Household distributed photovoltaic power station assembly transporting and lifting device

By adjusting the spacing between the hoisting rods and the kit structure, the problem of fixing the position of the rubber suction cups during the transportation of residential distributed photovoltaic power station components was solved, enabling the system to adapt to the transportation needs of photovoltaic panels of different sizes and improving transportation efficiency and safety.

CN223722510UActive Publication Date: 2025-12-26CHINA RAILWAY SEVENTH GRP CO LTD +1
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Patent Information

Application Number
CN202520348119.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-12-26
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

In existing technologies, the rubber suction cups of household distributed photovoltaic power station components are fixed in position during transportation, making it difficult to adapt to solar photovoltaic panels of different sizes, resulting in transportation inconvenience.

Method used

A hanging rod and kit structure was designed. By adjusting the spacing between the U-shaped sleeve and the rectangular sleeve, the position of the rubber suction cup can be changed to adapt to photovoltaic panels of different areas. Combined with the design of positioning screws and rubber discs, the suction cup is ensured to be stable and prevents foreign objects from entering, thereby improving safety.

Benefits of technology

It enables the adjustment of the rubber suction cup spacing according to the photovoltaic panel area, expands the scope of application, improves transportation efficiency and safety, and prevents debris from entering the threaded hole and affecting operation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a household distributed photovoltaic power station assembly transporting and lifting device which comprises a hanging rod, the cross section of the hanging rod is rectangular, two symmetrically-arranged U-shaped sleeves are arranged on the hanging rod in a sleeved mode, two symmetrically-arranged transverse pipes are arranged on the lower side of the hanging rod, the lower ends of the two U-shaped sleeves are fixedly connected with the two transverse pipes respectively, and the U-shaped sleeves are fixedly connected with the two transverse pipes. The cross section of the transverse pipe is rectangular, the transverse pipe is sleeved with two symmetrically-arranged rectangular sleeves, rubber suction cups used for adsorbing photovoltaic panels are installed on the lower surfaces of the rectangular sleeves, and one side face of the U-shaped sleeve and one side face of each rectangular sleeve are in threaded connection with positioning screws through connecting pieces. The solar photovoltaic panel lifting support has the advantages that the distance between the rubber suction cups on the support can be adjusted according to the area of a solar photovoltaic panel, the requirement for lifting and transporting the solar photovoltaic panels with different areas is met, and the application range is widened.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of household distributed photovoltaic power station component transport lifting devices, belong to photovoltaic power station field. BACKGROUND

[0002] Household distributed photovoltaic power station component refers to each component part in photovoltaic power generation system installed on family residence or small building.Solar photovoltaic panel is one of main components in household distributed photovoltaic power station component, install multiple rubber suction cups on support, by making rubber suction cup adsorbed on solar photovoltaic panel surface, support is installed on hoisting equipment, so as to facilitate solar photovoltaic panel to be lifted to required height by hoisting equipment and then be transferred and transported, wherein the position of multiple rubber suction cups on support is invariable, and the size of solar photovoltaic panel is different, so it is easy to appear the situation that rubber suction cup on support is outside solar photovoltaic panel with smaller area, thereby affecting the lifting and transportation of solar photovoltaic panel with smaller area. SUMMARY

[0003] In view of the deficiencies in the prior art, the utility model aims to provide a kind of household distributed photovoltaic power station component transport lifting devices to solve the problems raised in the above background, the utility model realizes the interval between multiple rubber suction cups on support is adjusted according to the area of solar photovoltaic panel, facilitate the need of lifting and transportation of solar photovoltaic panel with different areas, and expand the scope of application.

[0004] In order to achieve the above-mentioned purpose, the utility model is realized by the following technical scheme: a kind of household distributed photovoltaic power station component transport lifting device, including boom, the boom cross section is rectangle, two symmetrical U-shaped sleeves are sleeved on the boom, two symmetrical horizontal pipes are arranged on the lower side of the boom, the lower end of the two U-shaped sleeves is connected and fixed with two horizontal pipes respectively, the horizontal pipe cross section is rectangle, two symmetrical rectangular sleeves are sleeved on the horizontal pipe, the lower surface of the rectangular sleeve is installed with rubber suction cup for adsorbing photovoltaic panel, the side surface of U-shaped sleeve and the side surface of rectangular sleeve are all connected with positioning screw by connecting piece screw thread.

