CN101419871B - Intelligent duplicate power supply conversion switch - Google Patents

Intelligent duplicate power supply conversion switch Download PDF

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CN101419871B
CN101419871B CN2008101800013A CN200810180001A CN101419871B CN 101419871 B CN101419871 B CN 101419871B CN 2008101800013 A CN2008101800013 A CN 2008101800013A CN 200810180001 A CN200810180001 A CN 200810180001A CN 101419871 B CN101419871 B CN 101419871B
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permanent magnet
switch
power supply
yoke ring
connecting lever
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CN101419871A (en
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叶忻泉
何涛
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Wenzhou University
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Wenzhou University
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Abstract

The invention discloses an intelligent double-power transfer switch which comprises a vacuum breaker body and a double-power switching unit; an operation mechanism is a permanent magnet operation mechanism which comprises the main shaft of the switch, a permanent magnet drive mechanism used for driving the main shaft of the switch to rotate as well as three insulated top rods which can be driven by the main shaft of the switch to move up and down; one end of the insulated top rods is connected with the corresponding movable contacts in a vacuum arc extinguishing mechanism. The intelligent double-power transfer switch has the advantages of simpler structure, less fault sources and higher reliability.

Description

智能型双电源转换开关Intelligent dual power transfer switch

技术领域 technical field

本发明涉及一种高压开关结构设计技术领域,具体涉及一种智能型双电源转换开关。The invention relates to the technical field of high-voltage switch structure design, in particular to an intelligent dual-power switch.

背景技术 Background technique

在电力网络中,有许多用户对供电可靠性要求很高,例如煤矿和炼油厂,这些单位一旦发生停电事故,将会给单位带来重大的经济损失甚至造成人员伤亡,所以在这些单位的供电系统中,都需要备有主电源和备用电源,当主电源出现停电事故时,备用电源必须立即投入恢复供电,为了实现这个目的,需要通过双电源切换机构在主电源和备用电源之间进行手动切换或自动切换。In the power network, there are many users who have high requirements on the reliability of power supply, such as coal mines and oil refineries. Once a power outage occurs in these units, it will bring significant economic losses or even casualties to the unit. Therefore, the power supply in these units In the system, both the main power supply and the backup power supply are required. When the main power supply fails, the backup power supply must be put into power immediately to restore the power supply. In order to achieve this purpose, it is necessary to manually switch between the main power supply and the backup power supply through a dual power supply switching mechanism. or switch automatically.

传统的双电源切换机构是采用两台高压开关柜加一套极其复杂的电气联锁装置,严防两条回路并列运行。这种双电源装置有以下三大缺陷:(1)闭锁不可靠:目前,电气连锁可靠性太低,严禁使用,机械连锁装置国家又无统一设计规范标准,只能由各地自行设计、改造。(2)操作复杂,且容易卡塞,造成电力事故;(3)投资大,需购两台开关柜,然后设计闭锁装置,再改装到开关柜上。The traditional dual power switching mechanism uses two high-voltage switch cabinets plus a set of extremely complex electrical interlocking devices to prevent parallel operation of the two circuits. This double power supply device has following three big defects: (1) locking is unreliable: at present, the electrical interlocking reliability is too low, is strictly forbidden to use, and the country of mechanical interlocking device has no uniform design specification standard again, can only be designed and transformed by each locality. (2) The operation is complicated, and it is easy to jam, causing electric accidents; (3) The investment is large, and two switch cabinets need to be purchased, and then the locking device is designed, and then refitted to the switch cabinet.

目前国内的双电源切换机构一般是采用两台断路器,把每台断路器的进线端各接一路电源,然后将两台断路器的出线端并接在一起,并通过电气联锁装置实现对主电源和备用电源进行切换。这种的双电源切换机构的缺点是工作可靠性较差,并可能导致严重事故;例如是当主电源供电电路停电进行例行检修时,可能会将主电源连接的断路器中的线圈烧毁掉,但是该断路器中的电路仍保持通路状态,此时,该种双电源切换机构中的另一台断路器会马上接上备用电源继续供电,这样将导致原本已经应当断电的主电源供电电路也带电,很容易导致检修主电源电路的维修人员发生触电事故。此外,由于需购两台断路器,投资也比较大。At present, the domestic dual power supply switching mechanism generally uses two circuit breakers, and connects the incoming line terminals of each circuit breaker to a power supply, and then connects the outgoing line terminals of the two circuit breakers in parallel, and realizes this through an electrical interlocking device. Switch between main power and backup power. The disadvantage of this dual power switching mechanism is poor reliability and may lead to serious accidents; for example, when the main power supply circuit is powered off for routine maintenance, the coil in the circuit breaker connected to the main power may be burned out, However, the circuit in the circuit breaker remains on, at this time, the other circuit breaker in the dual power switching mechanism will immediately connect to the backup power supply to continue power supply, which will cause the main power supply circuit that should have been powered off. It is also charged, which can easily cause electric shock accidents for maintenance personnel who overhaul the main power circuit. In addition, due to the need to purchase two circuit breakers, the investment is relatively large.

