The invention relates to a connection unit for a wiper motor for windshield wiper systems according to the preamble of claim 1. Furthermore, the invention relates to a wiper motor using a connection unit according to the invention.
A connection unit for a wiper motor for windshield wiper systems having the features of the preamble of claim 1 is known from U.S. Pat. No. 7,109,617 B2. The known connection unit comprises a plug connector element for the reception of electric connection lines, which are formed for the at least indirect contacting of a commutator of an electric motor. At the same time, the plug connector element is designed as a carrier element, on which contacts for contacting a carbon brush holder plate for the commutator of the electric motor are arranged. Here, the essential factor is that the plug connector element or the carrier element of the connection unit forms a pre-mountable construction unit together with the carbon brush holder plate formed as a separate component. To that end, the carbon brush holder plate and the plug connector element are connected with one another via plug connector, possibly using additional fastening elements or a construction unit, in which an opening is formed, in order to receive sections of the carrier element or of the pug connector element and the carbon brush holder plate. Such a design of the connection unit for connecting the carrier element to the carbon brush holder plate is relatively elaborate in terms of construction, requires a large construction space and relatively high mounting efforts.
Based upon the described prior art, the object underlying the invention is to develop a connection unit for a wiper motor for windshield wiper systems according to the preamble of claim 1 in such a way that a simplified mounting process of the pre-mountable construction unit consisting of the carrier element and the carbon brush holder plate is made possible.
According to the invention, in a connection unit for a wiper motor for windshield wiper systems having the features of claim 1, this object is essentially achieved in that a latch connection is formed between the carrier element and the carbon brush holder plate. In a direct connection (i.e. without additional fastening elements or components) between the carrier element and the carbon brush holder plate, such a latch connection thus allows connecting the above-mentioned components to one another without tools. Such a latch connection particularly provides the advantage that erroneous installation can be prevented and a particularly safe or reliable connection is made possible.
Advantageous developments of the connection unit according to the invention for a wiper motor for windshield wiper systems are indicated in the dependent claims. All combinations of features disclosed in the claims, the description and the figures are in the scope of the invention.
A particularly preferred structural configuration of the connection unit provides that the plug connector element is connected directly to the carrier element together with the electric connection lines.
In order to connect the carrier element to the carbon brush holder plate not only in a mechanical manner via the latch connection, but also establish an electric connection, it is further provided that electric connection elements each interacting with one another are formed or provided on the carrier element and the carbon brush holder plate.
Here, it is particularly advantageous if the electric connection elements are arranged outside the area of the latch connection, since a better accessibility to the connection elements is made possible thereby, particularly if these are connected to one another by means of a device.
The electric connection elements particularly comprise a plate-shaped contact section, wherein the contact sections of the electric connection elements can be connected to one another in parallel alignment. The connection between the contact sections can be effected by means of a solder, a crimp, a plug or a weld connection, or by a spring-loaded abutment contact.
For the formation of the latch connection between the carbon brush holder plate and the carrier element, it is provided that at least one latch protrusion or a latch opening is formed on the carbon brush holder plate, which interacts with at least one latch opening or one latch protrusion on the carrier element.
Furthermore, in a structurally preferred embodiment, it is provided that the carbon brush holder plate comprises a plate-shaped carrier area with a through-opening for a drive shaft of the electric motor, and that the plane of the carrier element and of the carrier area are arranged perpendicular to one another. This predominantly achieves an advantageous mounting process of the pre-mountable unit in conjunction with a drawer-shaped insertion opening for the connection unit, since the construction unit can be connected to the gearbox by a linear movement then, wherein the carbon brush holder plate is positioned in relation to the anchor shaft at the same time.
The invention also includes a wiper motor for windshield wiper systems, wherein the wiper motor comprises an electric motor having a drive shaft, wherein the drive shaft interacts with a gear wheel inside a gearbox, and wherein the wiper motor comprises an above-described connection unit.
Furthermore, it is particularly preferred if a latch connection is formed between the gearbox and the connection unit in the mounting position. This enables mounting the connection unit in the gearbox without tools.
Further advantages, features and details of the invention result from the following description of preferred exemplary embodiments as well as by means of the drawing.
The drawing shows in:
Like elements or elements having the same function are indicated with like reference numerals throughout the drawings.
The wiper motor 100 comprises a brush-type (electric) motor 1, which has a pot-shaped motor housing 2 made of sheet metal produced as a separate component in a deep-drawing process. An anchor 3 is rotatably supported within the motor housing 2, the anchor shaft 4 acting as a drive shaft thereof protruding with a toothing section 5 into a gearbox 10 preferably consisting of a metal (aluminum) and produced in a pressure die casting method, wherein in a reception space of the gearbox 10, the toothing section 5 intermeshes with a counter toothing 11 of a gear wheel 15 rotatably supported in an axis 13 in the gearbox 10. The gear wheel 15 is at least indirectly coupled to a drive shaft 19 via a lever mechanism 17, and a wiper arm having the above-mentioned wiper blade can be fixed to the drive shaft (not shown).
Furthermore, as can particularly be seen in conjunction with
In the illustrated exemplary embodiment, the plug connector element 22, which consists of a plastic material just like the carrier element 26, is formed as an integral (monolithic) component in such a way that the electric connection lines 24 are directly connected to the plug connector element 22 and the carrier element 26 or are at least sectionally enclosed or cast-around by the material of the plug connector element 22 and the carrier element 26.
