The invention relates to an element, preferably a closure element for inserting into a bore in a component.
Such closure or fastening elements for inserting into a bore, for example, in an engine, with a sleeve-shaped base body that can be inserted into the bore and with a splaying body that can be braced in the bore are known. Closure elements of this type are inserted, in particular as mass-produced items, into bores with different diameters and internal pressures for the purpose of sealing. Depending on the size of the bore and the strength of the effective internal pressure very different embodiments are produced, as disclosed for example in U.S. Pat. No. 6,708,978 B2. The closures described here are in the form of one-part closure discs. They are therefore easier to produce technically than multi-part closures, as described for example in publication WO 2009/000317 A1.
Proceeding from these known elements, the object forming the basis of the invention is to devise an element which can easily perform at least one additional function of measurement, data transfer, analysis and/or the like.
According to the invention, this object is achieved in that at least one electric element which is arranged in or on the element is provided, the respective electric element transmitting and/or receiving electric signals.
With this element according to the invention, in addition to the actual sealing and/or fastening function, one or more measurements etc. of the medium in the component and/or of the component can be undertaken without the fitting or the reliable long-term sealing of the element being impaired.
In one very advantageous embodiment the electric element is integrated into the splaying body of the element, the splaying body being able to be pressed into a sleeve-shaped base body that can be inserted into the bore.
Very advantageously, the electric element has a housing which is held with form fit in the splaying or in the base body or in the bore.
Depending on the application, the electric element is a sensor, an actuator, a transducer, a chip, a measuring converter or the like, it being provided with at least one line connection and/or transmitting and receiving radio signals. Ideally, the electric element is in the form of an autonomous element.
In comparison to today's most widely used installation techniques for sensors which are screwed or plugged in, the advantage of the fastening element according to the invention is that the element guarantees a permanently sealed seat and so increases reliability and protection against mechanical, climatic or chemical stresses. The combination of the closure and the sensor element is also more advantageous in relation to size, weight and cost.
Exemplary embodiments of the invention and further advantages of the latter are described in more detail below by means of drawings. These show:
The element 10 is made in one piece and is made up of a sleeve-shaped base body 15 that can be inserted into the bore 12 and the outer circumference of which in the installed state lies tight against the inner surface of the bore 12 and of a splaying body 16 that can brace this base body 15 in the bore 12. The base body 15 with a supporting flange 17 lying against the component 11 is connected to the splaying body 16 by a bent cross-over region 18 in the end projecting into the bore.
According to the invention an electric element 20 disposed in the splaying body 16 is provided which transmits and/or receives electric signals, two electric connections 21, 22 for this being indicated, which can be connected to an evaluating device or the like, not detailed, from outside of the component 11. The electric element 20 has a housing 20′ which is held, preferably with form fit, in the interior of the hat-shaped splaying body 16.
As illustrated diagrammatically in
Needless to say, this electric element 20, illustrated diagrammatically here, can also be made in the form of a plate or in some other form, and its electric connections 21, 22 can be provided in different numbers or arranged differently than shown.
Depending on the application, a sensor, an actuator, a transducer, a chip, a measuring converter or the like can be used for the electric element 20. For example, the pressure and/or the temperature of the medium in an engine block as a component 11 can be determined permanently or by controlled retrieval.
The electric element 20 in the splaying body 16 has an outer diameter such that the latter corresponds approximately to the inner diameter of the splaying body 16 in the fitted state. In the non-installed state there is formed in the wall 16′ of the splaying body 16 a cross-over 16″ which divides the wall 16′ into an outside and an inside section. The outer diameter of the outside section is larger here than the outer diameter of the inside section, and in particular is also slightly larger than the graduated inner diameter of the sleeve-shaped base body 15 in which a reduction in diameter taking place towards the bore 12 is provided. It is thus made possible for the splaying body 16 to produce a permanent contact force against the base body 15 that acts radially outwards when being pushed in and in the fitted state.
