Grounding device capable of rapidly hanging aluminum bar
By designing a grounding device for quickly hanging aluminum rows, the sliding locking mechanism of the restriction part and the clips is used to solve the problem of difficulty in hanging the grounding wire, and the precise alignment and stable suspension of the grounding parts and the aluminum rows are achieved, and the hanging efficiency and safety are improved.
Patent Information
- Application Number
- CN202510345083.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-07-11
AI Technical Summary
When inspecting the aluminum ships in which the power outage of the substation is powered, it is difficult to hang the conductor end of the grounding wire, and it is easy to swing and slip due to gravity, which affects the hanging efficiency and safety.
A grounding device for quickly hanging aluminum rows is designed. Through the cooperation of the restriction part and the clamping parts, the precise alignment and stable suspension of the grounding parts and the aluminum rows are achieved, including sliding limiting, clamp locking and unlocking mechanisms, ensuring the effective fixation of the grounding parts and the aluminum rows.
It improves the efficiency and stability of ground wire mounting, avoids swing and slipping at the conductor end, and ensures maintenance safety and operation reliability.
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Figure CN120300501A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of aluminum bar grounding, in particular to a grounding device for quickly hanging aluminum bars. Background Art
[0002] At present, when inspecting and repairing the aluminum busbar of a power outage in a substation, it is necessary to hang the conductor end of the grounding wire on the aluminum busbar to achieve grounding. If there is a sudden power supply, the current will be introduced into the earth through the grounding wire to ensure the safety of the maintenance personnel. However, when the conductor end of the grounding wire is actually hung on the aluminum busbar, the conductor end often swings due to the action of gravity, resulting in the opening direction of the conductor end being unable to be accurately aligned with the direction of the aluminum busbar, affecting the efficiency of hanging the conductor end of the grounding wire. At the same time, since there is no fulcrum when the conductor end is tightened on the aluminum busbar, it is easy to slip, making the hanging of the grounding wire very difficult. Summary of the invention
[0003] In view of the above-mentioned problems existing in the existing aluminum busbar grounding, the present invention is proposed.
[0004] The above technical problems are solved by the following technical solutions: The present invention proposes a grounding device for quickly hanging an aluminum bar, which includes a grounding piece; a limiting part, which is slidably arranged on the grounding piece; a fixing part, the fixing part includes a fixing piece and a clamping piece arranged on the grounding piece, and the movement of the limiting part drives the clamping piece to move; when the clamping piece clamps the fixing piece, the grounding piece is fixed to the fixing piece, so that the grounding piece can be hung according to the direction of the aluminum bar. In the process of hanging the grounding piece on the aluminum bar, the limiting part will adaptively slide to the appropriate position with the width of the aluminum bar, thereby restricting the aluminum bar.
[0005] In a preferred embodiment of the grounding device for quickly hanging aluminum bars of the present invention: the clamping member includes a group of symmetrically arranged sliding seats, the two sliding seats are mirror-arranged with the central axis of the grounding member as the axis of symmetry, a fixing rod is commonly provided between the two sliding seats, a guide hole is provided on the grounding member, the fixing rod is slidably connected to the guide hole, a sliding member is provided between the two sliding seats, and a clamping seat is provided in the grounding member.
[0006] In a preferred embodiment of the grounding device for quickly hanging aluminum bars of the present invention: a linkage member is provided between the holder and the sliding member, the linkage member includes a linkage block provided on the sliding member, the linkage block is provided in an inverted T shape, a group of symmetrically arranged inclined grooves are provided on the holder, and the linkage block is slidably connected to the inclined grooves.
[0007] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: a rotating member is provided inside the grounding member, the rotating member includes a rotating column provided inside the grounding member, two swinging blocks are provided on the side wall of the rotating column, the included angle between the two swinging blocks is 90°, a pushing block is provided on the side wall of the sliding member, the pushing block contacts one of the swinging blocks, and the other swinging block contacts the card seat.
[0008] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: a tension member is provided inside the grounding member, the tension member includes a fixed column provided inside the grounding member, a steel wire rope is provided on the fixed column, and two ends of the steel wire rope are respectively fixedly connected to the sliding member and the card seat.
