Energy-saving transformation device for power distribution network
By designing a distribution network energy-saving transformation device with a guide hole and a clamping plate structure, the problem of cables slipping out of the tensioning force detection device is solved, the multi-directional fixed-point fixation and branching of the cables are achieved, and the stability and safety of the cable wiring are improved.
Patent Information
- Application Number
- CN202422756967.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Existing distribution network reconstruction devices are unable to effectively perform fixed-point combing and cable redirection on multiple cables, causing the cables to easily slip out of the tension detection device.
A distribution network energy-saving transformation device was designed, which included a rectangular outer frame plate, a lower fixed frame plate, an upper fixed clamping plate, a positioning slide and other components. The guide holes and clamping plate structure ensured that the cables were fixed and branched in multiple directions, and the guide rods and springs cooperated to achieve stable clamping of the cables.
It realizes the fixed-point fixation and branching of multiple cables in the distribution network transformation, prevents the cables from slipping out, and improves the stability and safety of cable wiring.
Smart Images

Figure CN223428053U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of energy conservation in distribution networks, and in particular to an energy conservation transformation device for distribution networks. Background Art
[0002] An existing patent (publication number: CN216386094U) proposes a handheld, portable tension detection device for cable installation used in distribution network renovations, relating to the field of tension detection technology. This device comprises a fixed base, a first slider, and a second slider. The fixed base has a slot on its front end, within which a bidirectional threaded rod is rotatably connected. Both the first and second sliders engage the bidirectional threaded rod. However, this device is unable to perform fixed-point alignment or redirection of multiple cables during energy-saving renovations of distribution networks, and requires improvement. Summary of the Invention
[0003] In response to the above-mentioned deficiencies in the prior art, the utility model provides a distribution network energy-saving transformation device which prevents the cables from sliding out from the first lower arc-shaped clamping plate and the second lower arc-shaped clamping plate during the energy-saving transformation of the distribution network, so that the cables entering the rectangular outer frame plate from the upper tube of the conductor can extend outward in both the front and rear directions of the rectangular outer frame plate, thereby ensuring the fixed points and branching of multiple cables.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A distribution network energy-saving transformation device includes a rectangular outer frame plate, a lower fixed frame plate, an upper fixed splint, a positioning slide rod, a bottom support rod, an upper guide rod, a lower guide rod, an upper fixed plate, a lower fixed plate, and an inner hole of a lower Huding plate. The upper portion of the rectangular outer frame plate is provided with a wire upper tube, the wire upper tube has a guide hole, and multiple wire upper tubes are evenly distributed horizontally on the upper portion of the rectangular outer frame plate. The lower portion of the bottom support rod is connected to the rectangular outer frame plate, the upper portion of the bottom support rod is connected to the lower fixed frame plate, and multiple bottom support rods are distributed at the bottom of the lower fixed frame plate. The lower fixed frame plate has multiple first lower arc splints, and the first lower arc splints correspond to the wire upper tubes. The upper fixed splint has multiple second lower arc splints, and the second lower arc splints are symmetrically arranged with the first lower arc splint. The upper fixed splint has a clearance hole, and the cable is inserted into the clearance hole through the guide hole, and the cable is placed between the second lower arc splint and the first lower arc splint.
[0006] The side surface of the lower fixed frame plate is connected to the lower guide rod, and two groups of lower guide rods are symmetrically arranged on the left and right sides of the lower fixed frame plate. The side surface of the upper fixed splint is connected to the upper guide rod, and two groups of upper guide rods are symmetrically arranged on both sides of the upper fixed splint. The upper guide rod is fitted with the lower guide rod, and the lower part of the positioning slide rod is connected to the lower fixed frame plate, and multiple positioning slide rods are evenly distributed on the upper part of the lower fixed frame plate.
[0007] The upper fixed splint has multiple positioning slide rod holes, the positioning slide rods are adapted to the positioning slide rod holes, the positioning slide rods are inserted into the positioning slide rod holes, the positioning slide rods slide in the positioning slide rod holes, the upper guide rods are connected to the lower fixed plate, the lower guide rods are connected to the upper fixed plate, and the upper fixed plate and the lower fixed plate have the same structural dimensions.
