Water cooled engine
11549460 ยท 2023-01-10
Assignee
Inventors
Cpc classification
F01P3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/242
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/4285
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/4214
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P2003/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02F1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
There is provided a water cooled engine including a cylinder head with minimized thermal strain. A head water jacket includes an inter-exhaust-port-wall water channel between a first exhaust entrance port wall and a second exhaust entrance port wall. A cylinder head includes a cooling water injection passage provided at a bottom wall of the cylinder head. The cooling water injection passage is positioned on the exhaust end side, and includes a passage entrance provided on the exhaust end side, and a passage exit directed toward the inter-exhaust-port-wall water channel. An exhaust port wall includes a heat dissipation fin extending from a first exhaust entrance port wall toward an exhaust end. The space between the heat dissipation fin and a second exhaust entrance port wall forms a water channel entrance of the inter-exhaust-port-wall water channel.
Claims
1. A water cooled engine comprising a cylinder head, the cylinder head including an air intake port, an exhaust port, and a head water jacket that allows an engine cooling water to pass around the ports, wherein when an extending direction of a crankshaft is a front-rear direction and a width direction of the cylinder head being perpendicular to the front-rear direction is a lateral direction, a laterally one end of the cylinder head is an exhaust end and a laterally other end of the cylinder head is an air intake end, the cylinder head includes a cooling water injection passage provided at a bottom wall of the cylinder head, the cooling water injection passage being positioned on the exhaust end side, and is configured to inject the engine cooling water into the head water jacket, the cylinder head includes an intake valve shaft insertion boss, a push rod chamber wall provided on the exhaust end side at a position opposing to the intake valve shaft insertion boss, and an extending heat dissipation fin extending from the push rod chamber wall to the intake valve shaft insertion boss.
2. The water cooled engine according to claim 1, wherein an air intake port wall of the air intake port includes an intake air exit port wall provided on an intake valve opening side, an exhaust port wall of the exhaust port includes an exhaust entrance port wall, and the head water jacket includes an inter-intake/exhaust-port-wall water channel between the intake air exit port wall and the exhaust entrance port wall, the cylinder head includes a second cooling water injection passage provided at the bottom wall of the head water jacket, the second cooling water injection passage including a second passage entrance provided on the exhaust end side and a second passage exit directed to a water channel entrance of the inter-intake/exhaust-port-wall water channel, the extending heat dissipation fin extends along a lower surface of a ceiling wall of the cylinder head, and between the extending heat dissipation fin and the bottom wall of the cylinder head a constricted passage is provided, the constricted passage being disposed on a side of the second passage exit of the second cooling water injection passage which is upstream in a flow direction of the inter-intake/exhaust-port-wall water channel, and the second passage exit is directed to the water channel entrance of the inter-intake/exhaust-port-wall water channel in a direction crossing the extending heat dissipation fin, when viewed from a side of the ceiling wall of the cylinder head.
3. The water cooled engine according to claim 2, wherein the extending heat dissipation fin is positioned farther from the inter-intake/exhaust-port-wall water channel than the second passage exit of the second cooling water injection passage is.
4. The water cooled engine according to claim 1, wherein the exhaust port includes a first exhaust valve opening and a second exhaust valve opening provided on the exhaust end side relative to the first exhaust valve opening, an exhaust port wall of the exhaust port including a first exhaust entrance port wall on the first exhaust valve opening side and a second exhaust entrance port wall on the second exhaust valve opening side, the head water jacket includes an inter-exhaust-port-wall water channel between the first exhaust entrance port wall and the second exhaust entrance port wall, the cooling water injection passage includes a passage entrance provided on the exhaust end side and a passage exit directed toward the inter-exhaust-port-wall water channel, the exhaust port wall includes a leading heat dissipation fin extending from the first exhaust entrance port wall toward the exhaust end, a space between the leading heat dissipation fin and the second exhaust entrance port wall forming a water channel entrance of the inter-exhaust-port-wall water channel, and when viewed in a direction orthogonal to the bottom wall of the cylinder head, the leading heat dissipation fin is curved so that a side of the water channel entrance of the inter-exhaust-port-wall water channel is recessed.
