Internal combustion engine
09771836 · 2017-09-26
Assignee
Inventors
Cpc classification
F02F7/0073
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/0537
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An internal combustion engine includes a cylinder head, a crankshaft, intake and exhaust camshafts, first and second chain covers, a chain, and a fastening bolt. The first chain cover having a cutout includes a first flange positioned at a specific edge portion of the cutout, which is positioned between the crankshaft and the camshafts, and a first boss through which a shaft portion of the fastening bolt is passed. The cylinder head includes a second flange, and a second boss into which the shaft portion is inserted, and which is disposed coaxially with the first boss. The liquid gasket is held between the second flange and the first flange. A groove is provided in at least one of a position between the first flange and the first boss of the first chain cover and a position between the second flange and the second boss of the cylinder head.
Claims
1. An internal combustion engine comprising: a cylinder head; a crankshaft; an intake camshaft and an exhaust camshaft disposed in the cylinder head; a first chain cover disposed in contact with the cylinder head; a second chain cover disposed in contact with the first chain cover; a chain looped over the crankshaft, the intake camshaft, and the exhaust camshaft, the chain being disposed in a space defined by the first chain cover and the second chain cover; and a fastening bolt that fastens the first chain cover and the second chain cover to the cylinder head, wherein the first chain cover includes an edge portion defining a cutout such that the intake camshaft and the exhaust camshaft are positioned in a space in the cutout, a portion of a peripheral edge portion of the cutout is a specific edge portion positioned between the crankshaft and the intake and exhaust camshafts, the first chain cover includes a first flange positioned at the specific edge portion and a first boss through which a shaft portion of the fastening bolt is passed, the first boss being disposed adjacent to the first flange, and the first boss being located on the crankshaft side with respect to the first flange, the cylinder head includes a second flange that holds a liquid gasket in cooperation with the first flange in such a manner that the liquid gasket is held between the second flange and the first flange, and a second boss into which the shaft portion of the fastening bolt is inserted, the second boss being disposed coaxially with the first boss, and a groove is provided in at least one of a position between the first flange and the first boss of the first chain cover and a position between the second flange and the second boss of the cylinder head.
2. The internal combustion engine according to claim 1, wherein the first boss and the second boss are positioned between the intake camshaft and the exhaust camshaft in a direction in which the intake camshaft and the exhaust camshaft are arranged side by side.
3. The internal combustion engine according to claim 2, wherein a width of the groove is smaller than a width of each of a peripheral wall of the first boss and a peripheral wall of the second boss.
4. The internal combustion engine according to claim 1, wherein a width of the groove is smaller than a width of each of a peripheral wall of the first boss and a peripheral wall of the second boss.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Features, advantages, and technical and industrial significance of exemplary embodiments of the invention will be described below with reference to the accompanying drawings, in which like numerals denote like elements, and wherein:
(2)
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DETAILED DESCRIPTION OF EMBODIMENTS
(11) Hereinafter, an internal combustion engine according to an embodiment will be described with reference to
(12) The internal combustion engine 10 is provided with a first chain cover 18 attached to the cylinder head 12 and the cylinder block 11, and a second chain cover 19 attached to the first chain cover 18. The chain covers 18, 19 are secured to the cylinder head 12 with a fastening bolt 20. The chain 17 is disposed in a space defined by the chain covers 18, 19.
(13) A mounting bracket 21 is provided on the opposite side of the second chain cover 19 from the first chain cover 18. The distal end of a shaft portion 201 of the fastening bolt 20 passed through the mounting bracket 21 reaches the cylinder head 12, whereby the chain covers 18, 19 are secured to the cylinder head 12. In this state, a head portion 202 of the fastening bolt 20 is engaged with the mounting bracket 21. With a tightening force generated by tightening the fastening bolt 20, the second chain cover 19 is pressed against the first chain cover 18 and the first chain cover 18 is pressed against the cylinder head 12.
(14) Next, the first chain cover 18 will be described with reference to
(15) As illustrated in
(16) Further, an upper portion (in
(17) Due to the provision of the cutout 34 in the first chain cover 18 as described above, a portion of the peripheral edge of the first chain cover 18 is positioned between the crankshaft 14 and the camshafts 15, 16. In the peripheral edge of the first chain cover 18, the edge portion formed in the first chain cover 18 due to provision of the cutout 34 in the first chain cover 18 will be simply referred to as “edge portion 35” in this specification. In this case, a portion of the edge portion 35, the portion extending transversely at a position between the crankshaft 14 and the camshafts 15, 16, corresponds to “specific edge portion 35A”.
(18) On the inner surface 31 of the first chain cover 18, a first flange 36 is provided at the edge portion 35 including the specific edge portion 35A. The first flange 36 does not have a looped shape, unlike the flange 33.
(19) As illustrated in
(20) As illustrated in
(21) In the process of attaching the first chain cover 18 to the cylinder head 12, a FIPG 23, which has not been cured, is applied to, for example, the distal end surface of the first flange 36. The FIPG 23 serves as an example of “liquid gasket”. A FIPG is a material that is in the form of liquid at the time of application and cures with passage of time from the application. Due to application of a FIPG, portions to which the FIPG are applied can be bonded together and brought into close contact with each other.