断路器的全部使命,归根到底是体现在触头的分、合动作上,而分、合动作又是通过操动机构来实现的,因此操动机构的工作性能和质量的优劣,对断路器的工作性能和可靠性起着极为重要的作用。开关设备的操动机构需要较多的机械零件组成,这不仅成本高,而且可靠性低,因为故障率上升的可能性是和零件的数量成正比的。目前常用的操作机构有弹簧机构和电磁机构两种。弹簧操动机构是利用已储能的弹簧为动力使断路器动作的操动机构。弹簧储能通常是由电动机通过减速装置来完成。整个操动机构大致可分为弹簧储能、维持合闸与合闸维持和分闸四个部分。弹簧操动机构的优点是不需要大功率的直流电源,电动机功率小,交直流两用,适宜交流操作;其缺点是结构比较复杂,零件数量多(约为200个),且要求加工精度高,制造工艺复杂,成本高,机构的可靠性不易保证。电磁操动机构的优点是结构简单,零件数量少(约为120个),工作可靠,制造成本低,但其缺点是合闸线圈消耗的功率太大,触头的压力较小,加上机构的笨重,动作时间较长要求用户配备价格昂贵的蓄电池组等。The whole mission of the circuit breaker, in the final analysis, is reflected in the opening and closing actions of the contacts, and the opening and closing actions are realized through the operating mechanism. It plays an extremely important role in the working performance and reliability of the device. The operating mechanism of the switchgear requires more mechanical parts, which not only has high cost, but also has low reliability, because the possibility of rising failure rate is directly proportional to the number of parts. There are two kinds of operating mechanisms commonly used at present: spring mechanism and electromagnetic mechanism. The spring operating mechanism is an operating mechanism that uses the stored energy spring as the power to make the circuit breaker act. Spring energy storage is usually done by the electric motor through the reduction gear. The entire operating mechanism can be roughly divided into four parts: spring energy storage, maintenance of closing and closing maintenance and opening of the gate. The advantage of the spring operating mechanism is that it does not require a high-power DC power supply, the motor power is small, AC and DC are dual-purpose, and it is suitable for AC operation; its disadvantage is that the structure is relatively complicated, the number of parts is large (about 200), and high processing accuracy is required. , the manufacturing process is complicated, the cost is high, and the reliability of the mechanism is not easy to guarantee. The advantages of the electromagnetic operating mechanism are simple structure, small number of parts (about 120), reliable operation, and low manufacturing cost, but its disadvantages are that the power consumed by the closing coil is too large, the pressure of the contacts is small, and the mechanism The heavy and long action time requires users to equip expensive battery packs.

发明内容 Contents of the invention

本发明的目的是提供一种结构较为简单、故障源少,具有较高可靠性的智能型双电源转换开关。The purpose of the present invention is to provide an intelligent dual power supply switch with relatively simple structure, few fault sources and high reliability.

实现本发明目的的技术方案是:一种智能型双电源转换开关,包括真空断路器主体和双电源切换装置;所述真空断路器主体包括三个均设有动触头和静触头的真空灭弧机构、一个用于带动动触头进行分合闸动作的操作机构;所述双电源切换装置包括三个主电源进线柱、三个备用电源进线柱、三个可在主电源进线柱和相应的备用电源进线柱之间进行切换的隔离刀和为所述隔离刀转动提供动力的驱动机构;所述各隔离刀与相应的一个静触头电连接;所述各真空灭弧机构中的动触头分别与一个出线柱电连接;其特征在于:所述操作机构是永磁式操作机构;所述永磁式操作机构包括开关主轴、用于驱动开关主轴转动的永磁式驱动机构、三个可被开关主轴带动而作上下运动的绝缘顶杆;所述各绝缘顶杆的一端与相应的一个真空灭弧机构中的动触头相连接;所述永磁式驱动机构包括壳体、固定在壳体两侧端的前封盖和后封盖、设置在壳体内的线圈组件、动铁心、由永磁片组成的环状永磁体、用于限位所述永磁体的轭环和用于调节所述轭环与所述前封盖之间距离的调节螺栓。The technical solution to achieve the purpose of the present invention is: an intelligent dual power supply switch, including a vacuum circuit breaker main body and a dual power supply switching device; An arc extinguishing mechanism, an operating mechanism for driving the moving contact to open and close; the dual power switching device includes three main power input columns, three backup power input columns, and three main power input columns. The isolating knife for switching between the line post and the corresponding standby power supply incoming line post and the drive mechanism that provides power for the rotation of the isolating knife; each of the isolating knives is electrically connected to a corresponding static contact; each of the vacuum extinguishers The moving contacts in the arc mechanism are respectively electrically connected to one outlet column; the feature is that: the operating mechanism is a permanent magnet operating mechanism; the permanent magnet operating mechanism includes a switch main shaft, a permanent magnet for driving the switch main shaft to rotate Type drive mechanism, three insulating ejector rods that can be driven by the switch spindle to move up and down; one end of each insulating ejector rod is connected with the moving contact in a corresponding vacuum arc extinguishing mechanism; the permanent magnet drive The mechanism includes a housing, a front cover and a rear cover fixed on both sides of the housing, a coil assembly arranged in the housing, a moving iron core, a ring-shaped permanent magnet composed of permanent magnet sheets, and a permanent magnet for limiting the position of the permanent magnet. yoke ring and adjusting bolts for adjusting the distance between the yoke ring and the front cover.

上述技术方案中,所述开关主轴上设置有一个机构拐臂和三个相拐臂,所述机构拐臂和三个相拐臂与开关主轴同步转动;所述机构拐臂的一端固定设置在开关主轴上,另一端与所述永磁式驱动机构中的动铁心转动连接;所述各相拐臂的一端固定设置在开关主轴上,另一端与所述绝缘顶杆转动连接。In the above technical solution, a mechanism crank arm and three phase crank arms are arranged on the switch main shaft, and the mechanism crank arm and the three phase crank arms rotate synchronously with the switch main shaft; one end of the mechanism crank arm is fixedly arranged on On the switch main shaft, the other end is rotatably connected to the moving iron core in the permanent magnet drive mechanism; one end of each phase crank arm is fixedly arranged on the switch main shaft, and the other end is rotatably connected to the insulating push rod.

上述技术方案中,所述永磁式驱动机构中的动铁心与一个设有腰形孔的传动杆固定连接,所述机构拐臂与所述传动杆通过贯穿该腰形孔的圆形转轴相连接,从而实现所述机构拐臂与所述永磁式驱动机构中的动铁心的转动连接。In the above technical solution, the moving iron core in the permanent magnet drive mechanism is fixedly connected to a transmission rod provided with a waist-shaped hole, and the crank arm of the mechanism is connected to the transmission rod through a circular shaft passing through the waist-shaped hole. connection, so as to realize the rotational connection between the crank arm of the mechanism and the moving iron core in the permanent magnet drive mechanism.

