Electromechanical pipeline installation lifting platform with sliding mechanism

CN224604605UActive Publication Date: 2026-08-07CHINA CONSTR SEVENTH ENG DIVISION CORP LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA CONSTR SEVENTH ENG DIVISION CORP LTD
Filing Date
2025-05-22
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]由于机电管道常常安装在高处,在进行安装时经常通过吊机进行吊装;吊机吊装的过程中,机电管道容易出现控制不当导致掉落的现象,造成安全隐患;另外,现有的一些机电管道采用顶升机构对机电管道进行抬升,抬升至预定高度后在进行安装

Benefits of technology

[0020] 1. This utility model has a horizontal pushing mechanism installed at the top of the lifting equipment. The electromechanical pipeline is fixed at the top of the horizontal pushing mechanism. After the electromechanical pipeline is lifted to a specified height, the position of the electromechanical pipeline can be finely adjusted laterally to facilitate construction and installation.

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Abstract

The utility model relates to a kind of electromechanical pipeline installation lifting platform with flat pushing mechanism;The electromechanical pipeline installation lifting platform with flat pushing mechanism includes lifting equipment and flat pushing adjusting mechanism;Flat pushing adjusting mechanism is horizontally arranged at the top of lifting equipment, and electromechanical pipeline is placed at the top of flat pushing adjusting mechanism.The electromechanical pipeline installation lifting platform with flat pushing mechanism of the utility model is provided with flat pushing adjusting mechanism at the top of lifting equipment, and electromechanical pipeline is fixed at the top of flat pushing adjusting mechanism, which can lift electromechanical pipeline to specified height, and then horizontally fine-tune the position of electromechanical pipeline to facilitate construction installation.
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Description

Technical Field

[0001] This utility model relates to the technical field of electromechanical pipeline installation equipment, and in particular to an electromechanical pipeline installation lifting platform equipped with a horizontal pushing mechanism. Background Technology

[0002] Electromechanical piping encompasses various types of pipelines, including water supply and drainage pipes, fire sprinkler pipes, air conditioning ducts, and cable trays, and its spatial layout is achieved through components such as supports, valves, and compensators.

[0003] Since electromechanical pipelines are often installed at high altitudes, they are frequently hoisted using cranes during installation. During the hoisting process, the electromechanical pipelines are prone to falling due to improper control, posing a safety hazard. In addition, some existing electromechanical pipelines are lifted using jacking mechanisms to raise them to a predetermined height before installation.

[0004] Existing electromechanical pipeline lifting equipment also has some problems: after lifting the electromechanical pipeline, the lifting equipment cannot adjust the position of the electromechanical pipeline laterally, resulting in high installation difficulty, low installation efficiency, and deviation of the position of the electromechanical pipeline; therefore, a device that can adjust the position of the electromechanical pipeline is needed. Utility Model Content

[0005] The purpose of this utility model is to solve the above problems and provide an electromechanical pipeline installation lifting platform equipped with a horizontal pushing mechanism.

[0006] The technical solution of this utility model is: a lifting platform for installing electromechanical pipelines equipped with a horizontal pushing mechanism. The lifting platform includes a lifting device and a horizontal pushing adjustment mechanism. The horizontal pushing adjustment mechanism is horizontally positioned on top of the lifting device, and the electromechanical pipelines are placed on top of the horizontal pushing adjustment mechanism. The horizontal pushing mechanism is installed at the top of the lifting device, fixing the electromechanical pipelines to the top of the horizontal pushing mechanism. After the electromechanical pipelines are lifted to a specified height, their position can be finely adjusted laterally to facilitate construction and installation.

[0007] Preferably, the sliding adjustment mechanism includes a stepper motor, a lead screw, a guide rod, and a slider; the slider is slidably mounted on the guide rod; the lead screw is arranged parallel to the guide rod, passes through the slider, and is threadedly engaged with the slider; the stepper motor is fixed to one end of the lead screw to drive the lead screw.

[0008] A limiting platform is installed on the slider, and electromechanical pipes are placed on the limiting platform. Using a lead screw slider in conjunction with a guide rod and a stepper motor to drive the lead screw, the position of the slider and limiting platform can be precisely adjusted, and the stability is improved.

[0009] Furthermore, the horizontal adjustment mechanism also includes a base plate, which is fixed to the lifting equipment; bearing seats are installed at the middle of both ends of the top surface of the base plate, and the two ends of the lead screw are installed in the two bearing seats; both ends of the guide rod are installed on the base plate through supports.

