GENERATOR SET
20190032554 ยท 2019-01-31
Inventors
Cpc classification
F02B69/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B2275/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B75/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B63/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B2075/1808
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B75/225
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02B75/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a generator set, in particular a generator set of a hybrid vehicle, with a two-cylinder piston engine (1), which has a crankshaft housing (10), in which two counter-rotating crankshafts (11, 12) are arranged, which are connected by means of piston rods (13) to pistons (18, 19), which are guided inside two cylinders (21, 22) in a tandem arrangement, wherein at least one crankshaft (11, 12) is drivingly connected to a generator (41, 42), and wherein the piston engine (1) comprises a cylinder head (20), which is connected to the crankshaft housing (10), wherein the piston engine (1) has a lower-mounted camshaft (30), and the cylinder head (20) can be connected to the crankshaft housing (10) in at least two positions, in particular positions rotated through 180 relative to each other. Furthermore, the invention relates to a vehicle with such a generator set.
Claims
1-11. (canceled)
12. A hybrid vehicle generator apparatus comprising: a two-cylinder piston engine having a crankshaft housing; two counter-rotating crankshafts configured and arranged in the crankshaft housing, the crankshafts connected by piston rods to pistons guided inside the two cylinders of the piston engine in a tandem arrangement, wherein at least one crankshaft is drivingly connected to a generator, and wherein the piston engine has a cylinder head connected to the crankshaft housing; and a lower-mounted camshaft such that the cylinder head is connectable to the crankshaft housing in one of at least two positions having 180 relative rotation to each other.
13. The hybrid vehicle generator apparatus of claim 12, wherein the camshaft is configured and arranged in a central plane between the crankshafts.
14. The hybrid vehicle generator apparatus of claim 12, wherein the camshaft is configured and arranged below a dead center bottom of the pistons.
15. The hybrid vehicle generator apparatus of claim 12 further comprising: an intake stub pipe included in the cylinder head for an ignition mixture; and an outlet stub pipe for exhaust gases, wherein the intake stub pipe and the outlet stub pipe are configured and arranged on different faces of the cylinder head.
16. The hybrid vehicle generator apparatus of claim 12, wherein the camshaft is drivingly connected to one of the crankshafts via one of a belt drive and a chain drive.
17. The hybrid vehicle generator apparatus of claim 12, wherein the camshaft has at least one cam coupled to one or more control rods operatively connected to a rocker arm of a valve in the cylinder head.
18. The hybrid vehicle generator apparatus of claim 16, wherein the camshaft includes at least four cams each of which is coupled to the one or more control rods.
19. The hybrid vehicle generator apparatus of claim 17, wherein the one or more control rods is configured and arranged between the two cylinders.
20. The hybrid vehicle generator apparatus of claim 12, wherein the crankshafts each carry a toothed spur gear, and wherein the spur gears of the two crankshafts intermesh such that the crankshafts couple in phase with each other.
21. The hybrid vehicle generator apparatus of claim 12, wherein each crankshaft carries a flywheel having a balance mass, and wherein at least one flywheel has circumferential marking in order to detect a crankshaft position using a crankshaft sensor.
22. A hybrid vehicle generator apparatus comprising: a two-cylinder piston engine having a crankshaft housing; two counter-rotating crankshafts configured and arranged in the crankshaft housing, the crankshafts connected by piston rods to pistons guided inside the two cylinders of the piston engine in a tandem arrangement, wherein at least one crankshaft is drivingly connected to a generator, and wherein the piston engine has a cylinder head connected to the crankshaft housing; and a lower-mounted camshaft such that the cylinder head is connectable to the crankshaft housing in one of at least two positions having 180 relative rotation to each other, wherein the camshaft is configured and arranged in a central plane between the crankshafts.
23. The hybrid vehicle generator apparatus of claim 22, wherein the camshaft is configured and arranged below a dead center bottom of the pistons.
24. The hybrid vehicle generator apparatus of claim 22 further comprising: an intake stub pipe included in the cylinder head for an ignition mixture; and an outlet stub pipe for exhaust gases, wherein the intake stub pipe and the outlet stub pipe are configured and arranged on different faces of the cylinder head.
25. The hybrid vehicle generator apparatus of claim 22, wherein the camshaft is drivingly connected to one of the crankshafts via one of a belt drive and a chain drive.
26. The hybrid vehicle generator apparatus of claim 22, wherein the camshaft has at least one cam coupled to one or more control rods operatively connected to a rocker arm of a valve in the cylinder head.
27. The hybrid vehicle generator apparatus of claim 26, wherein the camshaft includes at least four cams each of which is coupled to the one or more control rods.
28. The hybrid vehicle generator apparatus of claim 27, wherein the one or more control rods is configured and arranged between the two cylinders.
29. The hybrid vehicle generator apparatus of claim 22, wherein the crankshafts each carry a toothed spur gear, and wherein the spur gears of the two crankshafts intermesh such that the crankshafts couple in phase with each other.
30. The hybrid vehicle generator apparatus of claim 22, wherein each crankshaft carries a flywheel having a balance mass, and wherein at least one flywheel has circumferential marking in order to detect a crankshaft position using a crankshaft sensor.
