Environment-friendly power transmission and transformation insulator structure
By designing an environmentally friendly power transmission and transformation insulator structure with detachable connections, the problem of the inability to recycle existing environmentally friendly power transmission and transformation insulators has been solved, realizing the convenience of replacement and recycling and reducing energy waste.
Patent Information
- Application Number
- CN202423258721.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing environmentally friendly power transmission and transformation insulator structures cannot be recycled and reused after damage, resulting in energy waste.
An environmentally friendly power transmission and transformation insulator structure was designed, including components such as a large insulating ring, a small insulating ring, a connecting shaft, a retaining ring, a fastening bolt, and a fastening screw. Through the combination of square cuts and circular connecting holes, the device can be detached and securely fastened, making it easy to replace and recycle.
It enables detachable connection and secure fastening of power transmission and transformation insulator structures, facilitating replacement and recycling and reducing energy waste.
Smart Images

Figure CN223728544U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to insulator instrument technical field, more specifically, especially relate to an environmental protection type transmission and transformation insulator structure. BACKGROUND
[0002] With the deepening of the attention to greenhouse effect environmental problem, the power industry urgently needs to solve the environmental protection problem, and the environmental protection type insulator becomes an important development direction, and novel environmental protection materials such as modified BPA epoxy resin and modified fluorocarbon resin are applied to the manufacture of insulator, so that the mechanical strength, arc resistance, compactness and cold and heat resistance of the insulator are improved.Meanwhile, self-cleaning coating technology is also applied to the surface of the insulator, so that the wear resistance and self-cleaning effect of the insulator are enhanced, and the insulator structure design is continuously optimized, for example, the connection structure between the steel foot and the steel cap of the insulator for large-scale transmission and transformation is optimized, so that the stability and safety of the connection are improved.
[0003] Based on the above, although the environmental protection type transmission and transformation insulator structure can be durable and clean, it cannot be recycled after being damaged, causing energy waste, and recycling is also an important step of environmental protection. UTILITY MODEL CONTENTS
[0004] In order to solve the above technical problems, the utility model provides an environmental protection type transmission and transformation insulator structure to solve the problem that the existing environmental protection type transmission and transformation insulator structure cannot be recycled.
[0005] The utility model relates to an environmental protection type transmission and transformation insulator structure, which is achieved by the following specific technical means:
[0006] An environmental protection type transmission and transformation insulator structure, which comprises a large insulating ring, a small insulating ring, a wire shaft, a bottom end snap ring, a hook ring A, a fastening bolt, a top snap ring, a fastening screw, a hook ring B and a small screw, a group of square breaks are arranged in the middle of the large insulating ring, the small insulating ring and the wire shaft, four groups of square connecting blocks are arranged at the bottom of the wire shaft, a group of circular connecting holes are arranged on each of the four groups of square connecting blocks at the bottom of the wire shaft, the fastening bolt is fastened and connected in the circular connecting holes on the four groups of square connecting blocks at the bottom of the fastening bolt, a group of circular connecting shafts are arranged on the section of one side of the large insulating ring and the small insulating ring, respectively, and the large insulating ring and the small insulating ring are connected to the outer surface of the wire shaft through the circular connecting shafts on the section; the bottom end snap ring and the top snap ring are clamped and connected on both sides of the tail end at the front end of the wire shaft; a group of square connecting blocks are arranged on both sides of the hook ring A, respectively, a group of circular connecting holes are arranged on the square connecting blocks on both sides of the hook ring A, respectively, a group of square connecting blocks are arranged on both sides of the hook ring B, respectively, a group of circular connecting holes are arranged on the square connecting blocks on both sides of the hook ring B, respectively, and a group of curved hooks are arranged on the upper sides of the hook ring A and the hook ring B; the circular connecting holes on the square connecting blocks on both sides of the hook ring A and the hook ring B are fastened and connected through the small screw.
[0007] Further, the bottom end clamping ring and the top clamping ring are each provided with a group of square notches on both sides, and the bottom end clamping ring and the top clamping ring are connected and clamped on the upper and lower sides of the connecting shaft through the square notches on both sides.
[0008] Further, the connecting shaft is tightly connected with a group of fastening buckles on the front end and the rear side, one side of the fastening buckle is provided with a group of square notches, and the square notches on one side of the fastening buckle are each provided with a group of circular connecting holes on both sides, and the circular connecting holes on the two sides of the fastening buckle are connected through fastening screws.
