Pipeline transferring and mounting equipment

By designing pipeline transfer and installation equipment and utilizing the coordinated operation of traveling components, main components, hoisting components, and force-applying components, efficient hoisting and transfer of small-diameter pipelines has been achieved, solving the problem of low construction efficiency in municipal pipeline projects, reducing costs, and simplifying operation.

CN223866332UActive Publication Date: 2026-02-03CCFEB CIVIL ENG
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Patent Information

Application Number
CN202520268455.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2026-02-03
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

In municipal pipeline engineering, the construction efficiency of small-diameter pipelines is low, the labor and material costs are high, the traditional construction methods are difficult to operate, and the existing equipment has a complex structure and is not suitable for small-scale transportation and installation of small-diameter pipelines.

Method used

A pipeline transfer and installation device was designed, including a traveling component, a main component, a lifting component, and a force-applying component. It realizes the lifting and transfer of pipelines through the lever principle. The structure is simple and a single person can complete the local adjustment and transfer of small-diameter pipelines.

Benefits of technology

It improves the construction efficiency of municipal pipeline projects, reduces labor and material costs, is suitable for small-diameter pipelines for small-scale transfer and installation, has low operation difficulty, and is suitable for widespread promotion.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses pipeline transferring and mounting equipment which is characterized in that after a pipeline is horizontally placed, the pipeline is connected with the pipeline through a hoisting piece, and then vertical acting force is applied to a force application piece, so that the force application piece vertically moves downwards relative to a traveling piece, and the hoisting piece is driven to vertically move upwards relative to the traveling piece under the transmission of a main body component; therefore, the pipeline is hoisted by utilizing the lever principle, and the pipeline can be locally adjusted when the pipeline is mounted; after the pipeline is hoisted, the acting force in the horizontal direction is applied to the force application part, under transmission of the main body component, the movable end of the advancing part is driven to rotate, then the pipeline transferring and mounting equipment is moved, and therefore the pipeline can be transferred; according to the scheme, the advancing part, the main body component, the hoisting part and the force application part are cooperatively matched, so that hoisting and transferring of the pipeline are achieved, the device is suitable for small-range transferring and mounting of small-diameter pipelines, the construction efficiency of municipal pipeline engineering is further improved, practicability is high, and the device is suitable for wide application and popularization.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pipeline construction technical field, in particular, relate to a pipeline transfer installation equipment. BACKGROUND

[0002] The municipal pipeline engineering is an important branch of municipal engineering, which mainly includes water supply pipeline engineering, drainage pipeline engineering, gas pipeline engineering, heat pipeline engineering, power pipeline engineering and communication pipeline engineering, is an important part of urban infrastructure, and bears the transportation and distribution tasks of the key elements such as water, gas, heat, electricity and communication of the city, and is an important cornerstone of guaranteeing the normal operation of the city and the quality of life of residents.

[0003] In the construction process of the municipal pipeline engineering, the proportion of small-diameter (300mm-500mm) pipelines is large, and the small-diameter pipelines need to be transferred in small ranges for many times, and the pipelines need to be adjusted locally when installing the pipelines in the trench, the traditional construction method is to carry or mechanically hoist by many people, the construction efficiency is low, and the labor and material costs are large.

[0004] And like Chinese invention patent application CN119218283A discloses a municipal engineering pipeline transfer equipment, including support base plate, the support base plate top is installed with bearing plate, is provided with first connecting opening and bearing groove on the bearing plate, the bearing plate is internally provided with connecting cavity and second connecting opening, the bearing plate top is installed with first drive part, the first drive part bottom is installed with first one-way screw rod, the first one-way screw rod is threadedly connected with sliding block, the sliding block is installed with connecting rod, the connecting rod is connected with clamping seat, the clamping seat top is installed with elastic clamping assembly, the support base plate side wall is installed with bearing frame, the bearing frame is provided with sliding seat, the sliding seat two ends are provided with telescopic rod, the telescopic rod top telescopic end is provided with bearing frame, the bearing frame is connected with rotary block through second connecting shaft, the rotary block end is fixedly installed with clamping frame, the present application can effectively facilitate the safe and stable transportation of the pipeline, thereby facilitating the use of the transfer equipment.

