CN212111201U - Tool for conventional circumferential exposure of buried pipe - Google Patents

Tool for conventional circumferential exposure of buried pipe Download PDF

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Publication number
CN212111201U
CN212111201U CN202020863322.XU CN202020863322U CN212111201U CN 212111201 U CN212111201 U CN 212111201U CN 202020863322 U CN202020863322 U CN 202020863322U CN 212111201 U CN212111201 U CN 212111201U
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China
Prior art keywords
tool
bearing platform
pull rod
buried pipe
instrument
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Active
Application number
CN202020863322.XU
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Chinese (zh)
Inventor
陈玉美
张金星
张宝
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Jiangsu Maohua Inspection And Testing Co ltd
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Jiangsu Maohua Inspection And Testing Co ltd
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Priority to CN202020863322.XU priority Critical patent/CN212111201U/en
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Abstract

The utility model discloses a tool for circumferential exposure of a conventional buried pipe, which comprises a bearing table, wherein one side of a table top of the bearing table is provided with a first groove, a buckle is arranged in the first groove, one side of the table top of the bearing table is provided with a second groove, a bayonet is arranged in the second groove, one end of the buckle is connected with an elastic band, the buckle can be connected with the bayonet, an instrument placed on the bearing table is fixed by the elastic band, so that the tool can not fall off from the tool due to uneven road when the tool carries the instrument to move on the working site, the utility model has the advantages of scientific and reasonable structure, safe and convenient use, and when the tool carries the instrument to move on the working site, the tool can be shaken due to the broken stone, a damping spring can be upwards extruded by the own elasticity, and the springs under other wheels are kept unchanged, thereby reducing the shaking of the tool, the possibility of collision of the mounted instrument due to shaking is reduced.

