Slide aid for overhead power line grounding tools

The slide aid for overhead power line grounding tools addresses the challenges of adjusting the grounding clamp position by providing vertical tilt and horizontal rotation, ensuring smooth movement over insulator strings for efficient grounding operations.

JP7807267B2Active Publication Date: 2026-01-27TOHOKU ELECTRIC POWER +1
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Patent Information

Application Number
JP2022040728
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-03-15
Publication Date
2026-01-27
Estimated Expiration
2042-03-15

AI Technical Summary

Technical Problem

Conventional auxiliary tools for overhead power line grounding face challenges in adjusting the connection position of the grounding clamp due to varying connection heights, limited vertical and horizontal adjustments, and fixed dimensions that hinder smooth movement over insulator strings, making it difficult to approach the connection destination efficiently.

Method used

The slide aid features an extendable insulating control rod with a grounding clamp, a sliding part with inclined sliding plates, and an adjustable mounting system that allows for vertical tilt, horizontal rotation, and precise attachment to the insulator string, ensuring smooth movement and efficient grounding operations.

Benefits of technology

The slide aid facilitates efficient and precise grounding by allowing vertical and horizontal adjustments, enabling smooth movement over insulator strings, thereby improving the efficiency and ease of grounding operations.

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Abstract

To enable an adjustment of an attachment height of a ground tool, enable a rotation of them to a horizontal direction while being vertically inclined, expand a degree of freedom of a connection mode with the mounted ground tool, and realize efficiency of a ground operation of an overhead transmission line.SOLUTION: A slide assisting tool 1 includes: a slide part 2 that is sliding on an insulator string G while being over insulators G1 and G1; and an attachment part 3 which can detach and attach an insulation operation rod E1 to / from them while being coupled onto the slide part 2. The slide part 2 includes: a pair of slide boards 4 that is inclined to a direction where both end parts are separated from the insulator string G, and a side part is inclined so as to be engaged to a side part of the insulator string G, and if moved along the insulator string G while restricting the movement to the side direction in accordance with an extrusion by the insulation operation rod E1; and a binding member 5 that binds them while overlapping between the slide boards 4 and 4. The attachment part 3 includes: a frame 6 fixed to the binding member 5; an attachment clamp 7 that grips the insulation operation rod E1; and a support member 8 which can adjust the height of the attachment clamp 7 onto the frame 6 so as to be movable while being inclined to a vertical direction, and can rotatably support in horizontal.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to an auxiliary tool for operating a long insulated operating rod having a grounding clamp at the tip to which a grounding wire connected to the tower side is connected, and moving it over an insulator string that holds the transmission line to the tower, in order to prevent electric shock accidents due to residual voltage caused by electrostatic induction on the transmission line during construction of an overhead transmission line. [Background technology]

[0002] A grounding tool for grounding a power line that has been cut off during work such as replacement or repair of the overhead power line is grounded via the steel tower to which the overhead power line is attached. This type of grounding tool is equipped with a grounding clamp at the tip of an extendable insulating control rod that grips the power line or its surrounding metal fittings, and is used by connecting a grounding wire connected to the grounding clamp to the steel tower. Because the overhead power line is attached to the steel tower via a pair of parallel insulator strings each consisting of a number of insulators, the grounding tool is equipped with an auxiliary tool that guides the insulating control rod along the insulator strings so that the grounding clamp at the tip can be aimed at a gripping position for the power line, etc. Conventional auxiliary tools, as described in Patent Documents 1 to 4, include a sliding member that slides along the insulator string while moving between the insulators, and an attachment member that allows an insulating operating rod to be attached and detached to the sliding member. The tip of the sliding member is curved with a bulge toward the insulator string, and is inclined along the side of the insulator string to restrict lateral movement. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Utility Model Application Publication No. 61-108007 [Patent Document 2] Japanese Utility Model Application Publication No. 01-127313 [Patent Document 3] Japanese Utility Model Application Publication No. 04-043321 [Patent Document 4] Publication number 07-047929 Summary of the Invention [Problem to be solved by the invention]

