Floor stabilizing supporting frame for stable conveying and rapid replacement of pump pipe

By designing a combined structure of a 240° annular fixed ring frame and a 120° annular movable ring frame, and combining an extrusion stabilization mechanism, a resistance stabilization mechanism, a preliminary fixing mechanism and a clamping stability mechanism, the stability and replacement of the pump pipe during concrete transport is solved, and the stable transportation and rapid replacement of the pump pipe are achieved.

CN119933370AActive Publication Date: 2025-05-06THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
View PDF 7 Cites 0 Cited by

Patent Information

Application Number
CN202510346098.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-05-06
Estimated Expiration
2045-03-24

AI Technical Summary

Technical Problem

The existing pump pipe support and replacement technology is difficult to ensure the stability of the pump pipe during the concrete conveying process, and the replacement process is cumbersome and has safety risks.

Method used

A floor stable support frame is designed. Through the combination of a 240° annular fixed ring frame and a 120° annular movable ring frame, an encircling support structure is formed, and an extrusion stabilization mechanism, a resistance stabilization mechanism, a preliminary fixing mechanism and a clamping stability mechanism are provided to achieve stable support and rapid replacement of the pump pipe.

Benefits of technology

Effectively prevent the radial deviation and inclination of the pump pipe during the conveying process, improve the stability and construction safety of the pump pipe, and simplify the replacement process of the pump pipe and improve construction efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119933370A_ABST
    Figure CN119933370A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of pump pipe supporting, in particular to a stable floor supporting frame for stable conveying and quick replacement of pump pipes, which comprises a fixed moving seat, a fixed ring frame is arranged on the fixed moving seat, a movable moving seat matched with the fixed moving seat is arranged on one side of the fixed moving seat, and a movable ring frame in butt joint with the fixed ring frame is arranged on the movable moving seat. A locking and fixing assembly is arranged on the fixed ring frame, and a stable alignment assembly is arranged on the fixed moving seat; and an extrusion stabilizing mechanism is arranged on the fixed ring frame, an abutting stabilizing mechanism is arranged on the movable moving frame, a preliminary fixing mechanism is arranged on the movable moving seat, and a clamping stabilizing mechanism is arranged on the fixed ring frame. Through the ingenious structural design, especially the cooperative working mode of the multiple components, the functional advantages of all the components can be brought into full play, efficient operation of the whole device in the stable conveying and rapid replacement process of the pump pipe is achieved, and the reliability and safety of construction are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of pump pipe support, and in particular to a floor stabilizing support frame used for stable transportation and rapid replacement of pump pipes. Background Art

[0002] With the continuous acceleration of urbanization, high-rise buildings are rising from the ground. Concrete delivery technology plays a vital role in the construction of high-rise buildings. In the process of concrete delivery, the stability and reliability of the pump pipe are directly related to the construction efficiency and quality. However, the existing concrete pump pipe support and replacement technology has some problems in practical application, which affects the smooth progress of construction.

[0003] Traditional pump pipe support methods usually use simple brackets or hangers, which are difficult to ensure the stability of the pump pipe during concrete delivery. Due to the heavy weight of concrete, the pressure and vibration generated during the delivery process may cause the pump pipe to shake, shift or even fall off, thus causing safety accidents. In addition, the stability of the pump pipe is also affected by the construction site environment. Factors such as wind force and temperature may have an adverse effect on the stability of the pump pipe. At the same time, in the construction of high-rise buildings, wear and damage of the pump pipe are inevitable and need to be replaced regularly. Traditional pump pipe replacement methods usually require a lot of manual operations, such as disassembling old pump pipes and installing new pump pipes. These operations are not only time-consuming and labor-intensive, but also have certain safety hazards. In addition, there are some technical solutions for pump pipe support and replacement on the market, but these solutions still have some limitations in practical applications. For example, some solutions only focus on the stability of the pump pipe, but ignore the convenience of pump pipe replacement; other solutions improve the efficiency of pump pipe replacement, but sacrifice the stability of the pump pipe. In addition, some solutions have complex structures and high costs, making them difficult to be widely used in actual projects.

[0004] How to solve the above technical problems is the subject faced by the present invention. Summary of the invention

[0005] In order to address the deficiencies of the prior art, the present invention provides a rationally designed, safe and reliable floor stabilization support frame for stable transportation and rapid replacement of pump pipes. A complete circular channel is formed by combining a 240° annular fixed ring frame and a 120° annular movable ring frame to achieve stable support for the pump pipe. The two ring frames are locked by a locking and fixing assembly to ensure the stability of the pump pipe during transportation. At the same time, an extrusion stabilization mechanism and an interference stabilization mechanism are provided to provide additional stability support for the entire device by utilizing the contact with the ceiling and floor of the building. In addition, a preliminary fixing mechanism and a clamping stabilization mechanism are designed to achieve rapid replacement and further reinforcement of the pump pipe, thereby ensuring safety and reliability during concrete pumping.

[0006] The technical solution adopted by the present invention to solve its technical problems is: a floor stable support frame for stable delivery and rapid replacement of pump pipes, comprising a fixed displacement seat, a fixed ring frame with a 240° ring-shaped cross section is arranged on the fixed displacement seat, a movable displacement seat cooperating with the fixed displacement seat is arranged on one side of the fixed displacement seat, a movable ring frame with a 120° ring-shaped cross section and dockingly connected with the fixed ring frame is arranged on the movable displacement seat, a locking and fixing assembly connected with the movable ring frame is arranged on the fixed ring frame, and a stable alignment assembly cooperating with the movable displacement seat is arranged on the fixed displacement seat;

[0007] The fixed ring frame is provided with an extrusion stabilization mechanism for contacting the ceiling and bottom plate of the building and providing stability for the overall device, and the movable frame is provided with an interference stabilization mechanism cooperating with the extrusion stabilization mechanism, the movable movable seat is provided with a preliminary fixing mechanism for preliminarily clamping the pump pipe to facilitate rapid replacement of the pump pipe, and the fixed ring frame is provided with a clamping stabilization mechanism cooperating with the preliminary fixing mechanism and used to further strengthen the stability of the pump pipe during concrete pumping.

[0008] Furthermore, both the fixed seat and the movable seat are provided with a mobile leveling component, and the mobile leveling component includes a universal wheel arranged on the fixed seat or the movable seat, and a leveling hydraulic rod is arranged on the fixed seat or the movable seat, and a leveling plate is arranged at the movable end of the leveling hydraulic rod.

