Inclination rectifying device for structure

Through the fixed frame and the cross-arranged telescopic support mechanism, combined with the telescopic cylinder and locking parts, the problem of correcting the tilt of structures with small foundation width is solved, the stable straightening and reinforcement of the structure is achieved, it is suitable for a variety of structure shapes and simplifies the construction process.

CN223446234UActive Publication Date: 2025-10-17SHANDONG JIANGU SPECIAL ENG LIMIT +2
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Patent Information

Application Number
CN202423015754.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-17
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing tilt correction equipment cannot be effectively applied to structures with small foundation width and good integrity, resulting in the inability to effectively correct tilt and straighten them.

Method used

A combined structure of a fixed frame, first and second supporting telescopic frames is adopted. Through the extension of the first telescopic support mechanism and the contraction of the second telescopic support mechanism, thrust and pull are applied respectively to straighten the structure. Combined with the design of the telescopic cylinder and locking part, stable reinforcement of the structure is achieved.

Benefits of technology

It achieves stable and controllable tilt correction and straightening of structures with small foundation width, is applicable to various structure shapes, improves the applicability and stability of tilt correction operations, and simplifies the construction process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a structure inclination rectifying device, and belongs to the technical field of constructional engineering. According to the technical scheme, the structure inclination rectifying device comprises a fixing frame, a first supporting telescopic frame and a second supporting telescopic frame, the fixing frame comprises a fixing space for fastening a structure, a first end and a second end, the first end and the second end are oppositely arranged, a first telescopic supporting mechanism is hinged to the first end, and the first telescopic supporting mechanism is obliquely arranged in the first direction; the first telescopic supporting mechanism is hinged to the first end and can telescopically move in the first direction, a second telescopic supporting mechanism is hinged to the second end and obliquely arranged in the second direction, the second telescopic supporting mechanism can telescopically move in the second direction, and the first direction and the second direction are arranged in a crossed mode. Through the arrangement of the fixed frame, the first telescopic supporting mechanism and the second telescopic supporting mechanism which are opposite to each other, thrust and tension are applied to the structure, the structure is straightened, and inclination rectification of the structure with a small foundation width from the side face in a pushing mode is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building engineering technical field especially relates to a structure rectification device. BACKGROUND

[0002] The building rectification system refers to the measures of rectification, righting, reinforcement and stabilization taken to ensure the safety of the building and restore its normal use function when the building tilts beyond the requirements of the relevant national standards and seriously affects the safety of the building and its normal use function due to the uneven settlement of the foundation, the base or the building itself.

[0003] The current commonly used rectification methods include sinking the building on the side with less settlement, such as the pile-up pressure rectification method, the soil excavation rectification method, the water immersion rectification method and the soil excavation and water irrigation method, etc. SUMMARY

[0004] The utility model discloses a structure rectification device which can be used in smaller structures.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] The utility model provides a structure rectification device, including fixed frame, first support telescopic support and second support telescopic support, the fixed frame includes the fixed space of fastening structure and the first end and the second end of opposite setting, the first telescopic support mechanism is hinged to the first end, the first telescopic support mechanism is inclined to set along the first direction, and the first telescopic support mechanism can be telescopic and moves along the first direction, the second telescopic support mechanism is hinged to the second end, the second telescopic support mechanism is inclined to set along the second direction, and the second telescopic support mechanism can be telescopic and moves along the second direction, and the first direction and the second direction are cross setting.

[0007] Further, the first telescopic support mechanism includes first pipe body, first telescopic component and second pipe body connected in sequence, one end of the first pipe body is hinged to the first end, one end of the second pipe body can be fixedly connected with the ground or platform, and the first telescopic component includes telescopic oil cylinder, the movable end of the telescopic oil cylinder is fixedly connected with one end of the first pipe body, and the fixed end of the telescopic oil cylinder is fixedly connected with one end of the second pipe body.

