A new convenient device for photovoltaic tube pile welding stand

CN224725263UActive Publication Date: 2026-09-08SINOHYDRO BUREAU 6 CO LTD +1
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Patent Information

Application Number
CN202521828240.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-09-08
Estimated Expiration
2035-08-27

AI Technical Summary

Technical Problem

[0004]为了解决传统梯子与管桩立柱的固定方式不够可靠,作业过程中梯子可能移位,影响焊接精度和施工安全的问题,本实用新型提供了一种新型用于光伏管桩焊接立柱的便捷装置

Benefits of technology

[0031]The beneficial effects of this utility model are as follows: By setting a fastening component that cooperates with the photovoltaic pile near the top of the climbing ladder, the climbing ladder can be stably connected to the photovoltaic pile during use, ensuring the stability of the climbing ladder during use, as well as ensuring welding accuracy and construction safety. A telescopic auxiliary frame is installed at 1/3 of the height of the climbing ladder from the ground. The climbing ladder and the telescopic auxiliary frame form an "A" shape, which can be independently and stably supported on the ground. In actual use, this provides stable support for the installation of the fastening component and further increases the stability of the climbing ladder during use.

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Abstract

The utility model provides a novel convenient device for photovoltaic pipe pile welding stand, belongs to photovoltaic construction tool field, it includes: the ladder piece that constitutes by main support and cross bracing, the fastening assembly that is set up with photovoltaic pipe pile cooperation is provided to the ladder piece near the top position, the telescopic auxiliary frame is installed to the 1 / 3 place of the ladder piece from ground. The application, through setting up the fastening assembly with photovoltaic pipe pile cooperation to the ladder piece near the top position, can be connected with photovoltaic pipe pile stably when the ladder piece uses, guarantees the stability when the ladder piece uses, guarantees the welding accuracy and construction safety, installs the telescopic auxiliary frame to the 1 / 3 place of the ladder piece from ground, the ladder piece and telescopic auxiliary frame are " person " character type structure, and it can be independently stably supported on the ground, when actual use, on one hand can provide stable support for the installation of fastening assembly, on the other hand in order to further increase the stability when the ladder piece uses.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic construction tools, specifically a new convenient device for welding photovoltaic pipe pile columns. Background Technology

[0002] Photovoltaic pipe piles (also known as photovoltaic pile foundations, photovoltaic ground piles, or photovoltaic column foundations) are a type of vertical or inclined tubular foundation structure specifically designed to support the support system of ground-mounted photovoltaic power stations. Standard sections of photovoltaic columns are welded / installed on them, and then crossbeams, connecting rods, etc. are installed on the photovoltaic columns to install photovoltaic panels.

[0003] Traditional column welding work typically uses scaffolding. Because scaffolding consists of numerous components, its assembly requires specialized personnel following specific specifications and procedures, making the process tedious. Dismantling it also demands careful handling, making the entire process time-consuming and labor-intensive. Furthermore, once erected, the scaffolding is quite large and heavy, requiring multiple people and potentially mechanical equipment to move, unlike ladders which can be easily moved to different locations. Ordinary ladders also lack stability, easily wobbling or even tipping over on uneven ground, posing a safety threat to construction workers. Utility Model Content

[0004] To address the problem that traditional methods of fixing ladders to pipe pile columns are unreliable and may cause the ladder to shift during operation, affecting welding accuracy and construction safety, this utility model provides a new and convenient device for welding photovoltaic pipe pile columns.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A novel, convenient device for welding photovoltaic pipe pile columns includes:

[0007] The ladder component consists of a main support and a cross brace. Near the top of the ladder component, there is a fastening component that cooperates with the photovoltaic pile. A telescopic auxiliary frame is installed at 1 / 3 of the height of the ladder component from the ground.

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

[0009] Handrails are fixedly installed on the side of the main support.

[0010] As a further description of the above technical solution:

[0011] The cross brace is fixedly fitted with an anti-slip sleeve, and the surface of the anti-slip sleeve is provided with anti-slip protrusions.

[0012] As a further description of the above technical solution:

[0013] A tool storage unit is fixedly installed on the side of the main support.

[0014] As a further description of the above technical solution:

[0015] The fastening assembly includes:

[0016] A fastening strap, one end of which is movably connected to the side of the main support;

[0017] Two fastening straps are symmetrically arranged on both sides of the ladder component, and the two fastening straps are fixedly connected by a locking kit.