[0010] Furthermore, several bullseye bearings are installed between the slider and the top surface of the base plate. These bullseye bearings are mounted on the bottom of the slider and rest against the surface of the base plate. Using bullseye bearings to provide sliding support for the slider reduces the pipe pressure on the guide rod, preventing the slider and limiting platform from bending the lead screw and guide rod, thus ensuring the normal operation of the mechanism.

[0011] Furthermore, the limiting platform is provided with several sets of parallel limiting cones, with gaps between adjacent sets of limiting cones; each set of limiting cones has two cones facing each other, and the electromechanical pipe is placed in the gap between the two sets of limiting cones. The two sets of limiting cones support one electromechanical pipe, which can prevent the electromechanical pipe from rolling on the limiting platform; and the electromechanical pipe can be directly removed during installation, which is more convenient.

[0012] Furthermore, guardrails are installed on both sides of the platform to prevent electromechanical pipes from rolling off.

[0013] Furthermore, two guide rods are provided, one on each side of the lead screw. The placement of these two guide rods on both sides of the lead screw significantly improves the stability and accuracy of the mechanism's operation.

[0014] Preferably, the lifting device includes a chassis, a cylindrical column mounted on the chassis, and a lifting rod; the cylindrical column is located in the middle of the top surface of the chassis, and the lifting rod is slidably mounted inside the cylindrical column; the side wall of the cylindrical column is provided with a guide groove, and a guide block is provided at a corresponding position on the lifting rod; a drive mechanism is fixedly mounted at the bottom of the lifting rod. The guide block on the lifting rod cooperates with the guide groove on the cylindrical column, enabling the lifting rod to rise and fall along the direction of the guide groove, preventing the lifting rod from rotating; in addition, the cooperation between the slider and the guide groove also improves the stability of the lifting rod during the lifting process.

[0015] Furthermore, several guide blocks are evenly arranged along the guide groove. The arrangement of these guide blocks within the guide groove increases the stability of the lifting rod during lifting.

[0016] Furthermore, the drive mechanism includes guide wheels and a winch; the winch is fixed to the chassis; the winch is driven by a drive motor, and one end of the winch's pull cable is fixed to the top of the cylindrical column, while the other end is wound around the winch; two guide wheels are provided, one on the slider at the bottom of the lifting rod and the other on the top of the side wall of the cylindrical column; the pull cable passes around the two guide wheels in sequence. Using a winch and guide wheels to provide power for lifting the lifting rod results in a simple structure that is easy to adjust.

[0017] Furthermore, the chassis is equipped with casters at all four corners of its bottom, each with a brake; the sides of the chassis are fitted with foldable support legs. The chassis can be dragged directly using the casters, and once at the designated location, the casters can be braked, and the support legs can be extended to prevent the entire chassis from tipping over.

[0018] Furthermore, a push handle is fixedly installed on the chassis, with the push handle and winch respectively located on both sides of the cylindrical column. This facilitates pushing and also helps to balance the weight borne by the chassis.

[0019] The beneficial effects of this utility model are as follows: The electromechanical pipeline installation lifting platform equipped with a horizontal pushing mechanism of this utility model has the following advantages:

[0020] 1. This utility model has a horizontal pushing mechanism installed at the top of the lifting equipment. The electromechanical pipeline is fixed at the top of the horizontal pushing mechanism. After the electromechanical pipeline is lifted to a specified height, the position of the electromechanical pipeline can be finely adjusted laterally to facilitate construction and installation.

[0021] 2. The flat-pushing mechanism in this utility model is set in the form of double guide rods and driven by a stepper motor to drive the lead screw, which can realize the precise adjustment of the position of the electromechanical pipeline and improve its assembly accuracy. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of the electromechanical pipeline installation lifting platform equipped with a horizontal pushing mechanism of this utility model;

[0023] Figure 2 This is a side view of the electromechanical pipeline installation lifting platform with a horizontal pushing mechanism of this utility model;

[0024] Figure 3 yes Figure 2 AA section view;

[0025] Figure 4 This is a top view of the electromechanical pipeline installation lifting platform equipped with a horizontal pushing mechanism of this utility model;

[0026] Figure 5 yes Figure 4 BB cross-sectional view;

[0027] Figure 6 yes Figure 5 Enlarged view of I.

[0028] In the diagram: 00. Electromechanical piping, 1. Lifting equipment, 11. Chassis, 111. Casters, 112. Support legs, 113. Push handle, 12. Cylindrical column, 121. Guide groove, 13. Lifting rod, 131. Guide block, 14. Guide wheel, 15. Winch, 151. Drive motor, 16. Pull cable.

