The present invention relates to an operation device, vacuum opening/closing device, and method for assembling an operation device and, more particularly, to installation of an electromagnet into an operation device.
As an operation device of an electromagnetic operation-type for an opening/closing device, there is an operation device disclosed in Patent Literature 1, for example. The operation device disclosed in the Patent Literature 1 includes an electromagnet arranged in a casing and generating operation power, a movable rod supported between a casing-bottom surface of the casing and the electromagnet, a condenser arranged on the casing-bottom surface of the casing for an electromagnet power source, a control board fixed to a lateral surface of the casing, etc. By the operation power from the operation device, a main contact is closing-operated or opening-operated.
In the Patent Literature 1, the electromagnet, together with a break spring, is fixed to a casing-bottom surface and, by causing the rod penetrating a center of the electromagnet to be vertically moved, the main contact of a breaker section is closed or opened. The vertical movement of the rod is stopped by a shock absorber installed on the casing-bottom surface, or a stopper.
Patent Literature 1: Japanese Patent Application Laid-Open No. 2004-152625
According to the Patent Literature 1, the stopper of the vertically moving rod is present on the casing-bottom surface at the time of the closing-operation or opening-operation of the main contact, whereby shock is transmitted directly to the casing-bottom surface, so that vibration is easy to be applied to the condenser that is also installed on the casing-bottom surface. Therefore, the use of the operation device for a long time causes, for example, looseness of a wiring of the condenser or the like to occur, so that there is a room for more improving reliability. Moreover, the electromagnet and the stopper are connected at the time of assembling an entire operation device and the assembling work is carried out in the casing whose space is limited, so that the work is made complicated.
Therefore, the object of the present invention is to provide a reliability-improved operation device and vacuum opening/closing device.
Moreover, the object of the present invention is to provide a method for assembling an operation device, which can simplify work progresses.
In order to solve the problem, the operation device according to the present invention includes an electromagnet generating operation power, a movable rod capable of being moved by the operation power generated from the electromagnet, a support member having a stopper member stopping the movement of the movable rod, a condenser supplying electric current to the electromagnet, a control board, and a casing housing the electromagnet, the support member, the condenser, and the control board therein, the support member being fixed to a surface in the casing which is different from surfaces onto which the condenser and the control board are fixed.
The method for assembling an operation device according to the present invention, the operation device comprising an electromagnet generating operation power, a movable rod capable of being moved by the operation power from the electromagnet, a support member having a stopper member stopping the movement of the movable rod, a condenser supplying electric current to the electromagnet, a control board, and a casing housing the electromagnet, the support member, the condenser, and the control board therein, includes the steps of integrally forming the electromagnet with the support member and fixing the integrally formed electromagnet and support member to the casing.
According to the present invention, it is possible to provide a reliability-improved operation device, vacuum opening/closing device, and method for assembling an operation device.
An embodiment of the present invention will be explained hereinafter with reference to the drawings. Incidentally, the following description is absolutely made for the embodiment and has no intent to limit the contents of the present invention to the below-mentioned embodiment. The present invention itself can be embodied in various modifications other than the following embodiment.
Referring to
In the interior of a casing 1, an electromagnet 40 arranged at a center of the interior of the casing 1, a condenser 11 supplying electric current to the electromagnet 40 and arranged on a bottom surface 21 of the casing and on the side of a lateral surface of the interior of the casing 1, and a control board 10 fixed via a vibration-proofing member 24 to a lateral surface 20 of the casing, which is opposite to the lateral surface 20 of the casing, on which the condenser 11 is arranged, with respect to the electromagnet 40, and controlling operation of the electromagnet 40 are housed. In the interior of the casing 1, an auxiliary contact transmitting to an exterior a opening/closing status signal of a breaker section 100 operated by operation power generated from the electromagnet 40, an indicator board indicating the opening/closing status signal, a counter counting the number of opening/closing operations, etc. (which are not shown) further housed.
Referring to
The main contact is configured by a movable contact and a stationary contact and remained in insulating gas or vacuum in an insulating container interior. As shown in
In this embodiment, the electromagnet 40 is formed integrally with the support plate 46, not contacting the casing 1 (arranged in a floating manner with respect to the casing 1), and a stationary rod 41 connecting the body of the electromagnet 40 and the support plate 46 and, thereafter, is fixed, via a mounting plate 43, to a rear surface 22 of the casing by a bolt 45. The support plate 46 supports a lower end of the break spring 42 arranged between the support plate 46 and the electromagnet 40. Moreover, as shown in
Thanks to the presence of the shock absorber 44 and stopper 47, a shock which is generated by kinetic energy, which a movable component such as the shaft 32, etc. has, and elastic energy of the spring is transmitted to the support plate 46. Incidentally, vibration generated due to this shock is not propagated directly to the casing-bottom surface 21 and is in turn propagated to the stationary rod 41, the mounting plate 43 and the casing-rear surface 22 and, thereafter, arrives at the casing-lateral surfaces 20 and the casing-bottom surface 21. Therefore, as compared to a case where the stopper is installed directly on the casing-bottom surface 21, an influence of the vibration on the condenser installed on the casing-bottom surface 21 is reduced and probability of occurrence of a defect, for example, the looseness of the wiring, is reduced. Similarly, the influence of the vibration on the control board 10 installed on the casing-lateral surface 20 can be reduced and the probability of the occurrence of the defect can be reduced.