[0008] The upper fixing plate has an inner hole in the upper fixing plate, the upper guide rod is adapted to the inner hole in the upper fixing plate, the upper guide rod is inserted into the inner hole in the upper fixing plate, the upper guide rod slides in the inner hole in the upper fixing plate, the lower fixing plate has an inner hole in the lower Huding plate, the lower guide rod is adapted to the inner hole in the lower Huding plate, the lower guide rod is inserted into the inner hole in the lower Huding plate, the lower guide rod slides in the inner hole in the lower Huding plate, the inner hole in the lower Huding plate is sleeved on the outside of the upper guide rod and the lower guide rod, the upper part of the inner hole in the lower Huding plate is against the upper fixing plate, and the lower part of the inner hole in the lower Huding plate is against the lower fixing plate. Beneficial effects
[0009] 1. The utility model needs to fix and divide the multiple cables in the energy-saving transformation of the distribution network. When in use, the rectangular outer frame plate is fixed to the wall by bolts, and the cables are inserted into the rectangular outer frame plate through the guide holes. The multiple wire upper tubes separate and guide the cables. The lower part of the lower fixed frame plate is fixed to the inside of the rectangular outer frame plate through multiple bottom support rods. The positioning slide is fixed to the lower fixed frame plate, and the positioning slide is inserted into the positioning slide jack. The upper fixed splint is fixed by multiple positioning slides. Positioning, so that the upper fixed clamp plate and the lower fixed frame plate remain parallel, so that the two can correspond to each other up and down, prevent the second lower arc clamp plate from being misaligned with the first lower arc clamp plate during the energy-saving transformation of the distribution network, so that the cables placed therein are limited by the second lower arc clamp plate and the first lower arc clamp plate, and prevent them from slipping out of the first lower arc clamp plate and the second lower arc clamp plate during the energy-saving transformation of the distribution network, so that the cables entering the rectangular outer frame plate from the upper tube of the conductor can extend outward in both the front and rear directions of the rectangular outer frame plate, thereby ensuring the fixed points and branching of multiple cables.
[0010] 2. The upper guide rod and the lower guide rod of the utility model are respectively installed and fixed on the upper fixed splint and the lower fixed frame plate, and the upper fixed plate and the lower fixed plate are respectively fixed on the lower guide rod and the upper guide rod, and the spring is sleeved on the upper guide rod and the lower guide rod, and the upper guide rod and the lower guide rod guide the spring, and the upper and lower ends of the spring are respectively against the upper fixed plate and the lower fixed plate, and the upper and lower fixed plates are pushed in opposite directions by the spring, so that the upper guide rod and the lower guide rod drive the lower fixed frame plate and the upper fixed splint to approach relative directions, and then the second lower arc splint cooperates with the first lower arc splint to clamp the cable, preventing the cable from slipping out from between the first lower arc splint and the second lower arc splint during the energy-saving transformation of the distribution network. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1The utility model relates to an energy-saving reconstruction device for distribution network.
[0012] Figure 2 The utility model relates to an energy-saving reconstruction device for distribution network.
[0013] Figure 3 The utility model relates to an energy-saving reconstruction device for distribution network.
[0014] Figure 4 The utility model relates to an energy-saving reconstruction device for distribution network. DETAILED DESCRIPTION
[0015] The utility model will be explained further in detail below according to the drawings and examples:
[0016] Example 1:
[0017] An energy-saving reconstruction device for distribution network, including rectangular outer frame board 01, lower fixed stand board 03, upper fixed clamping plate 05, positioning slide rod 07, bottom support rod 09, upper guide rod 10, lower guide rod 11, upper fixed plate 12, lower fixed plate 14, lower Hu fixed plate inner hole 15, the upper portion of rectangular outer frame board 01 has wire upper tube 02, need to carry out the fixed point of the fixed and branch of the multiple cable of wiring in the energy-saving reconstruction of distribution network, when using, rectangular outer frame board 01 is installed and fixed on the wall body through bolt, wire upper tube 02 has guide hole 18, multiple wire upper tube 02 evenly distributes on the upper portion of rectangular outer frame board 01, inserts cable through guide hole 18 into rectangular outer frame board 01, multiple wire upper tube 02 separates and guides cable, bottom support rod 09 lower portion connects rectangular outer frame board 01, bottom support rod 09 upper portion connects lower fixed stand board 03, multiple bottom support rod 09 distributes in the bottom of lower fixed stand board 03, lower fixed stand board 03 is installed and fixed in the inside of rectangular outer frame board 01 through multiple bottom support rod 09, lower fixed stand board 03 has multiple first lower arc clamping plate 04, first lower arc clamping plate 04 corresponds with wire upper tube 02, upper fixed clamping plate 05 has multiple second lower arc clamping plate 06, and second lower arc clamping plate 06 is arranged symmetrically with first lower arc clamping plate 04, upper fixed clamping plate 05 has let go of hole 17, and cable is inserted into let go of hole 17 through guide hole 18, and cable is placed between second lower arc clamping plate 06, first lower arc clamping plate 04.
