Engine block and engine having an engine block
10550741 ยท 2020-02-04
Assignee
Inventors
Cpc classification
F01M2011/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01M1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An engine block with an oil path switching arrangement is proposed. The engine block includes an oil sump, an oil pump, a clean oil riser and a switching valve. The switching valve has in each case connections for the oil sump, the oil pump and the clean oil riser. The switching valve is switchable to open and close the connections, including a first position in which a connection between the clean oil riser and the oil sump is established, thereby avoiding discharge of oil in the clean oil riser through an oil filter receptacle during an oil change.
Claims
1. An engine block, comprising: an oil pan; an oil pump; a clean oil riser; and a switching valve, wherein the switching valve includes an oil pan port, an oil pump port, and a clean oil riser port, the switching valve has a first position in which a connection is established between the clean oil riser port and the oil pan port, and the switching valve has a second position in which a connection is established between the clean oil riser port and the oil pump port.
2. The engine block as claimed in claim 1, wherein the switching valve is a 3-way valve.
3. The engine block as claimed in claim 1, wherein the switching valve has a third position in which a connection is established between the oil pump port and the oil pan port.
4. The engine block as claimed in claim 3, wherein the switching valve has a fourth position in which the clean oil riser port and the oil pump port are closed.
5. The engine block as claimed in claim 4, further comprising: a control system configured to control the opening and closing of the switching valve ports in accordance with predetermined engine operating conditions.
6. The engine block as claimed in claim 1, further comprising: a control system configured to control the opening and closing of the switching valve ports in accordance with predetermined engine operating conditions.
7. The engine as claimed in claim 5, wherein the control system is configured such that the switching valve is switchable into the first position only when the engine is not being operated.
8. The engine as claimed in claim 6, wherein the control system is configured such that the switching valve is switchable into the first position only when the engine is not being operated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION OF THE DRAWINGS
(4)
(5)
(6) The oil pump 14 sucks up the engine oil 26 from the oil pan 12 and pumps it by means of a raw oil feed line 28 to the oil filter 18, in which the engine oil 26 is processed. The engine oil 26 cleaned by the oil filter 18 is forwarded via the clean oil riser 30 to the crankcase 22, in which it is used for lubricating and cooling the engine block 10 and is then conducted back into the oil pan 12.
(7) The switching valve 20 has a port 32 for the clean oil riser 30, by way of which the switching valve 20 is fluidically connected to the clean oil riser 30, a port 34 for the oil pump 14, by way of which the switching valve 20 is fluidically connected to the oil pump 14, and also a port 36 for the oil pan 12, by way of which the switching valve 20 is fluidically connected to the oil pan 12.
(8)
(9)
(10) When the engine 6 is running, the first position 38 of the switching valve 20 is blocked by the control system 8, in order to prevent damage to the engine 6 on account of an undersupply of the crankcase 22 with engine oil 26.
(11)
(12)
(13)
(14) The delivery capacity of the oil pump 14 can be regulated independently of the rotational speed of the engine 6 by way of controlling the pressure in the second, third and fourth position 40, 42, 44 of the switching valve 20.
(15) For an engine oil service, the engine oil 26 in the engine 6 is drained and the filter device (not shown) in the oil filter 18 is changed or cleaned.
(16) The oil filter 18 consists of an oil filter housing 46 and an oil filter cover 48 (see
(17) During the engine oil service, firstly the engine 6 is switched off. When the engine block 10 is stationary, the engine oil 26 flows out of the crankcase 22 into the oil pan 12, where it accumulates, since the oil pump 14 does not repump any further engine oil 26.
(18) In this process, some of the engine oil 26 remains in the clean oil riser 30 on account of the geometry of the engine block 10 and gravity. In order to drain said engine oil 26 in the clean oil riser 30 into the oil pan 12, the switching valve 20 is then moved into the first position 38, and thus a connection from the clean oil riser 30 to the oil pan 12 is created, via which the engine oil 26 can flow out.
(19) The venting of the clean oil riser 30 additionally has the advantage that the engine oil 26 in the raw oil feed line 28 can flow out more rapidly via the oil pump 14 into the oil pan 12, since no pressure which counteracts the flowing away of the engine oil 26 can thus build up in the raw oil feed line 28.
(20) If the oil filter cover 48 is then removed from the oil filter housing 46 in order to clean the oil filter 18, essentially no engine oil 26 which can run out of the oil filter 18 when the latter is opened and can soil the surroundings of the engine block 10 is present there any longer.
(21) The engine oil 26 which has flowed away into the oil pan 12 is drained from the engine 6 by opening a closure element 50 in the oil pan 12, such as for example a screw, and can then be disposed of in a professional manner.
(22) The above-described structure and the mode of operation of the engine 6 and also of the engine block 10 is not limited to engines 6 and engine blocks 10 for vehicles 4, but instead can be provided for any desired engines 6 and engine blocks 10.
(23) The foregoing disclosure has been set forth merely to illustrate the invention and is not intended to be limiting. Since modifications of the disclosed embodiments incorporating the spirit and substance of the invention may occur to persons skilled in the art, the invention should be construed to include everything within the scope of the appended claims and equivalents thereof.