[0005] Further, the connecting piece includes sleeve, the side surface of U-shaped sleeve and the side surface of rectangular sleeve are all provided with perforation, the side surface of U-shaped sleeve and the side surface of rectangular sleeve are all installed with sleeve, the sleeve is concentrically arranged with the perforation, the side of the sleeve close to the perforation is connected and fixed with disc, the one side of the disc is provided with screw hole in middle position, the positioning screw is screw-connected in the screw hole, one end of the positioning screw penetrates the perforation, the rubber disc connected with the positioning screw is sleeved on the positioning screw, the rubber disc is slidingly installed in the sleeve.

[0006] Further, the U-shaped sleeve is provided with a rubber pad on the side close to the perforation, and the rubber pad is attached to the suspender.

[0007] Further, the lower end of the U-shaped sleeve is connected with a connecting plate, and the two ends of the connecting plate are connected with the horizontal pipe through fasteners formed by screws and nuts.

[0008] Further, the upper surface of the suspender is connected with a hanging plate at the middle position, and two symmetrically arranged rope holes are formed in one side of the hanging plate.

[0009] Further, the upper surface of the suspender is connected with a U-shaped rod at the middle position, the hanging plate is arranged in the space formed by the U-shaped rod and the suspender, and a gap exists between the U-shaped rod and the hanging plate.

[0010] Further, the two ends of the U-shaped rod are connected with reinforcing ribs, and the reinforcing ribs are connected with the suspender.

[0011] The utility model discloses the beneficial effect of:

[0012] 1. According to the area of solar photovoltaic panel, the distance between the two U-shaped sleeves along the suspender is adjusted, the distance between the two rubber suction cups on the two horizontal pipes is changed, the distance between the two rubber suction cups on one horizontal pipe is changed along the horizontal pipe, and the distance between the multiple rubber suction cups on the support formed by the suspender, the horizontal pipe and the like is adjusted according to the area of solar photovoltaic panel when the position of the rubber suction cup meets the need of adsorbing solar photovoltaic panel, the relative position of the U-shaped sleeve and the suspender is limited by the positioning screw, and the relative position of the rectangular sleeve and the horizontal pipe is limited, so that the distance between the multiple rubber suction cups on the support formed by the suspender, the horizontal pipe and the like is adjusted according to the area of solar photovoltaic panel, the need of lifting and transporting solar photovoltaic panels of different areas is facilitated, and the application range is expanded.

[0013] 2. The positioning screw is screwed in the threaded hole in the disc, at this time, the rubber disc is in the sleeve, when the positioning screw is screwed, the rubber disc slides in the sleeve, the rubber disc and the sleeve jointly act on the connecting part of the positioning screw and the threaded hole to realize real-time plugging, and small sundries are prevented from entering the threaded hole at will to affect the screwing of the positioning screw.

[0014] 3. One end of the lifting rope on the lifting equipment is tied in the rope hole, when the connecting part of the hanging plate and the suspender is separated, the U-shaped rod limits the relative position of the lifting rope and the suspender, realizes the purpose of secondary protection, and improves the safety. BRIEF DESCRIPTION OF DRAWINGS

[0015] Other features, objects and advantages of the utility model will become more apparent through reading the following detailed description of non-restrictive embodiments with reference to the accompanying drawings:

[0016] Figure 1The utility model provides a kind of household distributed photovoltaic power station component transport lifting device's structural schematic diagram.

[0017] Figure 2 The utility model provides a kind of household distributed photovoltaic power station component transport lifting device's assembly schematic diagram of rubber disc and positioning screw.

[0018] Figure 3 The utility model provides a kind of household distributed photovoltaic power station component transport lifting device's assembly schematic diagram of disc and tube sleeve.