[0004] In the auxiliary tool attached to the above-mentioned conventional insulating control rod, the connection destination of the ground clamp is to a metal fitting such as a transmission line or a nearby arcing horn, so the connection height varies, the long insulating control rod bends, and the vertical angle between the insulating control rod and the insulator string changes depending on the distance traveled on the insulator string, making it difficult to adjust the connection position of the ground clamp at the tip of the insulating control rod up and down from the limited work space on the tower.Grounding work is usually performed by standing at the tip of the tower arm (the insulator string retention part).However, if there is not enough space for the worker to stand, the insulating control rod is extended diagonally toward the insulator string from a position close to the tower on an arm extending laterally from the tower.However, because the insulating control rod and the sliding member are fixed by a mounting member, it is difficult to approach the connection destination of the ground clamp using the insulating control rod. Because the sliding member is placed on a pair of parallel insulator strings, it is not possible to adjust the engagement means to prevent lateral movement on-site to accommodate the different spacing between the insulator strings depending on the tower. The insulation control rod has a telescopic structure, and because the diameters of each part vary, the attachment points to the insulation control rod are limited, which can lead to deviations from the appropriate attachment position. If the attachment position could be changed, it would be useful to use a common insulation control rod even if the height of the connection point or the flexibility of the insulation control rod changes, or even if the hand position varies depending on the physique of the worker. When transporting auxiliary tools to the tower, the worker climbing the tower can easily carry them up, but because the dimensions of the sliding member are fixed in advance according to the spacing between the insulator strings, if the outer diameter increases to match the spacing between the insulator strings, the auxiliary tool must be lifted using a pulley and rope. It is not easy to attach the fastener for fixing the insulating control rod to the auxiliary tool with the appropriate gripping force, and excessive tightening may damage the insulating control rod, or incomplete fixation may hinder the movement of the insulating control rod. Therefore, the present invention aims to provide a slide aid that can adjust the mounting height of the grounding tool, tilt the grounding tool up and down, and rotate it horizontally, thereby allowing the attached insulating operating rod to move smoothly over the insulator string, thereby facilitating approach to the connection destination and making grounding work more efficient. [Means for solving the problem]

[0005] To solve the above problems, the sliding aid for the overhead power transmission line grounding tool of the present invention has an extendable insulating control rod E1 with a grounding clamp at its tip to which a grounding wire is connected, and the grounding clamp is guided along the insulator string G toward the power transmission line or a gripping position nearby. The sliding aid 1 has a sliding part 2 that slides on the insulator string G while crossing between the insulators G1, G1, and an attachment part 3 that is connected to the sliding part 2 and to which the insulating control rod E1 can be attached and detached. The sliding portion 2 includes a pair of sliding plates 4, both ends of which are inclined in a direction away from the insulator string G, and at least one of which has an inclined side portion that engages with the side of the insulator string G, so that the sliding plates 4 move along the insulator string G while being constrained from moving sideways as the insulating operation rod E1 is pushed out, and a connecting member 5 that spans between the sliding plates 4, 4 and connects them. The mounting portion 3 includes a base 6 fixed to the connecting member 5, a mounting clamp 7 that grips the insulating operation rod E1, and a support member 8 that supports the mounting clamp 7 on the base 6 so that its height can be adjusted, it can tilt up and down, and it can rotate horizontally. [Effects of the Invention]

[0006] According to the present invention, the mounting height of the grounding tool can be adjusted, the grounding tool can be tilted up and down, and can be rotated horizontally, so the device can be displaced in a manner that allows it to be tilted horizontally and vertically relative to the attached grounding tool, allowing the grounding tool to be moved smoothly on the insulator string, facilitating the approach operation of the grounding tool toward the connection position of the grounding clamp, and improving the efficiency of grounding work. [Brief explanation of the drawings]

[0007] [Figure 1] FIG. 1 is a perspective view of a slide assisting tool according to the present invention. [Figure 2] FIG. 2 is a front view of the slide assisting tool of FIG. 1. [Figure 3] FIG. 2 is a side view of the slide assisting tool of FIG. 1. [Figure 4] FIG. [Figure 5] FIG. [Figure 6] FIG. [Figure 7] FIG. 10 is a side view of the mounting clamp. [Figure 8] FIG. 10 is a perspective view of a positioning clamp. [Figure 9] FIG. 10 is a front view of the positioning clamp. DETAILED DESCRIPTION OF THE INVENTION

[0008] An embodiment of the present invention will be described with reference to the drawings. In Fig. 1, the slide assisting tool 1 slides on a pair of parallel insulator strings G, which are made up of a series of numerous insulators G1 that fasten the transmission line to the pylon, to guide the grounding clamp of the grounding tool E from the pylon side to the transmission line side. The grounding tool E has a grounding clamp (not shown) at its tip that electrically connects to the transmission line or a surrounding conductor such as an arcing horn, and is equipped with an insulating operating rod E1 from which a grounding wire (not shown) that is connected to the pylon T is drawn out, and the grounding clamp is gripped onto the connection target by opening and closing the insulating operating rod E1 at the hand.