[0018] Example 2:
[0019] The lower fixed frame plate 03 of the utility model is connected to the lower guide rod 11 on the side, and two groups of lower guide rods 11 are symmetrically arranged on the left and right sides of the lower fixed frame plate 03. The upper fixed splint 05 is connected to the upper guide rod 10 on the side, and two groups of upper guide rods 10 are symmetrically arranged on both sides of the upper fixed splint 05. The upper guide rod 10 and the lower guide rod 11 are respectively installed and fixed on the upper fixed splint 05 and the lower fixed frame plate 03. The upper guide rod 10 is fitted with the lower guide rod 11. The lower part of the positioning slide bar 07 is connected to the lower fixed frame plate 03, and the positioning slide bar 07 is installed and fixed on the lower fixed frame plate 03. Multiple positioning slide bars 07 are evenly distributed on the upper part of the lower fixed frame plate 03.
[0020] Example 3:
[0021] The upper fixed splint 05 of the utility model has a plurality of positioning slide rod insertion holes 08, the positioning slide rod 07 is adapted to the positioning slide rod insertion hole 08, the positioning slide rod 07 is inserted into the positioning slide rod insertion hole 08, the positioning slide rod 07 slides in the positioning slide rod insertion hole 08, and the upper fixed splint 05 is positioned by the plurality of positioning slide rods 07, so that the upper fixed splint 05 and the lower fixed frame plate 03 remain parallel, so that the two can correspond to each other up and down, and the second lower arc splint 06 is prevented from being misaligned with the first lower arc splint 04 in the energy-saving transformation of the distribution network, so that the cables placed therein are affected by the second lower arc splint 06 , the limiting function of the first lower arc-shaped clamping plate 04 prevents the cables from slipping out from the first lower arc-shaped clamping plate 04 and the second lower arc-shaped clamping plate 06 during the energy-saving transformation of the distribution network, so that the cables entering the rectangular outer frame plate 01 from the upper wire tube 02 can extend outward in the front and back directions of the rectangular outer frame plate 01, ensuring the fixing and branching of multiple cables. The upper guide rod 10 is connected to the lower fixed plate 14, and the lower guide rod 11 is connected to the upper fixed plate 12. The upper fixed plate 12 and the lower fixed plate 14 are respectively fixed on the lower guide rod 11 and the upper guide rod 10, and the upper fixed plate 12 and the lower fixed plate 14 have the same structural dimensions.
[0022] Example 4:
[0023] The utility model described upper fixing plate 12 has an upper fixing plate inner hole 13, the upper guide rod 10 is adapted to the upper fixing plate inner hole 13, the upper guide rod 10 is inserted into the upper fixing plate inner hole 13, the upper guide rod 10 slides in the upper fixing plate inner hole 13, the lower fixing plate 14 has a lower Hu Ding plate inner hole 15, the lower guide rod 11 is adapted to the lower Hu Ding plate inner hole 15, the lower guide rod 11 is inserted into the lower Hu Ding plate inner hole 15, the lower guide rod 11 slides in the lower Hu Ding plate inner hole 15, the lower Hu Ding plate inner hole 15 is sleeved on the outer side of the upper guide rod 10 and the lower guide rod 11, the upper part of the lower Hu Ding plate inner hole 15 is against the upper fixing plate 12, and the lower part of the lower Hu Ding plate inner hole 15 is against the lower fixing plate 14 The spring 16 is offset from each other, and the spring 16 is sleeved on the upper guide rod 10 and the lower guide rod 11. The upper guide rod 10 and the lower guide rod 11 guide the spring 16. The upper and lower ends of the spring 16 are respectively offset from the upper fixed plate 12 and the lower fixed plate 14. The spring 16 applies thrust in opposite directions to the upper fixed plate 12 and the lower fixed plate 14, so that the upper guide rod 10 and the lower guide rod 11 drive the lower fixed frame plate 03 and the upper fixed clamping plate 05 to approach in opposite directions, thereby making the second lower arc clamping plate 06 cooperate with the first lower arc clamping plate 04 to clamp the cable, preventing the cable from slipping out from between the first lower arc clamping plate 04 and the second lower arc clamping plate 06 during the energy-saving transformation of the distribution network.
