Anti-seismic hoisting structure convenient to assemble

By designing a combination of lifting beams, installation mechanisms, and anti-sway mechanisms, the problems of complex disassembly and poor seismic resistance of existing lifting slings were solved, enabling convenient and stable multi-directional lifting operations.

CN223852131UActive Publication Date: 2026-01-30TIANJIN HENGFENG HOISTING ENG CO LTD
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Patent Information

Application Number
CN202520384971.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-01-30
Estimated Expiration
2035-03-06

AI Technical Summary

Technical Problem

The existing lifting slings have complex connections between the lifting rings and the slings, which are time-consuming, labor-intensive, and pose safety risks. Furthermore, their seismic resistance is limited, and they cannot meet the lifting requirements for multi-directional vibration elimination and unrestricted width.

Method used

An anti-seismic hoisting structure was designed, which includes a hoisting beam, a hoisting ring, an installation mechanism, a hoisting mechanism and an anti-sway mechanism. Adjustable installation is achieved by installing pulleys and positioning bolts. Combined with a follow-up anti-seismic hoisting device and an anti-sway mechanism, multi-directional vibration is eliminated and swaying is prevented.

Benefits of technology

It enables convenient disassembly and flexible adjustment of the hoisting operation, can hoist materials of different widths, and effectively eliminates multi-directional vibrations, improving hoisting stability and seismic resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-seismic hoisting structure convenient to assemble, which comprises a hoisting beam and a hoisting ring, the hoisting ring is arranged above the hoisting beam, and the hoisting beam is assembled on hoisting equipment through the hoisting ring. The mounting mechanism is used for forming an adjustable mounting structure, the hoisting mechanism is used for forming a follow-up type anti-seismic hoisting tool, the shake stopping mechanism is used for forming a pressing type shake stopping structure, the mounting mechanism is arranged on the side portion of the hoisting beam, and the hoisting mechanism is assembled on the lower portion of the mounting mechanism. The lifting device has the advantages that the mounting mechanism is arranged, the positions of the lifting mechanism and the shaking stopping mechanism can be adjusted according to actual use requirements, the lifting mechanism is arranged, the width of lifted materials is not limited, and the lifting device is simple in structure, convenient to use and high in practicability. And vibration transmitted from multiple directions can be eliminated through a follow-up anti-seismic structure, and a shake stopping mechanism is arranged and can be matched with a hoisting mechanism to effectively prevent hoisted materials from shaking.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hoisting structure technical field especially is convenient to assemble's anti -seismic hoisting structure. BACKGROUND

[0002] In the prior art, conventional hoisting belts, i.e. synthetic fiber hoisting belts, are generally made of high-strength polyester filaments, have multiple advantages such as high strength, wear resistance, oxidation resistance, and ultraviolet resistance, are soft in texture, are not conductive, are not corrosive, do not harm the human body, and are widely used in various fields. There are many types of hoisting belts, and conventional hoisting belts are divided into four types according to the appearance of the hoisting belts: ring-shaped core, ring-shaped flat, double-eye core, and double-eye flat. The current hoisting belts are composed of a hoisting belt and a hoisting ring, and the connection between the hoisting ring and the hoisting belt is mostly achieved by limiting the hoisting ring with a needle. After long-term use, the hoisting belt will age, break, and be damaged in a series of natural damages that cannot be resisted. Once the hoisting belt has these conditions, the hoisting belt cannot be put into normal use. The hoisting ring on the hoisting belt has a long service life, so it is necessary to disassemble the hoisting belt from the hoisting belt that has been scrapped. The current disassembly method is to manually hold scissors to disassemble the hoisting ring, but this disassembly method is not only time-consuming and labor-intensive, but also slow in efficiency. In addition, the hands of the worker are easily injured during disassembly, which has a certain risk.

