CN204441047U - 110kV level energy-saving oil immersed three dimensional wound core power transformer - Google Patents
110kV level energy-saving oil immersed three dimensional wound core power transformer Download PDFInfo
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- CN204441047U CN204441047U CN201520143735.XU CN201520143735U CN204441047U CN 204441047 U CN204441047 U CN 204441047U CN 201520143735 U CN201520143735 U CN 201520143735U CN 204441047 U CN204441047 U CN 204441047U
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- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical group [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 claims abstract description 47
- 239000003921 oil Substances 0.000 claims description 20
- 229910000976 Electrical steel Inorganic materials 0.000 claims description 4
- 230000035699 permeability Effects 0.000 claims description 4
- WABPQHHGFIMREM-UHFFFAOYSA-N lead(0) Chemical compound [Pb] WABPQHHGFIMREM-UHFFFAOYSA-N 0.000 abstract description 4
- 238000004519 manufacturing process Methods 0.000 abstract description 4
- 230000000694 effects Effects 0.000 abstract description 3
- 230000017525 heat dissipation Effects 0.000 abstract description 2
- 238000004804 winding Methods 0.000 description 16
- 238000000034 method Methods 0.000 description 6
- 239000002828 fuel tank Substances 0.000 description 4
- 238000000137 annealing Methods 0.000 description 3
- 238000010586 diagram Methods 0.000 description 3
- 229910000831 Steel Inorganic materials 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 239000010959 steel Substances 0.000 description 2
- 239000003082 abrasive agent Substances 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000033228 biological regulation Effects 0.000 description 1
- 238000005520 cutting process Methods 0.000 description 1
- 238000009826 distribution Methods 0.000 description 1
- 238000005265 energy consumption Methods 0.000 description 1
- 238000009413 insulation Methods 0.000 description 1
- 229910052742 iron Inorganic materials 0.000 description 1
- 238000010422 painting Methods 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
- 239000002994 raw material Substances 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
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Abstract
本实用新型公开了一种110kV级节能型油浸式立体卷铁心电力变压器,涉及电力设备技术领域。本实用新型包括铁心、高低压线圈、高低压引线、变压器油箱、高压套管、低压套管,所述铁心包括三个结构相同的由高导磁冷轧硅钢片制成的矩形铁心框,矩形铁心框的两条横框边设有向外凸的弧度,相邻两个矩形铁心框的竖框边贴合并用绑扎带绑扎在一起构成心柱,三个矩形铁心框的竖框边两两绑扎拼装为立体三角形卷铁心结构,所述铁心的横截面为分段式多边形;还包括双层六边形框架,用于支撑和固定铁心和高低压线圈,高压套管和低压套管设置在变压器油箱上。其结构合理、散热效果好、空载负载损耗少、重量轻、器身体积小,制作成本低。
The utility model discloses a 110kV energy-saving oil-immersed three-dimensional wound core power transformer, which relates to the technical field of electric equipment. The utility model includes an iron core, a high and low voltage coil, a high and low voltage lead wire, a transformer oil tank, a high voltage bushing, and a low voltage bushing. The two horizontal frame sides of the iron core frame are provided with outwardly convex radians, the vertical frame sides of two adjacent rectangular iron core frames are pasted together and bound together with binding bands to form a core column, and the vertical frame sides of the three rectangular iron core frames are two-by-two Bundled and assembled into a three-dimensional triangular wound core structure, the cross section of the core is a segmented polygon; it also includes a double-layer hexagonal frame for supporting and fixing the core and high and low voltage coils, and the high voltage bushing and low voltage bushing are set on on the transformer tank. The utility model has the advantages of reasonable structure, good heat dissipation effect, less no-load load loss, light weight, small body volume and low production cost.
Description
技术领域 technical field
本实用新型涉及电力设备技术领域,尤其是一种110kV级节能型油浸式立体卷铁心电力变压器。 The utility model relates to the technical field of electric power equipment, in particular to a 110kV energy-saving oil-immersed three-dimensional wound core power transformer.
