Photovoltaic support post through-hole drilling auxiliary tool

CN224808530UActive Publication Date: 2026-09-29POWERCHINA CONSTR GRP
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Patent Information

Application Number
CN202521764719.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2026-09-29
Estimated Expiration
2035-08-19

AI Technical Summary

Technical Problem

[0004]因此,本实用新型所要解决的技术问题在于:在对光伏支架的立柱打孔时仅通过单手握住电钻,工作人员没有施力点来稳定电钻,因此工作人员打孔时会出现不稳定,打孔不准确的情况

Benefits of technology

[0015]本实用新型的有益效果在于:工作人员可以通过一手操作电钻,另一手握住握把来对进行打孔,并且由于电钻安装在安装孔内,电钻可以随着滑板定向移动,从而提高电钻打孔的稳定性以及便捷性。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of photovoltaic support stand column through-hole punching auxiliary tools, including fixed subassembly, it includes mounting plate, with the sliding tube of mounting plate fixed connection, with the sliding rod of mounting plate insertion joint cooperation and the sliding plate along sliding rod sliding, the mounting hole is passed in the surface of sliding plate, connecting rod, it is set through sliding tube, it includes the arc-shaped rod of being set in one side of sliding tube, staff can be operated electric drill by a hand, hold handle by other hand to carry out punching, and since electric drill is installed in mounting hole, electric drill can be oriented with sliding plate movement, to improve the stability and convenience of electric drill punching.
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Description

Technical Field

[0001] This utility model relates to the photovoltaic field, and in particular to an auxiliary tool for drilling holes in photovoltaic support columns. Background Technology

[0002] In the photovoltaic energy sector, photovoltaic (PV) mounting systems, as key structures supporting PV modules, directly impact the stability and power generation efficiency of the PV system through their installation quality. Drilling holes in the PV mounting columns is a crucial step in the installation process, used to secure various connecting components and ensure the stability of the mounting structure.

[0003] When drilling holes in photovoltaic (PV) support columns, the conventional method involves workers directly hand-holding an electric drill. However, the high-speed rotation of the motor and the interaction between the drill bit and the workpiece generate severe vibrations. These vibrations are transmitted to the worker's hand, making it difficult to maintain stability. Furthermore, since the worker can only hold the drill with one hand without a fulcrum, hand tremors directly affect the drilling accuracy. Any deviation in the drilling position may prevent the accurate installation of connecting components, requiring readjustment of the drilling position or additional modifications to the support structure. This not only increases installation time and labor costs but may also affect the overall installation quality of the PV support. Therefore, we propose a through-hole drilling tool for PV support columns to solve these problems. Utility Model Content

[0004] Therefore, the technical problem to be solved by this utility model is that when drilling holes in the columns of photovoltaic brackets, the operator holds the electric drill with only one hand, and there is no force point to stabilize the electric drill. As a result, the operator will experience instability and inaccurate drilling.

[0005] The above-mentioned technical problems are solved by the following technical solution: This utility model proposes a photovoltaic support column through-hole drilling auxiliary tool, which includes a fixing component, including a mounting plate, a sliding tube fixedly connected to the mounting plate, a sliding rod inserted into the mounting plate, and a sliding plate that slides along the sliding rod. The surface of the sliding plate is provided with a through-hole, a connecting rod is provided through the sliding tube, and it includes an arc-shaped rod provided on one side of the sliding tube.

[0006] In a preferred embodiment of the photovoltaic support column through-hole drilling auxiliary tool of this utility model: the connecting rod further includes a deformation rod disposed at the connection with the arc-shaped rod.

[0007] In a preferred embodiment of the photovoltaic bracket column through-hole drilling auxiliary tool of this utility model: the mounting plate includes a support plate and four sets of support rods perpendicular to the support plate. The four sets of support rods are all arranged on the same side of the support plate. There are two sets of sliding rods, and the sliding rods connect two of the support rods. The two sets of sliding rods are arranged in parallel. The support rods have through holes, and the sliding rods are inserted into the through holes.

[0008] In a preferred embodiment of the photovoltaic support column through-hole drilling auxiliary tool of this utility model: the sliding plate is provided with two sets of sliding grooves, the sliding plate slides on two sets of sliding rods through the two sets of sliding grooves, and the surface of the sliding plate is provided with mounting holes perpendicular to the extension direction of the sliding rods.

