Exhaust system for an internal combustion engine
11174768 · 2021-11-16
Assignee
Inventors
Cpc classification
F01N1/166
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N1/168
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2240/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D2200/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N1/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01N1/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An exhaust system for an internal combustion engine; the exhaust system comprises: at least one an exhaust duct, which originates from the internal combustion engine; at least one exhaust gas treatment device, which is arranged along the exhaust duct; and a silencing device, which is arranged along the exhaust duct downstream of the exhaust gas treatment device. The silencing device comprises a silencing valve, which intercepts the exhaust duct and is movable between a completely open position and a completely closed position. In the completely closed position, the silencing valve has a first free section for the passage of the exhaust gases having a first area other than zero, so that the exhaust gases can flow through the silencing valve even when the silencing valve is in the completely closed position.
Claims
1. An exhaust system (6) for an internal combustion engine (4); the exhaust system (6) comprises: at least one exhaust duct (7), which originates from the internal combustion engine (4); at least one exhaust gas treatment device (8), which is arranged along the exhaust duct (7); a silencing device (10), which is arranged along the exhaust duct (7) downstream of the exhaust gas treatment device (8) and comprises a silencing valve (11), which intercepts the exhaust duct (7) and is movable between a completely open position and a completely closed position; and a control unit (18), which is configured to change the position of the silencing valve (11) depending on a number of revolutions per minute and on a load of the internal combustion engine (4); wherein, in the completely closed position, the silencing valve (11) has a first free section for the passage of the exhaust gases having a first area (A1) other than zero, so that the exhaust gases can flow through the silencing valve (11) even when the silencing valve (11) is in the completely closed position; wherein, in the completely closed position, the first free section consists of two slits (12), which are separate from one another and are arranged at opposite ends of a shutter (13) of the silencing valve (11); wherein each slit (12) of the first free section has the shape of a crescent of moon; wherein the two slits (12) of the first free section have different sizes; wherein the control unit (18) is configured to move the silencing valve (11) towards the completely closed position in the presence of a small number of revolutions per minute and of small loads of the internal combustion engine (4) and to move the silencing valve (11) towards the completely open position in the presence of a large number of revolutions per minute and of great loads of the internal combustion engine (4); and wherein the silencing device (10) only and exclusively comprises the silencing valve (11) and has no silencer arranged upstream or downstream of the silencing valve (11).
2. The exhaust system (6) according to claim 1, wherein: in the completely open position, the silencing valve (11) has a second free section for the passage of the exhaust gases having a second area (A2); and the first area (A1) of the first free section ranges from 8% to 24% of the second area (A2) of the second free section.
3. The exhaust system (6) according to claim 1, wherein the silencing valve (11) comprises: a tubular body (14), which is flown through by the exhaust gases and has a circular cross section; and a butterfly shutter (13), which has an elliptical cross section and is mounted in a rotary manner inside the tubular body (14) so as to rotate around a rotation axis (15) arranged at the centre and oriented crosswise relative to the tubular body (14).
4. The exhaust system (6) according to claim 3, wherein a larger size of the butterfly shutter (13) is equal to an inner diameter of the tubular body (14) and a smaller size of the butterfly shutter (13) is smaller than the inner diameter of the tubular body (14).
5. The exhaust system (6) according to claim 1, wherein the silencing valve (11) comprises an actuator (17), which is capable of placing and holding the silencing valve (11) in all the intermediate positions comprised between the completely open position and the completely closed position.
6. The exhaust system (6) according to claim 1, wherein the control unit (18) is configured to change the position of the silencing valve (11) also depending on a gear engaged in a gearbox coupled to the internal combustion engine (4).
7. The exhaust system (6) according to claim 6, wherein the control unit (18) is configured to move the silencing valve (11) towards the completely closed position when low gears are engaged and to move the silencing valve (11) towards the completely open position when high gears are engaged.
8. An exhaust system (6) for an internal combustion engine (4); the exhaust system (6) comprises: at least one exhaust duct (7), which originates from the internal combustion engine (4); at least one exhaust gas treatment device (8), which is arranged along the exhaust duct (7); and a silencing device (10), which is arranged along the exhaust duct (7) downstream of the exhaust gas treatment device (8) and comprises a silencing valve (11), which intercepts the exhaust duct (7) and is movable between a completely open position and a completely closed position; wherein, in the completely closed position, the silencing valve (11) has a first free section for the passage of the exhaust gases having a first area (A1) other than zero, so that the exhaust gases can flow through the silencing valve (11) even when the silencing valve (11) is in the completely closed position; wherein, in the completely closed position, the first free section consists of two slits (12), which are separate from one another and are arranged at opposite ends of a shutter (13) of the silencing valve (11); wherein each slit (12) of the first free section has the shape of a crescent of moon; and wherein the two slits (12) of the first free section have different sizes.
