This is a 371 national phase application of PCT/JP2010/056248 filed 06 Apr. 2010, the contents of which are incorporated herein by reference.
The present invention relates to a catalytic converter comprising a catalyst support which produces heat when electric current is applied.
There is known a catalytic converter which has a catalyst support made of an electrically-conductive material such as metal or silicon carbide (SiC) and supports a catalyst. In the catalytic converter, the catalyst is warmed up by heat which is produced when the electric current is applied to the catalyst support. In such catalytic converter, a case which houses the catalyst support and the catalyst support are insulated with each other so that the case and the catalyst support do not short-circuit. For example, there is known a catalytic converter which is housed and held in a cylindrical case via a mat covering an outer circumference of a metallic catalyst support, the mat being made of a ceramic material which is consisted primarily of ceramic fiber or the like (see patent literature 1). In addition, there are Patent Literatures 2, 3 as prior art references in relation to the present invention.
Patent Literature 1: JP-A-04-171214
Patent Literature 2: JP-A-2009-189921
Patent Literature 3: JP-A-2008-267157
In the catalytic converter of the patent literature 1, there is insulated between the case and the support by the ceramic mat. However, since the mat is composed of ceramic fiber, water gets through an inside of the mat. That is, the mat has a water-absorbing property. When the mat absorbs water, an insulation resistance of the mat is decreased and there is a possibility that the support and the case make electrical contacts with each other.
In view of the foregoing, an object of the present invention is to provide an electrically-heated catalytic converter which can ensure an insulation between a catalyst support and a case even if a holding member which lies between the catalyst support and the case absorbs water.
An electrically-heated catalytic converter of the present invention comprises a catalyst support which produces heat when electric current is applied, a holding member made of an electrical insulating material, the holding member being provided so as to cover an outer circumference of the catalyst support, and a case which houses the catalyst support and holds the catalyst support via the holding member, wherein gas flowing in the case is treated by a catalyst supported on the catalyst support, wherein the holding member has a water-absorbing property, and an insulation layer made of an electrical insulating material is provided between the case and the holding member.
According to the catalytic converter of the present invention, it is possible to prevent the catalyst support and the case from connecting electrically to each other by the insulation layer even if the holding member absorbs water and the insulation resistance of the holding member is decreased. Thereby, it is possible to ensure the insulation between the catalyst support and the case.
In one embodiment of the catalytic converter of the present invention, a water absorption layer made of a material having a water-absorbing property may be provided between the catalyst support and the holding member. In this case, since water in the holding member is absorbed to the water absorption layer, it is possible to decrease a quantity of water in the holding member. Thereby, it is possible to suppress decreasing of the insulation resistance of the holding member.
In this embodiment, the water absorption layer may have a higher water absorbing property than the holding member. In this case, it is possible to facilitate the movement of the water from the holding member to the water absorption layer. Thereby, it is possible to further suppress decreasing of the insulation resistance of the holding member.
In one embodiment of the catalytic converter of the present invention, the case may be provided with a water interception member which has a penetrating hole which the gas passes through and is located on an upper stream side of a gas flow direction than the catalyst support so as to hide the holding member when an inside of the case is viewed from the upper stream side of the gas flow direction. In this case, it is possible to stop water by the water interception member even if water comes along an inner surface of the case from the upper stream side of the gas flow direction. Thereby, it is possible to suppress the water from reaching the insulation layer and the holding member. Since it is possible to suppress water from absorbing to the holding member, it is possible to decreasing of a quantity of water in the holding member. Accordingly, it is possible to further suppress decreasing of the insulation resistance of the holding member.
In this embodiment, the water interception member may be made of a material having a water-absorbing property. In this case, water which is stopped by the water interception member is absorbed to the water interception member. Thereby, it is possible to further suppress the water from reaching the insulation layer and the holding member.
The catalyst support which is provided in the catalytic converter of the present invention is enough as long as the catalyst support is made of a material which produces heat when electric current is applied. For example, the catalyst support may be made of silicon carbide.
