CN216587797U - Steel lattice column positioning device - Google Patents
Steel lattice column positioning device Download PDFInfo
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- CN216587797U CN216587797U CN202123138302.XU CN202123138302U CN216587797U CN 216587797 U CN216587797 U CN 216587797U CN 202123138302 U CN202123138302 U CN 202123138302U CN 216587797 U CN216587797 U CN 216587797U
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- stopper
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Abstract
This application belongs to lattice column technical field, and discloses steel lattice column positioner, comprising a supporting plate, the inside swing joint of backup pad has the device body, the inside swing joint of backup pad has the bearing block, the bottom welding of bearing block has the toper seat, the top fixedly connected with reference column of backup pad, the spout has been seted up to one side that the reference column is close to the device body, one side sliding connection that the reference column is close to the device body has the stopper, the surface of stopper and the interior surface laminating of spout, one side fixed mounting that the stopper is close to the device body has the supporting mechanism to the device body location. This steel lattice column positioner uses through the cooperation of stopper and depositing the case, and the extrusion pad adjusts to different heights, and rethread cylinder operation, disc and extrusion pad's cooperation is used, extrudees the different regions of device body, thereby has reached the effect to steel lattice column location through above-mentioned structure.
Description
Technical Field
The application belongs to the technical field of lattice column, especially relates to steel lattice column positioner.
Background
The lattice column has a section which is designed to be biaxial symmetrical or uniaxial symmetrical by steel sections or steel plates, is used as a bending member and is mainly used for factory building frame columns and independent columns, and consists of limbs and batten materials, and the limbs mainly bear axial force.
In the prior art, the existing steel lattice columns can ensure that the bending resistance of the construction is enhanced under the condition of the same axial resistance, but the stability of the steel lattice columns is possibly reduced after long-time use of some steel lattice columns, so that the safety performance of buildings is possibly reduced.
SUMMERY OF THE UTILITY MODEL
The application aims to solve the problem that the stability of a steel lattice column is possibly reduced due to long-time use in the prior art, so that the safety performance of a building is possibly reduced, and the steel lattice column positioning device is provided.
In order to achieve the purpose, the following technical scheme is adopted in the application: steel lattice column positioner, including the backup pad, the inside swing joint of backup pad has the device body, the inside swing joint of backup pad has the bearing block, the bottom welding of bearing block has the toper seat, the top fixedly connected with reference column of backup pad, the spout has been seted up to one side that the reference column is close to the device body, one side sliding connection that the reference column is close to the device body has the stopper, the surface of stopper and the laminating of the internal surface of spout, one side fixed mounting that the stopper is close to the device body has the supporting mechanism to the device body location.
Preferably, the supporting mechanism is including depositing the case, deposit one side fixed connection that the surface of case and stopper are close to the device body, the inside fixed mounting who deposits the case has the cylinder, the flexible end fixed mounting of cylinder has the disc, one side fixedly connected with extrusion pad of depositing the case is kept away from to the disc, one side that the disc was kept away from to the extrusion pad is laminated with the surface of device body.
Preferably, the inner bottom wall of the positioning column is fixedly provided with an electric telescopic rod, the telescopic end of the electric telescopic rod is fixedly connected with a sliding plate, and the top of the sliding plate is fixedly connected with the bottom of the limiting block.
Preferably, the outer surface swing joint of device body has the arc, the surface of arc and the fixed surface of backup pad are connected, the inside threaded connection of arc has the self-tapping screw, the surface of self-tapping screw and the surface threaded connection of device body.
Preferably, the top of the supporting plate is fixedly connected with a clamping plate, a sleeve is fixedly arranged inside the clamping plate, and a limiting mechanism for fixing the bottom of the device body is arranged inside the sleeve.
Preferably, stop gear includes the bolt, the surface and the sheathed tube internal surface threaded connection of bolt, the one end swing joint that the device body was kept away from to the sleeve pipe has the rubber pad, the internal surface of rubber pad and the surface threaded connection of bolt, the one end fixed mounting that the bolt is close to the device body has the firm mechanism that increases device body stability.
