INJECTOR SET-UP HAVING A THERMAL PROTECTION SLEEVE
20180328326 ยท 2018-11-15
Inventors
- David Pfefferle (Schwieberdingen, DE)
- Helmut Denz (Stuttgart, DE)
- Werner Haarer (Illingen, DE)
- Christian Steinbrecher (Rossdorf am Forst, DE)
Cpc classification
F02M61/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D19/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M53/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D19/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An injector device includes a liquid injector for injecting a liquid and a thermal protection sleeve. The liquid injector is situated at least partially in the thermal protection sleeve. The thermal protection sleeve includes a base region having an opening. A spray orifice of the liquid injector is situated near the opening. The thermal protection sleeve includes a first casing region positioned on a first diameter and a second casing region connected to the base region and positioned on a second diameter that is less than the first diameter.
Claims
1-14. (canceled)
15. An injector device, including: a thermal protection sleeve that includes a base with an opening in the base, a first casing region connected to the base, and a second casing region; and a liquid injector at least partially situated in the thermal protection sleeve and including a spray orifice that is situated near the opening, wherein the first casing region is at a first radial distance from a central longitudinal axis of the liquid injector and the second casing region is at a second radial distance from the central longitudinal axis of the liquid injector, the second radial distance being greater than the first radial distance.
16. The injector device of claim 15, wherein the second casing region is also connected to the base.
17. The injector device of claim 15, wherein the second casing region includes slots in a direction parallel to the central longitudinal axis.
18. The injector device of claim 15, wherein the second casing region is fixed to the first casing region.
19. The injector device of claim 15, wherein the second casing region is fixed to the first casing region via a welded connection.
20. The injector device of claim 15, wherein the first casing region includes a plurality of first tabs, the second casing region includes a plurality of second tabs, and the first and second tabs being positioned so as to alternate with each other in a circumferential direction.
21. The injector device of claim 15, wherein a space radially separates the first casing region from the liquid injector.
22. The injector device of claim 15, wherein the second casing region provides a force directed radially outwards.
23. The injector device of claim 15, wherein, at an end of the first casing region that is distal from the base, the first casing region includes a shoulder that extends radially outwards.
24. The injector device of claim 23, wherein a least one of a cup spring, a support ring, and a noise-damping ring for acoustic decoupling is situated at the shoulder.
25. The injector device of claim 15, wherein a respective sealing ring is positioned on at least one of an interior of the first casing region and an exterior of the first casing region.
26. The injector device of claim 15, further comprising a gas injector.
27. An internal combustion engine comprising: a gas injector for injection of gaseous fuel; and a liquid fuel injector, wherein the liquid fuel injector includes: a thermal protection sleeve that includes a base with an opening in the base, a first casing region connected to the base, and a second casing region; and a liquid injector at least partially situated in the thermal protection sleeve and including a spray orifice that is situated near the opening, wherein the first casing region is at a first radial distance from a central longitudinal axis of the liquid injector and the second casing region is at a second radial distance from the central longitudinal axis of the liquid injector, the second radial distance being greater than the first radial distance.
28. The internal combustion engine of claim 27, wherein the liquid fuel injector is situated directly at a combustion chamber of the internal combustion engine.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION
[0022] In the following, an injector set-up 1 and an internal combustion engine 100 according to a preferred example embodiment of the present invention is described in detail with reference to
[0023] As is apparent from
[0024] Thermal protection sleeve 3 surrounds a part of liquid injector 2. As is apparent from
[0025] Thermal protection sleeve 3 includes a base region 30, a first casing region 31, and a second casing region 32. A cylindrical opening 33 is provided in base region 30.
[0026] As is apparent from
[0027] In
[0028] As is particularly apparent from
[0029] As is apparent from
[0030] In this case, each of the two casing regions is made up of a plurality of tabs. The two casing regions are formed in one piece with base region 30. As is apparent from
[0031] As is apparent from
[0032] In this instance, thermal protection sleeve 3 is fixed to liquid injector 2 in such a manner, that a first gap 4 is provided between first casing region 31, that is, at first tabs 31a, and the outer circumference of liquid injector 2. A second gap 5 is provided between second casing region 32, that is, second tabs 32a, and the outer circumference of liquid injector 2. Due to the positioning of the first and second tabs on different diameters, first gap 4 is smaller than second gap 5.