[0029] 2. Flat adjustment mechanism, 21. Base plate, 22. Stepper motor, 23. Lead screw, 24. Guide rod, 25. Slider, 26. Limiting platform, 261. Guardrail, 27. Limiting cone, 28. Bullseye bearing, 29. Bearing seat. Detailed Implementation

[0030] Example 1: See Figure 1-6 An electromechanical pipeline installation lifting platform equipped with a horizontal pushing mechanism is disclosed. The platform includes a lifting device 1 and a horizontal pushing adjustment mechanism 2. The horizontal pushing adjustment mechanism 2 is horizontally positioned on top of the lifting device 1, and the electromechanical pipeline 00 is placed on top of the horizontal pushing adjustment mechanism 2. The horizontal pushing mechanism, installed at the top of the lifting device 1, fixes the electromechanical pipeline 00 to the top of the mechanism. After the electromechanical pipeline 00 is lifted to a specified height, its position can be finely adjusted laterally to facilitate construction and installation.

[0031] The sliding adjustment mechanism 2 includes a stepper motor 22, a lead screw 23, a guide rod 24, and a slider 25; the slider 25 is slidably mounted on the guide rod 24; the lead screw 23 is arranged parallel to the guide rod 24, the lead screw 23 passes through the slider 25, and the lead screw 23 and the slider 25 are threaded together; the stepper motor 22 is fixed to one end of the lead screw 23 to drive the lead screw 23.

[0032] A limiting platform 26 is provided on the slider 25, and the electromechanical pipeline 00 is placed on the limiting platform 26. By using a lead screw 23 to drive the slider 25 in conjunction with a guide rod 24 and a stepper motor 22, the position of the slider 25 and the limiting platform 26 can be precisely adjusted, and the stability is improved.

[0033] The horizontal adjustment mechanism 2 also includes a base plate 21, which is fixed to the lifting device 1; bearing seats 29 are installed at the middle of both ends of the top surface of the base plate 21, and the two ends of the lead screw 23 are installed in the two bearing seats 29; both ends of the guide rod are installed on the base plate 21 through supports.

[0034] Several bullseye bearings 28 are installed between the slider 25 and the top surface of the base plate 21. All bullseye bearings 28 are mounted on the bottom of the slider 25 and rest against the surface of the base plate 21. The bullseye bearings 28 provide sliding support for the slider 25, reducing the pipe pressure on the guide rod 24 and preventing the slider 25 and the limiting platform 26 from bending the lead screw 23 and the guide rod 24, thus ensuring the normal operation of the mechanism.

[0035] The limiting platform 26 is equipped with several sets of parallel limiting cones 27, with gaps between adjacent sets of limiting cones 27; each set of limiting cones 27 has two opposite cones, and the electromechanical pipe 00 is placed in the gap between the two sets of limiting cones 27. The two sets of limiting cones 27 support one electromechanical pipe 00, which can prevent the electromechanical pipe 00 from rolling on the limiting platform 26; and the electromechanical pipe 00 can be directly removed during installation, which is more convenient.

[0036] Guardrails 261 are installed on both sides of the limiting platform 26 to prevent electromechanical pipes 00 from rolling off the limiting platform 26.

[0037] Two guide rods 24 are provided, one on each side of the lead screw 23. The placement of the two guide rods 24 on both sides of the lead screw 23 greatly improves the stability and accuracy of the mechanism's operation.

[0038] The lifting device 1 includes a chassis 11, a cylindrical column 12 mounted on the chassis 11, and a lifting rod 13. The cylindrical column 12 is located in the middle of the top surface of the chassis 11, and the lifting rod 13 is slidably mounted inside the cylindrical column 12. The side wall of the cylindrical column 12 is provided with a guide groove 121, and a guide block 131 is provided at a corresponding position on the lifting rod 13. A drive mechanism is fixedly mounted at the bottom of the lifting rod 13. The guide block 131 on the lifting rod 13 cooperates with the guide groove 121 on the cylindrical column 12, enabling the lifting rod 13 to rise and fall along the direction of the guide groove 121, preventing the lifting rod 13 from rotating. In addition, the slider 25, in cooperation with the guide groove 121, also improves the stability of the lifting rod 13 during the lifting process.

[0039] Several guide blocks 131 are evenly arranged along the direction of the guide groove 121. The arrangement of several guide blocks 131 within the guide groove 121 can increase the stability of the lifting rod 13 during lifting.

[0040] The drive mechanism includes guide wheels 14 and a winch 15. The winch 15 is fixed to the chassis 11. The winch 15 is driven by a drive motor 151. One end of the pull cable 16 of the winch 15 is fixed to the top of the cylindrical column 12, and the other end is wound around the winch 15. Two guide wheels 14 are provided, one on the slider 25 at the bottom of the lifting rod 13 and the other on the top of the side wall of the cylindrical column 12. The pull cable 16 passes around the two guide wheels 14 in sequence. Four universal wheels 111 are evenly arranged at the bottom of the chassis 11, and brakes are provided on the universal wheels 111. Foldable support legs are provided on the sides of the chassis 11. The universal wheels 111 can be used to drag the vehicle directly. After reaching the designated position, the universal wheels 111 are braked, and the support legs on the sides of the chassis 11 are opened to prevent the whole vehicle from tipping over.