Description

Tool for conventional circumferential exposure of buried pipe
Technical Field
The utility model relates to the technical field, specifically a frock of conventional buried pipe circumference exposure.
Background
In industry, some metals or non-metals often need to be checked for damages, and radiographic inspection is widely applied in the industrial field as a detection method of one of five conventional nondestructive detection methods, and can be used for radiographic inspection for pores, pinholes, inclusions, cracks, unfused parts, incomplete penetration, invagination and the like. The applied industries include but are not limited to special equipment, aerospace, ships, weapons, hydraulic plants and bridge steel structures.
It is often necessary to carry the instrument 360 degrees of rotation around the pipe for more convenient access to the test instrument for testing for gaps or cracks in the pipe, and for more convenient movement of the instrument, it is necessary for the test personnel to have a harness that can carry the instrument 360 degrees of rotation.
Meanwhile, as the instrument is moved with the instrument, if the harness shakes along an uneven road in the moving process, the instrument is easy to shake off from the harness, so that a novel tool is needed for pipeline detection personnel to solve the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a frock of conventional buried pipe circumference exposure to solve the problem that provides among the prior art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a frock of conventional buried pipe circumference exposure, including the bearing platform, first recess has been seted up to one side of the mesa of bearing platform, the internally mounted of first recess has the buckle, the second recess has been seted up to one side of the mesa of bearing platform, the internally mounted of second recess has the bayonet socket, the one end of buckle is connected with the elastic webbing, the buckle can be connected with the bayonet socket, fix the instrument of placing on the old bearing platform with the elastic webbing, make frock area instrument when moving on the workplace, can not lead to the instrument to drop from the frock because of the way of unevenness.
The pulley is installed to one side of the below of bearing platform, the universal wheel is installed to mid portion and the opposite side of the below of bearing platform, the connecting plate is installed to the wheel carrier top of pulley and universal wheel, the pulley is used for removing the frock, and the direction that the universal wheel can control the removal, can take the rotation that the frock goes on, damping spring is installed to the top of connecting plate, pulley and universal wheel utilize fastening bolt to fix in the below of bearing platform, when the frock takes the instrument to move on the workplace, can meet the rubble piece, lead to the frock shake, damping spring can upwards be extruded because of the elasticity of self by the rubble piece, and the spring under other wheels keeps unchangeable, reduce the shake of frock, the possibility of colliding with of the instrument that leads to carrying because of the shake has been.
The middle part of bearing platform is seted up flutedly, the internally mounted of recess has the pull handle, flexible control button is installed to the top of pull handle, flexible control button can control the pull out and withdraw of first pull rod and second pull rod and third pull rod, first pull rod is installed to the below of pull handle, first pull rod overcoat has the second pull rod, second pull rod overcoat has the third pull rod, can continue to pull out the second pull rod that hides in the third pull rod when the first pull rod that stretches out not enough long term and increase pull rod length, when convenient too heavy together, make things convenient for many people to stimulate the frock together, the rotation axis is installed to the bottom of third pull rod, the rotation axis can let the pull rod rotate round the rotation axis, the people of convenient pulling frock finds a suitable angle of oneself high and carries out the pulling to the frock.
Portable bayonet socket has been seted up at the middle part of bearing platform, portable bayonet socket can conveniently carry the frock, can directly lift up and take away, there is a bellied stopper in the recess of bearing platform, U type recess has been seted up to the stopper upper end, install the sliding block between the both sides pull rod of third pull rod, the U type recess of seting up on the stopper can be gone into to the sliding block, the sliding block can slide from top to bottom along the third railing, need receive after the frock is used up, when the pull rod is withdrawed and is placed in the recess of bearing platform, the sliding block moves down and can restrict the position of pull rod after the card goes into U type recess, do not let the pull rod can be because the frock is lifted up and fall out.
The both sides internally mounted of bearing platform has tensile board, and tensile board has the lug in the inside one side of bearing platform, and tensile mouth has been seted up to one side of tensile board, can pull out tensile board when the instrument is not enough placed to the mesa of bearing platform, and the lug can restrict the length that tensile board pulled out, and the people that the existence of tensile mouth conveniently pulled the frock pulls out tensile board.
Compared with the prior art, the beneficial effects of the utility model are that:
1. general harness meets the way of unevenness and probably takes place the shake when removing for place the instrument instability on the harness, thereby have the danger that drops, if the instrument drops, probably cause the damage to the instrument, so and the utility model discloses an install damping spring on the wheel, damping spring can weaken the vibrations of harness, has guaranteed that can not take place to collide with because of the harness shake of the instrument of carrying on the harness.