[0019] In the drawing: 1-hoist bar, 2-hoist plate, 3-hoist rope hole, 4-stiffener, 5-rectangular sleeve, 6-cross pipe, 7-rubber suction disc, 8-tube sleeve, 9-positioning screw, 10-connection plate, 11-rubber pad, 12-U-shaped sleeve, 13-U-shaped rod, 14-rubber disc, 15-disc, 16-thread hole. DETAILED DESCRIPTION

[0020] To make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0021] Please refer to Figure 1 The utility model provides a kind of technical scheme: a kind of household distributed photovoltaic power station component transport lifting device, including hoist bar 1, hoist bar 1 cross section is rectangular, hoist bar 1 upper surface middle position is connected fixed with hoist plate 2, hoist plate 2 one side surface is equipped with two symmetrical hoist rope hole 3 of arrangement, hoist bar 1 upper surface middle position is connected fixed with U-shaped rod 13, hoist plate 2 is arranged in the space formed by U-shaped rod 13 and hoist bar 1, there is gap between U-shaped rod 13 and hoist plate 2, the both ends of U-shaped rod 13 are all connected fixed with stiffener 4, stiffener 4 is connected fixed with hoist bar 1, and stiffener 4 improves the mechanical strength of U-shaped rod 13 and hoist bar 1 connection, hoist rope one end on hoisting equipment is tied in hoist rope hole 3 when the connecting part of hoist plate 2 and hoist bar 1 appears separation condition, U-shaped rod 13 plays the relative position of hoist rope and hoist bar 1 to limit, realizes the purpose of secondary protection, improves security.

[0022] Please refer to Figure 1, two U-shaped sleeves 12 are arranged on the boom 1, two rectangular cross-sectioned horizontal pipes 6 are arranged on the lower side of the boom 1, the lower ends of the two U-shaped sleeves 12 are connected with the two horizontal pipes 6 respectively, a connecting plate 10 is connected with the lower ends of the two U-shaped sleeves 12, the two ends of the connecting plate 10 are connected with the horizontal pipes 6 through fasteners formed by screws and nuts, the relative positions of the U-shaped sleeves 12 and the horizontal pipes 6 are fixed, two rectangular sleeves 5 are arranged on the horizontal pipes 6, rubber suction cups 7 for adsorbing photovoltaic panels are arranged on the lower surfaces of the rectangular sleeves 5, positioning screws 9 are threadedly connected with one side of the U-shaped sleeves 12 and one side of the rectangular sleeves 5, according to the area of the solar photovoltaic panel, the distance between the two U-shaped sleeves 12 along the boom 1 is adjusted, the distance between the two rubber suction cups 7 on the two horizontal pipes 6 is changed, the distance between the two rubber suction cups 7 on one horizontal pipe 6 is changed, when the positions of the rubber suction cups 7 meet the needs of adsorbing the solar photovoltaic panel, the relative positions of the U-shaped sleeves 12 and the boom 1 and the relative positions of the rectangular sleeves 5 and the horizontal pipes 6 are limited by the positioning screws 9, the distance between the multiple rubber suction cups 7 on the support formed by the boom 1, the horizontal pipes 6 and other components is adjusted according to the area of the solar photovoltaic panel, the needs of lifting and transporting the solar photovoltaic panel with different areas are met, the application range is expanded, rubber pads 11 are arranged on the sides of the U-shaped sleeves 12 close to the through holes, when the positioning screws 9 on the U-shaped sleeves 12 are tightened, the positioning screws 9 press the rubber pads 11, and thus the reliability of the positioning screws 9 in limiting the relative positions of the U-shaped sleeves 12 and the boom 1 is improved.