[0009] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: the fixing member includes a threaded column provided on the grounding member, a threaded hole is provided on the grounding member, the threaded column is threadedly connected to the threaded hole, a fixed seat is provided on the threaded column, a fixed gear is provided on the lower side of the fixed seat, the fixed gear is fixedly connected to the threaded column, and the fixed gear is snap-connected to the card seat.
[0010] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: the card member further includes a slider provided on the lower side of the card seat, a first spring is provided on the side wall of the slider, a group of symmetrically arranged guiding columns are provided on the side wall of the slider, a guiding groove adapted to the guiding columns is formed on the grounding member, and the guiding columns are slidably connected to the guiding groove.
[0011] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: the limiting portion includes a tension groove provided on the grounding member, a fixed block is provided inside the tension groove, a sliding groove is provided on the side wall of the grounding member, a sliding rod is provided inside the sliding groove, a tension spring is jointly provided between the sliding rod and the fixed block, and a sliding seat is fixedly connected to the side wall of the sliding rod.
[0012] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: the limiting portion further includes a second spring provided inside the sliding seat, a T-shaped block is provided on the side wall of the second spring, a group of symmetrically arranged pressing blocks are provided on the side wall of the T-shaped block, a swinging member is provided on the side wall of the sliding seat, and a limiting groove is provided on the side wall of the swinging member.
[0013] In a preferred embodiment of the grounding device for quickly hanging aluminum bars according to the present invention: the card member further includes a pressing surface provided on the sliding seat, a connecting column is provided on the side wall of the sliding seat, and the connecting column contacts the sliding seat.
[0014] The beneficial effects of the present invention are as follows: by setting the limiting part, a fulcrum can be created between the grounding piece and the aluminum bar, thereby effectively restricting the aluminum bar, avoiding slipping, and facilitating the hanging of the grounding piece; and by setting the clamping piece, the grounding piece and the fixing piece can be locked before the grounding piece is hung, so that the grounding piece cannot swing, ensuring that the opening direction of the grounding piece is accurately matched with the direction of the aluminum bar, thereby achieving rapid hanging of the grounding wire and improving the efficiency of hanging the grounding piece; and after hanging, the lock can be released so that the fixing piece and the grounding piece cooperate to fix the aluminum bar, thereby ensuring the stability and reliability of the grounding operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments of the present invention are briefly introduced below. Obviously, the drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention. Among them:
[0016] Figure 1 The overall schematic diagram of the grounding device for the quick hanging aluminum bar is shown;
[0017] Figure 2 A schematic diagram showing the partial structural connection of the grounding device of the quick-hanging aluminum bar is shown;
[0018] Figure 3 A partial structural schematic diagram of a fixing part of a grounding device for a fast hanging aluminum bar is shown;
[0019] Figure 4 The plane of Example 3 is shown;
[0020] Figure 5 A schematic diagram of the partial structure of the fixing part of the grounding device for the quick suspension aluminum bar is shown;
[0021] Figure 6 The plane of Example 4 is shown;
[0022] Figure 7 A schematic diagram of the partial structure of the fixing part of the grounding device for the quick suspension aluminum bar is shown;
[0023] Figure 8 A plan view of Example 5 is shown. DETAILED DESCRIPTION
[0024] In order to enable those skilled in the art to better understand the present invention, the present invention is further described in detail below in conjunction with specific implementation methods and drawings.
[0025] The terms used in the present invention are those general terms currently widely used in the art in consideration of the functions of the present invention, but these terms may vary according to the intention of a person of ordinary skill in the art, precedents, or new technologies in the art. In addition, specific terms may be selected by the applicant, and in this case, their detailed meanings will be described in the detailed description of the present invention. Therefore, the terms used in the specification should not be understood as simple names, but rather as a general description based on the meaning of the terms and the present invention.