2. General harness takes the instrument to meet the road that has inclination on upslope or downhill path this kind at the removal in-process, and the instrument of placing on the harness can be at upslope or downhill path in-process landing, can cause the damage to the instrument equally, and the utility model discloses an installed the buckle, can fix the instrument when putting the harness with the instrument, can not lead to the instrument to drop because of the vibrations of frock or because of the slope of road.
3. The utility model discloses can 360 degrees rotate, when meetting to bury the pipeline that can't remove on the industrial site like this and need examine, can use the utility model discloses push away detecting instrument around the pipe and carry out 360 degrees rotations around winding the pipeline, the convenience detects a week of pipeline.
Drawings
Fig. 1 is a schematic structural view of a conventional buried pipe circumferential exposure tool according to the present invention in a front view;
fig. 2 is a schematic structural view of a bearing table of a conventional buried pipe circumferential exposure tool of the present invention;
fig. 3 is a schematic bottom structure view of a bearing table of a conventional buried pipe circumferential exposure tool of the present invention;
fig. 4 is a schematic side view of a bearing table of a conventional buried pipe circumferential exposure tool of the present invention;
fig. 5 is a schematic drawing of a stretching plate structure of a conventional buried pipe circumferential exposure tool of the present invention;
fig. 6 is a schematic diagram of a pull rod structure of a conventional tool for circumferential exposure of a buried pipe.
Reference numbers in the figures: 1. a bearing table; 2. pulling a handle; 3. a telescoping control button; 4. buckling; 5. a bayonet; 6. a first groove; 7. a second groove; 8. a rotating shaft; 9. stretching the plate; 10. stretching the opening; 11. a first pull rod; 12. a second pull rod; 13. a third pull rod; 14. carrying out hand bayonet; 15. a pulley; 16. a universal wheel; 17. fastening a bolt; 18. a connecting plate; 19. a damping spring; 20. a slider; 21. a limiting block; 22. and (4) a bump.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example (b): as shown in fig. 1-6, the utility model provides a technical scheme, a frock of conventional ground pipe laying circumference exposure, including bearing platform 1, first recess 6 has been seted up to one side of the mesa of bearing platform 1, the internally mounted of first recess 6 has buckle 4, second recess 7 has been seted up to one side of the mesa of bearing platform 1, the internally mounted of second recess 7 has bayonet 5, the elastic webbing is connected to the one end of buckle 4, pull out buckle 4, the buckle can be taken out the elastic webbing and taken out, the elastic webbing can adapt to not unidimensional instrument from taking elasticity, after buckle 4 is connected with bayonet 5, the instrument of placing on the bearing platform can be fixed to the elastic webbing, when making frock area instrument move on the factory, can not lead to the instrument to drop from the frock because of the way of unevenness.
A pulley 15 is arranged on one side below the bearing table 1, a universal wheel 16 is arranged on the middle part and the other side below the bearing table 1, a connecting plate 18 is arranged above a wheel frame of the pulley 15 and the universal wheel 16, the pulley 15 is used for moving a tool, the universal wheel 16 can control the moving direction and can drive the tool to rotate by 360 degrees, a damping spring 19 is arranged above the connecting plate 18, the pulley 15 and the universal wheel 16 are fixed below the bearing table 1 by a fastening bolt 17, when the tool drives an instrument to move on a field, the tool can possibly encounter broken stones to cause tool shaking, when the broken stones pass through the broken stones, the broken stones have an upward extrusion acting force on the wheel, the wheel has an upward extrusion acting force on the connecting plate 18, the same connecting plate 18 can also extrude the spring, and the damping spring 19 can compress the length of the wheel when the self elasticity is extruded upwards, meanwhile, when the other wheels do not meet broken stones, the length of the damping spring 19 which is not extruded is kept unchanged, so that the shaking of the tool is reduced, and the possibility of collision of the carried instrument caused by shaking is reduced.
The middle part of bearing platform 1 is seted up flutedly, the internally mounted of recess has pull handle 2, flexible control button 3 is installed to the top of pull handle 2, flexible control button 3 can control pulling out and withdrawing of first pull rod 11 and second pull rod 12 and third pull rod 13, first pull rod 11 is installed to the below of pull handle 2, first pull rod 11 overcoat has second pull rod 12, second pull rod 12 overcoat has third pull rod 13, can continue to pull out the second pull rod 2 that hides in third pull rod 13 when the first pull rod 11 that stretches out not long enough increases pull rod length, conveniently when too heavy together, make things convenient for many people to stimulate the frock together, rotation axis 8 is installed to the bottom of third pull rod 13, rotation axis 8 can let the pull rod rotate round rotation axis 8, the people that conveniently stimulate the frock finds an angle of suitable oneself high and carries out the pulling to the frock.
Portable bayonet socket 14 has been seted up at the middle part of bearing platform 1, portable bayonet socket 14 can conveniently carry the frock, when meetting the condition that can't push away the frock removal, can directly lift up the frock and take away, there is a bellied stopper 21 in the recess of bearing platform 1, U type recess has been seted up to stopper 21 upper end, install sliding block 20 between the both sides pull rod of third pull rod 13, sliding block 20 can block the U type recess of seting up on stopper 21, sliding block 20 can slide from top to bottom along third railing 13, need receive after the frock is used up, when the pull rod is withdrawed and is placed in the recess of bearing platform, sliding block 20 moves down and blocks the position that can restrict the pull rod after the U type recess, do not let the pull rod can be because the frock is lifted up and fall out.
