CN1881485A - Production method of composite high-voltage bushing and its product - Google Patents

Production method of composite high-voltage bushing and its product Download PDF

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Publication number
CN1881485A
CN1881485A CN 200610054284 CN200610054284A CN1881485A CN 1881485 A CN1881485 A CN 1881485A CN 200610054284 CN200610054284 CN 200610054284 CN 200610054284 A CN200610054284 A CN 200610054284A CN 1881485 A CN1881485 A CN 1881485A
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Prior art keywords
capacitance core
electric screen
copper foil
aluminium foil
groove
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CN 200610054284
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CN100394516C (en
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陈家英
陈其斌
高仁安
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Chongqing Hua Hong Power Equipment Co. Ltd.
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CHONGQING HONGKE TRANSFORMER FITTINGS Co
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Abstract

The invention relates to a method for producing composite high-pressure sleeve used in high-voltage transmission and power conversion system. And it also provides a relative product, used in output and input electric connection of power converter, wherein the invention uses vacuum epoxy resin dipping, aluminum foil or copper foil groove, and heating mold compress main insulated skeleton, to confirm the effective seal and rigid support of capacitor core, to effectively avoid the capacitor core shield and crack, while with said process, the capacitor core electric screen can form integrated tubular structure to improve the reliability; therefore, the aluminum foil or copper foil with significant electricity property can be used to prepare electric screen; and the invention uses politef film or insulated paper as capacitor core insulated medium; the invention uses heating mold compression to form the external insulated umbrella skirt made from high-temperature silicon sulfide, to improve the property of climbing silicon sulfide.

