CN217466439U - Electric control hydraulic clamp for steel wire rope detection - Google Patents

Electric control hydraulic clamp for steel wire rope detection Download PDF

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Publication number
CN217466439U
CN217466439U CN202220668072.3U CN202220668072U CN217466439U CN 217466439 U CN217466439 U CN 217466439U CN 202220668072 U CN202220668072 U CN 202220668072U CN 217466439 U CN217466439 U CN 217466439U
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China
Prior art keywords
wire rope
steel wire
fixedly connected
chain
box
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CN202220668072.3U
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Chinese (zh)
Inventor
刘伟
范兴玉
许延超
高磊
张胜
孙达
张龙
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Heilongjiang Longmei Mining Engineering Design And Research Institute Co ltd Safety Production Testing Center
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Heilongjiang Longmei Mining Engineering Design And Research Institute Co ltd Safety Production Testing Center
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Abstract

The utility model belongs to the technical field of wire rope centre gripping, concretely relates to wire rope detects uses electronic control hydraulically operated fixture, including control box and control panel, the pneumatic cylinder is installed to the inside front side of control box, the output shaft fixedly connected with diaphragm of pneumatic cylinder, the control box sliding connection has the slip post, two slip posts all articulate has the motion bar, the control box upper end has seted up the sliding tray, and two slip posts are close to one side fixedly connected with a plurality of springs each other, a plurality of springs install the silica gel slipmat jointly, the control box is equipped with two and places the platform, two are placed the platform and have all seted up the standing groove, control box lower extreme fixedly connected with threaded rod, four threaded rod outsides all have threaded connection threaded tube, four threaded tube lower extremes are equipped with the install bin jointly, four threaded rods all are connected with the rotation of install box bottom wall, the inside of install bin is equipped with the motor; the utility model discloses can adjust the height of control box, avoid wire rope to buckle when detecting and influence the testing result.