[0009] Further, the fixed ring frame includes a fixed table with a 240° ring-shaped cross section, a plurality of fixed brackets connected to the fixed movable seat are arranged on the bottom surface of the fixed table, a fixed through groove matching with the fixed table is opened on the fixed movable seat, and a fixed arc bracket matching with the fixed through groove is arranged on the bottom surface of the fixed table;

[0010] The movable moving frame includes a movable table plate with a 120° ring-shaped cross-street surface, a plurality of movable brackets connected to the movable moving seat are arranged on the bottom surface of the movable table plate, a movable through groove cooperating with the movable table plate is opened on the movable moving seat, and a movable arc frame cooperating with the fixed through groove is arranged on the bottom surface of the movable table plate; and the fixed through groove and the movable through groove together form a stable through groove with a circular cross-section.

[0011] Furthermore, the locking and fixing assembly includes a first locking plate symmetrically arranged on both sides of the opening of the fixed arc frame, and the top and bottom ends of the first locking plate are respectively connected to the fixed platform and the fixed movable seat, and a second locking plate is arranged on both sides of the opening of the movable arc frame, and the top and bottom ends of the second locking plate are respectively connected to the movable platform and the movable movable seat, and a plurality of locking screws connected to the second locking plate are vertically arranged on the first locking plate, and locking nuts are arranged at both ends of the locking screws.

[0012] The stable alignment component includes two groups of first alignment grooves respectively arranged at both ends of the fixed moving seat, second alignment cross frames are respectively arranged at both ends of the fixed moving seat, two groups of first alignment cross frames cooperating with the first alignment grooves are arranged at both ends of the movable moving seat, and second alignment grooves cooperating with the second alignment cross frames are arranged at both ends of the movable moving seat; several groups of shock absorbers are arranged in the first alignment groove and the second alignment groove to facilitate smooth docking of the fixed moving seat and the movable moving seat, and a stabilizing wheel is arranged at one end of the shock absorber.

[0013] Furthermore, the squeezing stabilization mechanism includes a top support ring seat assembly arranged at the top of the fixed ring frame, the top support ring seat assembly is provided with a plurality of top support leg assemblies in contact with the building ceiling, and a lifting ring seat assembly is arranged at the lower section of the fixed ring frame, and the lifting ring seat assembly is provided with a plurality of interference leg assemblies in contact with the building floor;

[0014] The fixed shift seat is provided with a stable slide connected to the fixed platform, and both ends of the top and bottom of the stable slide are provided with a fast deployment drive assembly for driving the top support leg assembly or the resisting leg assembly to be quickly deployed;

[0015] The fixed shift seat is provided with a plurality of guide rods cooperating with the quick-release drive assembly and the lifting ring seat assembly; the stable slide is provided with a synchronous drive assembly for driving the two quick-release drive assemblies to move in the same direction or in opposite directions along the vertical direction.

[0016] Furthermore, the top support ring seat assembly includes a top support ring seat located directly above the fixed table and having a 240° ring-shaped cross section, and a plurality of top support hydraulic rods cooperating with the top support ring seat are arranged on the fixed table;

[0017] The top support leg assembly comprises a top support bracket rotatably connected to the top support ring seat, the top support bracket is provided with a resisting hydraulic rod, a top support resisting rod is provided at the moving end of the resisting hydraulic rod, and a top support point seat is provided on the top support resisting rod;

[0018] The lifting ring seat assembly includes a lifting ring seat located directly above the fixed displacement seat and having a 240° ring-shaped cross section, and a guide groove cooperating with the guide rod is provided on the lifting ring seat, and a plurality of lifting hydraulic rods cooperating with the lifting ring seat are provided on the fixed displacement seat;

[0019] The structure of the interference leg assembly is consistent with the structure of the supporting leg assembly;

[0020] The quick deployment drive assembly includes an expansion ring seat with a 240° annular cross-section, and a plurality of quick deployment drive rods are evenly arranged along the circumferential direction of the expansion ring seat. One end of the quick deployment drive rod is rotatably connected to the quick deployment ring seat, and the other end of the quick deployment drive rod is rotatably connected to the top support bracket or the interference leg assembly.

[0021] Further, the synchronous drive assembly includes a drive bracket horizontally arranged on the stable slide, the drive bracket is provided with a drive slot, a drive screw is arranged in the drive slot, a drive support matched with the drive screw is arranged in the drive slot, and a drive connecting rod rotatably connected to the drive support is arranged at both top and bottom ends of the drive support;

[0022] A stabilizing slide is vertically provided on the stabilizing slide and cooperates with the driving connecting rod. A stabilizing slide is provided in the stabilizing slide and slidably cooperates with the stabilizing slide. A connecting support connected to the expansion ring seat is provided on the stabilizing slide. A connecting screw connected to the expansion ring seat is provided on the connecting support. One end of the driving connecting rod is rotatably connected to the driving support, and the other end of the driving connecting rod is rotatably connected to the stabilizing slide.

[0023] Further, the interference stabilization mechanism includes a plurality of stabilization guide rods arranged on the movable shift seat, the top end of the stabilization guide rod completely penetrates the movable platform, and the upper section of the stabilization guide rod is provided with a first ring seat, the first ring seat is provided with a first leg assembly, the lower section of the stabilization guide rod is provided with a second ring seat, the second ring seat is provided with a second leg assembly, and the top and bottom sections of the stabilization guide rod are both provided with an expansion drive assembly for driving the first leg assembly or the second leg assembly to be quickly expanded;

[0024] The structures of the first leg assembly and the second leg assembly are consistent with the structure of the top support leg assembly, and the structure of the deployment drive assembly is consistent with the structure of the quick deployment drive assembly; the first ring seat and the second ring seat are both provided with a first connecting member for connecting to the top support ring seat assembly or the lifting ring seat assembly, and the deployment drive assembly is provided with a second connecting member connected to the quick deployment drive assembly.

[0025] Furthermore, the preliminary fixing mechanism includes a preliminary bracket arranged on the movable seat, a plurality of flexible binding components for providing flexible binding points for the pump tube are vertically arranged on the preliminary bracket, a stable support component cooperating with the flexible binding component is arranged on the preliminary bracket, and an auxiliary lifting component cooperating with the flexible binding component for providing preliminary support for the pump tube is arranged on the movable seat;

[0026] The clamping stabilization mechanism includes two clamping brackets symmetrically arranged on the fixed displacement seat, a plurality of stable clamping components are vertically arranged on the clamping bracket, and a clamping groove cooperating with the stable clamping component is opened on the fixed arc frame; the stable clamping component includes a clamping hydraulic rod arranged on the clamping bracket, and a hydraulic clamping claw is arranged at the telescopic end of the clamping hydraulic rod.