上述技术方案中,所述真空断路器主体包括缓冲机构,所述缓冲机构包括一个缓冲拐臂和与所述缓冲拐臂相配合的弹簧;所述缓冲拐臂设置在开关主轴上;所述弹簧的一端与该开关壳体相连接,另一端与缓冲拐臂相连接;所述灭弧机构垂直设置;所述开关主轴水平设置,所述永磁式驱动机构设置在开关主轴的中心下方或偏右下方;当所述永磁式驱动机构设置在开关主轴的中心下方时,所述缓冲机构的数量是两个,且分别位于开关主轴的两侧端;当所述永磁式驱动机构设置在开关主轴的偏右下方时,所述缓冲机构的数量是一个,且位于开关主轴的左侧端。In the above technical solution, the main body of the vacuum circuit breaker includes a buffer mechanism, and the buffer mechanism includes a buffer arm and a spring matched with the buffer arm; the buffer arm is arranged on the switch main shaft; the spring One end of one end is connected with the switch housing, and the other end is connected with the buffer arm; the arc extinguishing mechanism is arranged vertically; the switch spindle is arranged horizontally, and the permanent magnet drive mechanism is arranged under the center of the switch spindle Bottom right; when the permanent magnet drive mechanism is set under the center of the switch main shaft, the number of the buffer mechanisms is two, and they are respectively located on both sides of the switch main shaft; when the permanent magnet drive mechanism is set on When the switch main shaft is at the lower right side, the number of the buffer mechanism is one, and it is located at the left end of the switch main shaft.

上述技术方案中,所述线圈组件包括至少一个环状的分闸线圈;所述动铁心包括衔铁和与衔铁固定设置的主轴;所述分闸线圈设置在所述轭环的接近所述后封盖的一侧端与后封盖之间;所述衔铁位于所述轭环中心孔中;所述主轴位于所述线圈中心孔中。In the above technical solution, the coil assembly includes at least one annular opening coil; the moving iron core includes an armature and a main shaft fixed to the armature; the opening coil is arranged on the yoke ring close to the rear seal Between one end of the cover and the rear cover; the armature is located in the center hole of the yoke ring; the main shaft is located in the center hole of the coil.

上述技术方案中,所述永磁体围绕所述轭环设置,且夹在所述壳体内壁与所述轭环外壁之间;In the above technical solution, the permanent magnet is arranged around the yoke ring and sandwiched between the inner wall of the housing and the outer wall of the yoke ring;

上述技术方案中,所述壳体内壁或所述轭环外壁上设有用于限位所述永磁体的环状凹槽,所述永磁体设置在所述凹槽之中;In the above technical solution, the inner wall of the housing or the outer wall of the yoke ring is provided with an annular groove for limiting the permanent magnet, and the permanent magnet is arranged in the groove;

或者:所述壳体内壁上设有向内侧凸出的凸台,所述轭环外壁上设有向着外侧凸出的凸环,所述凸台和所述凸环组合形成一个限位槽,所述永磁体设置在所述限位槽之中。Or: the inner wall of the housing is provided with a protruding platform protruding inward, the outer wall of the yoke ring is provided with a protruding ring protruding outward, and the combination of the protruding platform and the protruding ring forms a limiting groove, The permanent magnet is arranged in the limiting groove.

上述技术方案中,所述前封盖上设有与所述调节螺栓相配合的调节螺孔,所述调节螺栓旋入所述调节螺孔后其末端抵在所述轭环的接近所述前封盖的一侧端上;所述调节螺栓的数量是三至八个。In the above technical solution, the front cover is provided with an adjustment screw hole matched with the adjustment bolt, and after the adjustment bolt is screwed into the adjustment screw hole, its end abuts against the front of the yoke ring. On one side of the cover; the number of the adjusting bolts is three to eight.

本发明具有积极的效果:The present invention has positive effect:

(1)本发明中,由于采用了永磁式操作机构,采用了一种全新的工作原理和结构,极大简化了结构,无需机构脱、锁扣装置,故障源少,与传统的弹簧机构和电磁机构相比具有较高可靠性。(1) In the present invention, due to the adoption of a permanent magnet operating mechanism, a brand-new working principle and structure are adopted, which greatly simplifies the structure, does not require mechanism release and locking devices, and has fewer fault sources, which is different from the traditional spring mechanism. Compared with the electromagnetic mechanism, it has higher reliability.

(2)本发明中,所述真空断路器主体也可架设缓冲机构,所述缓冲机构包括一个缓冲拐臂和与所述缓冲拐臂相配合的弹簧,所述缓冲拐臂设置在开关主轴上;所述弹簧的一端与开关壳体相连接,另一端与缓冲拐臂相连接。当所述永磁式驱动机构设置在开关主轴的偏右下方时,所述缓冲机构的数量是一个,与传统的弹簧机构和电磁机构相比,可以省掉一个缓冲拐臂和与所述缓冲拐臂相配合的弹簧,这就使得本发明在结构上得以简化,同时还降低了成本。(2) In the present invention, the main body of the vacuum circuit breaker can also be equipped with a buffer mechanism, the buffer mechanism includes a buffer arm and a spring matched with the buffer arm, and the buffer arm is arranged on the switch main shaft ; One end of the spring is connected with the switch housing, and the other end is connected with the buffer arm. When the permanent magnet drive mechanism is arranged on the lower right side of the main shaft of the switch, the number of the buffer mechanism is one. Compared with the traditional spring mechanism and electromagnetic mechanism, it can save a buffer arm and the The spring that the crank arm matches, this just makes the present invention be simplified in structure, also reduced cost simultaneously.

(3)本发明中,所述灭弧机构垂直设置;所述开关主轴水平设置,所述永磁式驱动机构设置在开关主轴的中心下方或偏右下方;这种结构,与传统的把弹簧机构和电磁机构设置在开关主轴侧面相比,具有占地面积较小的优点。(3) In the present invention, the arc extinguishing mechanism is arranged vertically; the switch main shaft is arranged horizontally, and the permanent magnet drive mechanism is arranged below the center or to the right of the switch main shaft; this structure is different from the traditional handle spring Compared with the electromagnetic mechanism arranged on the side of the switch main shaft, it has the advantage of occupying a smaller area.