[0026] Example 1
[0027] Reference Figure 1 The present embodiment provides a grounding device for quickly hanging an aluminum bar, comprising a grounding member 1; a limiting portion 2, which is slidably arranged on the grounding member 1; a fixing portion 3, wherein the fixing portion 3 comprises a fixing member 31 and a clamping member 32 arranged on the grounding member 1, and the limiting portion 2 moves to drive the clamping member 32 to move; when the clamping member 32 clamps the fixing member 31, the grounding member 1 is fixed to the fixing member 31, so that the grounding member 1 can be hung according to the direction of the aluminum bar. When the grounding member 1 is hung on the aluminum bar, the limiting portion 2 will slide to an appropriate position according to the width of the aluminum bar to restrict the aluminum bar;
[0028] Specifically, before the grounding piece 1 is hung on the aluminum bar, the clamping piece 32 is in a state of clamping the fixing piece 31, thereby achieving the function of locking the fixing piece 31. At this time, the grounding piece 1 is fixed to the fixing piece 31, so that the grounding piece 1 cannot swing, so that the operator can adjust the angle of the grounding piece 1 according to the direction of the aluminum bar, so as to ensure that the opening direction of the grounding piece 1 is accurately matched with the direction of the aluminum bar, so as to facilitate the grounding piece 1 to be smoothly hung on the aluminum bar, and realize the rapid hanging of the grounding wire, and effectively avoid the grounding piece 1 always rotating and resetting under the action of gravity when adjusting the angle. In the process of the grounding piece 1 hanging on the aluminum bar, the limiting part 2 slides to an appropriate position according to the width of the aluminum bar, so that there is a fulcrum between the grounding piece 1 and the aluminum bar, so that there is no slipping during the hanging, so as to effectively limit the aluminum bar, and the clamping piece 32 moves with the movement of the limiting part 2, and the locking of the fixing piece 31 is released, so that the fixing piece 31 can move up and cooperate with the grounding piece 1 to fix the aluminum bar, so that the grounding piece 1 is stably hung on the aluminum bar;
[0029] Example 2
[0030] Reference Figure 2 , this embodiment is different from the first embodiment in that the limiting part 2 includes a tension groove 211 provided on the grounding member 1, a fixing block 212 is provided in the tension groove 211, a sliding groove 213 is provided on the side wall of the grounding member 1, a sliding rod 214 is provided in the sliding groove 213, a tension spring 215 is provided between the sliding rod 214 and the fixing block 212, and a sliding seat 216 is fixedly connected to the side wall of the sliding rod 214;
[0031] Specifically, two slide grooves 213 are provided, and the two slide grooves 213 are symmetrically arranged. The slide groove 213 is connected to the tension groove 211. The slide rod 214 is slidably connected to the grounding member 1 through the slide groove 213 and the tension groove 211. The slide rod 214 is fixedly connected to the slide seat 216, and the fixed block 212 is fixedly connected to the grounding member 1. When in use, the slide seat 216 drives the slide rod 214 to slide on the grounding member 1, and at the same time, under the action of the tension spring 215, the slide rod 214 drives the slide seat 216 to reset.
[0032] The limiting part 2 further includes a second spring 221 disposed in the slide 216, a T-shaped block 222 is disposed on the side wall of the second spring 221, a group of symmetrically arranged extrusion blocks 223 are disposed on the side wall of the T-shaped block 222, a swinging piece 224 is disposed on the side wall of the slide 216, and a limiting groove 225 is disposed on the side wall of the swinging piece 224;
[0033] Specifically, two springs 221 are provided, and the two springs 221 are symmetrically arranged, the T-shaped block 222 is slidably connected to the slide 216, the two extrusion blocks 223 are fixedly connected to the T-shaped block 222, the swing member 224 is rotatably connected to the slide 216, the upper part of the side wall of the swing member 224 is in contact with the two extrusion blocks 223, the side walls of the two extrusion blocks 223 are respectively fixedly connected to the two springs 221, and a plurality of limiting grooves 225 are provided, and the plurality of limiting grooves 225 are equidistantly distributed, which plays a role in preventing The swing member 224 has a sliding effect to better restrict the aluminum bar. Under the restricting effect of the T-shaped block 222, the extrusion block 223 and the second spring 221, the swing amplitude of the swing member 224 can be limited, thereby improving the reliability of the fulcrum provided by the swing member 224 to the aluminum bar, and improving the effect of restricting the aluminum bar. At the same time, the swing member 224 cooperates with the extrusion block 223, the second spring 221, the slide seat 216, the tension spring 215 and the limiting groove 225 to better adapt to aluminum bars of different widths, so as to restrict aluminum bars of different widths.
