CN207587443U - A kind of micro-pressure seal box 12kV insulated sleeve components - Google Patents
A kind of micro-pressure seal box 12kV insulated sleeve components Download PDFInfo
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Abstract
本实用新型提供了一种体积小、电流通过值大并且绝缘效果良好的微压力密封箱用12kV绝缘套管,其包括:绝缘基板、若干支撑绝缘子和电流贯通导电体,所述支撑绝缘子设置于所述绝缘基板之上,并且其中部轴位置上下贯通,所述电流贯通导电体与支撑撑绝缘子一一对应并分别设置于所述贯通的中部轴位置,电流贯通导电体的上、下两端外露用于与绝缘基板两侧的导体相接,所述支撑绝缘子内部中空形成有爬距处置仓,所述爬距处置仓与支撑绝缘子的中部轴位置贯通,其具有于绝缘基板下方的开口。本实用新型体积小、电流通过值大、绝缘效果良好、机械强度高,完全适应柜体宽度小于420mm、深度不大于900mm的环保型、空气绝缘小型化开关柜的配套安装。
The utility model provides a 12kV insulating bushing for a micro-pressure sealed box with small volume, large current passing value and good insulation effect. On the insulating substrate, and its middle axis position runs through up and down, the current through conductors correspond to the supporting insulators one by one and are respectively arranged at the through middle axis positions, and the current passes through the upper and lower ends of the conductors The exposed part is used to connect with the conductors on both sides of the insulating substrate. The supporting insulator is hollow inside to form a creepage disposal chamber. The creepage disposal chamber communicates with the central axis of the supporting insulator and has an opening under the insulating substrate. The utility model has the advantages of small volume, large current passing value, good insulation effect and high mechanical strength, and is completely suitable for the supporting installation of the environment-friendly, air-insulated miniaturized switchgear whose width is less than 420mm and depth is not greater than 900mm.
Description
技术领域technical field
本实用新型涉及一种绝缘套管,主要涉及一种微压力密封箱用12kV绝缘套管组件。The utility model relates to an insulating bushing, in particular to a 12kV insulating bushing assembly for a micro-pressure sealed box.
背景技术Background technique
在12kV电压等级的电力配系统中,绝缘套管是开关柜中的高压带电体通过金属体时的关键配件之一,其绝缘性能和导体固定、导电性能、整体电动力作用下的机械稳定方面有着不可忽视的作用,所以绝缘套管的电气与机械双方面的性能保证成为这类导通式绝缘件的基本验收指标。除此之外,其对导体、对接地体之间的爬电距离和电气距离都有着各自的最低限制值,低于规定值时将被判定不合格或者不能被验收。In the power distribution system with 12kV voltage level, the insulating bushing is one of the key accessories when the high-voltage live body in the switchgear passes through the metal body. It has a role that cannot be ignored, so the electrical and mechanical performance guarantee of the insulating bushing has become the basic acceptance index of this type of conductive insulation. In addition, it has its own minimum limit value for the creepage distance and electrical distance between the conductor and the grounding body. If it is lower than the specified value, it will be judged as unqualified or cannot be accepted.
目前常规技术下的绝缘套管主要采用的是环氧树脂绝缘材料,结构体积偏大,只能在较大的安装空间中使用;并且只能在密封隔离状态下进行全封闭安装,安装困难;而且常规技术下为了适应开关柜内外压力差大的问题,要设计各类不带爬距结构、各类大压力或大密度专用的绝缘气体的套管结构,以使其适用于在12kV微压力密闭型开关柜中的配套应用选型,工艺繁琐。At present, the insulating bushing under the conventional technology is mainly made of epoxy resin insulating material, the structure volume is too large, and it can only be used in a large installation space; and it can only be fully enclosed and installed in a sealed and isolated state, which is difficult to install; Moreover, in order to adapt to the large pressure difference inside and outside the switchgear under conventional technology, it is necessary to design various bushing structures without creepage structures, various types of high pressure or high density special insulating gas, so that it is suitable for 12kV micro pressure The matching application selection in the closed switchgear is cumbersome.
实用新型内容Utility model content
针对上述的缺陷,本实用新型提供了一种体积小、电流通过值大并且绝缘效果良好的微压力密封箱用12kV绝缘套管。In view of the above-mentioned defects, the utility model provides a 12kV insulating bushing for a micro-pressure sealed box with small volume, large current passing value and good insulation effect.