[0008] Further, the first pipe body is provided with a first fixed plate body near one end of the telescopic oil cylinder, the second pipe body is provided with a second fixed plate body near one end of the telescopic oil cylinder, the telescopic oil cylinder is arranged between the first fixed plate body and the second fixed plate body, a plurality of first fixed holes are arranged on the first fixed plate body around the outer periphery of the telescopic oil cylinder, a plurality of second fixed holes are oppositely arranged on the second fixed plate body, and the first telescopic assembly comprises a fixed bolt rod.

[0009] Further, the second fixed plate body is an H-shaped plate body structure.

[0010] Further, the first telescopic support mechanism comprises a plurality of first support frames, each first support frame comprising a first pipe body, a first telescopic assembly and a second pipe body connected in sequence.

[0011] Further, the second telescopic support mechanism comprises a locking member and a third pipe body, an adjusting rod body and a fourth pipe body connected in sequence, one end of the third pipe body is hingedly connected to the second end portion, one end of the fourth pipe body is fixedly connected to the ground or a platform, the third pipe body is provided with an accommodating groove extending along the axial direction of the third pipe body, one end of the adjusting rod body is fixedly connected to one end of the fourth pipe body, the other end of the adjusting rod body extends into the accommodating groove and the adjusting rod body is movable in the accommodating groove, and the locking member is connected to the adjusting rod body and used for locking the movement of the adjusting rod body in the accommodating groove.

[0012] Further, the adjusting rod body is a screw rod structure, and the locking member comprises a locking nut which is connected to the adjusting rod body.

[0013] Further, the third pipe body is provided with a third fixed plate body near one end of the adjusting rod body, the fourth pipe body is provided with a fourth fixed plate body near one end of the adjusting rod body, the second telescopic support mechanism comprises a support plate body provided with a sliding groove, the fourth fixed plate body is fixedly connected to the support plate body, and the third fixed plate body is movably arranged in the sliding groove and movable in the sliding groove.

[0014] Further, the second telescopic support mechanism comprises a plurality of second support frames, each second support frame comprising a locking member and a third pipe body, an adjusting rod body and a fourth pipe body connected in sequence.

[0015] Further, the fixed frame comprises at least two first fixed cross beams and at least two second fixed cross beams, the two first fixed cross beams are oppositely arranged, the two second fixed cross beams are spaced apart and connected between the two first fixed cross beams to form a fixed space, and the two first fixed cross beams form the first end portion and the second end portion, respectively.

[0016] Through the above technical scheme, the advantages of the utility model are as follows:

[0017] The utility model discloses a fixed frame fixedly inclined structure is set up again, and opposite first telescopic support mechanism and second telescopic support mechanism are set up, and through the first telescopic support mechanism elongation and second telescopic support mechanism contraction, and respectively exert thrust and tension to structure, to right the structure, and the structure is reinforced and stabilized, and the structure is simple, guarantees the stability of rectification righting process, realizes the rectification operation of the structure of small width from the side of the structure. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to make the technical scheme of the utility model clearer, the following will briefly introduce the drawings needed to be used in the description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for the ordinary skilled in the art, other drawings can also be obtained according to these drawings without creative labor.

[0019] Figure 1 It is the working schematic diagram of the structure rectification device in an embodiment of the utility model;

[0020] Figure 2 It is the structural schematic diagram of the first telescopic support mechanism in an embodiment of the utility model;

[0021] Figure 3 It is the structural schematic diagram of the second telescopic support mechanism in an embodiment of the utility model.

