Insulator cable bundling tool

By designing an insulator cable bundling tool, the detachability of the front and rear molds and the coordination of the bundling components is solved, and the problem of inconsistency in fixing forces caused by personal differences in operators is achieved, and the insulators and wires are stabilized, which improves the continuity and safety of power transmission.

CN119231376BActive Publication Date: 2025-05-30XIANGYANG POWER SUPPLY COMPANY OF STATE GRID HUBEI ELECTRIC POWER +1
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Patent Information

Application Number
CN202411383514.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-05-30
Estimated Expiration
2044-09-30

AI Technical Summary

Technical Problem

The existing insulator cable bundling methods cause inconsistency in fixing forces due to personal differences of operators, which may cause damage to the conductor or insulators, loosening of the fixing structure, affecting the continuity and safety of power transmission.

Method used

An insulator cable bundling tool is designed, which adopts the removability of the front and rear molds. Through the coordination of the bundling assembly and the closure assembly, the insulator and wire are stabilized.

Benefits of technology

Through this tool, it is possible to achieve stable fixation of insulators and wires under different levels of force of operators, improve the continuity and safety of power transmission, and reduce power failure accidents caused by loose fixed structures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of electricity, and specifically discloses an insulator cable bundling tool, which is provided with a front mold and a rear mold, and the opposite surfaces of the front mold and the rear mold are detachably fixed; the front mold is provided with a bundling component and a surrounding bundling component; the bottom of the bundling component is integrally formed with the top of the surrounding bundling component; the bundling component: fixes the wires on both sides of the insulator to the binding wire; the surrounding bundling component: winds and fixes the binding wire around the surrounding area of the insulator; the bundling component is sequentially provided with a left bundling structure, a base and a right bundling structure from left to right, and the adjacent surfaces of the above three are fixedly connected to each other; the left bundling structure includes a left outer arc plate, a left inner arc plate and a rocker arm; one end of the left outer arc plate is fixed to one side of the base, and the other end of the left outer arc plate extends outwards; the inner wall of the left outer arc plate is threadedly connected to the outer wall of the left inner arc plate; one end of the rocker arm is fixed to the edge of the outer end of the left inner arc plate facing the outside; by using this tool, the problem that different operators have different force application degrees is solved, and to a certain extent, the continuity and safety of power transmission are solved.
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Description

Technical Field

[0001] The present invention belongs to the field of electric power, and particularly relates to an insulator cable bundling tool. Background Art

[0002] In the power transmission system, the stable connection between the conductor and the insulator is an important link to ensure the reliability and safety of the power network. Traditional fixing methods rely on manual operations, and the use of tying wires is particularly common. This process seems simple, but actually involves multiple fine steps, and each step has an important impact on the final fixing effect.

[0003] First, the operator needs to wind the tying wire around the designated area of the insulator. This process requires the tying wire to fit tightly against the surface of the insulator to form a firm base. Subsequently, the two ends of the tying wire are respectively wound around the conductors on both sides of the insulator to form a "bridge" to ensure stable contact between the conductor and the insulator. The last step is to wind and fix the remaining parts of the two ends of the tying wire additionally to reinforce the overall structure and prevent loosening caused by external factors (such as wind force and temperature changes).

[0004] However, although this series of operations follows a standardized process, due to the existence of individual differences among operators, such as force control, operation proficiency, and attention to details, there are often significant variables in actual implementation. For example, some operators may use too much force, resulting in the tying wire being overly tightened, causing physical damage to the conductor or insulator; while others may not achieve sufficient tightening force, making the fixed structure gradually loosen under harsh weather or long-term operation, threatening the continuity and safety of power transmission.

[0005] This operation standard that varies from person to person not only affects the long-term stability and maintenance cost of power facilities, but may also become a potential hidden danger for power system failures. In extreme cases, the instability at the connection between the conductor and the insulator may even lead to power outages, affecting the normal power consumption of the general public, as well as the normal operation of industrial production and public services. Summary of the Invention

[0006] The present invention provides an insulator cable bundling tool to solve the above problems.