(4)本发明中,所述永磁式驱动机构包括壳体、固定在壳体两侧端的前封盖和后封盖、设置在壳体内的线圈组件、动铁心、由永磁片组成的环状永磁体、用于限位所述永磁体的轭环和用于调节所述轭环与所述前封盖之间距离的调节螺栓。这种结构的永磁式驱动机构,由于具有用于限位所述永磁体的轭环和用于调节所述轭环与所述前封盖之间距离的调节螺栓;根据需要可以通过旋转所述调节螺栓进而调节所述轭环与所述前封盖之间距离,从而使其符合使用要求;同时,在使用过程总,由于所述调节螺栓一直紧紧抵在所述轭环的接近所述前封盖的一侧端上,从而有效防止所述轭环因机械振动原因而松动、移位等现象,有效保证了本实施例的可靠性、稳定性和长期的使用寿命。(4) In the present invention, the permanent magnet drive mechanism includes a housing, a front cover and a rear cover fixed on both sides of the housing, a coil assembly arranged in the housing, a moving iron core, and a permanent magnet plate. An annular permanent magnet, a yoke ring for limiting the permanent magnet, and an adjusting bolt for adjusting the distance between the yoke ring and the front cover. The permanent magnet driving mechanism with this structure has a yoke ring for limiting the permanent magnet and an adjusting bolt for adjusting the distance between the yoke ring and the front cover; The adjustment bolt further adjusts the distance between the yoke ring and the front cover, so that it meets the requirements of use; at the same time, in the process of use, because the adjustment bolt is always tightly pressed against the approach of the yoke ring, One side of the front cover, thereby effectively preventing the yoke ring from loosening and shifting due to mechanical vibration, and effectively ensuring the reliability, stability and long-term service life of this embodiment.

(5)本发明中,所述永磁体的具体设置方法可以选用:所述壳体内壁或所述轭环外壁上设有用于限位所述永磁体的环状凹槽,所述永磁体设置在所述凹槽之中;(5) In the present invention, the specific setting method of the permanent magnet can be selected: the inner wall of the housing or the outer wall of the yoke ring is provided with an annular groove for limiting the permanent magnet, and the permanent magnet is set within said groove;

或者:所述壳体内壁上设有向内侧凸出的凸台,所述轭环外壁上设有向着外侧凸出的凸环,所述凸台和所述凸环组合形成一个限位槽,所述永磁体设置在所述限位槽之中。Or: the inner wall of the housing is provided with a protruding platform protruding inward, the outer wall of the yoke ring is provided with a protruding ring protruding outward, and the combination of the protruding platform and the protruding ring forms a limiting groove, The permanent magnet is arranged in the limiting groove.

这种结构使得所述调节螺栓在限位所述轭环的同时,还可限制所述永磁体,使其避免因振动而松动、移位。This structure enables the adjusting bolt to limit the yoke ring and at the same time limit the permanent magnet to avoid loosening and displacement due to vibration.

附图说明 Description of drawings

图1是本发明第一种结构的结构示意图;Fig. 1 is the structural representation of first kind of structure of the present invention;

图2是图1所示智能型双电源转换开关从另一角度观察时的结构示意图;Fig. 2 is a structural schematic view of the intelligent dual power transfer switch shown in Fig. 1 viewed from another angle;

图3是图1所示智能型双电源转换开关中永磁式驱动机构的一种立体结构示意图;Fig. 3 is a schematic diagram of a three-dimensional structure of the permanent magnet drive mechanism in the intelligent dual power transfer switch shown in Fig. 1;

图4是图3所示永磁式驱动机构从前封盖方向观察时的结构示意图;Fig. 4 is a structural schematic view of the permanent magnet drive mechanism shown in Fig. 3 viewed from the direction of the front cover;

图5是图4沿A-A线的剖视图;Fig. 5 is a sectional view along line A-A of Fig. 4;

图6是图3所示永磁式驱动机构在移除前封盖后的一种立体结构示意图;Fig. 6 is a schematic diagram of a three-dimensional structure of the permanent magnet drive mechanism shown in Fig. 3 after the front cover is removed;

图7是图3所示永磁式驱动机构在移除永磁体后的一种半剖结构示意图;Fig. 7 is a schematic diagram of a half-section structure of the permanent magnet drive mechanism shown in Fig. 3 after the permanent magnet is removed;

图8是本发明第二种结构中所用永磁式驱动机构在移除永磁体后的半剖结构示意图;Fig. 8 is a schematic diagram of the semi-sectional structure of the permanent magnet drive mechanism used in the second structure of the present invention after the permanent magnet is removed;

图9是本发明第三种结构中所用永磁式驱动机构在移除永磁体后的半剖结构示意图。FIG. 9 is a half-sectional schematic diagram of the permanent magnet drive mechanism used in the third structure of the present invention after the permanent magnet is removed.

附图所示标记是:真空断路器主体1,开关壳体11,双电源切换装置2,主电源进线柱21,备用电源进线柱22,隔离刀23,驱动机构24,真空灭弧机构3,静触头32,出线柱33,操作机构4,开关主轴5,机构拐臂51,相拐臂52,永磁式驱动机构6,动铁心61,壳体62,凸台621,前封盖63,调节螺孔631,后封盖64,线圈组件65,分闸线圈651,线圈骨架652,衔铁661,主轴662,水磁体67,轭环68,凸环681,调节螺栓69,绝缘顶杆7,传动杆8,腰形孔81,缓冲机构9,缓冲拐臂91,弹簧92,环状凹槽100,限位槽200。The symbols shown in the drawings are: vacuum circuit breaker main body 1, switch housing 11, dual power switching device 2, main power inlet column 21, backup power inlet column 22, isolation knife 23, driving mechanism 24, vacuum arc extinguishing mechanism 3. Static contact 32, outlet post 33, operating mechanism 4, switch spindle 5, mechanism arm 51, phase arm 52, permanent magnet drive mechanism 6, moving iron core 61, housing 62, boss 621, front seal Cover 63, adjusting screw hole 631, rear cover 64, coil assembly 65, opening coil 651, bobbin 652, armature 661, main shaft 662, water magnet 67, yoke ring 68, protruding ring 681, adjusting bolt 69, insulating top Rod 7, transmission rod 8, waist-shaped hole 81, buffer mechanism 9, buffer arm 91, spring 92, annular groove 100, limit groove 200.