[0003] A convenient-to-assemble anti-seismic hoisting belt is disclosed in Chinese Utility Model Patent No. 202421059100.7, which comprises two connecting plates, a hoisting belt body fixedly connected between the two connecting plates, a sliding groove formed on the front surface of each connecting plate, a limiting plate arranged inside the sliding groove, a set of clamping assemblies installed on the outer surface of each connecting plate, and two clamping grooves and two round rods. However, the structure of this convenient-to-assemble anti-seismic hoisting belt is too complex, and it can only hoist single-specification strip-shaped material, which cannot meet the hoisting needs of materials with a width exceeding the width of the hoisting belt. The anti-seismic structure can only offset the vibration in the vertical direction and cannot eliminate the vibration from other directions, so the anti-seismic effect is poor. UTILITY MODEL CONTENTS

[0004] The utility model aims to provide a convenient-to-assemble anti-seismic hoisting structure.

[0005] To achieve the above-mentioned purpose, the technical solution proposed by the utility model is as follows:

[0006] The utility model provides an anti -seismic hoisting structure of convenient assembly, including hoisting beam and hoisting ring, hoisting ring is arranged in the upper of hoisting beam, hoisting beam is assembled on hoisting equipment through hoisting ring, still include the installation mechanism for constituting adjustable installation structure, the hoisting mechanism for constituting servo anti -seismic sling and the anti -sway mechanism for constituting press -type anti -sway structure, installation mechanism is arranged in the side of hoisting beam, hoisting mechanism is assembled in the lower part of installation mechanism, and anti -sway mechanism is configured in the lower part of hoisting beam corresponding to the hoisting ring.

[0007] Installation mechanism includes installation frame, installation pulley and positioning bolt, the installation frame is arranged in the side of hoisting beam and is slidably connected with the hoisting beam, the installation pulley is provided with two groups, each group of installation pulley is composed of two pulleys arranged side by side and spaced, two groups of installation pulley are arranged side by side and spaced in the inner side of installation frame and are rotatably connected with installation frame through rotating shaft, installation frame is slidably connected with hoisting beam through installation pulley, positioning bolt is arranged on one side of installation frame and is threadedly connected with installation frame by penetrating installation frame.

[0008] Still include positioning through -hole, the positioning through -hole is provided with several, several positioning through -holes are arranged side by side and spaced in the middle of hoisting beam and penetrate hoisting beam, positioning bolt penetrates hoisting beam through corresponding positioning through -hole, installation frame is fixedly connected with hoisting beam through positioning bolt and positioning through -hole.

[0009] Installation mechanism is provided with several groups, and several groups of installation mechanism are arranged side by side and spaced in the side of hoisting beam, the hoisting ring is arranged on the upper portion of one group of installation mechanism and is assembled and connected with the hoisting beam through the corresponding installation mechanism.

[0010] Hoisting mechanism includes hoisting base plate, anti -seismic component and sling assembly, the hoisting base plate is arranged in the lower portion of one group of installation frame and is fixedly connected with installation frame through bolt on the upper portion, anti -seismic component is arranged on one side of the lower portion of hoisting base plate, and sling assembly is assembled in the lower portion of anti -seismic component.

[0011] The anti-seismic assembly comprises an anti-seismic support, an anti-seismic blocking rod, anti-seismic blocking wheels and an anti-seismic connecting block, the anti-seismic support is arranged at one side of the lower part of the hoisting base plate and is assembled and connected with the hoisting base plate through bolts at one side thereof, the upper part of the anti-seismic support is provided with an arc-shaped follow-up groove structure, and mounting bolts are arranged on the inner side of the arc-shaped follow-up groove corresponding to the hoisting base plate, the mounting bolts penetrate the hoisting base plate and the arc-shaped follow-up groove structure, the anti-seismic blocking rod is arranged at the lower part of the side of the anti-seismic support away from the hoisting base plate and is assembled and connected with the anti-seismic support through bolts, the anti-seismic blocking wheels are provided in two groups, the two groups of anti-seismic blocking wheels are symmetrically assembled at the lower part of the anti-seismic blocking rod through rotating shafts, the anti-seismic connecting blocks are provided in two groups, the two groups of anti-seismic connecting blocks are symmetrically arranged between the hoisting base plate and the anti-seismic blocking rod and are assembled and connected with the hoisting base plate and the anti-seismic blocking rod through bolts at two ends thereof, and the anti-seismic connecting blocks are located below the anti-seismic support.