[0009] As shown in Figures 1 to 3, the slide support device 1 comprises a sliding part 2 that slides along the insulator string G while spanning between the umbrella parts of the insulator G1, and an attachment part 3 that is connected to approximately the middle part of the sliding part 2 and to which the insulating operating rod E1 can be attached and detached.

[0010] The sliding section 2 comprises a pair of parallel sliding plates 4, 4 made of smooth FRP, and a connecting member 5 that spans between and connects these sliding plates 4, 4. The sliding plate 4 has a warped portion 4a that slopes away from the insulator string G toward its tip, and an engaging portion 4b that slopes along the opposing sides of the insulator string G to prevent lateral movement. The connecting member 5 is made up of a pair of elongated plates with an L-shaped cross section that extend in the direction in which the sliding plates 4 are arranged and are parallel to each other in the front and rear. The connecting member 5 has elongated holes 5b through which butterfly bolts 5a that are fastened to the sliding plate 4 are inserted, allowing the fixed position relative to the sliding plate 4 to be adjusted. Note that the elongated holes 5b may be replaced with multiple through holes through which butterfly bolts 5a can be inserted, as long as the fixed position relative to the sliding plate 4 can be adjusted.

[0011] The mounting section 3 comprises a base 6 that is bolted across the connecting members 5, 5, a mounting clamp 7 that holds the insulating operating rod E1, a support member 8 that supports the mounting clamp 7 on the base 6, and positioning clamps 9 that hold the insulating operating rod E1 in front of and behind the mounting clamp 7 and restrain the movement of the insulating operating rod E1.

[0012] The base 6 comprises a support plate 10 whose both side edges are bolted to the connecting members 5, and a bracket 11 that stands vertically in the middle of the support plate 10.

[0013] 6 and 7, the mounting clamp 7 comprises a bearing plate 12 with a generally U-shaped cross section, a pair of mounting clamp pieces 13, 14 that are rotatably supported vertically by a horizontal shaft between both ends of the upright piece of the bearing plate 12, have gripping recesses along the outer periphery of the insulated operating rod E1, and have opposing tips that can be opened and closed, and a first locking member 15 that holds the mounting clamp pieces 13, 14 in the gripping position. The first locking member 15 has its base supported vertically rotatably at the tip of one of the mounting clamp pieces 13 by a horizontal rotation shaft, and comprises a threaded shaft 15a, which is a first screw, inserted into an engagement recess 14a that opens at the tip of the other mounting clamp piece 14 when the mounting clamp pieces 13, 14 approach each other, and a screw tube 15b, which is a second screw that screws into the tip of the threaded shaft 15a and presses the mounting clamp pieces 13, 14 together when tightened onto the threaded shaft 15a. A pair of opposing semi-cylindrical adjustment collars 16 made of synthetic resin, corresponding to the diameter of the insulated operating rod E1, are fixed by bolts to the inside of the mounting clamp pieces 13, 14 to prevent damage to the insulated operating rod E1 due to gripping of the mounting clamp pieces 13, 14. The screw shaft 15a and the screw cylinder 15b may be interchangeable due to their threaded engagement.

[0014] The support member 8 is equipped with a height adjustment plate 17 that is inserted into the vertical fitting gap 11a of the bracket 11 and is penetrated horizontally together with the bracket 11 by a pivot pin 18, and a clevis 20 that is penetrated vertically together with the upper end of the height adjustment plate 17 by a horizontal shaft 19 so as to be rotatable vertically and is secured with a nut, connecting the height adjustment plate 17 to the mounting clamp 7. The height adjustment plate 17 has a plurality of pin holes 17a for height adjustment that are arranged vertically in the center in the horizontal direction and through which the pivot pins 18 pass so as to be insertable and removable. The clevis 20 is continuous with a vertical shaft 21 that penetrates the bearing plate 12 vertically and is secured so as to be rotatable horizontally.