[0033] In addition, a third gap 6 is provided between first casing region 31 and a bore 80 in a cylinder head 8. As is apparent from
[0034] Second casing region 32 is now formed in such a manner, that a certain elastic force in radial direction R is present. Thus, for example, when liquid injector 2 is slightly tilted in bore 80, compensation for tolerance can take place with the aid of thermal protection sleeve 3. In particular, this can allow liquid injector 2 to be mounted to a fuel rail.
[0035] Second tabs 32a are wider than first tabs 31a in the circumferential direction of thermal protection sleeve 3. In this manner, heat, which is transferred from combustion chamber 7 to thermal protection sleeve 3, is transferred as completely as possible through second tabs 32a to cylinder head 8. In this context, each of second tabs 32a rests against bore 80.
[0036] By providing first gap 4 and second gap 5, the first and second tabs of first and second casing regions 31, 32 do not rest against the outer circumference of liquid injector 2. Therefore, an unwanted transfer of heat from thermal protection sleeve 3 back to liquid injector 2 is prevented. In this instance, first and second gaps 4, 5 have an insulating effect.
[0037] Since thermal protection sleeve 3 is formed in one piece, it can be fixed to liquid injector 2 in a rapid and simple manner. Opening 33 in base region 30 is formed to be as small as possible, in order to keep a surface of liquid injector 2 pointing towards combustion chamber 7 as small as possible.
[0038] Consequently, improved thermal shielding of the liquid injector is attained during exclusive gas operation via an additional gas injector.
[0039]
[0040] In the second example embodiment, first casing region 31 is formed to be closed in the circumferential direction. First casing region 31 is fixed to the schematically depicted, liquid injector 2 with the aid of a first welded connection 34. In this example embodiment, second casing region 32 is multiply slotted in axial direction X-X, up to free end 37, in order to provide the desired spring action with respect to possible tolerance deviations and tilted mountings of the liquid injector. Second casing region 32 can be made of, for example, a spring steel. Instead of second welded connection 35, second casing region 32 can also be situated in a groove in first casing region 31. Bore 80 is sealed with the aid of a Teflon sealing ring 9. A particular advantage of the second example embodiment is that first casing region 31 is completely closed, which means that hot gases from combustion chamber 7 are not able to get into the annular gap 4 between first casing region 31 and liquid injector 2. It is also noted that instead of the two-piece embodiment having first and second casing regions 31, 32, a one-piece thermal protection sleeve 3 having two casing regions can also be manufactured. To this end, for example, a lathed part having a projecting, second casing region 32 can be manufactured. Subsequently, the slots can be introduced by sawing or lasering or the like.
[0041] Instead of welded connection 34, thermal protection sleeve 3 can also be fixed in position with the aid of a compression ring 12, as depicted on the left half of
[0042]
[0043] As is apparent from
[0044]
[0045] Cup spring 13 exerts a force in axial direction X-X between liquid injector 2 and thermal protection sleeve 3. In this manner, tolerances between a cone 24, which is on the side of the combustion chamber, and in which spray orifices 20 of liquid injector 2 are provided, and a tip 25 of liquid injector 2 projecting into combustion chamber 7, with respect to thermal protection sleeve 3, can be compensated for. In this manner, compensation can even be provided in the case of changes in length.
[0046] Consequently, liquid injector 2 is always pressed against thermal protection sleeve 3 to form a seal.
[0047] Therefore, in an internal combustion engine, which includes both a gas injector and a liquid injector, a thermal loading of the liquid injector, which is very high, in particular, during exclusive gas operation, can be reduced significantly by using the thermal protection sleeve of the present invention. The thermal protection sleeve allows thermal shielding of fluid injector 2, as well as removal of heat transferred from combustion chamber 7 to a cylinder head or the like. In addition, the use of thermal protection sleeve 3 allows a tolerance adjustment to be made, in particular, with regard to an angular tolerance of an installation position of liquid injector 2. Thermal protection sleeve 3 can also compensate for instances of thermal expansion.