[0012] The lifting assembly comprises a lifting support plate, lifting side frames and lifting blocking columns, the lifting support plate is arranged on the inner side of the anti-seismic support and the two groups of anti-seismic connecting blocks and is assembled and connected with the anti-seismic support and the two groups of anti-seismic connecting blocks through bolts at the upper part thereof, the lifting side frames are provided in two groups, the two groups of lifting side frames are symmetrically assembled at the lower part of both sides of the lifting support plate through mounting racks and mounting bolts, and the lifting blocking columns are provided in two groups, the two groups of lifting blocking columns are arranged at the lower part of the two groups of lifting side frames respectively and are assembled and connected with the corresponding lifting side frames through bolts.

[0013] The lifting assembly further comprises lifting anti-skid pads, the lifting anti-skid pads are provided in two groups, the two groups of lifting anti-skid pads are arranged at the lower part of the two groups of lifting side frames respectively and are sleeved with the corresponding lifting side frames.

[0014] The lifting mechanisms are provided in two groups, the two groups of lifting mechanisms are arranged at the lower part of both ends of the lifting beam through the two groups of mounting mechanisms and are oppositely arranged.

[0015] The anti-shaking mechanism comprises an anti-shaking base, an anti-shaking cylinder, an anti-shaking baffle and an anti-shaking protective pad, the anti-shaking base is arranged at the side of the positioning bolt corresponding to the lifting ring and is fixedly connected with the positioning bolt, the anti-shaking cylinder is arranged at the lower part of the anti-shaking base and is fixedly connected with the anti-shaking base, the output end of the anti-shaking cylinder is arranged towards the lower part, the anti-shaking baffle is arranged at the output end of the anti-shaking cylinder and is fixedly connected with the output end of the anti-shaking cylinder, and the anti-shaking protective pad is arranged at the bottom of the anti-shaking baffle and is fixedly connected with the anti-shaking baffle.

[0016] The anti-shaking mechanism comprises an anti-shaking base, an anti-shaking cylinder, an anti-shaking baffle and an anti-shaking protective pad, the anti-shaking base is arranged at the side of the positioning bolt corresponding to the lifting ring and is fixedly connected with the positioning bolt, the anti-shaking cylinder is arranged at the lower part of the anti-shaking base and is fixedly connected with the anti-shaking base, the output end of the anti-shaking cylinder is arranged towards the lower part, the anti-shaking baffle is arranged at the output end of the anti-shaking cylinder and is fixedly connected with the output end of the anti-shaking cylinder, and the anti-shaking protective pad is arranged at the bottom of the anti-shaking baffle and is fixedly connected with the anti-shaking baffle.

[0017] Simple structure, be equipped with installation mechanism, can adjust the position of hoisting mechanism and anti-swing mechanism according to actual use demand, flexible use, be equipped with hoisting mechanism, hoist plate-shaped material through follow-up type anti-vibration sling and hoist, hoist material width is not limited, and through follow-up type anti-vibration structure can eliminate the vibration from multiple directions, good anti-vibration effect, be equipped with anti-swing mechanism, can effectively prevent hoisting material from producing swing with hoisting mechanism, improve hoisting stability. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the overall structure schematic diagram of the utility model;

[0019] Figure 2 It is the cooperation schematic diagram of the installation mechanism and hoisting mechanism of the utility model;

[0020] Figure 3 It is the cooperation schematic diagram of the hoisting mechanism and the installation mechanism and hoisting beam of the utility model.

