Power distribution line entry bracket
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-08-11
AI Technical Summary
[0018]根据本发明的配电线路进线支架,在进线的布线现场,如果将进线缠绕在绝缘子上进行布线,则将兼作绝缘子的支架管与支架体垂直旋转绕着进线进行布线,或者将引线贯穿支架进行布线,则将兼作绝缘子的支架管与支架体并排,并在内部的布线孔中插入引线进行布线,从而消除了插入绝缘子和支架的不方便,从而实现了对进线的布线。
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Figure CN122553040A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a power distribution line entry support, and more specifically, to a power distribution line entry support that converts a single support into a bracket and a sub-bracket for entry line wiring when laying entry lines throughout the state. Background Technology
[0002] In order to supply the electricity generated by the power plant to the containment price, wiring will be installed statewide to the containment price.
[0003] For example, lead-in wires include lead-in guide irons (complete irons) installed on utility poles and housing racks, lead-in wires connected to the aforementioned lead-in guide irons and supporting the lead-in wires, etc. Additionally, lead-in wire brackets are used as an alternative to the aforementioned lead-in wires.
[0004] As patent documents that confirm the background technology of this invention, Patent No. 10-039607 and Utility Model No. 20-0025192 are for human lovers who support the introduction of lines, and Utility Model No. 20-0259341 is for an introduction-specific complete gold set up in the whole state or at the containment price.
[0005] A lead wire clamp is a type of clamp that wraps the lead wire around itself. A lead wire clamp is a tubular clamp with wiring holes through which the lead wire passes. That is, the structure of a lead wire clamp and the connection method of the lead wire are different.
[0006] In other words, according to traditional technology, since the entry frame or entry line bracket is selected based on the construction site and other factors, carrying the entry frame and entry line bracket are both inconvenient. After installation, it is difficult to change from the entry frame to the entry line bracket or from the entry line bracket to the entry line bracket during use.
[0007] Existing technical documents
[0008] Patent documents
[0009] Patent Document 1: Registered Patent No. 10-039607
[0010] Patent Document 2: Utility Model Registration No. 20-0025192
[0011] Patent Document 3: Utility Model Registration No. 20-0025192 Summary of the Invention
[0012] The problem that the invention aims to solve
[0013] This invention is designed to solve the above-mentioned problems. Its function is to have the functions of both an insulator and a support. Depending on the conditions such as the construction site, it can be selected as an insulator or a support to provide a power distribution line lead support for organizing the leads.
[0014] Methods for solving problems
[0015] The present invention relates to a power distribution line input bracket, a bracket body; a ring fixed to the bracket body and connected to a lead buffer for lead wire wiring; a conversion guide shaft formed with the bracket body; a rotatable component on the conversion guide shaft, which, when used as an insulator, is arranged longitudinally in the vertical direction and has the input wire wound around its perimeter; and, when used as a bracket, is arranged side-by-side with the bracket body and has the input wire inserted into its internal wiring hole. A dual-purpose insulator bracket tube is formed on the conversion guide shaft to open and close the wiring hole of the dual-purpose bracket tube. The invention is characterized by including a blocking hole for opening the wiring hole when the dual-purpose bracket tube is used as a bracket.
[0016] The dual-purpose clamp can appear on both sides of the clamp body and the clamp body, and is composed of a first head and a second head with an inlet wire winding part. The first head and the second head protrude in conjunction when converted into a clamp.
[0017] Invention Effects
[0018] According to the present invention, in the wiring site of the incoming line, if the incoming line is wound around an insulator for wiring, the support tube, which also serves as an insulator, is rotated perpendicularly around the support body to wire the incoming line. Alternatively, if the lead wire is passed through the support for wiring, the support tube, which also serves as an insulator, is placed side by side with the support body, and the lead wire is inserted into the internal wiring hole for wiring. This eliminates the inconvenience of inserting insulators and supports, thereby realizing the wiring of the incoming line.
[0019] Moreover, multiple dual-purpose bracket tubes can be used for different types of child and bracket applications, and multiple lead-in lines can be wired in different ways. Through various wiring operations of the lead-in lines, the effect of maintaining the safety of the power distribution system can be achieved.