[0027] Furthermore, the stabilizing support assembly includes a stabilizing hydraulic rod arranged on the preliminary support, a supporting arc plate is arranged at the movable end of the stabilizing hydraulic rod, and a receiving groove for receiving the supporting arc plate is provided on the movable arc support;

[0028] The flexible lashing assembly includes two receiving grooves provided on the movable arc frame, the two receiving grooves are respectively located at two sides of the stable support assembly, the preliminary support is provided with a lashing slide that slidably cooperates with the preliminary support, and the preliminary support is provided with a telescopic hydraulic rod that cooperates with the lashing slide;

[0029] Binding brackets passing through the storage grooves are provided on both sides of the binding slide, wherein a flexible roller is provided on one of the binding brackets, a flexible motor cooperating with the flexible roller is provided on the binding bracket, a flexible cloth is provided on the flexible roller, one end of the flexible cloth is wound and connected with the flexible roller, a binding plug is provided at the other end of the flexible cloth, a binding plug frame cooperating with the binding plug frame is provided on the other binding bracket, and a binding pin cooperating with the binding plug frame is provided on the binding plug frame.

[0030] Further, the auxiliary lifting assembly includes a conveying through groove penetrating the movable seat, two groups of auxiliary slide grooves connected to the conveying through groove are symmetrically opened on the movable seat, the conveying through groove is provided with two lifting side frames, the lifting side frame is provided with a connecting bracket connected to the other lifting side frame, the lifting side frame is provided with a lifting slider that slides with the auxiliary slide groove, and the movable seat is provided with a linear driving member for driving the lifting side frame to slide along the auxiliary slide groove;

[0031] A group of flexible lifting units are arranged at the upper section of the lifting side frame, and a rigid lifting unit cooperating with the flexible lifting unit is arranged at the lower section of the lifting side frame, and the rigid lifting unit is located directly below the flexible lifting unit. A group of the flexible lifting units includes several flexible lifting units along the length direction of the auxiliary slide groove.

[0032] The present invention adopts multiple stability guarantee mechanisms to ensure the stability of the pump pipe during the transportation process from multiple dimensions. Through the combination of a 240° annular fixed ring frame and a 120° annular movable ring frame, an embracing support for the pump pipe is formed, which effectively prevents the pump pipe from radial deviation. Secondly, the two ring frames are firmly locked using a locking and fixing assembly to further enhance the overall stability of the pump pipe. In addition, an extrusion stabilization mechanism and a resistance stabilization mechanism are also provided to provide additional support force for the entire device through contact with the ceiling and floor of the building, effectively preventing the device from tilting or moving. The design of this multiple stability guarantee mechanism can effectively cope with various complex construction environments, ensure the absolute stability of the pump pipe during concrete transportation, and thus improve the safety and reliability of construction.

[0033] The present invention ensures the stability of the pump tube while taking into account the convenience of replacing the pump tube. The movable ring frame adopts a 120° ring design, which allows it to be easily opened and closed, thereby realizing the rapid replacement of the pump tube. In addition, the design of the preliminary fixing mechanism enables the operator to quickly fix the new pump tube in place, which provides convenience for the subsequent locking operation. This quick replacement design greatly shortens the time required for pump tube replacement, improves construction efficiency, and reduces construction costs.

[0034] The present invention is provided with a stable alignment assembly, including a first alignment groove, a second alignment cross frame, a first alignment cross frame and a second alignment groove, which are used to guide the fixed displacement seat and the movable displacement seat to accurately dock and ensure the correct installation of the ring frame. In addition, a mobile leveling assembly is also provided, including a universal wheel and a leveling hydraulic rod, which are used to adjust the horizontality of the device to ensure its stability during installation and use. This precise alignment and adjustment design improves the installation accuracy and stability of the device and provides a strong guarantee for the stable delivery of the pump pipe.

[0035] The present invention adopts a top support ring seat assembly and a lifting ring seat assembly, which are in contact with the ceiling and the bottom plate of the building respectively, to form a squeezing stabilization mechanism and a resistance stabilization mechanism. This design can effectively utilize the power of the building structure itself to provide a stable support force for the device and improve its overall stability. In addition, the application of the quick-deployment drive assembly enables the top support leg assembly and the resistance leg assembly to be quickly deployed, thereby improving the installation efficiency of the device. The synchronous drive assembly ensures the synchronous movement of the two quick-deployment drive assemblies, further improving the stability and reliability of the device.

[0036] The present invention not only provides a preliminary fixing mechanism for fast fixing of the pump tube, but also provides a clamping stabilization mechanism, which further enhances the stability of the pump tube during transportation by stabilizing the hydraulic rod and the hydraulic clamping claw. This double fixing mechanism ensures the absolute safety of the pump tube during transportation.

[0037] In response to the initial fixation requirements during the replacement of the pump tube, the present invention designs a flexible binding assembly, which uses a flexible roller and a flexible cloth to achieve flexible binding of the pump tube, which is convenient and quick. At the same time, the setting of the stable support assembly provides additional support force for the pump tube to ensure its stability during the replacement process. In addition, an auxiliary lifting assembly is also provided for the initial lifting and transportation of the pump tube. This design not only facilitates the installation and replacement of the pump tube, but also improves the transportation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention;

[0039] Figure 2 It is a schematic diagram of the fixed shifting seat, the fixed ring frame and the squeezing stabilizing mechanism of the present invention from a first viewing angle;

[0040] Figure 3 is a schematic diagram of the fixed transfer seat, the fixed ring frame and the extrusion stabilization mechanism of the present invention from a second viewing angle;

[0041] Figure 4 It is a schematic diagram of the movable transfer seat, the movable ring frame, the abutment stabilization mechanism and the preliminary fixing mechanism of the present invention from a first viewing angle;

[0042] Figure 5 It is an enlarged schematic diagram of A of the present invention;

[0043] Figure 6 It is an enlarged schematic diagram of B of the present invention;

[0044] Figure 7 It is a schematic diagram of the movable transfer seat, the movable ring frame, the abutment stabilization mechanism and the preliminary fixing mechanism of the present invention from a first viewing angle.