It may also be provided that the plug connector element 22 and the carrier element 26 are formed as separate components, which are connected to one another for example via a latch connection, a screw connection or another suitable connection.
The connection unit 20 is connected to a carbon brush holder plate 30 in such a way that the carbon brush holder plate 30 and the connection plate 20 form a pre-mountable construction unit 32. To that end, a latch connection 34 is formed between the carrier element 26 and the carbon brush holder plate 30. The latch connection 34 comprises latch trunnions 36 formed on the carbon brush holder plate 30, which interact with corresponding latch openings 38 in the region of the carrier element 26 in order to form the latch connection 34 when fitting the latch trunnions 36 into the latch openings 38. Furthermore, electric connection elements 40 are provided in the area of the carrier element 26 outside the area of the latch connection 34, which are approximately shaped in the type of plates and which are at least indirectly electrically connected to the electric connection lines 24. The electric connection elements 40 interact with the electric connection elements 42 arranged in the carbon brush holder plate 30, which get into an electrically conductive contact to the electric connection elements 40 when forming the latch connection 34, for example. Here, it may be provided that the electric connection elements 40, 42 are elastically pre-bent in order to rest against one another subjected to a spring force when forming the latch connection 34.
However, it may also be possible or provided to form the connection between the connection elements 40, 42 by means of a solder, crimp or weld connection, or by any other connection technique.
The electric connection elements 42 in the carbon brush holder plate 30 serve for the electric contacting of the commutator 6 of the electric motor 1 discernable in
The carbon brush holder plate 30 comprises a plate-shaped carrier region 41 with a through-opening 43 for guiding through the anchor shaft 4, wherein, if the construction unit 32 is mounted, the planes of the carrier region 41 and of the plate-shaped carrier element 26 are arranged perpendicular to one another.
Furthermore, the carrier element 26 comprises lead frame elements 44 integrally formed with the connection lines 24 on a side 28, the end sections of which are partially formed in the type of contact sections 46 (
In order to close the reception space of the gearbox 10 after installation of the required components, the gearbox 10 further comprises a gear cover 59, which can be connected to the gearbox 10 by means of fastenings screws 62 (
As can be discerned in particular in conjunction with
The connection unit 20 in the mounted state is arranged inside the gearbox 10 in such a way that the contacts 63, in particular the abutment regions 65, are arranged at least at a partial overlap with the gear wheel 15. To that end, the gearbox 10 comprises a reception 69 with an insertion opening 71, which interacts with the connection unit 20 in the type of a drawer. As can particularly be discerned in
When mounting the wiper motor 100, the construction unit 32 pre-mounted from the connection unit 20 and the carbon brush holder plate 30 is inserted in the reception 69 of the gearbox 10 together with the connection unit 20 all the way until the latch connection 80 is achieved. Subsequently, for example the electric motor 10 with its motor housing 2 can be connected to the gearbox 10 by means of the fastening screws 7 discernable in
The above-described wiper motor 100 or the connection unit 20, 20a can be modified or changed in various ways and manners without departing from the principles if the invention.
Number | Date | Country | Kind |
---|---|---|---|
10 2015 122 095.4 | Dec 2015 | DE | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2016/080881 | 12/14/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2017/102781 | 6/22/2017 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5979256 | Kilker | Nov 1999 | A |
7109617 | Mizutani et al. | Sep 2006 | B2 |
20040066111 | Torii | Apr 2004 | A1 |
20050264127 | Benkert | Dec 2005 | A1 |
20070278873 | Macaire | Dec 2007 | A1 |
20090134743 | Hornung et al. | May 2009 | A1 |
20120000303 | Stefani | Jan 2012 | A1 |
20120025643 | Shibusawa | Feb 2012 | A1 |
20130093267 | Hartmann | Apr 2013 | A1 |
Number | Date | Country |
---|---|---|
1774853 | May 2006 | CN |
103946071 | Jul 2014 | CN |
103986003 | Aug 2014 | CN |
105052017 | Nov 2015 | CN |
10331238 | Feb 2005 | DE |
102005020790 | Nov 2006 | DE |
10 2005 047428 | Apr 2007 | DE |
10 2010 056464 | Jul 2012 | DE |
0603083 | Jun 1994 | EP |
2 821 214 | Aug 2002 | FR |
2001251808 | Sep 2001 | JP |
2007-006549 | Jan 2007 | JP |
2009100593 | May 2009 | JP |
10-2006-0120330 | Nov 2006 | KR |
Entry |
---|
First Office Action in corresponding Chinese Application No. 201680074119.0, dated Jun. 28, 2019 (14 pages). |
International Search Report issued in PCT/EP2016/080881 dated Mar. 15, 2017 (2 pages). |
Written Opinion of the International Searching Authority issued in PCT/EP2016/080881 dated Mar. 15, 2017 (6 pages). |
Notification of Reason for Rejection in corresponding Japanese Application No. 2018-531650, dated Jan. 5, 2021 (7 pages). |
Number | Date | Country | |
---|---|---|---|
20180375401 A1 | Dec 2018 | US |