The invention relates to a sensor assembly including a carrier plate and a sensor housing that contains at least one sensor element.
In a known sensor assembly, the sensor housing is screwed to the carrier plate via a separate threaded insert connected to the sensor housing. The separate threaded insert disadvantageously requires an additional production step for connecting it to the sensor housing, it requires additional space, and it may fail to provide a secure screwed connection when subjected to temperature variations or vibrations.
It is an object of the present invention to improve a sensor assembly of the kind mentioned in the opening paragraph in such a manner that the screwed connection is secure.
According to the invention, this object can be achieved by a sensor assembly having the features set forth herein. A sensor assembly according to an embodiment of the present invention may comprise a metal carrier plate, a plastic housing, and a sensor element in the housing. A screw passes through a hole in the carrier plate and is screwed into a screwing channel formed in the plastic material of the housing, to connect the housing to the carrier plate.
According to an embodiment of the invention, it has been found that a screwing channel that is defined directly in the plastic housing material of the sensor housing avoids problems which are caused in the known state of the art in which the screwing channel is provided in a separate threaded insert that is connected to the sensor housing. If the screwing channel is defined directly in the housing material, as proposed by an embodiment of the present invention, it is also possible to make use of an elasticity and/or plasticity of the housing material in order to secure the screwed connection. During production of the sensor housing, one production step relating to the connection of the threaded insert with the sensor housing, e.g. placing a threaded insert in an injection molding tool used to produce the sensor housing, is no longer necessary. The screwed connection can be designed to securely connect the sensor housing to the carrier plate even in case of temperature variations or in an environment subjected to vibrations. In other words, the screwed connection can be made resistant to temperature changes and/or vibrations. In addition, less installation space is required in the area of the screwed connection due to the fact that there is no separate threaded insert.
The screwed connection is made even more secure if the screw and/or the sensor housing is/are designed to undergo elastic deformation or plastic deformation under the action of the screwing force exerted along a screwing axis while screwing-in the screw.
If a cavity is provided in the housing between the carrier plate and the screwing channel, it is possible to define a degree of pre-tensioning of the screwed connection, which makes the screwed connection secure. Deformation portions of the housing, such as ribs, that undergo elastic deformation due to the screwing force, have proved to be particularly suitable for achieving a pre-tensioning that secures the screwed connection. Said deformation portions can be provided in the form of appropriate weak portions of the housing structure. Such weak portions can also be provided in the form of recesses in the sensor housing, in particular recesses made in the edge thereof.
A carrier plate that is able to undergo elastic deformation due to the screwing force, provides the same advantages.
Below, exemplary embodiments of the invention will be explained in more detail with reference to the drawings, in which:
Deformation portions of the sensor housing 3, which delimit the cavity 9, are designed in such a manner that they will undergo elastic deformation under the action of a screwing force acting along the screwing axis 8. In the sensor housing 3 shown in
In the embodiment shown in
When the screw 5 is tightened, the carrier plate 2 has moved towards the cavity wall 14 in an annular region adjacent to the screwing body 10. However, even when the screw 5 is tightened, the cavity wall 14 and the carrier plate 2 do not make contact with each other, i.e. there will still be a distance between them.
Number | Date | Country | Kind |
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10 2011 009 156 | Jan 2011 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/DE2012/000040 | 1/18/2012 | WO | 00 | 8/9/2013 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2012/097800 | 7/26/2012 | WO | A |
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Entry |
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International Search Report of the International Searching Authority for International Application PCT/DE2012/000040, mailed Jul. 18, 2012, 3 pages, European Patent Office, HV Rijswijk, Netherlands. |
PCT International Preliminary Report on Patentability including English Translation of PCT Written Opinion of the International Searching Authority for International Application PCT/DE2012/000040, issued Jul. 23, 2013, 7 pages, International Bureau of WIPO, Geneva, Switzerland. |
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Number | Date | Country | |
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20130312514 A1 | Nov 2013 | US |