Steel pipe pile operation platform and steel pipe pile bracket welding system
By designing a steel pipe pile operation platform with sliding cooperation between the slider and the slide rail on the steel pipe pile, the problem of frequent disassembly of the steel pipe pile welding operation platform in the existing technology is solved, and high efficiency and flexibility of steel pipe pile welding operation are achieved.
Patent Information
- Application Number
- CN202422792989.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Existing steel pipe pile welding platforms require frequent disassembly and installation, resulting in long construction periods and being time-consuming and labor-intensive, especially inefficient when constructing in shallow sea areas.
Design a steel pipe pile working platform that uses a sliding block and a sliding track to slide together and is suspended on the steel pipe pile by hook locking components, so as to realize the flexible movement and stable connection of the platform components and allow the formation of a continuous working platform between multiple steel pipe piles.
It achieves flexibility and efficiency in steel pipe pile welding operations, reduces platform disassembly and assembly time and costs, and is suitable for continuous processing of multiple steel pipe piles.
Smart Images

Figure CN223465752U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to construction technical field, especially a kind of steel pipe pile operation platform and steel pipe pile hanger welding system. BACKGROUND
[0002] In the steel pipe pile construction process in shallow sea area, part of working condition needs to work on the steel pipe pile that has been built, for example, hanger welding etc. on it;At present, the welding mode is often artificial welding, which needs to set up operation platform around steel pipe pile for workers to stand.
[0003] Conventional operation platform is formed by setting up hanging frame, when hanger welding on the steel pipe pile in the range of operation platform is completed, operation platform needs to be dismantled, and then operation platform is set at other steel pipe pile, the whole process is long in installation and dismantling operation period, and needs crane to assist in dismantling, which is time-consuming and laborious. UTILITY MODEL CONTENTS
[0004] The utility model aims at overcoming the problem that operation platform needs to be removed and then installed again when changing operation position in the background art, and provides a kind of steel pipe pile operation platform and steel pipe pile hanger welding system.
[0005] In the first aspect, the utility model provides a kind of steel pipe pile operation platform, comprising: platform component, including the channel being set along the first direction extension, and the first slide and the second slide being set along the first direction extension and being distributed in the channel both sides;At least two sliding blocks are slidably matched in the first slide and the second slide, and the sliding block on the first slide and the sliding block on the second slide are correspondingly arranged;Hook lock piece is connected on the sliding block.
[0006] The utility model provides a kind of steel pipe pile operation platform, first slide and second slide are slidably connected with at least two sliding blocks, hook lock piece is connected on each sliding block, hook lock piece can be used to hook and hang workpiece, to provide support force for steel pipe pile operation platform, at least four hook lock pieces distributed in the both sides of channel can be more stably hung and fixed on workpiece on platform component, to form operation platform on workpiece;Sliding block and slide are slidably matched, so that the end of hook lock piece close to platform component can move along the first direction relative to platform component, so that platform component can move along the first direction relative to workpiece to travel to next operation area, and maintain the hooking state with workpiece during movement, so that operation platform can be formed between continuous multiple workpieces through the travel movement of platform component, to realize the working operation on several workpieces.
[0007] With some preferred embodiments as an example: the steel pipe pile operation platform can be used for providing operation platform for linearly arranged steel pipe piles, when in use, the platform assembly can be hung on two adjacent steel pipe piles through at least four hook locking pieces to form the operation platform for the two steel pipe piles; after operation is completed, the platform assembly is moved along the first direction through pushing and pulling, so that the next steel pipe pile enters the platform assembly along the channel to form the operation platform for the next steel pipe pile.
[0008] Preferably, the first slide and the second slide are each slidingly fitted with at least three sliding blocks, the sliding blocks on the first slide can enter and exit the first slide from both ends of the first slide, and the sliding blocks on the second slide can enter and exit the second slide from both ends of the second slide.
