Distribution network automation equipment convenient to install
By designing limit components and connection components, the instability problem of power distribution network automation equipment during use is solved, the equipment is installed stably, damage caused by collisions is prevented, and the reliability of the equipment is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-03-27
AI Technical Summary
Existing power distribution network automation equipment is often left stationary during use and is not effectively secured. This makes it prone to tilting and falling upon impact, leading to equipment damage and inconvenience in use.
By employing limit components and connecting components, and through the design of the bottom plate and stop, the bottom casters of the power distribution network automation equipment are fixed by limit blocks and threaded rods, and the equipment is stably fixed by the meshing connection of the moving rod and the lead screw.
It improves the installation stability of power distribution network automation equipment, prevents the equipment from tilting or falling when it is bumped by external forces, and protects the integrity of the equipment.
Smart Images

Figure CN224053705U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of distribution network automation equipment, specifically to a distribution network automation equipment convenient to install. BACKGROUND
[0002] The power distribution network refers to the power network that accepts electric energy from the power transmission network or the regional power plant, distributes locally or step by step according to the voltage to various users through the power distribution facilities. It is composed of overhead lines, cables, towers, distribution transformers, disconnectors, reactive power compensators and some auxiliary facilities, and plays an important role in the distribution of electric energy in the power network. The existing power distribution network automation equipment body is in a stationary state during use, and the power distribution network automation equipment body cannot be effectively fixed. When it is collided, it will tilt, causing the power distribution network automation equipment body to fall and easily damage the power distribution network automation equipment body, which is very inconvenient during use. UTILITY MODEL CONTENT
[0003] In view of the deficiencies of the prior art, the utility model provides a distribution network automation equipment convenient to install, which solves the technical problems that the existing power distribution network automation equipment body is in a stationary state during use, the power distribution network automation equipment body cannot be effectively fixed, and when it is collided, it will tilt, causing the power distribution network automation equipment body to fall and easily damage the power distribution network automation equipment body, which is very inconvenient during use.
[0004] To achieve the above purpose, the utility model realizes the following technical scheme: a distribution network automation equipment convenient to install, comprising a bottom plate and a power distribution network automation equipment body, the side wall of the bottom plate is fixedly installed with a guide block, the other side wall of the bottom plate is fixedly installed with a stop block, a bearing groove is formed in the bottom plate, the power distribution network automation equipment body is placed in the bearing groove, a limiting assembly is arranged in the bearing groove, a pair of box bodies is fixedly installed on the rear wall of the power distribution network automation equipment body, and a connecting assembly is arranged between the box bodies and the stop block.
[0005] Preferably, the limiting assembly comprises a limiting block, the limiting block is slidingly installed in the bearing groove, openings are formed in the two side walls of the bearing groove, threaded rods are fixedly installed on the two side walls of the limiting block respectively, the threaded rods penetrate through the openings, and fixed nuts are screwed on the threaded rods.
[0006] Preferably, the limiting block is in the shape of a right trapezoidal structure.
[0007] Preferably, the connecting assembly comprises a moving rod, a pair of grooves are formed in the side wall surface of the block, sliding grooves are formed in the two side wall surfaces of the grooves respectively, sliding blocks are slidingly installed in the sliding grooves, the moving rod is fixedly installed between the sliding blocks, a screw rod is rotatably installed on the rear wall surface of the groove, a threaded groove is formed in the rear wall surface of the moving rod, the screw rod is engaged in the threaded groove, a through hole is formed in the box body, the moving rod penetrates through the through hole, bearing boxes are fixedly installed on the two side wall surfaces of the box body respectively, insertion holes are formed in the two side wall surfaces of the bearing boxes and the side wall surface of the box body respectively, limit rods are inserted into the insertion holes, limit grooves are formed in the two side wall surfaces of the moving rod respectively, the limit rods are matched with the limit grooves, the limit rods are fixedly installed with baffle plates, the baffle plates are located in the bearing boxes, springs are fixedly installed between the baffle plates and the inner wall surfaces of the bearing boxes, and the springs are sleeved on the limit rods.