Description

Electric control hydraulic clamp for steel wire rope detection
Technical Field
The utility model belongs to the technical field of the wire rope centre gripping, concretely relates to wire rope detects uses electronic control hydraulically operated fixture.
Background
The steel wire rope is a spiral steel wire bundle, the steel wire rope consists of steel wires, a rope core and lubricating oil, the steel wire rope is required to be used in a plurality of industry fields, so that the safety of the steel wire rope is vital, and is related to the life safety of people, so that different detections such as stretching, impacting, bending, fatigue, breaking and the like are required to be carried out on each steel wire rope to ensure the quality of the steel wire rope, the lubricating oil can cause the steel wire rope to slide during detection to cause inaccurate detection due to the fact that the surface of the steel wire rope is smooth and contains the lubricating oil, and then the steel wire rope is required to be fixed and then detected by a clamp, while the existing clamp can easily cause the steel wire rope to slide out of the upper ends of the two clamps, and the clamping effect is poor; in order to solve the problems, an electric control hydraulic clamp for detecting the steel wire rope is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims at: the electric control hydraulic clamp for detecting the steel wire rope can clamp the steel wire ropes of different sizes in a wrapping mode, can avoid pulling force to pull out the steel wire ropes from the upper end and the lower end of the steel wire ropes which are not clamped in the detection process, can simultaneously change the height of an operation box according to the height of a feed port of a detection machine, and avoids the influence on the detection effect caused by the bending condition of the steel wire ropes when the steel wire ropes are detected by clamping.
In order to realize the technical purpose, the utility model discloses a technical scheme as follows:
an electric control hydraulic clamp for detecting a steel wire rope comprises an operation box and a control panel, wherein the control panel is arranged at the front end of the operation box, a hydraulic cylinder is arranged at the front side in the operation box, an output shaft of the hydraulic cylinder is fixedly connected with a vertical plate, the vertical plate is fixedly connected with fixed plates in a vertical symmetrical mode at the end far away from the hydraulic cylinder, the two fixed plates are in bilateral symmetry and are in rotational connection with a rotating shaft, sliding columns are in bilateral symmetry and are in sliding connection in the operation box, one sides, close to the hydraulic cylinder, of the two sliding columns are hinged with a moving rod fixedly connected with the rotating shaft, cambered surfaces are arranged at the sides, close to each other, of the two sliding columns, the upper end of the operation box is provided with a sliding groove matched with the sliding columns, the two sliding columns extend out of the sliding groove, a plurality of springs are fixedly connected at the side, at the same side, a plurality of the springs are close to each other, and a silica gel anti-slip pad is jointly arranged at the side, the center of the upper end of the operation box is provided with two placing tables, and the two placing tables are both provided with placing grooves;
four threaded rods that are the rectangular distribution of control box lower extreme fixedly connected with, four equal threaded connection in the threaded rod outside has a screw thread section of thick bamboo, four screw thread section of thick bamboo lower extreme is equipped with the install bin jointly, four the threaded rod all rotates with the install bin diapire to be connected, the install bin is inside to be equipped with the motor, the output shaft of motor is equipped with drive assembly, pneumatic cylinder and motor all with control panel electric connection.
The transmission assembly comprises a chain, four first gears and a second gear, the four first gears are respectively installed on the lower portions of the outer sides of the four threaded cylinders and are located inside the installation box, the chain is installed on the outer sides of the four first gears in a surrounding mode and is meshed with the chain, the motor is installed on the top of the installation box, the second gear is fixedly connected with an output shaft of the motor, and the second gear is meshed with the chain.
The bottom wall rotates in the install bin and is connected with four spliced poles, and four the spliced pole all is located the chain outside, four equal fixedly connected with third gear in spliced pole upper end, four the third gear all meshes with the chain mutually.
Four universal wheels with locks are uniformly arranged at the lower end of the mounting box.
Two the shape of standing groove is inverted triangle-shaped, just the standing groove matches with two silica gel slipmats's position.
And a protection frame is arranged on the outer side of the control panel.
The utility model discloses can wrap up formula centre gripping with not unidimensional wire rope, can avoid detecting the time measuring pulling force and pull out wire rope from the upper and lower both ends of non-centre gripping, can avoid wire rope to appear the condition influence detection effect of buckling when being detected by the centre gripping according to the height of the high change control box that detects the machine feed inlet simultaneously.
Drawings
The invention can be further illustrated by means of non-limiting examples given in the figures.