具体实施方式 Detailed ways

(实施例1)(Example 1)

图1至图7显示了本发明的第一种具体实施方式,其中,图1是本发明第一种结构的结构示意图;图2是图1所示智能型双电源转换开关从另一角度观察时的结构示意图;图3是图1所示智能型双电源转换开关中永磁式驱动机构的一种立体结构示意图;图4是图3所示永磁式驱动机构从前封盖方向观察时的结构示意图;图5是图4沿A-A线的剖视图;图6是图3所示永磁式驱动机构在移除前封盖后的一种立体结构示意图;图7是图3所示永磁式驱动机构在移除永磁体后的一种半剖结构示意图。Figures 1 to 7 show the first specific embodiment of the present invention, wherein, Figure 1 is a schematic structural diagram of the first structure of the present invention; Figure 2 is the intelligent dual power switch shown in Figure 1 viewed from another angle Fig. 3 is a three-dimensional structural diagram of the permanent magnet drive mechanism in the intelligent dual power transfer switch shown in Fig. 1; Fig. 4 is a perspective view of the permanent magnet drive mechanism shown in Fig. 3 when viewed from the direction of the front cover Schematic diagram of the structure; Fig. 5 is a cross-sectional view along the A-A line of Fig. 4; Fig. 6 is a schematic diagram of a three-dimensional structure of the permanent magnet drive mechanism shown in Fig. 3 after removing the front cover; Fig. 7 is a schematic view of the permanent magnet drive mechanism shown in Fig. 3 A schematic diagram of a half-section structure of the drive mechanism after removing the permanent magnet.

本实施例是一种智能型双电源转换开关,包括真空断路器主体1和双电源切换装置2;所述真空断路器主体1包括三个均设有动触头和静触头32的真空灭弧机构3、一个用于带动动触头进行分合闸动作的操作机构4和一个缓冲结构9;所述双电源切换装置2包括三个主电源进线柱21、三个备用电源进线柱22、三个可在主电源进线柱21和相应的备用电源进线柱22之间进行切换的隔离刀23和为所述隔离刀23转动提供动力的驱动机构24;所述各隔离刀23与相应的一个静触头32电连接;所述各真空灭弧机构3中的动触头分别与一个出线柱33电连接;所述操作机构是永磁式操作机构。This embodiment is an intelligent dual power switch, including a vacuum circuit breaker main body 1 and a dual power switching device 2; Arc mechanism 3, an operating mechanism 4 for driving the moving contact to open and close, and a buffer structure 9; the dual power switching device 2 includes three main power inlet columns 21 and three backup power inlet columns 22. Three isolating knives 23 that can be switched between the main power supply incoming line column 21 and the corresponding standby power supply incoming line column 22 and the drive mechanism 24 that provides power for the rotation of the isolating knives 23; each of the isolating knives 23 It is electrically connected with a corresponding static contact 32; the moving contacts in each of the vacuum arc extinguishing mechanisms 3 are respectively electrically connected with an outlet post 33; the operating mechanism is a permanent magnet operating mechanism.

所述永磁式操作机构包括开关主轴5、用于驱动开关主轴5转动的永磁式驱动机构6、三个可被开关主轴5带动而作上下运动的绝缘顶杆7;所述各绝缘顶杆7的一端与相应的一个真空灭弧机构3中的动触头相连接。The permanent magnet operating mechanism includes a switch main shaft 5, a permanent magnet drive mechanism 6 for driving the switch main shaft 5 to rotate, and three insulating push rods 7 that can be driven by the switch main shaft 5 to move up and down; One end of the rod 7 is connected with a moving contact in a corresponding vacuum arc extinguishing mechanism 3 .

所述开关主轴5上设置有一个机构拐臂51和三个相拐臂52,所述机构拐臂51和三个相拐臂52与开关主轴5同步转动;所述机构拐臂51的一端固定设置在开关主轴5上,另一端与所述永磁式驱动机构6中的动铁心61转动连接;所述各相拐臂52的一端固定设置在开关主轴5上,另一端与所述绝缘顶杆7转动连接。The switch main shaft 5 is provided with a mechanism crank arm 51 and three phase crank arms 52, and the mechanism crank arm 51 and the three phase crank arms 52 rotate synchronously with the switch main shaft 5; one end of the mechanism crank arm 51 is fixed Set on the switch main shaft 5, the other end is rotationally connected with the moving iron core 61 in the permanent magnet drive mechanism 6; one end of each phase arm 52 is fixed on the switch main shaft 5, and the other end is connected to the insulating top Rod 7 is connected in rotation.

所述永磁式驱动机构6中的动铁心61与一个设有腰形孔81的传动杆8固定连接,所述机构拐臂51与所述传动杆8通过贯穿该腰形孔81的圆形转轴相连接,从而实现所述机构拐臂51与所述永磁式驱动机构6中的动铁心61的转动连接。The moving iron core 61 in the permanent magnet drive mechanism 6 is fixedly connected to a transmission rod 8 provided with a waist-shaped hole 81, and the mechanism crank arm 51 and the transmission rod 8 pass through the circular hole 81 through the waist-shaped hole 81. The rotating shafts are connected, so as to realize the rotational connection between the crank arm 51 of the mechanism and the moving iron core 61 in the permanent magnet driving mechanism 6 .

所述缓冲机构9包括一个缓冲拐臂91和与所述缓冲拐臂91相配合的弹簧92;所述缓冲拐臂91设置在开关主轴5上;所述弹簧92的一端与该开关壳体11相连接,另一端与缓冲拐臂91相连接;所述灭弧机构垂直设置;所述开关主轴5水平设置,见图2所示,所述永磁式驱动机构6可以设置在开关主轴5的中心下方或偏右下方;本实施例是设置在开关主轴5的偏右下方,所述缓冲机构9的数量是一个,且位于开关主轴5的左侧端。The buffer mechanism 9 includes a buffer arm 91 and a spring 92 matched with the buffer arm 91; the buffer arm 91 is arranged on the switch main shaft 5; one end of the spring 92 is connected to the switch housing 11 The other end is connected with the buffer crank arm 91; the arc extinguishing mechanism is arranged vertically; the switch main shaft 5 is arranged horizontally, as shown in Figure 2, the permanent magnet drive mechanism 6 can be arranged on the Below the center or below the right side; in this embodiment, it is arranged below the right side of the switch main shaft 5 , and the number of the buffer mechanism 9 is one, and it is located at the left side of the switch main shaft 5 .