(22) Next, an attachment surface 51 of the cylinder head 12, to which the first chain cover 18 is attached, will be described with reference to
(23) As illustrated in
(24) In the present embodiment, a second groove 55 is provided between the second flange 52 and the second boss 54. A width H4 of the second groove 55 is substantially equal to the width H1 of the first groove 39. When the first chain cover 18 is attached to the cylinder head 12, the inside of the second groove 55 and the inside of the first groove 39 are brought into communication with each other.
(25) Next, the second chain cover 19 will be described with reference to
(26) As illustrated in
(27) Further, the inner surface 61 of the second chain cover 19 is provided with a third boss 66 through which the shaft portion 201 of the aforementioned fastening bolt 20 is passed. The third boss 66 is disposed coaxially with the first boss 38 of the first chain cover 18.
(28) Next, the operation for securing each of the chain covers 18, 19 to the cylinder head 12 will be described with reference to
(29) Subsequently, the chain 17 is looped over the crankshaft 14 and the camshafts 15, 16. Next, the second chain cover 19 is attached to the first chain cover 18 such that the chain 17 is covered with the first and second chain covers 18, 19.
(30) Subsequently, as illustrated in
(31) As illustrated in
(32) A FIPG has a property of starting curing with passage of time. Thus, at the time when the fastening bolt 20 is tightened, curing of the FIPG 23 positioned between the first flange 36 and the second flange 52 may have already started. When the fastening bolt 20 is tightened under the condition where the FIPG 23 is curing, if the axial force transmitted to the FIPG 23 is excessively large, damages given to the FIPG 23 due to the FIPG 23 being held between the first flange 36 and the second flange 52 becomes large, which may result in a decrease in durability of the FIPG 23.
(33) In view of this, in the present embodiment, the first groove 39 is provided between the first flange 36 and the first boss 38, and the second groove 55 is provided between the second flange 52 and the second boss 54. Thus, rigidity of a portion of the first chain cover 18 between the first flange 36 and the first boss 38 and rigidity of a portion of the cylinder head 12 between the second flange 52 and the second boss 54 are both decreased. Consequently, even if the fastening bolt 20 is tightened under the condition where the FIPG 23 is curing, an axial force generated by tightening the fastening bolt 20 is less likely to be transmitted to the FIPG 23. As a result, the axial force to be transmitted to the FIPG 23 is prevented from being excessively large, and thus the FIPG 23 is less likely to be damaged.
(34) The configuration and operation described above produces the following advantageous effects. (1) Even when an axial force is generated as the shaft portion 201 of the fastening bolt 20 is inserted into the bosses 38, 54, transmission of the axial force to the FIPG 23 is restricted by the grooves 39, 55. As a result, transmission of an excessively large axial force to the FIPG 23 is inhibited. In other words, even when the bosses 38, 54 are respectively provided close to the flanges 36, 52, an appropriate axial force is transmitted to the FIPG 23 and thus the FIPG 23 is brought into close contact with the flanges 36, 52. Consequently, it is possible to inhibit a decrease in durability of the FIPG 23 while ensuring sealing performance provided by the flanges 36, 52 and the FIPG 23, without the need to reduce a tightening force generated by tightening the fastening bolt 20.
(35) (2) When the direction in which the camshafts 15, 16 are arranged side by side is defined as a prescribed direction, the first boss 38 and the second boss 54 are disposed near the center of the first flange 36 in the prescribed direction. Thus, an axial force generated by tightening the fastening bolt 20 is transmitted to the entirety of the FIPG 23 positioned between the first flange 36 and the second flange 52. Thus, sealing performance provided by the flanges 36, 52 and the FIPG 23 is easily ensured.
(36) The above-described embodiment may be modified as follows. The second groove 55 need not be provided between the second flange 52 and the second boss 54 as long as the first groove 39 is provided between the first flange 36 and the first boss 38. In this case as well, an axial force is less likely to be transmitted to the FIPG 23 as compared with the case where no groove is provided between the first flange 36 and the first boss 38 and no groove is provided between the second flange 52 and the second boss 54. As a result, it is possible to inhibit a decrease in durability of the FIPG 23 while ensuring sealing performance provided by the flanges 36, 52 and the FIPG 23.
(37) As long as the second groove 55 is provided between the second flange 52 and the second boss 54, the first groove 39 need not be provided between the first flange 36 and the first boss 38. In this case as well, an axial force is less likely to be transmitted to the FIPG 23 as compared with the case where no groove is provided between the first flange 36 and the first boss 38 and no groove is provided between the second flange 52 and the second boss 54. As a result, it is possible to inhibit a decrease in durability of the FIPG 23 while ensuring sealing performance provided by the flanges 36, 52 and the FIPG 23.
(38) In the above-described embodiments, a FIPG is employed as a liquid gasket. However, the liquid gasket is not limited to FIPGs, and materials other than FIPGs may be employed as long as the materials are in the form of liquid at the time of application and cure with passage of time from the application and the materials enable the portions to which the materials are applied to be bonded together and to be brought into close contact with each other.