Hanging scaffold structure for mounting mine shaft equipment
By improving the design of the hoisting platform structure and adopting components such as limit strips, mounting plates, telescopic rods, and spring strips, the problem of insufficient adjustment flexibility of the hoisting platform fixation device was solved, achieving stable fixation and fall protection in complex mining environments, and improving the applicability and safety of the hoisting platform.
Patent Information
- Application Number
- CN202520184631.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-06
AI Technical Summary
The existing platform fixing device is directly welded to the surface of the platform. The pulley design has limited adjustment range and flexibility, making it difficult to meet the diverse fixing requirements under different mining environments and operational needs. This results in insufficient stability and efficiency of the platform in complex terrain.
A structure comprising a lower hanging platform, a middle hanging platform, an upper hanging platform, a flared cylinder, and a column was designed. Through the combination of limit strips, mounting plates, telescopic rods, insertion guide rods, and spring strips, the stability of the hanging platform fixing device is adjusted and the buffer protection is provided in case of fall.
The applicability and safety of the hanging platform fixing device have been improved. It can be stably fixed in different mining environments and provides cushioning protection in the event of a fall, thereby improving operational safety and efficiency.
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Figure CN223676262U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of hanging plate structure, specifically relates to a hanging plate structure for mine shaft equipment installation. BACKGROUND
[0002] The hanging plate structure for mine shaft equipment installation is usually designed to be both strong and practical to meet the special needs of mine construction. The main structure of the hanging plate is generally divided into three layers. The three layers are connected by columns to form a stable overall structure. This layered design allows the hanging plate to meet the needs of different construction stages. The key parts of the main beam, secondary beam and column of the hanging plate usually use high-strength steel materials such as I-beam and channel steel. The selection of these materials aims to ensure the stability and load-bearing capacity of the hanging plate.
[0003] The upper hanging plate serves as a protective plate and as a work plate for workers installing pipelines and installing pipelines. It is usually suspended by steel wire ropes, allowing the entire hanging plate to be raised and lowered as needed within the shaft; the middle layer of the hanging plate serves as a work plate for shaft construction, drilling, installing brackets, tank beams and pipe beams. This layer usually carries more construction equipment and materials; the lower hanging plate serves as a work plate for tools such as electric discharge welders and for installing tankways and welding pipelines. The design of the lower hanging plate facilitates fine work such as welding by construction personnel.
[0004] The hanging plate structure for mine shaft equipment installation, as a key component in mine operations, its stability and reliability are directly related to the safety and efficiency of the operation. In use, this structure usually relies on a hanging plate fixer to ensure that the hanging plate is securely fixed in the mine, effectively preventing shaking or displacement during the operation due to various factors. However, the current commonly used hanging plate fixer installation method - direct welding on the surface of the hanging plate, while meeting the basic fixing needs to some extent, has also exposed some problems that cannot be ignored.
[0005] Specifically, although the pulley design on the hanging plate fixer allows for some degree of fine adjustment in position, the range and flexibility of this adjustment is very limited. This limitation greatly limits the scope of application and flexibility of the hanging plate fixer, making it difficult to meet the diverse fixing requirements under different mine environments and different operation needs. Especially in the face of complex and variable mine terrain and operation conditions, the limitations of this fixing method are more obvious, often leading to the difficulty of achieving the best stability and operation efficiency of the hanging plate in actual use. SUMMARY
[0006] The utility model discloses a purpose lies in providing a kind of hanging plate structure for the installation of mine shaft equipment, to solve the hanging plate fixer is directly welded on the surface of hanging plate, although the pulley design equipped on hanging plate fixer allows to carry out the slight adjustment of position to some extent, but the amplitude and flexibility of this adjustment are very limited, this limitation largely limits the application range and flexibility of hanging plate fixer, so that it is difficult to meet the diversified fixed requirements under different mine environment, different operation needs Problem.