[0021] In the drawing: 1, hoisting beam;2, hoisting ring;3, installation frame;4, installation pulley;5, positioning bolt;6, positioning through-hole;7, hoisting base plate;8, anti-vibration support;9, anti-vibration stop lever;10, anti-vibration stop wheel;11, anti-vibration connecting block;12, sling support plate;13, sling side frame;14, sling stop column;15, sling non-slip pad;16, anti-swing base;17, anti-swing cylinder;18, anti-swing baffle;19, anti-swing protection pad. DETAILED DESCRIPTION

[0022] The utility model will be further described in detail below,

[0023] A kind of anti-vibration hoisting structure convenient to assemble, including hoisting beam 1 and hoisting ring 2, hoisting ring 2 is arranged above hoisting beam 1, hoisting beam 1 is assembled on hoisting equipment by hoisting ring 2, further include installation mechanism for constituting adjustable installation structure, hoisting mechanism for constituting follow-up type anti-vibration sling and anti-swing mechanism for constituting press type anti-swing structure, installation mechanism is arranged at the side of hoisting beam 1, hoisting mechanism is assembled in the lower part of installation mechanism, anti-swing mechanism is configured in the lower part of hoisting beam 1 corresponding hoisting ring 2, the overall structure schematic diagram of the utility model as shown in Figure 1 .

[0024] The mounting mechanism comprises a mounting frame 3, mounting pulleys 4 and positioning bolts 5, the mounting frame 3 is arranged at the side of the hoisting beam 1 and is in sliding connection with the hoisting beam 1, the mounting pulleys 4 are provided in two groups, each group of the mounting pulleys 4 is composed of two pulleys arranged side by side and at intervals, the two groups of the mounting pulleys 4 are arranged side by side and at intervals at the inner side of the mounting frame 3 and are in rotary connection with the mounting frame 3 through rotating shafts, the mounting frame 3 is in sliding connection with the hoisting beam 1 through the mounting pulleys 4, the positioning bolts 5 are arranged at one side of the mounting frame 3 and are in threaded connection with the mounting frame 3 by penetrating the mounting frame 3, the mounting mechanism is provided in several groups, the several groups of the mounting mechanism are arranged side by side and at intervals at the side of the hoisting beam 1, the hoisting ring 2 is arranged at the upper part of one group of the mounting mechanism and is in assembly connection with the hoisting beam 1 through the corresponding mounting mechanism, the mounting mechanism is composed of the mounting frame 3, the mounting pulleys 4 and the positioning bolts 5, thereby forming an adjustable mounting structure on the hoisting beam 1, wherein the mounting frame 3 is used for providing mounting support for the hoisting mechanism or the sway-preventing mechanism, the mounting pulleys 4 are used for forming the adjustable mounting structure together with the mounting frame 3 to meet the adjustment requirement of the hoisting mechanism or the sway-preventing mechanism, under the action of the mounting pulleys 4, the convenience of position adjustment of the mounting frame 3 can be improved, and the positioning bolts 5 are used as positioning structures on the mounting frame 3 to position the mounting frame 3, as shown in the mounting mechanism and hoisting mechanism cooperation schematic view of the utility model. Figure 2

[0025] Further comprising positioning through holes 6, the positioning through holes 6 are provided in several groups, the several groups of the positioning through holes 6 are arranged side by side and at intervals at the middle part of the hoisting beam 1 and penetrate the hoisting beam 1, the positioning bolts 5 penetrate the hoisting beam 1 through the corresponding positioning through holes 6, and the mounting frame 3 is fixedly connected with the hoisting beam 1 through the positioning bolts 5 and the positioning through holes 6, wherein the positioning through holes 6 are used as through hole structures on the hoisting beam 1 to cooperate with the positioning bolts 5, thereby realizing the positioning of the mounting frame 3.

