WO2022041293A1 - 一种耐腐蚀电缆导管 - Google Patents

一种耐腐蚀电缆导管 Download PDF

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Publication number
WO2022041293A1
WO2022041293A1 PCT/CN2020/112889 CN2020112889W WO2022041293A1 WO 2022041293 A1 WO2022041293 A1 WO 2022041293A1 CN 2020112889 W CN2020112889 W CN 2020112889W WO 2022041293 A1 WO2022041293 A1 WO 2022041293A1
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Prior art keywords
conduit
wall
corrosion
layer
fixedly connected
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PCT/CN2020/112889
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English (en)
French (fr)
Inventor
殷震宇
盛明荣
孙丽华
丁保晨
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江苏诺贝尔塑业有限公司
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Publication of WO2022041293A1 publication Critical patent/WO2022041293A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B17/00Layered products essentially comprising sheet glass, or glass, slag, or like fibres
    • B32B17/02Layered products essentially comprising sheet glass, or glass, slag, or like fibres in the form of fibres or filaments
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B17/00Layered products essentially comprising sheet glass, or glass, slag, or like fibres
    • B32B17/06Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material
    • B32B17/10Layered products essentially comprising sheet glass, or glass, slag, or like fibres comprising glass as the main or only constituent of a layer, next to another layer of a specific material of synthetic resin
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B27/00Layered products comprising a layer of synthetic resin
    • B32B27/38Layered products comprising a layer of synthetic resin comprising epoxy resins
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B33/00Layered products characterised by particular properties or particular surface features, e.g. particular surface coatings; Layered products designed for particular purposes not covered by another single class
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B5/00Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts
    • B32B5/02Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G9/00Installations of electric cables or lines in or on the ground or water
    • H02G9/06Installations of electric cables or lines in or on the ground or water in underground tubes or conduits; Tubes or conduits therefor
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09DCOATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS; FILLING PASTES; CHEMICAL PAINT OR INK REMOVERS; INKS; CORRECTING FLUIDS; WOODSTAINS; PASTES OR SOLIDS FOR COLOURING OR PRINTING; USE OF MATERIALS THEREFOR
    • C09D5/00Coating compositions, e.g. paints, varnishes or lacquers, characterised by their physical nature or the effects produced; Filling pastes
    • C09D5/08Anti-corrosive paints

Definitions

  • the utility model relates to the technical field of cable conduit manufacturing, in particular to a corrosion-resistant cable conduit.
  • Cable conduit also known as casing and protective tube, is a conduit used for cable wiring and protection of wires in electrical installations, allowing cables and wires to penetrate and replace.
  • Cable conduit is a new type of casing popularized and used in power engineering. Materials, with the rapid development of power cable buried laying projects, higher requirements are put forward for cable conduits. Cable conduits are suitable for power engineering, telecommunications, urban construction, transportation and other fields.
  • steel protection pipes and plastic pipes there are two kinds of steel protection pipes and plastic pipes.
  • Types of casing, steel protection pipes include thin-walled pipes and thick-walled pipes, galvanized and non-galvanized, plastic pipes are generally made of polyvinyl chloride plastic or U-PVC, and there are ordinary and flame-retardant types.
  • Fiberglass cable pipes are made of high-strength glass fiber as the reinforcing material, unsaturated polyester resin as the base material, and controlled by a microcomputer. It is mechanically wound, and the existing cable conduit has certain drawbacks in use.
  • the existing cable conduit is easily corroded after a long time, which will greatly shorten the service life of the cable conduit and may damage the cables inside.
  • Some cable conduits need to be welded together during installation, which is too time-consuming to install and will increase the construction period. The strength of the existing conduit will cut and wear the conduit during transportation and installation, which will affect its use. performance, for this, we propose a corrosion-resistant cable conduit.
  • the purpose of the present invention is to provide a corrosion-resistant cable conduit to solve the problems raised in the above-mentioned background art.