[0009] In a preferred embodiment of the photovoltaic support column through-hole drilling auxiliary tool of this utility model: a first locking bolt is provided on the circumferential side wall of the sliding tube, and the first locking bolt penetrates the sliding tube.

[0010] In a preferred embodiment of the photovoltaic support column through-hole drilling auxiliary tool of this utility model: the connecting rod further includes an extension rod on the side away from the arc-shaped rod, and a handle is fixedly sleeved on the outer circumference of the extension rod.

[0011] In a preferred embodiment of the photovoltaic support column through-hole drilling auxiliary tool of this utility model: the slide plate is arc-shaped on the side near the support plate, and a second locking bolt is provided on the side wall of the slide plate. The second locking bolt passes through the side wall of the slide plate and extends to the mounting hole.

[0012] In a preferred embodiment of the photovoltaic bracket column through-hole drilling auxiliary tool of this utility model: an elastic guide plate is fixedly connected to the surface of the support plate near the sliding plate, and a snap-fit ​​groove is opened at the end of the elastic guide plate near the sliding plate.

[0013] In a preferred embodiment of the photovoltaic support column through-hole drilling auxiliary tool of this utility model: both ends of the sliding rod are provided with threads, and a locking nut is provided at the threaded part of the sliding rod.

[0014] In a preferred embodiment of the photovoltaic bracket column through-hole drilling auxiliary tool of this utility model: a shock-absorbing layer is attached to the surface of the handle, and an anti-slip layer is attached to the outer surface of the shock-absorbing layer.

[0015] The beneficial effects of this utility model are that workers can operate the electric drill with one hand and hold the handle with the other hand to drill holes. Since the electric drill is installed in the mounting hole, it can move directionally with the slide plate, thereby improving the stability and convenience of drilling. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments of this utility model will be briefly described below. Obviously, the drawings described below only relate to some embodiments of this utility model and are not intended to limit the scope of this utility model. Wherein: Figure 1 A schematic diagram of the overall structure after the installation of the auxiliary tool for drilling through holes in the photovoltaic support column is shown. Figure 2 A schematic diagram showing the disassembly of the sliding rod and support rod in the auxiliary tool for drilling through the center of a photovoltaic support column is shown. Figure 3 This shows an overall side view of the photovoltaic support column drilling tool after the electric drill is installed; Figure 4 A cross-sectional view of the handle in the auxiliary tool for drilling holes in photovoltaic support columns is shown. Detailed Implementation

[0017] To enable those skilled in the art to better understand this utility model, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0018] The terminology used in this invention refers to those general terms currently widely used in the art in consideration of the functionality of this invention; however, these terms may vary according to the intent, precedent, or new technology of those skilled in the art. Furthermore, specific terms may be chosen by the applicant, and in such cases, their detailed meanings will be described in the detailed description of this invention. Therefore, the terminology used in this specification should not be construed as simple names, but rather based on the meaning of the terms and the overall description of this invention.

[0019] Reference Figures 1-4 This embodiment provides an auxiliary tool for drilling through a photovoltaic support column, including a fixing component 1, which includes a mounting plate 11, a sliding tube 12 fixedly connected to the mounting plate 11, the sliding tube 12 being disposed on the top of the mounting plate 11 such that the extension direction of the sliding tube 12 is on the same plane as the extension direction of the electric drill, a sliding rod 13 that is inserted and engaged with the mounting plate 11, and a sliding plate 14 that slides along the sliding rod 13. The surface of the sliding plate 14 has a through mounting hole 141, and a connecting rod 2 is disposed through the sliding tube 12. The connecting rod 21 includes an arc-shaped rod 21 disposed on one side of the sliding tube 12. The opening of the arc-shaped rod 21 is guaranteed to be less than 180°, so that when the arc-shaped rod 21 hooks the column, it can generate a certain friction force with the column under its own weight, preventing the situation where it cannot be hooked.