[0026] The hoisting mechanism comprises a hoisting base plate 7, a shock-resistant assembly and a lifting assembly, the hoisting base plate 7 is arranged at the lower part of one group of the mounting frame 3 and is fixedly connected with the mounting frame 3 through bolts at the upper part thereof, the shock-resistant assembly is arranged at one side of the lower part of the hoisting base plate 7, and the lifting assembly is assembled at the lower part of the shock-resistant assembly, the hoisting mechanism is provided in two groups, the two groups of the hoisting mechanism are arranged at the lower parts of the two ends of the hoisting beam 1 through the two groups of the mounting mechanism and are oppositely arranged, and the hoisting mechanism is composed of the hoisting base plate 7, the shock-resistant assembly and the lifting assembly, thereby forming a follow-up type shock-resistant lifting assembly structure, wherein the hoisting base plate 7 is used for providing mounting support for the shock-resistant assembly to assemble the shock-resistant assembly below the mounting frame 3, the shock-resistant assembly is used as a shock-resistant structure at the lower part of the hoisting base plate 7 and provides mounting support for the lifting assembly, and the lifting assembly is used for forming the follow-up type shock-resistant lifting assembly structure together with the shock-resistant assembly, as shown in the hoisting mechanism and mounting mechanism cooperation schematic view of the utility model. Figure 3

[0027] ​​The anti-seismic assembly comprises an anti-seismic support 8, an anti-seismic blocking rod 9, an anti-seismic blocking wheel 10, and an anti-seismic connecting block 11. The anti-seismic support 8 is arranged at one side of the lower part of the hoisting base plate 7 and is assembled and connected with the hoisting base plate 7 through bolts at one side. The upper part of the anti-seismic support 8 is provided with an arc-shaped follow-up groove structure. The inner side of the arc-shaped follow-up groove is provided with mounting bolts corresponding to the hoisting base plate 7. The mounting bolts penetrate the hoisting base plate 7 and the arc-shaped follow-up groove structure. The anti-seismic blocking rod 9 is arranged at the lower part of the side of the anti-seismic support 8 away from the hoisting base plate 7 and is assembled and connected with the anti-seismic support 8 through bolts. The anti-seismic blocking wheel 10 is provided with two groups. The two groups of anti-seismic blocking wheels 10 are symmetrically assembled at the lower part of the anti-seismic blocking rod 9 through rotating shafts. The anti-seismic connecting block 11 is provided with two groups. The two groups of anti-seismic connecting blocks 11 are symmetrically arranged between the hoisting base plate 7 and the anti-seismic blocking rod 9 and are assembled and connected with the hoisting base plate 7 and the anti-seismic blocking rod 9 through bolts at both ends, respectively. The anti-seismic connecting block 11 is located below the anti-seismic support 8. The anti-seismic assembly is matched through the anti-seismic support 8, the anti-seismic blocking rod 9, the anti-seismic blocking wheel 10, and the anti-seismic connecting block 11, serves as a follow-up anti-seismic structure at the lower part of the hoisting base plate 7, and provides mounting support for the hoist assembly. The anti-seismic support 8 is used for providing mounting support for the anti-seismic blocking rod 9 and is follow-up connected with the hoisting base plate 7 through the arc-shaped follow-up groove structure and the mounting bolts to constitute a follow-up anti-seismic structure. The mounting state between the anti-seismic support 8 and the hoisting base plate 7 can be locked by tightening the mounting bolts. The anti-seismic blocking rod 9 is used for providing mounting support for the anti-seismic blocking wheel 10 and is matched with the anti-seismic support 8 to provide mounting support for the anti-seismic connecting block 11. The anti-seismic blocking wheel 10 is used as a blocking wheel structure at the lower part of the anti-seismic blocking rod 9 to block the hoisted materials on the hoist assembly and prevent the hoisted materials from falling off during hoisting. The anti-seismic connecting block 11 is used for mounting and connecting the anti-seismic blocking rod 9 with the hoisting base plate 7 and can limit the anti-seismic support 8 to limit the follow-up angle of the anti-seismic support 8.