Preferably, the stabilizing mechanism comprises an ejector rod, one end of the ejector rod, far away from the device body, is welded with one end, close to the device body, of the bolt, a spring is movably mounted on the outer surface of the ejector rod, a connecting plate is fixedly mounted at one end, far away from the bolt, of the spring, and one side, far away from the bolt, of the connecting plate is movably connected with one side, close to the bolt, of the device body.
Compared with the prior art, the beneficial effect of this application is: according to the steel lattice column positioning device, the extrusion pads are adjusted to different heights through the matching use of the limiting blocks and the storage box, then the air cylinder runs, the disc and the extrusion pads are matched for use, different areas of the device body are extruded, and the effect of positioning the steel lattice column is achieved through the structure; through the cooperation use of bolt and sheathed tube, the ejector pin is kept away from one side of bolt and the surface contact of device body, and the cooperation of rethread ejector pin and spring is used, further strengthens being connected between ejector pin and the device body, thereby has reached the effect that increases steel lattice column bottom stability through above-mentioned structure.
Drawings
Fig. 1 is a schematic perspective view of the present application;
fig. 2 is a schematic cross-sectional structural view of a positioning pillar according to the present application;
FIG. 3 is a schematic cross-sectional view of the storage compartment of the present application;
fig. 4 is a schematic view of a bolt structure proposed in the present application.
In the figure: 1. a support plate; 2. a device body; 3. a bearing block; 4. a conical seat; 5. a positioning column; 6. a chute; 7. a limiting block; 8. an electric telescopic rod; 9. a slide plate; 10. a storage box; 11. a cylinder; 12. a disc; 13. pressing the cushion; 14. an arc-shaped plate; 15. self-tapping screws; 16. clamping a plate; 17. a sleeve; 18. a bolt; 19. a rubber pad; 20. a top rod; 21. a spring; 22. a connecting plate.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments.
Referring to fig. 1-3, a steel lattice column positioning device comprises a support plate 1, wherein the support plate 1 is movably connected with a device body 2, the support plate 1 is assembled by taking the device body 2 as the center, the support plate 1 is movably connected with bearing blocks 3, the bearing blocks 3 are four, the four bearing blocks 3 are positioned at four corners of the device body 2, conical seats 4 are welded at the bottom of the bearing blocks 3, the number of the conical seats 4 is the same as that of the bearing blocks 3, positioning columns 5 are fixedly connected with the top of the support plate 1, the two positioning columns 5 are symmetrically distributed by taking the central axis of the support plate 1 as the center, a chute 6 is arranged on one side of each positioning column 5 close to the device body 2, the height of each chute 6 is smaller than that of each positioning column 5, a limit block 7 is slidably connected to one side of each positioning column 5 close to the device body 2, and the horizontal direction of each limit block 7 is vertical to the vertical direction of each chute 6, the surface of stopper 7 and the laminating of the internal surface of spout 6, stopper 7 receive the effort after, the surface of stopper 7 moves along with the internal surface of spout 6, and one side fixed mounting that stopper 7 is close to device body 2 has the supporting mechanism to device body 2 location.
Referring to fig. 1-3, the supporting mechanism includes two storage boxes 10, the two storage boxes 10 are symmetrically distributed with the central axis of the supporting plate 1 as the center, the outer surface of the storage box 10 is fixedly connected with one side of the limiting block 7 close to the device body 2, the storage box 10 is fixed at the center of the limiting block 7 close to the device body 2, the interior of the storage box 10 is fixedly provided with four cylinders 11, four cylinders 11 are arranged in pairs to form a group, two groups of cylinders 11 are distributed in the two storage boxes 10, the telescopic ends of the cylinders 11 are fixedly provided with discs 12, the number of the discs 12 is the same as that of the cylinders 11, one side of the disc 12 far from the storage box 10 is fixedly connected with a squeezing pad 13, the squeezing pad 13 is made of rubber material and has certain elasticity, the number of the squeezing pads 13 is the same as that of the discs 12, one side of the squeezing pad 13 far from the disc 12 is attached to the outer surface of the device body 2, after the cylinder 11 operates, the disc 12 drives the extrusion pad 13 to move, and the outer surface of the device body 2 is extruded.
