Cable guiding device for power distribution engineering
The combination structure of guide plate and sliding conductor plate solves the problem of space occupation by multiple clamps, realizes stable guidance of cables of various shapes and aesthetic dustproof effect, and improves the flexibility of power distribution engineering.
Patent Information
- Application Number
- CN202520087607.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-14
AI Technical Summary
The use of various sizes of fixing clamps in existing power distribution projects results in a large amount of installation space being occupied, which is inconvenient to use, especially in narrow areas, and makes it difficult to effectively guide cables of different shapes.
The device employs a combination structure of guide plate and sliding conductor plate. By sliding the sliding strip in the sliding groove, it can stably support and guide cables of different shapes. The dust cover is fixed by magnetic attraction to ensure the aesthetics and dustproof effect of the device.
It enables flexible guidance of cables of various shapes, reduces the installation area of the guidance device, improves the flexibility of use, and keeps the device neat and aesthetically pleasing.
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Figure CN223858743U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of power equipment, and particularly relates to a cable guiding device for power distribution engineering. BACKGROUND
[0002] The cable guiding device for power distribution engineering is a device for guiding, fixing and protecting cables and wires during the installation and maintenance of power systems. It is widely used in the fields of power engineering, construction, communication engineering, etc. In power distribution engineering, various types of cables are used, including round, flat, square and other different shapes and sizes. Each type of cable has different design and purpose, such as high-voltage cable, low-voltage cable, control cable and communication cable, etc. These cables of different shapes need to be regularly guided to prevent the cable arrangement from being messy, which makes the later maintenance complex. The conventional solution is to use multiple types of fixing clamps, each clamp is designed for a specific shape and size of cable. By combining different types of clamps, various cables can be accommodated. Although this method can effectively guide cables of different shapes, it also has disadvantages. Multiple clamps occupy a lot of installation space, especially when used in narrow areas, which is very inconvenient. Therefore, a new structure is proposed to solve the above problems. SUMMARY
[0003] In view of the deficiencies of the prior art, the utility model aims to provide a cable guiding device for power distribution engineering to solve the problems raised in the background.
[0004] The utility model discloses the following technical scheme realizes: a cable guiding device for power distribution engineering, comprising: a guide plate and a sliding wire plate one, the guide plate is internally rear side sliding installation sliding wire plate one, sliding wire plate one front side sliding installation sliding wire plate two,
[0005] The guide plate internally rear side lower side is equipped with cable hole group one, the sliding wire plate one rear side is equipped with the butt joint hole one same with the specification of cable hole group one, the guide plate internally front side lower side is equipped with cable hole group two, the sliding wire plate two front side is equipped with the butt joint hole two same with the specification of cable hole group two.
[0006] As a preferred embodiment, the guide plate internally rear side is equipped with sliding cavity one, and the sliding cavity one internally left and right sides are equipped with sliding groove one for installing sliding wire plate one.
[0007] As a preferred embodiment, the sliding wire plate one left and right sides are respectively equipped with sliding strip one, the sliding strip one is matched with the specification of sliding groove one, and the hole distance length of butt joint hole one is equal to the hole distance length of cable hole group one.
[0008] As a preferred implementation form, the cable hole group is composed of strip-shaped holes and circular holes, the strip-shaped holes are horizontally distributed on the rear side of the circular holes, the strip-shaped holes are opposite to the positions of the circular holes, the strip-shaped holes are convenient for guiding flat cable lines, the circular holes are convenient for guiding circular cable lines, and the butt joint holes have the same specifications as the cable hole group, so that the butt joint holes can stably support the cable lines.
[0009] As a preferred implementation form, the sliding cavity two is provided on the front side of the guide plate, and sliding grooves two for mounting sliding wire guide plates two are provided on the left and right sides of the sliding cavity two.