Fig. 1 is a schematic structural view of an embodiment of an electric control hydraulic clamp for detecting a steel wire rope according to the present invention;
FIG. 2 is an enlarged view of the structure at A in FIG. 1;
fig. 3 is a schematic view of a cross-sectional structure of an embodiment of the electric control hydraulic fixture for detecting a steel wire rope of the present invention;
fig. 4 is an enlarged schematic view of the structure at B in fig. 3.
The main element symbols are as follows:
the device comprises an operation box 1, a control panel 11, a hydraulic cylinder 12, a vertical plate 13, a fixing plate 131, a rotating shaft 132, a sliding column 14, a moving rod 15, a sliding groove 16, a spring 17, a silica gel anti-skid pad 171, a placing table 18, a placing groove 19, a threaded rod 2, a threaded cylinder 21, an installation box 22, a motor 23, a chain 3, a first gear 31, a second gear 32, a connecting column 33, a third gear 34, a locking universal wheel 35 and a protection frame 36.
Detailed Description
In order to make the technical solution of the present invention better understood, the following description is provided for the purpose of illustrating the present invention with reference to the accompanying drawings and embodiments.
As shown in figures 1-4, the utility model relates to an electric hydraulic clamp for detecting a steel wire rope, which comprises an operation box 1 and a control panel 11, wherein the control panel 11 is arranged at the front end of the operation box 1, a hydraulic cylinder 12 is arranged at the front side inside the operation box 1, an output shaft of the hydraulic cylinder 12 is fixedly connected with a vertical plate 13, the vertical plate 13 is fixedly connected with fixed plates 131 at the upper and lower sides of the end far away from the hydraulic cylinder 12, the two fixed plates 131 are symmetrically and rotatably connected with a rotating shaft 132 at the left and right sides, sliding columns 14 are symmetrically and slidably connected inside the operation box 1, a moving rod 15 fixedly connected with the rotating shaft 132 is hinged at one side of each sliding column 14 close to the hydraulic cylinder 12, a cambered surface is arranged at one side of each sliding column 14 close to each other, a sliding groove 16 matched with the sliding column 14 is arranged at the upper end of the operation box 1, each sliding column 14 extends out of the sliding groove 16, and a plurality of springs 17 are fixedly connected at one side of each sliding column 14 close to each other, a plurality of springs 17 on the same side are mutually close to one side and are commonly provided with a silica gel anti-slip pad 171, the center of the upper end of the operation box 1 is provided with two placing tables 18, and the two placing tables 18 are both provided with placing grooves 19;
four threaded rods 2 that are the rectangular distribution of 1 lower extreme fixedly connected with of control box, the equal threaded connection in 2 outsides of four threaded rods has a screw thread section of thick bamboo 21, and four screw thread section of thick bamboos 21 lower extremes are equipped with install bin 22 jointly, and four threaded rods 2 all rotate with install bin 22 diapire to be connected, the inside motor 23 that is equipped with of install bin 22, and the output shaft of motor 23 is equipped with drive assembly, and pneumatic cylinder 14 and motor 23 all with control panel 11 electric connection.
The steel wire rope can be used by a user only after being detected qualified due to different detections such as stretching, impacting, bending, fatigue, breaking and the like, in order to avoid influencing the detection structure of the steel wire rope, the steel wire rope needs to be clamped when the detection structure of the steel wire rope is detected, and the situation that the steel wire rope is moved to influence the operation of pulling and cutting the steel wire rope by a detection machine is avoided, so that the detection result is influenced, when the steel wire rope is used, the installation box 22 is firstly transported to a feed inlet of the machine to be detected, then the position of the operation box 1 is adjusted according to the feed inlet of the machine, the motor 23 is started when the adjustment is carried out, an output shaft of the motor 23 drives the transmission assembly to move when the motor 23 works, the transmission assembly drives the four threaded cylinders 21 to rotate together in the same direction, and as the threaded cylinders 21 are rotationally connected with the bottom wall of the installation box 22, the threaded rods 2 are in threaded connection with the threaded cylinders 21, meanwhile, the threaded rods 2 cannot rotate, and then the four threaded rods 2 move upwards or downwards, therefore, the four threaded rods 2 can drive the operation box 1 to move up and down, when the placing groove 19 is flush with the feeding hole, the motor 23 is turned off to stop moving, the steel wire rope is placed in the placing groove 19, a certain limiting effect can be achieved on the steel wire rope, the sliding columns 14 can be located in the center of the silica gel anti-skid pad 171 when clamping the steel wire rope, the hydraulic cylinder 12 is started after the steel wire rope is placed, the output shaft of the hydraulic cylinder 12 can drive the transverse plate 13 to move back and forth when the hydraulic cylinder 12 works, the fixed plate 131 and the rotating shaft 132 can be driven to move together when the transverse plate 13 moves forward, because the length of the moving rods 15 is