  • a corrosion-resistant cable conduit comprising a conduit body, an upper conduit is arranged on the outer surface of the upper end of the conduit body, and a quick disassembly mechanism is arranged on the outer surface of the lower end of the upper conduit , the outer surface of the lower end of the quick disassembly mechanism is provided with an upper connector, and the lower end of the upper connector is provided with a connection, the lower end of the connection is provided with a lower conduit, and the outer surface of the upper end of the lower conduit is provided with a lower connection
  • the outer wall of the conduit body is provided with an anti-corrosion mechanism, and the outer wall of the anti-corrosion mechanism is provided with a high-strength mechanism.
  • the anti-corrosion mechanism includes an epoxy resin layer, a glass fiber, a graphene composite anti-corrosion coating and a paint layer, the epoxy resin layer is located on the outer wall of the glass fiber, and the epoxy resin layer is located on the graphene composite anti-corrosion coating.
  • the inner wall, the paint layer is located on the outer wall of the graphene composite anti-corrosion coating.
  • the outer wall of the glass fiber is fixedly connected to the inner wall of the epoxy resin layer by spraying, and the outer wall of the epoxy resin layer is fixedly connected to the inner wall of the graphene composite anti-corrosion coating by spraying, and the inner wall of the paint layer is sprayed.
  • the outer wall of the graphene composite anti-corrosion coating is fixedly connected.
  • the quick disassembly mechanism includes an upper cover, a threaded insert rod, an upper opening, a fixing screw, a lower cover and a lower opening, the upper openings are located on both sides of the upper cover, and the upper cover is located on the side of the lower cover. On the upper end, the lower through openings are located on both sides of the lower cover.
  • the outer surface of the upper end of the upper through port is fixedly connected to the outer surface of the threaded insertion rod through a fixing screw, and the outside of the threaded insertion rod is fixedly connected to the outer surface of the lower end of the lower through port through a fixing screw.
  • the high-strength mechanism includes a main pipe, a high-performance fiber layer and a cut-resistant layer, the high-performance fiber layer is located on the outer wall of the main pipe, and the high-performance fiber layer is located on the inner wall of the cut-resistant layer.
  • the outer wall of the main conduit is fixedly connected to the inner wall of the high-performance fiber layer by spraying, and the outer wall of the high-performance fiber layer is fixedly connected to the inner wall of the cut-resistant layer by spraying.
  • the outer surface of the lower end of the upper conduit is fixedly connected to the outer surface of the upper end of the lower conduit, and the outer wall of the anti-corrosion mechanism is fixedly connected to the inner wall of the high-strength mechanism.
  • the corrosion-resistant cable conduit can improve the corrosion resistance of the cable conduit through the anti-corrosion mechanism.
  • Glass fiber is an inorganic non-metallic material with excellent performance, which has good insulation, strong heat resistance and good corrosion resistance. With the advantages of high mechanical strength, it is a more suitable material for the manufacture of cable conduits.
  • the cable conduits are made of glass fiber, resin, and quartz sand, and have strong corrosion resistance.
  • the epoxy resin layer and paint layer can stabilize the conduit.
  • Graphene composite anti-corrosion coating is a new type of anti-corrosion material, which has excellent anti-corrosion performance and can prolong the service life of the conduit.
  • the upper conduit is connected with the lower conduit.
  • a section of conduit is connected for use, and an upper cover is welded at the upper connecting joint of the upper conduit, and a lower cover is welded at the lower connecting joint of the lower conduit. Align the upper cover with the lower cover, then insert the threaded rod into the upper opening on the upper cover and the lower opening on the lower cover, fasten both sides with fixing screws, and finally pour the sealing glue into the two Cover the gap between the joints to improve the tightness of the conduit, so that the disassembly and assembly can facilitate the change of the cable and the conduit, which is conducive to speeding up the construction period of the project.
  • the high-performance fiber layer has the advantages of light weight and good impact resistance, which can improve the ring stiffness and tensile strength of the conduit from the physical structure, and can improve the conduit during transportation and installation.
  • the flexibility of the duct is beneficial to protect the catheter.
  • the outermost anti-cut layer of the duct can prevent damage to the duct caused by bumps. By improving the strength of the duct, the internal cable can be better protected, which is conducive to the long-term stable transmission of the cable. electrical energy.