[0007] To solve the above problems, the technical solution provided by the present invention is as follows: The insulator cable bundling tool is provided with a front mold and a rear mold, and the front mold and the rear mold are horizontal mirror image structures of each other, and the opposite surfaces of the front mold and the rear mold are detachably fixed;

[0008] The front mold is provided with a bundling component and a surrounding component; the bottom of the bundling component is integrally formed with the top of the surrounding component;

[0009] The bundling assembly: fixes the wires on both sides of the insulator to the binding wire;

[0010] The surrounding bundling assembly: winds and fixes the binding wire around the surrounding area of the insulator;

[0011] The bundling assembly is sequentially provided with a left bundling structure, a base, and a right bundling structure from left to right, and the adjacent surfaces of the above three are fixedly connected to each other;

[0012] The left bundling structure includes a left outer arc plate, a left inner arc plate, and a rocker arm; one end of the left outer arc plate is fixed to one side of the base, and the other end of the left outer arc plate extends outward; the inner wall of the left outer arc plate is threadedly connected to the outer wall of the left inner arc plate; one end of the rocker arm is fixed to the edge of the outer end of the left inner arc plate facing the outside.

[0013] Preferred technical solution; the misaligned area between the starting end of the left outer arc plate and the starting end of the left inner arc plate is an observation area, and the observation area is made of a transparent material; a branch hole is opened at the observation area.

[0014] Preferred technical solution; the left inner arc plate is sleeved on the outer surface of the wire; a first wire-passing hole penetrates through the inner part of the outer wall of the left inner arc plate; a first winding cone is arranged outside the starting end of the left inner arc plate, the first winding cone is hollow, the bottom of the first winding cone communicates with the first wire-passing hole; the tip of the first winding cone and the branch hole are in the same vertical plane.

[0015] Preferred technical solution; one end of the rocker arm is fixed at the first wire-passing hole at the end of the left inner arc plate.

[0016] Preferred technical solution; a groove is arranged inside the base, and the groove matches the convex part of the wire on the insulator.

[0017] Preferred technical solution; the surrounding bundling assembly includes an arc-shaped surrounding bundling body; an arc-shaped notch is opened in the middle of the surrounding bundling body; a threaded surrounding hole is arranged inside the arc-shaped notch, an out-going groove is arranged at the left end of the front side of the surrounding bundling body, and an in-coming groove is arranged at the right end of the front side of the surrounding bundling body, and the in-coming groove and the out-going groove are vertically offset from each other on the front side of the surrounding bundling body.

[0018] Preferred technical solution; a crack is arranged on the side wall of the arc-shaped notch facing the middle of the surrounding bundling body, and the shape of the crack is the same as the shape of the surrounding hole.

[0019] Preferred technical solution; a corresponding number of first pins or first sockets are arranged at a set position on the front side of the front mold, and features matching the first pins or first sockets are arranged at a set position on the rear side of the rear mold.

[0020] Preferred technical solution: A second insertion pin is provided at the upper end of the cross-section of the left outer arc plate of the front mold, and a second insertion hole is provided at the lower end of the cross-section of the left outer arc plate; a second insertion hole is provided at the upper end of the cross-section of the right outer arc-shaped plate of the rear mold, and a second insertion pin is provided at the lower end of the cross-section of the right outer arc-shaped plate of the rear mold.

[0021] Preferred technical solution: An arc-shaped first insertion plate strip is provided at the upper end of the cross-section of the left inner arc plate of the front mold, and an arc-shaped first insertion plate hole is provided at the lower end of the cross-section of the left inner arc plate; an arc-shaped second insertion plate hole is provided at the upper end of the cross-section of the right inner arc plate of the rear mold, and an arc-shaped first insertion plate strip is provided at the lower end of the cross-section of the left inner arc plate.