在具体实践中,也可把所述永磁式驱动机构6设置在开关主轴5的中心下方,此时所述缓冲机构9的数量是两个,且分别位于开关主轴5的两侧端,以保持开关主轴的平衡性。In practice, the permanent magnet drive mechanism 6 can also be arranged below the center of the switch main shaft 5, and at this time, the number of the buffer mechanisms 9 is two, and they are respectively located on both sides of the switch main shaft 5, so as to Maintain the balance of the switch spindle.

见图3至图7,所述永磁式驱动机构6包括壳体62、固定在壳体62两侧端的前封盖63和后封盖64、设置在壳体62内的线圈组件65、动铁心、由永磁片组成的环状永磁体67、用于限位所述永磁体67的轭环68和用于调节所述轭环68与所述前封盖63之间距离的三个调节螺栓69。3 to 7, the permanent magnet drive mechanism 6 includes a housing 62, a front cover 63 and a rear cover 64 fixed on both sides of the housing 62, a coil assembly 65 arranged in the housing 62, a moving Iron core, annular permanent magnet 67 composed of permanent magnet pieces, yoke ring 68 for limiting the permanent magnet 67 and three adjustments for adjusting the distance between the yoke ring 68 and the front cover 63 Bolt 69.

所述线圈组件65包括一个环状的分闸线圈651和一个线圈骨架652;所述动铁心61包括衔铁661和与衔铁661固定设置的主轴662;所述分闸线圈651设置在所述轭环68的接近所述后封盖64的一侧端与后封盖64之间;所述衔铁661位于所述轭环68中心孔中;所述主轴662位于所述线圈中心孔中。The coil assembly 65 includes an annular opening coil 651 and a coil bobbin 652; the moving iron core 61 includes an armature 661 and a main shaft 662 fixedly arranged with the armature 661; the opening coil 651 is arranged on the yoke ring 68 between the side end close to the rear cover 64 and the rear cover 64; the armature 661 is located in the center hole of the yoke ring 68; the main shaft 662 is located in the coil center hole.

所述永磁体67围绕所述轭环68设置,且夹在所述壳体62内壁与所述轭环68外壁之间;具体是:所述壳体62内壁上设有向内侧凸出的凸台621,所述轭环68外壁上设有向着外侧凸出的凸环681,所述凸台621和所述凸环681组合形成一个限位槽200,所述永磁体67设置在所述限位槽200之中。The permanent magnet 67 is arranged around the yoke ring 68 and sandwiched between the inner wall of the housing 62 and the outer wall of the yoke ring 68; specifically: the inner wall of the housing 62 is provided with a protrusion protruding inward. platform 621, the outer wall of the yoke ring 68 is provided with a protruding ring 681 protruding outward, the combination of the protruding platform 621 and the protruding ring 681 forms a limit groove 200, and the permanent magnet 67 is arranged in the limit in slot 200.

所述前封盖63上设有与所述调节螺栓69相配合的三个调节螺孔631,所述调节螺栓69旋入所述调节螺孔631后其末端抵在所述轭环68的接近所述前封盖63的一侧端上。The front cover 63 is provided with three adjusting screw holes 631 matched with the adjusting bolts 69 , and the ends of the adjusting bolts 69 are screwed into the adjusting screw holes 631 and abut against the proximity of the yoke ring 68 . One side end of the front cover 63 .

(实施例2)(Example 2)

图8是本发明第二种结构中所用永磁式驱动机构在移除永磁体后的半剖结构示意图,显示了本发明的第二种实施方式。Fig. 8 is a half-sectional schematic diagram of the permanent magnet drive mechanism used in the second structure of the present invention after removing the permanent magnet, showing the second embodiment of the present invention.

本实施例与实施例1基本相同,不同之处在于:见图8,所述永磁体的设置方式有所不同。本实施例中,所述壳体62内壁上设有用于限位所述永磁体67的环状凹槽100,所述永磁体67设置在所述凹槽100之中。这种结构使得所述调节螺栓在限位所述轭环的同时,还可限制所述永磁体,使其避免因振动而松动、移位。This embodiment is basically the same as Embodiment 1, except that, as shown in FIG. 8 , the arrangement of the permanent magnets is different. In this embodiment, the inner wall of the housing 62 is provided with an annular groove 100 for limiting the permanent magnet 67 , and the permanent magnet 67 is disposed in the groove 100 . This structure enables the adjusting bolt to limit the yoke ring and at the same time limit the permanent magnet to avoid loosening and displacement due to vibration.

(实施例3)(Example 3)

图9是本发明第三种结构中所用永磁式驱动机构在移除永磁体后的半剖结构示意图,显示了本发明的第三种实施方式。Fig. 9 is a half-sectional schematic diagram of the permanent magnet drive mechanism used in the third structure of the present invention after removing the permanent magnet, showing the third embodiment of the present invention.

本实施例与实施例1基本相同,不同之处在于:见图9,所述永磁体的设置方式有所不同。本实施例中,所述轭环68外壁上设有用于限位所述永磁体67的环状凹槽100,所述永磁体67设置在所述凹槽100之中。这种结构使得所述调节螺栓在限位所述轭环的同时,还可限制所述永磁体,使其避免因振动而松动、移位。This embodiment is basically the same as Embodiment 1, except that, as shown in FIG. 9 , the arrangement of the permanent magnets is different. In this embodiment, the outer wall of the yoke ring 68 is provided with an annular groove 100 for limiting the permanent magnet 67 , and the permanent magnet 67 is disposed in the groove 100 . This structure enables the adjusting bolt to limit the yoke ring and at the same time limit the permanent magnet to avoid loosening and displacement due to vibration.

实施例1至实施例3具有积极的效果:Embodiment 1 to embodiment 3 have positive effect:

(1)上述实施例1至实施例3中,由于采用了永磁式操作机构,采用了一种全新的工作原理和结构,极大简化了结构,无需机构脱、锁扣装置,故障源少,与传统的弹簧机构和电磁机构相比具有较高可靠性。(1) In the above-mentioned embodiment 1 to embodiment 3, due to the use of a permanent magnet operating mechanism, a new working principle and structure are adopted, which greatly simplifies the structure, does not require mechanism release and locking devices, and has fewer fault sources , Compared with the traditional spring mechanism and electromagnetic mechanism, it has higher reliability.