Description

Production method of composite high-voltage bushing and products thereof
Technical field
The present invention relates to production method of employed composite high-voltage bushing in a kind of high-tension electricity transmission, the power transformation system and products thereof, particularly power transformer output, input are electrically connected production method of employed composite high-voltage bushing and products thereof.
Technical background
In high-tension electricity transmission, power transformation system, usually need high-tension cable to be connected in the output or input of power transformer, need that perhaps high-tension cable is passed body of wall and be incorporated into the desired position.When carrying out above-mentioned connection, often use special bushing to connect.The typical structure of bushing the earliest is the porcelain bushing structure, be that guide rod (pipe) outside is a capacitance core, capacitance core is made up of the aluminium foil electric screen and the paper oil insulation layer that alternately are wrapped on the guide rod (pipe), porcelain tube is equipped with in the capacitance core outside, filling liquid insulating oil between capacitance core and porcelain tube, the porcelain tube outside is equipped with to increase and is climbed full skirt.Its shortcoming is that weight is big, and insulator is easy to damage, leakage of oil easily, and inflammable and explosive, antifouling property is relatively poor etc.Bushing based on organic insulating material has appearred in eighties of last century the 1970s and 1980s, is commonly called composite high-voltage bushing.The capacitance core of composite high-voltage bushing alternately is entwined by aluminium foil and polytetrafluoroethylene film, for guaranteeing insulation and getting rid of air gap, filling insulating oil (as silicone oil, silicone grease etc.) between aluminium foil and polytetrafluoroethylene film usually.Capacitance core is wound in the multilayer pyramidal structure usually, because the flowability of silicone oil and the lower coefficient of friction and the silicone oil excellent lubricating properties of polytetrafluoroethylene, make the bushing of this structure in transportation, installation and use, the liquid silicone oil of meeting appearance takes place to shift under action of gravity and makes capacitance core inside produce air gap, sliding screen perhaps occurs, split screen, leakage of oil etc., built-in electrical insulation medium generation axial displacement, aluminium foil are torn etc., make and internal electric field and insulate unbalancely finally cause accident to take place.
For solving the problems referred to above that composite bushing exists, adopted several different methods.As adopt tow shape semi-conducting material or carbon fiber to twine electric screen as capacitance core, insulating barrier adopts the tow shape that can satisfy insulating requirements or the strip insulation material soaking Resin Wound of certain fabric width, electrode and insulating barrier twine to be finished after be heating and curing, and makes the equal laminated structure of circular concentric series capacitance that the pure solid of multilayer does not have the interface.And for example adopt the dielectric of synthetic rubber as capacitance core, in not vulcanizing liquid tartan, vacuumize after the capacitance core coiling is finished and under high temperature or room temperature condition, be sulfided into solid-state making after casting is filled under the state, so that eliminate gap and bubble between synthetic rubber inside and rubber and pole plate, thereby guarantee the stability of bushing long-time running.Settle one or more tubular armature in the middle of the layer at the capacitance core insulating bag for another example, this skeleton can be rigidity also can be flexible, can be metal, also can be nonmetal, hold interlayer at laminated insulation and evenly distribute and form stratiform tubular armature layer.And for example capacitance core is divided into multistage vertically again, the separator of insulating material is arranged between each section, every section outermost layer capacitance plate and next section first capacitance plate intercropping electrically connect.Can under the condition of certain withstand voltage, significantly reduce the capacitance core number of plies like this.All there is such or such problem in above-mentioned the whole bag of tricks.Make the validity of capacitance core electric screen as semiconductor; The complexity of production technology and for example; Reliability of insulation effect or the like for another example.
Summary of the invention
The present invention proposes a kind of comparatively simple, effective production method and products thereof structure.Adopt copper rod or aluminium bar to make conducting rod, the mode of alternately twining in the conducting rod external application requires to make capacitance core according to voltage withstand class.The capacitance core electric screen is aluminium foil, Copper Foil or fusible semiconductor tape, and the capacitance core dielectric is polytetrafluoroethylene film or insulating paper.The present invention when making capacitance core according to two process routes of the different mining of employing material.
One is:
When adopting aluminium foil or Copper Foil to make the capacitance core electric screen, aluminium foil or Copper Foil can have or not have the groove that is arranged in parallel.Have the aluminium foil of groove or Copper Foil when making the capacitance core electric screen as employing, the bearing of trend that should note groove is axially vertical with conducting rod or be 45 ° of-85 ° of angles, and the groove of two-layer electric screen should be corresponding overlapping up and down, plays the effect of inlaying, and it can not be moved axially relatively; Certainly, when adopting the aluminium foil do not have groove or Copper Foil, just need not such alignment.The number of plies that capacitance core twines and the size of shortening gradually along the axial length are according to the difference of bushing voltage withstand class and difference.After capacitance core twines and to finish, place hot setting after the epoxy resin liquid vacuum impregnation; Capacitance core after the curing adopts the mode of heat mold pressing at the outside main insulation skeleton that is made of the rigidity organic insulating material that forms of capacitance core.
It two is:
Adopting normal temperature is the semiconductor tape making capacitance core electric screen of solid-state high-temperature fusion.The number of plies that capacitance core twines and the size of shortening gradually along the axial length are according to the difference of bushing voltage withstand class and difference.After capacitance core twines and finishes, adopt heating and mould pressing mode at the outside main insulation skeleton that constitutes by the rigidity organic insulating material that forms of capacitance core.Meanwhile, be filled with the space that two insulating barriers at place form gradually and form an integral tubular electric screen along with molding pressure after the semiconductor tape fusion at high temperature.
Among the present invention, the organic insulating material that constitutes the main insulation skeleton is mainly epoxy resin, phenolic resins, unsaturated polyester resin or crosslinked polyethylene etc.
Fusible semiconductor tape mainly is that the silicon rubber conduction is melted adhesive tape, heat resistance self-adhesive band and second third self-adhesive tape etc. among the present invention.
After the outside main insulation skeleton of capacitance core forms, can in two ends of main insulation skeleton, twine the 1-5 circle with Copper Foil and form grading ring, according to the needs that bear electric pressure to improve the Electric Field Distribution of bushing.Certainly, also can only make grading ring, perhaps not do grading ring at earth terminal.Obviously, also can twine the making grading ring with aluminium foil or copper cash etc.
After grading ring completes, adopt heating and mould pressing mode to form the external insulation full skirt that constitutes by the high-temperature silicon disulfide rubber material again in main insulation skeleton outside.
In the manufacturing process of composite high-voltage bushing, about the making and the installation of other parts of the contour gland pipe of the installation indispensability that is connected, monitors the drawing of lead, mounting flange of conducting rod and binding post, and the removal of the insulation processing of conducting rod outer surface, heating and mould pressing rear surface overlap and arrangement etc. all belong to known or routine techniques does not repeat them here.
Major advantage of the present invention is:
1, after the technology or structure of employing vacuum epoxy resin dipping, aluminium foil or Copper Foil groove and heating and mould pressing main insulation skeleton, guarantees the effective sealing and the rigid support of capacitance core, effectively prevented the sliding generation of shielding, splitting phenomenons such as screen of capacitance core electric screen.Therefore, can adopt the aluminium foil of electrical property excellence or Copper Foil to make electric screen, the polytetrafluoroethylene film of adopting process excellent performance or insulating paper are made the capacitance core dielectric;
2, after employing heating and mould pressing main insulation skeleton and semiconductor tape are made the technology or structure of electric screen material, guarantee the effective sealing and the rigid support of capacitance core, can make the capacitance core electric screen form complete tubular structure, improved reliability;
3, adopt heating and mould pressing mode to form the external insulation full skirt of forming by the high-temperature silicon disulfide rubber material, improved and increased the performance of climbing full skirt.
Description of drawings
Accompanying drawing 1: main technique flow chart of the present invention
Accompanying drawing 2: adopt the melting semiconductor tape to do the example of capacitance core electric screen
Accompanying drawing 3: adopt the aluminium foil of with groove or the example that Copper Foil is done the capacitance core electric screen
Accompanying drawing 4: the local section enlarged diagram of the aluminium foil of with groove or Copper Foil
Accompanying drawing 1 is a main technique flow process of the present invention, when adopting aluminium foil or Copper Foil to do the capacitance core electric screen as seen from the figure, needs to carry out heating and mould pressing again with shaping rigidity main insulation skeleton through after vacuum impregnation, curing and the arrangement through necessity.And when adopting the melting semiconductor tape to do the capacitance core electric screen, available semiconductor tape and insulating paper alternately are wound in electric screen and insulating barrier, after finishing, winding implements heating and mould pressing shaping main insulation skeleton, meanwhile, fusion takes place in the melting semiconductor tape when heating, the semi-conducting material of fusion is filled with the formed tubular space of insulating paper up and down gradually under the effect of molding pressure, semi-conducting material has formed the whole electric screen of tubulose behind the cooling curing.After the main insulation skeleton forms, twine the 1-5 circle in its end with aluminium foil or Copper Foil as required and form grading ring.And described grading ring is exactly in fact the garden ring that is arranged on main insulation skeleton end of conductor formation.After grading ring completes, adopt heating and mould pressing mode on the main insulation skeleton, to be shaped again and climb full skirt by increasing of constituting of high-temperature silicon disulfide rubber.Certainly, when making composite high-voltage bushing, also to make monitoring terminal, install and fix flange etc.,, therefore, repeat no more because these technology are known or prior art.
Embodiment:
Accompanying drawing 2 is that an employing melting semiconductor tape is made the capacitance core electric screen, adopted insulating paper to make the example of capacitance core dielectric.Twine a few insulating papers on the conducting rod 1 and form insulating barrier 2, then, be wrapped in the outside electric screen 3 that forms of insulating barrier, form insulating barrier 2 with insulating paper electric screen 3 outside windings again with semiconductor tape, form electric screen 3 with semiconductor tape insulating barrier 2 outside windings again, the rest may be inferred.When twining insulating paper or semiconductor tape, can adopt with the axially vertical mode of conducting rod closely side by side (edge have a little overlapping) twine, also can adopt winding direction and conducting rod axially to be 45 ° of-85 ° of angles and twine continuously, and each adjacent edge of circle there is a little overlapping.The number of plies that capacitance core twines and the size of shortening gradually along the axial length are according to the difference of bushing voltage withstand class and difference.After capacitance core twines and finishes, adopt heating and mould pressing mode at the outside rigidity main insulation skeleton 4 that constitutes by epoxy resin that forms of capacitance core.Meanwhile, be filled with two formed tubular spaces of insulating barrier up and down at place gradually and form an integral tubular electric screen along with molding pressure after the fusion at high temperature of melting semiconductor tape.As seen from the figure, so-called main insulation skeleton is actually " cover " cylinder in the capacitance core outside, and its diameter is big than capacitance core, and length is long than capacitance core, and capacitance core is wrapped in wherein by the main insulation skeleton.Because the main insulation skeleton adopts heating and mould pressing to be shaped and uses the rigidity organic insulating material, outside and the conducting rod of main insulation skeleton and capacitance core has and combines the most closely, main insulation skeleton interior shape and capacitance core external shape fit like a glove, and the main insulation skeleton plays good sealing and supporting role.Twine 1-5 circle near the end of earth terminals with aluminium foil or Copper Foil at main insulation skeleton 4 and make grading ring 6, then, adopt heating and mould pressing mode to climb full skirt 5 again outside formation of main insulation skeleton by increasing of constituting of high-temperature silicon disulfide rubber.
Accompanying drawing 3 is that an employing has the aluminium foil of groove or Copper Foil and does the example that capacitance core electric screen, polytetrafluoroethylene film are done the capacitance core insulating barrier.Twine polytetrafluoroethylene film on the conducting rod 1 and form insulating barrier 2, then, fluted aluminium foil of apparatus or Copper Foil are wrapped in the outside electric screen 3 that forms of insulating barrier, form insulating barrier 2 with polytetrafluoroethylene film electric screen 3 outside windings again, fluted aluminium foil of apparatus or Copper Foil form electric screen 3 insulating barrier 2 outside windings again, and the rest may be inferred.When fluted aluminium foil of apparatus or Copper Foil twine electric screen, can adopt the winding direction of aluminium foil or Copper Foil and the axial tile vertically of conducting rod closely the mode at (edge have a little overlapping) twine, also can adopt the winding direction of aluminium foil or Copper Foil and conducting rod axially to be 45 ° of-85 ° of angular way and twine continuously, each adjacent edge of circle has a little overlapping.The groove of two-layer electric screen should be corresponding overlapping up and down no matter adopt which kind of angle to twine all requirements, plays the effect of inlaying, and makes between two-layer electric screen and can not axially relatively move.The number of plies that capacitance core twines and the size of shortening gradually along the axial length are according to the difference of bushing voltage withstand class and difference.After capacitance core twines and finishes, together be immersed in epoxy resin liquid together with the capacitance core that twines on the bar conducting rod, vacuumize and keep appropriate time, all got rid of and be full of, take out heat tracing and solidify by epoxy resin liquid to guarantee air between capacitance core electric screen and the insulating barrier.Capacitance core curing is finished and after arrangement, is adopted heating and mould pressing mode at the outside rigidity main insulation skeleton 4 that is made of epoxy resin that forms of capacitance core.Twine the 1-5 circle in the end at the two ends of main insulation skeleton 4 with aluminium foil or Copper Foil and make grading ring 6, then, adopt heating and mould pressing mode to climb full skirt 5 again outside formation of main insulation skeleton by increasing of constituting of high-temperature silicon disulfide rubber.
Accompanying drawing 4 is to have the aluminium foil of groove or the local section enlarged diagram of Copper Foil, concentrates for preventing the tip electric field, and the turning point of groove all adopts arc transition and bottom of trench also for circular-arc.The spacing distance of gash depth, the parallel distribution of groove and groove width are selected all to guarantee that the capacitance core electric screen can not be moved axially mutually to be as the criterion according to the thickness of aluminium foil or Copper Foil.Obviously, groove is too shallow, and the tessellation between its electric screen is not obvious, can not stop moving axially of electric screen; Groove is too dark, insulator die might be damaged, and the immersion of epoxy resin liquid when influencing vacuum impregnation.