[0009] During the movement of the platform assembly, the sliding blocks that slide out from the rear end of the movement direction can be used to connect with the next workpiece to be processed and enter the slide from the front end of the movement direction again, so as to realize the recycling of the sliding blocks; at least three sliding blocks 14 are arranged on each of the two slides, so that when one sliding block on each slide circulates, at least two sliding blocks and the hook locking pieces thereon can be connected with the workpiece to be processed, thereby maintaining the stable hooking of the platform assembly.
[0010] Preferably, both ends of the first slide and both ends of the second slide are open; so that the sliding blocks can be smoothly put into or taken out from the ends of the first slide and the second slide.
[0011] Preferably, the platform assembly comprises two platform structures arranged at intervals, and the channel is located between the two platform structures, and a platform connecting piece is fixedly connected between the two platform structures.
[0012] Preferably, the platform connecting piece is a door-shaped frame, and the door-shaped frame is erected between the two platform structures.
[0013] The door-shaped frame can avoid the steel pipe pile and the corbel to ensure the connection rigidity between the two platform structures and avoid the instability of the platform structure.
[0014] Preferably, a scaffold board is arranged between the two platform structures.
[0015] Preferably, the first slide and the second slide comprise a sliding cavity extending in the first direction, and an opening located at the upper part of the sliding cavity, and in the projection in the first direction, the size of the opening is smaller than the size of the sliding block.
[0016] In a second aspect, the utility model provides a kind of steel pipe pile hanger welding system, including at least two steel pipe piles and the steel pipe pile operation platform as described above, wherein: at least two described steel pipe piles are located in the passageway, at least two described hooking pieces are hung on the steel pipe pile, wherein, at least one sliding block connected with the hooking piece is slidably connected with the first slide, and at least one sliding block connected with the hooking piece is slidably connected with the second slide.
[0017] The steel pipe pile hanger welding system provided by the utility model can arrange the operation platform around the steel pipe pile flexibly and conveniently at low cost, so that workers can weld the hanger on the steel pipe pile or perform other work operations.
[0018] Preferably, the platform assembly can move in the first direction.
[0019] Preferably, the hooking piece includes a flexible rope and a hook claw, one end of the flexible rope is connected to the sliding block, the other end is connected to the hook claw, and the hook claw is clamped on the upper pipe opening of the steel pipe pile.
[0020] Compared with the prior art, the utility model has the following beneficial effects:
[0021] 1. The steel pipe pile operation platform provided by the utility model is slidably connected with at least two sliding blocks on the first slide and the second slide, each sliding block is connected with a hooking piece, the hooking piece can be used to hook the workpiece to be processed, thereby providing support for the steel pipe pile operation platform, at least four hooking pieces distributed on both sides of the passageway can stably suspend and fix the platform assembly on the workpiece to be processed, thereby forming the operation platform for the workpiece to be processed; the sliding block is slidably connected with the slide, so that one end of the hooking piece close to the platform assembly can move in the first direction relative to the platform assembly, so that the platform assembly can move in the first direction relative to the workpiece to be processed to move to the next work area, and the hooking state with the workpiece to be processed is maintained during the movement, thereby flexibly and conveniently forming the operation platform between the continuous workpieces to be processed by the movement of the platform assembly, and performing work operations on the workpieces to be processed. For example, in a certain preferred embodiment, the steel pipe pile operation platform provided by the utility model can be used to provide the operation platform for the linearly arranged steel pipe piles, when used, the platform assembly can be suspended on the adjacent two steel pipe piles by the at least four hooking pieces, thereby forming the operation platform for the two steel pipe piles; after the work is completed, the platform assembly is moved in the first direction by pushing and pulling, so that the next steel pipe pile enters the platform assembly along the passageway, thereby forming the operation platform for the next steel pipe pile.