[0028] The sling assembly comprises a sling support plate 12, a sling side frame 13 and a sling blocking column 14. The sling support plate 12 is arranged at the inner side of the anti-seismic support 8 and the two sets of anti-seismic connecting blocks 11, and the upper part thereof is assembled and connected with the anti-seismic support 8 and the two sets of anti-seismic connecting blocks 11 through bolts. The sling side frame 13 is provided with two sets, and the two sets of sling side frames 13 are symmetrically assembled at the lower part of both sides of the sling support plate 12 through mounting frames and mounting bolts. The sling blocking column 14 is provided with two sets, and the two sets of sling blocking columns 14 are respectively arranged at the lower part of the two sets of sling side frames 13 and are assembled and connected with the corresponding sling side frames 13 through bolts. The sling assembly cooperates with the anti-seismic assembly through the sling support plate 12, the sling side frame 13 and the sling blocking column 14 to form a follow-up anti-seismic sling structure to meet the hoisting requirements of the hoisted materials. The sling support plate 12 is used to provide mounting support for the sling side frame 13 to mount the sling side frame 13 at the lower part of the anti-seismic assembly. The sling side frame 13 is used to form a supporting type sling structure to meet the hoisting requirements of hoisted materials of different widths, so that the width of the hoisted materials is not limited. The sling blocking column 14 can be used together with the anti-seismic blocking wheel 10 to form a limiting structure to prevent the hoisted materials on the sling assembly from falling off.

[0029] The sling assembly further comprises a sling anti-skid pad 15, which is provided with two sets, and the two sets of sling anti-skid pads 15 are respectively arranged at the lower part of the two sets of sling side frames 13 and are sleeved with the corresponding sling side frames 13. The sling anti-skid pad 15 is used as an anti-skid structure on the sling side frame 13 to prevent the hoisted materials from falling off during hoisting.

[0030] The anti-swing mechanism comprises an anti-swing base 16, an anti-swing cylinder 17, an anti-swing baffle 18 and an anti-swing protective pad 19, the anti-swing base 16 is arranged at the side of the positioning bolt 5 corresponding to the hoisting ring 2 and is fixedly connected with the positioning bolt 5, the anti-swing cylinder 17 is arranged at the lower part of the anti-swing base 16 and is fixedly connected with the anti-swing base 16, the output end of the anti-swing cylinder 17 is arranged downward, the anti-swing baffle 18 is arranged at the output end of the anti-swing cylinder 17 and is fixedly connected with the output end of the anti-swing cylinder 17, the anti-swing protective pad 19 is arranged at the bottom of the anti-swing baffle 18 and is fixedly connected with the anti-swing baffle 18, the anti-swing mechanism is matched by the anti-swing base 16, the anti-swing cylinder 17, the anti-swing baffle 18 and the anti-swing protective pad 19, and forms the anti-swing structure of the lower part of the hoisting beam 1, so as to cooperate with the follow-up type anti-shock lifting appliance to prevent the hoisted material from swinging, wherein the anti-swing base 16 is used for providing mounting support for the anti-swing cylinder 17 to mount the anti-swing cylinder 17 at the lower part of the hoisting beam 1 through the mounting mechanism, the anti-swing cylinder 17 is used for providing mounting support for the anti-swing baffle 18 and driving the anti-swing baffle 18 to perform lifting action through the telescopic action of the output end, the anti-swing baffle 18 is used for performing lifting under the action of the anti-swing cylinder 17 to cooperate with the follow-up type anti-shock lifting appliance, and limiting the swing of the hoisted material, and the anti-swing protective pad 19 is used as the protective structure between the anti-swing baffle 18 and the hoisted material, so as to prevent the anti-swing baffle 18 from scratching or damaging the hoisted material during hoisting.

[0031] In the technical solution, each mechanism can be added or reduced according to actual use requirements.

[0032] Working principle:

[0033] The hoisting mechanism and the anti-swing mechanism are assembled on the hoisting beam 1 through the mounting mechanism, the position of the mounting frame 3 on the hoisting beam 1 can be adjusted through the mounting pulley 4, and the mounting mechanism is positioned through the cooperation of the positioning bolt 5 and the corresponding positioning through hole 6, so as to fix the hoisting mechanism or the anti-swing mechanism at the specified position, and the material is hoisted when the material is placed between the two groups of hoisting mechanisms, so as to hoist the material, and the output end of the anti-swing cylinder 17 is elongated to drive the anti-swing baffle 18 to descend during hoisting, the hoisted material is limited through the anti-swing protective pad 19, and the follow-up type anti-shock lifting appliance can effectively reduce the influence of vibration on the hoisted material, and the hoisting stability is ensured.