Referring to fig. 2, inner bottom wall fixed mounting of reference column 5 has electric telescopic handle 8, electric telescopic handle 8 is provided with four, four electric telescopic handle 8 two liang are a set of, 8 evenly distributed of every group are at the inner bottom wall of reference column 5, electric telescopic handle 8's flexible end fixedly connected with slide 9, slide 9 is provided with two, two slides 9 use the axis of backup pad 1 as central symmetry distribution, slide 9's top and stopper 7's bottom fixed connection, electric telescopic handle 8 moves the back, slide 9 drives stopper 7 and removes, thereby to the altitude mixture control who deposits case 10.
Referring to fig. 1, the surface swing joint of device body 2 has arc 14, arc 14 is provided with eight, eight arc 14 are per four for a set of, two sets of arcs 14 use the axis of backup pad 1 as central symmetry distribution, the surface of arc 14 and the fixed surface of backup pad 1 are connected, the inside threaded connection of arc 14 has self-tapping screw 15, the number of self-tapping screw 15 is the same with the number of arc 14, the surface of self-tapping screw 15 and the surface threaded connection of device body 2, the self-tapping screw 15 runs through behind the inside of arc 14 and the surface connection of device body 2, thereby further strengthen being connected between backup pad 1 and the device body 2.
Referring to fig. 1, the top fixedly connected with cardboard 16 of backup pad 1, cardboard 16 is provided with two, and two cardboard 16 use the axis of backup pad 1 as central symmetric distribution, and the inside fixed mounting of cardboard 16 has sleeve pipe 17, and sleeve pipe 17 is provided with four, and four sleeve pipes 17 are two liang a set of, and two sets of sleeve pipes 17 use the axis of backup pad 1 as central symmetric distribution, and sleeve pipe 17's inside is provided with the stop gear to device body 2 bottom fixing.
Referring to fig. 1, the limiting mechanism includes a bolt 18, the outer surface of the bolt 18 is in threaded connection with the inner surface of the sleeve 17, the outer surface of the bolt 18 is matched with the inner surface of the sleeve 17, one end, away from the device body 2, of the sleeve 17 is movably connected with a rubber pad 19, the diameter of the rubber pad 19 is larger than that of the bolt 18, the inner surface of the rubber pad 19 is in threaded connection with the outer surface of the bolt 18, the bolt 18 moves along with the inner surface of the sleeve 17, the rubber pad 19 is squeezed, the stability of the bolt 18 is further enhanced, and a stabilizing mechanism for increasing the stability of the device body 2 is fixedly mounted at one end, close to the device body 2, of the bolt 18.
Referring to fig. 1 and 4, the stabilizing mechanism includes a push rod 20, one end of the push rod 20 far away from the device body 2 is welded with one end of the bolt 18 close to the device body 2, the push rod 20 is welded at the center of one end of the bolt 18 close to the device body 2, a spring 21 is movably mounted on the outer surface of the push rod 20, one end of the spring 21 far away from the bolt 18 is fixedly mounted with a connecting plate 22, the longitudinal section of the connecting plate 22 is U-shaped, one side of the connecting plate 22 far away from the bolt 18 is movably connected with one side of the device body 2 close to the bolt 18, after one end of the connecting plate 22 far away from the bolt 18 is contacted with the outer surface of the device body 2, the spring 21 is extruded and deformed, the push rod 20 supports the connecting plate 22, and tightness of the connecting plate 22 and the device body 2 is increased.
The theory of operation, this steel lattice column positioner, at first assemble backup pad 1 at the surface of device body 2, self-tapping screw 15 runs through the inside of arc 14 and the internal connection of device body 2, thereby fix backup pad 1 at the surface of device body 2, apply the effort to the top of bearing block 3, toper seat 4 removes to the ground, thereby increase the stability of backup pad 1 bottom, electric telescopic handle 8 moves, slide 9 drives stopper 7 rebound, the surface of stopper 7 is along with the internal surface removal of spout 6, deposit the fixed back in position after case 10 is adjusted, cylinder 11 moves, disc 12 drives extrusion pad 13 and removes to laminating with the surface of device body 2, thereby extrude device body 2, thereby effect to steel lattice column location has been reached through above-mentioned structure.