[0022] 2. The utility model provides a kind of steel pipe pile hanger welding system, by using the steel pipe pile operation platform as described above, with less cost, flexibly and conveniently arranged to form operation platform around steel pipe pile, so that worker welds hanger or carries out other working operation on steel pipe pile;Moreover, by the sliding cooperation of slider and slide, operation platform can be flexibly and conveniently formed between continuous multiple steel pipe piles by the advancing movement of platform assembly, and the working operation to several steel pipe piles is realized. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is the overhead view schematic diagram of the steel pipe pile operation platform of the utility model;
[0024] Figure 2 It is the side view schematic diagram of the steel pipe pile operation platform of the utility model;
[0025] Figure 3 It is Figure 2 A part enlarged view in middle;
[0026] Figure 4 It is the movement schematic diagram of the steel pipe pile operation platform of the utility model Figure 1 ;
[0027] Figure 5 It is the movement schematic diagram of the steel pipe pile operation platform of the utility model Figure 2 ;
[0028] Figure 6 It is the pulling schematic diagram of the steel pipe pile operation platform of the utility model Figure 1 ;
[0029] Figure 7 It is the pulling schematic diagram of the steel pipe pile operation platform of the utility model Figure 2 .
[0030] Mark in drawing:
[0031] 1-platform structure;
[0032] 11-platform connecting piece;
[0033] 12-first slide;
[0034] 121-sliding cavity; 122-opening;
[0035] 13-second slide;
[0036] 14-slider;
[0037] 15-hook locking piece;
[0038] 151-hook claw;
[0039] 16-crowbar;
[0040] 2-channel;
[0041] 3-steel pipe pile;
[0042] 4-corbel;
[0043] 5-hand chain hoist. DETAILED DESCRIPTION
[0044] The utility model will be described in further detail below in combination with specific embodiments. However, this should not be understood as limiting the scope of the above-mentioned subject matter of the utility model to the following embodiments only, and any technology realized based on the content of the utility model falls within the scope of the utility model.
[0045] In the description of the specific embodiments of the utility model, the orientation or position relationship expression terms appearing in the description, such as "up", "down", "left", "right", "center", "inner", "outer", etc., are based on the orientation or position relationship expressed in the drawings, or the orientation or position relationship used when the product / equipment / device of the utility model is normally used. These orientation or position relationship terms are only used to facilitate the description of the utility model scheme or simplify the description in the specific embodiments, so as to facilitate the quick understanding of the scheme by the technicians, and therefore cannot be understood as indicating or implying that a specific device / component / element must have a specific orientation or be constructed and operated in a specific position relationship, and therefore cannot be understood as limiting the utility model.
[0046] In addition, if the terms "horizontal", "vertical", "overhanging", "parallel", etc. appear, it does not mean that the corresponding device / component / element must be absolutely horizontal or vertical or overhanging or parallel, but can be slightly inclined or deviated. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined. Alternatively, it can be simply understood that the corresponding device / component / element is set in the "horizontal", "vertical", "overhanging", "parallel" direction, and can have an error / deviation of ±10% relative to the corresponding direction setting, more preferably an error / deviation of ±8% or less, more preferably an error / deviation of ±6% or less, more preferably an error / deviation of ±5% or less, and more preferably an error / deviation of ±4% or less. As long as the corresponding device / component / element is within the error / deviation range, it can still achieve its role in the scheme of the utility model.
[0047] In addition, the terms "first", "second", "third", etc. appearing in the terms are only used to distinguish the description of the same or similar components, and should not be understood as emphasizing or implying the relative importance of the specific components.
[0048] Further, in the description of the embodiments of the utility model, "several" "a plurality of" "several" represents at least 2. Can be 2, 3, 4, 5, 6, 7, 8, 9 etc. Any situation, it can even be more than 9 cases.
[0049] Further, in the description of the technical scheme of the utility model, unless otherwise explicitly specified / limited / limited, the term "set" "installation" "connected" "connected" "provided with" "laid" "arranged" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, which can be welding, riveting, bolting, screwing and other commonly used connecting means in the art. The connection can be mechanical connection, electrical connection or communication connection, can be directly connected, or indirectly connected through an intermediate medium, and can be connected inside two elements.