[0007] To achieve the above object, the utility model provides the following technical scheme: a kind of hanging plate structure for the installation of mine shaft equipment, including lower hanging plate, middle hanging plate, upper hanging plate, trumpet mouth cylinder and stand, the inside of lower hanging plate, middle hanging plate and upper hanging plate is connected with stand, the surface of middle hanging plate and upper hanging plate is respectively connected with trumpet mouth cylinder, the bottom side of middle hanging plate and upper hanging plate is respectively connected with limit strip, the inner wall of limit strip is provided with mounting plate, the lower surface of mounting plate is installed with hanging plate fixer, one side of mounting plate is installed with telescopic rod, and the telescopic rod is installed in the lower surface of middle hanging plate and upper hanging plate.
[0008] In order to keep the stability of the movement of the hanging plate fixer, as a kind of hanging plate structure for the installation of mine shaft equipment of the utility model, preferably, the limit strip is symmetrically arranged on both sides of the mounting plate, and the mounting plate and the limit strip are connected by sliding.
[0009] In order to adjust the position of the hanging plate fixer, as a kind of hanging plate structure for the installation of mine shaft equipment of the utility model, preferably, the mounting plate and the telescopic rod constitute a telescopic structure.
[0010] As a kind of hanging plate structure for the installation of mine shaft equipment of the utility model, preferably, the bottom side of the lower hanging plate is connected with a cutting guide rod, the end of the cutting guide rod is sleeved with a sliding sleeve, the inner wall of the sliding sleeve is connected with a sliding block, a sliding groove is formed in the surface of the cutting guide rod close to the sliding block, a spring strip is connected between the lower hanging plate and the sliding sleeve, and the spring strip is sleeved on the surface of the cutting guide rod.
[0011] In order to limit the movement direction of the cutting guide rod, as a kind of hanging plate structure for the installation of mine shaft equipment of the utility model, preferably, the cutting guide rod, the sliding sleeve, the sliding block, the sliding groove and the spring strip are provided with four groups on the bottom side of the lower hanging plate, and the sliding sleeve and the cutting guide rod are connected by sliding; as a kind of hanging plate structure for the installation of mine shaft equipment of the utility model, preferably, two groups of sliding blocks and sliding grooves are symmetrically arranged on both sides of each cutting guide rod, and the sliding block and the cutting guide rod constitute a limiting structure through the sliding groove.
[0012] In order to buffer when the pad structure falls, as a mine well shaft equipment installation used hanging plate structure, preferably, the sliding sleeve and the spring strip constitute an elastic expansion structure.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] The utility model discloses, telescopic link operation can through the mounting plate drive hanging plate fixer transverse motion, and the hanging plate fixer transverse motion arrives the mine shaft wall, when this, can guarantee the stability of the hanging plate structure through the hanging plate fixer, this can avoid the problem that the hanging plate fixer cannot realize stable hanging plate structure when the mine size is big, thereby can improve the applicability and security of the structure use.
[0015] The utility model discloses, when the hanging plate structure appears accidental falling, and the sliding sleeve falls on the ground in advance, when the lower hanging plate drives the cutting guide rod to continue to move down and extrudes the spring strip under the action of inertia, and the spring strip can absorb the impact force through the self elastic force when extruding, thereby can buffer when the hanging plate structure falls, this can protect when the hanging plate structure falls, improve the security of the structure use. DRAWINGS
[0016] The drawings are used to provide further understanding of the utility model, and constitute a part of the specification, are used to explain the utility model with the embodiment of the utility model, and do not constitute the limitation to the utility model.In the drawings:
[0017] Figure 1 The overall assembly structure schematic view provided for the embodiment of the application.
[0018] Figure 2 The overall assembly structure bottom view provided for the embodiment of the application.
[0019] Figure 3 The hanging plate fixer installation structure schematic view provided for the embodiment of the application.
[0020] Figure 4 The hanging plate fixer installation structure explosion view provided for the embodiment of the application.
[0021] Figure 5 The protective structure schematic view provided for the embodiment of the application.
[0022] Figure 6 The protective structure sectional view provided for the embodiment of the application.