[0034] In use, during the process of hanging the grounding part 1, any one of the limiting grooves 225 of the swinging part 224 first contacts the aluminum row. The operator applies a force to the grounding part 1, causing the swinging part 224 to drive the sliding seat 216 to slide leftward for a certain distance. Then, the operator appropriately reduces the force applied to the grounding part 1, causing the sliding seat 216 to drive the swinging part 224 to slide rightward under the action of the sliding rod 214 and the tension spring 215. The cooperation between the grounding part 1 and the swinging part 224 restricts the aluminum row between the two, achieving the function that the swinging part 224 slides to an appropriate position according to the width of the aluminum row. At the same time, since the swinging part 224 is rotatably connected to the sliding seat 216, the swinging part 224 can better adapt to the width of the aluminum row. Meanwhile, the swinging part 224 is effectively restricted in its swinging amplitude under the restrictive action of the T-shaped block 222, the extrusion block 223, and the second spring 221. Under the action of the T-shaped block 222, the extrusion block 223, and the second spring 221, it can also well provide a force application point to the aluminum row, so that there is a force application point between the grounding part 1 and the aluminum row, ensuring a tight fit between the grounding part 1 and the aluminum row and preventing slipping during hanging.
[0035] Embodiment 3
[0036] Referring to Figure 2 - Figure 4 In this embodiment, which is different from the first embodiment, the clamping part 32 includes a set of symmetrically arranged sliding seats 321. The two sliding seats 321 are arranged in a mirror image with the central axis of the grounding part 1 as the axis of symmetry. A fixing rod 322 is commonly provided between the two sliding seats 321. A guiding hole 323 is provided on the grounding part 1, and the fixing rod 322 is slidably connected to the guiding hole 323. A sliding part 324 is provided between the two sliding seats 321, and a clamping seat 325 is provided inside the grounding part 1.
[0037] Specifically, the fixing rod 322 is fixedly connected to the two sliding seats 321. The fixing rod 322 is located inside the guiding hole 323. A sliding groove 213 adapted to the sliding part 324 is formed inside the grounding part 1, enabling the sliding part 324 to slide up and down along with the sliding seat 321. The sliding part 324 includes two cylindrical rods respectively fixed to the two sliding seats 321, and further includes a sliding block located between the two cylindrical rods. The sliding block is fixedly connected to the two cylindrical rods. The clamping seat 325 is slidably connected to the grounding part 1. Referring to Figure 3 Two limiting surfaces a are provided on the clamping seat 325.
[0038] The clamping part 32 further includes an extrusion surface 3211 provided on the sliding seat 216. A connecting column 3212 is provided on the side wall of the sliding seat 321, and the connecting column 3212 contacts the sliding seat 216.
[0039] Specifically, there are two extrusion surfaces 3211, and the two extrusion surfaces 3211 are symmetrically arranged. During use, when the sliding seat 216 slides to the left, the extrusion surface 3211 gradually approaches the connecting column 3212, and the connecting column 3212 will drive the sliding seat 321 to move upward under the action of the extrusion surface 3211, the guiding hole 323 and the fixing rod 322. The extrusion surface 3211 plays a role in pushing the sliding seat 321 upward.
[0040] The clamping member 32 further includes a slider 3251 provided on the lower side of the clamping seat 325. A first spring 3252 is provided on the side wall of the slider 3251, and a set of symmetrically arranged guiding columns 3253 are provided on the side wall of the slider 3251. A guiding groove 3254 adapted to the guiding column 3253 is formed on the grounding member 1, and the guiding column 3253 is slidably connected to the guiding groove 3254.
[0041] Specifically, the slider 3251 is slidably connected to the grounding member 1, the first spring 3252 is fixedly connected to the grounding member 1, there are two guiding grooves 3254, and the two guiding grooves 3254 are symmetrically arranged. The first spring 3252 plays a role in assisting the slider 3251 to reset, thereby assisting the clamping seat 325 to reset.
[0042] A linkage member 33 is provided between the clamping seat 325 and the sliding member 324. The linkage member 33 includes a linkage block 331 provided on the sliding member 324. The linkage block 331 is arranged in an inverted T shape, and a set of symmetrically arranged inclined grooves 332 are provided on the clamping seat 325. The linkage block 331 is slidably connected to the inclined grooves 332.