[0050] Embodiment 1
[0051] As Figures 1 to 5 shown, the steel pipe pile operation platform provided by the embodiment comprises a platform assembly, a channel 2 extending in a first direction is arranged on the platform assembly, and a first slide 12 and a second slide 13 are distributed on both sides of the channel 2, both the first slide 12 and the second slide 13 extend in the first direction; at least two sliding blocks 14 are slidingly fitted in the first slide 12 and the second slide 13, the sliding blocks 14 on the first slide 12 and the sliding blocks 14 on the second slide 13 are correspondingly arranged; the sliding blocks 14 are connected with hook locks 15.
[0052] The platform assembly can be a platform type component, by arranging the platform assembly around the workpiece to be machined (for example: steel pipe pile 3), an operation platform for workers to stand on can be formed, thereby allowing the workers to perform machining work on the workpiece to be machined on the operation platform.
[0053] The channel 2 is a road for the workpiece to be machined to pass through, in use, the workpiece to be machined can enter the platform assembly from one end of the channel 2 and leave the platform assembly from the other end of the channel 2; the channel 2 is preferably strip-shaped, and the strip-shaped is preferably arranged in the first direction.
[0054] The first slide 12 and the second slide 13 can be slidingly fitted with the sliding blocks 14, the sliding fitting allows the sliding blocks 14 arranged in the first slide 12 or the second slide 13 to slide in the first direction; the sliding blocks 14 are connected with the hook locks 15, and the sliding movement of the sliding blocks 14 in the first direction can make the connection point of the hook locks 15 and the sliding blocks 14 move in the first direction.
[0055] The hooking part 15 is used for connecting the workpiece and the platform assembly, and the platform assembly can be hung on the workpiece through the hooking part 15; in the hanging mode, it is not necessary to layer by layer erect from the ground, so that the erect height can be greatly shortened, the cost is saved, and the platform assembly is less limited by the surrounding environment such as the foundation, and the application range is wider; and the position of the platform assembly can be changed by controlling the length of the hooking part 15 and the connecting position of the hooking part 15 and the workpiece, so that the platform assembly is placed on the corresponding height.
[0056] It can be understood that the sliding cooperation of the sliding block 14 and the first sliding groove 12 and the second sliding groove 13 allows the sliding block 14 to move relative to the platform assembly in the first direction, but in the vertical direction, the first sliding groove 12 and the second sliding groove 13 can limit the sliding block 14 from being pulled out, and the first sliding groove 12, the second sliding groove 13 and the sliding block 14 can bear a large pulling force to realize the hanging of the platform assembly; and in order to improve the stability of the platform assembly during the hanging, at least two sliding blocks 14 are slidingly matched in the first sliding groove 12, at least two sliding blocks 14 are also slidingly matched in the second sliding groove 13, and the sliding blocks 14 in the first sliding groove 12 are correspondingly arranged with the sliding blocks 14 in the second sliding groove 13, and each sliding block 14 is connected with the hooking part 15, so that the workpiece can be connected through at least four hooking parts 15 distributed in a rectangular shape, and the stable hanging of the platform assembly is realized.
[0057] The steel pipe pile operation platform provided by the utility model is provided with at least two sliding blocks 14 slidingly connected with the first sliding groove 12 and the second sliding groove 13, and each sliding block 14 is connected with the hooking part 15, and the hooking part 15 can be used for hooking the workpiece, so that the supporting force is provided for the steel pipe pile operation platform, and at least four hooking parts 15 distributed on both sides of the channel 2 can stably hang and fix the platform assembly on the workpiece, so that the operation platform of the workpiece is formed; the sliding cooperation of the sliding block 14 and the sliding groove allows the end of the hooking part 15 close to the platform assembly to move relative to the platform assembly in the first direction, so that the platform assembly can move relative to the workpiece in the first direction to move to the next operation area, and the hooking state with the workpiece is maintained during the movement, so that the operation platform can be formed between the continuous workpieces through the movement of the platform assembly, and the operation of the workpieces is realized.
[0058] For example, in a certain preferred embodiment: the steel pipe pile operation platform provided by the utility model can be used for providing the operation platform for the linearly arranged workpieces, and in use, the platform assembly can be hung on the adjacent two steel pipe piles 3 through at least four hooking parts 15, so that the operation platform of the two steel pipe piles 3 is formed; after the operation is completed, the platform assembly is moved in the first direction through pushing and pulling, so that the next steel pipe pile 3 enters the platform assembly along the channel 2, and the operation platform of the next steel pipe pile 3 is formed.