[0022] The beneficial effects compared with the prior art are as follows. With the above solutions, the present invention realizes the wrapping of the insulator and the guide through the detachable property of the front mold and the rear mold; through the cooperation of the left inner sleeve and the left outer sleeve, the binding wire fixes the left wire; through the cooperation of the right inner sleeve and the right outer sleeve, the binding wire fixes the right wire; through the cooperation of the above four sleeves and the surrounding structure, the fixation of the area around the insulator is realized; through this tool, the problem of different force application degrees of different operators is solved, and to a certain extent, the continuity and safety of power transmission are solved. Description of the Drawings

[0023] In order to more clearly illustrate the technical solutions in the embodiments or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0024] Figure 1 It is a schematic structural diagram of the combination of the insulator and the wire of the present invention;

[0025] Figure 2 It is a general schematic structural diagram of the insulator wire bundling tool of the present invention;

[0026] Figure 3 It is a schematic structural diagram of the front mold of the present invention;

[0027] Figure 4 It is a front-end schematic diagram of the combined structure of the bundling component of the front mold and the bundling component of the rear mold of the present invention;

[0028] Figure 5 It is a rear-end schematic diagram of the combined structure of the bundling component of the front mold and the bundling component of the rear mold of the present invention;

[0029] Figure 6 It is a schematic structural diagram of the surrounding structure of the front mold of the present invention.

[0030] As shown in the above legend: wire 1; insulator 2; surrounding area 3; tying assembly 5; base 6; left tying structure 7; right tying structure 8; tying body 51; left outer arc plate 81; left inner arc plate 71; inlet surrounding groove 510; outlet surrounding groove 511; tying hole 513; crack 514; left outer sleeve 711; left inner sleeve 712; branch hole 713; first winding cone 714; observation area 715; rocker arm 716; first wire threading hole 717. Detailed implementation mode

[0031] For the convenience of understanding the present invention, the present invention will be described in more detail below in conjunction with the drawings and specific embodiments. The drawings show preferred embodiments of the present invention. However, the present invention can be implemented in many different forms and is not limited to the embodiments described in this specification. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure content of the present invention more thorough and comprehensive.

[0032] It should be noted that when an element is referred to as "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "fixed", "integrally formed", "left", "right" and similar expressions used in this specification are only for the purpose of illustration. In the drawings, elements with similar structures are labeled with the same reference numerals.

[0033] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by those skilled in the technical field to which the present invention belongs. The terms used in this specification in the description of the present invention are only for the purpose of describing specific embodiments and are not used to limit the present invention.

[0034] For better understanding of the present invention, the tying wire is sequentially divided into a left retention end, a left tying end, a surrounding tying end, a right tying end and a right retention end; in this way, when explaining the wire 1, the tying wire, the insulator 2 and the tying tool, the overall content of this solution can be understood more conveniently.

[0035] As Figure 1-6 shown: The insulator 2 cable tying tool is provided with a front mold and a rear mold, the front mold and the rear mold are horizontal mirror image structures of each other, and the opposite surfaces of the front mold and the rear mold are detachably fixed;

[0036] The front mold is provided with a tying assembly and a surrounding tying assembly 5; the bottom of the tying assembly is integrally formed with the top of the surrounding tying assembly 5;

[0037] The tying assembly: fixes the wires 1 on both sides of the insulator 2 to the tying wire;

[0038] The tying component 5: winds and fixes the tying wire around the surrounding area 3 of the insulator 2;

[0039] The bundling component is sequentially provided with a left bundling structure 7, a base 6, and a right bundling structure 8 from left to right, and the adjacent surfaces of the above three are fixedly connected to each other;

[0040] The left bundling structure 7 includes a left outer arc plate 81, a left inner arc plate 71, and a rocker arm 716; one end of the left outer arc plate 81 is fixedly connected to one side of the base 6, and the other end of the left outer arc plate 81 extends outward; the inner wall of the left outer arc plate 81 is threadedly connected to the outer wall of the left inner arc plate 71; one end of the rocker arm 716 is fixedly connected to the outer edge of the end of the left inner arc plate 71 facing the outside.