背景技术 Background technique
目前国内S13型立体卷铁心变压器局限于10kV小容量的配电变压器产品,由于容量小,电压等级低,单台节能效果相对较少。高电压大容量变压器产品由于其自身损耗基数大,能耗下降空间非常可观,但由于高电压大容量的立体卷铁心变压器的体积和重量大,工艺设备和设计结构复杂,在国内外尚属空白。 At present, the domestic S13 three-dimensional wound core transformer is limited to 10kV small-capacity distribution transformer products. Due to the small capacity and low voltage level, the energy-saving effect of a single unit is relatively small. Due to the large loss base of high-voltage and large-capacity transformer products, the energy consumption reduction space is very considerable. However, due to the large volume and weight of the high-voltage and large-capacity three-dimensional wound core transformer, the process equipment and design structure are complicated, and it is still blank at home and abroad. .
实用新型内容 Utility model content
本实用新型所要解决的技术问题是提供一种110kV级节能型油浸式立体卷铁心电力变压器,结构合理、散热效果好、空载负载损耗少、重量轻、器身体积小,制作成本低。 The technical problem to be solved by the utility model is to provide a 110kV energy-saving oil-immersed three-dimensional wound core power transformer, which has reasonable structure, good heat dissipation effect, less no-load load loss, light weight, small body volume and low production cost.
为解决上述技术问题,本实用新型所采取的技术方案是:一种110kV级节能型油浸式立体卷铁心电力变压器,包括铁心、高低压线圈、高低压引线、变压器油箱、高压套管、低压套管,所述铁心包括三个结构相同的由高导磁冷轧硅钢片制成的矩形铁心框,矩形铁心框的两条横框边设有向外凸的弧度,相邻两个矩形铁心框的竖框边贴合并用绑扎带绑扎在一起构成心柱,三个矩形铁心框的竖框边两两绑扎拼装为立体三角形卷铁心结构,所述铁心的横截面为分段式多边形; In order to solve the above technical problems, the technical solution adopted by the utility model is: a 110kV energy-saving oil-immersed three-dimensional wound core power transformer, including iron core, high and low voltage coils, high and low voltage lead wires, transformer oil tank, high voltage bushing, low voltage The bushing, the iron core includes three rectangular iron core frames made of high magnetic permeability cold-rolled silicon steel sheets with the same structure, the two horizontal frame sides of the rectangular iron core frame are provided with outwardly convex arcs, and the two adjacent rectangular iron cores The mullion sides of the frame are pasted and tied together with binding bands to form a core column, and the mullion sides of the three rectangular iron core frames are bound in pairs to form a three-dimensional triangular coil core structure, and the cross section of the iron core is a segmented polygon;
还包括双层六边形框架,用于支撑和固定铁心和高低压线圈,所述双层六边形框架包括双层上夹件和双层下夹件,双层上夹件和双层下夹件之间采用连接螺杆连接; It also includes a double-layer hexagonal frame for supporting and fixing the iron core and high and low voltage coils. The double-layer hexagonal frame includes a double-layer upper clamp and a double-layer lower clamp. The clamps are connected by connecting screws;
所述双层六边形框架、铁心和绕制在铁心心柱上的高低压线圈设置在变压器油箱内; The double-layer hexagonal frame, the iron core and the high and low voltage coils wound on the core column are arranged in the transformer oil tank;
还包括有载分接开关,固定在有在分接开关支架上,有载分接开关上设有若干接线端子,用于与从高压线圈引出的引线相接; It also includes the on-load tap-changer, which is fixed on the on-load tap-changer bracket, and there are several terminals on the on-load tap-changer, which are used to connect with the lead wires drawn from the high-voltage coil;
高压套管和低压套管设置在变压器油箱上。 The high-voltage bushing and the low-voltage bushing are arranged on the transformer oil tank.
进一步的,高低压引线在空间呈三角形布设。 Further, the high and low voltage lead wires are arranged in a triangle in space.
