The present invention relates to an exhaust gas recirculation valve that is fitted to an attachment unit to be communicated with an exhaust gas circulation passage of an internal combustion engine, and that has an exhaust gas passage to be communicated with the exhaust gas circulation passage, and relates to the exhaust gas recirculation valve having a water-cooling circuit for cooling the exhaust gas flowing through the exhaust gas passage, and an attaching system of the valve.
In a drop-in type of exhaust gas recirculation (EGR: Exhaust Gas Recirculation) valve that is fitted to an attachment unit to be communicated with an exhaust gas circulation passage of an internal combustion engine (engine) and that has an exhaust gas passage to be communicated with the exhaust gas circulation passage to control the amount of exhaust gas flowing through the exhaust gas passage, a high-temperature exhaust gas flows in through the exhaust gas passage when part of the exhaust gas exhausted from the engine is recirculated. However, a guaranteed heat resistant temperature is provided for main parts of the EGR valve, and thus, when the high-temperature exhaust gas flows therein, it is required to meet the guaranteed heat resistant temperature.
Therefore, in order to protect the main parts of the EGR valve from heat, as shown in
In order to protect the main parts of the EGR valve from heat, it is contemplated to dispose the water-cooled circuit in the vicinity of the main parts. However, in the drop-in type of EGR valve, a drop-in portion of the EGR valve is fitted in an attaching hole of an attachment unit, and thus, it is difficult to dispose the water-cooled circuit in the drop-in portion; therefore, when the main parts are disposed at the drop-in portion, it could not be achieved to produce a sufficient cooling effect on the high-temperature exhaust gas flowing through the exhaust gas passage.
Therefore, there is known an EGR valve in which a water-cooled circuit is formed in an attachment unit to which a drop-in portion of the EGR valve is fitted, as measures for cooling the drop-in portion (for example, see Patent Document 1). In Patent Document 1, it is configured that the water-cooled circuit is established around an attaching hole formed in the attachment unit, and that cooling water is flowed into the water-cooled circuit to thereby produce a cooling effect on even the drop-in portion of the EGR valve fitted to the attachment unit.
Patent Document 1: Republication Patent WO99/57428
However, as disclosed in Patent Document 1, for example, under a condition where a high-temperature exhaust gas is merely cooled insufficiently by the attachment unit in which the water-cooled circuit is formed, it is required that as shown in
Furthermore, in the EGR valve shown in
The present invention has been made to solve the above-mentioned problems, and an object of the invention is to provide an exhaust gas recirculation valve and an attaching system thereof such that in a drop-in type of EGR valve, a cooling effect in main parts and a drop-in portion of the EGR valve can be further enhanced.
An attaching system of an exhaust gas recirculation valve of the invention includes: an attachment unit to be communicated with an exhaust gas circulation passage of an internal combustion engine; and an exhaust gas recirculation valve that is fitted to the attachment unit and that has an exhaust gas passage to be communicated with the exhaust gas circulation passage, wherein the exhaust gas recirculation valve has a water-cooled passage to be communicated with another water-cooled passage for cooling the exhaust gas passage provided with the attachment unit, when fitted to the attachment unit.
According to the invention, with the above-described configuration, when the exhaust gas recirculation valve is fitted to the attachment unit, a water-cooled circuit is formed in such a manner that the water-cooled passage formed on the side of the EGR valve and the water-cooled passage formed on the side of the attachment unit are communicated and integrated with each other, thereby cooling the whole exhaust gas passage; therefore, main parts and a drop-in portion of the EGR valve can be further efficiently cooled. Further, when the water-cooled passage on the side of EGR valve is communicated with the water-cooled passage on the side of the attachment unit, a nipple for connecting a cooling water hose that is conventionally employed in an EGR valve becomes unnecessary; thus, greater flexibility in the shape and disposition of the water-cooled passage is achieved, and further, the cooling effect can be enhanced.
a) is a front view showing a configuration of a conventional EGR valve,
An embodiment of the present invention will next be described in detail by reference to the drawings.