[0005] But the above-mentioned equipment structure is complex, the cost is high, the operation difficulty is big, is not applicable to the small range transfer and subsequent installation of small-diameter pipeline. UTILITY MODEL CONTENT

[0006] The utility model provides a pipeline transfer installation equipment to solve the technical problem of low construction efficiency, large labor and material cost of the prior art municipal pipeline engineering.

[0007] According to one aspect of the utility model, provide a pipeline transfer installation equipment, including the movable end rotatable arrangement's advancing piece, with advancing assembly rotatable connection's main part, with main part's first end detachable connection's for hoisting pipeline's hoisting piece, and with main part's second end detachable connection's for force after driving hoisting piece lift and force after driving advancing piece's movable end rotation's force piece.

[0008] As a further improvement of the above technical solution:

[0009] Further, the main part includes a lower connecting portion connected with the advancing piece, an upper connecting portion detachably connected with the hoisting piece at the first end and detachably connected with the force piece at the second end, and a middle connecting portion fixedly connected with the upper connecting portion and the lower connecting portion, respectively.

[0010] Further, the hoisting piece includes a hoisting rod detachably connected with the first end of the upper connecting portion, a mounting rod fixedly arranged on the end of the hoisting rod away from the upper connecting portion, and two hooks arranged on the opposite ends of the mounting rod, respectively.

[0011] Further, the force piece includes a force rod detachably connected with the second end of the upper connecting portion, and the force rod is provided with a plurality of force rods with different axial lengths.

[0012] Further, the force rod is a telescopic rod.

[0013] Further, a non-slip pattern is arranged on the outer wall of the end of the force rod away from the upper connecting portion.

[0014] Further, a force handle is arranged on the end of the force rod away from the upper connecting portion.

[0015] Further, the main part further includes a lower reinforcing rod obliquely arranged and fixedly connected with the lower connecting portion and the middle connecting portion, respectively.

[0016] Further, the main part further includes an upper reinforcing rod obliquely arranged and fixedly connected with the upper connecting portion and the middle connecting portion, respectively.

[0017] Further, the advancing piece includes two advancing wheels arranged oppositely, and a connecting rod connected with the advancing wheel and the main part, respectively.

[0018] The utility model has the following beneficial effects:

[0019] The pipeline transfer and installation equipment of the utility model, after the pipeline is laid flat, the hoisting piece is connected with the pipeline, then the force applying piece is applied with the force in the vertical direction, so that the force applying piece moves vertically downward relative to the advancing piece, and under the transmission of the main component, the hoisting piece is driven to move vertically upward relative to the advancing piece, so that the pipeline is lifted by the lever principle, and the pipeline can be adjusted locally when the pipeline is installed; after the pipeline is lifted, the force applying piece is applied with the force in the horizontal direction, under the transmission of the main component, the movable end of the advancing piece is driven to rotate, and then the pipeline transfer and installation equipment moves, so that the pipeline can be transferred; the pipeline is lifted and transferred by the cooperation of the advancing piece, the main component, the hoisting piece and the force applying piece, compared with the prior art, the structure is simple, the operation difficulty is low, one person can operate, the manpower and material resources cost is low, it is suitable for small-range transfer and installation of small-diameter pipelines, and it is also beneficial to improve the construction efficiency of municipal pipeline engineering, the practicality is strong, and it is suitable for being widely promoted and applied.

[0020] In addition to the purposes, features and advantages described above, the utility model has other purposes, features and advantages. BRIEF DESCRIPTION OF DRAWINGS

[0021] The accompanying drawings, which form a part of this application, are included to provide a further understanding of the application, and are incorporated in and constitute a part of this application. The embodiments of the application illustrated in the drawings are presented by way of example or for purpose of illustration, and not as limitations of the application. In the drawings:

[0022] Figure 1 It is the structure schematic diagram of the pipeline transfer and installation equipment of the preferred embodiment of the utility model.

[0023] LEGEND

[0024] 100, advancing piece; 110, advancing wheel; 120, connecting rod; 200, main component; 210, lower connecting part; 220, upper connecting part; 230, middle connecting part; 240, lower reinforcing rod; 250, upper reinforcing rod; 300, hoisting piece; 310, hoisting rod; 320, mounting rod; 330, lifting hook; 400, force applying piece. DETAILED DESCRIPTION

[0025] The embodiments of the utility model will be described in detail below in combination with the drawings, but the utility model can be implemented in various different ways limited and covered by the following.