[0041] The misaligned area between the starting end of the left outer arc plate 81 and the starting end of the left inner arc plate 71 is an observation area 715, and the observation area 715 is made of a transparent material; a branch hole 713 is opened at the observation area 715.

[0042] The left inner arc plate 71 is sleeved on the outer surface of the wire 1; a first wire threading hole 717 penetrates through the outer wall inside the left inner arc plate 71; a first winding cone 714 is provided outside the starting end of the left inner arc plate 71, the first winding cone 714 is hollow, and the bottom of the first winding cone 714 communicates with the first wire threading hole 717; the tip of the first winding cone 714 and the branch hole 713 are in the same vertical plane.

[0043] One end of the rocker arm 716 is fixedly connected to the first wire threading hole 717 at the end of the left inner arc plate 71.

[0044] A groove is provided inside the base 6, and the groove is matched with the convex part of the wire 1 on the insulator 2.

[0045] The tying component 5 includes an arc-shaped tying body 51; an arc-shaped notch is opened in the middle of the tying body 51; a threaded tying hole 513 is provided inside the arc-shaped notch, an outlet groove 511 is provided at the left end of the front side of the tying body 51, and an inlet groove 510 is provided at the right end of the front side of the tying body 51. The inlet groove 510 and the outlet groove 511 are vertically misaligned on the front side of the tying body 51.

[0046] A crack 514 is provided on the side wall of the arc-shaped notch facing the middle of the tying body 51, and the shape of the crack 514 is the same as the shape of the tying hole 513.

[0047] A corresponding number of first pins or first sockets are provided at the set positions on the front side of the front mold, and features matching the first pins or first sockets are provided at the set positions on the rear side of the rear mold.

[0048] A second insertion pin is provided at the upper end of the cross-section of the left outer arc plate 81 of the front mold, and a second insertion hole is provided at the lower end of the cross-section of the left outer arc plate 81; a second insertion hole is provided at the upper end of the cross-section of the right outer arc-shaped plate of the rear mold, and a second insertion pin is provided at the lower end of the cross-section of the right outer arc-shaped plate of the rear mold.

[0049] An arc-shaped first insertion plate strip is provided at the upper end of the cross-section of the left inner arc plate 71 of the front mold, and an arc-shaped first insertion plate hole is provided at the lower end of the cross-section of the left inner arc plate 71; an arc-shaped second insertion plate hole is provided at the upper end of the cross-section of the right inner arc plate of the rear mold, and an arc-shaped first insertion plate strip is provided at the lower end of the cross-section of the left inner arc plate 71.

[0050] As Figure 1 shown, first, the wire 1 is placed in the placement groove at the top of the insulator 2; according to the corresponding electrical standards, the left bundling end of the binding wire winds a corresponding number of turns around the wire 1 on the left side to form a left bridge connection, the surrounding end winds a corresponding number of turns in the surrounding area 3 of the insulator 2 to form a firm base, the right bundling end winds a corresponding number of turns around the wire 1 on the right side to form a right bridge connection, and finally, the left retention end and the right retention end are bundled and fixed, thereby completing the fixation of the wire 1, the insulator 2, and the binding wire, and realizing the stable connection between the wire 1 and the insulator 2. As Figure 2-6 shown: One embodiment of the present invention is: the front mold is attached to the front side of the insulator 2, and the rear mold is attached to the rear side of the insulator 2. Since the left outer arc plate 81 of the front mold and the left outer arc plate 81 of the rear mold cooperate with each other through corresponding first insertion pins and first insertion holes to form a left outer sleeve 711, and since the right outer arc plate of the front mold and the right outer arc plate of the rear mold cooperate with each other through corresponding second insertion pins and second insertion holes to form a right outer sleeve;