[0008] Preferably, the cross section shape of the penetrating end of the moving rod is triangular structure.
[0009] Preferably, a driven gear is fixedly installed on the screw rod, an installation hole is formed in the upper end of the groove, a shaft rod is rotatably installed in the installation hole, a driving gear is fixedly installed on the lower end of the shaft rod, the driving gear is engaged with the driven gear, and a handle is fixedly installed on the upper end of the shaft rod.
[0010] Preferably, the driving gear and the driven gear are both conical gear structures.
[0011] Preferably, the cross section shape of the guide block is right triangle structure.
[0012] Beneficial effects
[0013] The utility model provides a kind of network automation equipment of convenient installation, solve the existing electric power network automation equipment ontology when using, is in stationary state, electric power network automation equipment ontology cannot be effectively fixed, when being impacted, it can occur inclination, lead to electric power network automation equipment ontology fall easily make electric power network automation equipment ontology damage, when using, very inconvenient technical problem, the utility model is blocked by limiting component to the bottom of electric power network automation equipment ontology, by connecting component, electric power network automation equipment ontology is fixed with block, so that electric power network automation equipment ontology is stably placed on bottom plate, prevent electric power network automation equipment ontology from being impacted by outside and transmission, improve the installation stability of electric power network automation equipment ontology. ACCURACY OF DRAWINGS
[0014] Fig. 1 It is the main view structural schematic drawing of the utility model discloses a kind of network automation equipment of convenient installation.
[0015] Fig. 2The utility model discloses a bottom plate piece of distribution network automation equipment convenient to install's section structure schematic view.
[0016] Fig. 3 The utility model discloses a connecting assembly structure diagram of distribution network automation equipment convenient to install.
[0017] In the drawing: 1, bottom plate piece, 2, electric power distribution network automation equipment body, 3, guide block, 4, stop block, 5, bearing groove, 6, box body, 7, limiting block, 8, opening, 9, threaded rod, 10, fixed nut, 11, moving rod, 12, recess, 13, sliding groove, 14, sliding block, 15, screw rod, 16, bearing box, 17, limiting rod, 18, limiting groove, 19, baffle, 20, spring, 21, driven gear, 22, shaft, 23, driving gear, 24, handle. Specific embodiments
[0018] The technical scheme in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative work belong to the range of the utility model protection.
[0019] Please refer to Figs. 1-3 The utility model provides a kind of technical scheme: a distribution network automation equipment convenient to install, including bottom plate piece 1 and electric power distribution network automation equipment body 2, the guide block 3 is fixedly installed in bottom plate piece 1 side wall surface, the stop block 4 is fixedly installed in bottom plate piece 1 other side wall surface, bearing groove 5 is set on bottom plate piece 1, the electric power distribution network automation equipment body 2 is placed in bearing groove 5, limiting assembly is equipped in bearing groove 5, a pair of box body 6 is fixedly installed in the rear wall surface of electric power distribution network automation equipment body 2, and connecting assembly is equipped between box body 6 and stop block 4;
[0020] The electric power distribution network automation equipment body 2 is moved from guide block 3 to bearing groove 5 of bottom plate piece 1 by the universal wheel at bottom, the universal wheel at bottom of electric power distribution network automation equipment body 2 is blocked by limiting assembly, to prevent electric power distribution network automation equipment body 2 from moving, to prevent electric power distribution network automation equipment body 2 from moving by connecting with stop block 4 through connecting assembly.
[0021] The limiting assembly includes limiting block 7 in the embodiment, the limiting block 7 is slidably installed in bearing groove 5, the opening 8 is formed in the two side wall surfaces of bearing groove 5, the threaded rod 9 is fixedly installed on the two side wall surfaces of limiting block 7 respectively, the threaded rod 9 penetrates opening 8, and fixed nut 10 is screwed on threaded rod 9.
