A multifunctional platform for high-tower inner cavity construction
By designing a multi-functional platform, adjustable connecting rods and traveling cylinders are used to achieve flexible installation and large-scale movement of the high tower's internal cavity during construction. This solves the problems of high cost and poor safety of conventional construction methods, and improves the adaptability and safety of construction.
Patent Information
- Application Number
- CN202211199672.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-29
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2042-09-29
AI Technical Summary
During conventional high tower interior construction, temporary scaffolding or custom-made trusses are costly and have poor adaptability, while permanent ladder platforms are not very safe and the on-site construction environment is poor.
Design a multifunctional platform, including a carrier, a support system, a carrier platform, and an inner cavity platform. The support system consists of columns and adjustable connecting rods. The inner cavity platform is suspended below the carrier platform by a walking system. The platform can move flexibly and change size by using adjustable connecting rods and walking cylinders.
It enables flexible installation and large-scale construction within the cavities of different towers, improving construction safety and adaptability while reducing construction costs.
Smart Images

Figure CN115573549B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of multifunctional platform. More particularly, the present application relates to a multifunctional platform for high tower cavity construction. BACKGROUND
[0002] In conventional high tower cavity construction, a support is usually temporarily built or a customized truss is used as a construction platform. The structure is complex and the cost is high. The adaptability is poor. The bearing of the frame body needs to be buried in a pre-buried part, which seriously damages the appearance of the structure. Steel towers or combined towers are used for construction by borrowing permanent ladder platforms. The on-site construction environment is poor, the space is limited, and the safety is not high. SUMMARY
[0003] In order to achieve these objects and other advantages of the present application, a preferred embodiment of the present application provides a multifunctional platform for high tower cavity construction, comprising:
[0004] a bearing body;
[0005] a support system supported above the bearing body;
[0006] a bearing platform arranged above the support system;
[0007] a cavity platform hung below the bearing platform by a walking system and freely movable along the bearing platform, wherein the bearing body and the support system jointly form an internal space, and the cavity platform is located in the internal space.
[0008] In another embodiment, the support system comprises a column, a locking device, a walking roller set one, a limiting device one, an adjustable connecting rod set one, and an adjustable connecting rod set two, wherein,
[0009] the column is vertically arranged on the bearing body, the top of the column is provided with a walking roller set one to walk on the bearing platform, and the top of the column is also provided with a limiting device one to clamp the walking roller, and the limiting device one is provided with the locking device to temporarily lock the support system.
[0010] In another embodiment, four columns form a square structure, wherein two columns of one side are connected by an adjustable connecting rod set one cross-hinged, and two columns of an adjacent side are connected by an adjustable connecting rod set two cross-hinged.
[0011] In another embodiment, the adjustable connecting rod set one and the adjustable connecting rod set two are both formed by two adjustable connecting rods cross-hinged, and the distance between the two adjacent columns can be realized by adjusting the included angle between the two adjustable connecting rods.
[0012] In another embodiment, the bearing platform comprises a load-bearing beam, a protective rail, a safety fence, a walking platform, and an end limiting device, wherein,
[0013] The load-bearing beam is horizontally arranged on the support system, and the lower end of the load-bearing beam is provided with an end limiting device, and the load-bearing beam is further provided with a protective rail and a safety fence, and the walking platform is arranged below the load-bearing beam to provide the walking.
[0014] In another embodiment, the walking system comprises a walking oil cylinder, a snap ring, a pin shaft I, a connecting lug I, a connecting lug II, and a walking roller set II, wherein,
[0015] The fixed end of the walking oil cylinder is connected to the bearing platform through the snap ring, the pin shaft I, and the connecting lug I, and the telescopic end of the walking oil cylinder is connected to the inner cavity platform through the pin shaft I and the connecting lug II, and the telescopic movement of the walking oil cylinder drives the inner cavity platform to move freely along the bearing platform through the walking roller set II.
[0016] In another embodiment, the inner cavity platform comprises an outer ring platform, an inner ring platform, a telescopic oil cylinder, an upper pressing wheel, a lower supporting wheel, and a pin shaft II, wherein,
[0017] The outer ring platform and the inner ring platform are both columnar structures, and the height of the inner ring platform is less than that of the outer ring platform, the inner ring platform is slidably arranged in the outer ring platform through the upper pressing wheel and the lower supporting wheel, and the inner ring platform is connected to the telescopic end of the telescopic oil cylinder through the pin shaft II, and the fixed end of the telescopic oil cylinder is connected to the outer ring platform, and the telescopic movement of the telescopic oil cylinder drives the inner ring platform to move in the outer ring platform.