本实用新型解决存在的技术问题所采用的技术方案如下:The technical solution adopted by the utility model to solve the existing technical problems is as follows:
一种微压力密封箱用12kV绝缘套管组件,其包括:绝缘基板、若干支撑绝缘子和电流贯通导电体,所述支撑绝缘子设置于所述绝缘基板之上,并且其中部轴位置上下贯通,所述电流贯通导电体与支撑撑绝缘子一一对应并分别设置于所述贯通的中部轴位置,电流贯通导电体的上、下两端外露用于与绝缘基板两侧的导体相接,所述支撑绝缘子内部中空形成有爬距处置仓,所述爬距处置仓与支撑绝缘子的中部轴位置贯通,其具有于绝缘基板下方的开口。A 12kV insulating bushing assembly for a micro-pressure sealed box, which includes: an insulating substrate, a number of supporting insulators and a current-through conductor. The current-through conductors correspond to the supporting insulators one-to-one and are respectively arranged at the central axis positions of the through-through conductors. The upper and lower ends of the current-through conductors are exposed to connect with the conductors on both sides of the insulating substrate. The interior of the insulator is hollow to form a creepage disposal bin, which is connected to the central axis of the supporting insulator and has an opening below the insulating substrate.
于本实用新型的一个或多个实施例中,所述支撑绝缘子呈圆塔形状,且由上至下设置有若干圈伞裙。In one or more embodiments of the present utility model, the supporting insulator is in the shape of a round tower, and several rings of sheds are arranged from top to bottom.
于本实用新型的一个或多个实施例中,所述绝缘基板上设置有若干爬距增强筋。In one or more embodiments of the present utility model, several creepage reinforcing ribs are arranged on the insulating substrate.
于本实用新型的一个或多个实施例中,所述爬距增强筋至少包括环绕所述支撑绝缘子设置有内围爬距增强筋。In one or more embodiments of the present utility model, the creepage-strengthening ribs at least include an inner peripheral creepage-strengthening rib surrounding the support insulator.
于本实用新型的一个或多个实施例中,所述爬距增强筋还包括位于绝缘基板外围的外围爬距增强筋。In one or more embodiments of the present utility model, the creepage reinforcing ribs further include peripheral creepage reinforcing ribs located on the periphery of the insulating substrate.
于本实用新型的一个或多个实施例中,所述爬距增强筋设置于绝缘基板的上表面和/或下表面。In one or more embodiments of the present utility model, the creepage reinforcing ribs are arranged on the upper surface and/or the lower surface of the insulating substrate.
于本实用新型的一个或多个实施例中,所述绝缘基板呈长条状,其上并排设置有若干个支撑绝缘子,两两支撑绝缘子之间至少设置有一条爬距增强筋。In one or more embodiments of the present utility model, the insulating substrate is in the shape of a strip, on which several supporting insulators are arranged side by side, and at least one creepage reinforcing rib is arranged between two supporting insulators.
于本实用新型的一个或多个实施例中,所述绝缘基板、支撑绝缘子与爬距增强筋由SMC材料一体成型。In one or more embodiments of the present invention, the insulating substrate, supporting insulators and creepage reinforcement ribs are integrally formed of SMC materials.
于本实用新型的一个或多个实施例中,所述绝缘基板下表面形成有安装嵌件,所述安装嵌件为绝缘基板下表面边缘的环状凸边,且于所述环状凸边上设有贯穿绝缘基板上、下表面的嵌装孔。In one or more embodiments of the present utility model, a mounting insert is formed on the lower surface of the insulating substrate, and the mounting insert is a ring-shaped flange on the edge of the lower surface of the insulating substrate, and the ring-shaped flange Embedding holes are provided on the top and through the upper and lower surfaces of the insulating substrate.
于本实用新型的一个或多个实施例中,所述爬距处置仓中灌注有绝缘胶体。In one or more embodiments of the present utility model, the creepage disposal bin is filled with insulating colloid.