[0018] As a further description of the above technical solution:

[0019] The lock kit includes:

[0020] A frame-shaped bracket, wherein a locking screw is threadedly connected to the first side of the frame-shaped bracket, and an inner pad is fixedly connected to the outer side of the second side of the frame-shaped bracket that is parallel to the first side.

[0021] As a further description of the above technical solution:

[0022] The telescopic auxiliary frame includes:

[0023] The inner rod has one end rotatably connected to the outer side of the main support, and a clamping nut for locking the inner rod and the main support is provided at the connection between the inner rod and the main support.

[0024] The outer coat rack has a positioning opening on its side, the inner rod is slidably engaged with the outer coat rack, and the inner rod has a plurality of slots at equal intervals on its side that correspond to the positioning opening;

[0025] A positioning block, which corresponds to a positioning port;

[0026] The connecting rod is fixedly connected to the outer side of the outer frame with a fixing buckle. One end of the connecting rod is rotatably connected to the positioning block, and the other end of the connecting rod is provided with a long sliding hole that cooperates with the positioning block. The long sliding hole is slidably engaged with the fixing buckle.

[0027] A spring connects the positioning block and the fixing buckle.

[0028] As a further description of the above technical solution:

[0029] The inner rod and outer frame are provided in two sets on both sides of the climbing ladder component;

[0030] A horizontal frame and an inverted "V"-shaped frame are fixedly connected between the two sets of outer frames, and the top of the inverted "V"-shaped frame is fixedly connected to the horizontal frame.

[0031] The beneficial effects of this utility model are as follows: By setting a fastening component that cooperates with the photovoltaic pile near the top of the climbing ladder, the climbing ladder can be stably connected to the photovoltaic pile during use, ensuring the stability of the climbing ladder during use, as well as ensuring welding accuracy and construction safety. A telescopic auxiliary frame is installed at 1 / 3 of the height of the climbing ladder from the ground. The climbing ladder and the telescopic auxiliary frame form an "A" shape, which can be independently and stably supported on the ground. In actual use, this provides stable support for the installation of the fastening component and further increases the stability of the climbing ladder during use. Attached Figure Description

[0032] The following figures are shown to more clearly illustrate a new and convenient device for welding photovoltaic pipe pile columns;

[0033] Figure 1 This is a perspective view of the present utility model;

[0034] Figure 2 This is a front view of the present invention;

[0035] Figure 3 This is a side view of the present invention;

[0036] Figure 4 This is a three-dimensional schematic diagram of the telescopic auxiliary frame of this utility model;

[0037] Figure 5 for Figure 4 Enlarged view of section B in the middle;

[0038] Figure 6 This is a schematic diagram showing the cooperation between the inner rod and the outer frame of this utility model;

[0039] Figure 7 This is a three-dimensional schematic diagram of the lock kit of this utility model.

[0040] The labels in the attached diagram;

[0041] 1. Main support; 2. Horizontal brace; 3. Ladder component; 4. Anti-slip sleeve; 401. Anti-slip protrusion; 5. Handrail component; 6. Tool storage component; 7. Fastening strap; 8. Locking kit; 801. Frame type; 802. Locking screw; 803. Inner pad; 9. Telescopic auxiliary frame; 901. Inner rod; 902. Outer frame; 903. Bayonet; 904. Positioning port; 905. Positioning block; 906. Connecting rod; 907. Fixing buckle; 908. Spring; 909. Horizontal frame; 9010. Inverted "V" shaped frame. Detailed Implementation

[0042] Please refer to the attached document. Figure 1 - Figure 7This application illustrates a novel, convenient device for welding photovoltaic (PV) pipe pile columns, comprising a ladder component 3 consisting of a main support 1 and cross braces 2. Two sets of main supports 1 are arranged parallel to each other, and the cross braces 2 are fixedly connected between the two sets of main supports 1 to form the ladder component 3. A fastening assembly for cooperating with the PV pipe pile is provided near the top of the ladder component 3. During use, the fastening assembly can be fixed to the PV pipe pile, locking the top of the ladder component 3 to the PV pipe pile, thus ensuring the stability of the ladder component 3 during use. A telescopic auxiliary frame 9 is installed at one-third of the way off the ground from the ladder component 3. Figure 1 The climbing ladder 3 and the telescopic auxiliary frame 9 shown in the diagram form an "A" shape, which can be independently and stably supported on the ground. In actual use, the climbing ladder 3 and the telescopic auxiliary frame 9 can be adjusted in angle and length (depending on whether the climbing ladder 3 can meet the requirements of use) and supported on the ground. Then, the user can use the climbing ladder 3 to climb up and fix the fastening components to the photovoltaic pile.