(2)上述实施例1至实施例3中,所述真空断路器主体也可架设缓冲机构,所述缓冲机构包括一个缓冲拐臂和与所述缓冲拐臂相配合的弹簧,所述缓冲拐臂设置在开关主轴上;所述弹簧的一端与开关壳体相连接,另一端与缓冲拐臂相连接。当所述永磁式驱动机构设置在开关主轴的偏右下方时,所述缓冲机构的数量是一个,与传统的弹簧机构和电磁机构相比,可以省掉一个缓冲拐臂和与所述缓冲拐臂相配合的弹簧,这就使得上述实施例1至实施例3在结构上得以简化,同时还降低了成本。(2) In the above-mentioned embodiments 1 to 3, the main body of the vacuum circuit breaker can also be equipped with a buffer mechanism, and the buffer mechanism includes a buffer arm and a spring matched with the buffer arm. The arm is arranged on the main shaft of the switch; one end of the spring is connected with the switch housing, and the other end is connected with the buffer crank arm. When the permanent magnet drive mechanism is arranged on the lower right side of the main shaft of the switch, the number of the buffer mechanism is one. Compared with the traditional spring mechanism and electromagnetic mechanism, it can save a buffer arm and the The spring matched with the crank arm makes the structure of the above-mentioned embodiment 1 to embodiment 3 simplified, and also reduces the cost.

(3)上述实施例1至实施例3中,所述灭弧机构垂直设置;所述开关主轴水平设置,所述永磁式驱动机构设置在开关主轴的中心下方或偏右下方;这种结构,与传统的把弹簧机构和电磁机构设置在开关主轴侧面相比,具有占地面积较小的优点。(3) In the above-mentioned embodiments 1 to 3, the arc extinguishing mechanism is arranged vertically; the switch spindle is arranged horizontally, and the permanent magnet drive mechanism is arranged below the center of the switch spindle or to the right; this structure Compared with the traditional arrangement of the spring mechanism and the electromagnetic mechanism on the side of the switch main shaft, it has the advantage of smaller footprint.

(4)上述实施例1至实施例3中,所述永磁式驱动机构包括壳体、固定在壳体两侧端的前封盖和后封盖、设置在壳体内的线圈组件、动铁心、由永磁片组成的环状永磁体、用于限位所述永磁体的轭环和用于调节所述轭环与所述前封盖之间距离的调节螺栓。这种结构的永磁式驱动机构,由于具有用于限位所述永磁体的轭环和用于调节所述轭环与所述前封盖之间距离的调节螺栓;根据需要可以通过旋转所述调节螺栓进而调节所述轭环与所述前封盖之间距离,从而使其符合使用要求;同时,在使用过程总,由于所述调节螺栓一直紧紧抵在所述轭环的接近所述前封盖的一侧端上,从而有效防止所述轭环因机械振动原因而松动、移位等现象,有效保证了本实施例的可靠性、稳定性和长期的使用寿命。(4) In the above embodiment 1 to embodiment 3, the permanent magnet drive mechanism includes a housing, a front cover and a rear cover fixed on both sides of the housing, a coil assembly arranged in the housing, a moving iron core, An annular permanent magnet composed of permanent magnet pieces, a yoke ring for limiting the permanent magnet, and an adjusting bolt for adjusting the distance between the yoke ring and the front cover. The permanent magnet driving mechanism with this structure has a yoke ring for limiting the permanent magnet and an adjusting bolt for adjusting the distance between the yoke ring and the front cover; The adjustment bolt further adjusts the distance between the yoke ring and the front cover, so that it meets the requirements of use; at the same time, in the process of use, because the adjustment bolt is always tightly pressed against the approach of the yoke ring, One side of the front cover, thereby effectively preventing the yoke ring from loosening and shifting due to mechanical vibration, and effectively ensuring the reliability, stability and long-term service life of this embodiment.

显然,本发明的上述实施例仅仅是为清楚地说明本发明所作的举例,而并非是对本发明的实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而这些属于本发明的精神所引伸出的显而易见的变化或变动仍处于本发明的保护范围之中。Apparently, the above-mentioned embodiments of the present invention are only examples for clearly illustrating the present invention, rather than limiting the implementation of the present invention. For those of ordinary skill in the art, other changes or changes in different forms can be made on the basis of the above description. It is not necessary and impossible to exhaustively list all the implementation manners here. And these obvious changes or modifications derived from the spirit of the present invention are still within the protection scope of the present invention.

Claims (5)

