This application claims the benefit of priority under 35 U.S.C. §119 of German Patent Application DE 10 2009 015 625.9 filed Apr. 2, 2009, the entire contents of which are incorporated herein by reference.
The present invention pertains to a process for manufacturing an exhaust gas treatment device for an exhaust system of an internal combustion engine. Moreover, the present invention pertains to an exhaust gas treatment device for an exhaust system of an internal combustion engine. Furthermore, the present invention also pertains to a kit for manufacturing an exhaust gas treatment device.
An exhaust gas treatment device, such as, e.g., a particle filter, a catalytic converter, an exhaust muffler or any combinations thereof, used in motor vehicles, usually has a housing, which has a jacket on the peripheral side and a bottom on each end side. Furthermore, it is usual to design at least one connection, namely an exhaust gas inlet or an exhaust gas outlet, on at least one of these end-side bottoms.
For different installation situations, which may vary greatly in case of different vehicle models or embodiments, it is necessary to be able to mount the respective exhaust gas treatment device with different spatial positions. For example, different angles between a longitudinal central axis of the housing and supplying or discharging gas lines have to be created for this.
For this, it is possible, e.g., to design the respective bottom as a funnel, which is made integral with a corresponding connecting branch, whereby a longitudinal central axis of the respective connecting branch can correspondingly be sloped opposite the longitudinal central axis of the housing. To now be able to create a plurality of different supply angles or discharge angles, a corresponding number of funnels with matching configurations has to be provided. This is connected with a considerable expense for tools and storage as well as logistics.
The present invention pertains to the object of providing an exhaust gas treatment device of the type mentioned in the introduction that especially makes possible a simplified manufacture and thus a low-cost production.
According to one aspect of the invention, a process is provided for manufacturing an exhaust gas treatment device for an exhaust system of an internal combustion engine. The process comprises providing the exhaust gas treatment device with a housing having a jacket on a peripheral side and at least one bottom on an end side and manufacturing at least one such bottom as a spherical or spherical segment-shaped hood. A connection opening is provided in the hood. The process further includes attaching a connecting branch to the hood in the area of the connection opening.
According to another aspect of the invention, an exhaust gas treatment device is provided for an exhaust system of an internal combustion engine. The exhaust gas treatment device comprises a housing with a jacket and at least one bottom on an end side. The at least one bottom comprises a spherical or spherical segment-shaped hood. The hood has a connection opening. A connecting branch is attached to the hood in the area of the connection opening.
The present invention is based on the general idea of designing at least one of the end-side bottoms of the housing as a hood, which has a spherical shape or a spherical segment shape. This especially is a hemispherical hood provided with a connection opening, e.g., by means of a corresponding tool in more or less any spatial position. A standardized connecting branch may then be attached to this connection opening in an especially simple manner and be connected to the hood. In this way, more or less any spatial alignment of the connecting branch with regard to the longitudinal central axis of the housing, which axis is designed individually for the respective installation situation, may be achieved by means of only two standard components, namely the hood and the connecting branch. Thus, the suggested mode of construction makes it possible to be able to adapt exhaust gas treatment device cost-effectively to highly varying installation situations.
On its connecting end facing the hood, the respective connecting branch may preferably be shaped in a complementary manner to the outer contour of the hood. Consequently, a flat contact can be produced between connecting branch and hood. For example, on its connecting end, the connecting branch is equipped with an annular, circumferential, spherical-segment-shaped collar, which has a shape matching the spherical or spherical segment shape of the hood. Such a shaping simplifies the assembly and at the same time makes possible a simple tolerance compensation.
The connecting end of the connecting branch facing the hood may lie in a plane, which runs at right angles to the longitudinal central axis of the connecting branch. Likewise, an embodiment is possible, in which the connecting end of the connecting branch lies in a plane, which runs sloped, e.g., by about 45°, opposite a normal plane running at right angles to the longitudinal central axis of the connecting branch. By means of such oblique or sloped connecting branches, it is especially possible to create an angle of 90° between the longitudinal central axis of the connecting branch and the longitudinal central axis of the housing.
A collar is made integral with the hood, by means of which the hood can be detachably fastened to the jacket via a clamp connection.
At least one jacket type, by means of which the respective jacket of the respective housing can be manufactured, at least one hood type without connection opening and matching the respective type of jacket, as well as one connecting branch type matching the respective hood are found within a kit according to the present invention, by means of which the exhaust gas treatment device according to the present invention can be manufactured or by means of which the process according to the present invention for manufacturing the exhaust gas treatment device can be carried out. It is clear that jacket types, hood types and connecting branch types of different sizes may also be provided for exhaust gas treatment device of different sizes.