[0023] In the figure: 1, the lower layer of the hanging plate; 2, the middle layer of the hanging plate; 3, the upper layer of the hanging plate; 4, the trumpet mouth cylinder; 5, the stand; 6, the hanging plate fixer; 7, the mounting plate; 8, the limiting strip; 9, the telescopic rod; 10, the cutting guide rod; 11, the sliding sleeve; 12, the sliding block; 13, the sliding groove; 14, the spring strip. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by the ordinary skilled in the art without creative labor belong to the scope of protection of the utility model.
[0025] Please refer to Figures 1-6 The utility model provides the following technical scheme: a kind of hanging plate structure for mine shaft equipment installation, including lower layer hanging plate 1, middle layer hanging plate 2, upper layer hanging plate 3, trumpet mouth cylinder 4 and stand 5, lower layer hanging plate 1, middle layer hanging plate 2 and the inside of upper layer hanging plate 3 are connected with stand 5, the surface of middle layer hanging plate 2 and upper layer hanging plate 3 is respectively connected with trumpet mouth cylinder 4, the bottom side of middle layer hanging plate 2 and upper layer hanging plate 3 is respectively connected with limiting strip 8, the inner wall of limiting strip 8 is provided with mounting plate 7, the lower surface of mounting plate 7 is installed with hanging plate fixer 6, one side of mounting plate 7 is installed with telescopic rod 9, telescopic rod 9 is installed in the lower surface of middle layer hanging plate 2 and upper layer hanging plate 3;
[0026] First, according to the requirement of use, lower layer hanging plate 1, middle layer hanging plate 2, upper layer hanging plate 3, trumpet mouth cylinder 4 and stand 5 are welded, after the welding of hanging plate surface is completed, by surveyor positioning draw hoisting position, various pipeline position big line, cable, air pipe, steel wire rope etc., then open hole, hole size should meet the requirement of use, after hanging plate structure assembly is completed, install steel wire rope etc.
[0027] Preferably: limiting strip 8 is symmetrically arranged on the two sides of mounting plate 7, and mounting plate 7 and limiting strip 8 are connected in a sliding mode.
[0028] When mounting plate 7 is subjected to force, the hanging plate fixer 6 can slide in the inner wall of limiting strip 8, so that the movement direction of mounting plate 7 is limited and the stability of the hanging plate fixer 6 is ensured.
[0029] Preferably: mounting plate 7 and telescopic rod 9 form a telescopic structure.
[0030] In use, the telescopic rod 9 can generate an acting force on the mounting plate 7, and the mounting plate 7 can drive the hanging plate fixer 6 to move horizontally when the mounting plate 7 is subjected to the acting force, so that the position of the hanging plate fixer 6 can be adjusted.
[0031] Preferably, the bottom side of the lower hanging plate 1 is connected with cutting guide rods 10, the end of the cutting guide rod 10 is sleeved with a sliding sleeve 11, the inner wall of the sliding sleeve 11 is connected with sliding blocks 12, the surface of the cutting guide rod 10 close to the sliding block 12 is provided with a sliding groove 13, and the lower hanging plate 1 and the sliding sleeve 11 are connected with spring strips 14, and the spring strip 14 is sleeved on the surface of the cutting guide rod 10.
[0032] Preferably, the cutting guide rod 10, the sliding sleeve 11, the sliding block 12, the sliding groove 13 and the spring strip 14 are provided with four groups on the bottom side of the lower hanging plate 1, and the sliding sleeve 11 and the cutting guide rod 10 are connected in a sliding mode; two groups of the sliding block 12 and the sliding groove 13 are symmetrically arranged on the two sides of each cutting guide rod 10, and the sliding block 12 and the cutting guide rod 10 are connected in a limiting mode through the sliding groove 13.
[0033] In use, the cutting guide rod 10 can drive the sliding groove 13 to slide on the surface of the sliding block 12, so that the movement direction of the cutting guide rod 10 can be limited.
[0034] Preferably, the sliding sleeve 11 and the spring strip 14 form an elastic telescopic structure.
[0035] In use, the downward movement of the lower hanging plate 1 can compress the spring strip 14, and the spring strip 14 can absorb the impact force through the elastic force of the spring strip 14 when the spring strip 14 is compressed.