Claims (7)

1, a kind of production method of composite high-voltage bushing adopts copper rod or aluminium bar to make conducting rod; Make capacitance core in the mode that the conducting rod external application is alternately twined, adopt aluminium foil, Copper Foil or semiconductor tape to make the capacitance core electric screen, adopt polytetrafluoroethylene film or insulating paper to make the capacitance core dielectric, it is characterized in that adopting heating and mould pressing mode at the outside main insulation skeleton that constitutes by the rigidity organic insulating material that forms of capacitance core; Adopt heating and mould pressing mode to form the external insulation full skirt that constitutes by organic insulating material again in main insulation skeleton outside; As the aluminium foil of capacitance core electric screen or Copper Foil has or do not have the extension groove of being arranged in parallel; Employing has the aluminium foil of groove or Copper Foil when making the capacitance core electric screen, and the groove of two-layer electric screen should be corresponding up and down. and overlapping; Adopt aluminium foil or Copper Foil do the capacitance core electric screen twine finish after, place hot setting after the epoxy resin liquid vacuum impregnation; Semiconductor tape as the capacitance core electric screen is to be fusible semiconductor tape under the solid-state high temperature under the room temperature; The end of main insulation skeleton is twined with Copper Foil or aluminium foil and is formed grading ring.
2,, it is characterized in that the organic insulating material that constitutes the main insulation skeleton comprises epoxy resin, phenolic resins, unsaturated polyester resin or crosslinked polyethylene according to the described production method of claim 1.
3,, it is characterized in that the organic insulating material that constitutes the external insulation full skirt comprises room temperature vulcanized silicone rubber or high-temperature silicon disulfide rubber according to the described production method of claim 1.
4,, it is characterized in that being circular-arc as the aluminium foil of capacitance core electric screen or the turning point shape and the ditch Bottom Shape of the groove on the Copper Foil according to the described production method of claim 1.
5,, it is characterized in that melting semiconductor tape as the capacitance core electric screen comprises that the silicon rubber conduction melts adhesive tape, heat resistance self-adhesive band and second third self-adhesive tape according to the described production method of claim 1.
6, a kind of composite high-voltage bushing is made up of conducting rod, capacitance core and external insulation full skirt, it is characterized in that being full of between aluminium foil or Copper Foil capacitance core electric screen and the insulating barrier epoxy resin that adopts the vacuum impregnation hot setting to form; Melting semicoductor capacitor core electric screen is to be full of the up and down tubulose in two insulating barrier spaces by what heating and mould pressing formed; The main insulation skeleton of the cylindrical shape that the rigidity organic insulating material that the capacitance core outside has heating and mould pressing to form constitutes; Useful Copper Foil in the end of main insulation skeleton or aluminium foil twine the grading ring that forms; There is the external insulation full skirt that is made of organic insulating material main insulation skeleton outside.
7,, it is characterized in that the aluminium foil of capacitance core electric screen or Copper Foil has or do not have the groove of being arranged in parallel, and the turnover shape of groove and ditch Bottom Shape are circular-arc according to the described bushing of claim 5; The groove correspondence of two-layer electric screen is overlapping up and down to have the aluminium foil of groove or Copper Foil in the capacitance core.
CNB2006100542848A 2006-05-11 2006-05-11 Production method of composite high-voltage bushing and its product Active CN100394516C (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101800100A (en) * 2010-04-23 2010-08-11 广西银河迪康电气有限公司 Manufacture technology of middle pressure solid insulating sleeve
CN102024536A (en) * 2010-06-30 2011-04-20 苏州贝得科技有限公司 Process for manufacturing insulated sleeve of refrigeration high-voltage motor power terminal
CN102361287A (en) * 2011-07-15 2012-02-22 北京国网普瑞特高压输电技术有限公司 Dry type direct current (DC) wall bushing
CN101572141B (en) * 2008-05-04 2013-06-12 黄维枢 Cascade high-voltage bushing
CN103345990A (en) * 2013-06-16 2013-10-09 中国科学院电工研究所 Line outgoing casing pipe applied to high-pressure superconductivity electrical equipment
RU168127U1 (en) * 2016-09-28 2017-01-18 Юрий Филаретович Тележников Solid RIP insulated high-voltage input core made of perforated crepe paper
WO2019105126A1 (en) * 2017-12-01 2019-06-06 江苏神马电力股份有限公司 Composite insulator and method for manufacturing same, and composite casing
CN110783047A (en) * 2019-10-29 2020-02-11 国网天津市电力公司 Capacitor voltage-sharing structure of main insulation of glue-dipped fiber sleeve