[0018] In another embodiment, the inner cavity platform further comprises an outer ring turnover platform and an inner ring turnover platform,
[0019] The outer ring turnover platform is reversibly connected to the outer ring platform, and the inner ring turnover platform is reversibly connected to the inner ring platform.
[0020] The support system of the present application is supported on a bearing body, the bearing platform is placed on the support system, and the inner cavity platform is suspended on the bearing platform through the walking system. The support system can change in size through the adjustable connecting rod set I and II, and can be installed on different bearing bodies; the inner cavity platform can freely move on the bearing platform through the walking oil cylinder of the walking system, meeting the use requirements at different positions; the inner cavity platform is assembled by modules, and adopts a sleeve structure, and the overall structure size can be changed through the inner and outer oil cylinders, meeting the inner cavity structure of different shapes.
[0021] Other advantages, objects, and features of the application will be apparent to those skilled in the art from the following specification. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 Overall structure of the multifunctional platform for high tower cavity construction in an embodiment of the application.
[0023] Figure 2 A view of Figure 1
[0024] Figure 3 A view of Figure 1
[0025] Figure 4 A view of Figure 1
[0026] Figure 5 Front view of the support system in an embodiment of the application.
[0027] Figure 6 Side view of the support system in an embodiment of the application.
[0028] Figure 7 Front view of the bearing system in an embodiment of the application.
[0029] Figure 8 Side view of the bearing system in an embodiment of the application.
[0030] Figure 9 Front view of the walking system in an embodiment of the application.
[0031] Figure 10 Side view of the walking system in an embodiment of the application.
[0032] Figure 11 Front view of the cavity platform in an embodiment of the application.
[0033] Figure 12 Side view of the cavity platform in an embodiment of the application.
[0034] Figure 13 Plan view of the cavity platform in an embodiment of the application. DETAILED DESCRIPTION
[0035] The application will be further described with reference to the drawings, in which:
[0036] The following description is presented to enable any person skilled in the art to practice the application as claimed. The preferred embodiments disclosed herein are only examples of the application and alternative embodiments, modifications, improvements, equivalents, and the like are possible. The scope of the application is limited only by the claims.
[0037] Those skilled in the art will appreciate that, in the disclosure of the present application, the terms "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore the above terms cannot be understood as a limitation of the present application.
[0038] It can be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" cannot be understood as a limitation of the number.
[0039] As shown in Figures 1-13 A multifunctional platform for high-tower cavity construction of the present application comprises:
[0040] a carrier 300,
[0041] a support system 301 supported above the carrier 300;
[0042] a carrying platform 302 arranged above the support system 301;
[0043] a cavity platform 304 hung below the carrying platform 302 by a walking system 303 and freely movable along the carrying platform 302. Wherein the carrier 300 and the support system 301 together form an internal space, and the cavity platform is located in the internal space
[0044] In the above embodiment, the cavity platform 304 is provided with a construction space for standing and placing construction equipment, facilitating subsequent construction. The cavity platform 304 moves left and right along the carrying platform 302, driving the construction personnel standing in the cavity platform 304 and the construction equipment placed therein to move left and right, thereby realizing large-scale construction.
[0045] The bearing body 300 can be made of concrete, steel structure or other high-strength structure, as the weight-bearing base of the whole system, and the bearing body 300 is hollow inside, and the internal space of the bearing body 300 and the internal space of the support system 301 are communicated to form a larger internal space for accommodating the inner cavity platform 304, and the size of the internal space can move the inner cavity platform 304 left and right.
[0046] In the above embodiment, the support system 301 mainly plays the role of connecting the upper and lower parts, supporting the bearing platform 302 upward and supporting the bearing body 300 downward, and its specific structure is not limited, and in actual construction, steel structure is usually used.
[0047] Another embodiment gives a specific form of the support system 301, which includes a column 310, a locking device 311, a walking roller set 312, a limiting device 313, an adjustable connecting rod set 314 and an adjustable connecting rod set 315, wherein the column 310 is vertically arranged on the bearing body 300, the top of the column 310 is provided with the walking roller set 312 to walk on the bearing platform 302, and the top of the column 310 is also provided with the limiting device 313, which clamps the walking roller 312, and the locking device 311 is arranged on the limiting device 313 to temporarily lock the support system 301.