9. The exhaust system (6) according to claim 8, wherein the silencing device (10) only and exclusively comprises the silencing valve (11).
10. The exhaust system (6) according to claim 8, wherein the silencing device (10) has no silencer arranged upstream or downstream of the silencing valve (11).
11. The exhaust system (6) according to claim 8, wherein: in the completely open position, the silencing valve (11) has a second free section for the passage of the exhaust gases having a second area (A2); and the first area (A1) of the first free section ranges from 8% to 24% of the second area (A2) of the second free section.
12. The exhaust system (6) according to claim 8, wherein the silencing valve (11) comprises: a tubular body (14), which is flown through by the exhaust gases and has a circular cross section; and a butterfly shutter (13), which has an elliptical cross section and is mounted in a rotary manner inside the tubular body (14) so as to rotate around a rotation axis (15) arranged at the centre and oriented crosswise relative to the tubular body (14).
13. The exhaust system (6) according to claim 12, wherein a larger size of the butterfly shutter (13) is equal to an inner diameter of the tubular body (14) and a smaller size of the butterfly shutter (13) is smaller than the inner diameter of the tubular body (14).
14. The exhaust system (6) according to claim 8, wherein the silencing valve (11) comprises an actuator (17), which is capable of placing and holding the silencing valve (11) in all the intermediate positions comprised between the completely open position and the completely closed position.
15. The exhaust system (6) according to claim 8 and comprising a control unit (18), which is configured to change the position of the silencing valve (11) depending on a number of revolutions per minute and on a load of the internal combustion engine (4).
16. The exhaust system (6) according to claim 15, wherein the control unit (18) is configured to move the silencing valve (11) towards the completely closed position in the presence of a small number of revolutions per minute and of small loads of the internal combustion engine (4) and to move the silencing valve (11) towards the completely open position in the presence of a large number of revolutions per minute and of great loads of the internal combustion engine (4).
17. The exhaust system (6) according to claim 15, wherein the control unit (18) is configured to change the position of the silencing valve (11) also depending on a gear engaged in a gearbox coupled to the internal combustion engine (4).
18. The exhaust system (6) according to claim 17, wherein the control unit (18) is configured to move the silencing valve (11) towards the completely closed position when low gears are engaged and to move the silencing valve (11) towards the completely open position when high gears are engaged.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described with reference to the accompanying drawings, showing a non-limiting embodiment thereof, wherein:
(2)
(3)
(4)
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PREFERRED EMBODIMENTS OF THE INVENTION
(8) In
(9) The internal combustion engine 4 is a “V8” engine and has two (twin) banks with four cylinders arranged at an angle relative to one another so as to form a “V”. In each bank, the four cylinders are connected to an intake manifold (not shown) by means of two intake valves and to an exhaust manifold (not shown) by means of two exhaust valves; each exhaust manifold collects the gases produced by the combustion, which cyclically flow out of the exhaust valves.
(10) The internal combustion engine 4 is provided with an exhaust system 6, which has the function of releasing the gases produced by the combustion into the atmosphere limiting both the noise and the content of polluting substances. The exhaust system 6 comprises two exhaust ducts 7, each originating from a corresponding exhaust manifold, so to receive the gases produced by the combustion from the exhaust manifold, and ending in the area of the tail of the car 1. ong each exhaust duct 7 there are known exhaust gas treatment devices 8: there always is at least one catalytic converter and there could also be a particular filter (in order to comply with the new EURO6C standards on polluting emissions, car manufacturers use a particulate filter—called GPF, which stands for “Gasoline Particulate Filter”—also in gasoline engines). At the end of each exhaust duct 7 there is a decorative tail pipe 9, which only fulfils decorative functions (namely, masking the exhaust duct 7 with a pleasant shape, which also matches the setting of the car 1).
(11) Each exhaust duct 7 is provided with a silencing device 10, which is arranged along the exhaust duct 7 downstream of the exhaust gas treatment devices 8 and generally close to the end of the exhaust duct 7. According to
(12) Each silencing valve 11 is movable between a completely open position (shown in
(13) The area A1 of the first free section (corresponding to the completely closed position) normally is at least equal to 220 mm.sup.2 and generally ranges from 300 mm.sup.2 to 750 mm.sup.2.