unchanged, and the two moving rods 15 are respectively and fixedly connected with the two rotating shafts 132, the transverse plate 13 can drive the two moving rods 15 to approach each other, and further drive the two sliding columns 14 to approach each other, and the two sliding columns 14 drive the springs 17 and the silica gel anti-skid pads 171 to approach each other, when the silica gel anti-slip mat 171 is close to each other to abut against the steel wire rope, the hydraulic cylinder 12 continuously works to enable the two sliding columns 14 to continuously approach each other, so that the silica gel anti-slip mat 171 deforms and simultaneously extrudes the springs 17, the springs 17 exert a reaction force on the silica gel anti-slip mat 171 after being pressed to the limit, and the silica gel anti-slip mat 171 can be completely deformed, so that the silica gel anti-slip mat 171 can wrap the steel wire rope at one end and abut against the sliding columns 14, until the two sliding columns 14 approach each other to be incapable of moving, and at the moment, the steel wire rope is positioned in the center of the two silica gel anti-slip mats 171, and the steel wire rope is wrapped by the two silica gel anti-slip mats 171, so that when the steel wire ropes with different sizes are clamped, the two silica gel anti-slip mats 171 can be completely attached to the peripheral sides of different steel wire ropes, and the springs 17 can enable the silica gel anti-slip mats 171 to generate different deformations according to the sizes of the steel wire ropes, therefore, the stability of the steel wire rope when the steel wire rope is clamped can be improved, and the steel wire rope is prevented from being pulled out from the upper end and the lower end which are not clamped;
the utility model discloses centre gripping when can wrapping up not unidimensional wire rope can avoid detecting the time measuring pulling force and pull out wire rope from the upper and lower both ends of non-centre gripping, can avoid wire rope to appear the condition influence detection effect of buckling when being detected by the centre gripping according to the height of the high change control box 1 that detects the machine feed inlet simultaneously.
The transmission assembly comprises a chain 3, four first gears 31 and a second gear 32, the four first gears 31 are respectively arranged at the lower parts of the outer sides of the four threaded cylinders 21, the four first gears 31 are all positioned in the installation box 22, the chain 3 is arranged at the outer sides of the four first gears 31 in a surrounding manner, the four first gears 31 are all meshed with the chain 3, the motor 23 is arranged at the top of the installation box 22, the second gear 32 is fixedly connected with an output shaft of the motor 23, and the second gear 32 is meshed with the chain 3; when the motor 23 works, the output shaft of the motor drives the second gear 32 to rotate, the second gear 32 is meshed with the chain 3, so the chain 3 moves when the second gear 32 rotates, and the chain 3 is meshed with the four first gears 31, so the chain 3 drives the four first gears 31 to rotate when the chain 3 moves, and further the threaded cylinders 21 rotate, so the four threaded cylinders 21 can simultaneously rotate in the same direction, and the threaded cylinders 21 are in threaded connection with the threaded rod 2, so the motor 23 can drive the operation box 1 to move up and down when rotating forward and backward; this makes it possible to stabilize the threaded rod 2 during upward or downward movement.
The inner bottom wall of the installation box 22 is rotatably connected with four connecting columns 33, the four connecting columns 33 are all positioned on the outer side of the chain 3, the upper ends of the four connecting columns 33 are all fixedly connected with third gears 34, and the four third gears 34 are all meshed with the chain 3; the chain 3 can drive four third gears 34 engaged with the chain 3 to rotate during movement, and then drive the connecting column 33 to rotate, so that the chain 3 can be prevented from falling off by matching the third gears 34, the chain 3 and the first gear 31, the four connecting columns 33 and the third gears 34 are matched with each other to adjust the pretightening force of the chain 3, and the chain 3 can move more stably.
Four locking universal wheels 35 are uniformly arranged at the lower end of the mounting box 22; the locking type universal wheel 35 can stop sliding when being locked, so that a user can conveniently clamp the steel wire rope, and meanwhile, the installation box 22 can be driven to move when the locking type universal wheel is unlocked, and the whole device is convenient to move.
The two placing grooves 19 are both in an inverted triangle shape, and the placing grooves 19 are matched with the two silica gel anti-slip pads 171 in position; when the inverted triangle can enable the steel wire rope to be placed in the placing groove 19, two side edges of the inverted triangle slide downwards, and then the steel wire rope is placed at the lowest end of the inverted triangle, so that the steel wire rope can be limited, and the steel wire rope can be clamped in the center by the sliding column 14 conveniently.
A protective frame 36 is arranged outside the control panel 11; such a structure can prevent the user from erroneously touching the control panel 11.
The above embodiments are merely illustrative of the principles and effects of the present invention, and are not to be construed as limiting the invention. Modifications and variations can be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (6)