The both sides internally mounted of bearing platform 1 has tensile board 9, tensile board 9 has lug 22 in the inside one side of bearing platform 1, tensile mouth 10 has been seted up to one side of tensile board 9, can pull out tensile board 9 when the instrument is not enough placed to the mesa of bearing platform 1, enlarge the area of bearing platform 1, lug 22 can restrict the length that tensile board 9 pulled out, the people that the existence of tensile mouth 10 made things convenient for the pulling frock pull out tensile board 10, the people of pulling frock can directly stretch into tensile mouth 10 and then pull out tensile board 9 to the outside hard.
The utility model discloses a theory of operation is: when a tool is needed to carry an instrument to enter a construction site, the instrument is firstly placed on the bearing table 1, if the volume of the instrument is too large, the weighing table 1 is not enough to place a stretching plate 9 on the side surface of the bearing table 1 in a drawing way, the area of the bearing table 1 for placing the instrument is enlarged, the instrument is placed and then buckled with the bayonet 5 by the buckle 4, an elastic band brought out by the buckle 4 can restrain the instrument to prevent the instrument from shaking off due to jolt in the moving process, when the tool is pulled, the telescopic control button 3 is pressed down, the pull handle 2 is pulled to pull the second pull rod 12 out of the third pull rod 13, if the length is not enough, the first pull rod 11 can be continuously filled into the second pull rod to be drawn out, the length of the pull rod is increased, the pulling is convenient, when the tool runs on the construction site and encounters a broken stone, the damping spring 19 can compress the length of the tool when being extruded upwards due to the elasticity of, meanwhile, other wheels are not broken stone blocks, the damping spring 19 is not extruded, the length of the damping spring is kept unchanged, stable reduction vibration of the tool is kept, the universal wheel 16 can drive the tool to rotate for 360 degrees, the tool is conveniently driven to detect a circle of a pipeline, when the tool is collected, the pull rod is placed in a groove of the bearing table, the sliding block 20 can be just clamped in a U-shaped groove of the limiting block 21, the pull rod cannot easily fall out, the tool is convenient to store, the portable clamping opening 14 can just lift the stored tool, and the tool is convenient to carry.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a frock of conventional buried pipe circumference exposure which characterized in that: including bearing platform (1), pulley (15) are installed to one side of the below of bearing platform (1), universal wheel (16) are installed to middle part and the opposite side of the below of bearing platform (1), the middle part of bearing platform (1) is seted up flutedly, the internally mounted of recess has pull handle (2), flexible control button (3) are installed to the top of pull handle (2), first pull rod (11) are installed to the below of pull handle (2), the lower extreme outside cover of first pull rod (11) has second pull rod (12), the lower extreme outside cover of second pull rod (12) has third pull rod (13).
2. The tool for conventional circumferential exposure of the buried pipe according to claim 1, wherein: first recess (6) have been seted up to one side of the mesa of bearing platform (1), the internally mounted of first recess (6) has buckle (4), second recess (7) have been seted up to one side of the mesa of bearing platform (1), the internally mounted of second recess (7) has bayonet socket (5).
3. The tool for conventional circumferential exposure of the buried pipe according to claim 1, wherein: a connecting plate (18) is installed above the wheel carrier of the pulley (15) and the universal wheel (16), a damping spring (19) is installed above the connecting plate (18), and the pulley (15) and the universal wheel (16) are fixed below the bearing table (1) through a fastening bolt (17).
4. The tool for conventional circumferential exposure of the buried pipe according to claim 1, wherein: the bearing platform is characterized in that a rotating shaft (8) is installed at the bottom end of the third pull rod (13), a portable bayonet (14) is formed in the middle of the bearing platform (1), a protruding limiting block (21) is arranged in a groove of the bearing platform (1), and a U-shaped groove is formed in the upper end of the limiting block (21).
5. The tool for conventional circumferential exposure of the buried pipe according to claim 1, wherein: and a sliding block (20) is arranged between the pull rods on the two sides of the third pull rod (13), and the sliding block (20) can be clamped into a U-shaped groove formed in the limiting block (21).
6. The tool for conventional circumferential exposure of the buried pipe according to claim 1, wherein: the bearing platform is characterized in that stretching plates (9) are mounted inside two sides of the bearing platform (1), a protruding block (22) is arranged on one side of each stretching plate (9) inside the bearing platform (1), and a stretching opening (10) is formed in one side of each stretching plate (9).
CN202020863322.XU 2020-05-21 2020-05-21 Tool for conventional circumferential exposure of buried pipe Active CN212111201U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020863322.XU CN212111201U (en) 2020-05-21 2020-05-21 Tool for conventional circumferential exposure of buried pipe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020863322.XU CN212111201U (en) 2020-05-21 2020-05-21 Tool for conventional circumferential exposure of buried pipe

Publications (1)

Publication Number Publication Date
CN212111201U true CN212111201U (en) 2020-12-08

Family

ID=73622698

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020863322.XU Active CN212111201U (en) 2020-05-21 2020-05-21 Tool for conventional circumferential exposure of buried pipe

Country Status (1)

Country Link
CN (1) CN212111201U (en)

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