[0010] As a preferred implementation form, the sliding wire guide plates two are respectively provided with sliding strips two on the left and right sides, the sliding strips two are matched with the sliding grooves two in specification, and the hole distance length of the butt joint holes two is equal to the hole distance length of the cable hole group two.
[0011] As a preferred implementation form, the cable hole group two is composed of square holes and circular holes two, the square holes are horizontally distributed on the front side of the circular holes two, the square holes are opposite to the positions of the circular holes two, the radius length of the circular holes two is smaller than the radius length of the circular holes one, the square holes are convenient for guiding rectangular cable lines, the circular holes two are convenient for guiding circular cable lines two, and the butt joint holes two have the same specifications as the cable hole group two, so that the butt joint holes two can stably support the cable lines.
[0012] As a preferred implementation form, the sliding cavity one is provided with a dustproof cover one on the top, the dustproof cover one is hinged to the front side of the sliding cavity one, and a butt joint groove one is provided on the rear side of the dustproof cover one.
[0013] The length and width of the butt joint groove one are matched with the length and width of the cable hole group one, the sliding cavity one is provided with a baffle one on the rear side, and the rear side of the dustproof cover one is fixedly connected to the top of the baffle one in a magnetic attraction manner.
[0014] As a preferred implementation form, the sliding cavity two is provided with a dustproof cover two on the top, the dustproof cover two is hinged to the rear side of the sliding cavity two, and a butt joint groove two is provided on the front side of the dustproof cover two.
[0015] The length and width of the butt joint groove two are matched with the length and width of the cable hole group two, the sliding cavity two is provided with a baffle two on the front side, and the front side of the dustproof cover two is fixedly connected to the top of the baffle two in a magnetic attraction manner, so that the dustproof cover one and the dustproof cover two have a dustproof effect, the dustproof cover one can be magnetically attracted and fixed to the baffle one, the dustproof cover two can be magnetically attracted and fixed to the baffle two, the surface of the guide plate is ensured to be flat, and the aesthetic appearance is improved.
[0016] The beneficial effects of the cable guiding device for power distribution engineering are as follows: the sliding wire plate one is slid backward and the butt joint hole one is opposite to the cable hole group one, the sliding wire plate two is slid forward and the butt joint hole two is opposite to the cable hole group two, the cable can be guided and connected, the butt joint hole one and the cable hole group one have the same specification, the butt joint hole two and the cable hole group two have the same specification, the cable can be stably supported, the four groups of cables with different shapes can be guided by the guiding plate, the installation area of the guiding device is greatly reduced, the cables with different shapes can be guided, and the use flexibility is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0018] Figure 1 It is a schematic view of the cable guiding device for power distribution engineering.
[0019] Figure 2 It is a structural schematic view of the guiding plate in the cable guiding device for power distribution engineering.
[0020] Figure 3 It is a structural schematic view of the sliding wire plate one in the cable guiding device for power distribution engineering.
[0021] Figure 4 It is a structural schematic view of the sliding wire plate two in the cable guiding device for power distribution engineering.
[0022] In the figure, 100 is a guiding plate, 101 is a sliding groove one, 102 is a sliding groove two, 110 is a dust cover one, 111 is a baffle one, 120 is a dust cover two, 121 is a baffle two, 130 is a cable hole group one, 140 is a cable hole group two;
[0023] 200 is a sliding wire plate one, 201 is a sliding bar one, 210 is a butt joint hole one;
[0024] 300 is a sliding wire plate two, 301 is a sliding bar two, 310 is a butt joint hole two. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only some but not all of the embodiments of the utility model. Based on the embodiments of the utility model, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the utility model.
[0026] Please refer to Figures 1 to 4 The cable guiding device for power distribution engineering comprises a guiding plate 100 and a sliding wire plate one 200, the sliding wire plate one 200 is slidably arranged at the rear side of the interior of the guiding plate 100, and the sliding wire plate two 300 is slidably arranged at the front side of the sliding wire plate one 200.