[0022] Main drawing mark explanation:

[0023] 100, structure;200, fixed frame;210, first fixed crossbeam;211, first end portion;212, second end portion;220, second fixed crossbeam;230, fixed space;300, first telescopic support mechanism;310, first pipe body;320, telescopic oil cylinder;321, movable end;322, fixed end;330, second pipe body;340, first fixed plate body;350, second fixed plate body;360, fixed bolt rod;400, second telescopic support mechanism;410, locking piece;420, third pipe body;430, adjusting rod body;440, fourth pipe body;450, third fixed plate body;460, fourth fixed plate body;470, support plate body;471, sliding groove. DETAILED DESCRIPTION

[0024] In order to make the purpose, characteristics and advantages of the utility model more obvious and easy to understand, the technical scheme of the utility model will be described clearly and completely in combination with the drawings in the specific embodiment. Obviously, the following described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the patent, all other embodiments obtained by the person skilled in the art without creative labor belong to the scope of protection of the patent.

[0025] Please refer to Figures 1-3 A structure rectification device, comprising a fixed frame 200, a first supporting telescopic frame and a second supporting telescopic frame, the fixed frame 200 comprises a fixed space 230 fastening the structure 100, and a first end portion 211 and a second end portion 212 oppositely arranged, the first end portion 211 is hinged with a first telescopic supporting mechanism 300, the first telescopic supporting mechanism 300 is arranged in a first direction, and the first telescopic supporting mechanism 300 can be telescopic moved in the first direction, the second end portion 212 is hinged with a second telescopic supporting mechanism 400, the second telescopic supporting mechanism 400 is arranged in a second direction, and the second telescopic supporting mechanism 400 can be telescopic moved in the second direction, the first direction and the second direction are arranged in intersection.

[0026] In the embodiment, as Figure 1As shown, the fixed frame 200 can be a rectangular frame, wherein the first end portion 211 and the second end portion 212 are respectively arranged at the two ends of the fixed frame 200 along the width direction, one end of the first telescopic support mechanism is hingedly connected to the first end portion 211, one end of the second telescopic support mechanism is hingedly connected to the second end portion 212, the other end of the first telescopic support mechanism 300 and the second telescopic support mechanism 400 can be fixedly connected to the ground around the structure 100 to be rectified or an additionally arranged platform, the first telescopic support mechanism 300 is arranged to be inclined relative to the fixed frame 200 along the first direction, the second telescopic support mechanism 400 is arranged to be inclined relative to the fixed frame 200 along the second direction, and the first telescopic support mechanism 300 and the second telescopic support mechanism 400 are located at the opposite ends of the fixed frame 200. In use, the upper part of the structure 100 to be rectified is first fixed in the fixed space 230 of the fixed frame 200, then one end of the first telescopic support mechanism 300 is fixed to the ground on the side where the structure 100 has a larger settlement, and the other end is hingedly connected to the first end portion 211 of the fixed frame 200, one end of the second telescopic support mechanism 400 is fixed to the ground on the side opposite to the first telescopic support mechanism 300 of the structure 100, and the other end is hingedly connected to the second end portion 212 of the fixed frame 200, so that the first telescopic support mechanism 300 is supported to be inclined on the side where the structure 100 has a larger settlement, and the second telescopic support mechanism 400 is supported to be inclined on the opposite side, and then the first telescopic support mechanism 300 is elongated to apply a pushing force to the structure 100 in a direction opposite to the inclination direction of the structure 100, and the second telescopic support mechanism 400 is retracted to apply a pulling force to the structure 100, so that the structure 100 is rectified by the pushing force applied by the first telescopic support mechanism 300 and the pulling force applied by the second telescopic support mechanism 400.

[0027] In the above structure, the inclined structure 100 is fixed by the fixed frame 200, and the opposite first telescopic support mechanism 300 and the second telescopic support mechanism 400 are arranged, the structure 100 is rectified by the pushing force and the pulling force applied by the elongation of the first telescopic support mechanism 300 and the retraction of the second telescopic support mechanism 400, and the structure 100 is stabilized by the pushing force and the pulling force, the structure is simple, and the rectification process is stable and controllable, and the rectification operation of the structure 100 with a small foundation width from the side is realized.