[0020] Furthermore, with the structure of this invention, when used as a support, the surrounding portion forms the same outer diameter, and when used as an insulator, the winding with the lead wire is exposed and the wiring hole is closed, so that the operator can use the support and the insulator without confusion. At the same time, when rotating the dual-purpose support tube for insulators, no additional work is required to expose or hide the winding, making the operation very easy. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the disassembly of the power distribution line inlet bracket according to the present invention.
[0022] Figure 2 and Figure 3 These are, respectively, a front view and a side view of the power distribution line inlet bracket of the present invention used as an insulator.
[0023] Figure 4 and Figure 5 These are, respectively, a plan view and a side view of the power distribution line inlet bracket of the present invention when used as a bracket.
[0024] Explanation of reference numerals in the attached figures:
[0025] 1: Lead-in line,
[0026] 10: Scaffold body,
[0027] 20: Ring,
[0028] 21: Ring section,
[0029] 22: Nut,
[0030] 30: Transition axis
[0031] 40: Dual-purpose insulator bracket
[0032] 41: Wiring hole
[0033] 42: Scaffold body,
[0034] 43, 44: First and second heads,
[0035] 43-1, 43-2: Sections 1 and 2 of the thread.
[0036] 43-2, 44-2: Sections 1 and 2 of the thread.
[0037] 45, 46: First and second conversion guide rails,
[0038] 47, 48: First and second conversion guide rails,
[0039] 50: Seal the opening.
[0040] 51: Connecting hole. Detailed Implementation
[0041] In describing this invention, detailed descriptions of the functions or components of the invention will be omitted if it is believed that such descriptions might unnecessarily obscure the essence of the invention. Furthermore, the terms used below are defined for their functionality according to the invention and may vary depending on the intent or convention of the user or operator. Therefore, their definitions should be based on the entire contents of this listing.
[0042] like Figures 1 to 5As shown, the power distribution line selection bracket (100) of the present invention is fixed on the bracket body (10) and the bracket body (10). It is rotatably connected to the ring (20) of the guide buffer for wiring the lead wire (1), the conversion guide rail (30) formed on the left and right sides of the bracket body (10), and the conversion guide rail shaft (30). The lead wire (1) and the bracket (41) can be plugged into the lead wire (41) in a dual-purpose manner. The plug (1) of the dual-purpose lead wire connector and the plug (40) of the connector are dual-purpose plugged into the opening of the wiring hole (41) when the coffin (40) is used as a bracket. The connector is made of insulating material.
[0043] For example, the support body (10) is a rectangular hexahedron including holes formed at both ends along the length direction for inserting a ring (20) inside.
[0044] The ring (20) is a straight rod with a spiral shape on its outer circumference. One end of the ring includes a ring-shaped portion (21). For example, it is inserted into a hole formed inside the rod body (10) in the front-back direction, and a nut (22) is fastened to the rod body (10) on the other side of the ring portion (21). The ring (20) can also be used to fasten the nut at the ring portion (21) on the other side of the nut (22).
[0045] The conversion guide shaft (30) is cylindrical and is arranged on the left and right sides of the support body (10) in the direction of transversely traversing the support body (10), forming the support body (10) protruding outward (in one piece or in combination).
[0046] The dual-purpose support tube (40) for children consists of a cylindrical support tube body that can be wound around the circumference of the lead wire (1) and inserted into the internal wiring hole (41), and two ends of the support tube body that form an outer diameter larger than the support tube body, forming the first and second ends of the chin. The purpose of this invention is to inform the use status of the support and the child through the shape of the dual-purpose support tube (40), that is, when in use, the shape is different from that of the child.
[0047] The dual-purpose support tube (40) includes a support tube body (42) rotatably coupled to a conversion guide shaft (30). The support tube body (42) has wiring holes (41) formed inside and holes open on both sides in the longitudinal direction. Its shape is the same as that of conventional insulators (cylindrical, corrugated cross-section, etc.). It is rotatably coupled to the conversion guide shaft (30) via bearings or the like. In addition, the support tube body (42) is inserted into the conversion guide shaft (30) and the plug (50), and has an internal shaft connection portion orthogonal to the aforementioned holes. The shaft connection portion is preferably a hole that extends through to the outside on both sides.
[0048] The first and second ends (43, 44) are respectively attached to both sides of the length direction of the support tube (42), which can be used for entry and exit.