[0051] The corresponding left inner arc plate 71 of the front mold and the left inner arc plate 71 of the rear mold are combined to form a left inner sleeve

[0052] tube 712; the right inner arc plate of the front mold and the right inner arc plate of the rear mold are combined to form a right inner sleeve; It should be noted that: for the left inner sleeve 712: the first insertion plate strip at the upper end of the left inner arc plate 71 of the front mold is inserted into the second insertion plate hole at the upper end of the left inner arc plate 71 of the rear mold, so that the upper end of the left inner arc plate 71 of the front mold is fixed to the upper end of the left inner arc plate 71 of the rear mold; the first insertion plate hole at the lower end of the left inner arc plate 71 of the front mold cooperates with the second insertion plate strip at the lower end of the left inner arc plate 71 of the rear mold, so that the left inner arc plate 71 of the front mold and the left inner arc plate 71 of the rear mold are combined to form a left inner sleeve 712;

[0053] For the right inner sleeve: the first insertion plate strip at the upper end of the right inner arc plate of the front mold is inserted into the second insertion plate hole at the upper end of the right inner arc plate of the rear mold, so that the upper end of the right inner arc plate of the front mold is fixed to the upper end of the right inner arc plate of the rear mold; the first insertion plate hole at the lower end of the right inner arc plate of the front mold cooperates with the second insertion plate strip at the lower end of the right inner arc plate of the rear mold, so that the right inner arc plate of the front mold and the right inner arc plate of the rear mold are combined to form a right inner sleeve;

[0054] Further, the outer wall of the left inner sleeve 712 is provided with threads (because the outer wall of the left inner arc plate 71 is provided with threads), and the inner wall of the left outer sleeve 711 is provided with threads (because the inner wall of the left outer arc plate 81 is provided with threads). The left inner sleeve 712 rotates spirally inside the left outer sleeve 711. By rotating the left inner sleeve 712, the left inner sleeve 712 moves horizontally back and forth inside the left outer sleeve 711.

[0055] Similarly, by rotating the right inner sleeve, the right inner sleeve moves horizontally back and forth inside the right outer sleeve.

[0056] Further, in order to facilitate the binding wire to pass through the left inner sleeve 712 and the right inner sleeve, the first wire-passing hole 717 penetrates through the left inner arc plate 71, and the corresponding other first wire-passing hole 717 also penetrates through the right inner arc plate. In this way, the binding wire can penetrate through from the end of the left inner arc plate of the left inner sleeve 712, pass through the branch hole 713 and the binding hole 513 in sequence, enter the other first wire-passing hole 717 of the right inner arc plate of the right inner sleeve, and extend to the outside.

[0057] Further, in order to facilitate the binding wire to enter the branch hole 713 from the first wire-passing hole 717, the left inner sleeve 712 and the left outer sleeve 711 are arranged in a front-back dislocation manner, and the dislocation area between the two is the observation area 715. In order for the operator to observe more clearly, the material of the corresponding observation area 715 of the left outer sleeve 711 is a transparent material, which is made of a transparent resin material considering the characteristics of electricity.

[0058] Further, in order to facilitate the operator to quickly pass one end of the binding wire through the branch hole 713, the branch hole 713 is arranged in the observation area 715 and is close to the starting end of the first wire-passing hole 717. Further, the branch hole 713 is arranged in an inclined shape, with the higher part facing the insulator 2 and the lower part facing the starting end of the first wire-passing hole 717. When one end of the binding wire passes through the first wire-passing hole 717, due to the characteristic of the front-high and back-low of the branch hole 713, it will naturally enter the inside of the branch hole 713.