5. The water cooled engine according to claim 4, wherein a water channel exit of the inter-exhaust-port-wall water channel is directed to a fuel injector.
6. The water cooled engine according to claim 4, wherein an air intake port wall of the air intake port includes an intake air exit port wall provided on an intake valve opening side, and the head water jacket includes an inter-intake/exhaust-port-wall water channel between the intake air exit port wall and the second exhaust entrance port wall, and the cylinder head includes a second cooling water injection passage provided at the bottom wall of the head water jacket, the second cooling water injection passage including a second passage entrance provided on the exhaust end side and a second passage exit directed to a water channel entrance of the inter-intake/exhaust-port-wall water channel.
7. The water cooled engine according to claim 2, wherein the second cooling water injection passage is positioned on the exhaust end side.
8. The water cooled engine according to claim 3, wherein the second cooling water injection passage is positioned on the exhaust end side.
9. The water cooled engine according to claim 6, wherein the second cooling water injection passage is positioned on the exhaust end side.
10. The water cooled engine according to claim 6, wherein the extending heat dissipation fin extends along a lower surface of a ceiling wall of the cylinder head, and between the extending heat dissipation fin and the bottom wall of the cylinder head, a constricted passage is provided, the constricted passage being disposed on a side of the second passage exit of the second cooling water injection passage which is upstream in a flow direction in the inter-intake/exhaust-port-wall water channel, and the second passage exit is directed to the water channel entrance of the inter-intake/exhaust-port-wall water channel in a direction crossing the extending heat dissipation fin, when viewed from a side of the ceiling wall of the cylinder head.
11. The water cooled engine according to claim 9, wherein the extending heat dissipation fin extends along a lower surface of a ceiling wall of the cylinder head, and between the extending heat dissipation fin and the bottom wall of the cylinder head, a constricted passage is provided, the constricted passage being disposed on a side of the second passage exit of the second cooling water injection passage which is upstream in a flow direction in the inter-intake/exhaust-port-wall water channel, and the second passage exit is directed to the water channel entrance of the inter-intake/exhaust-port-wall water channel in a direction crossing the extending heat dissipation fin, when viewed from a side of the ceiling wall of the cylinder head.
12. The water cooled engine according to claim 10, wherein the extending heat dissipation fin is positioned farther from the inter-intake/exhaust-port-wall water channel than the second passage exit of the second cooling water injection passage is.
13. The water cooled engine according to claim 11, wherein the extending heat dissipation fin is positioned farther from the inter-intake/exhaust-port-wall water channel than the second passage exit of the second cooling water injection passage is.
14. The water cooled engine according to claim 2, wherein a water channel exit of the inter-intake/exhaust-port-wall water channel is directed to a fuel injector.
15. The water cooled engine according to claim 1, further comprising a head gasket interposed between the cylinder block and the cylinder head, wherein the bottom wall of the cylinder head includes a combustion chamber ceiling wall and a pushing wall positioned on an outer circumferential side of the combustion chamber ceiling wall and pushing a bead of the head gasket, and in the bottom wall of the cylinder head, the pushing wall is greater in thickness than an outer peripheral part of the combustion chamber ceiling wall being adjacent to the pushing wall.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENT
(10)
(11) The overview of the engine is as follows.
(12) As shown in
(13) The engine includes a fuel injection apparatus, a vibration damper apparatus, a water-cooling apparatus, a lubricating apparatus, and an oil-cooling apparatus.
(14) The fuel injection apparatus is of the common rail type, and includes, as shown in
(15) As shown in
(16) The water-cooling apparatus includes: a radiator (not shown); a water entrance chamber (16) provided on the air intake side of the cylinder block (5) as shown in
(17) The water-cooling apparatus causes, using the pump pressure of the water pump (17), an engine cooling water having its heat dissipated by the radiator to circulate sequentially through the water entrance chamber (16), the water pump (17), the water relay chamber (18), the block water jacket (19), the head water jacket (20), and the radiator, to cool the engine.
(18) The lubricating apparatus includes: an oil pump (not shown) built inside the rear part of the cylinder block (5); and as shown in
(19) As shown in
(20) The water-cooling apparatus is structured as follows.