[0015] 8 and 9, the positioning clamp 9 is attached adjacent to the adjustment collars 16 that protrude from both the front and rear of the mounting clamp 7 on the insulating operating rod E1, and prevents relative movement of the insulating operating rod E1 from the mounting clamp 7. The positioning clamp 9 has a gripping recess along the outer periphery of the insulating operating rod E1 and is equipped with a pair of positioning clamp pieces 22, 23 made of synthetic resin that are connected to each other so as to be rotatable vertically by a horizontal shaft and have opposing tip ends that can be opened and closed, and a clamp lever 24 that serves as second locking means for holding the positioning clamp pieces 22, 23 in the gripping position. The positioning clamp piece 23 has an engaging recess 23a that opens at the tip and a notch 23b that thins the tip. The clamp lever 24 comprises a screw cylinder 24a, which is a first screw whose base is supported vertically rotatably on the tip of one of the positioning clamp pieces 22, a screw shaft 24b, which is a second screw whose one end is threadedly engaged with the screw cylinder 24a and inserted into the engagement recess 23a by rotation of the screw cylinder 24a, and whose other end has a knob 24d fixed thereto that abuts against the notch 23b, and a spring 24c provided around the screw shaft 24b together with a spring cover 24e. The clamp lever 24 moves back and forth along the screw cylinder 24a by rotating the screw shaft 24b around its axis, and performs operations to tighten or loosen the positioning clamp pieces 22, 23. The spring 24c is engaged between the knob 24d and the inner end of the spring cover 24e on the positioning clamp piece 23 side, and when the screw shaft 24b and the engagement recess 23a are engaged, tightening the knob 24d generates a spring force equivalent to the contracted length that grips the positioning clamp pieces 22, 23. In the initial engagement state between the screw shaft 24b and the engagement recess 23a, the spring 24c is in an uncompressed state, and a gap is formed between the positioning clamp piece 23 and the spring cover 24e that exposes the screw shaft 24b. However, when the knob 24d is tightened, the spring cover 24e abuts against the positioning clamp piece 23 and further compresses the spring 24c, pushing the positioning clamp piece 23 toward the positioning clamp piece 22 and gripping the insulated operating rod E1. The screw tube 24a and the screw shaft 24b may be interchangeable due to their threaded engagement.

[0016] When using the grounding tool E to ground a power transmission line, this slide aid 1 adjusts the position of the butterfly bolt 5a appropriately within the long hole 5b, matches the spacing between the engaging portions 4b, 4b of the pair of sliding plates 4, 4 to that of the insulator strings G, G, and fixes it, and also selects an appropriate pin hole 17a in the height adjustment plate 17 according to the connection position of the grounding clamp, passes the pivot pin 18 through it, and adjusts the installation height of the insulating operating rod E1.

[0017] Next, an appropriate mounting position on the insulating operating rod E1 is selected, the insulating operating rod E1 is clamped between the mounting clamp pieces 13, 14 of the mounting clamp 7, the locking member 15 is tilted down, the screw shaft 15a is inserted into the engagement recess 14a of the mounting clamp piece 14, and the screw tube 15b is tightened, whereby the mounting clamp pieces 13, 14 firmly grip the insulating operating rod E1 via the adjustment collar 16.

[0018] Next, the front and rear sides of the adjustment collar 16 on the insulating operating rod E1 are clamped between the positioning clamp pieces 22, 23 of the positioning clamp 9, and the clamp lever 24 is tilted down to press the screw tube 24a into the engaging recess 23a of the positioning clamp piece 23, whereby the positioning clamp pieces 22, 23 firmly grip the insulating operating rod E1 and prevent misalignment of the insulating operating rod E1 with the mounting clamp 7. When the screw tube 24a is inserted into the engaging recess 23a of the positioning clamp piece 23 and the screw shaft 24b is tightened, the clamp lever 24 elastically grips the positioning clamp pieces 22, 23 with spring force, easily preventing slippage due to insufficient tightening of the insulating operating rod E1 and damage due to excessive tightening.

[0019] After connecting the grounding wire to the pylon, the slide auxiliary tool 1 with the grounding tool E attached is placed on the insulator string G, and the insulating operation rod E1 is pushed out, causing the slide auxiliary tool 1 to move smoothly over the insulator string G and guide the grounding clamp to the connection position. The support member 8 supports the mounting clamp 7 relative to the sliding part 2 so that it can rotate freely up and down with the connection bolt 20, and also supports it so that it can pivot freely with the rotation shaft 21, so that a wide range of inclination of the slide auxiliary tool 1 relative to the insulating operation rod E1 is tolerated, regardless of the bending of the long insulating operation rod E1, the distance traveled on the insulator string G, or the various holding positions taken by the worker. [Explanation of symbols]

[0020] 1 Slide aid 2 Sliding part 3 Mounting part 4 sliding plate 4a Warped part 4b Engagement part 5 Connecting members 5a Wing bolt 5b long hole 6 Mounting stand 7 Mounting clamp 8 Support member 9 Positioning clamp 10 Support plate 11 Bracket 11a Fitting gap 12 Bearing plate 13 Mounting clamp piece 14 Mounting clamp piece 14a Engagement recess 15 Locking member 15a screw shaft 15b screw cylinder 16 Adjusting Color 17 Height adjustment plate 17a Pinhole 18 Pivot pin 19 horizontal axis 20 Clevis 21 Vertical axis 22 Positioning clamp piece 23 Positioning clamp piece 23a Engagement recess 23b Notch 24 Clamp lever 24a screw cylinder 24b Screw shaft 24c spring 24d Pick 24e Spring cover G Insulator Ren G1 insulator E Grounding tool E1 Insulated operating rod