As shown in
In the EGR valve 1, as shown in
Hereupon, when the EGR valve 1 is fitted to the attachment unit 2, a protrusive portion 10 is a part not to be buried therein, while when the EGR valve 1 is fitted to the attachment unit 2, a drop-in portion 11 is a part to be buried therein.
In addition, in the protrusive portion 10 of the EGR valve 1, a water-cooled passage 12 having an opening on the abutting surface with the attachment unit 2 is formed in an annulus ring shape to enclose a bearing area 24 including the bearing 6, and is communicated with a water-cooled passage 15 formed in the attachment unit 2 (discussed later), when the EGR valve 1 is fitted to the attachment unit 2.
On the other hand, in the attachment unit 2, as shown in
Further, in the attachment unit 2, a water-cooled passage 15 having an opening on the abutment surface with the EGR valve 1 is formed in an annulus ring shape to enclose the exhaust gas passage 4 of the EGR valve 1 fitted in the attaching hole 13, and is communicated with the water-cooled passage 12 formed in the EGR valve 1, when the EGR valve 1 is fitted therein. Note that in the water-cooled passage 15, as shown in
The drop-in portion 11 of the EGR valve 1 configured above is inserted into the attaching hole 13 of the attachment unit 2, which is fastened with screws, thus fitting the EGR valve 1 to the attachment unit 2. In such a way, when an attaching system of the EGR valve 1 is configured, as shown in
Hereupon, the water-cooled passage 15 of the attachment unit 2 is formed in an annulus ring shape as shown in
Therefore, as shown in
However, as shown in
Moreover, though as shown in
As described above, according to the first embodiment in the present invention, it is configured that the water-cooled passages 12, 15 having the openings in the EGR valve 1 and the attachment unit 2, respectively, are formed to enclose the bearing area 24 including the bearing 6 and the exhaust gas passage 4, and that when the EGR valve 1 is fitted to the attachment unit 2, the water-cooled circuit 18 is formed in such a manner that the respective water-cooled passages 12, 15 are communicated and integrated with each other; thus, the bearing area 24 including the bearing 6 of the EGR valve 1 and the whole exhaust gas passage 4 can be cooled, and the main parts and the drop-in portion 11 of the EGR valve 1 can be efficiently cooled.
Also, when the water-cooled circuit 18 is formed in such a manner that the water-cooled passage 12 on the side of the EGR valve 1 is communicated and integrated with the water-cooled passage 15 on the side of the attachment unit 2, a cooling water hose and a nipple for connecting the cooling water hose that are provided in the water-cooled circuit of a conventional EGR valve become unnecessary, thereby reducing the number of the parts and performing a downsizing thereof. Moreover, since the process of an additional work on the water-cooled circuit, and the process of press-fitting a nipple thereinto to be carried out upon the attachment of the nipple can be eliminated, the cost can be reduced, and the fraction defective of the products can be also reduced.
Besides, when the nipples in the EGR valve 1 are not employed, the water-cooled circuit 18 can be formed in a variety of shapes like the annulus ring shape, the rib structure 23, and so on, which is not limited to a straight shape like the water-cooled circuit of the conventional EGR valve, and when there exists the stagnation portion 21 in the water-cooled circuit 18, the additional water passage 22 can be added thereto, further enhancing the cooling effect.
The EGR valve and attaching system thereof the present invention can efficiently cool the main parts and the drop-in portion of the EGR valve, having the exhaust gas passage that is fitted to the attachment unit to be communicated with an exhaust gas circulation passage of an engine to be communicated with the exhaust gas circulation passage, are suitable for use in a drop-in type EGR valve, and an attaching system thereof for controlling the amount of exhaust gas flowing through the exhaust gas passage, and so on.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2009/006197 | 11/18/2009 | WO | 00 | 3/13/2012 |