  • Fig. 1 is the overall structure schematic diagram of a kind of corrosion-resistant cable conduit of the present utility model
  • Fig. 2 is a structural schematic diagram of the anti-corrosion mechanism in a corrosion-resistant cable conduit of the present invention
  • FIG. 3 is a schematic structural diagram of a quick disassembly and assembly mechanism in a corrosion-resistant cable conduit of the present invention
  • FIG. 4 is a schematic structural diagram of a high-strength mechanism in a corrosion-resistant cable conduit of the present invention.
  • the present utility model provides a technical solution: a corrosion-resistant cable conduit, an upper conduit 2 is arranged on the outer surface of the upper end of the conduit main body 1, and a quick disassembly mechanism is arranged on the outer surface of the lower end of the upper conduit 2 5.
  • the outer surface of the lower end of the quick disassembly mechanism 5 is provided with an upper connector 7, and the lower end of the upper connector 7 is provided with a connection 8, the lower end of the connection 8 is provided with a lower conduit 3, and the outer surface of the upper end of the lower conduit 3 is provided.
  • a lower connector 9 is provided, the outer wall of the catheter body 1 is provided with an anti-corrosion mechanism 4, and the outer wall of the anti-corrosion mechanism 4 is provided with a high-strength mechanism 6, and the anti-corrosion mechanism 4 includes an epoxy resin layer 401, glass fiber 402, graphene The composite anti-corrosion coating 403 and the paint layer 404, the epoxy resin layer 401 is located on the outer wall of the glass fiber 402, and the epoxy resin layer 401 is located on the inner wall of the graphene composite anti-corrosion coating 403, and the paint layer 404 is located on the outer wall of the graphene composite anti-corrosion coating 403, The corrosion resistance of the cable conduit can be improved.
  • the outer wall of the glass fiber 402 is fixedly connected to the inner wall of the epoxy resin layer 401 by spraying, and the outer wall of the epoxy resin layer 401 is fixedly connected to the inner wall of the graphene composite anti-corrosion coating 403 by spraying.
  • the inner wall of the layer 404 is fixedly connected to the outer wall of the graphene composite anti-corrosion coating 403 by spraying, which is beneficial to the anti-corrosion mechanism 4 to exert better performance.
  • the fixing screw 504, the lower cover 505 and the lower opening 506, the upper opening 503 is located on both sides of the upper cover 501, the upper cover 501 is located at the upper end of the lower cover 505, and the lower opening 506 is located on both sides of the lower cover 505, which can quickly
  • the upper conduit 2 is connected with the lower conduit 3
  • the outer surface of the upper end of the upper through port 503 is fixedly connected with the outside of the threaded insertion rod 502 through the fixing screw 504, and the outside of the threaded insertion rod 502 is connected with the lower through hole 506 through the fixing screw 504.
  • the outer surface of the lower end is fixedly connected, which is beneficial to improve the fixing ability of the cable conduit.
  • the high-strength mechanism 6 includes a main conduit 601, a high-performance fiber layer 602 and a cut-resistant layer 603.
  • the performance fiber layer 602 is located on the inner wall of the anti-cut layer 603, which can improve the anti-cut and wear resistance of the cable conduit.
  • the outer wall of the main conduit 601 is fixedly connected to the inner wall of the high-performance fiber layer 602 by spraying, and the The outer wall is fixedly connected to the inner wall of the anti-cutting layer 603 by spraying, which is beneficial to improve the stability of the high-strength mechanism 6.
  • the outer surface of the lower end of the upper conduit 2 is fixedly connected to the outer surface of the upper end of the lower conduit 3, and the outer wall of the anti-corrosion mechanism
  • the inner wall of the strength mechanism 6 is fixedly connected, which is conducive to the better effect of the cable conduit.
  • the patent of this application consists of a conduit body 1, an upper conduit 2, a lower conduit 3, an anti-corrosion mechanism 4, an epoxy resin layer 401, a glass fiber 402, a graphene composite anti-corrosion coating 403, a paint layer 404, a quick disassembly mechanism 5, and an upper cover 501, threaded rod 502, upper port 503, fixing screw 504, lower cover 505, lower port 506, high-strength mechanism 6, main pipe 601, high-performance fiber layer 602, anti-cut layer 603, upper connector 7,
  • the connection part 8 is composed of the lower connector 9 and other components.