[0043] Specifically, the linkage block 331 is fixedly connected to the sliding member 324. During use, when the sliding seat 321 moves upward, the sliding member 324 drives the linkage block 331 to move upward along with the sliding seat 321. When the linkage block 331 moves upward, it will squeeze the inclined groove 332, so that the clamping seat 325 slides away from the fixing member 31 under the combined action of the linkage block 331, the inclined groove 332, the slider 3251, the guiding column 3253 and the guiding groove 3254 to release the locking of the fixing member 31.
[0044] During use, in conjunction with Embodiment 2, when the sliding seat 216 slides to the left, the extrusion surface 3211 will gradually approach the connecting column 3212 and squeeze the connecting column 3212, so that the connecting column 3212 will drive the sliding seat 321 and the sliding member 324 to move upward under the action of the extrusion surface 3211, the guiding hole 323 and the fixing rod 322. The linkage block 331 moves upward along with the sliding member 324 and squeezes the inclined groove 332, so that the clamping seat 325 slides away from the fixing member 31 under the combined action of the linkage block 331, the inclined groove 332, the slider 3251, the guiding column 3253 and the guiding groove 3254 to release the locking of the fixing member 31.
[0045] Embodiment 4
[0046] Reference Figure 5 - Figure 6 Figure 6 , what makes this embodiment different from the second embodiment is that a rotating member 34 is provided inside the grounding member 1. The rotating member 34 includes a rotating column 341 provided inside the grounding member 1. Two swinging blocks 342 are provided on the side wall of the rotating column 341. The included angle between the two swinging blocks 342 is 90°. A pushing block 343 is provided on the side wall of the sliding member 324. The pushing block 343 contacts one of the swinging blocks 342, and the other swinging block 342 contacts the clamping seat 325;
[0047] Specifically, the rotating column 341 is rotatably connected to the grounding member 1, and the two swinging blocks 342 are fixedly connected to the rotating column 341;
[0048] When in use, in combination with Embodiment 2 and Embodiment 3, when the sliding member 324 moves upward, it will drive the pushing block 343 to move upward. At this time, the pushing block 343 will squeeze one of the swinging blocks 342. When one of the swinging blocks 342 is squeezed, it will drive the rotating column 341 to deflect counterclockwise, so that the other swinging block 342 deflects along with the rotating column 341. Since the other swinging block 342 contacts the clamping seat 325, when the other swinging block 342 deflects counterclockwise, it will squeeze the clamping seat 325, causing the clamping seat 325 to receive a squeezing force moving away from the fixing member 31, so that the clamping seat 325 slides away from the fixing member 31 under the combined action of the slider 3251, the guiding column 3253 and the guiding groove 3254 to release the locking of the fixing member 31.
[0049] Embodiment 5
[0050] Reference Figure 7 - Figure 8 Figure 8 , what makes this embodiment different from the second embodiment is that a tension member 35 is provided inside the grounding member 1. The tension member 35 includes a fixed column 351 provided inside the grounding member 1. A steel wire rope 352 is provided on the fixed column 351. The two ends of the steel wire rope 352 are respectively fixedly connected to the sliding member 324 and the clamping seat 325;
[0051] Specifically, the fixed column 351 is fixedly connected to the grounding member 1, and the steel wire rope 352 is wound around the outer surface of the fixed column 351;
[0052] In use, in conjunction with Embodiment 3 and Embodiment 2, when the sliding member 324 moves upward, it will pull the steel wire rope 352, causing one end of the steel wire rope 352 to be subjected to an upward pulling force. Since the steel wire rope 352 is wound around the outer surface of the fixed column 351 and is not fixedly connected to the surface of the fixed column 351 but only in contact, the pulling force received by one end of the steel wire rope 352 will be transmitted along its own length to the other end. This pulling force will pull the clamping seat 325 to move away from the fixing member 31, causing the clamping seat 325 to slide away from the fixing member 31 under the combined action of the slider 3251, the guide post 3253, and the guide groove 3254 to release the locking of the fixing member 31.
