The present invention relates to an intake manifold for an internal combustion engine.
In the intake manifold of an internal combustion engine, an internal passage is largely curved into a substantially C-shape, for instance, as recited in Patent Literature 1, so as to ensure a predetermined path length with which an inertial supercharging effect can be obtained while reducing a size of the intake manifold. Therefore, a lower surface side of the intake manifold which is located on a lower side in an assembled state of the intake manifold relative to an engine body may be formed into a curved shape.
Patent Literature 1: Japanese Patent Application Unexamined Publication No. 2011-220299 A
In a case where the lower surface side of the intake manifold is formed into a curved shape as described above, when the intake manifold is placed on a floor surface in such a manner that the lower surface side is directed downwardly, a setting ability (stability) of the intake manifold is poor so that the intake manifold may easily tumble down (fall down). Once the intake manifold tumbles down, the intake manifold may cause any damage to components disposed in the vicinity of the lower surface of the intake manifold. Further, upon assembling the intake manifold to the engine body, a worker must perform an additional work to direct the intake manifold toward a mount attitude, so that the working efficiency is deteriorated.
The present invention has been made in consideration of the above circumstances. An object of the present invention is to provide a novel intake manifold that has a curved shape on a lower surface side thereof but can be stably placed on a floor surface or the like in such a state that the lower surface side is directed downwardly.
Accordingly, in the present invention, there are provided a support bracket and a projection which downwardly project from a curved lower surface of an intake manifold. The support bracket and the projection are arranged in an opposed relation to each other with respect to a center of gravity of the intake manifold when viewed from a longitudinal direction in which a plurality of intake branches are arranged in parallel to one another. In addition, the support bracket serves as a boss portion for a fixture that fastens an engine body and the intake manifold to each other.
Therefore, when the intake manifold is placed on a flat surface of a floor such that the lower side of the intake manifold is directed downwardly, the support bracket and the projection arranged in the opposed relation to each other with the center of gravity serve as legs so that the intake manifold can be stably self-supported without tumbling down.
According to the present invention, notwithstanding that an intake manifold has a curved shape on a lower surface side thereof, the intake manifold can be stably placed on a flat surface of a floor or the like in such a state that the lower surface side of the intake manifold is directed downwardly. Accordingly, it is possible to prevent the intake manifold from tumbling down and suppress interference between the floor surface and the components. In addition, when assembling the intake manifold to the engine body, a worker can be prevented from performing an additional work to direct the intake manifold toward a mount attitude. As a result, the working efficiency can be enhanced. Further, since the support bracket for self-supporting the intake manifold serves as a boss portion far a fixture that fastens the engine body and the intake manifold to each other, a configuration of the intake manifold can be simplified.
In the following, intake manifold 10 according to an embodiment of the present invention will be explained by referring to accompanying drawings. Intake manifold 10 is formed by connecting a plurality of parts made by injection molding a synthetic resin material. Intake manifold 10 includes a plurality of intake branches 11 (in this embodiment, four branches) arranged in parallel to one another along a longitudinal direction L1 that is a direction of a row of engine cylinders (see
Mounted to intake air introduction port 14 is throttle chamber 15 having a throttle valve (see
Since the internal path of intake manifold 10 is largely curved into the generally C shape as described above, intake manifold 10 has lower surface 22 in a vertical direction in an assembled state in which intake manifold 10 is assembled to cylinder head 12 and cylinder block 13 (that is, the engine body), the lower surface 22 being largely curved into an arcuate shape as a whole. In addition, in this embodiment, there are provided support bracket 23 and projections 24 which project downwardly from curved lower surface 22. Support bracket 23 and projections 24 are arranged in an opposed relation to each other with respect to center of gravity 25 positioned substantially at a center of intake manifold 10 when viewed in longitudinal direction L1 (see
Support bracket 23 is formed integrally with half-split part 26 that constitutes an outer peripheral side of a lower left portion of respective intake branches 11 as shown in
Projections 24 are formed integrally with half-split part 32 that constitutes an outer peripheral side of a right portion of respective intake branches 11 as shown in
As shown in
In
Incidentally, it is also considered that intake manifold 10 is placed on a floor surface or the like such that the above-described flat branch opening surface 33A is downwardly directed. In this case, a worker must perform an additional work to direct intake manifold 10 toward the mount attitude, so that the working efficiency is reduced as compared to the construction of intake manifold 10 according to the present embodiment.
Further, as shown in
Further, support bracket 23 for self-supporting intake manifold 10 also serves as a boss portion for a fixture that fastens the engine body and intake manifold 10 to each other. In addition, projections 24 also serve as fixing portions for holding and fixing cooling water pipes 34, 35. With the provision of support bracket 23 and projections 24, the configuration of intake manifold 10 can be simplified and rationalized.
Furthermore, as shown in
Although the present invention has been explained above on the basis of the specific embodiment, the present invention is not limited to the above embodiment and may include various modifications and changes. For instance, the number of the support bracket and the projections is not limited to the above embodiment, and the projections may be provided in three or more portions. Further, in the above embodiment, the cooling water pipes are held by the fixing portion, but an oil pipe, an electrical wire, etc. may be held by the fixing portion.
Number | Date | Country | Kind |
---|---|---|---|
2012-139269 | Jun 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2013/060843 | 4/10/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2013/190883 | 12/27/2013 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
7124727 | Kogawa | Oct 2006 | B2 |
20070044754 | Peffley | Mar 2007 | A1 |
Number | Date | Country |
---|---|---|
61-184858 | Nov 1986 | JP |
3-106163 | Nov 1991 | JP |
2011-220299 | Nov 1991 | JP |
Number | Date | Country | |
---|---|---|---|
20150114335 A1 | Apr 2015 | US |