PRECHAMBER SPARK PLUG FOR IGNITING A FUEL-AIR MIXTURE IN AN INTERNAL COMBUSTION ENGINE
20170358906 · 2017-12-14
Assignee
Inventors
Cpc classification
H01T13/54
ELECTRICITY
F02B19/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A pre-chamber spark plug for igniting a fuel-air mixture in an internal combustion engine, in particular a gasoline engine, comprises a spark plug body (1) having a pre-chamber housing (2) and a cap (4) which at least partially closes the pre-chamber (3), and further comprises a ground electrode (11) in the spark plug body (1) as well as a central electrode (7) which protrudes into the pre-chamber (3); the ground electrode (11) has an annular shape and, on the inner surface thereof, includes at least one ignition area (17) designed as a cam (16) as well as a radially inward extending protrusion (18) as a baffle (19).
Claims
1-9. (canceled)
10. Pre-chamber spark plug for igniting a fuel-air mixture in an internal combustion engine, the pre-chamber spark plug comprising: a spark plug body having a pre-chamber housing and a cap, the cap being configured to at least partially close the pre-chamber; a ground electrode disposed in the spark plug body; and a center electrode projecting into the pre-chamber, wherein the ground electrode is ring shaped and has, on an inner lateral surface of the ground electrode, at least one igniting surface configured as a cam, and a radially inwards extending protrusion configured as a flow shield.
11. The pre-chamber spark plug of claim 10, wherein the ground electrode is made of nickel or a nickel-based alloy or is coated with nickel or a nickel-based alloy.
12. The pre-chamber spark plug of claim 10, wherein the ground electrode is connected to the pre-chamber housing in either a positive or a non-positive manner.
13. The pre-chamber spark plug of claim 10, wherein a reinforcement made of precious metal is disposed on the cam.
14. The pre-chamber spark plug of claim 13, wherein the reinforcement is designed as a plate, wherein the plate is connected to the cam in either a positive or a non-positive manner.
15. The pre-chamber spark plug of claim 13, wherein the reinforcement is designed as a rivet, wherein the rivet is disposed in a passage of the ground electrode in either a positive or a non-positive manner.
16. The pre-chamber spark plug of claim 10, wherein the projection has an asymmetric geometry.
17. The pre-chamber spark plug of claim 10, wherein the center electrode is made of platinum or iridium.
18. The pre-chamber spark plug of claim 10, wherein the center electrode is designed as at least one strip with curved ends, wherein the surface of each of the curved ends forms an igniting surface.
19. The pre-chamber spark plug of claim 10, wherein the internal combustion engine is a gasoline engine.
20. The pre-chamber spark plug claim 12, wherein the ground electrode is at least one of welded, pressed, shrunk, or screwed into the pre-chamber housing.
21. The pre-chamber spark plug of claim 13, wherein the precious metal is at least one of platinum, iridium, a platinum-based alloy, or an iridium-based alloy.
22. The pre-chamber spark plug of claim 13, wherein the reinforcement is designed as a plate, wherein the plate is welded to the cam in either a positive or a non-positive manner.
23. The pre-chamber spark plug of claim 15, wherein the rivet is pressed or shrunk into the passage.
24. The pre-chamber spark plug of claim 15, wherein the rivet is fixed by means of a spot weld disposed on the outer lateral surface of the ground electrode.
25. The pre-chamber spark plug of claim 16, wherein the asymmetric geometry is a spoiler-like geometry.
26. The pre-chamber spark plug of claim 10, wherein the center electrode is coated with platinum or iridium.
27. The pre-chamber spark plug of claim 18, wherein the at least one strip comprises two cross-shaped strips.
28. The pre-chamber spark plug of claim 18, wherein the at least one strip comprises x-shaped strips.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0019] At this point there are a number of ways to advantageously embody and further develop the teaching of the present invention. For this purpose reference is made, on the one hand, to the claims subordinate to claim 1 and, on the other hand, to the following explanation of some preferred exemplary embodiments of the invention by means of the drawings. In conjunction with the explanation of the preferred exemplary embodiments of the invention by means of the drawings, generally preferred embodiments and further developments of the teaching are also explained. In the drawings
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DETAILED DESRIPTION OF VARIOUS EMBODIMENTS
[0029]
[0030] The pre-chamber spark plug has a center electrode 7 inside the pre-chamber 3. This center electrode is designed in the form of a strip 8 with ends 9 that are curved in an arc shape. In the exemplary embodiment depicted herein, the strip 8 has two ends 9, each acting as an igniting surface 10. In this case the strip 8 is made of an iridium alloy or a platinum alloy.
[0031] Furthermore, a ring-shaped ground electrode 11 is fixed to the pre-chamber housing 2 by means of a weld seam 12. The ground electrode 11 is made of nickel or a nickel-based alloy. The connection between the ground electrode 11 and the pre-chamber housing 2 can be produced by means of a conventional welding method, such as, for example, a TIG, plasma or laser welding method. As an alternative or in addition, the ground electrode 11 can be screwed or pressed into the pre-chamber housing 2.
[0032] The cap 4 that closes the pre-chamber 3 at least partially is designed so as to be cup shaped and has a circumferential collar 13 in the contact area with the pre-chamber housing 2. For propagation of the flame front, there is an opening 14 on the end of the cap 4 facing away from the electrodes. The cap 4 is fixed on the pre-chamber housing 2 by means of another weld seam 15.
[0033] At this point it should be noted that the reference numerals have been omitted to some extent in
[0034]
[0035] The ground electrode 11 has igniting surfaces 17, designed as four cams 16, on the inner lateral surface. Furthermore, radially inwards extending projections 18 are disposed as a flow shield 19 on the inner lateral surface of the ground electrode 11. In this case it is clear from
[0036]
[0037] In this view it is easy to see the four pairs of igniting surfaces that are formed by the igniting surfaces 10 of the center electrode 7 and the igniting surfaces 17 of the ground electrode 11. Furthermore, the swirl direction of the fuel/air mixture inside the pre-chamber 3 is shown by the arrow 20. Thus, it becomes clear that the projections 18, forming the flow shield 19, are formed, when seen in the swirl direction, upstream of the cam 16. The result is that a targeted reduction in the flow velocity of the fuel/air mixture in the area of the spark formation, i.e., the igniting surfaces 10, 17, is achieved; and, thus, a robust flame kernel formation and a decrease in the multiple breakthroughs during ignition are ensured.
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[0044] With respect to other advantageous embodiments of the inventive device reference is made to the general part of the specification and the appended claims in order to avoid repetition.
[0045] Finally it is explicitly pointed out that the above described exemplary embodiments of the inventive device are used only to explain the claimed teaching, but do not restrict the claimed teaching to the exemplary embodiments.
LIST OF REFERENCE NUMERALS
[0046] 1 spark plug body
[0047] 2 pre-chamber housing
[0048] 3 pre-chamber
[0049] 4 cap
[0050] 5 external thread
[0051] 6 isolator
[0052] 7 center electrode
[0053] 8 strip
[0054] 9 end
[0055] 10 igniting surface (center electrode)
[0056] 11 ground electrode
[0057] 12 weld seam
[0058] 13 collar
[0059] 14 opening
[0060] 15 weld seam
[0061] 16 cam
[0062] 17 igniting surface (ground electrode)
[0063] 18 projection
[0064] 19 flow shield
[0065] 20 swirl direction
[0066] 21 reinforcement
[0067] 22 plate
[0068] 23 rivet
[0069] 24 passage
[0070] 25 spot weld
[0071] 26 center section