CN219810866U - Pipeline welding part flaw detection device - Google Patents

Pipeline welding part flaw detection device Download PDF

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Publication number
CN219810866U
CN219810866U CN202320809681.0U CN202320809681U CN219810866U CN 219810866 U CN219810866 U CN 219810866U CN 202320809681 U CN202320809681 U CN 202320809681U CN 219810866 U CN219810866 U CN 219810866U
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China
Prior art keywords
wall
plate
flaw detector
fixedly arranged
driving device
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CN202320809681.0U
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Chinese (zh)
Inventor
齐振良
张启航
齐莹
杨国辉
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Shenyang Yida Nondestructive Testing Co ltd
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Shenyang Yida Nondestructive Testing Co ltd
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Abstract

The utility model discloses a flaw detection device for pipeline welding parts, which comprises a flaw detector, wherein a driving device is arranged on the left side of the flaw detector, a mounting member is arranged on the outer wall of the flaw detector, and a cleaning member is arranged on the right side of the mounting member. The utility model provides a flaw detection device for pipeline welding parts, which can drive and move a flaw detector and an installation component through the matched use of components in a driving device, can support the installation component at the same time, can fixedly install the flaw detector through the matched use of components in the installation component, can drive a cleaning component at the same time, and can clean dust in a pipeline through the matched use of components in the cleaning component, so that the position of a welding spot in a pipeline can be cleaned, and the detection is convenient.

