The invention pertains to a device for coupling an asynchronous motor with an electrical power cable. More specifically, the invention pertains to a coupling device for making an asynchronous motor work in a star connection or delta connection depending on a user's needs. The invention also pertains to an asynchronous motor of this kind provided with a coupling device of this kind. Similarly, the invention pertains to a method for coupling an asynchronous motor with an electrical power cable using a coupling device of this kind.
An asynchronous motor is an alternating current electrical machine comprising a stator, linked to a speed variator, and a rotor crossed by currents induced by the magnetic field created by the stator currents. An asynchronous motor is generally connected to a three-phase network. A three-phase asynchronous motor of this kind can be driven in a star coupling configuration or in a delta coupling configuration. Depending on the use, or final purpose, of the asynchronous motor, it may be worthwhile to have a three-phase asynchronous motor in a star coupling or a three-phase asynchronous motor in a delta coupling.
As can be seen in
The choice of the wiring of the asynchronous motor is generally done when it is being mounted in the final device that must receive it, and as a function of the characteristics sought. For example, when it is desired to reduce the intensity of the motor at start-up, there are known ways of using a star-coupled three-phase asynchronous motor (
The star coupling of
Conversely, as can be seen in
A choice of the operating mode such as this is generally done at the outset and generally not modified thereafter.
Thus, when an installer wishes to install an asynchronous motor 1 of this kind with a given mode of operation, he must bring the power cable 4 through the hole 3 so that the three wires of the power cable 4 open out into the internal volume 5 of the junction box 2. He then fixes the connection strips 12, 13 between the terminals X, Y and Z to obtain the star-shaped wiring. The installer must then individually connect the three wires of the power cable 4 to the remaining terminals U, V and W. Then he puts back the lid (not shown) on the junction box 2 and fixes it by means of four screws. Thus, the connection, the choice of the mode of operation and the implementation of the corresponding coupling are painstaking operations since it is necessary to work terminal by terminal and wire by wire, and moreover, the installer has to open up and then re-shut the junction box 2.
The invention seeks to provide an alternative to the prior-art connection devices that enables swift and easy assembly of an asynchronous motor with a power cable whatever the coupling chosen, whether a star coupling or a delta coupling.
To this end, the invention proposes the use of a socket that can be configured for a three-phase power supply receiving the six wires of the coil of the asynchronous motor, as well as an additional plug receiving the three wires of the electrical power supply cable to which the asynchronous motor must be connected. A shunt is brought to the connection interface between the plug and the socket in order to couple the contacts of the socket with the contacts of the plug in a star or delta configuration as needed. The shunt may be for example a metal piece provided with at least six via holes through each of which there passes a contact of the socket. The shunt may thus be fixed to but detachable from the connection face of the socket, facilitating handling operations by the user when he wishes to do the wiring. The shunt also has at least two connection strips designed to place terminals of the socket at the same potential two by two, depending on the chosen mode of wiring. The invention advantageously proposes a connection kit comprising the three-phase socket designed to be fixedly joined to the asynchronous motor, a plug designed to be connected to the electrical power supply cable and two shunts respectively provided with two and three connection strips in order to enable the final user to set up a wiring in a star configuration or a delta configuration. The wiring device of the invention simplifies the wiring method as such by eliminating especially the wiring steps performed terminal by terminal. A simple plug/socket connection makes it possible, by interposing the shunt needed at the connection interface, to obtain the desired delta or star coupling.
The invention therefore pertains to a device for coupling an asynchronous motor with an electrical power supply cable characterized in that it comprises:
According to exemplary embodiments of the coupling device of the invention, it is possible to provide for all or part of the following complementary characteristics:
The invention also pertains to an asynchronous motor provided with a coupling device of this kind. The socket is advantageously fixedly joined to the housing of the motor in order to be easily accessible to the user. It is no longer necessary to use a junction box. This reduces the general space requirement of the asynchronous motor.
Furthermore, the invention pertains to a method for coupling an asynchronous motor to an electrical power supply cable by means of a coupling device of this kind, comprising the following steps:
Depending on the examples of implementation of the method according to the invention, it is possible to provide for all or part of the following additional steps:
The invention will be understood more clearly from the following description and from the accompanying figures. These figures are given by way of an indication and in no way restrict the scope of the invention. Of these figures:
The socket 100 has a main hollow cylindrical-circular body 101 in which there is mounted an insulator 102 that is also cylindrical-circular. The insulator 102 has seven longitudinal channels 106 in each of which there extends a contact 103 of the socket 100.
One connection end 104 of the socket/100 leads to the exterior relatively to the wall 14 of the asynchronous motor 1 to which it is fixed. The opposite end 105 for its part leads into a via hole 27 made on the wall 11 of the asynchronous motor 1. The power supply wires 17 to 22 and a ground 28 of the asynchronous motor 1 go through the via hole 27 of the wall 11 of the asynchronous motor so as to lead into the main body 101 of the socket 100. Each of the power supply wires 17 to 22 and the ground 28 are connected to a contact 103 of the socket 100. Thus, as can be seen in
The plug 200 has a main hollow cylindrical-circular body 201 in which there is housed an insulator 202 that is also cylindrical-circular. The insulator 202 has four longitudinal channels 203 each designed to receive a contact 204. Each of the cores of the contacts 204 receives a wire 23, 24, 25 or ground 26 of the power supply cable 4. In a fairly convenient way, the wires 23 to 25 and the ground 26 of the power supply cable 4 are mounted in the cores of the contacts 204 before the insertion of said contacts in the channels 203 of the insulator 202.
Each core 204 of the plug 200 is designed to be connected to a complementary contact 103 or pin of the socket 100 in order to supply current to the asynchronous motor 1.
In order to obtain a star coupling or a delta coupling, the device of the invention furthermore comprises a shunt 110 designed to be positioned between the connection face 104 of the socket 100 and the connection face 205 of the plug 200.
The shunt 110 is for example a metal part cut out so as to get positioned between the contacts 103 of the socket 104.
More specifically, said metal part forming the shunt 110 has as many holes are there are contacts 103 on the socket 100. Each contact 103 goes through a hole of the shunt so that said contacts 103 project out of the metal part forming the shunt 110. The cut-out metal part forming the shunt 110 also has connection strips, the number and position of which can vary from one shunt 110 to another depending on the wiring desired.
For example, as shown in
It is advantageously to the rear face (as shown in
Thus, the shunt 110 shown schematically in
The shunt 110′ shown schematically in
According to the invention, it is enough to interpose a shunt 110 or 110′ at the connection interface between the socket 100 and the plug 200 in order to obtain the coupling desired for the asynchronous motor 1. Thereafter, the simple connection of the plug to the socket 100 is enough to obtain the power supply to the asynchronous motor 1. It is no longer necessary to couple the wires terminal by terminal to the asynchronous motor or carry out numerous manipulations.
Thus, the supplier of the asynchronous motor 1 mounts a socket 100 of the coupling device according to the invention on the housing 11 of an asynchronous motor 1 and especially on an asynchronous motor as shown in
Since, in order to disconnect the assembly, it is enough to withdraw the plug 200, the user can thereafter easily modify the mode of operation of the asynchronous motor 1 by withdrawing the initially used shunt 110, 110′ in order to replace it by another shunt 110, 110′ provided with connection strips of a different number and position.
Number | Date | Country | Kind |
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10 53351 | Apr 2010 | FR | national |