由于采用了上述的技术方案,本实用新型与现有技术相比具有如下有益效果:第一、结构简洁、有效,绝缘基板面积可限制在620mm×150mm内,导电体的高度小于95mm,占用空间小。第二、本实用新型采用SMC复合材料,整体在高温高压下对绝缘基板、支撑绝缘子与爬距增强筋一次模压成型,具有独特的结构和优良的特性,高绝缘、高强度、高韧性、耐老化、耐腐蚀、不吸水、抗高温、不易发生污闪等电气与机械性能,使得整体性能提高。第三、本实用新型通过预设铜母线电流导通与预留连接处置仓结构,实现微压力干燥空气绝缘环境下不低于12kV运行电压、通过电流不小于1250A的绝缘运行能力保证,完成不大于95mm高度的绝缘处理与导体结构支撑、绝缘爬电距离处置的双重效果。第四、本实用新型的爬距处置仓中灌注绝缘胶体时,可实现更进一步阻断导电体上下两端之间的直接气流性通路,实现带电体带电爬距的距离极限性增强,提升导电体下端对外导电体的外部连接件爬电绝缘性能,也使得这种带基板的绝缘套管实现了虽然高度不超过95mm的支撑绝缘子在高度方向的两端面之间电气导通的同时,可以按照对外连接部件的需求,很容易地处置这个部件对绝缘基板的表面爬距绝缘问题。Due to the adoption of the above-mentioned technical scheme, the utility model has the following beneficial effects compared with the prior art: first, the structure is simple and effective, the area of the insulating substrate can be limited to 620mm×150mm, the height of the conductor is less than 95mm, and the occupied space Small. Second, the utility model adopts SMC composite materials, and the insulating substrate, supporting insulators and creepage reinforcing ribs are molded as a whole under high temperature and high pressure. It has a unique structure and excellent characteristics, high insulation, high strength, high toughness, and durability. Electrical and mechanical properties such as aging, corrosion resistance, non-water absorption, high temperature resistance, and pollution flashover are not easy to occur, which improves the overall performance. Third, the utility model realizes the guarantee of the insulation operation capacity of not less than 12kV operating voltage and not less than 1250A of passing current under the micro-pressure dry air insulation environment through the preset copper bus current conduction and reserved connection disposal bin structure, and the completion is not complete. The dual effects of insulation treatment with a height greater than 95mm and conductor structure support and insulation creepage distance treatment. Fourth, when insulating colloid is poured into the creepage distance disposal bin of the utility model, it can further block the direct air flow path between the upper and lower ends of the conductor, realize the distance limit enhancement of the charged creepage distance of the charged body, and improve the conductive The creepage insulation performance of the external connector of the lower end of the outer conductor also enables this insulating sleeve with a substrate to achieve electrical conduction between the two ends of the supporting insulator in the height direction although the height does not exceed 95mm. The demand for external connection components can easily solve the problem of surface creepage insulation of this component to the insulating substrate.
附图说明Description of drawings
图1为本实用新型的微压力密封箱用12kV绝缘套管组件的整体结构示意图。FIG. 1 is a schematic diagram of the overall structure of a 12kV insulating bushing assembly for a micro-pressure sealed box of the present invention.
图2为本实用新型的微压力密封箱用12kV绝缘套管组件的剖视结构示意图。Fig. 2 is a schematic cross-sectional structure diagram of a 12kV insulating bushing assembly for a micro-pressure sealed box of the present invention.
图3为本实用新型的微压力密封箱用12kV绝缘套管组件的支撑绝缘子剖视图。Fig. 3 is a cross-sectional view of the supporting insulator of the 12kV insulating bushing assembly for the micro-pressure sealed box of the present invention.
图4为本实用新型的微压力密封箱用12kV绝缘套管组件的俯视角度结构图。Fig. 4 is a top view angle structure diagram of a 12kV insulating bushing assembly for a micro-pressure sealed box of the present invention.
图5为本实用新型的微压力密封箱用12kV绝缘套管组件的仰视角度结构图。Fig. 5 is a structural diagram of a 12kV insulating bushing assembly for a micro-pressure sealed box of the present invention, viewed from the bottom.
图6为本实用新型的微压力密封箱用12kV绝缘套管组件的导电体结构图。Fig. 6 is a structure diagram of a conductor of a 12kV insulating bushing assembly for a micro-pressure sealed box of the present invention.