  • the corrosion resistance of the cable conduit can be improved by the anti-corrosion mechanism 4 provided.
  • the glass fiber 402 is an inorganic non-metallic material with excellent performance.
  • the cable conduits are made of glass fiber 402, resin and quartz sand, and have strong corrosion resistance.
  • the oxygen resin layer 401 and the paint layer 404 can stabilize the corrosion resistance of the conduit.
  • the graphene composite anti-corrosion coating 403 is a new type of anti-corrosion material, which has excellent anti-corrosion properties and can prolong the service life of the conduit.
  • Mechanism 5 which can quickly connect the upper conduit 2 and the lower conduit 3. In actual construction, a section of conduit is connected for use, and an upper cover 501 is welded at the upper connector 7 of the upper conduit 2, and the lower conduit is used.
  • the high-strength mechanism 6 can improve the ability of the cable conduit to resist cutting and wear.
  • the high-performance fiber layer 602 has the advantages of light weight and good impact resistance, which can be improved from the physical structure. Improve the ring stiffness and tensile strength of the pipe, improve the flexibility of the pipe during transportation and installation, and help protect the pipe. The strength of the cable can better protect the internal cable, which is conducive to the long-term stable transmission of electric energy by the cable.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Rigid Pipes And Flexible Pipes (AREA)
  • Laying Of Electric Cables Or Lines Outside (AREA)

Abstract

耐腐蚀电缆导管,包括导管主体,所述导管主体的上端外表面设置有上导管,且上导管的下端外表面设置有快速拆装机构,所述快速拆装机构的下端外表面设置有上连接头,且上连接头的下端设置有连接处,所述连接处的下端设置有下导管,且下导管的上端外表面设置有下连接头,所述导管主体的外壁设置有防腐蚀机构,且防腐蚀机构的外壁设置有高强度机构。

Description

一种耐腐蚀电缆导管 技术领域
本实用新型涉及电缆导管制造技术领域,具体为一种耐腐蚀电缆导管。
背景技术