Description

Pipeline welding part flaw detection device
Technical Field
The utility model relates to the field of pipeline flaw detection, in particular to a flaw detection device for pipeline welding parts.
Background
The X-ray damage flaw detector principle utilizes X-ray to penetrate substances and have the characteristic of attenuation in substances to find a nondestructive flaw detection method, X-rays can detect internal flaws of metal and nonmetal materials and products thereof, such as air holes and slag inclusions in welding seams, the penetrating capacity of the X-ray flaw detector with the volume defects such as incomplete penetration depends on the capacity of the X-ray flaw detector, namely, the higher the tube voltage of the X-ray flaw detector is, the harder the X-rays are, the higher the penetrating capacity is, the square proportion of the tube voltage is, in addition, the same tube voltage is also related to the properties such as the density of the material of the inspected workpiece, namely, the attenuation capacity of the inspected workpiece to the X-rays is related to the heavy metals such as steel and thicker workpieces, and the X-ray flaw detector with higher tube voltage is selected due to the stronger attenuating capacity to the X-rays; for light metals such as aluminum, magnesium and the like and thinner workpieces, an X-ray flaw detector with lower tube voltage can be selected;
at present, when flaw detection is carried out on a pipeline welding position, dust and dust in the pipeline cannot be cleaned, so that the detection effect of the flaw detector can be affected when the dust and the dust are more, and deviation can occur in detection.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model aims to provide a flaw detection device for pipeline welding parts.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides a pipeline welding department flaw detection device, includes the defectoscope, the left side of defectoscope is provided with drive arrangement, the outer wall of defectoscope is provided with the installation component, cleaning member is installed on the right side of installation component, drive arrangement's right side is provided with rotating member.
Further, the motor starts to work and drives through the output shaft the double-screw bolt starts to rotate, the double-screw bolt drives the slide through the drive piece when rotating and removes at orbital outer wall, the slide can drive the fault detector and detect work, the slide is when removing through the inside of support drive ring board at the pipeline and remove, the ring board is at the removal in-process through the brush to the pipeline inside clear up work.
Further, threads matched with the thread blocks are arranged in the top end of the inserting plate.
The beneficial effects of the utility model are as follows: the utility model provides a flaw detection device for pipeline welding parts, which can drive and move a flaw detector and a mounting component through the matched use of components in a driving device, can support the mounting component, can fixedly mount the flaw detector through the matched use of components in the mounting component, can drive a cleaning component, and can clean dust and dust in a pipeline through the matched use of components in the cleaning component, so that the position of a welding spot in the pipeline can be cleaned, and the detection is convenient.
Drawings
Fig. 1 is a schematic diagram of the present utility model.
Fig. 2 is a right side view of the mounting member of fig. 1 in detail.
Fig. 3 is a right side view of the mounting member of fig. 1 in detail.
Fig. 4 is a right-side view of the driving device of fig. 1 in detail.
Fig. 5 is a top view of a detail of the connection of the rotary member of fig. 1.
Fig. 6 is a right-side view of the rotary member of fig. 1 in detail.
Fig. 7 is a detailed view of the connection structure at a position enlarged in fig. 1.
Reference numerals illustrate: 1. the flaw detector comprises a flaw detector body, 2, a driving device, 201, a transverse plate, 202, a motor base, 203, a motor, 204, a vertical rod, 205, a plugboard, 206, a threaded block, 207, a stud, 3, a mounting component, 301, a track, 302, a sliding plate, 303, a screw, 304, a buckle plate, 305, a fixed block, 306, a driving block, 307, a roller, 308, a ring plate, 4, a cleaning component, 401, a bracket, 402, a ring plate, 403, a brush, 5, a rotating component, 501, a first belt pulley, 502, a belt, 503, a second belt pulley, 504, a rotating rod, 505 and a roller.
Detailed Description
The utility model will be further illustrated with reference to specific examples, which are to be understood as illustrative only and are not intended to limit the scope of the utility model. Further, it is understood that various changes and modifications may be made by those skilled in the art after reading the teachings of the present utility model, and such equivalents are intended to fall within the scope of the claims appended hereto.
Referring to fig. 1-7, which are schematic structural views of the present utility model, a flaw detection device for a pipeline welding place comprises a flaw detector 1, wherein a driving device 2 is arranged on the left side of the flaw detector 1, the driving device 2 is used for driving a mounting member 3 and the flaw detector 1, a mounting member 3 is arranged on the outer wall of the flaw detector 1, the mounting member 3 is used for mounting and fixing the flaw detector 1, a cleaning member 4 is arranged on the right side of the mounting member 3, the cleaning member 4 is used for cleaning a pipeline to be detected, a rotating member 5 is arranged on the right side of the driving device 3, and the rotating member 5 is used for rotationally driving the flaw detector 1;
specifically, the cleaning member 4 includes: a holder 401, a ring plate 402 and brushes 403;
the support 401 screw thread sets up the outer wall at mounting member 3, and support 401 and slide 302 bolt set up, and support 401 can support annular plate 402, can follow the installation of slide 302 with annular plate 402 and dismantle, and annular plate 402 screw thread sets up on the right side of support 401, and brush 403 is fixed to be set up the outer wall at annular plate 402, and annular plate 402 can clear up brush 403, and slide 302 drives annular plate 402 through support 401 and removes.
More specifically, the driving device 2 includes: cross plate 201, motor base 202, motor 203, vertical rod 204, plugboard 205, screw block 206 and stud 207;
the diaphragm 201 sets up in the left side of defectoscope 1, motor cabinet 202 screw thread sets up in the bottom of diaphragm 201, motor 203 sets up in the inside of motor cabinet 202, motor cabinet 202 is used for installing fixedly motor 203, montant 204 screw thread sets up on the top of diaphragm 201, montant 204 can support plugboard 205, plugboard 205 can insert on the outer wall of pipeline, plugboard 205 is fixed to be set up on the top of montant 204, thread block 206 screw thread sets up in the top of plugboard 205 inside, thread block 206 can fix plugboard 205 at the outer wall of pipeline, double-screw bolt 207 is fixed to be set up on motor 203's output shaft, motor 203 is used for driving double-screw bolt 207 and rotates.
The top end of the insert 205 is internally provided with threads that mate with the threaded block 206, and the threads provide a mounting location for the threaded block 206.
More specifically, the mounting member 3 includes: track 301, slide plate 302, screw 303, pinch plate 304, fixed block 305 and driving block 306;
the track 301 is fixedly arranged on the right side of the driving member 2, the track 301 and the transverse plate 201 are fixedly arranged, the track 301 is used for guiding and supporting the sliding plate 302, a supporting frame is arranged at the other end of the track 301, the sliding plate 302 is arranged on the outer wall of the track 301 in a sliding mode, the sliding plate 302 can slide left and right on the outer wall of the track 301, the screw 303 is symmetrically and fixedly arranged on the top end of the sliding plate 302, the screw 303 is matched with the fixing block 305 to fix the pinch plate 304, the pinch plate 304 is matched with the sliding plate 302 to mount the flaw detector 1, meanwhile, the flaw detector 1 can rotate in the pinch plate 304 and the sliding plate 302, the pinch plate 304 is inserted into the outer wall of the screw 303, the fixing block 305 is arranged on the outer wall of the screw 303 in a threaded mode, the driving block 306 is fixedly arranged at the center of the bottom end of the sliding plate 302, the stud 207 can drive the driving block 306 to move left and right, and the driving block 306 is connected with the stud 207 in a threaded mode.
More specifically, the rotary member includes: a first pulley 501, a belt 502, a second pulley 503, a rotating rod 504 and a roller 505;
the first belt pulley 501 is fixedly arranged on the outer wall of the driving member 2, the first belt pulley 501 and the stud 207 are fixedly arranged, the stud 207 can drive the first belt pulley 501 to rotate when rotating, the first belt pulley 501 can drive the second belt pulley 503 to rotate through the belt 502, the belt 502 is wound on the outer wall of the first belt pulley 501, the second belt pulley 503 is sleeved on the inner wall of the belt 502, the second belt pulley 503 can drive the rotating rod 504 to rotate in the rotating process, the left side of the rotating rod 504 is connected with the transverse plate 201 through a bearing, the rotating rod 504 is fixedly arranged in the second belt pulley 503, the roller 505 is arranged on the outer wall of the rotating rod 504 in a sliding mode, the roller 505 can slide left and right on the outer wall of the rotating rod 504, and meanwhile the rotating rod 504 can drive the roller 505 to rotate through a limiting block, and the roller 505 is contacted with the flaw detector 1 to drive the flaw detector 1 to rotate.
When the utility model is used, the plugboard 205 is firstly inserted into the outer wall of a pipeline, the plugboard 205 and the pipeline are fixed by the rotating threaded block 206 after the plugboard is inserted, the flaw detector 1 is placed on the sliding plate 302 after the plugboard is fixed, the pinch plate 304 is buckled on the outer wall of the flaw detector 1 and the screw 303 after the plugboard is placed, the pinch plate 304 is installed through the fixing block 305 after the pinch plate 304 is buckled, the motor 203 is controlled by the control unit to start working, the stud 207 is driven by the output shaft to start to rotate when the motor 203 starts working, the sliding plate 302 is driven by the driving block 306 to move on the outer wall of the track 301 when the stud 207 rotates, the sliding plate 302 can drive the flaw detector 1 to detect, the sliding plate 302 drives the annular plate 402 to move in the pipeline through the bracket 401 when the sliding plate 302 moves, the annular plate 402 can clean the interior of the pipeline through the brush 403 in the moving process, dust on the welding position can be cleaned through the brush 403, the flaw detector 1 is detected after the cleaning, the stud 207 rotates, the first belt pulley 501 is driven to rotate in the rotating process, the second belt pulley 503 is driven by the belt 502 to rotate, the second belt pulley 504 rotates when the first belt pulley 503, the right belt pulley 504 rotates, the second belt pulley 504 is driven by the belt 505 to rotate on the rotating, the side of the rotating plate 505, the rolling bar 302 rotates the rolling plate is driven by the rolling plate, and the rolling plate 505, the rolling plate is driven by the rolling plate, and the rolling plate is driven.

