Drainage pipeline transfer equipment for municipal engineering construction

By designing a municipal engineering drainage pipe transfer device that includes multiple structures and components, the problem of the transfer seat being difficult to adjust in the same line was solved, realizing convenient loading and safe transfer of drainage pipes.

CN223533503UActive Publication Date: 2025-11-11中铁吉林投资建设有限公司 +1
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Patent Information

Application Number
CN202423134226.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-11
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In existing municipal engineering construction, drainage pipeline transfer equipment consists of two independent transfer seats, which are difficult to place accurately on the same horizontal line and require manual adjustment, posing a safety hazard.

Method used

A transfer device was designed, comprising a base, a telescopic structure, a support structure, a moving structure, a support and fixing structure, an auxiliary moving structure, a load-bearing structure, an auxiliary structure, and a fixing structure. The device achieves precise adjustment and fixation of the drain pipe through components such as telescopic rods, electrically controlled jacks, and omnidirectional casters.

Benefits of technology

It enables convenient loading and transportation of drainage pipes, reduces the safety risks of manual adjustment, and has a simple structure and is easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses drainage pipeline transfer equipment for municipal engineering construction, relates to the field of drainage pipelines, and solves the problems that a drainage pipe cannot be accurately placed on two independent transfer seats when the drainage pipe is hoisted on the equipment, the two transfer seats cannot be ensured to be on the same horizontal straight line, and the drainage pipe is inconvenient to load when the drainage pipe needs to be loaded. And manual adjustment is very dangerous. The device is technically characterized by comprising a base; the telescopic structure is mounted on the base, and the telescopic structure is used for stretching out and drawing back; the supporting structure is installed on the telescopic structure, and the supporting structure is used for supporting; and the moving structure is installed on the base and the supporting structure, and the moving structure is used for moving. And unnecessary troubles are reduced, adjustment can be carried out according to the length of the pipeline, and therefore transportation is convenient, the structure is relatively simple, and use is convenient.
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Description

Technical Field

[0001] This utility model relates to the field of drainage pipeline technology, and in particular to a drainage pipeline transfer device used in municipal engineering construction. Background Technology

[0002] Drainage pipelines refer to the systems of pipes and their ancillary facilities that collect and discharge sewage, wastewater, and rainwater. Drainage pipelines include main pipes, branch pipes, and pipes leading to treatment plants. Regardless of whether they are built on streets or elsewhere, any pipe that serves a drainage function should be counted as a drainage pipeline. Based on different materials, drainage pipelines are classified as galvanized iron pipes, steel pipes, stainless steel pipes, aluminum-plastic composite pipes, etc.

[0003] The existing publication (announcement) number: CNU discloses a drainage pipe transfer device for municipal engineering construction, comprising: "a drainage pipe for municipal engineering construction and a transfer seat for transporting the drainage pipe, wherein the top of the transfer seat is provided with an arc-shaped groove, and universal wheels are installed at the four apex corners of the bottom of the transfer seat; an arc-shaped anti-slip pad is installed on the arc-shaped groove; fixed feet are symmetrically arranged at both ends of the arc-shaped anti-slip pad; the arc-shaped anti-slip pad and the fixed feet are installed on the arc-shaped groove of the transfer seat by fixing bolts; a number of straps are installed on one side of the transfer seat, and a number of evenly spaced limiting holes are opened on the side of each strap away from the fixed end; the same number of limiting posts as the straps are installed on the side of the transfer seat away from the straps."

[0004] However, since the transfer seat consists of two independent transfer seats, it is impossible to accurately place the drainage pipe onto the two transfer seats when hoisting it onto the equipment, nor can it be guaranteed that the two transfer seats are on the same horizontal straight line. It is necessary to manually adjust them during loading, which is very dangerous. Therefore, in order to solve this problem, it is very necessary to design a drainage pipe transfer device for municipal engineering construction. Utility Model Content

[0005] This invention aims to solve the technical problem in the prior art where the transfer seat consists of two independent transfer seats. When the drainage pipe is hoisted onto the equipment, it is impossible to accurately place it on the two transfer seats, and it is also impossible to ensure that the two transfer seats are on the same horizontal line. It requires manual adjustment during loading, which is a very dangerous technical problem. The invention provides a drainage pipe transfer device for municipal engineering construction.

