic rods 9 are fixedly connected to the mounting plate 6, one side of the mounting plate 6, away from the electric push rod 5, is fixedly connected with the magnet 7, the magnet 7 is annularly arranged, when the detection probe 102 is close to the surface of the ship, a certain adsorption force is provided, and in the detection process, the detection probe 102 can stably move along the surface of the ship, reduce manual operation and cause the possibility that test probe 102 breaks away from the boats and ships surface, a plurality of walking wheels 8 are still installed to mounting panel 6 week side, a plurality of walking wheels 8 set up respectively in the edge of mounting panel 6, walking wheel 8 is convenient for test probe 102 and removes along the boats and ships surface, the interval of walking wheel 8 keeping away from mounting panel 6 one side and mounting panel 6 is not more than and test probe 102 keeps away from mounting panel 6 one side and the interval of ann mounting panel 6, mounting panel 6 is connected with test probe 102.
The implementation principle of the embodiment is as follows: during the use, take off through unmanned aerial vehicle control panel control unmanned aerial vehicle, until flying to the position that is close to the boats and ships surface, at this moment, start electric putter 5, drive test probe 102 to the position of keeping away from unmanned aerial vehicle body 4, make in the testing process, certain safe distance has between unmanned aerial vehicle body 4 and the boats and ships surface, it is close to the boats and ships surface to control unmanned aerial vehicle again, until test probe 102 butt in the boats and ships surface, carry out nondestructive test through test probe 102 and ultrasonic detection instrument to the boats and ships surface, control unmanned aerial vehicle flight again, accomplish the detection operation on boats and ships surface.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered by the protection scope of the utility model.

Claims (5)

1. An apparatus for non-destructive inspection of a surface of a ship, comprising an inspection apparatus (1), characterized in that: detection device (1) includes ultrasonic wave detection instrument (101) and test probe (102), ultrasonic wave detection instrument (101) with test probe (102) pass through the connection of electric lines, ultrasonic wave detection instrument (101) are connected with install bin (2), install bin (2) are connected with frame (3), frame (3) are connected in unmanned aerial vehicle body (4) downside, install bin (2) week side fixedly connected with electric putter (5) one end, electric putter (5) other end fixedly connected with mounting panel (6), mounting panel (6) with test probe (102) are connected.
2. The apparatus of claim 1, wherein the apparatus comprises: keep away from mounting panel (6) electric putter (5) one side fixedly connected with magnet (7), magnet (7) annular sets up, a plurality of walking wheels (8), a plurality of are still installed to mounting panel (6) week side walking wheel (8) set up respectively in the edge of mounting panel (6).
3. The apparatus of claim 1, wherein the apparatus comprises: install bin (2) week side is still two telescopic link (9) one end of fixedly connected with, two telescopic link (9) flexible direction with electric putter (5) flexible direction is the same, two telescopic link (9) set up relatively in electric putter (5) both sides, two telescopic link (9) other end fixed connection in mounting panel (6).
4. The apparatus of claim 1, wherein the apparatus comprises: install bin (2) are the cuboid structure of cavity setting, and the lower surface sets up for open, install bin (2) upside is equipped with the passageway that the power supply line passed, ultrasonic wave detection instrument (101) through a plurality of bolted connection with install bin (2) are connected.
5. The apparatus of claim 4, wherein the apparatus comprises: the lower side of the installation box (2) is connected with a waterproof plate (10).
CN202122879643.6U 2021-11-23 2021-11-23 Device for nondestructive testing of ship surface Active CN216449480U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122879643.6U CN216449480U (en) 2021-11-23 2021-11-23 Device for nondestructive testing of ship surface

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122879643.6U CN216449480U (en) 2021-11-23 2021-11-23 Device for nondestructive testing of ship surface

Publications (1)

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CN216449480U true CN216449480U (en) 2022-05-06

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115932048A (en) * 2023-03-10 2023-04-07 山东大学 Concrete ultrasonic flaw detection device and method based on unmanned aerial vehicle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115932048A (en) * 2023-03-10 2023-04-07 山东大学 Concrete ultrasonic flaw detection device and method based on unmanned aerial vehicle

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