Intelligent jacking and translation equipment for equipment installation

By using intelligent lifting and translating equipment, and utilizing components such as a mobile base and a scissor lift, the rapid transport and repositioning of building materials is achieved, solving the problem of inconvenient unloading and repositioning of existing lifts and improving construction efficiency.

CN223792853UActive Publication Date: 2026-01-13CSCEC BRIDGES CO LTD
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Patent Information

Application Number
CN202520475038.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-13
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

Existing transportation methods' elevators are inconvenient for quick unloading and repositioning, lack convenient and rapid horizontal movement and lifting functions, making it difficult to quickly transport building materials to designated locations and quickly retract the conveying structure.

Method used

The system employs intelligent lifting and translation equipment, including components such as a mobile base, scissor lift, lifting seat, translation bearing seat, guide pulleys, tie rods, infrared sensors, push motor, drive motor, and rewinding wheel, to achieve intelligent positioning, rapid conveying, and resetting of building materials.

Benefits of technology

It enables the rapid and intelligent delivery of building materials to designated locations, and allows for quick repositioning after unloading, reducing labor costs and improving construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides intelligent jacking translation equipment for equipment installation, and relates to the technical field of translation equipment, the intelligent jacking translation equipment comprises a movable base, the top of the movable base is provided with a scissor lift, and the top of the scissor lift is provided with a jacking seat; the two sides of the top of the jacking base are of inwards-sunken sliding groove structures. Eight sets of guide pulleys are rotationally arranged below the two sides of the translation bearing seat, and the guide pulleys can slide in the sliding groove structures on the two sides of the jacking seat in a matched mode; the translation bearing seat is arranged, a movable conveying function is provided, after the translation bearing seat is lifted through the scissor lift, the translation bearing seat can be directly moved, the translation bearing seat is moved to a construction position of a second floor or a roof, the translation bearing seat can be conveniently and directly used after being unloaded, an infrared sensor is adopted for height positioning in the period, and intelligent jacking can be conducted; the translation bearing seat can be conveniently aligned with the height of the discharging position, and the problem that existing equipment lacks a translation conveying function is solved.
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Description

Technical Field

[0001] This utility model belongs to the field of translation equipment technology, and more specifically, it relates to intelligent lifting and translation equipment for equipment installation. Background Technology

[0002] When constructing a factory, handling equipment is needed to assist in transporting building materials. The materials are lifted and moved horizontally to the construction site for assembly. Generally, hoisting or direct handling using scaffolding is used for lifting. Later, electric lifts are used to raise the materials to improve efficiency.

[0003] Based on the above, the current transportation methods using elevators are inconvenient for quick unloading and resetting, lack convenient and rapid horizontal movement and lifting functions, and are inconvenient for quickly transporting building materials to designated locations and quickly retracting the conveying structure after unloading. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides an intelligent lifting and translating device for equipment installation, thereby resolving the issues raised in the background art regarding the inconvenience of quick unloading and resetting of elevators used in existing transportation methods, the lack of convenient and rapid translating and lifting functions, the difficulty in quickly transporting building materials to designated locations, and the inconvenience of quickly retracting the conveying structure after unloading.

[0005] The purpose and effectiveness of this intelligent lifting and translating device for equipment installation are achieved through the following specific technical means:

[0006] The intelligent lifting and translating equipment for equipment installation includes a movable base, a scissor lift on top of the movable base, and a lifting seat on top of the scissor lift; the top two sides of the lifting seat have inwardly recessed groove structures; a translation support seat, with eight sets of guide pulleys rotatably arranged on the lower sides of the translation support seat, the guide pulleys being able to slide within the groove structures on both sides of the lifting seat; two sets of slide seats are fixedly arranged at the front ends of the bottom two sides of the translation support seat; a pull rod, the main body of the pull rod having a U-shaped structure, with limit rod ends hinged at both ends of the pull rod, the limit rod ends sliding within the slide seats; and two sets of infrared sensors are arranged on the front side of the lifting seat.

[0007] Furthermore, a translation screw is rotatably mounted at the top center of the lifting seat; a push plate is slidably mounted on the top of the lifting seat in conjunction with the guide rail, the main body of the push plate having an L-shaped structure and being threadedly connected to the translation screw; a push motor is fixedly mounted on the rear side of the lifting seat, and the push motor is drivenly connected to the translation screw.

[0008] Furthermore, a linkage shaft is rotatably mounted on the upper rear of the lifting seat, and two sets of winding wheels are fixedly mounted on the outside of the linkage shaft; a drive motor is fixedly mounted on the upper rear of the lifting seat, and the drive motor is connected to the linkage shaft by a bevel gear transmission.

[0009] Furthermore, the rear side of the lifting seat is provided with two sets of square through slots, and guide rollers are rotatably arranged at the top and bottom of the square through slots. A pull wire is arranged on the outside of the winding wheel, passing through the upper and lower guide rollers and fixed to the rear side of the translation bearing seat.

[0010] Furthermore, a support plate is provided at the top center of the translational support, and a weighing sensor is provided between the bottom of the support plate and the translational support.