[0023] Referring to Figures 1-3 , the sides of the U-shaped sleeves 12 and the sides of the rectangular sleeves 5 are provided with through holes, pipe sleeves 8 are arranged on the sides of the U-shaped sleeves 12 and the sides of the rectangular sleeves 5, the pipe sleeves 8 are concentrically arranged with the through holes, the sides of the pipe sleeves 8 close to the through holes are connected with discs 15, the middle positions of one side of the discs 15 are provided with threaded holes 16, the positioning screws 9 are threadedly connected in the threaded holes 16, one end of the positioning screws 9 penetrates the through holes, rubber discs 14 connected with the positioning screws 9 are arranged on the positioning screws 9, the rubber discs 14 are slidingly arranged in the pipe sleeves 8, the positioning screws 9 are threadedly connected in the threaded holes 16 of the discs 15, at this time, the rubber discs 14 are in the pipe sleeves 8, when the positioning screws 9 are tightened, the rubber discs 14 slide in the pipe sleeves 8, the rubber discs 14 and the pipe sleeves 8 jointly realize real-time plugging of the connecting parts of the positioning screws 9 and the threaded holes 16, and prevent small sundries from entering the threaded holes 16 at will and affecting the tightening of the positioning screws 9.

[0024] Although the present specification is described in terms of embodiments, not every embodiment exhibits every characteristic or implements every combination of features described in the present specification. In addition, not every embodiment includes every embodiment described in the present specification. The description herein of any embodiment, including any preferred embodiment, is thus intended to be illustrative, and not restrictive. The scope of the present application is thus intended to be broad, and will be set forth in the following claims.

Claims

1. A lifting device for transporting a household distributed photovoltaic power station assembly, comprising a boom (1), characterized in that: The boom (1) is rectangular in cross section, two symmetrical U-shaped sleeves (12) are arranged on the boom (1), two symmetrical horizontal pipes (6) are arranged on the lower side of the boom (1), the lower ends of the two U-shaped sleeves (12) are connected and fixed with the two horizontal pipes (6), the horizontal pipe (6) is rectangular in cross section, two symmetrical rectangular sleeves (5) are arranged on the horizontal pipe (6), rubber suction cups (7) for adsorbing photovoltaic panels are arranged on the lower surface of the rectangular sleeve (5), and the side surface of the U-shaped sleeve (12) and the side surface of the rectangular sleeve (5) are threadedly connected with positioning screws (9) through connecting pieces.

2. The household distributed photovoltaic power station assembly transportation lifting device according to claim 1, characterized in that: The connecting piece comprises a sleeve (8), the side surface of the U-shaped sleeve (12) and the side surface of the rectangular sleeve (5) are provided with through holes, the sleeve (8) is arranged concentrically with the through hole, the side of the sleeve (8) close to the through hole is connected and fixed with a disc (15), a threaded hole (16) is formed in the middle of one side of the disc (15), the positioning screw (9) is threadedly connected in the threaded hole (16), one end of the positioning screw (9) penetrates through the through hole, a rubber disc (14) connected with the positioning screw (9) is arranged on the positioning screw (9), and the rubber disc (14) is slidingly arranged in the sleeve (8).

3. The transport and hoisting device for a household distributed photovoltaic power station assembly according to claim 2, characterized in that: The side of the U-shaped sleeve (12) close to the through hole is provided with a rubber pad (11), and the rubber pad (11) is attached to the boom (1).

4. The utility distributed photovoltaic power station assembly transport lifting device according to claim 1, characterized in that: The lower end of the U-shaped sleeve (12) is connected and fixed with a connecting plate (10), and the two ends of the connecting plate (10) are connected with the horizontal pipe (6) through fasteners formed by screws and nuts.

5. The utility distributed photovoltaic power station assembly transport lifting device according to claim 1, characterized in that: The upper surface of the boom (1) is connected and fixed with a hanging plate (2) at the middle position, and two symmetrical hanging rope holes (3) are formed in the side surface of the hanging plate (2).

6. The transport and hoisting device for a household distributed photovoltaic power station assembly according to claim 5, characterized in that: The upper surface of the boom (1) is connected and fixed with a U-shaped rod (13) at the middle position, the hanging plate (2) is arranged in the space formed by the U-shaped rod (13) and the boom (1), and a gap exists between the U-shaped rod (13) and the hanging plate (2).

7. The transport and hoisting device for a household distributed photovoltaic power station assembly according to claim 6, characterized in that: The two ends of the U-shaped rod (13) are connected and fixed with reinforcing ribs (4), and the reinforcing ribs (4) are connected and fixed with the boom (1).