[0024] Example 5:
[0025] The installation steps of the present utility model are as follows: first, connect the upper guide rod 10 to the upper fixed splint 05, connect the lower guide rod 11 to the lower fixed frame plate 03, insert the upper guide rod 10 into the inner hole 13 of the upper fixed plate, insert the lower guide rod 11 into the inner hole 15 of the lower fixed plate, sleeve the spring 16 on the upper guide rod 10 and the lower guide rod 11, insert the positioning slide rod 07 into the positioning slide rod socket 08, connect the upper and lower ends of the bottom support rod 09 to the lower fixed frame plate 03 and the rectangular outer frame plate 01 respectively, insert the cable into the guide hole 18, pass the cable through the makeshift hole 17 and place it between the first lower arc splint 04 and the second lower arc splint 06.
[0026] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A distribution network energy-saving transformation device, characterized by : It includes a rectangular outer frame plate (01), a lower fixed frame plate (03), an upper fixed splint (05), a positioning slide rod (07), a bottom support rod (09), an upper guide rod (10), a lower guide rod (11), an upper fixed plate (12), a lower fixed plate (14), and an inner hole (15) of a lower fixed plate. The upper portion of the rectangular outer frame plate (01) has a wire upper tube (02), the wire upper tube (02) has a guide hole (18), and a plurality of wire upper tubes (02) are evenly distributed horizontally on the upper portion of the rectangular outer frame plate (01). The lower portion of the bottom support rod (09) is connected to the rectangular outer frame plate (01), and the upper portion of the bottom support rod (09) is connected to the lower A fixed frame plate (03), a plurality of bottom support rods (09) are distributed at the bottom of the lower fixed frame plate (03), the lower fixed frame plate (03) has a plurality of first lower arc-shaped clamps (04), the first lower arc-shaped clamps (04) correspond to the upper tube (02) of the wire, the upper fixed clamp (05) has a plurality of second lower arc-shaped clamps (06), the second lower arc-shaped clamps (06) and the first lower arc-shaped clamps (04) are symmetrically arranged, the upper fixed clamp (05) has a clearance hole (17), the cable passes through the guide hole (18) and is inserted into the clearance hole (17), and the cable is placed between the second lower arc-shaped clamp (06) and the first lower arc-shaped clamp (04).
2. A power distribution network energy-saving transformation device according to claim 1, characterized in that The lower fixed frame plate (03) is connected to the lower guide rod (11) on the side, and two groups of lower guide rods (11) are symmetrically arranged on the left and right sides of the lower fixed frame plate (03). The upper fixed splint (05) is connected to the upper guide rod (10) on the side, and two groups of upper guide rods (10) are symmetrically arranged on both sides of the upper fixed splint (05). The upper guide rod (10) is fitted with the lower guide rod (11). The lower part of the positioning slide rod (07) is connected to the lower fixed frame plate (03), and multiple positioning slide rods (07) are evenly distributed on the upper part of the lower fixed frame plate (03).
3. A power distribution network energy-saving transformation device according to claim 2, characterized in that The upper fixed splint (05) has a plurality of positioning slide rod sockets (08), the positioning slide rod (07) is adapted to the positioning slide rod socket (08), the positioning slide rod (07) is inserted into the positioning slide rod socket (08), the positioning slide rod (07) slides in the positioning slide rod socket (08), the upper guide rod (10) is connected to the lower fixed plate (14), the lower guide rod (11) is connected to the upper fixed plate (12), and the upper fixed plate (12) and the lower fixed plate (14) have the same structural dimensions.
4. A power distribution network energy-saving transformation device according to claim 3, characterized in that : The upper fixed plate (12) has an upper fixed plate inner hole (13), the upper guide rod (10) is adapted to the upper fixed plate inner hole (13), the upper guide rod (10) is inserted into the upper fixed plate inner hole (13), and the upper guide rod (10) slides in the upper fixed plate inner hole (13), the lower fixed plate (14) has a lower Hu Ding plate inner hole (15), the lower guide rod (11) is adapted to the lower Hu Ding plate inner hole (15), the lower guide rod (11) is inserted into the lower Hu Ding plate inner hole (15), and the lower guide rod (11) slides in the lower Hu Ding plate inner hole (15).
5. A power distribution network energy-saving transformation device according to claim 4, characterized in that : The inner hole (15) of the lower Hu Ding plate is sleeved on the outer side of the upper guide rod (10) and the lower guide rod (11), the upper part of the inner hole (15) of the lower Hu Ding plate is against the upper fixed plate (12), and the lower part of the inner hole (15) of the lower Hu Ding plate is against the lower fixed plate (14).
Citation Information
Patent Citations
Hand-held portable tensile force detection device for cable erection for power distribution network reconstruction
CN216386094U