1. The utility model provides a wire rope detects uses electronic control hydraulically operated fixture, includes control box and control panel, its characterized in that: the control panel is arranged at the front end of the operation box, the hydraulic cylinder is arranged at the front side in the operation box, an output shaft of the hydraulic cylinder is fixedly connected with a vertical plate, the vertical plate is fixedly connected with fixed plates in a vertical symmetrical mode at the upper end and the lower end far away from one end of the hydraulic cylinder, the two fixed plates are rotationally connected with a rotating shaft in a bilateral symmetrical mode, sliding columns are slidably connected in the operation box in a bilateral symmetrical mode, one sides, close to the hydraulic cylinder, of the two sliding columns are hinged with moving rods fixedly connected with the rotating shaft, the side, close to each other, of each sliding column is provided with a cambered surface, the upper end of the operation box is provided with a sliding groove matched with the sliding columns, the two sliding columns extend out of the sliding grooves, one side, close to each other, of the two sliding columns is fixedly connected with a plurality of springs, one side, close to each other, of the plurality of springs at the same side is provided with a silica gel anti-slip mat, and the center of the upper end of the operation box is provided with two placing tables, the two placing tables are provided with placing grooves;
four threaded rods that are the rectangular distribution of control box lower extreme fixedly connected with, four equal threaded connection in the threaded rod outside has a screw thread section of thick bamboo, four screw thread section of thick bamboo lower extreme is equipped with the install bin jointly, four the threaded rod all rotates with the install bin diapire to be connected, the install bin is inside to be equipped with the motor, the output shaft of motor is equipped with drive assembly, pneumatic cylinder and motor all with control panel electric connection.
2. The electric control hydraulic clamp for detecting the steel wire rope according to claim 1, wherein: the transmission assembly comprises a chain, four first gears and a second gear, the four first gears are respectively installed on the lower portions of the outer sides of the four threaded cylinders and are located inside the installation box, the chain is installed on the outer sides of the four first gears in a surrounding mode and is meshed with the chain, the motor is installed on the top of the installation box, the second gear is fixedly connected with an output shaft of the motor, and the second gear is meshed with the chain.
3. The electric control hydraulic clamp for detecting the steel wire rope according to claim 2, characterized in that: the bottom wall rotates in the install bin and is connected with four spliced poles, and four the spliced pole all is located the chain outside, four equal fixedly connected with third gear in spliced pole upper end, four the third gear all meshes with the chain mutually.
4. The electric control hydraulic clamp for detecting the steel wire rope according to claim 1, wherein: four universal wheels with locks are uniformly arranged at the lower end of the mounting box.
5. The electric control hydraulic clamp for detecting the steel wire rope according to claim 1, wherein: two the shape of standing groove is inverted triangle-shaped, just the standing groove matches with two silica gel slipmats's position.
6. The electric control hydraulic clamp for detecting the steel wire rope according to claim 1, wherein: and a protection frame is arranged on the outer side of the control panel.
CN202220668072.3U 2022-03-24 2022-03-24 Electric control hydraulic clamp for steel wire rope detection Active CN217466439U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220668072.3U CN217466439U (en) 2022-03-24 2022-03-24 Electric control hydraulic clamp for steel wire rope detection

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220668072.3U CN217466439U (en) 2022-03-24 2022-03-24 Electric control hydraulic clamp for steel wire rope detection

Publications (1)

Publication Number Publication Date
CN217466439U true CN217466439U (en) 2022-09-20

Family

ID=83266759

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220668072.3U Active CN217466439U (en) 2022-03-24 2022-03-24 Electric control hydraulic clamp for steel wire rope detection

Country Status (1)

Country Link
CN (1) CN217466439U (en)

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