[0006] To solve the above-mentioned technical problems, the specific technical solution of this utility model is as follows:

[0007] A drainage pipe transfer device for municipal engineering construction, comprising:

[0008] Base;

[0009] A telescopic structure, which is mounted on a base and is used for telescopic extension and retraction;

[0010] A support structure, which is mounted on a telescopic structure and serves to provide support;

[0011] A movable structure, which is mounted on a base and a support structure, and is used for movement;

[0012] A support and fixing structure is installed on a support structure and a base, and the support and fixing structure is used to fix the support.

[0013] An auxiliary moving structure is mounted on a base and a support structure, and the auxiliary moving structure is used to assist in movement;

[0014] A load-bearing structure, which is mounted on a support structure and a base, and is used to bear loads;

[0015] An auxiliary structure is mounted on the load-bearing structure and is used for assistance.

[0016] A fixing structure is mounted on an auxiliary structure and is used for fixing.

[0017] Preferably, the telescopic structure includes: two pairs of first connecting plates, two pairs of telescopic rods, two pairs of second connecting plates, and two pairs of adjusting buckles;

[0018] Two pairs of first connecting plates are installed on the side surface of the base, each telescopic rod is installed on the corresponding first connecting plate, each second connecting plate is installed on the telescopic end of the corresponding telescopic rod, and each adjusting buckle is installed on the corresponding telescopic rod.

[0019] Preferably, the support structure includes: a pair of support bases;

[0020] Each of the support bases is mounted on a corresponding pair of second connecting plates.

[0021] Preferably, the moving structure includes: three pairs of omnidirectional casters;

[0022] One pair of the omnidirectional casters is mounted on the lower surface of the base, and the other two pairs of the omnidirectional casters are mounted on a pair of the support bases.

[0023] Preferably, the supporting and fixing structure includes: three pairs of electrically controlled jacks;

[0024] One pair of the electrically controlled jacks is mounted on the lower surface of the base, and the other two pairs of the electrically controlled jacks are mounted on a pair of the support bases.

[0025] Preferably, the auxiliary moving structure includes: three pairs of auxiliary support rods, three pairs of support fixing plates, and three pairs of auxiliary moving wheels;

[0026] One pair of auxiliary support rods is mounted on the base, and the other two pairs of auxiliary support rods are mounted on a pair of support bases. Each support fixing plate is mounted on a corresponding auxiliary support rod, and each auxiliary moving wheel is mounted on the lower surface of a corresponding support fixing plate.

[0027] Preferably, the load-bearing structure includes: three arc-shaped load-bearing shells and three arc-shaped anti-slip pads;

[0028] Each of the arc-shaped bearing housings is mounted on a corresponding base and a pair of supporting bases, and each of the arc-shaped anti-slip pads is mounted on a corresponding arc-shaped bearing housing.

[0029] Preferably, the auxiliary structure includes: three pairs of fixed rings, three rotating rods, and three auxiliary rotating housings;

[0030] Each pair of fixed rings is mounted on a corresponding arc-shaped bearing housing, each rotating rod is mounted on a corresponding pair of fixed rings, and each auxiliary rotating housing is mounted on a corresponding rotating rod.

[0031] Preferably, the fixing structure includes: three adjustable fixing straps, three hooks, and several buckles;

[0032] Each of the adjustable fixing straps is mounted on a corresponding auxiliary rotating housing, each of the hooks is mounted on a corresponding adjustable fixing strap, each of the arc-shaped bearing housings is provided with an arc-shaped notch, and a plurality of the buckles are mounted at three corresponding arc-shaped notches, and the buckles match the hooks.