[0028] In the specific structure of the first telescopic support mechanism 300, as shown in Figure 2As shown, the first telescopic supporting mechanism 300 comprises a first pipe body 310, a first telescopic assembly and a second pipe body 330 connected in sequence, one end of the first pipe body 310 is hinged with the first end portion 211, one end of the second pipe body 330 is fixedly connected with the ground or platform, the first telescopic assembly comprises a telescopic oil cylinder 320, a movable end 321 of the telescopic oil cylinder 320 is fixedly connected with one end of the first pipe body 310, a fixed end 322 of the telescopic oil cylinder 320 is fixedly connected with one end of the second pipe body 330. Wherein, one end of the first pipe body 310 close to the telescopic oil cylinder 320 is provided with a first fixed plate body 340, one end of the second pipe body 330 close to the telescopic oil cylinder 320 is provided with a second fixed plate body 350, the telescopic oil cylinder 320 is arranged between the first fixed plate body 340 and the second fixed plate body 350, a plurality of first fixed holes are arranged on the first fixed plate body 340 around the outer periphery of the telescopic oil cylinder 320, a plurality of second fixed holes are oppositely arranged on the second fixed plate body 350, the first telescopic assembly comprises a fixed bolt rod 360, the fixed bolt rod 360 passes through the first fixed hole and the second fixed hole to lock the telescopic movement of the telescopic oil cylinder 320. The second fixed plate body 350 is an "H" type plate body structure.

[0029] In the embodiment, the top end of the first pipe body 310 is hinged with the first end portion 211 of the fixed frame 200, the hinged structure can be realized by the prior art, which is not specifically described here, the tail end of the first pipe body 310 is fixedly connected with the movable end 321 of the telescopic oil cylinder 320, the top end of the second pipe body 330 is fixedly connected with the fixed end 322 of the telescopic oil cylinder 320, the tail end of the second pipe body 330 is fixedly connected with the ground or platform, the movable end 321 of the telescopic oil cylinder 320 can telescopically move relative to the fixed end 322, wherein the first pipe body 310, the telescopic oil cylinder 320 and the second pipe body 330 are coaxially arranged, by controlling the telescopic movement of the telescopic oil cylinder 320, the first pipe body 310 is pushed to move in its axial direction, thereby driving the top of the fixed frame 200 and the structure 100 to move, since the first pipe body 310 is hinged with the fixed frame 200 and the first pipe body 310 is obliquely arranged relative to the fixed frame 200, when the telescopic oil cylinder 320 is elongated, the side pushing of the top of the structure 100 can be realized to right the structure 100. By arranging the telescopic oil cylinder 320, the length of the first pipe body 310 elongated can be accurately controlled, so that the righting process is more accurate and stable, and since the first pipe body 310 is hinged with the fixed frame 200, the righting of the structure 100 with different degrees of inclination can be realized, improving the applicability. Specifically, the telescopic oil cylinder 320 can be a jack structure.

[0030] In addition, in order to improve the stability of the structure 100 supported by the first pipe body 310, a first fixed plate body 340 is fixed at the tail end of the first pipe body 310, and a second fixed plate body 350 is fixed at the top end of the second pipe body 330, and the telescopic oil cylinder 320 is fixed between the first fixed plate body 340 and the second fixed plate body 350. In addition, a plurality of first fixing holes are provided on the first fixed plate body 340, and the plurality of first fixing holes are arranged around the circumference of the telescopic oil cylinder 320. For example, the first fixed plate body 340 is a rectangular plate structure, and four first fixing holes are arranged on the first fixed plate body 340, respectively arranged at the four corners of the first fixed plate body 340. Correspondingly, four second fixing holes are also arranged on the second fixed plate body 350, so that the fixed bolt rod 360 can pass through the first fixing hole and the second fixing hole. The fixed bolt rod 360 is also correspondingly provided with four fixed bolt rods. When the telescopic oil cylinder 320 is elongated to a predetermined distance, the fixed bolt rod 360 is sequentially inserted through the second fixing hole and the first fixing hole, and is connected with the fixed bolt rod 360 on the first fixed plate body 340 and the second fixed plate body 350 through a nut, so as to fix the fixed bolt rod 360 between the first fixed plate body 340 and the second fixed plate body 350. The four fixed bolt rods 360 are arranged around the telescopic oil cylinder 320, and the axial direction of the fixed bolt rod 360 is parallel to the axial direction of the telescopic oil cylinder 320, so as to improve the support stability and connection strength of the telescopic oil cylinder 320, effectively avoid the telescopic oil cylinder 320 from retracting when supporting the structure 100, and improve the support strength of the structure 100.