具体实施方式Detailed ways
如下结合附图1至6,对本申请方案作进一步描述:The scheme of this application is further described in conjunction with accompanying drawings 1 to 6 as follows:
一种微压力密封箱用12kV绝缘套管组件,其包括:绝缘基板1(表面积尺寸小于620mm×150mm)、若干支撑绝缘子2和电流贯通导电体3(高度小于95mm),所述支撑绝缘子2设置于所述绝缘基板1之上,并且其中部轴位置上下贯通,所述电流贯通导电体3与支撑撑绝缘子2一一对应并分别设置于所述贯通的中部轴位置,电流贯通导电体3的上、下两端3a、3b外露用于与绝缘基板1两侧的导体相接,所述支撑绝缘子2内部中空形成有爬距处置仓20,所述爬距处置仓20与支撑绝缘子2的中部轴位置贯通,其具有于绝缘基板1下方的开口200,所述支撑绝缘子2呈圆塔形状,且由上至下分别自带有四组伞裙21。A 12kV insulating bushing assembly for a micro-pressure sealed box, which includes: an insulating substrate 1 (with a surface area size smaller than 620mm×150mm), several supporting insulators 2 and a current-through conductor 3 (height is less than 95mm), and the supporting insulator 2 is set On the insulating substrate 1, and its central axis position penetrates up and down, the current through conductors 3 correspond to the supporting insulators 2 one by one and are respectively arranged at the through central axis positions, and the current through conductors 3 The upper and lower ends 3a, 3b are exposed to connect with the conductors on both sides of the insulating substrate 1. The interior of the support insulator 2 is hollow to form a creepage disposal bin 20, and the creepage disposal bin 20 is connected to the middle of the support insulator 2. The shaft position is through, and it has an opening 200 under the insulating substrate 1. The supporting insulator 2 is in the shape of a round tower, and has four sets of sheds 21 from top to bottom.
所述绝缘基板1上设置有若干爬距增强筋4,所述爬距增强筋4包括环绕所述支撑绝缘子2设置有内围爬距增强筋4a,以及位于绝缘基板1外围的外围爬距增强筋4b,即环绕所述支撑绝缘子2的多条环状布置的凸筋;所述爬距增强筋4设置于绝缘基板1的上表面和/或下表面。The insulating substrate 1 is provided with a number of creepage reinforcing ribs 4, the creepage reinforcing ribs 4 include an inner peripheral creepage reinforcing rib 4a arranged around the support insulator 2, and a peripheral creepage reinforcing rib 4a located on the periphery of the insulating substrate 1. The ribs 4b are a plurality of ring-shaped raised ribs surrounding the support insulator 2 ;
所述绝缘基板1呈长条状,其上并排设置有若干个支撑绝缘子2,两两支撑绝缘子2之间至少设置有一条爬距增强筋4。The insulating substrate 1 is in the shape of a strip, on which several supporting insulators 2 are arranged side by side, and at least one creepage reinforcing rib 4 is arranged between two supporting insulators 2 .
所述绝缘基板1、支撑绝缘子2与爬距增强筋4由SMC材料一体成型,具有独特的结构和优良的特性,高绝缘、高强度、高韧性、耐老化、耐腐蚀、不吸水、抗高温、不易发生污闪等电气与机械性能,使得整体性能提高。The insulating substrate 1, supporting insulator 2 and creepage reinforcing rib 4 are integrally formed of SMC material, which has a unique structure and excellent characteristics, high insulation, high strength, high toughness, aging resistance, corrosion resistance, non-absorbent, high temperature resistance , Pollution flashover and other electrical and mechanical properties are not easy to occur, which improves the overall performance.
注:SMC复合材料是Sheet molding compound的缩写,即片状模塑料。主要原料由GF(专用纱)、UP(不饱和树脂)、低收缩添加剂,MD(填料)及各种助剂组成。Note: SMC composite material is the abbreviation of Sheet molding compound, that is, sheet molding compound. The main raw materials are composed of GF (special yarn), UP (unsaturated resin), low shrinkage additive, MD (filler) and various auxiliary agents.
所述绝缘基板1下表面形成有安装嵌件5,所述安装嵌件5为绝缘基板下表面边缘的环状凸边51,且于所述环状凸边51上设有贯穿绝缘基板1上、下表面的嵌装孔52。A mounting insert 5 is formed on the lower surface of the insulating substrate 1, and the mounting insert 5 is an annular flange 51 on the edge of the lower surface of the insulating substrate, and the annular flange 51 is provided with a , The embedded hole 52 on the lower surface.