[0009] Further, the top clamping ring and the bottom end clamping ring are connected and clamped on the front and rear sides of the connecting shaft, and the top clamping ring and the bottom end clamping ring are connected on the section surfaces on the front and rear sides of the large insulating ring.
[0010] Further, the connecting shaft is connected with three groups of large insulating rings and two groups of small insulating rings on the outer surface, and the square notches on one side of the large insulating ring and the small insulating ring are connected with the notches on one side of the connecting shaft.
[0011] Compared with the prior art, the environmental protection type power transmission and transformation insulator structure has the following beneficial effects:
[0012] 1. The device is directly clamped on the wire through the connecting shaft and the large insulating ring, so that it can be replaced and recycled.
[0013] 2. The hook ring A can be used in many ways, so that it becomes a multi-purpose device.
[0014] 3. The fastening bolt, the fastening screw and the small screw are arranged, the fastening mode is simple and firm, and the device can be conveniently replaced and recycled. DETAILED DESCRIPTION
[0015] Figure 1 is a structural schematic view of the main body of the utility model.
[0016] Figure 2 is a structural schematic view of the connecting device of the utility model.
[0017] Figure 3 is a sectional view of the main body of the utility model.
[0018] In the drawings, the correspondence between the component names and the drawing numbers is as follows:
[0019] 1. Large insulating ring; 2. Small insulating ring; 3. Connecting shaft; 4. Bottom end clamping ring; 5. Fastening buckle; 6. Hook ring A; 301. Fastening bolt; 302. Top clamping ring; 501. Fastening screw; 601. Hook ring B; 602 and small screw. CONCRETE EMBODIMENT
[0020] The embodiments of the present application will be further described in detail below with reference to the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0021] Embodiments:
[0022] As shown in the accompanying Figure 1 to the accompanying Figure 3 as shown:
[0023] The utility model provides a kind of environmental protection type power transmission insulator structure, including big insulation ring 1, small insulation ring 2, connecting wire shaft 3, bottom end snap ring 4, hook ring A 6, fastening bolt 301, top snap ring 302, fastening screw 501, hook ring B 601 and small screw 602;Big insulation ring 1, small insulation ring 2 and connecting wire shaft 3 middle are equipped with a group of square breaks, and connecting wire shaft 3 bottom is equipped with four groups of square connecting blocks, and each group of circular connecting hole is equipped on the four groups of square connecting blocks of connecting wire shaft 3 bottom, and fastening bolt 301 is fastened and connected in the circular connecting hole on the four groups of square connecting blocks of fastening bolt 301 bottom, and each group of circular connecting shaft is equipped on the section of one side of big insulation ring 1 and small insulation ring 2, and big insulation ring 1 and small insulation ring 2 are connected on the outer surface of connecting wire shaft 3 by the circular connecting shaft on section;Bottom end snap ring 4 and top snap ring 302 are clamped and connected on the tail end of the front end of connecting wire shaft 3 two sides;Hook ring A 6 two sides each are equipped with a group of square connecting blocks, and each group of circular connecting hole is equipped on the square connecting block of hook ring A 6 two sides, hook ring B 601 two sides each are equipped with a group of square connecting blocks, and each group of circular connecting hole is equipped on the square connecting block of hook ring B 601 two sides, and each group of curved hook is equipped on the upside of hook ring A 6 and hook ring B 601;The circular connecting hole on the square connecting block of hook ring A 6 and hook ring B 601 two sides is fastened and connected by small screw 602.
[0024] Among them, bottom end snap ring 4 and top snap ring 302 two sides each are equipped with a group of square breaks, and bottom end snap ring 4 and top snap ring 302 are clamped and connected on the upper and lower two sides of connecting wire shaft 3 by two sides square breaks, so that it is stably fixed.
[0025] Among them, connecting wire shaft 3 front end and rear side each are fastened and connected with a group of fastening buckle 5, and one side of fastening buckle 5 is equipped with a group of square breaks, and each group of circular connecting hole is equipped on the two sides of square break of one side of fastening buckle 5, and the circular connecting hole on the section of two sides of fastening buckle 5 is fastened and connected by fastening screw 501, easy to disassemble.
[0026] Among them, top snap ring 302 and bottom end snap ring 4 are clamped and connected on the front and rear two sides of connecting wire shaft 3, and top snap ring 302 and bottom end snap ring 4 are connected on the section of big insulation ring 1 front and rear two sides, can not be from the head of electric wire and go in, good installation.