(21) As shown in
(22) Accordingly, the water-cooling apparatus is advantageous in its being capable of strongly cooling the cylinder head (6) with the engine cooling water (36).
(23) As shown in
(24) The exhaust port (3) includes: a first exhaust valve opening (3a); and a second exhaust valve opening (3b) provided on the exhaust end (6a) side relative to the first exhaust valve opening (3a). An exhaust port wall includes: a first exhaust entrance port wall (3d) on the first exhaust valve opening (3a) side; and a second exhaust entrance port wall (3e) on the second exhaust valve opening (3b) side.
(25) The head water jacket (20) includes an inter-exhaust-port-wall water channel (29) between the first exhaust entrance port wall (3d) and the second exhaust entrance port wall (3e).
(26) The cylinder head (6) includes a cooling water injection passage (27) provided at a bottom wall (6c) of the cylinder head (6). The cooling water injection passage (27) is positioned (biased) on the exhaust end (6a) side, and includes a passage entrance (27a) provided on the exhaust end (6a) side, and a passage exit (27b) directed toward the inter-exhaust-port-wall water channel (29).
(27) The exhaust port wall includes a heat dissipation fin (28) extending from the first exhaust entrance port wall (3d) toward the exhaust end (6a). The space between the heat dissipation fin (28) and the second exhaust entrance port wall (3e) forms a water channel entrance (29a) of the inter-exhaust-port-wall water channel (29).
(28) Into the passage entrance (27a) of the cooling water injection passage (27), the engine cooling water (36) rising from the exhaust side of the block water jacket (19) is drawn.
(29) Accordingly, in the present embodiment, as shown in
(30) Further, by virtue of heat dissipation of the heat dissipation fin (28), high heat dissipation performance is achieved at the first exhaust entrance port wall (3d).
(31) Still further, as shown in
(32) Note that, by the engine cooling water (36) being injected from the cooling water injection passage (27), the engine cooling water (36) near the water channel entrance (29a) of the inter-exhaust-port-wall water channel (29) is drawn into the water channel entrance (29a). Into the water channel entrance (29a), the engine cooling water (36) rising from an inter-cylinder-bore water channel of the block water jacket (19) via a rising hole (39) is also drawn.
(33) As shown in
(34) Accordingly, in the present embodiment, as shown in
(35) As shown in
(36) The cylinder head (6) includes a second cooling water injection passage (31) provided at the bottom wall (6c) of the head water jacket (20). The second cooling water injection passage (31) includes a second passage entrance (31a) provided on the exhaust end (6a) side, and a second passage exit (31b) directed to a water channel entrance (30a) of the inter-intake/exhaust-port-wall water channel (30).
(37) Accordingly, in the present embodiment, as shown in
(38) Into the second passage entrance (31a) of the second cooling water injection passage (31), the engine cooling water (36) rising from the exhaust side of the block water jacket (19) is drawn.
(39) As shown in
(40) Accordingly, in the present embodiment, as shown in
(41) As shown in
(42) Between the second heat dissipation fin (32) and the bottom wall (6c) of the cylinder head (6), a constricted passage (32a) is provided. The constricted passage (32a) is disposed upstream in a flow direction in the inter-intake/exhaust-port-wall water channel (30).
(43) Accordingly, in the present embodiment, as shown in
(44) As shown in
(45) Accordingly, in the present embodiment, as shown in
(46) As shown in
(47) Accordingly, in the present embodiment, as shown in
(48) As shown in
(49) Accordingly, in the present embodiment, as shown in
(50) As shown in
(51) The bottom wall (6c) of the cylinder head (6) includes a combustion chamber ceiling wall (34) and a pushing wall (35) positioned on the outer circumference side of the combustion chamber ceiling wall (34) and pushing a bead (33a) of the head gasket (33).
(52) In the bottom wall (6c) of the cylinder head (6), the pushing wall (35) is greater in thickness than an outer peripheral part (34a) of the combustion chamber ceiling wall (34) being adjacent to the pushing wall (35).
(53) Accordingly, in the present embodiment, as shown in
(54)
(55)