[0043] This application provides a fastening component for the photovoltaic pile near the top of the ladder component 3, ensuring a stable connection between the ladder component 3 and the photovoltaic pile during use, thus guaranteeing the stability of the ladder component 3, welding accuracy, and construction safety. A telescopic auxiliary frame 9 is installed at 1 / 3 of the height of the ladder component 3 from the ground. The ladder component 3 and the telescopic auxiliary frame 9 form an "A" shape, which can be independently and stably supported on the ground. In actual use, this provides stable support for the installation of the fastening component and further increases the stability of the ladder component 3 during use.

[0044] The main support 1, cross brace 2, and telescopic auxiliary frame 9 are all made of lightweight aluminum alloy, which ensures that the whole structure is light and easy to carry.

[0045] In one embodiment, in order to facilitate construction workers to grab and hold on the main support 1, a handrail 5 is fixedly installed on the side of the main support 1. The handrail 5 is generally designed as a frame structure, which is lightweight and easy to carry the ladder 3.

[0046] In one embodiment, in order to ensure that construction workers can step stably on the cross brace 2 and reduce the risk of slipping and falling, an anti-slip sleeve 4 is fixedly fitted on the cross brace 2. The surface of the anti-slip sleeve 4 is provided with anti-slip protrusions 401, and the anti-slip sleeve 4 is made of wear-resistant rubber material.

[0047] In one embodiment, a tool storage component 6 is fixedly installed on the side of the main support 1. The tool storage component 6 can be a tool box, tool bag, frame structure, etc., which is used to store various tools and consumables for construction operations, reducing the number of times personnel have to climb up and down the ladder component 3 (the number of times they have to climb up and down the ladder component 3 to retrieve or put away items).

[0048] In one embodiment, the fastening assembly includes a fastening band 7, which is flexible and can be bent into any shape to adapt to photovoltaic pipe piles with different cross-sectional shapes. One end of the fastening band 7 is movably connected to the side of the main support 1, so that the fastening band 7 can rotate. Two fastening bands 7 are symmetrically arranged on both sides of the ladder component 3, and the two fastening bands 7 are fixedly connected by a locking kit 8.

[0049] The two fastening straps 7 and the lateral length of the climbing ladder 3 are wrapped around the photovoltaic pipe pile to achieve the purpose of fixing the top of the climbing ladder 3 to the photovoltaic pipe pile.

[0050] In order to ensure that the two fastening bands 7 can be secured solely by the photovoltaic pipe pile, an inner support band is also installed between the two fastening bands 7. The inner support band fits tightly against the photovoltaic pipe pile on the inside, making the fixation more reliable.

[0051] In one embodiment, the locking kit 8 includes a frame 801, a locking screw 802, and an inner washer 803.

[0052] The frame 801 has a locking screw 802 threadedly connected to its first side. In use, both fastening straps 7 pass through the inside of the frame 801 and the locking screw 802 is tightened. The end of the locking screw 802 abuts against the fastening strap 7, thus fixing the two fastening straps 7 together. An inner pad 803 is fixedly connected to the outer side of the second side of the frame 801, which is parallel to the first side. The inner pad 803 faces the photovoltaic tube pile and prevents the frame 801 from being squeezed and deformed, which would affect the tightness of the connection between the two fastening straps 7.

[0053] In one embodiment, the telescopic auxiliary frame 9 includes: an inner rod 901, an outer frame 902, a positioning block 905, a connecting rod 906, and a spring 908.

[0054] One end of the inner rod 901 is rotatably connected to the outer side of the main support 1, and a clamping nut for locking the inner rod 901 and the main support 1 is provided at the connection point. When the clamping nut is loosened, the included angle between the inner rod 901 and the main support 1 can be adjusted. After adjustment, the clamping nut is tightened to fix the inner rod 901 and the main support 1. A positioning hole 904 is opened on the side of the outer frame 902. The inner rod 901 and the outer frame 902 slide together, and the overall length can be adjusted by sliding the inner rod 901 and the outer frame 902. The side of the inner rod 901, etc. The spacer has several slots 903 corresponding to the positioning port 904. The positioning block 905 corresponds to the positioning port 904 and is locked in the positioning port 904 and slots 903, which can lock the inner rod 901 and the outer frame 902. The outer frame 902 is fixedly connected to the outer side of the outer buckle 907. One end of the connecting rod 906 is rotatably connected to the positioning block 905. The other end of the connecting rod 906 has a long sliding hole that cooperates with the positioning block 905. The long sliding hole and the fixing buckle 907 are slidably engaged. A spring 908 is connected between the positioning block 905 and the fixing buckle 907.