[0045] Among them, the accompanying drawings are marked as follows: 100, fixed shift seat; 110, fixed ring frame; 111, fixed table; 112, fixed bracket; 113, fixed through-groove; 114, fixed arc frame; 120, movable shift seat; 130, movable ring frame; 131, movable table; 132, movable bracket; 133, movable through-groove; 134, movable arc frame; 200, extrusion stabilization mechanism; 210, top support ring seat assembly; 211, top support ring seat; 212, top support hydraulic rod; 220, top support leg assembly; 221, top support bracket; 222, resistance hydraulic rod; 223, top support resistance rod; 224, top support point seat; 230, lifting ring seat assembly; 231, lifting ring seat; 232 , lifting hydraulic rod; 233, guide groove; 240, conflict leg assembly; 250, stable slide; 251, stable slide; 260, quick-release drive assembly; 261, expansion ring seat; 262, quick-release drive rod; 263, guide rod; 270, synchronous drive assembly; 271, drive bracket; 272, drive slide; 273, drive screw; 274, drive support; 275, drive connecting rod; 276, stable slide; 277, connecting support; 278, connecting screw; 280, stable slide assembly; 281, stable cross frame; 282, stable groove; 283, stable guide rod; 284, stable slide; 285, stable connecting rod; 300, conflict stabilization mechanism; 3 10. Stable guide rod; 320. First ring seat; 330. First leg assembly; 340. Second ring seat; 350. Second leg assembly; 360. Deployment drive assembly; 400. Preliminary fixing mechanism; 500. Preliminary bracket; 600. Flexible lashing assembly; 601. Storage slot; 602. Lashing slide; , Lashing slide; 604. Telescopic hydraulic rod; 605. Lashing bracket; 606. Flexible roller; 607. Flexible motor; 608. Flexible cloth; 609. Lashing plug cylinder; 610. Lashing plug rack; 611. Lashing pin; 700. Stable support assembly; 701. Stable hydraulic rod; 702. Support arc plate; 703. Accommodation slot; 800. Auxiliary bracket Lifting assembly; 810, conveying trough; 820, auxiliary slide; 830, lifting side frame; 840, connecting bracket; 850, lifting slider; 860, linear drive; 870, flexible lifting unit; 871, flexible hydraulic rod; 872, flexible lifting frame; 873, flexible roller; 874, driving motor; 875, lifting cloth; 880, rigid lifting unit; 881, rigid hydraulic rod; 882, rigid side plate; 883, lifting bottom plate; 900, clamping stabilization mechanism; 910, clamping hydraulic rod; 920, hydraulic clamping claw; 930, clamping groove; 940, mobile leveling assembly; 941, universal wheel; 942, leveling hydraulic rod; 943, leveling plate. DETAILED DESCRIPTION

[0046] See also Figures 1 to 7As shown, a floor stable support frame for stable delivery and rapid replacement of pump pipes comprises a fixed displacement seat 100, on which a fixed ring frame 110 with a 240° ring-shaped cross section is arranged, a movable displacement seat 120 cooperating with the fixed displacement seat 100 is arranged on one side of the fixed displacement seat 100, a movable ring frame 130 with a 120° ring-shaped cross section and dockingly connected with the fixed ring frame 110 is arranged on the movable displacement seat 120, a locking and fixing assembly connected with the movable ring frame 130 is arranged on the fixed ring frame 110, and a stable alignment assembly cooperating with the movable displacement seat 120 is arranged on the fixed displacement seat 100;

[0047] The fixed ring frame 110 is provided with an extrusion stabilization mechanism 200 for contacting the building ceiling and bottom plate and providing stability for the overall device, and the movable frame is provided with an interference stabilization mechanism 300 cooperating with the extrusion stabilization mechanism 200, and the movable movable seat 120 is provided with a preliminary fixing mechanism 400 for preliminarily clamping the pump pipe to facilitate rapid replacement of the pump pipe, and the fixed ring frame 110 is provided with a clamping stabilization mechanism 900 cooperating with the preliminary fixing mechanism 400 and used to further strengthen the stability of the pump pipe during concrete pumping.

[0048] Furthermore, a mobile leveling assembly 940 is provided on both the fixed moving seat 100 and the movable moving seat 120. The mobile leveling assembly 940 includes a universal wheel 941 provided on the fixed moving seat 100 or the movable moving seat 120. A leveling hydraulic rod 942 is provided on the fixed moving seat 100 or the movable moving seat 120. A leveling plate 943 is provided at the movable end of the leveling hydraulic rod 942.

[0049] Furthermore, the fixed ring frame 110 includes a fixed platform 111 with a 240° annular cross section, a plurality of fixed brackets 112 connected to the fixed shift seat 100 are arranged on the bottom surface of the fixed platform 111, a fixed through groove 113 cooperating with the fixed platform 111 is opened on the fixed shift seat 100, and a fixed arc bracket 114 cooperating with the fixed through groove 113 is arranged on the bottom surface of the fixed platform 111;

[0050] The movable transfer frame includes a movable platform 131 with a 120° ring-shaped cross-street surface, a plurality of movable brackets 132 connected to the movable transfer seat 120 are arranged on the bottom surface of the movable platform 131, a movable through-groove 133 cooperating with the movable platform 131 is opened on the movable transfer seat 120, and a movable arc frame 134 cooperating with the fixed through-groove 113 is arranged on the bottom surface of the movable platform 131; and the fixed through-groove 113 and the movable through-groove 133 together form a stable through-groove with a circular cross-section.

[0051] Furthermore, the locking and fixing assembly includes a first locking plate symmetrically arranged on both sides of the opening of the fixed arc frame 114, and the top and bottom ends of the first locking plate are respectively connected to the fixed platform 111 and the fixed movable seat 100, and a second locking plate is arranged on both sides of the opening of the movable arc frame 134, and the top and bottom ends of the second locking plate are respectively connected to the movable platform 131 and the movable movable seat 120, and a plurality of locking screws connected to the second locking plate are vertically arranged on the first locking plate, and locking nuts are arranged at both ends of the locking screws.

[0052] The stable alignment component includes two groups of first alignment grooves respectively arranged at both ends of the fixed moving seat 100, second alignment cross frames are respectively arranged at both ends of the fixed moving seat 100, two groups of first alignment cross frames cooperating with the first alignment grooves are arranged at both ends of the movable moving seat 120, and second alignment grooves cooperating with the second alignment cross frames are arranged at both ends of the movable moving seat 120; several groups of shock absorbers are arranged in the first alignment groove and the second alignment groove to facilitate the stable docking of the fixed moving seat 100 and the movable moving seat 120, and a stable running wheel is arranged at one end of the shock absorber.

[0053] Specifically, the fixed transfer seat 100 and the movable transfer seat 120 are precisely aligned through the stable alignment assembly to ensure the accuracy and stability of the docking. The mobile leveling assembly 940 allows both to maintain a horizontal state under different floor conditions, providing a good foundation for subsequent docking and work. After the fixed ring frame 110 on the fixed transfer seat 100 and the movable ring frame 130 on the movable transfer seat 120 are docked, they are firmly connected by locking the fixing assembly to form a stable support structure for carrying and fixing the pump pipe.

