Intake control device
09546622 ยท 2017-01-17
Assignee
Inventors
Cpc classification
F02M35/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/112
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B2275/48
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/10255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T10/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F02M35/10321
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/1025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/10085
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D2041/0015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D41/0002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M35/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D41/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/112
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D9/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention provides an intake control device that appropriately restricts the flow of intake air when a valve body is set to a restriction position while the valve body is smoothly operated. The valve body is configured such that it is supported so as to be capable of swinging with respect to a sleeve, and when the valve body is set to the restriction position, a main valve portion of the valve body is lifted upward from a bottom plate, and a secondary valve portion of the valve body is sunk into an accommodating space of the bottom plate. In the accommodating space, a stepped portion that allows outward displacement from an inner surface of the sleeve is formed, and a seal portion that is brought closer to the stepped portion when the valve body is set to the restriction position is formed in the secondary valve portion.
Claims
1. An intake control device comprising: a sleeve fitted within an intake manifold; and a valve body switchable between an open position and a restriction position, the open position being a position in which an opening area of an intake passage in the intake manifold is maximized by the sleeve and the restriction position being a position in which the opening area of the intake passage is minimized, by the valve body being pivoted together with a shaft supported, wherein the valve body includes a main valve portion and a secondary valve portion that are positioned on one wall surface side of the sleeve with respect to the shaft when the valve body is in the open position, the main valve portion being provided downstream in an intake flow direction with respect to the shaft so as to be displaced toward the center of the sleeve and the secondary valve portion being provided upstream in the intake flow direction with respect to the shaft so as to be displaced in a direction in which it is sunk into the sleeve, when the valve body is swung from the open position to the restriction position, an accommodating space into which the secondary valve portion enters when the valve body is swung to the restriction position is formed so as to have a shape including a stepped portion that allows outward displacement from an inner surface of the sleeve, and the secondary valve portion has a seal portion that is brought closer to the stepped portion when the valve body reaches the restriction position than when the valve body is in the open position.
2. The intake control device according to claim 1, wherein the seal portion is constituted by a protruding portion that protrudes from a surface of the secondary valve portion so as to be closer to the stepped portion when the valve body is in the restriction position than when the valve body is in the open position.
3. The intake control device according to claim 2, wherein the protruding portion protrudes linearly from a surface of the secondary valve portion.
4. The intake control device according to claim 1, wherein the valve body is configured so as to be capable of being set to an intermediate position, which is located in middle between the open position and the restriction position, and includes a secondary seal portion that is brought closer to the stepped portion when the valve body is in the intermediate position than when the valve body is in the open position.
5. The intake control device according to claim 1, wherein the accommodating space is formed by cutting out the one wall surface.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
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(4)
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DESCRIPTION OF EMBODIMENTS
(10) Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
(11) [Basic Configuration]
(12) As shown in
(13) The engine E is connected to the cylinder head 1 at the upper end of a cylinder block 3 that incorporates a piston 2. The cylinder head 1 includes an intake valve 4 that supplies an intake air flow into a combustion chamber, an exhaust valve 5 that discharges a combustion gas, a spark plug 6 that ignites a mixed gas in the combustion chamber, and an injector (not shown) that supplies fuel to the combustion chamber.
(14) The engine E has a general configuration in which the intake valve 4 is opened during an intake operation of the piston 2 so as to supply an intake air flow into the combustion chamber and supply fuel from the injector into the combustion chamber, thereafter, a compression operation is performed, then the mixed gas in the combustion chamber is ignited by the spark plug 6 to cause combustion, and an expansion force generated by the combustion is transmitted from the piston 2 to a crank shaft (not shown) so as to obtain a driving force from the crank shaft.
(15) The intake control device functions to enhance the combustion efficiency by controlling the opening area of an intake passage of the intake manifold M when the intake air flow is supplied into the combustion chamber, so as to produce a tumble flow in the combustion chamber. In order to cause the intake control device to function as described above, the actuator A controls the position of the valve body 25 based on information obtained from an operation map based on the engine speed of the engine E and the load condition.