[0026] As Figure 1As shown, the pipeline transfer installation equipment of the embodiment comprises a traveling piece 100 rotatably arranged at a movable end, a main body member 200 rotatably connected with the traveling piece, a hoisting piece 300 for hoisting the pipeline and detachably connected with a first end of the main body member 200, and a force applying piece 400 detachably connected with a second end of the main body member 200 and used for driving the hoisting piece 300 to lift after being stressed and driving the movable end of the traveling piece 100 to rotate after being stressed.

[0027] Specifically, the pipeline transfer installation equipment of the embodiment, after the pipeline is laid flat, connects the hoisting piece 300 with the pipeline, and then applies a force in the vertical direction to the force applying piece 400, so that the force applying piece 400 moves vertically downward relative to the traveling piece 100, and drives the hoisting piece 300 to move vertically upward relative to the traveling piece 100 under the transmission of the main body member 200, thereby hoisting the pipeline by the lever principle, so as to locally adjust the pipeline during installation of the pipeline; after the pipeline is hoisted, a force in the horizontal direction is applied to the force applying piece 400, which drives the movable end of the traveling piece 100 to rotate under the transmission of the main body member 200, and then drives the pipeline transfer installation equipment to move, so as to transfer the pipeline; the present scheme cooperates the traveling piece 100, the main body member 200, the hoisting piece 300 and the force applying piece 400 to realize hoisting and transferring of the pipeline, and has the advantages of simple structure, low operation difficulty, single-person operation, low labor and material cost, small-range transfer and installation of small-diameter pipelines, improved construction efficiency of municipal pipeline projects, strong practicability, and wide application.

[0028] Optionally, when hoisting the pipeline, two lifting ropes can be tied on the pipeline to be connected with the hoisting part, so as to hoist the pipeline.

[0029] It should be understood that the force for hoisting the pipeline can be applied by a single person by the lever principle, which saves labor and facilitates construction in narrow places.

[0030] For example, the hoisting piece 300 can be a lifting hook, and the force applying piece 400 can be a lifting chain. Figure 1As shown, in the embodiment, the main body member 200 includes a lower connecting portion 210 connected with the traveling member 100, an upper connecting portion 220 with a first end detachably connected with the hoisting member and a second end detachably connected with the force applying member 400, and a middle connecting portion 230 fixedly connected with the upper connecting portion 220 and the lower connecting portion 210 respectively, and the upper connecting portion 220, the middle connecting portion 230 and the upper connecting portion 220 are vertically arranged in pairs. Specifically, the main body member 200 is connected with the traveling member 100 through the lower connecting portion 210, and is connected with the hoisting member 300 and the force applying member 400 through the upper connecting portion 220 respectively, and then the upper connecting portion 220 and the lower connecting portion 210 are connected as a whole through the middle connecting portion 230, and the upper connecting portion 220, the middle connecting portion 230 and the upper connecting portion 220 are vertically arranged in pairs, so that the force applying member 400 can rotate relative to the traveling member 100, thereby driving the hoisting member 300 to rotate relative to the traveling member 100, and the pipeline is hoisted, so as to facilitate the transfer and installation of the pipeline.

[0031] As shown, Figure 1 In the embodiment, the hoisting member 300 includes a hoisting rod 310 detachably connected with the first end of the upper connecting portion 220, a mounting rod 320 fixedly arranged on the end of the hoisting rod 310 away from the upper connecting portion 220, and two hooks 330 arranged on the opposite ends of the mounting rod 320 respectively, and the mounting rod 320 and the hoisting rod 310 are vertically arranged. Specifically, the lever force is transmitted through the hoisting rod 310, and then the two hooks 330 are installed on the mounting rod 320 to hoist the pipeline, and the mounting rod 320 and the hoisting rod 310 are vertically arranged to increase the distance between the two hooks 330, thereby improving the stability of the hoisted pipeline.

[0032] Optionally, the hoisting rod 310 and the first end of the upper connecting portion 220 are detachably connected in a socket manner.