[0022] Push the threaded rod 9, so that the threaded rod 9 along the opening 8 path with the limit block 7 moves, until the limit block 7 and the power distribution network automation equipment body 2 bottom of the universal wheel contact, the fixed nut 10 is screwed on the threaded rod 9, so that the fixed nut 10 and the side wall of the base plate 1 contact.
[0023] The embodiment is further provided that the limit block 7 cross section shape is a right trapezoidal structure;
[0024] The inclined side of the right trapezoidal structure facilitates the power distribution network automation equipment body 2 into the bearing groove 5.
[0025] The embodiment is further provided that the connecting assembly includes a moving rod 11, the side wall of the block 4 is provided with a pair of grooves 12, the two side walls of the groove 12 are respectively provided with a sliding groove 13, the sliding block 14 is slidably installed in the sliding groove 13, the moving rod 11 is fixedly installed between the sliding blocks 14, the rear wall of the groove 12 is rotatably installed with a lead screw 15, the rear wall of the moving rod 11 is provided with a threaded groove, the lead screw 15 is engaged in the threaded groove, the box body 6 is provided with a through hole, the moving rod 11 penetrates the through hole, the two side walls of the box body 6 are respectively fixedly installed with a bearing box 16, the two side walls of the bearing box 16 and the side wall of the box body 6 are respectively provided with a insertion hole, the insertion hole is inserted with a limiting rod 17, the two side walls of the moving rod 11 are respectively provided with a limiting slot 18, the limiting rod 17 is matched with the limiting slot 18, the limiting rod 17 is fixedly installed with a baffle 19, the baffle 19 is located in the bearing box 16, the baffle 19 and the inner wall of the bearing box 16 are fixedly installed with a spring 20, the spring 20 is sleeved on the limiting rod 17;
[0026] The lead screw 15 is rotated, because the lead screw 15 and the moving rod 11 are connected by the threaded groove, so that the lead screw 15 has a driving effect on the moving rod 11 when it rotates. At this time, the moving rod 11 is fed along the sliding groove 13 under the action of the sliding block 14, and the front end of the moving rod 11 penetrates the through hole and pushes the limiting rod 17. The limiting rod 17 is pushed by the thrust force to push the baffle 19, and the baffle 19 extrudes the spring 20, until the limiting rod 17 is located at one side of the limiting slot 18. At this time, the spring 20 releases the elastic force, so that the spring 20 pushes the baffle 19, the baffle 19 drives the limiting rod 17 to move, one end of the limiting rod 17 is inserted into the limiting slot 18, so as to limit the moving rod 11.
[0027] The embodiment is further provided that the moving rod 11 penetrating end cross section shape is a triangular structure;
[0028] The penetrating end cross section shape of the moving rod 11 is a triangular structure, which facilitates the moving rod 11 to pass through the limiting rod 17.
[0029] The embodiment is further provided with a driven gear 21 fixedly installed on the lead screw 15, an installation hole is formed at the upper end of the groove 12, a shaft rod 22 is rotatably installed in the installation hole, a driving gear 23 is fixedly installed at the lower end of the shaft rod 22, the driving gear 23 is in meshing connection with the driven gear 21, and a handle 24 is fixedly installed at the upper end of the shaft rod 22.
[0030] The shaft rod 22 is rotated to drive the driving gear 23 to rotate, the driving gear 23 is in meshing connection with the driven gear 21, and the driven gear 21 drives the lead screw 15 to rotate.
[0031] The embodiment is further provided with a driven gear 21 fixedly installed on the lead screw 15, an installation hole is formed at the upper end of the groove 12, a shaft rod 22 is rotatably installed in the installation hole, a driving gear 23 is fixedly installed at the lower end of the shaft rod 22, the driving gear 23 is in meshing connection with the driven gear 21, and a handle 24 is fixedly installed at the upper end of the shaft rod 22.
[0032] The embodiment is further provided with a driven gear 21 fixedly installed on the lead screw 15, an installation hole is formed at the upper end of the groove 12, a shaft rod 22 is rotatably installed in the installation hole, a driving gear 23 is fixedly installed at the lower end of the shaft rod 22, the driving gear 23 is in meshing connection with the driven gear 21, and a handle 24 is fixedly installed at the upper end of the shaft rod 22.