[0059] In one or several preferred embodiments, the first slide 12 and the second slide 13 are each slidingly fitted with at least three sliding blocks 14, the sliding blocks 14 on the first slide 12 being able to enter and exit the first slide 12 from both ends of the first slide 12, and the sliding blocks 14 on the second slide 13 being able to enter and exit the second slide 13 from both ends of the second slide 13.
[0060] As shown in Figure 1 , three or more sliding blocks 14 can improve the stability of the platform assembly when it is suspended to the workpiece to be processed; and during the travel of the platform assembly in the first direction, the sliding blocks 14 that slide out from the rear end of the travel direction can enter the slide again from the front end of the travel direction, so that the hooking needs during the travel of the platform assembly can be met through the recycling use of a limited number of sliding blocks 14; at least three sliding blocks 14 are arranged on each slide, and through reasonable allocation, four sliding blocks 14 and the hooking pieces 15 thereon can be maintained to be hooked and connected to the workpiece to be processed at any time, so as to maintain the stability of the suspended state of the platform assembly.
[0061] When the workpiece to be processed is a steel pipe pile, preferably, the lengths of the first slide 12 and the second slide 13 are greater than twice the center distance between two adjacent steel pipe piles, as shown in Figure 1 , so that the first slide 12 and the second slide 13 can simultaneously accommodate at least three sliding blocks 14, and at least two sliding blocks 14 can be slidingly fitted in the first slide 12 or the second slide 13 at any time.
[0062] Preferably, both ends of the first slide 12 and both ends of the second slide 13 are open, and the sliding blocks 14 can enter and exit the first slide 12 or the second slide 13 from the two open ends, for example, the sliding blocks 14 can be put into or taken out from the ends of the first slide 12 and the second slide 13 by hammering.
[0063] In one or several preferred embodiments, the platform assembly includes two platform structures 1 arranged at intervals, and the channel 2 is located between the two platform structures 1, and the platform connecting piece 11 is fixedly connected between the two platform structures 1.
[0064] As shown in Figure 1 , the platform structure 1 can be a platform type member, and the two platform structures 1 can be arranged side by side at intervals and form a channel 2 through which the workpiece to be processed can pass between the two platform structures 1; in order to improve the connection constraint between the two platform structures 1 and improve the stability during hooking, the platform connecting piece 11 can be arranged between the two platform structures 1, and the platform connecting piece 11 is fixedly connected with the two platform structures 1 respectively, so as to reduce the probability of the platform structure 1 being inclined and overturned inwardly due to uneven force.
[0065] Optionally, the platform connecting member 11 is a horizontal rod connected to the upper plate surface of the platform structure 1 for workers to assemble and disassemble; when the workpiece to be processed is moving along the channel 2 to the position where the horizontal rod is installed, the worker needs to disassemble the horizontal rod to clear the space for the workpiece to move, and in order to maintain the stability of the two platform structures 1 during the assembly and disassembly process, the number of platform connecting members 11 is preferably three and arranged along the first direction.
[0066] Preferably, in order to avoid frequent assembly and disassembly, the platform connecting member 11 can be provided as a door-shaped frame, as shown in Figure 2 The door-shaped frame includes two vertical rods respectively arranged on the two platform structures 1, and a horizontal rod connected to the upper ends of the two vertical rods, and by lifting the horizontal rod, the workpiece to be processed (such as the steel pipe pile 3 and the corbel 4) can pass under the horizontal rod, so that the platform connecting member 11 does not need to be frequently assembled and disassembled.
[0067] Preferably, a scaffold 16 is arranged between the two platform structures 1; the scaffold 16 can be a wooden board, a steel plate, a steel grid, etc. for workers to stand on.
[0068] Preferably, a guardrail is arranged on the platform structure 1, which can be arranged on three sides except the side close to the channel 2.