[0054] During the docking process between the fixed movable seat 100 and the movable movable seat 120, the first alignment groove cooperates with the first alignment cross frame, the second alignment cross frame cooperates with the second alignment groove, the stabilizing wheel rolls in the groove, and the shock absorber can reduce the impact force during the docking process, thereby ensuring the stability and accuracy of the docking between the two, and providing good prerequisites for subsequent locking and fixing operations.

[0055] When the fixed ring frame 110 and the movable ring frame 130 are docked, the first locking plate and the second locking plate cooperate with each other, and the locking screw passes through the first locking plate and is connected to the second locking plate. By tightening the locking nut, the fixed ring frame 110 and the movable ring frame 130 are tightly connected together to form a stable ring structure, thereby ensuring the stability of the pump tube during the transportation process.

[0056] Furthermore, the squeezing and stabilizing mechanism 200 includes a top support ring seat assembly 210 disposed at the top of the fixed ring frame 110, and the top support ring seat assembly 210 is provided with a plurality of top support leg assemblies 220 in contact with the building ceiling, and a lifting ring seat assembly 230 is disposed at the lower section of the fixed ring frame 110, and the lifting ring seat assembly 230 is provided with a plurality of interference leg assemblies 240 in contact with the building floor;

[0057] The fixed shifting seat 100 is provided with a stable slide 250 connected to the fixed platform 111, and both ends of the stable slide 250 are provided with a fast deployment driving assembly 260 for driving the supporting leg assembly 220 or the resisting leg assembly 240 to be deployed quickly;

[0058] The fixed transfer seat 100 is provided with a plurality of guide rods 263 cooperating with the quick-release drive assembly 260 and the lifting ring seat assembly 230; the stable slide 250 is provided with a synchronous drive assembly 270 for driving the two quick-release drive assemblies 260 to move in the same direction or in opposite directions along the vertical direction.

[0059] Furthermore, the top support ring seat assembly 210 includes a top support ring seat 211 located directly above the fixed platform 111 and having a 240° ring-shaped cross section, and a plurality of top support hydraulic rods 212 cooperating with the top support ring seat 211 are arranged on the fixed platform 111;

[0060] The supporting leg assembly 220 includes a supporting bracket 221 rotatably connected to the supporting ring seat 211, a resisting hydraulic rod 222 is arranged on the supporting bracket 221, a supporting resisting rod 223 is arranged at the moving end of the resisting hydraulic rod 222, and a supporting point seat 224 is arranged on the supporting resisting rod 223;

[0061] The lifting ring seat assembly 230 includes a lifting ring seat 231 located directly above the fixed displacement seat 100 and having a 240° ring-shaped cross section, and a guide groove 233 cooperating with the guide rod 263 is provided on the lifting ring seat 231, and a plurality of lifting hydraulic rods 232 cooperating with the lifting ring seat 231 are provided on the fixed displacement seat 100;

[0062] The structure of the abutting leg assembly 240 is consistent with the structure of the supporting leg assembly 220;

[0063] The quick deployment drive assembly 260 includes an expansion ring seat 261 with a 240° ring-shaped cross-section, and a plurality of quick deployment drive rods 262 are evenly arranged along the circumferential direction of the expansion ring seat 261. One end of the quick deployment drive rod 262 is rotatably connected to the quick deployment ring seat, and the other end of the quick deployment drive rod 262 is rotatably connected to the top support bracket 221 or the interference leg assembly 240.

[0064] Further, the synchronous drive assembly 270 includes a drive bracket 271 horizontally arranged on the stable slide 250, a drive slot 272 is provided on the drive bracket 271, a drive screw 273 is provided in the drive slot 272, a drive support 274 cooperating with the drive screw 273 is provided in the drive slot 272, and a drive connecting rod 275 rotatably connected to the drive support 274 is provided at both the top and bottom ends of the drive support 274;

[0065] A stabilizing groove 251 cooperating with the driving connecting rod 275 is vertically opened on the stabilizing slide 250, a stabilizing slide seat 276 slidably cooperating with the stabilizing groove 251 is arranged in the stabilizing slide 251, a connecting support 277 connected with the expansion ring seat 261 is arranged on the stabilizing slide seat 276, and a connecting screw 278 connected with the expansion ring seat 261 is arranged on the connecting support 277; one end of the driving connecting rod 275 is rotatably connected to the driving support 274, and the other end of the driving connecting rod 275 is rotatably connected to the stabilizing slide seat 276.

[0066] Preferably, the stabilizing slide 250 is provided with a stabilizing slide assembly 280 cooperating with the synchronous driving assembly 270, and the stabilizing slide assembly 280 includes a stabilizing cross frame 281 horizontally arranged on the stabilizing slide 250, and the stabilizing cross frame 281 is provided with a stabilizing groove 282, and a stabilizing guide rod 283 is arranged in the stabilizing groove 282, and a stabilizing slide 284 slidably cooperating with the stabilizing guide rod 283 is arranged in the stabilizing groove 282, and stabilizing connecting rods 285 connected with the stabilizing slide 276 are arranged at both top and bottom ends of the stabilizing slide 284;

[0067] The combination of the stabilizing slide 250, the driving bracket 271 and the stabilizing cross frame 281 is a cross structure as a whole.

[0068] Further, the abutment stabilization mechanism 300 includes a plurality of stabilization guide rods 310 disposed on the movable shift seat 120, the top end of the stabilization guide rod 310 completely passes through the movable platform 131, and a first ring seat 320 is disposed at the upper section of the stabilization guide rod 310, a first leg assembly 330 is disposed on the first ring seat 320, a second ring seat 340 is disposed at the lower section of the stabilization guide rod 310, a second leg assembly 350 is disposed on the second ring seat 340, and an unfolding drive assembly 360 for driving the first leg assembly 330 or the second leg assembly 350 to unfold quickly is disposed at both the top and bottom sections of the stabilization guide rod 310;

[0069] The structures of the first support leg assembly 330 and the second support leg assembly 350 are consistent with the structure of the top support leg assembly 220, and the structure of the deployment drive assembly 360 is consistent with the structure of the quick deployment drive assembly 260; the first ring seat 320 and the second ring seat 340 are both provided with a first connecting member for connecting to the top support ring seat assembly 210 or the lifting ring seat assembly 230, and the deployment drive assembly 360 is provided with a second connecting member connected to the quick deployment drive assembly 260.