[0053] Embodiment 6
[0054] Refer to Figures 2 - 7 , what is different about this embodiment from the first embodiment is that the fixing member 31 includes a threaded post 311 provided on the grounding member 1, a threaded hole 312 is provided on the grounding member 1, the threaded post 311 is threadedly connected to the threaded hole 312, a fixing seat 313 is provided on the threaded post 311, a fixing gear 314 is provided on the lower side of the fixing seat 313, the fixing gear 314 is fixedly connected to the threaded post 311, and the fixing gear 314 is snap-connected to the clamping seat 325;
[0055] Specifically, the fixing seat 313 and the threaded post 311 are connected in a rotatable manner. Refer to Figure 2, a groove 3131 adapted to the grounding member 1 is provided on the side wall of the fixed column 351. When the operator rotates the threaded column 311, the threaded column 311 will move up and down under the action of the thread. Thanks to the groove design on the side wall of the fixed column 351, the fixed column 351 can remain stable during this process and will not deflect in angle. This enables the fixed seat 313 to smoothly move upward along the grounding member 1, thereby achieving accurate and stable positioning and operation. The clamping seat 325 is clamped and connected to the fixed gear 314, and the limiting surface a contacts the tooth groove wall of the fixed gear 314, enabling the clamping seat 325 to well limit the fixed gear 314, so as to well lock the threaded column 311 and the grounding member 1, preventing the grounding member 1 from rotating independently, so that the operator can adjust the angle of the grounding member 1 according to the direction of the aluminum busbar to ensure that the opening direction of the grounding member 1 is accurately matched with the direction of the aluminum busbar. When the clamping seat 325 is not clamped to the fixed gear 314, the locking of the fixed gear 314 is released, that is, the locking between the threaded column 311 and the grounding member 1 is released. At this time, the threaded column 311 can be freely rotated. When the grounding member 1 is suspended, the clamping seat 325 is clamped to the fixed gear 314 to achieve the effect of locking the grounding member 1, ensuring that the grounding member 1 is stable and reliable during the suspension process and will not rotate due to external forces and other factors. After the suspension, the clamping seat 325 is not clamped to the fixed gear 314 again, achieving the effect of releasing the locking of the grounding member 1 and the threaded column 311. At this time, the grounding member 1 will not affect the overall suspension, and at the same time, the operator can rotate the threaded column 311 to make the fixed seat 313 cooperate with the grounding member 1 to fix the aluminum busbar, ensuring the stability and reliability of the grounding operation;
[0056] It should be noted that the side wall of the threaded column 311 can be connected to an insulating rod (not shown in the figure), enabling the operator to hang the grounding member 1 on the aluminum busbar through the insulating rod for fixing operations;
[0057] During use, in conjunction with Embodiment 2, when the swinging member 224 and the grounding member 1 cooperate to effectively limit the aluminum busbar, and at the same time in conjunction with Embodiment 3, Embodiment 4, and Embodiment 5, the clamping seat 325 moves away from the fixing member 31, that is, the clamping seat 325 moves away from the fixed gear 314, so that the limiting surface a does not contact the tooth groove wall of the fixed gear 314, releasing the restriction of the clamping seat 325 on the fixed gear 314. At this time, the operator can rotate the threaded column 311, so that the threaded column 311 drives the fixed gear 314 to move upward under the action of the thread, and the fixed seat 313 moves upward along the grounding member 1 under the action of the groove with the push of the threaded column 311 to contact the aluminum busbar, fixing the grounding member 1 to the aluminum busbar and improving the stability of the grounding member 1 suspended on the aluminum busbar.
[0058] Finally, it should be pointed out that the methods and devices described in detail above are only 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 the present invention.
Claims
1. A grounding device for quickly hanging aluminum rows, characterized in that: including, a grounding part (1); a limiting part (2) slidably arranged on the grounding part (1); a fixing part (3), the fixing part (3) includes a fixing member (31) and a clamping member (32) arranged on the grounding part (1), and the movement of the limiting part (2) drives the displacement of the clamping member (32); When the clamping member (32) clamps the fixing member (31), the grounding part (1) is fixed to the fixing member (31), so that the grounding part (1) can be suspended according to the direction of the aluminum busbar. During the process of the grounding part (1) being suspended on the aluminum busbar, the limiting part (2) will adaptively slide to an appropriate position along with the width of the aluminum busbar to form a limit on the aluminum busbar.