(14) According to
(15) Each slit 12 of the first free section (corresponding to the completely closed position) preferably has the shape of a crescent of moon. The shape of a crescent of moon of the slits 12 making up the first free section (corresponding to the completely closed position) is particularly advantageous, as it prevents the exhaust gases from producing, by flowing through a silencing valve 11, whistles (or other unusual sounds), which could be extremely negative for they would (at least partly) jeopardize the silencing function of the silencing valve 11.
(16) In the embodiments shown in
(17) According to
(18) As already mentioned above, each shutter 13 has an elliptical shape having a larger size (along the main axis and oriented perpendicularly to the rotation axis 15) and a smaller size (along the minor axis and oriented parallel to the rotation axis 15): the larger size of each butterfly shutter 13 is equal to an inner diameter of the tubular body 14 and the smaller size of each butterfly shutter 13 is smaller than the inner diameter of the tubular body 14; in this way, in the completely closed position (shown in
(19) According to
(20) According to a preferred embodiment, in the control unit 18 there are stored different maps (each corresponding to one or more driving modes), which provide, as an output, the desired (ideal) position of each silencing valve 11 based on the data provided as an input on the number of revolutions per minute and on the engine load of the internal combustion engine 4 as well as on the gear engaged in the gearbox coupled to the internal combustion engine 4.
(21) Obviously, each map stored in the control unit 18 comprises a limited number of points and, therefore, the control unit 18 could carry out interpolations between the closest points of a map in order to determine the desired (ideal) position of each silencing valve 11.
(22) The control unit 18 is configured to move each silencing valve 11 towards the completely closed position (namely, to close the silencing valve 11) in the presence of a small number of revolutions per minute and of small loads of the internal combustion engine 4 and to move the silencing valve 11 towards the completely open position (namely, to open the silencing valve 11) in the presence of a large number of revolutions per minute and of great loads of the internal combustion engine 4. Furthermore, the control unit 18 is configured to move each silencing valve 11 towards the completely closed position (namely, to close the silencing valve 11) when the low gears are engaged and to move the silencing valve 11 towards the completely open position (namely, to open the silencing valve 11) when the high gears are engaged.
(23) In the embodiment shown in
(24) It should be pointed out that each silencing device 10 only and exclusively comprises the silencing valve 11, namely each silencing device 10 has no silencer arranged upstream or downstream of the silencing valve 11. Indeed, the functions of a traditional silencer and of the respective bypass duct are performed by the silencing valves 11.
(25) In the completely open position (shown in
(26) The control valve 18 is configured to close each silencing valve 11 (namely, to move each silencing valve 11 towards the completely closed position) when it is necessary (useful) to favour silencing rather than performances and to open each silencing valve 11 (namely, to move each silencing valve 11 towards the completely open position) when it is necessary (useful) to favour performances rather than silencing.
(27) In the embodiments shown in the accompanying figures, the internal combustion engine 4 has eight cylinders 6 arranged in V shape. Obviously, the internal combustion engine could have a different number of cylinders and/or a different arrangement of the cylinders; in case of internal combustion engines with inline cylinders (hence, with one single bank of cylinders), there usually is one single exhaust duct 7 and, therefore, one single silencing device 10.
(28) In the embodiments shown in the accompanying figures, the internal combustion engine 4 is supercharged; according to other embodiments which are not shown herein, the internal combustion engine 4 is not supercharged, namely is an aspirated engine.
(29) The embodiments described herein can be combined with one another, without for this reason going beyond the scope of protection of the invention.
(30) The exhaust system 6 described above has numerous advantages.
(31) First of all, the exhaust system 6 described above allows for an ideal silencing at low rpms (keeping the silencing valves 11 completely closed) and, at the same time, allows the exhaust back pressure to be minimized at high rpms (keeping the silencing valves 11 completely open).
(32) Furthermore, the exhaust system 6 described above is particularly light and compact, since it lacks the traditional silencer (which inevitably has a large volume) and the respective bypass duct, whose functions are carried out by the silencing valves 11, which have extremely small sizes.
(33) Finally, the exhaust system 6 described above is easy and economic to be manufactured, since, compared to a similar traditional exhaust system 6, completely avoids the cost of the silencer (which, in a traditional exhaust system 6, is always combined with a bypass duct regulated by corresponding bypass valve having a cost that is similar to the cost of a silencing valve 11).
LIST OF THE REFERENCE NUMBERS OF THE FIGURES
(34) 1 car 2 front wheels 3 rear wheels 4 internal combustion engine 5 passenger compartment 6 exhaust system 7 exhaust duct 8 treatment devices 9 decorative tail pipe 10 silencing device 11 silencing valve 12 slits 13 shutter 14 tubular body 15 rotation axis 16 shaft 17 electric actuator 18 control unit 19 bifurcation