[0033] Preferably, the base contains a storage battery and a controller is mounted on the base.

[0034] This utility model has the following beneficial effects:

[0035] This drainage pipe transfer device for municipal engineering construction can better load drainage pipes for transfer, which is very convenient and reduces unnecessary trouble. It can be adjusted according to the length of the pipe to facilitate transportation. The structure is relatively simple and easy to use. Attached Figure Description

[0036] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0037] Figure 1 This is a schematic diagram of the structure of a drainage pipeline transfer device for municipal engineering construction according to the present invention;

[0038] Figure 2 This is a front view structural diagram of a drainage pipeline transfer device for municipal engineering construction according to the present invention.

[0039] Figure 3 This is a front view of a drainage pipeline transfer device for municipal engineering construction according to the present invention.

[0040] Figure 4 This is a top view of a drainage pipeline transfer device for municipal engineering construction according to the present invention.

[0041] Figure 5 This is a side view of a drainage pipeline transfer device for municipal engineering construction according to the present invention.

[0042] The reference numerals in the figure are:

[0043] Base 10, telescopic structure 20, support structure 30, moving structure 40, support and fixing structure 50, auxiliary moving structure 60, load-bearing structure 70, auxiliary structure 80, fixing structure 90, battery 100, controller 110.

[0044] First connecting plate 21, telescopic rod 22, second connecting plate 23, adjusting buckle 24;

[0045] Support base 31;

[0046] 41 omnidirectional casters;

[0047] Electric jack 51;

[0048] Auxiliary support rod 61, support fixing plate 62, auxiliary moving wheel 63;

[0049] Arc-shaped load-bearing housing 71, arc-shaped anti-slip pad 72;

[0050] Fixed ring 81, rotating rod 82, auxiliary rotating housing 83;

[0051] Adjustable fixing strap 91, hook 92, buckle 93. Detailed Implementation

[0052] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0053] Please see Figure 1-5A drainage pipeline transfer device for municipal engineering construction includes: a base 10; a telescopic structure 20, which is installed on the base 10 and is used for telescopic movement; a support structure 30, which is installed on the telescopic structure 20 and is used for support; a movable structure 40, which is installed on the base 10 and the support structure 30 and is used for movement; a support fixing structure 50, which is installed on the support structure 30 and the base 10 and is used for fixed support; an auxiliary movable structure 60, which is installed on the base 10 and the support structure 30 and is used for auxiliary movement; a load-bearing structure 70, which is installed on the support structure 30 and the base 10 and is used for load bearing; an auxiliary structure 80, which is installed on the load-bearing structure 70 and is used for auxiliary support; and a fixing structure 90, which is installed on the auxiliary structure 80 and is used for fixing.

[0054] The telescopic structure 20 includes: two pairs of first connecting plates 21, two pairs of telescopic rods 22, two pairs of second connecting plates 23, and two pairs of adjusting buckles 24. The two pairs of first connecting plates 21 are installed on the side surface of the base 10. Each telescopic rod 22 is installed on the corresponding first connecting plate 21. Each second connecting plate 23 is installed on the telescopic end of the corresponding telescopic rod 22. Each adjusting buckle 24 is installed on the corresponding telescopic rod 22.

[0055] The support structure 30 includes a pair of support bases 31, each support base 31 being mounted on a corresponding pair of second connecting plates 23.

[0056] The movable structure 40 includes three pairs of omnidirectional casters 41, one pair of which is mounted on the lower surface of the base 10, and the other two pairs of which are mounted on a pair of support bases 31.

[0057] The supporting and fixing structure 50 includes three pairs of electrically controlled jacks 51, one pair of which is installed on the lower surface of the base 10, and the other two pairs of electrically controlled jacks 51 are installed on a pair of supporting bases 31.

