INTERNALLY COOLED POPPET VALVE FOR INTERNAL COMBUSTION ENGINE
20200056516 ยท 2020-02-20
Inventors
- Andre Mareau (Strasbourg, FR)
- Stefan Kellermann (Barsinghausen, DE)
- Antonius Wolking (Barsinghausen, DE)
- Oliver Schulze (Donaueschingen, DE)
- Andreas Heinek (Bannewitz, DE)
- Guido Bayard (Dortmund, DE)
- Daniel Eisenring (Blumberg, DE)
Cpc classification
F01L3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K49/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K49/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A poppet valve (2) with a valve body (4) has a cavity (6), a coolant inlet port (8). A coolant outlet port (10). The coolant inlet port (8) and the coolant outlet port (10) are arranged on a valve stem (12) of the poppet valve (2). The cavity (6) extends into the valve stem (12) of the poppet valve (2) and into a valve head (14) of the poppet valve (2), wherein there is provided a coolant conducting element (16) within the cavity (6) and extending into the cavity (6) from the valve head (14) to the valve stem (12), where the coolant conducting element (16) in each case has a cross-section. The coolant conducting element (16) includes a pipe section (18) and a funnel section (20), and the coolant conducting element (16) extends concentrically to the poppet valve (2) in the cavity (6) of the poppet valve (2).
Claims
1. A poppet valve with a valve body which has a cavity, a coolant inlet port, and a coolant outlet port; Wherein the coolant inlet port and the coolant outlet port are arranged on a valve stem of the poppet valve, Wherein a coolant conducting element is arranged within the cavity and extending into the cavity from the valve head to the valve stem, where the coolant conducting element in each case has a circular cross-section, wherein the coolant conducting element includes a pipe section and a funnel section, Wherein the coolant conducing element extends concentrically to the poppet valve in the cavity of the poppet valve, wherein the valve body, is assembled by a two valve half-shells sealed together along their contact surface.
2. The poppet valve according to claim 1, wherein the coolant conducting element has a recesses on the funnel section or on an edge of the funnel section, which form coolant channels.
3. The poppet valve according to claim 1, wherein the cavity in the valve body has a structure which forms coolant channels around an outer edge of the funnel section.
4. The poppet valve according to claim 1, wherein the valve body has at least one layer at ta valve stem end.
5. The poppet valve according to claim 1, wherein a coolant outlet port is arranged axially on a valve stem end.
6. The poppet valve according to claim 1, wherein the coolant conducting element has a further funnel section at a valve stem-side end.
7. The poppet valve according to claim 1, wherein an axial distance between the coolant inlet port and the coolant outlet port is greater than a valve lift of the installed valve.
8. A cylinder head having at least one poppet valve according to claim 1, including further coolant pipes connected to the coolant inlet port and the coolant outlet port of the at least, one valve.
9. An engine with a cylinder head according to claim 8, wherein the coolant pipes are part of a cooling circuit which further includes at least one coolant pump.
Description
[0016] In the following, the present invention is illustrated based on schematic, non-dimensional figures. In the following, all figures are shown as sectional views.
[0017]
[0018]
[0019]
[0020]
[0021] Both the description and figures use the same or similar reference numerals to refer to identical or similar elements or components.
[0022]
[0023]
[0024] The coolant conducting element 16 is only connected here to the valve stem end 26. The coolant conducting element 16 includes a pipe section 18 and a funnel section 20, which direct the coolant flow to the edge of the poppet valve of the valve head 14. According to this structure, the cooling of the valve head 14 can be improved. Furthermore, the cooling capacity can be considerably increased by means of a flowing coolant.
[0025]
[0026]
[0027] In
[0028] The following
[0029] In
[0030]
[0031] In
[0032] In
[0033] The previous representations have merely shown the desired end product but have not shown how it can be produced.
[0034]
[0035]
[0036]
[0037]
[0038] In
[0039]
[0040] In
[0041]
[0042]
[0043]
[0044]
[0045] The three elements of
[0046] It should be clear that various aspects of the present invention have been described in terms of individual embodiments in order to avoid unnecessary repetitions and redundant representations of the same or very similar situations. It is emphasised here that all components and aspects, in particular the design of the valve stem end and the fastening of the coolant conducting element at this stage along with other aspects of the shaping of the funnel sections, the cooling channels or the recesses, should be regarded as disclosed
REFERENCE LIST
[0047] 2 Poppet valve [0048] 4 Valve body [0049] 6 Cavity [0050] 8 Coolant inlet port [0051] 10 Coolant outlet port [0052] 12 Valve stem [0053] 14 Valve head [0054] 16 Coolant conducting element [0055] 18 Pipe section [0056] 20 Funnel section [0057] 22 Recesses, which form coolant channels. [0058] 24 Structure, which forms coolant channels around an outer edge of the funnel section [0059] 26 Layer in the valve stem [0060] 28 Valve stem end [0061] 30 further funnel section [0062] 32 Valve body with open valve base [0063] 34 Valve cover [0064] 36 Valve or valve half-shells [0065] 38 Conventional internally cooled valve [0066] 40 Sodium coolant [0067] A axial distance between the coolant inlet port and coolant outlet port.