所述爬距处置仓20用来增大绝缘结构件的表面距离,特别的,这个爬距处置仓20还可以用来灌注绝缘胶体6,以实现更进一步阻断导电体上下两端之间的直接气流性通路,实现带电体带电爬距的距离极限性增强,提升电流贯通导电体3下端对外导电体的外部连接件爬电绝缘性能。The creepage disposal bin 20 is used to increase the surface distance of the insulating structural member. In particular, the creepage disposal bin 20 can also be used to perfuse the insulating colloid 6 to further block the connection between the upper and lower ends of the conductor. The direct air flow path realizes the extreme enhancement of the creepage distance of the electrified body, and improves the creepage insulation performance of the external connector of the external conductor at the lower end of the current penetrating conductor 3 .
正正由于支撑绝缘子2的爬距处置仓20结构,使得这种带绝缘基板1的绝缘套管实现了虽然高度不超过95mm的支撑绝缘子2在高度方向的两端面之间电气导通的同时,可以按照对外连接部件的需求,很容易地处置这个部件对绝缘基板1的表面爬距绝缘问题。使得对采用这种绝缘套管组件的开关柜具备在微压力状况下的空间小型化绝缘处置适应能力。Just because of the structure of the creepage disposal bin 20 of the supporting insulator 2, the insulating bushing with the insulating substrate 1 realizes the electrical conduction between the two ends of the supporting insulator 2 in the height direction although the height does not exceed 95mm. According to the requirements of externally connected components, the insulation problem of the surface creepage distance of this component to the insulating substrate 1 can be easily dealt with. The switchgear adopting the insulating bushing assembly has the ability to adapt to space miniaturization and insulation disposal under micro-pressure conditions.
本实用新型通过预设铜母线电流导通与预留连接爬距处置仓结构,实现微压力干燥空气绝缘环境下不低于12kV运行电压、通过电流不小于1250A的绝缘运行能力保证,完成不大于95mm高度的绝缘处理与导体结构支撑、绝缘爬电距离处置的双重效果。本实用新型的爬距处置仓中灌注绝缘胶体时,可实现更进一步阻断导电体上下两端之间的直接气流性通路,实现带电体带电爬距的距离极限性增强,提升导电体下端对外导电体的外部连接件爬电绝缘性能,也使得这种带基板的绝缘套管实现了虽然高度不超过95mm的支撑绝缘子在高度方向的两端面之间电气导通的同时,可以按照对外连接部件的需求,很容易地处置这个部件对绝缘基板的表面爬距绝缘问题。The utility model realizes the insulation running capacity guarantee of not less than 12kV operating voltage and passing current not less than 1250A under the micro-pressure dry air insulation environment through the preset copper bus current conduction and reserved connection creepage distance disposal bin structure, and the completion is not more than The dual effects of 95mm height insulation treatment, conductor structure support and insulation creepage distance treatment. When the insulating colloid is poured into the creepage disposal bin of the utility model, it can further block the direct gas flow path between the upper and lower ends of the conductor, realize the limit enhancement of the distance of the charged creepage distance of the charged body, and lift the lower end of the conductor to the outside. The creepage insulation performance of the external connector of the conductor also enables this insulating sleeve with a substrate to achieve electrical conduction between the two ends of the supporting insulator with a height of no more than 95mm, and at the same time, it can be connected according to the external connection. It is easy to deal with the surface creepage insulation problem of this part to the insulating substrate.
上述优选实施方式应视为本申请方案实施方式的举例说明,凡与本申请方案雷同、近似或以此为基础作出的技术推演、替换、改进等,均应视为本专利的保护范围。The above-mentioned preferred implementation mode should be regarded as an illustration of the implementation mode of the scheme of this application, and any technical deduction, replacement, improvement, etc. that are similar to, similar to, or based on the scheme of this application should be regarded as the scope of protection of this patent.
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN107785131A (en) * | 2017-11-24 | 2018-03-09 | 珠海市可利电气有限公司 | A kind of micro-pressure seal box 12kV insulated sleeve components |
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2017
- 2017-11-24 CN CN201721603034.5U patent/CN207587443U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107785131A (en) * | 2017-11-24 | 2018-03-09 | 珠海市可利电气有限公司 | A kind of micro-pressure seal box 12kV insulated sleeve components |
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