This application claims priority to Swiss Application No. 166/04 filed Oct. 6, 2004 and International Application Serial No. PCT/CH2005/000580 filed Oct. 5, 2005.
The invention relates to a spark plug having an optical window for sensing combustion processes in an Otto engine wherein the optical window is located in the central electrode of the spark plug.
To examine knocking during combustion in an Otto engine optical sensors are employed for example. They measure the brightness within the combustion chamber and thus provide a clue with respect to the time sequence of the events during combustion. For this purpose, optical sensors are for example arranged in spark plugs. However, these have a tendency to accumulate dirt after a short time for which reason optical sensors are sometimes mounted in the central electrode of sensors. During ignition the surfaces are subject to high temperatures whereby they are cleaned because the soot accumulated thereon is burned by the heat.
Spark plugs of the type mentioned in the beginning are known. DE 3001711 by Robert Bosch GmbH details various embodiments wherein for example a sapphire rod is used or a bundle of optical fibers. A disadvantage of these arrangements is that the sapphire rod has a very narrow opening angle and that in addition the optical fiber bundle cannot be assigned to the exact positions.
It has to be pointed out that for the examining of knocking a large surface area around the spark plug must be analyzed.
It is an object of the present invention to provide a spark plug having an optical sensor which can sense the light emission over a large area around the spark plug and optionally enables direction-dependent analysis.
This object has been achieved by the fact that the optical window has at least one lens exposed to the combustion chamber as well as at least one flexible optical fiber which can conduct light from the lens through the spark plug to an analysis system.
In the following the invention will be explained in more detail with respect to the drawings. The Figures show
Similar designations in the Figures refer to the same explanations.
The advantage is, however, that series spark plugs can be used since these are much more cost-effective in preparation than special purpose fabrications.
The central electrode 2 has the shape of a tube and therefore has an inner opening. This opening has, at its end facing the combustion chamber 10, a lens 5.
The axis of the lens 5 always extends in the direction of the spark plug axis.
In
A preferred embodiment of the lens 5 is shown in
In addition, another optical fiber 6′ can be arranged adjacent to the lens centrally at the inner surface thereof. Advantageously, the inner surface of the lens 5 is embodied with a concave shape.
This double lens system consists of at least one essentially piano-concave lens 5″ and a double-concave lens 5′ wherein the planar face of the plano-concave lens 5″ is exposed to the combustion chamber. The central optical fiber 6′ is directly contiguous with the double-concave lens 5′. The lenses can be embodied in a way that a coverage angle of the double lens system 5′, 5″ is at least 120°, preferably at least 135°, in particular up to 140°.
This arrangement allows also a detection of light beams L coming from the lateral region of the spark plug.
Preferably, the lenses are manufactured from sapphire or quartz glass.
The lenses as well as the optical fibers are surrounded by a sheath having the function of the central electrode 2. This sheath preferably is made of platinum or gold or an alloy thereof.
Generally, the optical sensor including the lenses and the optical fibers has a diameter of less than 2 mm, mostly between 1.5 and 1.8 mm. The central cavity of the central electrode 2 therefore must have these dimensions.
It is important for the application range that the spark plug can withstand a permanent temperature load of 600° C. and a temporary temperature load of 900° C.
The advantage of this invention is that with this spark plug a measuring system can be provided which on the one hand does not accumulate dirt due to the arrangement of the optical windows in the central electrode 2 while on the other hand measurement data can be acquired separately in distinct regions in a targeted manner which can also be evaluated separately.
In addition, by means of an optical fiber which is arranged centrally light from the whole combustion chamber can be detected.
Number | Date | Country | Kind |
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1662/04 | Oct 2004 | CH | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CH05/00580 | 10/5/2005 | WO | 00 | 1/22/2008 |