进一步的,高低压线圈的高压线圈和低压线圈之间设有油路通道。 Further, an oil channel is provided between the high voltage coil and the low voltage coil of the high and low voltage coils.
进一步的,所述的变压器油箱的横截面为矩形。 Further, the cross section of the transformer oil tank is rectangular.
采用上述技术方案所产生的有益效果在于:本实用新型中双层上下夹件结构,将铁心和绕组充分固定,保证了器身整体的稳定性和吊装的强度高低压引线采用空间三角形布置,缩短了引线的距离,保证了引线电阻的平衡;三个铁心框拼装而成,缩短了铁轭间的距离,铁心体积和重量减少,铁心退火后,可大幅降低空载损耗。 The beneficial effect produced by adopting the above-mentioned technical scheme is that: the double-layer upper and lower clamp structure in the utility model fully fixes the iron core and the winding, which ensures the overall stability of the device body and the strength of hoisting. The distance between the lead wires is guaranteed to ensure the balance of the lead wire resistance; the three iron core frames are assembled to shorten the distance between the iron yokes, the volume and weight of the iron core are reduced, and the no-load loss can be greatly reduced after the iron core is annealed.
附图说明 Description of drawings
图1是本实用新型的结构示意图; Fig. 1 is a structural representation of the utility model;
图2是变压器的整体外部结构示意图; Figure 2 is a schematic diagram of the overall external structure of the transformer;
图3是图1的一个侧面的结构示意图; Fig. 3 is a schematic structural view of one side of Fig. 1;
图4是铁心的结构示意图; Fig. 4 is a structural schematic diagram of an iron core;
图5是油箱底部限位安装位置示意图; Fig. 5 is a schematic diagram of the limit installation position at the bottom of the fuel tank;
图中:1、高压套管;2、变压器油箱;3、双层上夹件;4、铁心;5、高低压线圈;6、高低压引线;7、双层下夹件;8、低压套管;9、油箱底部限位;10、有载分接开关;11、互感器;12、0相套管;13、储油柜;14、片式散热器;15、端子箱;16、开关操纵机钩。 In the figure: 1. High voltage bushing; 2. Transformer oil tank; 3. Double-layer upper clamp; 4. Iron core; 5. High and low voltage coil; 6. High and low voltage lead; 7. Double-layer lower clamp; Tube; 9. Oil tank bottom limit; 10. On-load tap changer; 11. Transformer; 12. 0-phase bushing; 13. Oil storage tank; 14. Chip radiator; 15. Terminal box; 16. Switch Manipulator hook.
具体实施方式 Detailed ways
下面结合附图和具体实施方式对本实用新型作进一步详细的说明。 Below in conjunction with accompanying drawing and specific embodiment, the utility model is described in further detail.
参见图1所示,本实用新型包括铁心4、高低压线圈5、高低压引线6、变压器油箱2、高压套管1、低压套管8、有载分接开关、散热器,所述铁心4包括三个结构相同的由高导磁冷轧硅钢片制成的矩形铁心框,矩形铁心框的两条横框边设有向外凸的弧度,相邻两个矩形铁心框的竖框边贴合并用绑扎带绑扎在一起构成心柱,三个矩形铁心框的竖框边两两绑扎拼装为立体三角形卷铁心结构,所述铁心4的横截面为分段式多边形,参见图2所示。 Referring to Fig. 1, the utility model comprises iron core 4, high and low voltage coil 5, high and low voltage lead wire 6, transformer oil tank 2, high voltage bushing 1, low voltage bushing 8, on-load tap changer, radiator, and described iron core 4 It includes three rectangular core frames made of high magnetic permeability cold-rolled silicon steel sheets with the same structure. The two horizontal frame sides of the rectangular core frame are provided with outwardly convex arcs. Bind them together with binding bands to form a core column. The sides of the mullions of the three rectangular core frames are bound in pairs to form a three-dimensional triangular coiled core structure. The cross section of the core 4 is a segmented polygon, as shown in FIG. 2 .