2. The grounding device for quickly hanging aluminum rows according to claim 1, characterized in that: The clamping member (32) includes a set of symmetrically arranged sliding seats (321), and the two sliding seats (321) are arranged in a mirror image with the central axis of the grounding part (1) as the axis of symmetry. A fixing rod (322) is jointly arranged between the two sliding seats (321). A guiding hole (323) is arranged on the grounding part (1), and the fixing rod (322) is slidably connected with the guiding hole (323). A sliding member (324) is arranged between the two sliding seats (321), and a clamping seat (325) is arranged inside the grounding part (1).
3. The grounding device for quickly hanging aluminum rows according to claim 2, wherein: A linkage member (33) is arranged between the clamping seat (325) and the sliding member (324). The linkage member (33) includes a linkage block (331) arranged on the sliding member (324). The linkage block (331) is arranged in an inverted T shape. A set of symmetrically arranged inclined slots (332) are arranged on the clamping seat (325), and the linkage block (331) is slidably connected with the inclined slots (332).
4. The grounding device for quickly hanging aluminum rows according to claim 2, characterized in that: A rotating member (34) is arranged inside the grounding part (1). The rotating member (34) includes a rotating column (341) arranged inside the grounding part (1). Two swinging blocks (342) are arranged on the side wall of the rotating column (341). The included angle between the two swinging blocks (342) is 90°. A pushing block (343) is arranged on the side wall of the sliding member (324), and the pushing block (343) contacts one of the swinging blocks (342), and the other swinging block (342) contacts the clamping seat (325).
5. The grounding device for quickly hanging aluminum rows according to claim 2, characterized in that: A tension member (35) is arranged inside the grounding part (1). The tension member (35) includes a fixing column (351) arranged inside the grounding part (1). A steel wire rope (352) is arranged on the fixing column (351), and the two ends of the steel wire rope (352) are respectively fixedly connected with the sliding member (324) and the clamping seat (325).
6. The grounding device for quickly hanging aluminum rows according to claim 2, characterized in that: The fixing member (31) includes a threaded column (311) arranged on the grounding part (1). A threaded hole (312) is arranged on the grounding part (1), and the threaded column (311) is threadedly connected with the threaded hole (312). A fixing seat (313) is arranged on the threaded column (311). A fixing gear (314) is arranged on the lower side of the fixing seat (313), and the fixing gear (314) is fixedly connected with the threaded column (311). The fixing gear (314) is in clamping connection with the clamping seat (325).
7. The grounding device for quickly hanging aluminum rows according to claim 6, characterized in that: The card component (32) further includes a slider (3251) disposed on the lower side of the card seat (325). A first spring (3252) is provided on the side wall of the slider (3251). A set of symmetrically arranged guide posts (3253) are provided on the side wall of the slider (3251). A guide groove (3254) adapted to the guide posts (3253) is formed on the grounding member (1). The guide posts (3253) are slidably connected to the guide groove (3254).
8. The grounding device for quickly hanging aluminum rows according to claim 7, characterized in that: The limiting portion (2) includes a tension groove (211) formed on the grounding member (1). A fixed block (212) is provided in the tension groove (211). A sliding groove (213) is provided on the side wall of the grounding member (1). A sliding rod (214) is provided in the sliding groove (213). A tension spring (215) is jointly provided between the sliding rod (214) and the fixed block (212). A sliding seat (216) is fixedly connected to the side wall of the sliding rod (214).
9. The grounding device for quickly hanging aluminum rows according to claim 8, characterized in that: The limiting portion (2) further includes a second spring (221) disposed in the sliding seat (216). A T-shaped block (222) is provided on the side wall of the second spring (221). A set of symmetrically arranged extrusion blocks (223) are provided on the side wall of the T-shaped block (222). A swinging member (224) is provided on the side wall of the sliding seat (216). A limiting groove (225) is provided on the side wall of the swinging member (224).
10. The grounding device for quickly hanging aluminum rows according to claim 9, characterized in that: The card component (32) further includes an extrusion surface (3211) disposed on the sliding seat (216). A connecting column (3212) is provided on the side wall of the sliding seat (321). The connecting column (3212) is in contact with the sliding seat (216).