[0027] Among them, the outer surface of the connecting shaft 3 is connected with three groups of large insulation rings 1 and two groups of small insulation rings 2, and the square notch on one side of the large insulation ring 1 and the small insulation ring 2 is connected with the notch on one side of the connecting shaft 3, so as to assist the connection.
[0028] The specific use mode and effect of the embodiment are as follows:
[0029] In the utility model, the large insulation ring 1 and the connecting shaft 3 are first broken and installed on the electric wire, then the fastening bolt 301 is fastened into the circular hole on the square connecting block on the two sides of the connecting shaft 3, then the fastening buckle 5 is connected at the bottom of the connecting shaft 3, and the bottom clamping ring 4 and the top clamping ring 302 are tightly connected on the two sides of the connecting shaft 3 by fastening screw 501, when the hook is needed, the hook ring A 6 and the hook ring B 601 are connected together by small screw 602 and fixed at the position needed, and are fixed on the upper side of the connecting shaft 3.
[0030] The utility model is not detailed, and it is the known technology of the person skilled in the art. It can be understood that the utility model is described through some embodiments, and the person skilled in the art knows that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the utility model. In addition, under the guidance of the utility model, these features and embodiments can be modified to adapt to specific conditions and materials without departing from the spirit and scope of the utility model. Therefore, the utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application belong to the scope protected by the utility model.
Claims
1. An environmentally friendly power transmission and distribution insulator structure, characterized in that, It comprises a large insulating ring (1), a small insulating ring (2), a connecting shaft (3), a bottom end snap ring (4), a hook ring A (6), a top snap ring (302) and a hook ring B (601). A group of square notches are arranged in the middle of the large insulating ring (1), the small insulating ring (2) and the connecting shaft (3), four groups of square connecting blocks are arranged at the bottom of the connecting shaft (3), a group of circular connecting holes are arranged on each of the four groups of square connecting blocks at the bottom of the connecting shaft (3), and the fastening bolt (301) is fastened and connected in the circular connecting hole on the four groups of square connecting blocks at the bottom of the connecting shaft (3), a group of circular connecting shafts are arranged on the section of one side of the large insulating ring (1) and the small insulating ring (2), and the large insulating ring (1) and the small insulating ring (2) are connected on the outer surface of the connecting shaft (3) through the circular connecting shafts on the section. The bottom end snap ring (4) and the top snap ring (302) are clamped and connected at the front end and the tail end of the connecting shaft (3), a group of square connecting blocks are arranged on the left and right sides of the hook ring A (6), a group of circular connecting holes are arranged on the square connecting blocks on the left and right sides of the hook ring A (6), a group of square connecting blocks are arranged on the left and right sides of the hook ring B (601), a group of circular connecting holes are arranged on the square connecting blocks on the left and right sides of the hook ring B (601), and a group of curved hooks are arranged on the upper sides of the hook ring A (6) and the hook ring B (601).
2. The environmentally friendly power transmission and distribution insulator structure according to claim 1, wherein The left and right sides of the bottom end snap ring (4) and the top snap ring (302) are each provided with a group of square notches, and the bottom end snap ring (4) and the top snap ring (302) are clamped and connected on the outer surface of the connecting shaft (3) through the square notches on the left and right sides.
3. The environmentally friendly power transmission and distribution insulator structure according to claim 1, wherein A group of fastening buckles (5) are fastened and connected on the front end and the rear side of the connecting shaft (3), one side of the fastening buckle (5) is provided with a group of square notches, a group of circular connecting holes are arranged on the square notches on the upper side of the fastening buckle (5), and the circular connecting holes on the two sides of the square notches on the upper side of the fastening buckle (5) are fastened and connected with the outer surface of the connecting shaft (3) through the fastening screws (501).
4. The environmentally friendly power transmission and distribution insulator structure according to claim 1, wherein The top snap ring (302) and the bottom end snap ring (4) are connected on the sections on the front and rear sides of the large insulating ring (1).
5. The environmentally friendly power transmission and distribution insulator structure according to claim 1, wherein Three groups of large insulating rings (1) and two groups of small insulating rings (2) are connected on the outer surface of the connecting shaft (3), and the square notches on one side of the large insulating ring (1) and the small insulating ring (2) are connected with the notches on one side of the connecting shaft (3).