还包括双层六边形框架,用于支撑和固定铁心4和高低压线圈5,所述双层六边形框架包括双层上夹件3和双层下夹件7,双层上夹件3和双层下夹件7之间采用连接螺杆连接。 It also includes a double-layer hexagonal frame for supporting and fixing the iron core 4 and the high and low voltage coils 5. The double-layer hexagonal frame includes a double-layer upper clamp 3 and a double-layer lower clamp 7. The double-layer upper clamp 3 and the double-layer lower clip 7 are connected by a connecting screw.
所述双层六边形框架、铁心4和绕制在铁心4心柱上的高低压线圈5设置在油箱内。 The double-layer hexagonal frame, the iron core 4 and the high and low voltage coils 5 wound on the core of the iron core 4 are arranged in the oil tank.
变压器采用有载调压方式,有载分接开关固定在有在分接开关支架上,有载分接开关上设有若干接线端子,用于与从高压线圈引出的引线相接。 The transformer adopts the on-load voltage regulation method. The on-load tap-changer is fixed on the on-load tap-changer bracket. There are several terminals on the on-load tap-changer for connecting with the lead wires drawn from the high-voltage coil.
高压套管1和低压套管8设置在油箱上。 The high-voltage bushing 1 and the low-pressure bushing 8 are arranged on the oil tank.
高低压引线6在空间呈三角形布设,缩短了引线的距离,保证了引线电阻的平衡。 The high and low voltage lead wires 6 are arranged in a triangular shape in space, which shortens the distance of the lead wires and ensures the balance of lead wire resistance.
高低压线圈5的高压线圈和低压线圈之间设有油路通道。 An oil channel is provided between the high voltage coil and the low voltage coil of the high and low voltage coil 5 .
所述的油箱的横截面为矩形。 The cross section of the fuel tank is rectangular.
参见图5所示,变压器油箱与双层下夹件之间设有油箱底部限位。 As shown in Fig. 5, there is an oil tank bottom limit between the transformer oil tank and the double-layer lower clamp.
本实用新型变压器器身采用整体式双层六边形框架夹件结构,双层上下夹件之间通过拉螺杆拉紧,双层上下夹件分别设有压板和托板与夹件形成一个整体,双层下夹件底部设有限位,将铁心和绕组充分固定,保证了器身整体的稳定性和吊装的强度。高低压线圈两侧设有分体式垫板、压板、端圈,通过拉螺杆和夹件限位圆钢固定。 The transformer body of the utility model adopts an integral double-layer hexagonal frame clamp structure, and the upper and lower double-layer clamps are tightened by pulling screws, and the upper and lower double-layer clamps are respectively provided with pressure plates and supporting plates to form a whole , There is a limit at the bottom of the double-layer lower clamp, which fully fixes the core and windings, ensuring the overall stability of the body and the strength of the hoisting. Both sides of the high and low voltage coils are provided with split backing plates, pressure plates, and end rings, which are fixed by pull screws and clip limit round steel.
本实用新型组装工序如下:铁心制作(铁心下料、曲线剪切、卷绕、退火、拼装、涂漆绑扎)---铁心翻转安装---线圈在铁心上绕制---器身翻转---安装腹板---配制高压及低压引线开关等---油箱外壳制作---器身与油箱外壳组装---组部件组装---真空注油。 The assembly process of the utility model is as follows: iron core production (core blanking, curve cutting, winding, annealing, assembly, painting and binding) --- core turning installation --- coil winding on the iron core --- body turning ---Installing the web ---Preparation of high-voltage and low-voltage lead switches, etc. ---Production of the fuel tank shell ---Assembly of the body and the fuel tank shell ---Assembly of components ---Vacuum oil filling.
其中,铁心采用闭口立体三角型卷铁心结构,心柱为分段式多边形型式,由三个铁心框拼装而成,该种铁心缩短了上下铁轭之间的距离,铁心体积和重量减少,故可大幅降低空载损耗。 Among them, the iron core adopts a closed three-dimensional triangular wound core structure, and the core column is a segmented polygonal type, which is assembled from three iron core frames. It can greatly reduce the no-load loss.