[0049] The first and second ends (43, 44) form wiring holes (41) and have holes that communicate with the holes of the support tube (42). They can be configured to slidably attach to the holes of the support tube (42). The lead wire (1) is wound around the first and second windings (43-1, 44-1), the first and second windings (43-1), the second winding (43-1), and the second winding (43-1) and the support tube (43-1) to form the outer winding (43-1). The first and second heads (43-2, 44-2) are included. According to this structure, when used as a clamp, the first and second winding portions (43-1, 44-1) are inserted into the clamp body (42) without being exposed. Therefore, the clamp body (40) appears to have the same outer diameter overall. When used as a clamp, the first and second winding portions (43-1, 44-1) are exposed on the outer diameter (42) of the clamp body (42). Insertion facilitates the winding of the lead wire (1).
[0050] The first and second windings (43-1, 44-1) should preferably adopt a groove form with the outer circumference facing outward.
[0051] The first and second ends (43, 44) can be inserted into or extended from the support tube (42) by means of individual manual means, for example by screw connection.
[0052] It is worth mentioning that, in order to use the dual-purpose gripper (40) as a gripper, when the gripper body (10) is rotated to approximately a right angle (an angle within a right angle is also acceptable), the first and second ends (43, 44) extend from the gripper body (42). In this state, when rotated in the opposite direction to be used as a gripper, the first and second ends (43, 44) will be inserted into the gripper body (42), including the following:
[0053] Including first and second conversion guides (45, 46) protruding from the first and second ends (43, 44) to the support body (10), forming a curved (or inclined straight) shape around the conversion guide (30), and first and second conversion guides (47, 48) that can be slidably connected at the ends of the first and second conversion guides (45, 46).
[0054] The first and second conversion guide rods (45, 46) are rods clamped on the first and second ends (43, 44) or connected by screws, with ball bearings or rollers at the ends.
[0055] The first and second conversion guide rods (45, 46) are formed on the outer first and second heads (43-2, 44-2) of the first and second windings (43-1, 44-1) with the lead wire (1) as the reference, thus preventing the lead wire (1) from falling off.
[0056] The first and second conversion slide rails (47, 48) are formed on the plates that protrude upward and downward on the support body (10), with grooves that open to the first and second conversion guide rods (45, 46). The two ends include a first position parallel to the support body (10) and a second position perpendicular to the support body (10). The first position is the support position, and the second position is the position used as the support.
[0057] When the dual-purpose clamping tube (40) rotates from the first position to the second position, in order to make the first and second ends (43, 44) protrude from the clamping tube body (42), the distance from the center of the first and second conversion guides (47, 48) to the second position is longer than the distance (L1) from the center of the conversion guide (30) to the first position, that is, the difference between L2 and L1, thus forming the first, second, and second (44).
[0058] In other words, by unidirectionally rotating the dual-purpose support tube (40), during the process of moving the first and second conversion rails (47, 48) from the first position to the second position, the first and second conversion rail rods (45, 46) move away from the conversion rail shaft (30), protruding the first and second rail heads (43, 44), exposing the first and second windings (43-1, 44-1). Conversely, by rotating the dual-purpose support tube (40) towards the first and second rails (45), the second rail (45) moves closer to the second rail (43, 45), and the second rail (45) inserts the head (43, 44).
[0059] On the other hand, the two dual-purpose support tubes (40) applicable to both sides of the support body (10) can be connected into a single body and rotated together by a single operation. For example, holes are formed in the first and second conversion guides (47, 48), and the ends of the first and second conversion guides (45, 46) are passed through the first and second conversion guides (47, 48). Then, the connecting rod between them (45, 46) is connected to the first and second conversion guides (45, 45). The connecting rod is connected by a strap or the like.
[0060] The blocking ball (50) can be an extension of the conversion guide shaft (30) to have a blocking function, or it can be a separate combination of shapes, with an outer diameter that is the same as or smaller than that of the conversion guide soccer ball (30).