[0027] A cable hole group one 130 is formed at the lower rear side of the interior of the guiding plate 100, a butt joint hole one 210 with the same specification as the cable hole group one 130 is formed at the rear side of the sliding wire plate one 200, a cable hole group two 140 is formed at the lower front side of the interior of the guiding plate 100, and a butt joint hole two 310 with the same specification as the cable hole group two 140 is formed at the front side of the sliding wire plate two 300.
[0028] A sliding cavity one is formed at the rear side of the interior of the guiding plate 100, and a sliding groove one 101 for mounting the sliding wire plate one 200 is formed at the left and right sides of the interior of the sliding cavity one.
[0029] The sliding wire plate one 200 is respectively provided with a sliding strip one 201 at the left and right sides, the sliding strip one 201 is matched with the specification of the sliding groove one 101, and the hole distance length of the butt joint hole one 210 is equal to the hole distance length of the cable hole group one 130.
[0030] The cable hole group one 130 is composed of a strip-shaped hole and a circular hole one, the strip-shaped hole is horizontally distributed at the rear side of the circular hole one, the strip-shaped hole is opposite to the circular hole one, the strip-shaped hole is convenient for guiding the flat cable, the circular hole one is convenient for guiding the circular cable one, the specification of the butt joint hole one 210 is the same as that of the cable hole group one 130, and therefore the stable supporting effect can be achieved.
[0031] A sliding cavity two is formed at the front side of the interior of the guiding plate 100, and a sliding groove two 102 for mounting the sliding wire plate two 300 is formed at the left and right sides of the interior of the sliding cavity two.
[0032] The sliding wire plate two 300 is respectively provided with a sliding strip two 301 at the left and right sides, the sliding strip two 301 is matched with the specification of the sliding groove two 102, and the hole distance length of the butt joint hole two 310 is equal to the hole distance length of the cable hole group two 140.
[0033] The cable hole group two 140 is composed of square holes and circular holes two, the square holes are horizontally distributed in front of the circular holes two, the square holes are one-to-one opposite to the circular holes two, the radius length of the circular holes two is smaller than the radius length of the circular holes one, the square holes are convenient for guiding the rectangular cable, and the circular holes two are convenient for guiding the circular cable two. The docking hole two 310 and the cable hole group two 140 are of the same specification, and therefore can play a stable supporting effect.
[0034] The top of the sliding cavity one is provided with a dustproof cover one 110, the front side of the dustproof cover one 110 is hinged to the inside front side of the sliding cavity one, and the rear side of the dustproof cover one 110 is provided with a docking groove one;
[0035] The length and width of the docking groove one are matched with the length and width of the cable hole group one 130, the rear side of the sliding cavity one is provided with a baffle one 111, and the rear side of the dustproof cover one 110 is fixedly connected with the top of the baffle one 111 by magnetic attraction.
[0036] The top of the sliding cavity two is provided with a dustproof cover two 120, the rear side of the dustproof cover two 120 is hinged to the inside rear side of the sliding cavity two, and the front side of the dustproof cover two 120 is provided with a docking groove two;
[0037] The length and width of the docking groove two are matched with the length and width of the cable hole group two 140, the front side of the sliding cavity two is provided with a baffle two 121, and the front side of the dustproof cover two 120 is fixedly connected with the top of the baffle two 121 by magnetic attraction, the dustproof cover one 110 and the dustproof cover two 120 play a dustproof effect, at the same time, the dustproof cover one 110 can be magnetically attracted and fixed with the baffle one 111, and the dustproof cover two 120 can be magnetically attracted and fixed with the baffle two 121, and therefore the flatness of the surface of the guide plate 100 can be ensured, and the aesthetic degree is increased.