Further important features and advantages of the present invention appear from the subclaims, from the drawings and from the corresponding description of the figures on the basis of the drawings.
It is obvious that the above-mentioned features, which will also be explained below, can be used not only in the particular combination indicated, but also in other combinations or alone without going beyond the scope of present invention.
Preferred exemplary embodiments of the present invention are shown in the drawings and will be explained in more detail in the following description, where identical reference numbers designate identical or similar or functionally identical components. The various features of novelty which characterize the invention are pointed out with particularity in the claims annexed to and forming a part of this disclosure. For a better understanding of the invention, its operating advantages and specific objects attained by its uses, reference is made to the accompanying drawings and descriptive matter in which preferred embodiments of the invention are illustrated.
In the drawings:
a is a longitudinal cross sectional view through a hood showing one of various variants;
b is a longitudinal cross sectional view through a hood showing another of various variants;
c is a longitudinal cross sectional view through a hood showing another of various variants;
a is a view of a connecting branch;
b is a view of another connecting branch;
c is a view of a housing in a stage of a manufacturing process;
a is a view of a connecting branch;
b is a view of another connecting branch;
c is a view of a housing in a further stage of a manufacturing process as compared to
a is a view of a connecting branch;
b is a view of another connecting branch connected to a hood; and
c is a view of a housing in a stage of a manufacturing process showing the connecting branch connected to the hood;
Referring to the drawings in particular, according to
The internal combustion engine, e.g., a diesel engine or spark ignition engine, can likewise be used in vehicles, in road vehicles, in construction vehicles, in so-called non-road vehicles, as well as in watercraft, i.e., in boats, as in stationary means, such as, e.g., block-type thermal power stations or constructions machines or generators.
The exhaust gas treatment device 1 may be designed, e.g., as a particle filter means. The exhaust gas treatment element 5 is correspondingly then a particle filter element. As an alternative, the exhaust gas treatment device 1 may also be a catalytic converter means, so that the exhaust gas treatment element 5 is then a catalytic converter element. Combined means, in which, e.g., an oxidation catalytic converter element is arranged upstream of a particle filter element, are likewise conceivable.
At least one of the bottoms 7, the bottom 7 shown here, is designed as a hood 8 that has a spherical or spherical segment shape. In the examples shown, the hood 8 has a hemispherical shape. The hemispherical hood 8 is attached to the jacket 4 in the area of its “equator.” Furthermore, the hood has a connection opening 9, which passes through hood 8 and which can be used as an inlet opening or as an outlet opening for exhaust gas in the finished state of the exhaust gas treatment device 1. Moreover, a connecting branch 10 (
The respective connecting branch 10, 11 may have a linear configuration. Correspondingly, it has a linear longitudinal central axis 13.
In the embodiment shown in
In contrast,
a, 3b and 3c show three embodiments of the hood 8 in a complementary manner. The hood 8 shown in
A kit according to the present invention is designated globally as 20 in
A process for manufacturing the exhaust gas treatment device 1 is explained in detail below on the basis of
At first, according to
As soon as the angle to be created between the longitudinal central axis 3 of the housing 2 and the longitudinal central axis 13 of the respective connecting branch 10, 11 is established, the connection opening 9 is made on a point of the hood 8 suitable for this, the state of which is shown in
The matching connecting branch, here the linear connecting branch 10 corresponding to
In the example shown the hood 8 is already in a state, in which it still does not have a connection opening 9, attached to the jacket 4. It is clear that the hood 8 may also be attached to the jacket 4 at a later point in time, especially after the manufacture of the connection opening 9 and/or after the attachment of the respective connecting branch 10, 11.
In the connection of hood 8 and jacket 4, the usual manufacturing methods may be considered, and especially also a downsizing or compression of the jacket 4 within the framework of the canning process, in which the respective exhaust gas treatment insert 5 is inserted into the jacket 4 and in which the respective jacket 4 is adapted to the dimensions of the respective exhaust gas treatment insert 5.
It is clear that the individual features of the different embodiments shown here may be combined with one another in any way as well in order to achieve mixed or new embodiments.
While specific embodiments of the invention have been described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.
Number | Date | Country | Kind |
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10 2009 015 625.9 | Apr 2009 | DE | national |