[0070] Specifically, the first connecting member includes an I-shaped connecting frame, the connecting frame is provided with a first screw, and the two ends of the connecting frame are respectively connected to the first ring seat 320 and the top support ring seat 211, or the two ends of the connecting frame are respectively connected to the second ring seat 340 and the lifting ring seat 231. At the same time, the second connecting member is used to connect the expansion ring seat 261 of the quick deployment drive assembly 260 and the ring seat structure similar to the expansion ring seat 261 in the deployment drive assembly 360, and the structure of the second connecting member can be set to be consistent with the structure of the first connecting member.

[0071] Specifically, the top support ring seat assembly 210 in the squeezing and stabilizing mechanism 200 is lifted to an appropriate height, the top support leg assembly 220 is deployed under the drive of the quick deployment drive assembly 260, and the top support hydraulic rod 212 pushes the top support point seat 224 on the top support contact rod 223 to tightly press against the ceiling. The contact leg assembly 240 on the lifting ring seat assembly 230 is deployed under the action of the quick deployment drive assembly 260, and the contact leg assembly 240 contacts the building floor. The lifting hydraulic rod 232, through the guiding action of the guide rod 263, allows the contact leg assembly 240 to be stably supported on the floor, thereby providing stable support force for the entire device from both the upper and lower directions. The first leg assembly 330 and the second leg assembly 350 in the resistance stabilization mechanism 300 are deployed under the drive of the deployment drive assembly 360, and are connected to the top support ring seat assembly 210 or the lifting ring seat assembly 230 through the first connecting member and the second connecting member, further enhancing the stability of the entire device, so that the device can remain stable during the pump tube transportation process, and avoiding the occurrence of pump tube displacement or device tipping due to vibration and other reasons.

[0072] Further, the preliminary fixing mechanism 400 includes a preliminary bracket 500 disposed on the movable seat 120, and a plurality of flexible binding components 600 for providing flexible binding points for the pump tube are vertically disposed on the preliminary bracket 500, and a stable support component 700 cooperating with the flexible binding component 600 is disposed on the preliminary bracket 500, and an auxiliary lifting component 800 cooperating with the flexible binding component 600 for providing preliminary support for the pump tube is disposed on the movable seat 120;

[0073] The clamping stabilization mechanism 900 includes two clamping brackets symmetrically arranged on the fixed movable seat 100, and a plurality of stable clamping components are vertically arranged on the clamping bracket, and a clamping groove 930 cooperating with the stable clamping component is opened on the fixed arc frame 114; the stable clamping component includes a clamping hydraulic rod 910 arranged on the clamping bracket, and a hydraulic clamping claw 920 is arranged at the telescopic end of the clamping hydraulic rod 910.

[0074] Specifically, the structure of the hydraulic clamping claw 920 is basically the same as that of common clamping claws on the market, and will not be described in detail herein.

[0075] Furthermore, the stabilizing support assembly 700 includes a stabilizing hydraulic rod 701 disposed on the preliminary support 500, a supporting arc plate 702 is disposed at the movable end of the stabilizing hydraulic rod 701, and a receiving groove 703 for receiving the supporting arc plate 702 is provided on the movable arc frame 134;

[0076] The flexible lashing assembly 600 includes two receiving grooves 601 provided on the movable arc frame 134, and the two receiving grooves 601 are respectively located at two sides of the stable support assembly 700. The preliminary support 500 is provided with a lashing slide 602 that slidably cooperates with the preliminary support 500, and the preliminary support 500 is provided with a telescopic hydraulic rod 604 that cooperates with the lashing slide 602.

[0077] Both sides of the tying slide 602 are provided with tying brackets 605 that pass through the storage slot 601, one of the tying brackets 605 is provided with a flexible roller 606, the tying bracket 605 is provided with a flexible motor 607 that cooperates with the flexible roller 606, the flexible roller 606 is provided with a flexible cloth 608, one end of the flexible cloth 608 is wound and connected to the flexible roller 606, and the other end of the flexible cloth 608 is provided with a tying plug 609, the other tying bracket 605 is provided with a tying plug frame 610 that cooperates with the tying plug frame 609, and the tying plug frame 610 is provided with a tying pin 611 that cooperates with the tying plug frame 609.

[0078] Preferably, the preliminary bracket 500 is provided with a preliminary slide groove 603 cooperating with the binding slide 602 .

[0079] Further, the auxiliary lifting assembly 800 includes a conveying through groove 810 that passes through the movable shift seat 120, and two groups of auxiliary slide grooves 820 that are connected to the conveying through groove 810 are symmetrically opened on the movable shift seat 120. The conveying through groove 810 is provided with two lifting side frames 830, and the lifting side frame 830 is provided with a connecting bracket 840 connected to the other lifting side frame 830, and the lifting side frame 830 is provided with a lifting slider 850 that slidably cooperates with the auxiliary slide groove 820, and the movable shift seat 120 is provided with a linear driving member 860 for driving the lifting side frame 830 to slide along the auxiliary slide groove 820;

[0080] A group of flexible lifting units 870 is provided at the upper section of the lifting side frame 830, and a rigid lifting unit 880 cooperating with the flexible lifting unit 870 is provided at the lower section of the lifting side frame 830, and the rigid lifting unit 880 is located directly below the flexible lifting unit 870, and a group of the flexible lifting units 870 includes a plurality of flexible lifting units 870 along the length direction of the auxiliary chute 820;

[0081] The flexible lifting unit 870 includes a flexible hydraulic rod 871 disposed on the lifting side frame 830, a flexible lifting frame 872 is disposed at the moving end of the flexible hydraulic rod 871, a flexible roller 873 is disposed on the flexible lifting frame 872, a driving motor 874 cooperating with the flexible roller 873 is disposed on the flexible lifting frame 872, and a lifting cloth 875 connected to a flexible roller in the flexible lifting unit 870 on another lifting side frame 830 is disposed on the flexible roller;

[0082] The rigid lifting unit 880 includes a plurality of rigid hydraulic rods 881 arranged along the length direction of the auxiliary slide 820 , and the plurality of rigid hydraulic rods 881 are connected to the same rigid side plate 882 , and a lifting bottom plate 883 is arranged on the rigid side plate 882 .

[0083] Preferably, a plurality of arc plates cooperating with the elbow pump pipe are provided on the lifting base plate 883, a lifting arc frame detachably connected to the movable seat 120 is provided at the end of the movable seat 120 away from the fixed seat 100, a shock-absorbing arc frame is provided on the lifting arc frame, and a shock-absorbing spring cooperating with the shock-absorbing arc frame is provided on the lifting arc frame.