[0038] Embodiment 1: please refer to Figures 1 to 4 In actual use, the mounting holes are throughly provided at the top four corners of the guide plate 100, the guide plate 100 is conveniently installed by bolts, first, the dustproof cover one 110 at the rear side and the dustproof cover two 120 at the front side of the guide plate 100 are ensured to be in the state of upwardly turned and opened, then the sliding wire plate one 200 is pushed backward, the two groups of sliding strips one 201 are respectively slid backward along the two groups of sliding grooves one 101, the docking hole one 210 is one-to-one opposite to the cable hole group one 130, the cable hole group one 130 includes strip-shaped holes and circular holes one, the strip-shaped holes are convenient for guiding the flat cable, and the circular holes one are convenient for guiding the circular cable one, then the flat cable is respectively threaded through the strip-shaped holes and the docking hole one part opposite to the strip-shaped holes, and the circular cable one is respectively threaded through the circular holes one and the docking hole part opposite to the circular holes one, and then the guiding threading of the rear side cable is completed.
[0039] Similarly, the front cable line can be guided according to the above steps. First, slide the second guide line plate 300 forward, and make the two groups of sliding bars 301 slide forward along the two groups of sliding grooves 102, so that the butt joint holes 310 are opposite to the cable hole groups 140. The cable hole groups 140 include square holes and circular holes 2, the square holes are used to guide the rectangular cable line, and the circular holes 2 are used to guide the circular cable line 2. Then, the rectangular cable line is respectively inserted through the square hole and the butt joint hole 310 part opposite to the square hole, and the circular cable line 2 is respectively inserted through the circular hole 2 and the butt joint hole 310 part opposite to the circular hole 2. Then, the front cable line is guided and connected, and the front and rear cable lines are finally guided. Since the shapes of the cable hole groups 130 and 140 are different, one set of guide plates 100 can guide four groups of cable lines with different shapes, greatly improving the flexibility of the guide plate 100, and significantly reducing the installation area of the guide plate 100.
[0040] Embodiment 2: please refer to Figure 1 After the cable is guided, the rear dust cover 110 is flipped back, and the lower rear side of the dust cover 110 is magnetically fixed to the top of the rear side of the baffle 111 of the sliding cavity. The magnets 1 are embedded in the left and right sides of the top of the baffle 111, and the dust cover 110 is made of iron. Then, the front dust cover 120 is flipped forward, and the lower front side of the dust cover 120 is magnetically fixed to the top of the front side of the baffle 121 of the sliding cavity. The magnets 2 are embedded in the left and right sides of the top of the baffle 121, and the dust cover 120 is made of iron. Thus, the sliding cavity 1 is shielded by the dust cover 110, and the sliding cavity 2 is shielded by the dust cover 120, thereby achieving the dustproof effect. After the dust cover 110 and the dust cover 120 are closed, the surface of the guide plate 100 is flat, and the appearance is beautiful.
[0041] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A cable guide for electrical distribution engineering, comprising: The utility model provides a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no.
2. A cable guide for power distribution engineering as claimed in claim 1, characterized in that: The utility model discloses a guide plate (100) and slide wire board no.
3. A cable guide for power distribution engineering as claimed in claim 1, characterized in that: The utility model discloses a guide plate (100) and slide wire board no.
4. A cable management device for electrical distribution projects as claimed in claim 3, wherein: The utility model discloses a guide plate (100) and slide wire board no.
5. A cable guide for power distribution engineering as claimed in claim 1, characterized in that: The utility model discloses a guide plate (100) and slide wire board no.
6. A cable guide for power distribution engineering as claimed in claim 1, characterized in that: The utility model discloses a guide plate (100) and slide wire board no.
7. A cable management device for electrical distribution projects as claimed in claim 6, characterized in that: The utility model discloses a guide plate (100) and slide wire board no.
8. A cable guide for power distribution engineering as claimed in claim 2, characterized in that: The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no.
9. A cable routing device for electrical distribution engineering as claimed in claim 5, characterized in that: The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. The utility model discloses a guide plate (100) and slide wire board no. 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