[0034] The utility model discloses a simple structure, is equipped with mounting mechanism, can according to actual use requirement hoisting mechanism and the position of anti-swing mechanism are adjusted, use nimble, be equipped with hoisting mechanism, through follow -up type anti -shock lifting appliance hoisting operation is carried out to the plate -shaped material, hoisting material width is not restricted, and through follow -up type anti -shock structure can eliminate the vibration that comes from multiple directions, and the anti -shock effect is good, be equipped with anti -swing mechanism, can cooperate hoisting mechanism effectively prevent hoisting material from producing swing, promote hoisting stability.

[0035] The above has carried out the detailed description to one embodiment of the utility model, but the content is only the preferred embodiment of the utility model, cannot be considered for limiting the implementation scope of the utility model. All equal changes and improvement etc. that are made to the utility model application scope belong to the patent coverage scope of the utility model still.

Claims

1. An earthquake-resistant hoisting structure that is easy to assemble, comprising a hoisting beam (1) and a hoisting ring (2) arranged above the hoisting beam (1), the hoisting beam (1) being fitted on a hoisting device by the hoisting ring (2), characterized in that, The mounting mechanism is arranged on the side of the hoisting beam (1), the hoisting mechanism is assembled on the lower part of the mounting mechanism, and the anti-sway mechanism is arranged on the lower part of the hoisting beam (1) corresponding to the hoisting ring (2).

2. A shock resistant hoisting structure for ease of assembly as claimed in claim 1 wherein, The mounting mechanism includes a mounting frame (3), mounting pulleys (4), and positioning bolts (5). The mounting frame (3) is arranged on the side of the hoisting beam (1) and is in sliding connection with the hoisting beam (1). Each group of the mounting pulleys (4) is composed of two pulleys arranged side by side and spaced apart. Two groups of the mounting pulleys (4) are arranged side by side and spaced apart on the inner side of the mounting frame (3) and are in rotational connection with the mounting frame (3) through rotating shafts. The mounting frame (3) is in sliding connection with the hoisting beam (1) through the mounting pulleys (4). The positioning bolts (5) are arranged on one side of the mounting frame (3) and are in threaded connection with the mounting frame (3) through the mounting frame (3).

3. A shock resistant hoisting structure for ease of assembly as claimed in claim 2 wherein, The positioning through holes (6) are arranged on the middle part of the hoisting beam (1) and penetrate the hoisting beam (1). The positioning bolts (5) penetrate the hoisting beam (1) through the corresponding positioning through holes (6). The mounting frame (3) is in fixed connection with the hoisting beam (1) through the positioning bolts (5) and the positioning through holes (6).

4. A shock resistant hoisting structure for ease of assembly as claimed in claim 3 wherein, The mounting mechanism is arranged on the side of the hoisting beam (1), the hoisting mechanism is assembled on the lower part of the mounting mechanism, and the anti-sway mechanism is arranged on the lower part of the hoisting beam (1) corresponding to the hoisting ring (2).

5. A shock resistant hoisting structure for ease of assembly as claimed in claim 4 wherein, The hoisting mechanism includes a hoisting base plate (7), an anti-seismic assembly, and a hoist assembly. The hoisting base plate (7) is arranged on the lower part of one of the mounting frames (3), and the upper part thereof is in fixed connection with the mounting frame (3) through bolts. The anti-seismic assembly is arranged on one side of the lower part of the hoisting base plate (7). The hoist assembly is assembled on the lower part of the anti-seismic assembly.