31. A hybrid motor vehicle comprising: a two-cylinder piston engine having a crankshaft housing; two counter-rotating crankshafts configured and arranged in the crankshaft housing, the crankshafts connected by piston rods to pistons guided inside the two cylinders of the piston engine in a tandem arrangement, wherein at least one crankshaft is drivingly connected to a generator, and wherein the piston engine has a cylinder head connected to the crankshaft housing; and a lower-mounted camshaft such that the cylinder head is connectable to the crankshaft housing in one of at least two positions having 180 relative rotation to each other.
Description
[0018] A further aspect of the invention relates to a vehicle, in particular a single-track or a multi-track hybrid motor vehicle, with a generator set as described above. In the vehicle the generator set is preferably arranged in the engine compartment on a bulkhead, wherein the bulkhead separates a passenger compartment from the engine compartment. It is advantageous that the generator set can be installed in two different orientations in the engine compartment, as a result of which the generator set is universally suitable for a multiplicity of vehicle shapes. In what follows the invention will be explained in more detail with the aid of an embodiment, with reference to the attached schematic drawings, in which
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027] The attached figures show in overall terms a generator set, in particular a generator set of a hybrid vehicle, which has a two-cylinder piston engine 1. The two-cylinder piston engine is mechanically coupled with generators 41, 42. The generators 41, 42 generate power, which is used, for example, to charge a drive battery.
[0028] The two-cylinder piston engine 1 comprises a crankshaft housing 10, in which are arranged a first crankshaft 11 and a second crankshaft 12. The first crankshaft 11 and the second crankshaft 12 are respectively connected via piston rods 13 to a first piston 18 and a second piston 19. The pistons 18, 19 are guided inside two cylinders 21, 22 in a tandem arrangement. The cylinders 21, 22 are arranged in a cylinder head 20. The cylinder head 20 furthermore has two intake stub pipes 23 and one outlet stub pipe 24. Combustion air can be sucked in via the intake stub pipes and fed into the cylinders 21, 22. Exhaust gases generated in the cylinders 21, 22 are discharged via the outlet stub pipe 24.
[0029] As is clearly apparent in
[0030] Electronics housings 27 are provided level with the cylinder head 20 on both sides of the two-cylinder piston engine 1; these can contain power electronics. The electronics housings 27 are in each case arranged above a generator 41, 42. The power electronics arranged in the electronics housings 27 can in each case be electrically connected to one of the generators 41, 42.
[0031]
[0032]
[0033] The cylinder head 20 has the outlet stub pipe 24 on one face. The outlet stub pipe 24 is designed with two ports and opens out into each of the cylinders 21, 22. The intake stub pipes 23 are arranged on an opposite face of the cylinder head 20. The intake stub pipes 23 are arranged spaced apart from each other, and in each case open out directly into the first cylinder 21 and the second cylinder 22 respectively. A separate intake stub pipe 23 is assigned to each of the cylinders 21, 22.
[0034] In addition it is apparent in the plan view of
[0035] In
[0036] In
[0037] As is clearly apparent in
[0038]
[0039] In the embodiment shown the camshaft 30 has four cams 32, to each of which is assigned a control rod 33. The control rods 33 extend from the camshaft 30 through the crankshaft housing 10 and the cylinder head 20 into the valve chamber below the valve cover 29. In the valve chamber are arranged rocker arms 26, which interact with the valves 25. An external contour of the cam 32 is thus sensed by way of the control rod 33 and converted into a corresponding position of the rocker arm 26. In the embodiment illustrated here, it is preferable if a total of four valves are provided. A valve 25 is thus assigned to each control rod 33.
[0040]
[0041]
[0042]
[0043] In
[0044] With regard to the crankshafts 11, 12, it is also apparent that these have in each case a flywheel 14, 15 on the sides opposite the drive wheels 36, 37. Here each flywheel has a balance mass 16, in order to reduce vibrations during the operation of the two-cylinder piston engine 1. At least the first flywheel 14, which is connected to the first crankshaft 11, has circumferential markings 17. With the aid of the circumferential markings 17 a crankshaft sensor can detect the current positions of the pistons 18, 19 in the cylinders 21, 22. Here a broader marking indicates the top or bottom dead centre of the pistons 18, 19.
[0045] From the attached drawings it is apparent that as a result of the option of fitting the cylinder head 20 onto the crankshaft housing 10 in different orientations, the installation conditions for the generator set can be individually adapted. At the same time the lower-mounted camshaft 30 results in a particularly compact build of the generator set. In overall terms it is therefore possible to reduce the necessary build space in a vehicle.
LIST OF REFERENCE SYMBOLS
[0046] 1 Two-cylinder piston engine [0047] 10 Crankshaft housing [0048] 11 First crankshaft [0049] 12 Second crankshaft [0050] 13 Piston rod [0051] 14 First flywheel [0052] 15 Second flywheel [0053] 16 Balance mass [0054] 17 Circumferential markings [0055] 18 First piston [0056] 19 Second piston [0057] 20 Cylinder head [0058] 21 First cylinder [0059] 22 Second cylinder [0060] 23 Intake stub pipe [0061] 24 Outlet stub pipe [0062] 25 Valve [0063] 26 Rocker arm [0064] 27 Electronics housing [0065] 28 Cover [0066] 29 Valve cover [0067] 30 Cam shaft [0068] 31 Belt drive [0069] 32 Cam [0070] 33 Control rod [0071] 34 First spur gear [0072] 35 Second spur gear [0073] 36 First drive wheel [0074] 37 Second drive wheel [0075] 39 Toothed wheel [0076] 41 First generator [0077] 42 Second generator