[0084] Specifically, during the process of fixing the pump pipe, the preliminary fixing mechanism 400 first performs preliminary fixing on the pump pipe, the flexible binding assembly 600 performs flexible binding on the pump pipe through the flexible cloth 608, the supporting arc plate 702 in the stable support assembly 700 cooperates with the receiving groove 703 on the movable arc frame 134, and the lifting side frame 830, the flexible lifting unit 870 and the rigid lifting unit 880 in the auxiliary lifting assembly 800 work together to lift and support the pump pipe. Subsequently, the stable clamping assembly in the clamping and stabilizing mechanism 900 is actuated, and the stable hydraulic rod 701 drives the hydraulic clamping claw 920 to clamp the pump pipe, and cooperates with the clamping groove 930 on the fixed arc frame 114 to further strengthen the clamping of the pump pipe and ensure the stability of the pump pipe during concrete pumping. The two cooperate with each other, first perform preliminary fixing, and then perform strengthened clamping, to ensure the stability and safety of the pump pipe during the transportation process, and also facilitate the rapid replacement of the pump pipe, just need to loosen the clamping and stabilizing mechanism 900 first, and then release the preliminary fixing mechanism 400.

[0085] Technical features not described in the present invention can be achieved through or by adopting existing technologies and will not be described in detail here. Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention should also fall within the scope of protection of the present invention.

Claims

1. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes, characterized in that: The invention comprises a fixed shift seat (100), wherein a fixed ring frame (110) having a cross section of a 240° ring is arranged on the fixed shift seat (100), a movable shift seat (120) cooperating with the fixed shift seat (100) is arranged on one side of the fixed shift seat (100), a movable ring frame (130) which is butt-jointed with the fixed ring frame (110) and has a cross section of a 120° ring is arranged on the movable shift seat (120), a locking and fixing component connected with the movable ring frame (130) is arranged on the fixed ring frame (110), and a stabilizing alignment component cooperating with the movable shift seat (120) is arranged on the fixed shift seat (100); The fixed ring frame (110) is provided with a squeezing stabilization mechanism (200) for contacting the ceiling and the bottom plate of the building and providing stability for the overall device, and the movable frame is provided with a resistance stabilization mechanism (300) cooperating with the squeezing stabilization mechanism (200), the movable seat (120) is provided with a preliminary fixing mechanism (400) for preliminarily clamping the pump pipe so as to facilitate rapid replacement of the pump pipe, and the fixed ring frame (110) is provided with a clamping stabilization mechanism (900) cooperating with the preliminary fixing mechanism (400) and used to further strengthen the stability of the pump pipe during concrete pumping.

2. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 1, characterized in that: The fixed ring frame (110) comprises a fixed platform (111) with a 240° ring-shaped cross section, a plurality of fixed brackets (112) connected to the fixed moving seat (100) are arranged on the bottom surface of the fixed platform (111), a fixed through groove (113) cooperating with the fixed platform (111) is opened on the fixed moving seat (100), and a fixed arc bracket (114) cooperating with the fixed through groove (113) is arranged on the bottom surface of the fixed platform (111); The movable moving frame comprises a movable platform (131) with a 120° annular cross-section, a plurality of movable brackets (132) connected to the movable moving seat (120) are arranged on the bottom surface of the movable platform (131), a movable through groove (133) cooperating with the movable platform (131) is opened on the movable moving seat (120), and a movable arc bracket (134) cooperating with the fixed through groove (113) is arranged on the bottom surface of the movable platform (131); and the fixed through groove (113) and the movable through groove (133) together form a stable through groove with a circular cross section.

3. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 2, characterized in that: The locking and fixing assembly comprises a first locking plate symmetrically arranged at both sides of the opening of the fixed arc frame (114), and the top and bottom ends of the first locking plate are respectively connected to the fixed platform (111) and the fixed displacement seat (100), and a second locking plate is arranged at both sides of the opening of the movable arc frame (134), and the top and bottom ends of the second locking plate are respectively connected to the movable platform (131) and the movable displacement seat (120), and a plurality of locking screws connected to the second locking plate are vertically arranged on the first locking plate, and locking nuts are arranged at both ends of the locking screws. The stable alignment assembly comprises two groups of first alignment grooves respectively arranged at both ends of the fixed moving seat (100); second alignment cross frames are respectively arranged at both ends of the fixed moving seat (100); two groups of first alignment cross frames cooperating with the first alignment grooves are arranged at both ends of the movable moving seat (120); second alignment grooves cooperating with the second alignment cross frames are arranged at both ends of the movable moving seat (120); the first alignment groove and the second alignment groove are both provided with a plurality of groups of shock absorbers for facilitating stable docking of the fixed moving seat (100) and the movable moving seat (120); a stable running wheel is arranged at one end of the shock absorber.

4. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 2, characterized in that: The squeezing and stabilizing mechanism (200) comprises a top support ring seat assembly (210) arranged at the top end of the fixed ring frame (110), the top support ring seat assembly (210) being provided with a plurality of top support leg assemblies (220) in contact with the building ceiling, a lifting ring seat assembly (230) being provided at the lower section of the fixed ring frame (110), the lifting ring seat assembly (230) being provided with a plurality of interference leg assemblies (240) in contact with the building floor; The fixed transfer seat (100) is provided with a stable slide (250) connected to the fixed platform (111), and both top and bottom ends of the stable slide (250) are provided with a fast deployment drive assembly (260) for driving the supporting leg assembly (220) or the resisting leg assembly (240) to be deployed quickly; The fixed transfer seat (100) is provided with a plurality of guide rods (263) cooperating with the quick-expansion drive assembly (260) and the lifting ring seat assembly (230); the stabilizing slide frame (250) is provided with a synchronous drive assembly (270) for driving the two quick-expansion drive assemblies (260) to move in the same direction or in opposite directions along the vertical direction.

5. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 4, characterized in that: The supporting ring seat assembly (210) comprises a supporting ring seat (211) located directly above the fixed platform (111) and having a 240° annular cross section, and a plurality of supporting hydraulic rods (212) cooperating with the supporting ring seat (211) are arranged on the fixed platform (111); The supporting leg assembly (220) comprises a supporting bracket (221) rotatably connected to the supporting ring seat (211), a resisting hydraulic rod (222) is arranged on the supporting bracket (221), a supporting resisting rod (223) is arranged at the movable end of the resisting hydraulic rod (222), and a supporting point seat (224) is arranged on the supporting resisting rod (223); The lifting ring seat assembly (230) includes a lifting ring seat (231) located directly above the fixed displacement seat (100) and having a 240° ring-shaped cross section, and a guide groove (233) cooperating with the guide rod (263) is provided on the lifting ring seat (231), and a plurality of lifting hydraulic rods (232) cooperating with the lifting ring seat (231) are provided on the fixed displacement seat (100); The structure of the interference leg assembly (240) is consistent with the structure of the supporting leg assembly (220); The quick deployment drive assembly (260) comprises an expansion ring seat (261) with a 240° annular cross section, and the expansion ring seat (261) is evenly provided with a plurality of quick deployment drive rods (262) along the circumferential direction of the expansion ring seat (261), one end of the quick deployment drive rod (262) is rotatably connected to the quick deployment ring seat, and the other end of the quick deployment drive rod (262) is rotatably connected to the top support bracket (221) or the abutting leg assembly (240).

6. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 4, characterized in that: The synchronous drive assembly (270) comprises a drive bracket (271) horizontally arranged on the stable slide (250), a drive slide groove (272) is provided on the drive bracket (271), a drive screw rod (273) is provided in the drive slide groove (272), a drive support (274) matched with the drive screw rod (273) is provided in the drive slide groove (272), and a drive connecting rod (275) rotatably connected to the drive bracket (274) is provided at both the top and bottom ends of the drive support (274); The stabilizing slide frame (250) is vertically provided with a stabilizing groove (251) cooperating with the driving connecting rod (275); the stabilizing groove (251) is provided with a stabilizing slide seat (276) slidably cooperating with the stabilizing groove (251); the stabilizing slide seat (276) is provided with a connecting support (277) connected to the expansion ring seat (261); the connecting support (277) is provided with a connecting screw (278) connected to the expansion ring seat (261); one end of the driving connecting rod (275) is rotatably connected to the driving support (274), and the other end of the driving connecting rod (275) is rotatably connected to the stabilizing slide seat (276).

7. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 4, characterized in that: The abutting stabilizing mechanism (300) comprises a plurality of stabilizing guide rods (310) arranged on the movable shift seat (120), the top end of the stabilizing guide rod (310) completely passing through the movable platform (131), and a first ring seat (320) is arranged at the upper section of the stabilizing guide rod (310), a first leg assembly (330) is arranged on the first ring seat (320), a second ring seat (340) is arranged at the lower section of the stabilizing guide rod (310), a second leg assembly (350) is arranged on the second ring seat (340), and an unfolding driving assembly (360) for driving the first leg assembly (330) or the second leg assembly (350) to unfold quickly is arranged at both the top and bottom sections of the stabilizing guide rod (310); The structures of the first leg assembly (330) and the second leg assembly (350) are consistent with the structure of the top support leg assembly (220), and the structure of the deployment drive assembly (360) is consistent with the structure of the quick deployment drive assembly (260); the first ring seat (320) and the second ring seat (340) are both provided with a first connecting piece for connecting to the top support ring seat assembly (210) or the lifting ring seat assembly (230), and the deployment drive assembly (360) is provided with a second connecting piece connected to the quick deployment drive assembly (260).

8. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 2, characterized in that: The preliminary fixing mechanism (400) comprises a preliminary support (500) arranged on the movable seat (120), a plurality of flexible binding assemblies (600) for providing flexible binding points for the pump tube are vertically arranged on the preliminary support (500), a stable support assembly (700) cooperating with the flexible binding assembly (600) is arranged on the preliminary support (500), and an auxiliary lifting assembly (800) for providing preliminary support for the pump tube and cooperating with the flexible binding assembly (600) is arranged on the movable seat (120); The clamping stabilization mechanism (900) comprises two clamping brackets symmetrically arranged on the fixed displacement seat (100), a plurality of stabilizing clamping components are vertically arranged on the clamping bracket, and a clamping groove (930) cooperating with the stabilizing clamping component is opened on the fixed arc frame (114); the stabilizing clamping component comprises a clamping hydraulic rod (910) arranged on the clamping bracket, and a hydraulic clamping claw (920) is arranged at the telescopic end of the clamping hydraulic rod (910).

9. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 8, characterized in that: The stabilizing support assembly (700) comprises a stabilizing hydraulic rod (701) arranged on the preliminary support (500), a supporting arc plate (702) is arranged at the movable end of the stabilizing hydraulic rod (701), and a receiving groove (703) for receiving the supporting arc plate (702) is provided on the movable arc frame (134); The flexible lashing assembly (600) comprises two receiving grooves (601) provided on the movable arc frame (134), the two receiving grooves (601) are respectively located at two sides of the stable support assembly (700), the preliminary support (500) is provided with a lashing slide (602) which is slidably matched with the preliminary support (500), and the preliminary support (500) is provided with a telescopic hydraulic rod (604) which is matched with the lashing slide (602); Both sides of the binding slide (602) are provided with binding brackets (605) passing through the storage groove (601), one of the binding brackets (605) is provided with a flexible roller (606), the binding bracket (605) is provided with a flexible motor (607) cooperating with the flexible roller (606), the flexible roller (606) is provided with a flexible cloth (608), one end of the flexible cloth (608) is wound and connected with the flexible roller (606), and the other end of the flexible cloth (608) is provided with a binding plug (609), the other binding bracket (605) is provided with a binding plug (610) cooperating with the binding plug (609), and the binding plug (610) is provided with a binding pin (611) cooperating with the binding plug (609).

10. A floor stabilizing support frame for stable delivery and rapid replacement of pump pipes as claimed in claim 8, characterized in that: The auxiliary lifting assembly (800) includes a conveying through groove (810) penetrating the movable seat (120), two groups of auxiliary slide grooves (820) connected to the conveying through groove (810) are symmetrically opened on the movable seat (120), the conveying through groove (810) is provided with two lifting side frames (830), the lifting side frame (830) is provided with a connecting bracket (840) connected to the other lifting side frame (830), the lifting side frame (830) is provided with a lifting slider (850) slidably matched with the auxiliary slide groove (820), and the movable seat (120) is provided with a linear driving member (860) for driving the lifting side frame (830) to slide along the auxiliary slide groove (820); A group of flexible lifting units (870) is provided at the upper section of the lifting side frame (830), and a rigid lifting unit (880) cooperating with the flexible lifting unit (870) is provided at the lower section of the lifting side frame (830), and the rigid lifting unit (880) is located directly below the flexible lifting unit (870), and a group of the flexible lifting units (870) includes a plurality of flexible lifting units (870) along the length direction of the auxiliary slide groove (820).

Citation Information

Patent Citations

  • Auxiliary mounting system for building curtain wall carrying

    CN116791904A

  • Holding device, system and method for holding one or more cable and use thereof

    CN117242659A

  • Cable erecting device for building mechanical and electrical installation

    CN119029737A

  • Damping fixing device of vertical elbow of concrete pump pipe

    CN208363642U

  • Reinforcing and damping device for ground pump pipe

    CN220186188U