[0031] In particular, the second fixed plate is an "H" type steel plate body structure, the upper and lower flanges of the second fixed plate body 350 are perpendicular to the axial direction of the telescopic oil cylinder 320, the lower flange of the second fixed plate body 350 is fixedly connected with the second pipe body 330, and the upper flange of the second fixed plate body 350 is fixedly connected with the telescopic oil cylinder 320. The fixed screw rod can pass through the upper and lower flanges of the second fixed plate. By arranging the second fixed plate body 350 in an "H" type structure, the flange is wider, the lateral stiffness is larger, the bending resistance is stronger, and more stable and reliable structural support can be provided. At the same time, the self-weight is lighter, which helps to reduce the internal force of the structure design, makes the construction more convenient, and also helps to reduce the overall cost.

[0032] In the specific structure of the second telescopic support mechanism 400, as shown in Figure 3As shown, the second telescopic supporting mechanism 400 comprises a locking member 410 and a third pipe body 420, an adjusting rod body 430 and a fourth pipe body 440 connected in sequence, one end of the third pipe body 420 is hingedly connected with the second end portion 212, one end of the fourth pipe body 440 is fixedly connected with the ground or platform, the third pipe body 420 is provided with an accommodating groove extending along its own axial direction, one end of the adjusting rod body 430 is fixedly connected with one end of the fourth pipe body 440, the other end of the adjusting rod body 430 extends into the accommodating groove and the adjusting rod body 430 is movable in the accommodating groove, the locking member 410 is connected with the adjusting rod body 430 for locking the movement of the adjusting rod body 430 in the accommodating groove. The adjusting rod body 430 is in the form of a screw rod, the locking member 410 comprises a locking nut which is connected with the adjusting rod body 430 in a matching manner. The third pipe body 420 is provided with a third fixed plate body 450 at the end close to the adjusting rod body 430, the fourth pipe body 440 is provided with a fourth fixed plate body 460 at the end close to the adjusting rod body 430, the second telescopic supporting mechanism 400 comprises a supporting plate body 470 provided with a sliding groove 471, the fourth fixed plate body 460 is fixedly connected with the supporting plate body 470, the third fixed plate body 450 is movably arranged in the sliding groove 471 and movable in the sliding groove 471.

[0033] In the embodiment, the top end of the third pipe body 420 is hingedly connected with the second end portion 212 of the fixed frame 200, the third pipe body 420 is in a hollow structure to form the accommodating groove, the top end of the fourth pipe body 440 is fixedly connected with the tail end of the adjusting rod body 430, and the tail end of the fourth pipe body 440 is fixedly connected with the ground or platform. When installing, the top of the adjusting rod body 430 extends into the accommodating groove at the tail end of the third pipe body 420 so that the adjusting rod body is movable in the accommodating groove to adjust the distance between the third pipe body 420 and the fourth pipe body 440. The third pipe body 420, the adjusting rod body 430 and the fourth pipe body 440 are coaxially arranged. In addition, the adjusting rod body 430 can be in the form of a screw rod, and the locking member 410 is a locking nut. When the adjusting rod body 430 extends into the accommodating groove, the locking nut is fixed on the outside. When the first telescopic supporting mechanism 300 is extended to push the structure 100, the adjusting rod body 430 gradually extends into the accommodating groove to shorten the distance between the third pipe body 420 and the fourth pipe body 440. When the adjusting rod body 430 moves to the corresponding position, the locking nut is fixed on the outside. The structure is simple and convenient to operate. The adjusting rod body 430 and the locking nut are connected and fixed in a matching manner to improve the supporting stability of the second telescopic supporting mechanism 400 and facilitate adjustment.