电缆导管又称套管、保护管,是在电气安装中用于电缆布线、保护电线的管道,允许电缆、电线的穿入与更换,电缆导管是在电力工程中推广使用的一种新型套管材料,随着电力电缆埋地敷设工程的迅速发展,对电缆导管提出的更高要求,电缆套管适用于电力工程、电讯、城市建设、交通等领域,一般有钢保护管与塑料管两种类型的套管,钢保护管有薄壁管与厚壁管,有镀锌和不镀锌之分,塑料管一般用聚氯乙烯塑料或U—PVC制作,有普通和阻燃型,价格比金属管便宜,施工方便,不会生锈,电线穿线护套管大部分采用塑料管,玻璃钢电缆导管是以高强度的玻璃纤维为增强材料,不饱的聚酯树脂为基体材料,采用微机控制机械缠绕而成,现有的电缆导管在使用时存在一定的弊端,现有的电缆导管长时间过后容易被腐蚀,这样会极大的缩短电缆导管的使用寿命,可能会损坏里面的电缆,现有的电缆导管在安装时需要将一段段的导管熔接成一起,这样安装太浪费时间,会增大施工周期,现有的导管强度在运输与安装过程会割到与磨损导管,会影响其使用性能,为此,我们提出一种耐腐蚀电缆导管。
实用新型内容
本实用新型的目的在于提供一种耐腐蚀电缆导管,以解决上述背景技术中提出的问题。
为实现上述目的,本实用新型提供如下技术方案:一种耐腐蚀电缆导管,包括导管主体,所述导管主体的上端外表面设置有上导管,且上导管的下端外表面设置有快速拆装机构,所述快速拆装机构的下端外表面设置有上连接头,且上连接头的下端设置有连接处,所述连接处的下端设置有下导管,且 下导管的上端外表面设置有下连接头,所述导管主体的外壁设置有防腐蚀机构,且防腐蚀机构的外壁设置有高强度机构。
优选的,所述防腐蚀机构包括环氧树脂层、玻璃纤维、石墨烯复合防腐涂料与油漆层,所述环氧树脂层位于玻璃纤维的外壁,且环氧树脂层位于石墨烯复合防腐涂料的内壁,所述油漆层位于石墨烯复合防腐涂料的外壁。
优选的,所述玻璃纤维的外壁通过喷涂与环氧树脂层的内壁固定连接,且环氧树脂层的外壁通过喷涂与石墨烯复合防腐涂料的内壁固定连接,所述油漆层的内壁通过喷涂与石墨烯复合防腐涂料的外壁固定连接。
优选的,所述快速拆装机构包括上盖、螺纹插杆、上通口、固定螺丝、下盖与下通口,所述上通口位于上盖的两侧,且上盖位于下盖的上端,所述下通口位于下盖的两侧。
优选的,所述上通口的上端外表面通过固定螺丝与螺纹插杆的外部固定连接,且螺纹插杆的外部通过固定螺丝与下通口的下端外表面固定连接。
优选的,所述高强度机构包括主导管、高性能纤维层与防割层,所述高性能纤维层位于主导管的外壁,且高性能纤维层位于防割层的内壁。
优选的,所述主导管的外壁通过喷涂与高性能纤维层的内壁固定连接,且高性能纤维层的外壁通过喷涂与防割层的内壁固定连接。
优选的,所述上导管的下端外表面与下导管的上端外表面固定连接,所述防腐蚀机构的外壁与高强度机构的内壁固定连接。
与现有技术相比,本实用新型的有益效果是:
该种耐腐蚀电缆导管,通过设置的防腐蚀机构,可以提高电缆导管的耐腐蚀能力,玻璃纤维是一种性能优异的无机非金属材料,有绝缘性好、耐热性强、抗腐蚀性好与机械强度高等优点,是现在比较适合制造电缆导管的材料,该电缆导管通过玻璃纤维、树脂,石英砂制成,有较强的抗腐蚀能力,通过环氧树脂层与油漆层,可以稳定导管的耐腐蚀性能,石墨烯复合防腐涂 料是一种新型防腐材料,有着极好的防腐性能,可以延长导管的使用寿命,该种耐腐蚀电缆导管,通过设置的快速拆装机构,可以快速的将上导管与下导管进行连接,在实际施工中,是将一段段的导管连接起来使用,在上导管的上连接头处焊接一个上盖,在下导管的下连接头处焊接一个下盖,在连接时,将上盖与下盖对准,然后将螺纹插杆插进上盖上的上通口与下盖上的下通口处,两边再用固定螺丝紧固,最后将密封胶水灌入两盖连接处之间的缝隙中,以提高导管的密封性,这样拆装可以方便更改电缆与导管,有利于加快工程的施工周期,该种耐腐蚀电缆导管,通过设置的高强度机构,可以提高电缆导管防割与耐磨损的能力,高性能纤维层具有重量轻与抗冲击性好等优点,可以从物理结构上提升管道的环刚度与拉伸强度,在运输与安装过程中可以提高导管的柔韧性,有利于保护好导管,通过导管最外面的防割层,能够防止磕碰对导管造成损害,通过提高导管的强度,可以更好的保护内部的电缆,有利于电缆长时间稳定的输送电能。
附图说明
图1为本实用新型一种耐腐蚀电缆导管的整体结构示意图;
图2为本实用新型一种耐腐蚀电缆导管中防腐蚀机构的结构示意图;
图3为本实用新型一种耐腐蚀电缆导管中快速拆装机构的结构示意图;