Claims (5)

1. The flaw detection device for the pipeline welding position comprises a flaw detector (1), and is characterized in that a driving device (2) is arranged on the left side of the flaw detector (1), an installation member (3) is arranged on the outer wall of the flaw detector (1), a cleaning member (4) is arranged on the right side of the installation member (3), and a rotating member (5) is arranged on the right side of the driving device (2);
the cleaning member (4) includes:
a bracket (401) which is arranged on the outer wall of the mounting component (3) in a threaded manner;
a ring plate (402) which is arranged on the right side of the bracket (401) in a threaded manner;
and the hairbrush (403) is fixedly arranged on the outer wall of the annular plate (402).
2. A pipe weld inspection apparatus according to claim 1, wherein: the driving device (2) includes:
a cross plate (201) provided on the left side of the flaw detector (1);
the motor base (202) is arranged at the bottom end of the transverse plate (201) in a threaded manner;
a motor (203) disposed inside the motor base (202);
the vertical rod (204) is arranged at the top end of the transverse plate (201) in a threaded manner;
the plugboard (205) is fixedly arranged at the top end of the vertical rod (204);
a screw block (206) which is screw-mounted inside the top end of the insert plate (205);
and the stud (207) is fixedly arranged on the output shaft of the motor (203).
3. A pipe weld inspection apparatus according to claim 2, wherein: threads matched with the thread blocks (206) are arranged in the top end of the inserting plate (205).
4. A pipe weld inspection apparatus according to claim 2, wherein: the mounting member (3) comprises:
a rail (301) fixedly arranged on the right side of the driving device (2);
a slide plate (302) slidably disposed on an outer wall of the rail (301);
the screw rods (303) are symmetrically and fixedly arranged at the top ends of the sliding plates (302);
the buckle plate (304) is inserted into the outer wall of the screw (303);
the fixed block (305) is arranged on the outer wall of the screw (303) in a threaded manner;
the driving block (306) is fixedly arranged at the bottom center of the sliding plate (302), and the driving block (306) is in threaded connection with the stud (207).
5. A pipe weld inspection apparatus according to claim 2, wherein: the rotary member (5) comprises:
a first belt pulley (501) fixedly arranged on the outer wall of the driving device (2);
a belt (502) wound around the outer wall of the first pulley (501);
a second belt pulley (503) sleeved on the inner wall of the belt (502);
the rotating rod (504) is fixedly arranged in the second belt pulley (503);
and the roller (505) is arranged on the outer wall of the rotating rod (504) in a sliding manner.
CN202320809681.0U 2023-04-13 2023-04-13 Pipeline welding part flaw detection device Active CN219810866U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320809681.0U CN219810866U (en) 2023-04-13 2023-04-13 Pipeline welding part flaw detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320809681.0U CN219810866U (en) 2023-04-13 2023-04-13 Pipeline welding part flaw detection device

Publications (1)

Publication Number Publication Date
CN219810866U true CN219810866U (en) 2023-10-10

Family

ID=88208708

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320809681.0U Active CN219810866U (en) 2023-04-13 2023-04-13 Pipeline welding part flaw detection device

Country Status (1)

Country Link
CN (1) CN219810866U (en)

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