The present application is based on, and claims priority from, German Application No. DE 10 2017 110 527.1 filed May 15, 2017, the disclosure of which is hereby incorporated by reference herein in its entirety.
The invention relates to a terminal board for fastening electrical lines, comprising at least one threaded hole so as to fasten a connecting element of an electrical line by way of a screw that can be screwed or is screwed into the threaded hole.
Such terminal boards, which are also referred to as terminal blocks, are used in traction motors for electric vehicles or hybrid vehicles, for example. In these, it is necessary to connect three lines, which are connected to the motor and assigned to a respective phase, to the corresponding lines connected to an inverter. In such applications, only limited installation space is available. For cost reasons, it is desirable to replace conventional high voltage connectors by connecting the lines directly to the terminal board. When a traction motor is used in a vehicle, usually the need exists to fix the motor-side lines, or more precisely the cable lugs of the motor-side lines, first to the terminal board. The connection of the inverter-side lines or cable lugs takes place later. In the past, terminal boards in which the motor-side and the inverter-side cable lugs were screwed on separately were used. This allowed the motor-side cable lugs to be fixed in advance, before the inverter-side cable lugs were screwed onto the vehicle. Due to the limited installation space, however, this is not always possible.
It is therefore the object of the invention to provide a terminal board for fastening electrical lines, which are connected to the motor on one side and to the inverter on the other side, wherein the terminal board has low requirements with regard to the installation space.
To achieve this object, it is provided according to the invention that a terminal board of the type mentioned at the outset comprises an insert having a threaded hole, and that the connecting element and the threaded hole are joined to one another by way of plastic deformation.
The invention is based on the finding that space-saving and economical fastening of electrical lines to a terminal board can take place by joining a connecting element to the terminal board by way of a joining method, without screwing the connecting element to the terminal board. The connecting element of a first line is thus fixedly joined to the insert including the threaded hole by way of plastic deformation.
The first electrical line is preferably connected to the motor. Preferably, three such electrical lines are present, which are connected to the motor. Each line is assigned to a phase of the motor designed as a three-phase motor. The terminal board according to the invention has the advantage that no screw or the like must be screwed into the threaded hole so as to join the first electrical line to the threaded hole. The plastic deformation takes place so as not to impair the function of the threaded hole. This means that is possible to screw a screw, or another fastening means having an external thread, into the threaded hole even after the connecting element of the first electrical line has been joined to the threaded hole. The fastening of the second electrical line, which is preferably connected to the inverter, can take place at a later point in time, and in particular after the motor and the inverter have been installed in the vehicle body.
With respect to the terminal board according to the invention, it is preferred that the insert including the threaded hole has a cylindrical design. The insert can be made of a different material than the terminal board. Preferably, the terminal board is made of an electrically insulating material, such as a plastic material. The insert including the threaded hole can be made of a metallic material or a metal alloy, such as a steel alloy or a copper alloy.
Within the scope of the invention, it may be provided that the insert is inserted into a cut-out of the terminal board according to the invention and comprises an end section that projects from a surface area of the terminal board and is joined to the connecting element by way of plastic deformation. In addition to the section forming the threaded hole, the insert thus comprises the projecting end section, which is not present in conventional threaded holes or threaded inserts. This projecting end section can be plastically deformed after the connecting element, which is located at the end of the end of the line, has been positioned. As a result of the plastic deformation, the connecting element is joined to the end section in a form-locked manner. The plastic deformation is carried out in such a way that the threaded hole remains accessible and allows a screw or similar component to be screwed in, so as to fasten a second electrical line, and preferably a line connected to the inverter, in the same location.
Within the scope of the invention, it is preferred that the plastic deformation is created by way of a crimping method and/or by way of press-fit stemming and/or by way of flanging. Appropriate tools are used for all aforementioned methods, which are suitable for plastically deforming the end section and/or the connecting element of the electrical line. As a result of the plastic deformation, a form fit and/or a force fit is created between the end section of the threaded hole and the connecting element, whereby the two components are fixedly joined to one another.
Preferably, it may be provided on the terminal board according to the invention that an undercut is created between the connecting element and the threaded hole, and in particular the insert, as a result of the plastic deformation.
It is particularly advantageous when it is provided on the terminal board according to the invention that an electrically conducting connection is established between the connecting element and the threaded hole as a result of the plastic deformation. The electrically conducting connection thus established enables particularly good and low-loss electrical contact.
A preferred variant of the terminal board according to the invention provides for the connecting element to be designed as a cable lug and to include a cut-out that is adapted to the diameter of the threaded hole. Such a cable lug can be press fitted with a cable end of the electrical line. The cable lug can comprise a plate-shaped section including a cut-out. The cut-out preferably has a circular design. As an alternative, a cable lug can also have a semi-circular outer contour, for example.
It is also within the scope of the invention that the terminal board comprises a first electrical line, the connecting element of which is joined to the threaded hole by way of plastic deformation, and a second electrical line, which comprises a connecting element and is joined to the terminal board by way of a screw that is screwed into the threaded hole. The advantage of this arrangement is that the first electrical line is joined first to the terminal board and sub-assembled by way of plastic deformation. The first electrical is preferably the line connected to the motor. Thereafter, the second line, which is preferably connected to the inverter, can be fastened to the terminal board by way of the screw.
It is particularly preferred that the terminal board according to the invention includes multiple, and preferably three, threaded holes. Each threaded hole can be used to fasten the two lines, which are connected to the inverter on one side and to the motor on the other side, wherein each of the three threaded holes is assigned to a phase.
The invention furthermore relates to a method for fastening electrical lines to a terminal board. The method includes the following steps: generating a threaded hole in the terminal board by inserting an insert, which includes the threaded hole, into a cut-out of the terminal board; positioning a connecting element of an electrical line over the insert of the terminal board, and joining the connecting element and the insert by way of plastic deformation.
In the method according to the invention, it is preferred that a cylindrical insert is inserted into a cut-out of the terminal board.
Preferably, an insert, having an end that protrudes from the surface of the terminal board and is plastically deformed so as to be joined to the connecting element, is used in the method according to the invention.
According to one refinement of the method according to the invention, the plastic deformation takes place by way of a crimping method and/or press-fit stemming and/or flanging.
One variant of the method according to the invention provides for the use of a first electrical line, the connecting element of which is joined to the threaded hole by way of plastic deformation, and a second electrical line, which comprises a connecting element and is joined to the terminal board by way of a screw that is screwed into the threaded hole.
The invention will be described hereafter based on exemplary embodiments with reference to the figures. The drawings are schematic illustrations. In the drawings:
It is apparent from
The terminal board 3 shown in
The described terminal board 3 has the advantage that the motor-side lines 7, 8, 9 can be sub-assembled with the inserts 4, designed as threaded bushings, by way of crimping. The subsequent installation of the inverter-side cable lugs 13 can take place particularly easily, without requiring the loosening of a screw joint or the like.
Number | Date | Country | Kind |
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10 2017 110 527 | May 2017 | DE | national |
Number | Name | Date | Kind |
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8597062 | Casses | Dec 2013 | B2 |
20080003893 | Frenken | Jan 2008 | A1 |
Number | Date | Country |
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10 2005 007 203 | Apr 2006 | DE |
10 2008 039 786 | Apr 2010 | DE |
2004010539 | Jan 2004 | WO |
2010029391 | Mar 2010 | WO |
Number | Date | Country | |
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20180331439 A1 | Nov 2018 | US |