[0036] In use, the working principle of the utility model is as follows: when the diameter of the mine shaft is greatly different from the size of the hanging plate structure, the telescopic rod 9 can be operated, the telescopic rod 9 can extrude the mounting plate 7 when the telescopic rod 9 is operated, the mounting plate 7 can slide on the inner wall of the limiting strip 8 when the mounting plate 7 is extruded, and simultaneously, the mounting plate 7 can drive the hanging plate fixer 6 to move horizontally, so that the hanging plate fixer 6 can be adjusted to move horizontally to the mine shaft wall, so that the stability of the hanging plate structure can be ensured through the hanging plate fixer 6.
[0037] When the hanging plate structure falls accidentally, at this moment, the sliding sleeve 11 falls on the ground in advance when the hanging plate structure falls to the ground, the lower hanging plate 1 drives the cutting guide rod 10 to continue to move downward under the action of inertia after the sliding sleeve 11 falls to the ground, the cutting guide rod 10 can slide downward in the sliding sleeve 11, and the lower hanging plate 1 can extrude the spring strip 14 when the lower hanging plate 1 moves downward, and the spring strip 14 can absorb the impact force through the elastic force of the spring strip 14 when the spring strip 14 is extruded, so that the hanging plate structure can be buffered when falling to the ground.
[0038] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application have been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, shall be included within the scope of the present application.
Claims
1. A hanging platform structure for mine shaft equipment installation, comprising a lower hanging platform (1), a middle hanging platform (2), an upper hanging platform (3), a trumpet mouth cylinder (4) and a stand column (5), characterized in that: The lower hanging plate (1), the middle hanging plate (2) and the upper hanging plate (3) are connected with stand columns (5) inside, the surfaces of the middle hanging plate (2) and the upper hanging plate (3) are connected with trumpet mouth cylinders (4) respectively, the bottom sides of the middle hanging plate (2) and the upper hanging plate (3) are connected with limiting strips (8) respectively, the inner walls of the limiting strips (8) are provided with mounting plates (7), the lower surfaces of the mounting plates (7) are mounted with hanging plate fixers (6), one side of the mounting plates (7) is mounted with telescopic rods (9), and the telescopic rods (9) are mounted on the lower surfaces of the middle hanging plate (2) and the upper hanging plate (3).
2. A bird structure for use in installing mine shaft equipment according to claim 1, characterized in that: The limiting strips (8) are symmetrically arranged on the two sides of the mounting plate (7), and the mounting plate (7) and the limiting strips (8) are in sliding connection.
3. A bell structure for use in installing mine shaft equipment in accordance with claim 1, wherein: The mounting plate (7) and the telescopic rod (9) form a telescopic structure.
4. A bell structure for mine shaft equipment installation according to claim 1, characterized in that: The bottom side of the lower hanging plate (1) is connected with cutting stick guide rods (10), the end portions of the cutting stick guide rods (10) are sleeved with sliding sleeves (11), the inner walls of the sliding sleeves (11) are connected with sliding blocks (12), the surfaces of the cutting stick guide rods (10) close to the sliding blocks (12) are provided with sliding grooves (13), the lower hanging plate (1) and the sliding sleeves (11) are connected with spring strips (14), and the spring strips (14) are sleeved on the surfaces of the cutting stick guide rods (10).
5. A bell structure for mine shaft equipment installation according to claim 4, characterized in that: The cutting stick guide rods (10), the sliding sleeves (11), the sliding blocks (12), the sliding grooves (13) and the spring strips (14) are provided with four groups on the bottom side of the lower hanging plate (1), and the sliding sleeves (11) and the cutting stick guide rods (10) are in sliding connection.
6. A bell structure for mine shaft equipment installation according to claim 5, characterized in that: Two groups of sliding blocks (12) and sliding grooves (13) are symmetrically arranged on the two sides of each cutting stick guide rod (10), and the sliding blocks (12) and the cutting stick guide rods (10) form a limiting structure through the sliding grooves (13).
7. A bell structure for mine shaft equipment installation according to claim 6, characterized in that: The sliding sleeves (11) and the spring strips (14) form an elastic telescopic structure.