Rotating bolt 18 for 18's surface is along with sleeve 17's inside removal, and after connecting plate 22 and device body 2 laminating, spring 21 received the effect of external force and is extrudeed, thereby spring 21 supports connecting plate 22, thereby further strengthens connecting plate 22 and device body 2's laminating effect, thereby has reached the effect that increases steel lattice column bottom stability through above-mentioned structure.
The above description is only for the preferred embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art should be considered to be within the scope of the present application, and all equivalent substitutions and changes according to the technical solutions and the inventive concepts of the present application should be covered by the scope of the present application.
Claims (7)
1. Steel lattice column positioner, including backup pad (1), its characterized in that: the inside swing joint of backup pad (1) has device body (2), the inside swing joint of backup pad (1) has bearing block (3), the bottom welding of bearing block (3) has toper seat (4), top fixedly connected with reference column (5) of backup pad (1), spout (6) have been seted up to one side that reference column (5) are close to device body (2), one side sliding connection that reference column (5) are close to device body (2) has stopper (7), the surface of stopper (7) and the interior surface laminating of spout (6), one side fixed mounting that stopper (7) are close to device body (2) has the supporting mechanism to device body (2) location.
2. A steel lattice column positioning device as claimed in claim 1, in which: the supporting mechanism is including depositing case (10), the surface of depositing case (10) and stopper (7) are close to one side fixed connection of device body (2), the inside fixed mounting who deposits case (10) has cylinder (11), the flexible fixed mounting of cylinder (11) has disc (12), one side fixedly connected with extrusion pad (13) of depositing case (10) are kept away from in disc (12), one side that disc (12) were kept away from in extrusion pad (13) is laminated with the surface of device body (2).
3. A steel lattice column positioning device as claimed in claim 1, in which: the inner bottom wall fixed mounting of reference column (5) has electric telescopic handle (8), the flexible end fixedly connected with slide (9) of electric telescopic handle (8), the top of slide (9) and the bottom fixed connection of stopper (7).
4. A steel lattice column positioning device as claimed in claim 1, in which: the device is characterized in that the outer surface of the device body (2) is movably connected with an arc-shaped plate (14), the outer surface of the arc-shaped plate (14) is fixedly connected with the outer surface of the supporting plate (1), the inner thread of the arc-shaped plate (14) is connected with a self-tapping screw (15), and the outer surface of the self-tapping screw (15) is connected with the outer surface of the device body (2) in a threaded manner.
5. A steel lattice column positioning device as claimed in claim 1, in which: the top of the supporting plate (1) is fixedly connected with a clamping plate (16), a sleeve (17) is fixedly installed inside the clamping plate (16), and a limiting mechanism fixed to the bottom of the device body (2) is arranged inside the sleeve (17).
6. A steel lattice column positioning device as claimed in claim 5, in which: stop gear includes bolt (18), the surface of bolt (18) and the internal surface threaded connection of sleeve pipe (17), the one end swing joint that device body (2) were kept away from in sleeve pipe (17) has rubber pad (19), the internal surface of rubber pad (19) and the external surface threaded connection of bolt (18), one end fixed mounting that bolt (18) are close to device body (2) has the firm mechanism that increases device body (2) stability.
7. A steel lattice column positioning device as claimed in claim 6, in which: firm mechanism includes ejector pin (20), the one end that device body (2) were kept away from in ejector pin (20) welds with the one end that bolt (18) are close to device body (2), the surface movable mounting of ejector pin (20) has spring (21), the one end fixed mounting that bolt (18) were kept away from in spring (21) has connecting plate (22), one side that bolt (18) were kept away from in connecting plate (22) and one side swing joint that is close to bolt (18) of device body (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123138302.XU CN216587797U (en) | 2021-12-14 | 2021-12-14 | Steel lattice column positioning device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123138302.XU CN216587797U (en) | 2021-12-14 | 2021-12-14 | Steel lattice column positioning device |
Publications (1)
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CN216587797U true CN216587797U (en) | 2022-05-24 |
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CN202123138302.XU Active CN216587797U (en) | 2021-12-14 | 2021-12-14 | Steel lattice column positioning device |
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2021
- 2021-12-14 CN CN202123138302.XU patent/CN216587797U/en active Active
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