Furthermore, upon pushing in plastic deformation takes place in the annular cross-over region 18 between the splaying and the base body, whereby this bulge-like cross-over region 18 is displaced into the bore.
According to the invention an electric element 20 is integrated into this splaying body in the same way as in the element 10.
Two sleeve-like arms 36′, 36″, that in the unfitted state, as illustrated in
These elements 10, 30 described above are described in detail in patent application PCT/EP2011/004225 and reference is therefore made to this application.
An element 50 according to
According to the invention this element 50 is characterised in that, unlike the exemplary embodiments according to
As one feature, provision is also made such that the electric element 20 performs a sealing function for this closure element 50 because both the splaying and the base body are made in the form of a sleeve. One is thus offered the advantage that the electric connections 21, 22 of the electric element 20 are freely accessible from the outside. In principle, the splaying body 56 could however also be closed at the top.
An element 70 according to
Within the framework of the invention an electric element 90, also shown diagrammatically, is disposed in an opening 86′ of the splaying body 86. This opening 86′ in the splaying body 86 for receiving the electric element is of such a length that the opening 86′ extends through the predetermined breaking point 87 and so, after the shearing off, a continuous opening is produced in the splaying body 86 by means of which the electric element 90 inserted tightly in the splaying body 86 is adjacent to the chamber formed in the bore 12 towards the inside and has electric connections 91, 92 leading away towards the outside.
According to the invention an electric element 95 is disposed in an opening 96′ of the closure disc 96, which electric element 95 is in turn shown diagrammatically. This opening 96′ for receiving the electric element is of such a length that it extends through the predetermined breaking point 97 and so, after the shearing off, a continuous opening is produced in the closure disc 96 by means of which the electric element 95 inserted tightly into the latter is adjacent to the chamber formed in the bore 12 towards the inside and has electric connections leading away to the outside.
This closure element 100 described above is the subject matter of patent application PCT/EP2011/000663 and so reference is made to this application.
The invention is sufficiently demonstrated by the exemplary embodiments described above. However, it could also be disclosed by other versions. Thus, two or even more such electric elements could be integrated into a closure element, for example by the one electric element being integrated into the base or splaying body and the second being positioned beneath the base body, this second electric element also being able to be annular in form. The other element disposed above the latter could be cylindrical or of a similar form so that there would also be a connection to the inside of the engine etc. in order to measure e.g. with one the temperature and with the other the pressure of the medium in the chamber.
Furthermore, in the fitted state the electric element could not be directly adjacent to the chamber formed in the bore, but could for example project into the bore or into the interior of the component by means of a line with a sensor or the like.
Moreover, within the framework of the invention there is a further advantage in that the electric element can be replaced if it is defective or is to be replaced by a different one. Thus, for example, the element 10, 30 according to
Generally, the bore 12, the respective element and so also the electric element is formed with a round cross-section. Theoretically however, a rectangular or polygonal cross-section could also be provided in these elements.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2012/000443 | 2/1/2012 | WO | 00 | 9/19/2014 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2013/113327 | 8/8/2013 | WO | A |
Number | Name | Date | Kind |
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3448611 | Lebourg | Jun 1969 | A |
6708978 | Kagi | Mar 2004 | B2 |
20020135359 | Steinich | Sep 2002 | A1 |
20030151204 | Kagi | Aug 2003 | A1 |
20040084099 | Miura | May 2004 | A1 |
20080314468 | Houghton | Dec 2008 | A1 |
20130312859 | Seiffert et al. | Nov 2013 | A1 |
20130327769 | Wust et al. | Dec 2013 | A1 |
Number | Date | Country |
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2843635 | Feb 2013 | CA |
102006003047 | Jul 2007 | DE |
2009000317 | Dec 2008 | WO |
2009000559 | Dec 2008 | WO |
2013113327 | Aug 2013 | WO |
Entry |
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Abstract of DE 102006003047. |
Number | Date | Country | |
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20150000431 A1 | Jan 2015 | US |