[0059] Further, in order to enable the binding wire to tightly wind around the wire 1 when winding the wire 1, first winding cones 714 are respectively arranged at the starting ends of the left inner arc plate 71 of the left inner sleeve and the right inner arc plate of the right inner sleeve. The first winding cone 714 is conical and hollow. The tip of the first winding cone 714 extends towards the outer surface of the wire 1. According to the electrical standard, the distance between the tip of the first winding cone 714 and the outer wall of the wire 1 is set. According to Figure 3 and Figure 6As shown in the figure: An arc-shaped notch is provided in the middle of the binding body 51 of the front mold, and an arc-shaped notch is also provided in the middle of the binding body 51 of the corresponding rear mold; the two arc-shaped notches are combined to form a surrounding structure, and this surrounding structure matches the middle structure of the insulator 2;

[0060] In order to enable the binding wire to surround the middle part of the insulator 2, a threaded binding hole 513 is provided inside the binding body 51, and a crack 514 is provided on the outer wall close to the arc-shaped notch in the middle of the surrounding area 3. The shape of this crack 514 is the same as that of the binding hole 513; one opening side of the crack 514 communicates with one side of the binding hole 513 facing the surrounding area 3, and the other opening side of the crack 514 penetrates the outer wall at the arc-shaped notch.

[0061] Furthermore, a wire inlet hole is provided on one side of the surrounding structure (the inlet groove 510 of the front mold binding body 51 and the inlet groove 510 of the rear mold binding body 51 are combined to form the wire inlet hole), and a wire outlet hole is provided on the other side of the surrounding structure (the outlet groove 511 of the front mold binding body 51 and the outlet groove 511 of the rear mold binding body 51 are combined to form the wire outlet hole).

[0062] Construction process of the insulator 2 cable binding tool:

[0063] Prelude: 1. Guide it in the groove at the top of the insulator 2;

[0064] 2. Insulator 2 cable binding tool

[0065] 3. One binding wire

[0066] Step 1: Attach the front mold to the front side of the upper end of the insulator 2, and attach the rear mold to the rear side of the upper end of the insulator 2;

[0067] Step 2: Through the cooperation of the pins and sockets of the front mold and the rear mold, the entire tool wraps the upper end of the insulator 2;

[0068] It should be noted that: The left outer sleeve 711, the right outer sleeve, the left inner sleeve 712 and the right outer cylinder are also fixed in the same way, which has been described above and will not be elaborated here.

[0069] Step 3: First, insert the left retention end of the binding wire into the first through hole of the left inner sleeve 712, then pass through the left winding cone, the left branch hole 713, the wire inlet hole of the binding structure, the binding hole 513, the wire outlet hole, the right branch hole 713 of the right inner sleeve, the right winding cone and the first through hole of the right inner sleeve; thus forming the routing direction of the entire binding wire inside the tool;

[0070] Step 4: Since the left and right retention ends have a certain length, only the corresponding length needs to be reserved, and the remaining part of the tying wire is the winding part; therefore, as long as the specified lengths of the left and right retention ends are reserved, it is only necessary to hold the left and right retention parts tightly with both hands and shake the two side rocker arms 716 at the same time;

[0071] Step 5: The left tying end of the tying wire will rotate around the outer wall of the left wire 1, so as to wind the left tying end around the left wire 1. Similarly, the right tying end is wound around the right wire 1;

[0072] Step 6: When the lengths of the left and right tying ends are wound up, if the rocker arm 716 is rotated continuously, the left and right tying ends will simultaneously pull both ends of the surrounding tying end from the wire inlet hole and the wire outlet hole until the surrounding tying end winds around the surrounding area 3 of the insulator 2 through the crack 514 at the surrounding hole 513; thus realizing the winding of the middle part of the insulator 2.

[0073] Step 7: Separate the front mold and the rear mold;

[0074] Step 8: Fix the left and right retention ends by knotting or tying them to each other.

[0075] It should be noted that the above technical features continue to be combined with each other to form various embodiments not listed above, which are all regarded as within the scope described in the specification of the present invention; and for those of ordinary skill in the art, improvements or transformations can be made according to the above description, and all such improvements and transformations should fall within the protection scope of the appended claims of the present invention.