[0020] Furthermore, the connecting rod 2 also includes a deformation rod 22 disposed at the connection point with the arc-shaped rod 21. The deformation rod 22 is made of a material that retains high plasticity and toughness after welding, such as wrought aluminum alloy, low carbon steel, aluminum alloy, pure copper, etc., without specific limitations. This allows the arc-shaped rod 21 to form a certain angle with the plane of the mounting plate 11. This is because when the arc-shaped rod 21 hooks onto the column, there is a certain gap between itself and the column. At this time, when the other end of the arc-shaped rod 21 is connected to the extension rod 23 and the mounting plate 11, and when the worker presses down on the extension rod 23, the arc-shaped rod 21 will tilt before it can contact the column. Since the deformation rod 22 is set so that the arc-shaped rod 21 and the extension rod 23 are not on the same plane, this can replace the tilt of the part of the arc-shaped rod 21 that can contact the column after tilting. Thus, the extension rod 23, the mounting plate 11, and the electric drill are on the same plane again, perpendicular to the column.

[0021] Furthermore, the mounting plate 11 includes a support plate 111 and four sets of support rods 112 perpendicular to the support plate 111. The support plate 111 and the support rods 112 are integrally formed to ensure stability. All four sets of support rods 112 are located on the same side of the support plate 111. Two sets of sliding rods 13 are provided, and the sliding rods 13 connect two sets of support rods 112. The two sets of sliding rods 13 are arranged in parallel. The support rods 112 have through holes, and the sliding rods 13 are inserted into the through holes so that the slide plate 14 can slide on the sliding rods 13. The slide plate 14 has two sets of sliding grooves 142. The slide plate 14 slides on the two sets of sliding rods 13 through the two sets of sliding grooves 142. The surface of the slide plate 14 has mounting holes 141 perpendicular to the extension direction of the sliding rods 13. At the same time, the sliding rods 13 can guide the slide plate 14. When the electric drill is fixed on the slide plate 14 through the mounting holes 141, the directional movement of the electric drill can be achieved simply by controlling the electric drill to push forward.

[0022] Furthermore, a first locking bolt 15 is provided on the circumferential side wall of the sliding tube 12. The first locking bolt 15 penetrates the sliding tube 12, thereby locking and fixing the connecting rod 2 to prevent displacement. The roughness of the connecting rod 2 in the internal area of ​​the sliding tube 12 can be increased, so that it can be more stable when locked by the first locking bolt 15.

[0023] Specifically, the connecting rod 2 also includes an extension rod 23 on the side away from the arc rod 21. A handle 231 is fixedly sleeved on the outer periphery of the extension rod 23. The length of the extension rod 23 should meet the operating needs of the staff. It should be able to hold it stably and make it easier to apply force. There is no specific limitation on the length of the extension rod 23 here.

[0024] Furthermore, the slide plate 14 is arc-shaped on the side near the support plate 111. A second locking bolt 16 is provided on the side wall of the slide plate 14. The second locking bolt 16 passes through the side wall of the slide plate 14 and extends to the mounting hole 141. It should be noted that the second locking bolt 16 is used to lock the electric drill. The diameter of the mounting hole 141 can be relatively large so that the operation button of the electric drill can reach the lower part of the slide plate 14 after passing through the mounting hole 141. Similarly, it should be noted that the thickness of the slide plate 14 does not need to be too large, and should be smaller than the gap thickness between the operation button of the electric drill and the motor part at the top of the electric drill.

[0025] Furthermore, an elastic guide plate 17 is fixedly connected to the surface of the support plate 111 near the slide plate 14. The elastic guide plate 17 has a snap-fit ​​groove 171 at one end near the slide plate 14. The shape of the snap-fit ​​groove 171 can be selected to better fit the motor housing of the electric drill. No specific limitation is made here. Both ends of the sliding rod 13 are provided with threads, and a locking nut 131 is provided at the threaded part of the sliding rod 13 to fix the sliding rod 13 and prevent it from loosening during operation.

[0026] Furthermore, a shock-absorbing layer a is attached to the surface of the grip 231, and an anti-slip layer b is attached to the outer surface of the shock-absorbing layer a.

[0027] Specifically, the shock-absorbing layer a can be made of sponge, rubber, silicone rubber, ethylene-vinyl acetate copolymer, or other shock-absorbing materials, without any specific limitations here. The anti-slip layer b can be made of natural rubber, nylon, or other materials, without any specific limitations here.