图4为本实用新型一种耐腐蚀电缆导管中高强度机构的结构示意图。
图中:1、导管主体,2、上导管,3、下导管,4、防腐蚀机构,401、环氧树脂层,402、玻璃纤维,403、石墨烯复合防腐涂料,404、油漆层,5、快速拆装机构,501、上盖,502、螺纹插杆,503、上通口,504、固定螺丝,505、下盖,506、下通口,6、高强度机构,601、主导管,602、高性能纤维层,603、防割层,7、上连接头,8、连接处,9、下连接头。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术 方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
请参阅图1-4,本实用新型提供一种技术方案:一种耐腐蚀电缆导管,导管主体1的上端外表面设置有上导管2,且上导管2的下端外表面设置有快速拆装机构5,快速拆装机构5的下端外表面设置有上连接头7,且上连接头7的下端设置有连接处8,连接处8的下端设置有下导管3,且下导管3的上端外表面设置有下连接头9,导管主体1的外壁设置有防腐蚀机构4,且防腐蚀机构4的外壁设置有高强度机构6,防腐蚀机构4包括环氧树脂层401、玻璃纤维402、石墨烯复合防腐涂料403与油漆层404,环氧树脂层401位于玻璃纤维402的外壁,且环氧树脂层401位于石墨烯复合防腐涂料403的内壁,油漆层404位于石墨烯复合防腐涂料403的外壁,可以提高电缆导管的耐腐蚀能力,玻璃纤维402的外壁通过喷涂与环氧树脂层401的内壁固定连接,且环氧树脂层401的外壁通过喷涂与石墨烯复合防腐涂料403的内壁固定连接,油漆层404的内壁通过喷涂与石墨烯复合防腐涂料403的外壁固定连接,有利于防腐蚀机构4发挥较好的性能,快速拆装机构5包括上盖501、螺纹插杆502、上通口503、固定螺丝504、下盖505与下通口506,上通口503位于上盖501的两侧,且上盖501位于下盖505的上端,下通口506位于下盖505的两侧,可以快速的将上导管2与下导管3进行连接,上通口503的上端外表面通过固定螺丝504与螺纹插杆502的外部固定连接,且螺纹插杆502的外部通过固定螺丝504与下通口506的下端外表面固定连接,有利于提高电缆导管的固定能力,高强度机构6包括主导管601、高性能纤维层602与防割层603,高性能纤维层602位于主导管601的外壁,且高性能纤维层602位于防割层603的内壁,可以提高电缆导管防割与耐磨损的能力,主导管601 的外壁通过喷涂与高性能纤维层602的内壁固定连接,且高性能纤维层602的外壁通过喷涂与防割层603的内壁固定连接,有利于提高高强度机构6的稳定性,上导管2的下端外表面与下导管3的上端外表面固定连接,防腐蚀机构4的外壁与高强度机构6的内壁固定连接,有利于电缆导管发挥较好的效果。
工作原理
本申请专利由导管主体1、上导管2、下导管3、防腐蚀机构4、环氧树脂层401、玻璃纤维402、石墨烯复合防腐涂料403、油漆层404、快速拆装机构5、上盖501、螺纹插杆502、上通口503、固定螺丝504、下盖505、下通口506、高强度机构6、主导管601、高性能纤维层602、防割层603、上连接头7、连接处8与下连接头9等部件组成,首先,通过设置的防腐蚀机构4,可以提高电缆导管的耐腐蚀能力,玻璃纤维402是一种性能优异的无机非金属材料,有绝缘性好、耐热性强、抗腐蚀性好与机械强度高等优点,是现在比较适合制造电缆导管的材料,该电缆导管通过玻璃纤维402、树脂,石英砂制成,有较强的抗腐蚀能力,通过环氧树脂层401与油漆层404,可以稳定导管的耐腐蚀性能,石墨烯复合防腐涂料403是一种新型防腐材料,有着极好的防腐性能,可以延长导管的使用寿命,通过设置的快速拆装机构5,可以快速的将上导管2与下导管3进行连接,在实际施工中,是将一段段的导管连接起来使用,在上导管2的上连接头7处焊接一个上盖501,在下导管3的下连接头9处焊接一个下盖505,在连接时,将上盖501与下盖505对准,然后将螺纹插杆502插进上盖501上的上通口503与下盖505上的下通口506处,两边再用固定螺丝504紧固,最后将密封胶水灌入两盖连接处8之间的缝隙中,以提高导管的密封性,这样拆装可以方便更改电缆与导管,有利于加快工程的施工周期,通过设置的高强度机构6,可以提高电缆导管防割与耐磨损的能力,高性能纤维层602具有重量轻与抗冲击性好等优点,可以从物理结 构上提升管道的环刚度与拉伸强度,在运输与安装过程中可以提高导管的柔韧性,有利于保护好导管,通过导管最外面的防割层603,能够防止磕碰对导管造成损害,通过提高导管的强度,可以更好的保护内部的电缆,有利于电缆长时间稳定的输送电能。