[0048] In the above embodiment, the whole support system 301 is hung below the bearing platform 302, and the walking roller set 312 is used to move on the bearing platform 302 to drive the column 310 to move, and then drive the whole platform to move along the bearing platform 302, during the whole process, when the column 310 is controlled to stop moving and walking on the bearing body 300, the bearing platform 302 can be fixed and supported by the support system, and in order to avoid the walking roller from deviating during walking, the limiting device 313 is specially arranged to clamp the walking roller. In this way, the whole support system can be adjusted according to the shape of the bearing body 300, such as some bearing bodies 300 can be loaded at A and cannot be loaded at B, but some bearing bodies 300 cannot be loaded at A and can be loaded at B, then the column can be adjusted to the appropriate loading position by using the above method, and the column can be used to support.
[0049] In another embodiment, four of the columns 310 form a square structure, in which two columns of one side are connected by a cross-hinged adjustable connecting rod set 314, and two columns of an adjacent side are connected by a cross-hinged adjustable connecting rod set 315; the adjustable connecting rod set 314 and the adjustable connecting rod set 315 are both cross-hinged by two adjustable connecting rods, and the distance between two adjacent columns can be adjusted by adjusting the included angle between the two adjustable connecting rods. In this way, the distance between two columns can be adjusted according to the actual shape and support condition of the carrier 300.
[0050] In another embodiment, a specific form of a carrying platform is provided, which includes a load-bearing beam 320, a protective rail 321, a safety fence 322, a walking platform 323, and an end limiting device 324, wherein,
[0051] The load-bearing beam 330 is horizontally arranged on the support system 301, and the lower part of both ends of the load-bearing beam 330 is provided with an end limiting device 324. The load-bearing beam 330 is also provided with a protective rail 321 and a safety fence 322. The walking platform 323 is arranged below the load-bearing beam 320 to allow the walking 303 to walk.
[0052] In the above embodiment, the protective rail 321 is a plurality of vertical arrangements, and the safety fence 322 is arranged on the protective rail 321 and is transversely arranged to protect the equipment placed on the carrying platform or the construction personnel standing on the carrying platform.
[0053] In another embodiment, a specific form of a walking system 303 is provided, which includes a walking oil cylinder 330, a snap ring 331, a pin shaft 332, a connecting lug 333, a connecting lug 334, and a walking roller set 336, wherein the fixed end of the walking oil cylinder 330 is connected to the carrying platform 302 through the snap ring 331, the pin shaft 332, and the connecting lug 333. The telescopic end of the walking oil cylinder 330 is connected to the inner cavity platform 304 through the pin shaft 332 and the connecting lug 334. By the telescopic extension of the walking oil cylinder 330, the inner cavity platform 304 is driven to move freely along the carrying platform 302 through the walking roller set 336.
[0054] In the above embodiment, the power source of the whole walking system 303 is derived from the extension and retraction of the walking oil cylinder 330, the extension and retraction of the walking oil cylinder 330 is utilized to drive the movement of the inner cavity platform 304, and in order to ensure the convenient walking of the inner cavity platform 304, the walking roller set two 336 is arranged between the inner cavity platform 304 and the bearing platform 302, the rolling friction is small, thereby reducing the resistance of the walking oil cylinder 330 in the walking process. The fixed end of the walking oil cylinder 330 is connected with the bearing platform 302 with large volume and weight through the snap ring 331, the pin shaft one 332 and the connecting lug one 333, thereby providing a stable basis for the subsequent extension and retraction force.
[0055] In another embodiment, a specific form of the inner cavity platform 304 is provided, the inner cavity platform 304 comprises an outer ring platform 340, an inner ring platform 342, an extension and retraction oil cylinder 344, an upper pressing wheel 345, a lower supporting wheel 346 and a pin shaft two 347, wherein,
[0056] The outer ring platform 340 and the inner ring platform 342 are both columnar structures, the height of the inner ring platform 342 is less than that of the outer ring platform 340, the inner ring platform is slidably arranged in the outer ring platform 340 through the upper pressing wheel 345 and the lower supporting wheel 346, and the inner ring platform 342 is connected to the extension and retraction end of the extension and retraction oil cylinder 344 through the pin shaft two 347, the fixed end of the extension and retraction oil cylinder is connected to the outer ring platform 340, and the extension and retraction of the extension and retraction oil cylinder 344 is utilized to drive the movement of the inner ring platform 342 in the outer ring platform 340.
[0057] In the above embodiment, the inner ring platform 342 is equivalent to a movable frame arranged in the outer ring platform 340, the two are realized rolling movement through the upper pressing wheel 345 and the lower supporting wheel 346, the two are connected in staggered mode, thereby pulling out the inner ring platform 342 from the outer ring platform 340 to form a platform with larger space, or pushing the inner ring platform 342 back into the outer ring platform 340 to form a platform with smaller space, so that the size of the inner cavity platform can be adjusted according to actual needs.