[0034] In addition, a third fixed plate body 450 is arranged at the tail end of the third pipe body 420, and a fourth fixed plate body 460 is arranged at the top end of the fourth pipe body 440, wherein the third fixed plate body 450 and the fourth fixed plate body 460 can be rectangular plate structures, and a support plate body 470 is further fixed on the fourth fixed plate body 460, wherein the support plate body 470 is a "U"-shaped groove structure, the U-shaped groove is the sliding groove 471, the extension direction of the sliding groove 471 is consistent with the axial direction of the third pipe body 420, the fourth fixed plate body 460 is fixed at one end of the sliding groove 471, and the third fixed plate body 450 is movably arranged in the sliding groove 471, and the third fixed plate body 450 moves in the sliding groove 471 when the length of the adjusting rod body 430 is adjusted. By arranging the support plate body 470 and the sliding groove 471, the support effect can be provided to the third pipe body 420 and the fourth pipe body 440, and the guiding and limiting effects can be provided to the movement of the third pipe body 420, and the movement stability of the third pipe body 420 is further improved.

[0035] In another embodiment, the first telescopic support mechanism 300 includes a plurality of first support frames, each of which includes a first pipe body 310, a first telescopic assembly and a second pipe body 330 connected in sequence. The second telescopic support mechanism 400 includes a plurality of second support frames, each of which includes a locking member 410 and a third pipe body 420, an adjusting rod body 430 and a fourth pipe body 440 connected in sequence.

[0036] In this embodiment, a plurality of first support frames are arranged on one side of the fixed frame 200, and a plurality of second support frames are correspondingly arranged on the other side, wherein the plurality of first support frames and the plurality of second support frames are uniformly spaced along the length direction of the fixed frame 200 or are distributed according to the stress points of the structure 100 to be rectified, so as to facilitate rectification and support of the structure 100 with a long top end or multiple stress points, improve the applicability of rectification operation, and at the same time, the plurality of first support frames and the plurality of second support frames can further improve the support capacity and the support stability. In addition, the number of first support frames and second support frames arranged on the fixed frame 200 is different according to different structures 100.

[0037] In the specific structure of the fixed frame 200, as shown in Figure 1 the fixed frame 200 includes at least two first fixed cross beams 210 and at least two second fixed cross beams 220, the two first fixed cross beams 210 are oppositely arranged, and the two second fixed cross beams 220 are connected between the two first fixed cross beams 210 to form a fixed space 230, and the two first fixed cross beams 210 form a first end portion 211 and a second end portion 212, respectively.

[0038] In the embodiment, the two first fixed cross beams and the two second fixed cross beams 220 are connected in a rectangular structure, the first fixed cross beams 210 are long sides, the second fixed cross beams 220 are short sides, and a fixed space 230 is formed in the middle of the rectangular structure, and the two first fixed cross beams 210 are respectively provided with a first end portion 211 and a second end portion 212. In actual work, the first fixed cross beams 210 are abutted against the top of the structure 100 on two sides, and the second fixed cross beams 220 are connected between the two first fixed cross beams 210, thereby being abutted against the top of the structure 100 on the other two sides. The first fixed cross beams 210 and the second fixed cross beams 220 can be connected by bolts, and the top of the structure 100 is fixed in the fixed space 230. By setting the fixed frame 200 as a split structure, the fixed frame 200 can be applied to structures 100 with different external structures, and the applicability is further improved.