(16) [Intake Control Device]
(17) The intake manifold M is formed by integrally forming, with the use of resin, a single manifold main body Ma to which air is supplied from an air cleaner or the like and a plurality of branches Mb that separates the air coming from the manifold main body Ma into a plurality of streams so as to supply the air coming from the manifold main body Ma to respective combustion chambers in the engine E. Each branch Mb includes an upper wall portion 11, a pair of side wall portions 12 and a lower wall portion 13 at a front-end portion, and thus has a rectangular cross-section. A flange portion 14 for connecting to the cylinder head 1 is integrally formed so as to be continuous with the front-end portion of the plurality of branches Mb.
(18) The upper wall portion 11, the pair of side wall portions 12 and the lower wall portion 13 together forms a space into which a holder H is fitted. Their relative positional relationship is set such that the inner wall of the branch Mb and the inner wall of the holder H extend linearly by expanding this area. Also, at an intermediate position between adjacent side wall portions 12, an external bearing space 12a is formed so as to communicate with the internal spaces of adjacent branches Mb and to be dented from the flange portion 14. Two side wall portions 12 provided at the outermost positions have a hollow bulged portion 12b externally bulging so as to accommodate a shaft 27.
(19) The flange portion 14 is connected to the cylinder head 1 with bolts 15, and on the flange surface of the flange portion 14, recess portions 14a are formed within which clamping plates Hb of the holders H are fitted. Each recess portion 14a is formed so as to have a depth to which the clamping plate Hb of a holder H is fitted, and is configured such that the clamping plate Hb can be pressed against the cylinder head 1 when the flange portion 14 of the intake manifold M is connected to the cylinder head 1.
(20) In the present embodiment, the intake control device for the 4-cylindered engine E is shown, and thus the intake manifold M includes four branches Mb so as to cope with the 4-cylindered engine E, and the valve body 25 is supported in each of the branches Mb via the holder H.
(21) As shown in
(22) In the holder H, the top plate 21 and the pair of side plates 22 are set to have an equal dimension in the flowing direction of intake air flow, and the bottom plate 23 is set to have a shorter dimension in the flowing direction of intake air flow. Between the pair of side plates 22, an internal bearing space 22a is formed by being cut out from an end opposite to the clamping plate Hb.
(23) In the flowing direction of intake air flow, the bottom plate 23 is set to have a dimension shorter than that of the other plates, and thereby an accommodating space S is formed in a region within the holder H where the bottom plate 23 is not present (on the upstream side of the bottom plate 23 in the intake air flow direction). The accommodating space S is formed in a region surrounded by a stepped portion 23a of the bottom plate 23, the pair of side plates 22 and the lower wall portion 13. The stepped portion 23a is formed in a shape that allows outward displacement from the inner surface of the bottom plate 23 of the holder H, and as shown in
(24) The valve body 25 is formed so as to have a plate form, and is formed by integrally forming, with the use of resin, a pair of plate-like bracket portions 26 connected on both sides and a shaft 27 connected to the pair of bracket portions 26. The pair of bracket portions 26 are formed so as to stand upright from widthwise ends of the valve body 25, and the shaft 27 is connected to the outer surfaces of the pair of bracket portions 26.
(25) When the valve body 25 set in an open position as shown in
(26) Where a face that faces the top plate 21 while the valve body 25 is set to the open position is defined as a surface, and the opposite face, which faces the bottom plate 23, is defined as a back surface, on the back surface side of the secondary valve portion 25b, a protruding portion 28 is formed that serves as a seal portion that is brought closer to the stepped portion 23a of the bottom plate 23 when the valve body 25 is set to the restriction position than when the valve body 25 is set to the open position. The protruding portion 28 is formed integrally with the valve body 25, but may be fixed to the valve body 25 with the use of an adhesive, a screw, or the like.
(27) As shown in
(28) The internal bearing space 22a has the aforementioned semicircular part at an end position of a slit portion having a width larger than the diameter of the shaft 27, and a seal plate 33 is provided to fit into the slit portion of the internal bearing space 22a. A part at an end of the seal plate 33 that comes into contact with the shaft 27 is formed so as to have a semicircular recess. With this configuration, the semicircular recess of the internal bearing space 22a and the semicircular recess formed in the seal plate 33 together form a circular hole. By disposing the bearing body 30 in a hole-shaped part formed by two semicircular recesses as described above, the shaft 27 is supported so as to be capable of rotation about the swing axis X.