[0058] In another embodiment, the inner cavity platform 304 further comprises an outer ring overturning platform 341 and an inner ring overturning platform 343,
[0059] The outer ring overturning platform 341 is overturningly connected to the outer ring platform 340, and the inner ring overturning platform 343 is overturningly connected to the inner ring platform 342.
[0060] The outer ring flip platform 341 and the inner ring flip platform 343 are essentially similar to the flip shaft, when the inner ring platform 342 is pulled out from the outer ring platform 340, at this time, the two are separated independently, the outer ring platform 340 can be flipped along the outer ring flip platform 341 according to actual needs, thereby realizing angle change, similarly, the inner ring platform 342 can be flipped along the inner ring flip platform 343 according to actual needs, thereby adapting to different shapes of inner cavity structure.
[0061] Although embodiments of the present application have been disclosed in connection with the illustrative embodiments set forth above, it should be understood that various modifications, enhancements, and alternatives to the embodiments disclosed herein can be made by those skilled in the art without departing from the scope of the present application as defined in the appended claims and equivalents thereof.
Claims
1. A multi-functional platform for high tower cavity construction, characterized in that, The utility model relates to a kind of multi-functional platform for high tower inner cavity construction, including: Supporting body; Support system is supported above the supporting body; Carrying platform is arranged above the support system; Inner cavity platform is hung below the carrying platform by walking system, and freely moves along the carrying platform; Wherein, the supporting body and the support system form internal space together, and the inner cavity platform is located in the internal space; The support system includes column, locking device, walking roller group one, limiting device one, adjustable connecting rod group one and adjustable connecting rod group two, wherein, The column is vertically arranged on the supporting body, the top of the column is provided with walking roller group one to walk on the carrying platform, the top of the column is also provided with limiting device one, which clamps walking roller, the locking device is arranged on the limiting device one to temporarily lock the support system.
2. The multi-functional platform for construction of the inner chamber of a high tower according to claim 1, characterized in that, Four columns form a square structure, two columns of one side are connected by adjustable connecting rod group one through cross hinged, and two columns of adjacent side are connected by adjustable connecting rod group two through cross hinged.
3. The multifunctional platform for construction of the high tower cavity according to claim 2, characterized in that, The adjustable connecting rod group one and the adjustable connecting rod group two are both formed by two adjustable connecting rods cross hinged, and the distance between two adjacent columns can be adjusted by adjusting the included angle between the two adjustable connecting rods.
4. The multi-functional platform for construction of high tower cavity as claimed in claim 1 wherein, The carrying platform includes bearing beam, guardrail, safety enclosure, walking platform and end limiting device, wherein, The bearing beam is horizontally arranged on the support system, the end limiting device is arranged below the two ends of the bearing beam, the guardrail and the safety fence are also arranged on the bearing beam, and the walking platform is arranged below the bearing beam for the walking system to walk.
5. The multi-functional platform for construction of high tower cavity as claimed in claim 1 wherein, The walking system includes walking oil cylinder, snap ring, pin shaft one, connecting lug one, connecting lug two and walking roller group two, wherein, The fixed end of the walking oil cylinder is connected with the carrying platform through the snap ring, pin shaft one and connecting lug one, the telescopic end of the walking oil cylinder is connected with the inner cavity platform through pin shaft one and connecting lug two, and the inner cavity platform freely moves along the carrying platform through walking roller group two by the telescopic of the walking oil cylinder.
6. The multi-functional platform for high tower inner cavity construction according to claim 1, wherein, The inner cavity platform includes outer ring platform, inner ring platform, telescopic oil cylinder, upper pressing wheel, lower supporting wheel and pin shaft two, wherein, The outer ring platform and the inner ring platform are both columnar structures, and the height of the inner ring platform is less than that of the outer ring platform, the inner ring platform is slidably arranged in the outer ring platform through the upper pressing wheel and the lower supporting wheel, and the inner ring platform is connected to the telescopic end of the telescopic oil cylinder through pin shaft two, and the fixed end of the telescopic oil cylinder is connected to the outer ring platform, and the inner ring platform moves in the outer ring platform by the telescopic of the telescopic oil cylinder.
7. The multi-functional platform for construction of high tower cavity as claimed in claim 6 wherein, The inner cavity platform further includes outer ring turnover platform and inner ring turnover platform, The outer ring turnover platform is reversibly connected to the outer ring platform, and the inner ring turnover platform is reversibly connected to the inner ring platform.
Citation Information
Patent Citations
Special platform for cylinder structure
CN112324127A
Multidirectional telescopic hanging basket
CN211421804U