[0033] Optionally, the outer wall surface of the hoisting rod 310 is arranged with external threads, the upper connecting portion 220 is in a hollow rod shape, the inner cavity of the upper connecting portion 220 is arranged with internal threads, and the hoisting rod 310 and the upper connecting portion 220 are threadedly connected, so that the connection strength is high, the hoisting rod 310 can bear larger tension and pressure, and the hoisting rod 310 can be easily detached and selected according to the weight of the pipeline.

[0034] Optionally, the hoisting rod 310 and the upper connecting portion 220 are snap connected, so that the connection and detachment are convenient and fast.

[0035] Optionally, the hoisting rod 310 and the upper connecting portion 220 are provided with corresponding connection holes in the radial direction, and locking pins are arranged in the connection holes to connect the hoisting rod 310 and the upper connecting portion 220, so as to ensure reliable connection of the hoisting rod 310 and the upper connecting portion 220 and prevent loosening, and the locking pins are relatively easy to insert and pull out, facilitating disassembly. Optionally, the locking pins are in the shape of a cone or a rhombus, so as to increase the firmness of the connection.

[0036] As shown in FIG. 4, Figure 1 In this embodiment, the force applying member 400 includes force applying rods which are detachably connected to the second end of the upper connecting portion 220, and a plurality of force applying rods are provided, and the axial lengths of the plurality of force applying rods are different. Specifically, according to the weight of the pipeline, the force applying rod with a corresponding axial length is selected to be connected to the second end of the upper connecting portion 220, so as to ensure that the pipeline can be hoisted or the traveling member 100 is driven to rotate to transfer the pipeline under the action of the lever principle after the operator applies a proper force.

[0037] Optionally, the force applying rod and the second end of the upper connecting portion 220 are detachably connected in a socket manner.

[0038] Optionally, the outer wall surface of the force applying rod is provided with external threads, the upper connecting portion 220 is in a hollow rod shape, the inner cavity of the upper connecting portion 220 is provided with internal threads, and the force applying rod and the upper connecting portion 220 are threadedly connected, so as to have high connection strength, be able to bear large tension and pressure, be convenient to disassemble, and facilitate selection of the force applying rod with a corresponding axial length according to the weight of the pipeline.

[0039] Optionally, the force applying rod and the upper connecting portion 220 are buckle-connected, so as to be convenient and fast to connect and disassemble.

[0040] Optionally, the force applying rod and the upper connecting portion 220 are provided with corresponding connection holes in the radial direction, and locking pins are arranged in the connection holes to connect the force applying rod and the upper connecting portion 220, so as to ensure reliable connection of the force applying rod and the upper connecting portion 220 and prevent loosening, and the locking pins are relatively easy to insert and pull out, facilitating disassembly. Optionally, the locking pins are in the shape of a cone or a rhombus, so as to increase the firmness of the connection.

[0041] In this embodiment, the force applying rod is a telescopic rod. Specifically, the axial length can be adjusted by telescoping of the force applying rod, so as to ensure that the pipeline can be hoisted or the traveling member 100 is driven to rotate to transfer the pipeline under the action of the lever principle after the operator applies a proper force.

[0042] In this embodiment, the outer wall of the end of the force applying rod away from the upper connecting portion 220 is provided with anti-skid lines. Specifically, the anti-skid lines enhance the friction, facilitating force exertion by the operator.

[0043] In the embodiment, a force applying handle is arranged on the end of the force applying rod away from the upper connecting part 220. Specifically, the force applying handle facilitates the operator to exert vertical and horizontal forces, so as to lift or transfer the pipeline. Alternatively, the force applying handle is welded on the end of the force applying rod away from the upper connecting part 220.

[0044] As shown in Figure 1 In the embodiment, the main body member 200 further comprises two lower reinforcing rods 240 which are arranged obliquely and fixedly connected with the lower connecting part 210 and the middle connecting part 230 respectively. Specifically, the two lower reinforcing rods 240 enhance the supporting strength of the main body member 200, and optimize the mechanical properties of the main body member 200, so that the main body member 200 can adapt to complex stress environment, and the bending resistance of the lower connecting part 210 and the middle connecting part 230 is improved, so as to avoid the lower connecting part 210 or the middle connecting part 230 from being bent when the traveling member 100 moves and turns.