(29) In the case of assembling the intake control device, the shafts 27 of the valve bodies 25 are connected with the joint 31, and then inserted into the internal bearing space 22a of the side plates 22 of the holders H. In the case where the shaft 27 is accommodated into the branches Mb, one end of the shaft 27 is accommodated in a bulged portion 12b, and the other end is accommodated in another bulged portion 12b. Also, the other end of the shaft 27 is connected to an output shaft of the actuator A. Furthermore, by the seal plates 33 being fitted into the slit portions of the internal bearing spaces 22a, the bearing body 30 is sandwiched by the semicircular recess of the internal bearing space 22a and the semicircular recess at the inner end of the seal plate 33. In this state, the holders H and the valve bodies 25 are set inside the branches Mb, and the branches Mb are connected to the cylinder head 1 by using bolts 15.
(30) In the intake control device assembled in the manner described above, each holder H is fitted in the corresponding branch Mb, and the clamping plate Hb of the holder H is clamped between the flange portion 14 and the cylinder head 1 at the recess portion 14a provided in the flange portion 14 of the branch Mb.
(31) The bearing body 30 has an engaging projection at each end of the rod-like member. By forming, at an end of the shaft 27, an engaging recess portion into which the engaging projection is fitted, a state can be achieved in which a plurality of valve bodies 25 are swung together about the swing axis X. Also, by connecting the output shaft of the actuator A to one end of the shaft 27, the position of the valve body 25 can be switched by the driving force of the actuator A.
(32) [Operative Configuration]
(33) When the valve body 25 is set to the open position shown in
(34) As described above, when the valve body 25 reaches the restriction position, the main valve portion 25a minimizes the opening area of the intake passage, and by the protruding portion 28 serving as a seal portion being brought closer to the stepped portion 23a of the bottom plate 23, the flow of air in this area is restricted.
(35) [Effects of Embodiment]
(36) As described above, in the intake control device of the present invention, when the valve body 25 is switched from the open position to the restriction position, the secondary valve portion 25b of the valve body 25 is sunk into the accommodating space S. In the case where the accommodating space S is formed so as to have a circular arc shape extending along the path of operation of the secondary valve portion 25b, a foreign object contained in the intake air flow may adhere thereto to compromise a smooth operation, but because the accommodating space S is formed by partially cutting out the bottom plate 23, smooth operation of the valve body 25 is achieved in the intake control device of the present invention.
(37) Particularly, as a result of forming, in the secondary valve portion 25b, the protruding portion 28 that is brought closer to the stepped portion 23a in the accommodating space S when the valve body 25 is set to the restriction position, it is possible to eliminate the disadvantage of the air flowing into the gap between the secondary valve portion 25b and the accommodating space S, without compromising the smooth operation of the valve body 25.
(38) Also, because the valve body 25 is supported so as to be capable of swinging via the shaft 27 with respect to the sleeve Ha of the holder H, in a state in which the holder H is fitted into the branch Mb of the intake manifold M, the valve body 25 can be supported with high accuracy with respect to the inside of the branch Mb via the sleeve Ha, and thus the intake air flow is suitably restricted when the valve body 25 is set to the restriction position.
(39) [Other Embodiments]
(40) Besides the embodiment described above, the present invention may be configured as follows.
(41) (a) As shown in
(42) In this way, when a plurality of seal portions (the protruding portion 28 and the secondary protruding portion 29) are formed, regardless of whether the valve body 25 is set to the restriction position or the intermediate position, the disadvantage of the intake air flow flowing via the accommodating space S can be restricted, and an appropriate tumble flow can be made by the valve body 25.
(43) In particular, the present invention may be configured such that the valve body 25 is set to the restriction position, the intermediate position, and other positions, and three or more seal portions may be formed as seal portions so as to cope with these positions.
(44) (b) As shown in
(45) (c) The cross sections of the branch Mb and the sleeve Ha are not limited to a rectangular shape, and they may have, for example, an oval or elliptic cross section.
INDUSTRIAL APPLICABILITY
(46) The present invention is applicable to an intake manifold provided with a valve body that controls the opening area of an intake passage.
REFERENCE SIGNS LIST
(47) 23a Stepped Portion
(48) 25 Valve Body
(49) 25a Main Valve Portion
(50) 25b Secondary Valve Portion
(51) 27 Shaft
(52) 28 Seal Portion (Protruding Portion)
(53) 29 Secondary Seal Portion (Secondary Protruding Portion)
(54) Ha Sleeve
(55) M Intake Manifold
(56) S Accommodating Space