[0033] The detailed connection means is a technology known in the art, and the working principle and process are mainly introduced below.
[0034] The embodiment is further provided with a driven gear 21 fixedly installed on the lead screw 15, an installation hole is formed at the upper end of the groove 12, a shaft rod 22 is rotatably installed in the installation hole, a driving gear 23 is fixedly installed at the lower end of the shaft rod 22, the driving gear 23 is in meshing connection with the driven gear 21, and a handle 24 is fixedly installed at the upper end of the shaft rod 22.
[0035] It is to be understood that the terminology "first" and "second" and the like used herein is merely intended to differentiate one entity or operation from another, without necessarily requiring or implying any such actual relationship or order between such entities or operations.
Claims
1. A power distribution automation device for easy installation, comprising a base plate (1) and a power distribution automation device body (2), characterized in that, The bottom plate block (1) side wall surface is fixedly installed with a guide block (3), the other side wall surface of the bottom plate block (1) is fixedly installed with a stop block (4), the bottom plate block (1) is provided with a bearing groove (5), the power distribution network automation equipment body (2) is placed in the bearing groove (5), the bearing groove (5) is provided with a limiting assembly, the power distribution network automation equipment body (2) rear wall surface is fixedly installed with a pair of box bodies (6), the box body (6) and the stop block (4) are provided with a connecting assembly.
2. The easily installed networked automation device of claim 1, wherein The limiting assembly includes a limiting block (7), the limiting block (7) is slidably installed in the bearing groove (5), the bearing groove (5) two side wall surfaces are provided with an opening (8), the limiting block (7) two side wall surfaces are respectively fixedly installed with a threaded rod (9), the threaded rod (9) penetrates the opening (8), and the threaded rod (9) is rotationally connected with a fixed nut (10).
3. The easily installed networked automation device of claim 2, wherein The limiting block (7) is a right trapezoidal structure.
4. The easily installed networked automation device of claim 1, wherein The connecting assembly includes a moving rod (11), the stop block (4) side wall surface is provided with a pair of grooves (12), the groove (12) two side wall surfaces are respectively provided with a sliding groove (13), the sliding groove (13) is slidably installed with a sliding block (14), the moving rod (11) is fixedly installed between the sliding blocks (14), the groove (12) rear wall surface is rotationally installed with a lead screw (15), the moving rod (11) rear wall surface is provided with a threaded groove, the lead screw (15) is engagedly connected in the threaded groove, the box body (6) is provided with a through hole, the moving rod (11) penetrates the through hole, the box body (6) two side wall surfaces are respectively fixedly installed with a bearing box (16), the bearing box (16) two side wall surfaces and the box body (6) side wall surface are respectively provided with a jack, the jack is insertedly installed with a limiting rod (17), the moving rod (11) two side wall surfaces are respectively provided with a limiting groove (18), the limiting rod (17) and the limiting groove (18) are matched, the limiting rod (17) is fixedly installed with a baffle (19), the baffle (19) is located in the bearing box (16), the baffle (19) and the bearing box (16) inner wall surface are fixedly installed with a spring (20), and the spring (20) is sleeved on the limiting rod (17).
5. The easily installed networked automation device of claim 4, wherein The moving rod (11) penetrating end is a triangular structure.
6. The easily installed networked automation device of claim 4, wherein The lead screw (15) is fixedly installed with a driven gear (21), the groove (12) upper end is provided with a mounting hole, the mounting hole is rotationally installed with a shaft rod (22), the shaft rod (22) lower end is fixedly installed with a driving gear (23), the driving gear (23) and the driven gear (21) are engagedly connected, and the shaft rod (22) upper end is fixedly installed with a handle (24).
7. The easily installed networked automation device of claim 6, wherein The driving gear (23) and the driven gear (21) are both conical gear structures.
8. The easily installed networked automation device of claim 1, wherein The guide block (3) is a right triangle structure.