[0045] As shown in Figure 1 In the embodiment, the main body member 200 further comprises two upper reinforcing rods 250 which are arranged obliquely and fixedly connected with the upper connecting part 220 and the middle connecting part 230 respectively. Specifically, the two upper reinforcing rods 250 enhance the structural stability of the main body member 200, and optimize the mechanical properties of the main body member 200, so that the main body member 200 can adapt to complex stress environment, and the bending resistance of the upper connecting part 220 and the middle connecting part 230 is improved, so as to avoid the upper connecting part 220 or the middle connecting part 230 from being bent when the pipeline is lifted.

[0046] As shown in Figure 1 In the embodiment, the traveling member 100 comprises two traveling wheels 110 which are arranged oppositely, and connecting rods 120 which are connected with the traveling wheels 110 and the main body member 200 respectively. Specifically, when the force applying member 400 exerts a horizontal force, the force is sequentially transmitted to the traveling wheels 110 through the main body member 200 and the connecting member, and then the traveling wheels 110 are driven to rotate, so as to transfer the pipeline.

[0047] The above merely describes the preferred embodiments of the present application, but is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A pipeline transfer and installation device, characterized in that, It includes a traveling component (100) with its movable end rotatably arranged, a main component (200) rotatably connected to the traveling component, a lifting component (300) for lifting pipes detachably connected to the first end of the main component (200), and a force-applying component (400) detachably connected to the second end of the main component (200) for driving the lifting component (300) to rise and fall when subjected to force and driving the movable end of the traveling component (100) to rotate when subjected to force.

2. The pipeline transfer and installation equipment according to claim 1, characterized in that, The main component (200) includes a lower connecting part (210) connected to the traveling part (100), an upper connecting part (220) whose first end is detachably connected to the lifting part and whose second end is detachably connected to the force-applying part (400), and a middle connecting part (230) fixedly connected to the upper connecting part (220) and the lower connecting part (210) respectively. The upper connecting part (220), the middle connecting part (230) and the upper connecting part (220) are arranged vertically in pairs.

3. The pipeline transfer and installation equipment according to claim 2, characterized in that, The lifting component (300) includes a lifting rod (310) detachably connected to the first end of the upper connecting part (220), an installation rod (320) fixedly arranged on the end of the lifting rod (310) away from the upper connecting part (220), and two hooks (330) respectively arranged on opposite ends of the installation rod (320). The installation rod (320) and the lifting rod (310) are arranged vertically.

4. The pipeline transfer and installation equipment according to claim 2, characterized in that, The force-applying component (400) includes a force-applying rod that is detachably connected to the second end of the upper connecting part (220). The force-applying rod has multiple rods with different axial lengths.

5. The pipeline transfer and installation equipment according to claim 4, characterized in that, The force-applying rod is a telescopic rod.

6. The pipeline transfer and installation equipment according to claim 4, characterized in that, The outer wall of the end of the force-applying rod away from the upper connecting part (220) is provided with anti-slip texture.

7. The pipeline transfer and installation equipment according to claim 4, characterized in that, A force-applying handle is provided on the end of the force-applying rod away from the upper connecting part (220).

8. The pipeline transfer and installation equipment according to claim 2, characterized in that, The main component (200) also includes two lower reinforcing rods (240) that are inclined and fixedly connected to the lower connecting part (210) and the middle connecting part (230) respectively. The two lower reinforcing rods (240) are arranged opposite to each other on both sides of the middle connecting part (230).

9. The pipeline transfer and installation equipment according to claim 2, characterized in that, The main component (200) also includes two upper reinforcing rods (250) that are inclined and fixedly connected to the upper connecting part (220) and the middle connecting part (230) respectively. The two upper reinforcing rods (250) are arranged opposite to each other on both sides of the middle connecting part (230).

10. The pipeline transfer and installation equipment according to any one of claims 1-9, characterized in that, The traveling component (100) includes two traveling wheels (110) arranged opposite to each other, and connecting rods (120) that are respectively connected to the traveling wheels (110) and the main component (200). The connecting rods (120) and the traveling wheels (110) are arranged in a one-to-one correspondence.

Citation Information

Patent Citations

  • Municipal engineering pipeline transfer equipment

    CN119218283A