1. an intelligent duplicate power supply conversion switch comprises vacuum circuit breaker main (1) and double-power supply switching device (2); Said vacuum circuit breaker main (1) comprise operating mechanism (4) and three outlet column (33) that three vacuum interruption mechanisms (3) that are equipped with moving contact and fixed contact (32), one are used to drive moving contact and carry out the divide-shut brake action; Said double-power supply switching device (2) comprises three main power source inlet wire posts (21), three stand-by power supply inlet wire posts (22), three isolation knife (23) that can between main power source inlet wire post (21) and corresponding stand-by power supply inlet wire post (22), switch and is the driving mechanism (24) that said isolation knife (23) is rotated provides power; Said each isolation knife (23) is electrically connected with a corresponding fixed contact (32); Moving contact in said each vacuum interruption mechanism (3) is electrically connected with an outlet column respectively; It is characterized in that: said operating mechanism is the magneto operating mechanism; Said magneto operating mechanism comprises switch spindle (5), is used for permanent magnet type drive mechanism (6), three insulating knockout pins (7) that can be moved up and down by switch spindle (5) drive that driving switch main shaft (5) rotates; One end of said each insulating knockout pin (7) is connected with moving contact in the corresponding vacuum interruption mechanism (3); Said permanent magnet type drive mechanism (6) comprises housing (62), be fixed on the preceding capping (63) and the rear seal-cover (64) of housing (62) two side ends, be arranged on the coil block (65) in the housing (62), moving (61) unshakable in one's determination, annular permanent-magnet body (67), the yoke ring (68) that is used for spacing said permanent magnet (67) is made up of the permanent magnetism sheet and the adjusting bolt (69) that is used to regulate distance between said yoke ring (68) and the said preceding capping (63);
Said switch spindle (5) is provided with mechanism's connecting lever (51) and three connecting levers (52) mutually, and said mechanism connecting lever (51) and three connecting lever (52) mutually rotate with switch spindle (5) synchronously; One end of said mechanism connecting lever (51) is fixedly installed on the switch spindle (5), and the moving iron core (61) in the other end and the said permanent magnet type drive mechanism (6) is rotationally connected; One end of said each phase connecting lever (52) is fixedly installed on the switch spindle (5), and the other end and said insulating knockout pin (7) are rotationally connected;
Moving iron core (61) in the said permanent magnet type drive mechanism (6) is fixedly connected with a drive link (8) that is provided with mounting hole (81); Said mechanism connecting lever (51) is connected through the circular rotating shaft that runs through this mounting hole (81) with said drive link (8), thereby realizes being rotationally connected of moving iron core (61) in said mechanism connecting lever (51) and the said permanent magnet type drive mechanism (6);
Said vacuum circuit breaker main (1) comprises buffer gear (9), and said buffer gear (9) comprises a buffering connecting lever (91) and the spring (92) that matches with said buffering connecting lever (91); Said buffering connecting lever (91) is arranged on the switch spindle (5); One end of said spring (92) is connected with this switch case (11), and the other end is connected with buffering connecting lever (91); Said arc-extinguishing mechanism vertically is provided with; Said switch spindle (5) is horizontally disposed with, and said permanent magnet type drive mechanism (6) is arranged on the central lower of switch spindle (5) or takes over the below; When said permanent magnet type drive mechanism (6) was arranged on the central lower of switch spindle (5), the quantity of said buffer gear (9) was two, and laid respectively at the two side ends of switch spindle (5); In the time of below said permanent magnet type drive mechanism (6) is arranged on taking over of switch spindle (5), the quantity of said buffer gear (9) is one, and is positioned at the left-hand end of switch spindle (5).
2. intelligent duplicate power supply conversion switch according to claim 1 is characterized in that: said coil block (65) comprises the switching winding (651) of at least one ring-type; Said moving iron core (61) comprises armature (661) and the main shaft (662) that fixedly installs with armature (661); Said switching winding (651) is arranged between the side and rear seal-cover (64) of approaching said rear seal-cover (64) of said yoke ring (68); Said armature (661) is arranged in said yoke ring (68) centre bore; Said main shaft (662) is arranged in said hub of a spool hole.
3. intelligent duplicate power supply conversion switch according to claim 1 is characterized in that: said permanent magnet (67) is provided with around said yoke ring (68), and is clipped between said housing (62) inwall and said yoke ring (68) outer wall.
4. intelligent duplicate power supply conversion switch according to claim 3; It is characterized in that: said housing (62) inwall or said yoke ring (68) outer wall are provided with the annular recess (100) that is used for spacing said permanent magnet (67), and said permanent magnet (67) is arranged among the said groove (100);
Perhaps: said housing (62) inwall is provided with the boss (621) of protrusion to the inside; Said yoke ring (68) outer wall is provided with towards the bulge loop (681) of outside protrusion; Said boss (621) and said bulge loop (681) are combined to form a stopper slot (200), and said permanent magnet (67) is arranged among the said stopper slot (200).
5. intelligent duplicate power supply conversion switch according to claim 1; It is characterized in that: capping (63) is provided with the adjusting screw (631) that matches with said adjusting bolt (69) before said, and said adjusting bolt (69) screws in its end of said adjusting screw (631) back and is against on the side of approaching said preceding capping (63) of said yoke ring (68); The quantity of said adjusting bolt (69) is three to eight.
CN2008101800013A 2008-11-19 2008-11-19 Intelligent duplicate power supply conversion switch Expired - Fee Related CN101419871B (en)

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Application Number Priority Date Filing Date Title
CN2008101800013A CN101419871B (en) 2008-11-19 2008-11-19 Intelligent duplicate power supply conversion switch

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Application Number Priority Date Filing Date Title
CN2008101800013A CN101419871B (en) 2008-11-19 2008-11-19 Intelligent duplicate power supply conversion switch

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CN101419871B true CN101419871B (en) 2012-08-01

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Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101425404B (en) * 2008-11-19 2012-04-25 郑文秀 Permanent magnet type dual electric power conversion switch
CN102157296B (en) * 2011-03-18 2013-06-12 湖州电力局 High-voltage dual-power supply changing-over combination switch
CN102222975B (en) * 2011-05-04 2013-08-14 江苏德春电力科技有限公司 Intelligent switched four-station load switch with double power supplies
CN203746673U (en) * 2013-02-05 2014-07-30 阿斯科动力科技公司 Parallel switch contact assembly
CN104426234A (en) * 2013-08-26 2015-03-18 国家电网公司 Dual-power source mutual-throw self-reset automatic-switching device
CN115662832A (en) * 2022-12-09 2023-01-31 贵州泰永长征技术股份有限公司 A permanent magnet phase-controlled vacuum dual-power automatic conversion device and mechanism

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CN2684365Y (en) * 2004-03-10 2005-03-09 吉林永大集团有限公司 A single-coil electromagnetism operated permanent-magnet retention mechanism
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CN101056009A (en) * 2007-03-11 2007-10-17 郑文秀 Highly intelligent dual-power automatic switching device
CN101425404A (en) * 2008-11-19 2009-05-06 郑文秀 Permanent magnet type dual electric power conversion switch
CN201289797Y (en) * 2008-11-19 2009-08-12 郑文秀 Permanent magnet type double power supply transfer switch

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CN2560086Y (en) * 2002-06-28 2003-07-09 成都旭光电子股份有限公司 Permanent magnet step positioning permanent magnetic operating mechanism
CN2684365Y (en) * 2004-03-10 2005-03-09 吉林永大集团有限公司 A single-coil electromagnetism operated permanent-magnet retention mechanism
CN2891257Y (en) * 2006-02-27 2007-04-18 北京新融友联技术有限责任公司 Bounce-free permanent magnetic indoor high-voltage vacuum breaker
CN101056009A (en) * 2007-03-11 2007-10-17 郑文秀 Highly intelligent dual-power automatic switching device
CN101425404A (en) * 2008-11-19 2009-05-06 郑文秀 Permanent magnet type dual electric power conversion switch
CN201289797Y (en) * 2008-11-19 2009-08-12 郑文秀 Permanent magnet type double power supply transfer switch

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