每个铁心框的每段铁心逐段在心模上由绕制设备绕制而成。三个铁心框分别经退火炉进行退火处理,退火后能彻底消除应力,磁路各处均无高磁阻存在,充分发挥了高导磁冷轧硅钢片的特性,三相磁路完全对称。三个铁心框由绑扎带绑扎拼装成一体,组成立体三角型铁心。 Each section of iron core of each iron core frame is wound by winding equipment on the mandrel piece by piece. The three core frames are respectively annealed in the annealing furnace. After annealing, the stress can be completely eliminated, and there is no high magnetic resistance in the magnetic circuit. The characteristics of the high magnetic permeability cold-rolled silicon steel sheet are fully utilized, and the three-phase magnetic circuit is completely symmetrical. The three iron core frames are bound and assembled into one body by binding bands to form a three-dimensional triangular iron core.
在线圈绕制工序中,利用特制绕线设备将铁心固定,绕组利用齿轮磨具和绕线钢筒直接在铁心柱上绕制。采用反向绕制法保证绕组底部端面保持水平一致。由于各个绕组依次一起绕指,绕组间的绝缘能够紧密配合成为一体,使绕组的同心度完全一致,消除了常规变压器绕组间的套装间隙,大大提高了器身整体抵抗突发短路的能力。 In the coil winding process, the iron core is fixed by special winding equipment, and the winding is directly wound on the iron core column by using gear abrasives and winding steel cylinders. The reverse winding method is used to ensure that the end face of the bottom of the winding is kept horizontal. Since each winding is wound together in turn, the insulation between the windings can be closely matched to form a whole, so that the concentricity of the windings is completely consistent, eliminating the gap between the conventional transformer windings, and greatly improving the overall ability of the body to resist sudden short circuits.
器身利用双层六边形整体框架结构,将铁心和绕组充分固定,保证了器身整体的稳定性和吊装的强度。 The body uses a double-layer hexagonal overall frame structure to fully fix the iron core and windings, ensuring the overall stability of the body and the strength of hoisting.
高低压引线采用空间三角形布置,缩短了引线距离,保证了引线电阻的平衡。 The high and low voltage leads are arranged in a triangular space, which shortens the lead distance and ensures the balance of the lead resistance.
器身与外壳采用上下共10点定位,定位点平面呈三角形排布,定位均匀可靠。 The body and the shell are positioned at 10 points up and down, and the plane of the positioning points is arranged in a triangle, and the positioning is uniform and reliable.
实用新型降低了变压器铁心的空载损耗,与目前S11型相比,空载降耗达30%以上、负载损耗降低10%以上、空载电流降低70%以上、噪音降低10dB以上。铁心原材料利用率提高5-6%,材料利用率接近100%,与同类型产品相比,减少了铁心重量和器身体积,降低了材料成本。 The utility model reduces the no-load loss of the transformer core. Compared with the current S11 type, the no-load consumption is reduced by more than 30%, the load loss is reduced by more than 10%, the no-load current is reduced by more than 70%, and the noise is reduced by more than 10dB. The utilization rate of core raw materials is increased by 5-6%, and the material utilization rate is close to 100%. Compared with the same type of products, the core weight and body volume are reduced, and the material cost is reduced.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105185523A (en) * | 2015-09-18 | 2015-12-23 | 常熟市森源电气科技有限公司 | Oil-immersed transformer of 20kV voltage class |
CN112885590A (en) * | 2021-03-22 | 2021-06-01 | 保定天威保变电气股份有限公司 | Assembly combination tool and method for reactor body and oil tank |
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2015
- 2015-03-14 CN CN201520143735.XU patent/CN204441047U/en not_active Expired - Lifetime
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105185523A (en) * | 2015-09-18 | 2015-12-23 | 常熟市森源电气科技有限公司 | Oil-immersed transformer of 20kV voltage class |
CN112885590A (en) * | 2021-03-22 | 2021-06-01 | 保定天威保变电气股份有限公司 | Assembly combination tool and method for reactor body and oil tank |
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