[0055] like Figure 4 , Figure 5 As shown, under the limiting effect of the connecting rod 906 and the elastic pull of the spring 908, the positioning block 905 can be stably positioned inside the positioning port 904, thereby locking the inner rod 901 and the outer frame 902 in the length direction. The user can manually pull and rotate the positioning block 905 outward to overcome the elasticity of the spring 908 and pull the positioning block 905 out, thus allowing the inner rod 901 and the outer frame 902 to be slidably adjusted.

[0056] In one embodiment, two sets of inner rods 901 and outer brackets 902 are provided on both sides of the ladder component 3.

[0057] A horizontal frame 909 and an inverted "V" shaped frame 9010 are fixedly connected between the two sets of outer frame 902. The top of the inverted "V" shaped frame 9010 is fixedly connected to the horizontal frame 909.

[0058] The horizontal frame 909 and the inverted "V" shaped frame 9010 are used to increase the stability between the two sets of inner rods 901 and outer frame 902, and the structural design of the inverted "V" shaped frame 9010 ensures that it will not interfere with the photovoltaic pipe pile.

[0059] Other embodiments of the present invention will readily occur to those skilled in the art upon consideration of the specification and practice of the disclosure herein. This application is intended to cover any variations, uses, or adaptations of the present invention that follow the general principles of the present invention and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of the present invention are indicated by the following claims.

[0060] It should be understood that relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. This invention is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this invention is limited only by the appended claims.

Claims

1. A novel convenient device for welding photovoltaic pipe pile columns, comprising a ladder component (3) consisting of a main support (1) and a cross brace (2), characterized in that: The ladder component (3) is provided with a fastening component that cooperates with the photovoltaic pipe pile near the top position; The ladder component (3) is equipped with a telescopic auxiliary frame (9) at 1 / 3 of its height from the ground.

2. A novel convenient device for photovoltaic tube pile welding stand column according to claim 1, characterized in that: Handrails (5) are fixedly installed on the side of the main support (1).

3. A novel convenient device for photovoltaic tube pile welding stand column according to claim 1, characterized in that: The cross brace (2) is fixedly fitted with an anti-slip sleeve (4), and the surface of the anti-slip sleeve (4) is provided with anti-slip protrusions (401).

4. A novel convenient device for photovoltaic tube pile welding stand column according to claim 1, characterized in that: A tool storage piece (6) is fixedly installed on the side of the main support (1).

5. A novel convenient device for welding photovoltaic pipe pile columns according to claim 1, characterized in that, The fastening assembly includes: Fastening band (7), one end of which is movably connected to the side of the main support (1); Two fastening straps (7) are symmetrically arranged on both sides of the ladder component (3), and the two fastening straps (7) are fixedly connected by a locking kit (8).

6. A novel convenient device for photovoltaic tube pile welding stand column according to claim 5, characterized in that, The lock kit (8) includes: A frame (801) is provided with a locking screw (802) threadedly connected to the first side of the frame (801), and an inner pad (803) is fixedly connected to the outer side of the second side of the frame (801) which is parallel to the first side.

7. A novel convenient device for photovoltaic tube pile welding stand column according to claim 1, characterized by, The telescopic auxiliary frame (9) includes: Inner rod (901), one end of which is rotatably connected to the outer side of the main support (1), and a clamping nut for locking the inner rod (901) and the main support (1) is provided at the connection between the inner rod (901) and the main support (1); The outer coat rack (902) has a positioning opening (904) on its side. The inner rod (901) is slidably engaged with the outer coat rack (902). The inner rod (901) has several slots (903) at equal intervals on its side that correspond to the positioning opening (904). Positioning block (905), which corresponds to positioning port (904); The connecting rod (906) is fixedly connected to the outer side of the outer frame (902) with a fixing buckle (907). One end of the connecting rod (906) is rotatably connected to the positioning block (905), and the other end of the connecting rod (906) is provided with a long sliding hole that cooperates with the positioning block (905). The long sliding hole is slidably engaged with the fixing buckle (907). A spring (908) is connected between the positioning block (905) and the fixing buckle (907).

8. A novel convenient device for welding photovoltaic pipe pile columns according to claim 7, characterized in that: The inner rod (901) and outer frame (902) are provided in two sets on both sides of the ladder component (3); A horizontal frame (909) and an inverted "V"-shaped frame (9010) are fixedly connected between the two sets of outer frame (902), and the top of the inverted "V"-shaped frame (9010) is fixedly connected to the horizontal frame (909).