[0069] Preferably, the first slide 12 and the second slide 13 include a sliding cavity 121 arranged along the first direction, and an opening 122 located at the upper part of the sliding cavity 121, and in the projection of the first direction, the size of the opening 122 is smaller than the size of the sliding block 14.
[0070] As shown in Figure 3 The first slide 12 and the second slide 13 can be formed by two symmetrical inverted L-shaped components, and the two inverted L-shaped components form a sliding cavity 121 with a large transverse size and an opening 122 with a small transverse size, the sliding cavity 121 can be used for the sliding block 14 to slide along the first direction, and the opening 122 can be used for the hooking member 15 to extend into the connection of the sliding block 14; in the projection of the first direction, the size of the opening 122 is smaller than the size of the sliding block 14, so that the sliding block 14 cannot be pulled out of the first slide 12 or the second slide 13 in the vertical direction, and the hooking member 15 can be hung on the platform assembly by hooking the sliding block 14.
[0071] Embodiment 2
[0072] The embodiment provides a steel pipe pile corbel welding system, which comprises at least two steel pipe piles 3 and a steel pipe pile working platform as described above, wherein: the at least two steel pipe piles 3 are located in the channel 2, and the steel pipe pile 3 is hung with at least two hooking members 15, wherein at least one sliding block 14 connected with the hooking member 15 is in sliding cooperation with the first slide 12, and at least one sliding block 14 connected with the hooking member 15 is in sliding cooperation with the second slide 13.
[0073] The utility model provides a steel pipe pile bracket welding system. By using the steel pipe pile working platform as described above, a working platform can be flexibly and conveniently arranged around the steel pipe pile 3 at a low cost to facilitate workers to weld brackets or perform other processing operations on the steel pipe pile 3. Moreover, through the sliding cooperation between the slider 14 and the slideway, a working platform can be flexibly and conveniently formed between a plurality of consecutive steel pipe piles 3 through the moving movement of the platform assembly, thereby realizing processing operations on a plurality of steel pipe piles 3.
[0074] The two hook locking members 15 connected to and matched with the same steel pipe pile 3 can be symmetrically arranged along the first direction, and the two hook locking members 15 are slidably matched with the first slideway 12 and the second slideway 13 respectively.
[0075] Preferably, the platform assembly comprises at least three steel pipe piles 3 spaced apart along a first direction, and is capable of moving along the first direction.
[0076] like Figure 1 As shown, at least three steel pipe piles 3 are located in the channel 2, and each steel pipe pile 3 is symmetrically connected to two hook locks 15; when the platform assembly moves relative to the steel pipe pile 3 along the first direction, the steel pipe pile 3 at the rear end of the movement leaves the length range of the first slide 12 and the second slide 13, and the worker can remove the hook lock 15 and the slider 14 connected to the steel pipe pile 3, and then install them on the steel pipe pile 3 at the front end of the movement, and make the two sliders 14 enter the first slide 12 and the second slide 13 respectively, so as to realize the circular use of the hook lock 15 and the slider 14.
[0077] At least three steel pipe piles 3 can ensure that there are still four hook locks 15 hooking the platform assembly during the turnover process, thereby maintaining the stable position of the platform assembly.
[0078] Preferably, the hook lock member 15 includes a flexible rope and a hook claw 151 . One end of the flexible rope is connected to the slider 14 , and the other end is connected to the hook claw 151 . The hook claw 151 is clamped to the upper pipe opening of the steel pipe pile 3 .
[0079] like Figure 2 As shown, the hook 151 can hook the upper pipe opening of the steel pipe pile 3 to achieve a quick hook connection of the platform assembly. The flexible rope can be of the same length to make the platform assembly level in the hooked state.
[0080] The use method of this utility model:
[0081] For example, a preferred embodiment can be used to hook and install the steel pipe pile working platform of the present invention on two or three steel pipe piles 3 that extend out of the water and are distributed linearly. Workers can then weld the brackets 4 or perform other processing operations on the two or three steel pipe piles 3.