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4138258C2 (en) * 1991-11-21 1996-01-25 Truplast Kunststofftechnik Process for molding a sleeve made of polymer material onto a hose made of thermoplastic material provided with at least one helix
CN2291553Y (en) * 1997-06-28 1998-09-16 电力工业部电力科学研究院 Dry-type oilless high-tension bushing
CN1207733C (en) * 2001-12-08 2005-06-22 弥璞 Composite high-voltage casing and its production process
CN1427423A (en) * 2001-12-19 2003-07-02 孟繁恒 AC high voltage sleeve

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101572141B (en) * 2008-05-04 2013-06-12 黄维枢 Cascade high-voltage bushing
CN101800100A (en) * 2010-04-23 2010-08-11 广西银河迪康电气有限公司 Manufacture technology of middle pressure solid insulating sleeve
CN102024536A (en) * 2010-06-30 2011-04-20 苏州贝得科技有限公司 Process for manufacturing insulated sleeve of refrigeration high-voltage motor power terminal
CN102024536B (en) * 2010-06-30 2011-10-26 苏州贝得科技有限公司 Process for manufacturing insulated sleeve of refrigeration high-voltage motor power terminal
CN102361287A (en) * 2011-07-15 2012-02-22 北京国网普瑞特高压输电技术有限公司 Dry type direct current (DC) wall bushing
CN103345990A (en) * 2013-06-16 2013-10-09 中国科学院电工研究所 Line outgoing casing pipe applied to high-pressure superconductivity electrical equipment
CN103345990B (en) * 2013-06-16 2015-08-26 中国科学院电工研究所 A kind of outlet casing tube being applied to high pressure superconducting power apparatus
RU168127U1 (en) * 2016-09-28 2017-01-18 Юрий Филаретович Тележников Solid RIP insulated high-voltage input core made of perforated crepe paper
WO2019105126A1 (en) * 2017-12-01 2019-06-06 江苏神马电力股份有限公司 Composite insulator and method for manufacturing same, and composite casing
CN110783047A (en) * 2019-10-29 2020-02-11 国网天津市电力公司 Capacitor voltage-sharing structure of main insulation of glue-dipped fiber sleeve

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