6. A shock resistant hoisting structure for ease of assembly as claimed in claim 5 wherein, The anti-seismic assembly comprises an anti-seismic support (8), an anti-seismic blocking rod (9), an anti-seismic blocking wheel (10), and an anti-seismic connecting block (11), the anti-seismic support (8) is arranged on one side of the lower part of the hoisting base plate (7) and is assembled and connected with the hoisting base plate (7) through bolts on one side, the upper part of the anti-seismic support (8) is provided with an arc-shaped follow-up groove structure, the inner side of the arc-shaped follow-up groove structure is provided with mounting bolts corresponding to the hoisting base plate (7), the mounting bolts penetrate the hoisting base plate (7) and the arc-shaped follow-up groove structure, the anti-seismic blocking rod (9) is arranged on the lower part of the side of the anti-seismic support (8) away from the hoisting base plate (7) and is assembled and connected with the anti-seismic support (8) through bolts, the anti-seismic blocking wheel (10) is provided with two groups, the two groups of anti-seismic blocking wheels (10) are symmetrically assembled on the lower part of the anti-seismic blocking rod (9) through rotating shafts, the anti-seismic connecting block (11) is provided with two groups, the two groups of anti-seismic connecting blocks (11) are symmetrically arranged between the hoisting base plate (7) and the anti-seismic blocking rod (9) and are assembled and connected with the hoisting base plate (7) and the anti-seismic blocking rod (9) through bolts at both ends respectively, and the anti-seismic connecting block (11) is located below the anti-seismic support (8).

7. A shock resistant hoisting structure for ease of assembly as claimed in claim 6 wherein, The lifting assembly comprises a lifting support plate (12), a lifting side frame (13), and a lifting blocking column (14), the lifting support plate (12) is arranged on the inner side of the anti-seismic support (8) and the two groups of anti-seismic connecting blocks (11) and is assembled and connected with the anti-seismic support (8) and the two groups of anti-seismic connecting blocks (11) through bolts on the upper part, the lifting side frame (13) is provided with two groups, the two groups of lifting side frames (13) are symmetrically assembled on both sides of the lower part of the lifting support plate (12) through mounting racks and mounting bolts, and the lifting blocking column (14) is provided with two groups, the two groups of lifting blocking columns (14) are respectively arranged on the lower part of the two groups of lifting side frames (13) and are assembled and connected with the corresponding lifting side frames (13) through bolts.

8. A shock resistant hoisting structure for ease of assembly as claimed in claim 7 wherein, The lifting assembly further comprises lifting anti-skid pads (15), the two groups of lifting anti-skid pads (15) are respectively arranged on the lower part of the two groups of lifting side frames (13) and are sleeved with the corresponding lifting side frames (13).

9. A shock resistant hoisting structure for ease of assembly as claimed in claim 8 wherein, The hoisting mechanism is provided with two groups, and the two groups of hoisting mechanisms are arranged on the lower part of both ends of the hoisting beam (1) through two groups of mounting mechanisms and are oppositely arranged.

10. A shock resistant hoisting structure for ease of assembly as claimed in claim 9 wherein, The anti-sloshing mechanism comprises an anti-sloshing base (16), an anti-sloshing cylinder (17), an anti-sloshing baffle (18) and an anti-sloshing protective pad (19), the anti-sloshing base (16) is arranged at the side of the positioning bolt (5) corresponding to the hoisting ring (2) and is fixedly connected with the positioning bolt (5), the anti-sloshing cylinder (17) is arranged at the lower part of the anti-sloshing base (16) and is fixedly connected with the anti-sloshing base (16), the output end of the anti-sloshing cylinder (17) is arranged towards the lower part, the anti-sloshing baffle (18) is arranged at the output end of the anti-sloshing cylinder (17) and is fixedly connected with the output end of the anti-sloshing cylinder (17), and the anti-sloshing protective pad (19) is arranged at the bottom of the anti-sloshing baffle (18) and is fixedly connected with the anti-sloshing baffle (18).

Citation Information

Patent Citations

  • Anti-seismic lifting belt convenient to assemble

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