The invention relates to an electrical device and its control mechanism. In the present document, the term electrical device encompasses, equally, several types of switch devices such as a switch, a disconnector, a circuit breaker, a fuse switch, a recloser, etc. The invention is particularly suited to medium voltage and high voltage electrical devices, that is to say devices operating on an electrical supply network with a voltage greater than 1000V.
As is known, such an electrical device has contacts which are mobile in order to have current circulate or not in the different phases of an electrical network. These contacts are mobile between a closed position in which they are in contact with corresponding fixed contacts and an open position in which they are disconnected from these fixed contacts.
The movements of opening and of closure of the mobile contacts are produced from a control mechanism which is capable of driving the mobile contacts. This control mechanism can be rearmed so as to be always ready to perform a possible imminent closure trip. This rearming is performed using a rearming module which is linked mechanically to the control mechanism to allow it to store enough energy. The rearming generally consists in retensioning springs which will thus be ready to rapidly close the contacts as soon as a closure command occurs.
A rearming module can operate by different technologies according to the applications in which the electrical device is installed (for example, the rearming module can comprise a planetary gear system or a ratchet system) and according to the choices of the client user (for example, choice between manual or motorized control).
To facilitate the production of the switch, it would be advantageous for the choice between these different technologies of the rearming module to be able to be made at the last minute, in the final customization of the electrical device, that is to say on starting the final assembly of the electrical device, upon the integration of its control mechanism.
Furthermore, there are other optional functionalities which are involved in the customization of the electrical device, such as, for example, the possibility of installing auxiliary contacts of the electrical device which make it possible to know whether the mobile contacts of the electrical device are in open position or in closed position. Now, this option is often produced by using sometimes complex and/or bulky mechanical links between the control axes of the mobile contacts of the electrical device and these auxiliary contacts.
There is therefore a need to propose a simple and economical solution that makes it possible to facilitate the customization of the control mechanism for the mobile contacts of an electrical device and to simplify the production of the auxiliary functions.
This aim is achieved through an electrical switch comprising contacts which are mobile through actuation of a first rotation shaft and comprising a control mechanism for the mobile contacts which is situated in a housing and which can be rearmed via a second rotation shaft. It is characterized in that the first rotation shaft passes through a first wall of the housing and the switch comprises a first rotation sensor which is coupled with the first rotation shaft outside of the housing, so as to measure the angular displacement of the first rotation shaft, and in that the second rotation shaft passes through a second wall of the housing and the switch comprises a rearming module which is removably fixed outside of the housing against the second wall, so as to be coupled with the second rotation shaft to be able to rearm the control mechanism.
According to one feature, the second wall of the housing comprises fixing means capable of fixing a rearming module comprising a planetary gear system, and capable of fixing a rearming module comprising a ratchet system. The planetary gear system can be driven by a crank or by an electric motor. The ratchet system can be driven by a lever or by an electric motor.
According to another feature, the first rotation shaft comprises longitudinal splines, the first rotation sensor comprising complementary splines to be driven by the first rotation shaft. The second rotation shaft comprises longitudinal splines, the rearming module comprising complementary splines to be driven by the second rotation shaft.
According to another feature, the first wall and the second wall correspond to one and the same lateral wall of the housing of the control mechanism. Alternatively, the first wall and the second wall correspond respectively to two opposite lateral walls of the housing of the control mechanism.
According to another feature, the switch comprises a second rotation sensor which is coupled with the second rotation shaft outside of the housing, so as to measure the angle of rotation of the second rotation shaft.
By virtue of the invention, the control mechanism of the electrical device is advantageously of modular design, that is to say that it can easily receive different types of interchangeable rearming modules using different technologies, and optional add-ons. It can thus be customized which in particular optimizes the production thereof.
Furthermore, since these rearming modules are removable, the replacement of one rearming module using a technology with another using another technology is also facilitated, as is the replacement of a defective rearming module. Conversely, one and the same given rearming module can easily be mounted on different types of electrical devices.
Other features will emerge from the following detailed description given in light of the attached drawings in which:
An electrical device comprises a control mechanism for opening and closing the mobile contacts of the electrical device. This control mechanism is generally situated on the front face of the electrical device, so as to be able to be controlled by an operator via human-machine dialogue members (knobs, indicators, remote electrical controls, etc.).