[0039] The above description of disclosed embodiments enables those skilled in the art to carry out or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A structure tilt correction device, characterized in that: It includes a fixed frame, a first supporting telescopic frame and a second supporting telescopic frame, the fixed frame includes a fixed space for fastening the structure, and a first end and a second end arranged opposite to each other, the first end is hinged with a first telescopic support mechanism, the first telescopic support mechanism is tilted along a first direction, and the first telescopic support mechanism can be telescopically moved along the first direction, the second end is hinged with a second telescopic support mechanism, the second telescopic support mechanism is tilted along a second direction, and the second telescopic support mechanism can be telescopically moved along the second direction, and the first direction and the second direction are arranged to intersect.

2. A structure tilt correction device according to claim 1, characterized in that: The first telescopic support mechanism includes a first tube body, a first telescopic assembly and a second tube body connected in sequence, one end of the first tube body is hinged to the first end portion, and one end of the second tube body can be fixedly connected to the ground or a platform. The first telescopic assembly includes a telescopic cylinder, the movable end of the telescopic cylinder is fixedly connected to one end of the first tube body, and the fixed end of the telescopic cylinder is fixedly connected to one end of the second tube body.

3. A structure tilt correction device according to claim 2, characterized in that: A first fixing plate is provided at one end of the first tube body close to the telescopic cylinder, and a second fixing plate is provided at one end of the second tube body close to the telescopic cylinder. The telescopic cylinder is arranged between the first fixing plate and the second fixing plate. A plurality of first fixing holes are provided on the first fixing plate around the outer periphery of the telescopic cylinder, and a plurality of second fixing holes are provided on the second fixing plate in opposite directions. The first telescopic assembly includes a fixing bolt rod, which passes through the first fixing hole and the second fixing hole to lock the telescopic movement of the telescopic cylinder.

4. A structure tilt correction device according to claim 3, characterized in that: The second fixed plate is an "H"-shaped plate structure.

5. A structure tilt correction device according to any one of claims 2 to 4, characterized in that: The first telescopic support mechanism includes a plurality of first support frames, and each of the first support frames includes the first tube body, the first telescopic assembly, and the second tube body connected in sequence.

6. The structure tilt correction device according to claim 1, characterized in that: The second telescopic support mechanism includes a locking member and a third tube body, an adjusting rod body, and a fourth tube body connected in sequence. One end of the third tube body is hinged to the second end portion, and one end of the fourth tube body can be fixedly connected to the ground or a platform. The third tube body is provided with a receiving groove extending along its own axis. One end of the adjusting rod body is fixedly connected to one end of the fourth tube body, and the other end extends into the receiving groove, and the adjusting rod body can move in the receiving groove. The locking member is connected to the adjusting rod body and is used to lock the adjusting rod body from moving in the receiving groove.

7. A structure tilt correction device according to claim 6, characterized in that: The adjusting rod body is a screw structure, and the locking member includes a locking nut, which is cooperatively connected with the adjusting rod body.

8. The structure tilt correction device according to claim 6, characterized in that: The third tube body is provided with a third fixed plate at one end close to the adjusting rod body, the fourth tube body is provided with a fourth fixed plate at one end close to the adjusting rod body, the second telescopic support mechanism includes a support plate body, the support plate body is provided with a slide groove, the fourth fixed plate body is fixedly connected to the support plate body, the third fixed plate body is movably arranged in the slide groove, and the third fixed plate can move in the slide groove.

9. A structure tilt correction device according to any one of claims 6 to 8, characterized in that: The second telescopic support mechanism includes a plurality of second support frames, and each of the second support frames includes the locking member and the third tube body, the adjusting rod body, and the fourth tube body that are connected in sequence.

10. The structure tilt correction device according to claim 1, characterized in that: The fixed frame includes at least two first fixed beams and at least two second fixed beams, the two first fixed beams are arranged opposite to each other, the two second fixed beams are connected between the two first fixed beams at intervals to enclose the fixed space, and the two first fixed beams respectively form the first end and the second end.