[0058] The auxiliary moving structure 60 includes: three pairs of auxiliary support rods 61, three pairs of support fixing plates 62, and three pairs of auxiliary moving wheels 63. One pair of auxiliary support rods 61 is mounted on the base 10, and the other two pairs of auxiliary support rods 61 are mounted on a pair of support bases 31. Each support fixing plate 62 is mounted on the corresponding auxiliary support rod 61, and each auxiliary moving wheel 63 is mounted on the lower surface of the corresponding support fixing plate 62.

[0059] The load-bearing structure 70 includes three arc-shaped load-bearing shells 71 and three arc-shaped anti-slip pads 72. Each arc-shaped load-bearing shell 71 is mounted on a corresponding base 10 and a pair of support bases 31, and each arc-shaped anti-slip pad 72 is mounted on a corresponding arc-shaped load-bearing shell 71.

[0060] The auxiliary structure 80 includes: three pairs of fixed rings 81, three rotating rods 82, and three auxiliary rotating housings 83. Each pair of fixed rings 81 is mounted on a corresponding arc-shaped bearing housing 71, each rotating rod 82 is mounted on a corresponding pair of fixed rings 81, and each auxiliary rotating housing 83 is mounted on a corresponding rotating rod 82.

[0061] The fixing structure 90 includes: three adjustable fixing straps 91, three hooks 92 and several buckles 93. Each adjustable fixing strap 91 is installed on a corresponding auxiliary rotating housing 83, each hook 92 is installed on a corresponding adjustable fixing strap 91, each arc-shaped bearing housing 71 is provided with an arc-shaped notch, and several buckles 93 are installed at the three corresponding arc-shaped notches, and the buckles 93 match the hooks 92.

[0062] The base 10 contains a storage battery 100 and a controller 110.

[0063] Working principle:

[0064] The telescopic structure 20 on the base 10 is used for telescopic extension and retraction; the support structure 30 on the telescopic structure 20 is used for support; the moving structure 40 on the base 10 and the support structure 30 is used for movement; the support structure 30 and the support fixing structure 50 on the base 10 are used for fixed support; the auxiliary moving structure 60 on the base 10 and the support structure 30 is used for auxiliary movement; the load-bearing structure 70 on the support structure 30 and the base 10 is used for load bearing; the auxiliary structure 80 on the load-bearing structure 70 is used for assistance; and the fixing structure 90 on the auxiliary structure 80 is used for fixation. First, adjust the length of the telescopic rod 22 according to the length of the drain pipe, thereby... After adjusting the position of the support base 31, the telescopic rod 22 is locked by adjusting the buckle 24. Then, the electric jack 51 is started by the controller 110 on the base 10 to fix the transfer equipment. Then, the auxiliary rotating housing 83 is opened by the rotating rod 82 on the fixing ring 81. After that, the drain pipe is hoisted up. After the hoisting is completed, the auxiliary rotating housing 83 on the rotating rod 82 is reset and hooked onto the buckle 93 by the hook 92 on the adjustable fixing belt 91. Then, the electric jack 51 is reset. Finally, the transfer is carried out by the universal moving wheel 41 and the auxiliary moving wheel 63, which is very convenient.

[0065] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this invention.

Claims

1. A drainage pipe transfer device for municipal engineering construction, characterized in that, include: Base (10); Telescopic structure (20), the telescopic structure (20) is mounted on the base (10), and the telescopic structure (20) is used for telescopic extension; A support structure (30) is mounted on the telescopic structure (20) and is used for support; A movable structure (40) is mounted on a base (10) and a support structure (30), and the movable structure (40) is used for movement; A support fixing structure (50) is installed on the support structure (30) and the base (10), and the support fixing structure (50) is used to fix the support; An auxiliary moving structure (60) is mounted on a base (10) and a support structure (30), and the auxiliary moving structure (60) is used to assist in movement; A load-bearing structure (70) is mounted on a support structure (30) and a base (10), and the load-bearing structure (70) is used to bear loads; An auxiliary structure (80) is mounted on a supporting structure (70) and is used for assistance; A fixing structure (90) is mounted on an auxiliary structure (80) and is used for fixing.