The control mechanism comprises complex mechanical parts and must be able to store up a lot of energy, in particular via various springs to perform the opening and closing movements, and in particular be capable of performing sequences of “open-close-open” type which are required in certain standardized conditions. To store up this energy, the control mechanism is coupled with a rearming module, manual or motorized, responsible for rearming the control mechanism.
As is known, the control mechanism 1 comprises a first rotation shaft 10 which is coupled mechanically with the mobile contacts of the electrical device so as to be able to open and close these mobile contacts. Only a part 6 of this coupling is shown in
According to the invention, the second rotation shaft 20 passes through one of the lateral walls 2, 3 of the housing, called second wall, and the device comprises a rearming module 25, 26 which is fixed outside of the housing against the second wall, so as to be coupled with the second rotation shaft 20, as indicated in the figures. Once coupled, the rearming module 25, 26 is capable of rearming the control mechanism. This mechanical coupling can be done simply, for example using longitudinal splines 21 over a part of the second transmission shaft 20 cooperating with complementary splines in the rearming module 25, 26.
In the embodiment of
In the embodiment of
As for the rearming module 25 with planetary gears, the rearming module 26 with ratchet and the gear motor assembly 27, 28 can be fixed removably outside of the housing against the second wall and thus be coupled to the control mechanism 1, for example using a simple arrangement of screw/nut/spacer type 8.
This advantageous modular structure of the electrical device thus makes it possible to choose, at the last minute, the desired rearming module 25, 26, to easily dismantle it and replace it with another, without performing any other modification or intervention on the control mechanism 1, which gives a lot of versatility in the last minute adaptation of the electrical device to the needs of the application or of the client user and in the maintenance of the electrical device.
According to the invention, the first rotation shaft 10, which gives the image of the position of the mobile contacts of the device, also passes through one of the lateral walls 2, 3 of the housing, called first wall.
In the preferred embodiment, the first wall and the second wall correspond to one and the same lateral wall 2 of the housing of the control mechanism 1, that is to say that the rotation shafts 10, 20 exit on the same side and therefore pass through the same lateral wall 2.
Alternatively, it would have been possible to envisage having the first wall and the second wall correspond to the two opposite lateral walls 2, 3 of the housing of the control mechanism, for example the first wall is the wall 2 and the second wall is the wall 3.
Thus, the first rotation sensor 12 is capable of measuring the angular displacement of the first rotation shaft 10 and of deducing therefrom information on the state (open or closed) of the mobile contacts of the device. It supplies one or more output signals 13 which can be used in particular for supervisory purposes or for information on the state of the mobile contacts of the device and also to electrically control auxiliary contacts of the device, which avoids having mechanical links that are sometimes complex or bulky between the first rotation shaft 10 and control members for auxiliary contacts. The first rotation sensor 12 is also capable of giving information on the speed of the closing movement.
The second rotation sensor 22 thus supplies an output signal representative of the angle of rotation performed by the second rotation shaft 20 so as, in particular, to determine the excess (therefore residual) energy of the control mechanism in a closure movement. Indeed, the variations of the angular displacement of the second shaft 20 give information on the energy reserve available in a closure movement. The variation in time of this energy reserve will advantageously make it possible to detect wear of the parts of the control mechanism, with a view to preventive maintenance. The second rotation sensor 22 could also supply a signal representative of the speed of the movements of the shaft 20.
By virtue of the modular structure provided by the invention, it is therefore very easy to add to a control mechanism according to the invention one or more rotation sensors making it possible to enrich the functionalities of the device.
Number | Date | Country | Kind |
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17 62203 | Dec 2017 | FR | national |
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5224590 | Milianowicz et al. | Jul 1993 | A |
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Number | Date | Country |
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2 377 139 | Oct 2011 | EP |
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Entry |
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French Preliminary Search Report dated Sep. 4, 2018 in French Application 17 62203, filed on Dec. 15, 2017 (with English Translation of Categories of Cited Documents & Written Opinion). |
Number | Date | Country | |
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20190189366 A1 | Jun 2019 | US |