[0082] After the above processing is completed, a pulling device can be set on the platform component, and the other end of the pulling device can be connected to the steel pipe pile 3 outside the range of the working platform. Figures 4 to 7 As shown, the direction of the force of the pulling device is adjusted so that it can drag the platform assembly to move in the first direction based on the steel pipe piles 3 outside the range of the working platform until the next one or several steel pipe piles 3 located in the first direction enter the channel 2; in this process, the hook locking member 15 is pulled by the steel pipe piles 3, and the hook locking member 15 will drag the slider 14 along the slideway, thereby maintaining the hooking state of the hook locking member 15 and the steel pipe piles 3 during the movement of the platform assembly.
[0083] like Figure 4 、 Figure 5 As shown, during the movement of the platform assembly, when the steel pipe pile 3 located at the rear end of the platform assembly in the direction of travel slides over the ends of the first slide 12 and the second slide 13, the hook lock 15 and the slider 14 connected to the steel pipe pile 3 can be removed and installed on the steel pipe pile 3 entering the channel 2 from the front end of the platform assembly in the direction of travel, and the process can be cyclically used.
[0084] Pulling equipment such as hand chain hoist 5, winch, etc.
[0085] In order to facilitate the application of force by the pulling device, a transverse long rod can be set on the side of the steel pipe pile 3 that is closer to the platform component and away from the platform component, and the pulling device is connected to the long rod, such as Figure 6 As shown;
[0086] For the steel pipe piles 3 that are far away from the platform assembly, the pulling equipment can be directly connected to the steel pipe piles 3, such as Figure 7 shown.
[0087] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A steel pipe pile work platform characterized by, The utility model relates to a steel pipe pile operation platform, which comprises a platform assembly and at least two steel pipe piles (3). The platform assembly comprises a channel (2) extending along a first direction, and a first slide (12) and a second slide (13) extending along the first direction and arranged on both sides of the channel (2). At least two sliding blocks (14) are slidingly fitted in the first slide (12) and the second slide (13), and the sliding blocks (14) on the first slide (12) and the second slide (13) are correspondingly arranged. A hooking member (15) is connected to the sliding block (14).
2. The steel pipe pile work platform according to claim 1, characterized by The first slide (12) and the second slide (13) are each slidingly fitted with at least three sliding blocks (14), and the sliding blocks (14) on the first slide (12) can enter and exit the first slide (12) from both ends of the first slide (12), and the sliding blocks (14) on the second slide (13) can enter and exit the second slide (13) from both ends of the second slide (13).
3. The steel pipe pile work platform according to claim 2, characterized by, Both ends of the first slide (12) and both ends of the second slide (13) are open.
4. The steel pipe pile work platform according to claim 1, characterized by The platform assembly comprises two platform structures (1) arranged at intervals, and the channel (2) is located between the two platform structures (1), and a platform connecting member (11) is fixedly connected between the two platform structures (1).
5. The steel pipe pile work platform according to claim 4, characterized by The platform connecting member (11) is a door-shaped frame, which is erected between the two platform structures (1).
6. The steel pipe pile work platform according to claim 4, characterized by A scaffold board (16) is arranged between the two platform structures (1).
7. The steel pipe pile work platform according to any one of claims 1 to 6, characterized by, The first slide (12) and the second slide (13) comprise a sliding cavity (121) extending along the first direction, and an opening (122) located at the upper part of the sliding cavity (121), and in the projection of the first direction, the size of the opening (122) is smaller than the size of the sliding block (14).
8. A steel pipe pile bracket welding system, characterized by, The utility model relates to a steel pipe pile operation platform, which comprises a platform assembly and at least two steel pipe piles (3).
9. The steel pipe pile bracket welding system according to claim 8, characterized in that, The platform assembly comprises at least three steel pipe piles (3) arranged at intervals along the first direction, and the platform assembly can move along the first direction.
10. The steel pipe pile bracket welding system according to claim 8, characterized in that, The hooking member (15) comprises a flexible rope and a hook claw (151), one end of the flexible rope is connected to the sliding block (14), the other end is connected to the hook claw (151), and the hook claw (151) is clamped to the upper pipe opening of the steel pipe pile (3).