[0061] The blocking port (50) has a connecting hole (51) that communicates with the wiring hole (41) and is fixed to the conversion guide shaft (30). That is, the connecting hole (51) is always in the state where the two open parts face the front and rear sides. Therefore, depending on the position of the dual-purpose bracket tube (40), the wiring hole (41) will be cut off or connected. When used as a child, the two open parts are blocked by the dual-purpose bracket tube (40), resulting in the wiring hole (41) being connected to the wiring hole (41).
[0062] This may include fixing means to keep the dual-purpose support tube (40) in the position of serving as both a child and a support. Such fixing means, for example, may consist of fixing grooves formed on the support body (10) according to the position, and fixing bolts that engage with the fixing grooves on the dual-purpose support tube (40).
[0063] The function of the power distribution line inlet support provided by this invention is as follows:
[0064] In the wiring site of the lead-in line (1), the shape of the ferrule and the bracket is determined.
[0065] 1. Selected stents for the child-loving type (degree 2, degree 3).
[0066] The support body (10) is arranged in a front-to-back manner, and the dual-purpose support tube (40) is rotated at a right angle relative to the support body (10). That is, the first and second conversion guide rails (45, 46) are arranged in the second position (upper and lower part) of the first and second conversion guide rails (47, 48).
[0067] The first and second windings (43-1 and 44-1) are exposed at the upper and lower parts of the support tube (42), respectively, where the lead wire (1) is wound for wiring.
[0068] 2. Stent type selected stents (degree 4, degree 5).
[0069] When the lead wire (1) is inserted into the wiring hole (41) in the state of degree 2 (degree 3) for wiring, if the first and second conversion guides (45, 46) are rotated 90 degrees clockwise with degree 2 as the reference, the first and second conversion guides (47, 48) will move along the first and second conversion guides (47, 48). During this process, the first and second conversion guides (47, 48) will be connected to the conversion guide (30). The first and second (44)(42) connect the guide (41) to the guide (50) of the guide (41). The guide (50) of the second hole guide (41) is connected to the guide (41).
[0070] Insert the lead wire (1) into the wiring hole (41) and the connection hole (51) for wiring.
[0071] In addition, when used for Aiko in this state, if the Aiko dual-purpose support tube (40) is rotated 90 degrees counterclockwise with 5 degrees as the reference, the first and second conversion guides (45, 46) will move along the first and second conversion guides (47, 48), the first and second conversion guides (47, 48) will move away from the conversion guide axis (30), and the first and second ends (43, 44) will protrude from the support tube body (42), thereby exposing the first and second coils (44-1).
Claims
1. A power distribution line entry support, wherein, include: Scaffold (10) and; Fixed to the main body of the bracket, and connected to the ring (20) of the lead wrench for wiring the lead wire (1); The conversion guide shaft (30) formed on the main body of the bracket and; Rotatably coupled to the conversion guide shaft, when used as an insulator, it is arranged vertically so that it surrounds the incoming wire; when used as a support, it is arranged side by side with the support body, and the insulator dual-purpose support tube (40) and the incoming wire are inserted into the wiring hole (41) inside; Formed on the conversion guide shaft, it opens and closes the wiring hole of the dual-purpose insulator support tube. When the dual-purpose insulator support tube is used as a support, the blocking hole (50) of the wiring hole is opened.
2. The power distribution line inlet bracket according to claim 1, wherein, The dual-purpose support tube for children can be rotatably coupled to the support tube body (42) on the conversion guide shaft. The support tube body can be inserted into both sides of the length direction of the support tube body. When used as a child, it protrudes from the support tube body and has a winding of lead wires around it, and has a first and a second head (43, 44).
3. The power distribution line inlet bracket according to claim 2, wherein, Includes first and second conversion guide rails (47, 48), and first and second conversion guide rails (45, 46) protruding towards the support body from the first and second conversion guide rail heads, forming a curve around the conversion guide rail shaft, and the ends of the first and second conversion guide rails are slidably connected. The first and second conversion guides are formed at the upper and lower ends of the front and rear sides of the conversion guide, and are far away from the conversion guide. The first and second guide heads protrude from the support cylinder through the first and second conversion guides.
4. The power distribution line entrance bracket according to any one of claims 1 to 3, wherein, The seal extends on the conversion guide shaft. When the dual-purpose clamp is used as a clamp, the connecting clamp is in communication with the wiring clamp. When the dual-purpose clamp is used as a clamp, the connecting clamp is closed.