Claims

1. Insulator cable bundling tool, characterized in that; A front mold and a rear mold are provided, the front mold and the rear mold are horizontal mirror images of each other, and the opposite surfaces of the front mold and the rear mold can be detachably fixed; The front mold is provided with a bundling component and a surrounding component; the bottom of the bundling component and the top of the surrounding component are integrally formed; The bundling assembly is used to fix the conductors on both sides of the insulator with the binding wires; The binding assembly is used to wrap and fix the binding wire around the insulator; The strapping assembly is provided with a left strapping structure, a base and a right strapping structure in sequence from left to right, and the adjacent surfaces of the three are fixed to each other; The left bundling structure includes a left outer arc plate, a left inner arc plate and a rocker arm; one end of the left outer arc plate is fixed to one side of the base, and the other end of the left outer arc plate extends outward; the inner wall of the left outer arc plate is threadedly connected to the outer wall of the left inner arc plate; one end of the rocker arm is fixed to the end edge of the left inner arc plate facing outward.

2. The insulator cable bundling tool according to claim 1, characterized in that; The offset area between the starting end of the left outer arc plate and the starting end of the left inner arc plate is an observation area, and the observation area is made of a transparent material; a branch hole is opened in the observation area.

3. The insulator cable bundling tool according to claim 2, characterized in that; The left inner arc plate is sleeved on the outer surface of the conductor; the first threading hole passes through the inner outer wall of the left inner arc plate; a first winding cone is arranged outside the starting end of the left inner arc plate, the first winding cone is hollow, and the bottom of the first winding cone is connected to the first threading hole; the tip of the first winding cone and the tributary hole are in the same vertical plane.

4. The insulator cable bundling tool according to claim 3, characterized in that: One end of the rocker arm is fixed at the first threading hole at the end of the left inner arc plate.

5. The insulator cable bundling tool according to claim 4, characterized in that; A groove is arranged inside the base, and the groove matches with the convex part of the conductor on the insulator.

6. The insulator cable bundling tool according to claim 1, characterized in that; The tying assembly includes an arc-shaped tying body; an arc-shaped notch is provided in the middle of the tying body; a threaded tying hole is provided inside the arc-shaped notch, an exit groove is provided at the left end of the front side surface of the tying body, and an entry groove is provided at the right end of the front side surface of the tying body, and the entry groove is staggered up and down on the front side surface of the tying body relative to the exit groove.

7. The insulator cable bundling tool according to claim 6, characterized in that; A crack is arranged on the side wall of the arc-shaped notch toward the middle of the tying body, and the shape of the crack is consistent with the shape of the tying hole.

8. The insulator cable bundling tool according to claim 1, characterized in that; A corresponding number of first pins or first sockets are arranged at set positions on the front side of the front mold, and features matching the first pins or first sockets are arranged at set positions on the rear side of the rear mold.

9. The insulator cable bundling tool according to claim 8, characterized in that; A second pin is arranged at the upper end of the cross-section of the left outer arc plate of the front mold, and a second hole is arranged at the lower end of the cross-section of the left outer arc plate; a second hole is arranged at the upper end of the cross-section of the right outer arc plate of the rear mold, and a second pin is arranged at the lower end of the cross-section of the right outer arc plate of the rear mold.

10. The insulator cable bundling tool according to claim 9, characterized in that: A first arc-shaped plug-in plate strip is arranged at the upper end of the cross-section of the left inner arc plate of the front mold, and a first arc-shaped plug-in plate hole is arranged at the lower end of the cross-section of the left inner arc plate; a second arc-shaped plug-in plate hole is arranged at the upper end of the cross-section of the left inner arc plate of the rear mold, and a second arc-shaped plug-in plate strip is arranged at the lower end of the cross-section of the left inner arc plate.

Citation Information

Patent Citations

  • Binding device for fixing insulator on power distribution line

    CN107681597A

  • Bundling-free pin insulator

    CN112397260A