[0028] In summary, when drilling into the column, first remove the locking nut 131 from the sliding rod 13. Pass the drill handle and drive button through the mounting hole 141 to the underside of the slide plate 14. Secure the drill position with the second locking bolt 16. A soft washer can be placed at the end of the second locking bolt 16 to prevent damage to the drill housing. Then, drag the slide plate 14 under the mounting plate 11. Next, pass the sliding rod 13 through the holes in one set of support rods 112, then through the holes in the slide plate 14, and then through the holes in the other support rod 112. Finally, secure the two sliding rods 13 with the locking nut 131. During this process, ensure the drill housing abuts against the elastic guide plate 17 to prevent the drill housing from shaking. Note that the appropriate drill model can be selected; no specific limitation is made here. The drill can then be... The deformation rod 22 bends the inclination angle of the arc rod 21. When the included angle between the arc rod 21 and the extension rod 23 is offset by the inclination angle when the arc rod 21 is tilted and abuts against the column, the extension rod 23 and the drill bit of the electric drill can be perpendicular to the column when the arc rod 21 abuts against the column. The connecting rod 21 is fixed by the first locking bolt 15. At this time, the arc rod 21 hooks the column. Then, one hand can hold the handle 231 and the other hand can hold the electric drill, so that there is a support point to apply force during the electric drill welding process to control the movement trajectory of the electric drill and prevent deviation during drilling. It should be noted that before this drilling work, a small pre-drilled hole can be made separately at the position to be drilled. This makes the subsequent drilling work more stable, and the drilling can be straighter because the movement trajectory of the electric drill is restricted during the drilling process.

[0029] Finally, it should be noted that the methods and devices described in detail above are merely embodiments, and those skilled in the art can modify these embodiments in different ways, as long as they do not depart from the scope of this utility model.

Claims

1. A tool for drilling through holes in photovoltaic support columns, characterized in that: include, The fixing component (1) includes a mounting plate (11), a sliding tube (12) fixedly connected to the mounting plate (11), a sliding rod (13) inserted into the mounting plate (11), and a sliding plate (14) sliding along the sliding rod (13). The surface of the sliding plate (14) is provided with a mounting hole (141). A connecting rod (2) is provided through the sliding tube (12), and includes an arc-shaped rod (21) provided on one side of the sliding tube (12).

2. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 1, characterized in that: The connecting rod (2) also includes a deformation rod (22) disposed at the connection with the arc-shaped rod (21).

3. The auxiliary tool for drilling holes in photovoltaic support columns according to claim 2, characterized in that: The mounting plate (11) includes a support plate (111) and four sets of support rods (112) perpendicular to the support plate (111). The four sets of support rods (112) are all set on the same side of the support plate (111), and there are two sets of sliding rods (13), and the sliding rods (13) connect two of the sets of support rods (112), and the two sets of sliding rods (13) are set in parallel. The support rod (112) has a through hole, and the sliding rod (13) is inserted into the through hole.

4. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 3, characterized in that: The slide plate (14) is provided with two sets of sliding grooves (142), and the slide plate (14) slides on the two sets of sliding rods (13) through the two sets of sliding grooves (142); The surface of the slide plate (14) is provided with a mounting hole (141) that extends through the sliding rod (13) perpendicular to its extension direction.

5. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 4, characterized in that: A first locking bolt (15) is provided on the circumferential sidewall of the sliding tube (12), and the first locking bolt (15) passes through the sliding tube (12).

6. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 5, characterized in that: The connecting rod (2) also includes an extension rod (23) on the side away from the arc rod (21), and a handle (231) is fixedly sleeved on the outer periphery of the extension rod (23).

7. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 6, characterized in that: The slide plate (14) is arc-shaped on the side near the support plate (111). The side wall of the slide plate (14) is provided with a second locking bolt (16), which penetrates the side wall of the slide plate (14) and extends to the mounting hole (141).

8. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 7, characterized in that: An elastic guide plate (17) is fixedly connected to the surface of the support plate (111) near the slide plate (14), and a snap-fit ​​groove (171) is opened at one end of the elastic guide plate (17) near the slide plate (14).

9. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 8, characterized in that: Both ends of the sliding rod (13) are provided with threads, and a locking nut (131) is provided at the threaded part of the sliding rod (13).

10. The auxiliary tool for drilling through holes in photovoltaic support columns according to claim 9, characterized in that: The grip (231) has a shock-absorbing layer (a) attached to its surface, and the outer surface of the shock-absorbing layer (a) has an anti-slip layer (b) attached to its outer surface.