[0041] A push handle 113 is also fixedly installed on the chassis 11, and the push handle 113 and the winch 15 are respectively located on both sides of the cylindrical column 12. This facilitates pushing and also balances the weight borne by the chassis 11.

[0042] The working process of this embodiment includes the following steps:

[0043] ① Push the installation lifting platform to the loading point, brake the casters 111, and support the support legs 112 on the ground;

[0044] ② Place the electromechanical pipeline 00 between the two sets of limiting cones 27 on the limiting platform 26;

[0045] ③ Unlock the casters 111, retract the support legs 112, and push the installation lifting platform to the designated installation position;

[0046] ④ Brake the caster wheel 111, support the support leg 112 on the ground, and start the winch 15;

[0047] ⑤ The winch 15 gradually tightens the pull cable 16, and the pull cable 16 drives the lifting rod 13 to rise until the location pipeline reaches the designated installation height, then the winch 15 is turned off.

[0048] ⑥ Start the stepper motor 22 to adjust the position of the limiting platform 26 laterally;

[0049] ⑦ After adjustment, install the electromechanical piping.

[0050] ⑧ After the electromechanical pipeline 00 is installed, reverse the winch 15 to make the lifting rod 13 fall and be retrieved.

[0051] Example 2: Example 2 is basically the same as Example 1, and the similarities will not be repeated. The difference is that there are two sliders 25, which are fixed on both sides of the bottom of the limiting platform 26. This can further improve the stability of the limiting platform 26.

Claims

1. A lifting platform for installing electromechanical pipelines, characterized in that, The installation lifting platform includes a lifting device and a horizontal adjustment mechanism; the horizontal adjustment mechanism is horizontally set on top of the lifting device, and the electromechanical pipelines are placed on top of the horizontal adjustment mechanism; The aforementioned flat adjustment mechanism includes a stepper motor, a lead screw, a guide rod, and a slider; the slider is slidably mounted on the guide rod; the lead screw is arranged parallel to the guide rod, passes through the slider, and is threadedly engaged with the slider; the stepper motor is fixed to one end of the lead screw to drive it. A limiting platform is set on the slider, and electromechanical pipes are placed on the limiting platform; The limiting platform is provided with several sets of parallel limiting cones, with gaps between adjacent sets of limiting cones; each set of limiting cones has two opposite sets, and the electromechanical pipeline is placed in the gap between the two sets of limiting cones.

2. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to claim 1, characterized in that: The horizontal adjustment mechanism also includes a base plate, which is fixed to the lifting equipment; bearing seats are installed at the middle of both ends of the top surface of the base plate, and the two ends of the lead screw are installed in the two bearing seats; both ends of the guide rod are installed on the base plate through supports.

3. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to claim 2, characterized in that: Several bullseye bearings are provided between the slider and the top surface of the base plate. The bullseye bearings are all installed at the bottom of the slider and rest against the surface of the base plate.

4. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to claim 1, characterized in that: The guide rod is provided in two parts, which are respectively located on both sides of the lead screw.

5. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to claim 1, characterized in that: The lifting device includes a chassis, a cylindrical column mounted on the chassis, and a lifting rod; the cylindrical column is located in the middle of the top surface of the chassis, and the lifting rod is slidably mounted inside the cylindrical column; the side wall of the cylindrical column is provided with a guide groove, and a guide block is provided at the corresponding position of the lifting rod; a drive mechanism is fixedly installed at the bottom of the lifting rod.

6. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to claim 5, characterized in that: The drive mechanism includes guide wheels and a winch; the winch is fixed on the chassis; the winch is driven by a drive motor, one end of the winch's pull cable is fixed to the top of the cylindrical column, and the other end is wound around the winch; there are two guide wheels, which are respectively set on the slider at the bottom of the lifting rod and the top of the side wall of the cylindrical column; the pull cable passes around the two guide wheels in sequence.

7. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to claim 5, characterized in that: The chassis is equipped with casters at all four corners of its bottom, and each caster has a brake. The sides of the chassis are equipped with foldable support legs.

8. The electromechanical pipeline installation lifting platform with a horizontal pushing mechanism according to any one of claims 6-7, characterized in that: A push handle is also fixedly installed on the chassis, and the push handle and the winch are respectively located on both sides of the cylindrical column.