Claims

1. In order to ground a transmission line fastened to a steel tower via a pair of parallel insulator strings each having a number of insulators connected thereto, an extendable insulating operating rod is provided at its tip with a grounding clamp to which a grounding wire is connected, and the insulating operating rod is guided along the insulator strings toward a gripping position on or near the transmission line, a sliding portion that slides on the insulator string while passing between the insulators; a mounting portion coupled to the sliding portion and to which the insulating operating rod can be detachably attached, the sliding portion comprises a pair of sliding plates, both ends of which are inclined in a direction away from the insulator string, and at least one of which has a side portion inclined so as to engage with a side portion of the insulator string, and which move along the insulator string while being constrained from moving sideways as the insulating operating rod is pushed out; a connecting member that connects the sliding plates and extends between them, The mounting portion includes a base fixed to the connecting member; a mounting clamp that holds the insulating operating rod; A slide auxiliary device for an overhead power line grounding tool, characterized in that it comprises a support member that supports the mounting clamp on the base so that it can be adjusted in height, tilted up and down, and rotated horizontally.

2. The slide auxiliary device for an overhead power line grounding tool as described in claim 1, characterized in that the connecting member is attached to at least one of the sliding plates in such a way that its attachment position can be changed in the spacing direction of the sliding plates, thereby adjusting the spacing between the sliding plates.

3. the support member has a pivot part at its upper part that supports the mounting clamp, and a pivot part below the pivot part that is supported by the base, a pivot pin that penetrates through at least one of the upper and lower pivot portions together with the base or the mounting clamp; 3. The slide assisting device for an overhead power transmission line grounding tool according to claim 1, further comprising a height adjusting plate having a plurality of pin holes arranged in the vertical direction, through which the pivot pin can be freely inserted and removed.

4. The support member includes a horizontal shaft that supports the mounting clamp so that the mounting clamp can rotate up and down; 4. The slide assisting tool for an overhead power transmission line grounding tool according to claim 1, further comprising a vertical shaft for supporting the mounting clamp so that the mounting clamp can be turned horizontally.

5. The mounting clamp includes a pair of opposing mounting clamp pieces that grip the insulating operating rod; a first locking means for fixing the pair of mounting clamp pieces at a gripping position of the insulating operating rod; The first locking means includes a first screw whose base end is rotatably supported on the tip end of one of the mounting clamp pieces and which is engageable with the other mounting clamp piece; A slide assisting device for an overhead power transmission line grounding tool as described in any one of claims 1 to 4, characterized in that it is provided with a second screw that is threaded onto the first screw and that, when tightened, presses the other side of the mounting clamp piece toward one side.

6. The slide assisting device for an overhead power transmission line grounding tool as described in claim 5, characterized in that it is provided with collars that are removably fixed to the opposing portions of the pair of mounting clamp pieces so as to surround the insulating operating rod.

7. A slide assist device for an overhead power transmission line grounding tool as described in any one of claims 1 to 6, characterized in that it is provided with a pair of positioning clamps that grip the front and rear sides of the mounting clamp on the insulating operating rod and prevent relative movement between the mounting clamp and the insulating operating rod.

8. The positioning clamp includes a pair of opposing positioning clamp pieces that grip the insulating operating rod; and second locking means for fixing the pair of positioning clamp pieces at the gripping positions of the insulating operating rod, The second locking means includes a first screw whose base end is rotatably supported on the tip end of one of the positioning clamp pieces; a second screw that threads onto the first screw, extends, and is engageable with an engaging recess at the tip of the other positioning clamp piece, and that pushes the other positioning clamp piece toward the first positioning clamp piece when tightened; 8. A slide assisting device for an overhead power transmission line grounding tool as described in claim 7, characterized in that it is further provided with a spring that is compressed between the other positioning clamp piece by tightening the second screw, thereby tightening the positioning clamp by the contracted length and applying a gripping force to the insulating operating rod.

Citation Information

Patent Citations

  • JP1986108007U

  • JP1989127313U

  • JP1992043319U

  • JP1992043321U

  • Grounding tool for overhead power lines

    JP1995047929Y2