尽管已经示出和描述了本实用新型的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本实用新型的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本实用新型的范围由所附权利要求及其等同物限定。

Claims (7)

  1. 一种耐腐蚀电缆导管,包括导管主体(1),其特征在于:所述导管主体(1)的上端外表面设置有上导管(2),且上导管(2)的下端外表面设置有快速拆装机构(5),所述快速拆装机构(5)的下端外表面设置有上连接头(7),且上连接头(7)的下端设置有连接处(8),所述连接处(8)的下端设置有下导管(3),且下导管(3)的上端外表面设置有下连接头(9),所述导管主体(1)的外壁设置有防腐蚀机构(4),且防腐蚀机构(4)的外壁设置有高强度机构(6),所述防腐蚀机构(4)包括环氧树脂层(401)、玻璃纤维(402)、石墨烯复合防腐涂料(403)与油漆层(404),所述环氧树脂层(401)位于玻璃纤维(402)的外壁,且环氧树脂层(401)位于石墨烯复合防腐涂料(403)的内壁,所述油漆层(404)位于石墨烯复合防腐涂料(403)的外壁。
  2. 根据权利要求1所述的一种耐腐蚀电缆导管,其特征在于:所述玻璃纤维(402)的外壁通过喷涂与环氧树脂层(401)的内壁固定连接,且环氧树脂层(401)的外壁通过喷涂与石墨烯复合防腐涂料(403)的内壁固定连接,所述油漆层(404)的内壁通过喷涂与石墨烯复合防腐涂料(403)的外壁固定连接。
  3. 根据权利要求1所述的一种耐腐蚀电缆导管,其特征在于:所述快速拆装机构(5)包括上盖(501)、螺纹插杆(502)、上通口(503)、固定螺丝(504)、下盖(505)与下通口(506),所述上通口(503)位于上盖(501)的两侧,且上盖(501)位于下盖(505)的上端,所述下通口(506)位于下盖(505)的两侧。
  4. 根据权利要求3所述的一种耐腐蚀电缆导管,其特征在于:所述上通口(503)的上端外表面通过固定螺丝(504)与螺纹插杆(502)的外部固定连接,且螺纹插杆(502)的外部通过固定螺丝(504)与下通口(506)的下端外表面固定连接。
  5. 根据权利要求1所述的一种耐腐蚀电缆导管,其特征在于:所述高强度机构(6)包括主导管(601)、高性能纤维层(602)与防割层(603),所述高性能纤维层(602)位于主导管(601)的外壁,且高性能纤维层(602)位于防割层(603)的内壁。
  6. 根据权利要求5所述的一种耐腐蚀电缆导管,其特征在于:所述主导管(601)的外壁通过喷涂与高性能纤维层(602)的内壁固定连接,且高性能纤维层(602)的外壁通过喷涂与防割层(603)的内壁固定连接。
  7. 根据权利要求1所述的一种耐腐蚀电缆导管,其特征在于:所述上导管(2)的下端外表面与下导管(3)的上端外表面固定连接,所述防腐蚀机构(4)的外壁与高强度机构(6)的内壁固定连接。
PCT/CN2020/112889 2020-08-27 2020-09-01 一种耐腐蚀电缆导管 WO2022041293A1 (zh)

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* Cited by examiner, † Cited by third party
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JP2003185063A (ja) * 2001-12-20 2003-07-03 Kurimoto Ltd 強化プラスチック管
CN102916382A (zh) * 2012-07-19 2013-02-06 泰州元升电子有限公司 一种电缆管道
CN203233131U (zh) * 2013-05-21 2013-10-09 刘冉 线缆保护套
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