The fixing manner of the electromagnet 40 to the casing 1 is explained with reference to
In this embodiment, the support plate 46 which has the stopper 47 stopping the movement of the rod 62 is arranged on the surface in the casing 1 that is different from the surfaces onto which the condenser 11 and the control board 10 are fixed, so that the vibration of the movable rod is not transmitted directly to the condenser 11 and the control board 10, and reliability can be improved.
More specifically, the support plate 46 is formed separatedly (floatedly) from the casing-bottom surface of the casing 1 and, on the other hand, the condenser 11 is installed on the casing-bottom surface of the casing 1 and the control board 10 is installed on the lateral surface side of the casing 1. Thereby, the propagation of the vibration from the rod 62 is made more difficult, and the reliability is improved.
Moreover, although as described above in this embodiment, the support plate 46 which has the stopper 47 stopping the movement of the rod 62 is arranged on the surface in the casing 1 that is different from the surfaces onto which the condenser 11 and the control board 10 are fixed, even in a case where the condenser 11 and the control board 10 are arranged on the same surface, if they are connected to the surface via any vibration-proofing member, the shock due to the vibration can be relieved.
Although the control board 10 and the support plate 46 having the stopper 47 stopping the movement of the rod 62 are not arranged on the same surface inside the casing 1 in this embodiment, the control board 10 is fixed with respect to the casing via the vibration-proofing member.
Moreover, in this embodiment, the electromagnet 40 is formed integrally with the support plate 46, so that they can be mounted integrally to the casing and work process can be simplified. That is, the electromagnet 40 and the support plate 46 are integrally formed, thereafter, assembly sequences such as mounting of them to the casing 1 can be prepared, fixing may be made sufficient by one-time fixing with respect to an integral structure including the electromagnet 40 and, as compared to a case where the respective members are separately present and are all mounted to the casing, work in the casing whose space is limited is reduced and efficiency of the work is improved. Particularly, the fixing with respect to the casing by the mounting plate 43 is applied to the rear surface, so that mounting step that is performed from a downward direction of the casing 1 and is poor in working property is not required and is more simplified as compared to a case where any fixed portion is provided on the bottom surface. As long as the fixed portion is not applied to the bottom surface, this effect can be also exerted, for example, even in a case where the fixed portion is applied to an upper surface or lateral surface of the casing.
Moreover, if the mounting plate 43 for fixing the electromagnet 40 employed in this embodiment to the casing-rear surface 22 is formed of high rigidity material (for example, stainless steel or the like), the mounting plate 43 can be used as not only a mounting member but also a member for reinforcing the casing (rib). In this case, the rigidity of the casing is increased to thereby reduce deflection, thus resulting in an effect of suppressing an increase in the energy required for causing the movable component such as the shaft 32 to be vertically moved.
Moreover, the rib is extended to the right end or left end direction of the casing-rear surface 22 (in a vertical direction when the mounting plate 43 is vertically arranged) so as to be formed as a fixing member having a length more than that of the electromagnet, whereby the function of the rib can be more improved. Moreover, the mounting plate 43 is made longer than a width of one inner surface of the casing (a height of the one inner surface of the casing when the mounting plate 43 is mounted in a height direction), and is formed so as to have a curved shape, and can be fixed to the surface of the casing 1, onto which the electromagnet 40 is fixed, and any surface of the casing 1 other than the surface of the casing 1 onto which the electromagnet 40 is fixed, whereby the mounting plate 43 has the curved portion and the durability of the mounting plate with respect to multi-directional forces can be improved.
1: Casing
10: Control board
11: Condenser
20: Casing-lateral surface
21: Casing-bottom surface
22: Casing-rear surface
23: Casing-upper surface
24: Vibration-proofing member
30: Three-phase connecting shaft
31, 33, 102: Pin
32: Shaft
34, 36: Lever
35: Pressing plate
40: Electromagnet
41: Stationary rod
42: Break spring
43: Mounting plate
44: Shock absorber
45: Bolt
46, 74, 76: Support plate
47: Stopper
48: Coil
49: Coil bobbin
56: Plate
58: Movable iron core
60: Stationary iron core
62: Rod
64: Movable planar plate
66: Movable planar plate
68: Permanent magnet
70: Cover
72: Side leg
82, 84: Through-hole
100: Breaker section
101: Lever
114: Insulating rod
121: Flexible conductor
122: Feeder
124: Movable conductor
130: Upper contactor
132: Lower contactor
174: Support plate
Number | Date | Country | Kind |
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2012-136496 | Jun 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2013/065315 | 6/3/2013 | WO | 00 |