2. The drainage pipeline transfer device for municipal engineering construction according to claim 1, characterized in that, The telescopic structure (20) includes: two pairs of first connecting plates (21), two pairs of telescopic rods (22), two pairs of second connecting plates (23), and two pairs of adjusting buckles (24); Two pairs of first connecting plates (21) are installed on the side surface of the base (10), each telescopic rod (22) is installed on the corresponding first connecting plate (21), each second connecting plate (23) is installed on the telescopic end of the corresponding telescopic rod (22), and each adjusting buckle (24) is installed on the corresponding telescopic rod (22).

3. A drainage pipeline transfer device for municipal engineering construction according to claim 2, characterized in that, The support structure (30) includes: a pair of support bases (31); Each of the support bases (31) is mounted on a corresponding pair of second connecting plates (23).

4. A drainage pipeline transfer device for municipal engineering construction according to claim 3, characterized in that, The moving structure (40) includes: three pairs of omnidirectional casters (41); One pair of the omnidirectional casters (41) is mounted on the lower surface of the base (10), and the other two pairs of omnidirectional casters (41) are mounted on a pair of support bases (31).

5. A drainage pipeline transfer device for municipal engineering construction according to claim 4, characterized in that, The supporting and fixing structure (50) includes: three pairs of electrically controlled jacks (51); One pair of the electrically controlled jacks (51) is mounted on the lower surface of the base (10), and the other two pairs of electrically controlled jacks (51) are mounted on a pair of support bases (31).

6. A drainage pipeline transfer device for municipal engineering construction according to claim 4, characterized in that, The auxiliary moving structure (60) includes: three pairs of auxiliary support rods (61), three pairs of support fixing plates (62), and three pairs of auxiliary moving wheels (63); One pair of auxiliary support rods (61) are mounted on the base (10), and the other two pairs of auxiliary support rods (61) are mounted on a pair of support bases (31). Each support fixing plate (62) is mounted on the corresponding auxiliary support rod (61), and each auxiliary moving wheel (63) is mounted on the lower surface of the corresponding support fixing plate (62).

7. A drainage pipeline transfer device for municipal engineering construction according to claim 3, characterized in that, The load-bearing structure (70) includes: three arc-shaped load-bearing shells (71) and three arc-shaped anti-slip pads (72); Each of the arc-shaped bearing housings (71) is mounted on a corresponding base (10) and a pair of supporting bases (31), and each of the arc-shaped anti-slip pads (72) is mounted on a corresponding arc-shaped bearing housing (71).

8. A drainage pipeline transfer device for municipal engineering construction according to claim 7, characterized in that, The auxiliary structure (80) includes: three pairs of fixed rings (81), three rotating rods (82), and three auxiliary rotating housings (83); Each pair of fixed rings (81) is mounted on a corresponding arc-shaped bearing housing (71), each of the rotating rods (82) is mounted on a corresponding pair of fixed rings (81), and each of the auxiliary rotating housings (83) is mounted on a corresponding rotating rod (82).

9. A drainage pipeline transfer device for municipal engineering construction according to claim 8, characterized in that, The fixing structure (90) includes: three adjustable fixing straps (91), three hooks (92), and several buckles (93); Each of the adjustable fixing straps (91) is mounted on a corresponding auxiliary rotating housing (83), each of the hooks (92) is mounted on a corresponding adjustable fixing strap (91), each of the arc-shaped bearing housings (71) is provided with an arc-shaped notch, and a plurality of the buckles (93) are mounted at three corresponding arc-shaped notches, and the buckles (93) match the hooks (92).

10. A drainage pipeline transfer device for municipal engineering construction according to claim 1, characterized in that, The base (10) is equipped with a storage battery (100) and a controller (110) is provided on the base (10).