[0011] Furthermore, rubber sleeves are fixedly provided on the front ends of both sides of the pull rod and on the outside of the limiting rod end, and the rubber sleeves can fit into the slide block.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] The installation of a translational support provides a movable conveying function. After the translational support is raised by a scissor lift, it can be moved directly to the construction position on the second floor or roof. After unloading, it is convenient to use directly. During the process, an infrared sensor is used for height positioning, which can intelligently lift the support and make it easy to align the translational support with the unloading position.

[0014] The pull rod provides auxiliary movement. The pull rod can be manually pulled outwards. When the limit rod end is inserted into the slide, the pull rod unlocks and can rotate upwards. At this time, the pull rod can be used to provide pulling force. By holding the pull rod, the translational carrier can be pulled to the second floor or the roof for extended transport. Resetting is also convenient and does not affect the lifting and lowering of the translational carrier after resetting.

[0015] The system is equipped with a winding wheel, which provides the function of retrieving the translational support. After unloading, the drive motor can be started to rotate the linkage shaft, which in turn rotates the winding wheel to rewind the cable, pulling the translational support backward and into the lifting seat for reset. After the reset is completed, the scissor lift automatically resets and lowers the translational support, allowing the building materials to be placed back onto it. Repeating the above steps allows for continuous material delivery, reducing labor costs. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0017] Figure 2 This is a three-dimensional structural diagram of the lifting seat of this utility model.

[0018] Figure 3 This is a schematic diagram of the side tilting structure of the lifting seat of this utility model.

[0019] Figure 4 This is a schematic diagram of the assembly structure of the translational support base of this utility model.

[0020] Figure 5 This is a schematic diagram of the side-tilt structure of the translational bearing seat of this utility model.

[0021] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0022] 1. Movable base; 2. Scissor lift; 3. Lifting seat; 301. Translation screw; 302. Push plate; 303. Push motor; 304. Linkage shaft; 305. Drive motor; 306. Rewinding wheel; 307. Guide roller; 4. Translation bearing seat; 401. Guide pulley; 402. Bearing plate; 403. Slide seat; 5. Tie rod; 501. Limiting rod end; 502. Rubber sleeve; 6. Infrared sensor. Detailed Implementation

[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0024] Example 1:

[0025] As attached Figure 1 To be continued Figure 5 As shown:

[0026] This utility model provides an intelligent lifting and translating device for equipment installation, including a movable base 1, a scissor lift 2 on the top of the movable base 1, and a lifting seat 3 on the top of the scissor lift 2; the top two sides of the lifting seat 3 are recessed groove structures; a translation support 4, with eight sets of guide pulleys 401 rotatably arranged on the lower sides of the translation support 4, the guide pulleys 401 being able to slide within the groove structures on both sides of the lifting seat 3; two sets of slide seats 403 are fixedly arranged at the front ends of the bottom two sides of the translation support 4; a pull rod 5, the main body of the pull rod 5 is a U-shaped structure, and both ends of the pull rod 5 are hinged with limit rod ends 501, which slide within the slide seats 403; and two sets of infrared sensors 6 are arranged on the front side of the lifting seat 3.

[0027] The top center of the lifting seat 3 is rotatably equipped with a translation screw 301; the top of the lifting seat 3 is slidably equipped with a push plate 302 in conjunction with the guide rail, the main body of the push plate 302 is L-shaped and threadedly connected to the translation screw 301; the rear side of the lifting seat 3 is fixedly equipped with a push motor 303, which is connected to the translation screw 301 for transmission.

[0028] The lifting seat 3 has a linkage shaft 304 rotatably mounted on its upper rear side, and two sets of winding wheels 306 are fixedly mounted on the outside of the linkage shaft 304; a drive motor 305 is fixedly mounted on the upper rear side of the lifting seat 3, and the drive motor 305 is connected to the linkage shaft 304 by a bevel gear transmission.

[0029] The lifting seat 3 has two sets of square through slots on its rear side. Guide rollers 307 are rotatably installed on the upper and lower sides of the square through slots. The winding wheel 306 has a pull wire that passes through the upper and lower guide rollers 307 and is fixed to the rear side of the translation bearing seat 4.

[0030] The top center of the translational support 4 is provided with a support plate 402, and a weighing sensor is provided between the bottom of the support plate 402 and the translational support 4.

[0031] Among them, rubber sleeves 502 are fixedly installed on the front ends of both sides of the pull rod 5 and the outside of the limit rod end 501. The rubber sleeves 502 can fit into the slide block 403.

[0032] like Figure 1-5 As shown, move the movable base 1 to the wall position with the front of the movable base 1 facing the wall, then place the building materials on top of the translational support 4, and start the scissor lift 2 to raise the top lifting seat 3;

[0033] The infrared sensor 6 is used for intelligent height measurement. When the infrared sensor 6 rises to a height higher than the wall and is aligned with the upper position, it automatically stops; or the infrared sensor 6 is projected downwards to detect the distance from the ground and then intelligently raises.

[0034] Then, the push motor 303 is started to drive the translation screw 301 to rotate. The translation screw 301 pushes the push plate 302 forward. The push plate 302 contacts the rear side of the translation support 4, moving the translation support 4 forward. The translation support 4 carries the building materials and transports them to the construction position.

[0035] After unloading, start the drive motor 305 to drive the linkage shaft 304 to rotate. The linkage shaft 304 drives the winding wheel 306 to rotate and wind up the wire, pulling the translational support 4 backward so that the translational support 4 is pulled into the lifting seat 3 for reset.

[0036] Example 2:

[0037] Based on Example 1, if the unloading position is not at the edge of the second floor or the roof, the translational support 4 can be moved for conveying. Pull the pull rod 5 outward. When the limit rod end 501 is inserted into the slide 403, the pull rod 5 is unlocked and can rotate upward. At this time, the pull rod 5 can be used to provide pulling force. Hold the pull rod 5 and pull the translational support 4 to the second floor or the roof for extended conveying.

[0038] The specific usage and function of this embodiment are as follows:

[0039] In this utility model, during use, the movable base 1 is moved to the wall position with the front of the movable base 1 facing the wall. Then, the building materials are placed above the translational support 4. The scissor lift 2 is started to raise the lifting seat 3. The infrared sensor 6 is used for intelligent height measurement. When the infrared sensor 6 rises to a height higher than the wall and is aligned with the upper position, it automatically stops. Then, the push motor 303 is started to drive the translational screw 301 to rotate. The translational screw 301 is used to push the push plate 302 forward. The push plate 302 contacts the rear side of the translational support 4, moving the translational support 4 forward. The translational support 4 carries the building materials and transports them to the construction position.

[0040] Optionally, the pull rod 5 can be pulled outwards. When the limit rod end 501 is inserted into the slide 403, the pull rod 5 is unlocked and can rotate upwards. At this time, the pull rod 5 can be used to provide pulling force. By holding the pull rod 5, the translational carrier 4 can be pulled to the second floor or the roof for extended conveying. During this period, the pull line outside the winding wheel 306 is pulled out.

[0041] After unloading, the drive motor 305 can be started to drive the linkage shaft 304 to rotate. The linkage shaft 304 drives the winding wheel 306 to rotate and wind up the wire, pulling the translational support 4 backward so that the translational support 4 is pulled into the lifting seat 3 for reset. After the reset is completed, the automatic reset scissor lift 2 can lower the translational support 4 and place the building materials on the translational support 4 again. Repeating the above steps can continuously transport building materials.

Claims

1. An intelligent jacking and translating device for equipment installation, comprising: The mobile base (1) is provided with a scissors lift (2) at the top, and a jacking seat (3) is arranged at the top of the scissors lift (2); characterized in that the top of the jacking seat (3) is provided with a sliding groove structure that is recessed inward on both sides; a translation bearing seat (4) is rotatably arranged below the two sides of the translation bearing seat (4), and eight groups of guide pulleys (401) are arranged; the guide pulleys (401) can be fitted and slid in the sliding groove structure on both sides of the jacking seat (3); two groups of sliding seats (403) are fixedly arranged at the front ends of the bottom of the translation bearing seat (4); a pull rod (5) is provided with a U-shaped structure, and the two ends of the pull rod (5) are hingedly provided with a limiting rod end (501), which is slid in the sliding seat (403); the front side of the jacking seat (3) is provided with two groups of infrared sensors (6).

2. The intelligent jacking and translating device for equipment installation of claim 1, wherein: The top of the jacking seat (3) is rotatably provided with a translation lead screw (301); the top of the jacking seat (3) is slidably provided with a push plate (302) matched with a guide rail, and the push plate (302) is provided with an L-shaped structure and is threadedly connected with the translation lead screw (301); the rear side of the jacking seat (3) is fixedly provided with a push motor (303), and the push motor (303) is drivingly connected with the translation lead screw (301).

3. The intelligent jacking and translating device for equipment installation of claim 2, wherein: The rear upper side of the jacking seat (3) is rotatably provided with a linkage shaft (304), and the linkage shaft (304) is fixedly provided with two groups of winding wheels (306) outside; the rear upper side of the jacking seat (3) is fixedly provided with a driving motor (305), and the driving motor (305) is drivingly connected with the linkage shaft (304) through bevel gear transmission.

4. The intelligent jacking and translating device for equipment installation of claim 3, wherein: The rear side of the jacking seat (3) is provided with two groups of square through grooves, and the inside of the square through grooves is rotatably provided with guide rollers (307) upward and downward; the outside of the winding wheel (306) is provided with a pull line that passes through the upper and lower guide rollers (307) and is fixed to the rear side of the translation bearing seat (4).

5. The intelligent jacking and translating device for equipment installation of claim 1, wherein: The top of the translation bearing seat (4) is provided with a bearing plate (402), and a weighing sensor is arranged between the bottom of the bearing plate (402) and the translation bearing seat (4).

6. The intelligent jacking and translating device for equipment installation of claim 1, wherein: The two sides of the pull rod (5) are provided with rubber sleeves (502) at the front ends and the limiting rod ends (501), which can be fitted and clamped into the sliding seat (403).