(First Embodiment)
An outer circumference of the catalyst support 2 is provided with a holding mat 4 as a holding member. As shown in
An insulation layer 5 is provided between the case 3 and the holding mat 4 around the entire circumference in a circumferential direction. The insulation layer 5 is composed of an electric insulating material that water is not absorbed, in other words, water is not penetrated. As the electric insulating material like this, for example, an electric insulating material including glass components is used.
The catalyst support 2 is provided with a pair of electrode terminals 6, 6 so as to be faced each other across the catalyst support 2. One electrode terminal 6 is connected to a positive electrode of an electric battery (not shown), and the other electrode terminal 6 is connected to a negative electrode of the electric battery. A cover 7 which is made of an electric insulating material is provided around each electrode terminal 6 so that the electrode terminal 6 is insulated from the case 3, the holding mat 4, and the insulation layer 5.
In the catalytic converter 1A, electric current is applied to the catalyst support 2 in order to warm up the catalyst which is supported on the catalyst support 2. As described above, since the catalyst support 2 is made of silicon carbide, the catalyst support 2 produces heat when the electric current is applied to the catalyst support 2. Thereby, the catalyst is warmed up by the heat. The catalytic converter 1A is configured as an electrically-heated catalytic converter in this manner. The catalyst of the catalytic converter like this is called an EHC (electrically heated catalyst).
Next, a movement of water in the catalytic converter 1A will be described with reference to
As described above, the catalyst support 2 has a higher water absorbing property than the holding mat 4. Furthermore, the water absorbed to the catalyst support 2 turns into water vapor and is discharged to the downstream. Thereby, an absorbed quantity of water of the catalyst support 2 becomes less than an absorbed quantity of water of the holding mat 4. The insulation layer 5 which prevents water penetration is provided between the holding mat 4 and the case 3. Thereby, the water absorbed to the holding mat 4 moves to the catalyst support 2. The water turns into water vapor and is discharged to the downstream as with the water absorbed to the catalyst support 2.
As described above, in the catalytic converter 1A according to the first embodiment, since the insulation layer 5 is provided between the holding mat 4 and the case 3, it is possible to prevent the catalyst support 2 and the case 3 from connecting electrically to each other even though the holding mat 4 absorbs the water and the insulation resistance of the holding mat 4 is decreased. Furthermore, in the catalytic converter 1A, since it is possible to move the water absorbed to the holding mat 4 to the catalyst support 2 quickly, it is possible to suppress decreasing of the insulation resistance of the holding mat 4. Thereby, it is possible to ensure the insulation between the catalyst support 2 and the case 3 even though the holding mat 4 absorbs the water.
(Second Embodiment)
A catalytic converter 1B according to a second embodiment of the present invention will be described with reference to
The water absorption layer 10 is composed of a porous shaped material having a water-absorbing property. The water absorption layer 10 is provided by an evaporation coating of the material to the holding mat 4. A material which has a higher water absorbing property than the material composing the holding mat 4 is used to the material composing the water absorption layer 10. Thereby, the water absorption layer 10 has a higher water absorbing property than the holding mat 4.
A movement of water in the catalytic converter 1B will be described with reference to
In the catalytic converter 1B according to the second embodiment, since the water absorption layer 10 which has a higher water absorbing property than the holding mat 4 is provided between the catalyst support 2 and the holding mat 4, the water in the holding mat 4 moves to the water absorption layer 10 quickly. Thereby, it is possible to facilitate the movement of the water from the holding mat 4 to the catalyst support 2. Accordingly, it is possible to further suppress decreasing of the insulation resistance of the holding mat 4.
(Third Embodiment)
A catalytic converter 1C according to a third embodiment of the present invention will be described with reference to
The water interception wall 20 is formed of an annular shape. A penetrating hole 20a is provided in the center of the water interception wall 20. The exhaust gas passes through the penetrating hole 20a and flows into the catalyst support 2. As shown in
As shown in
In the catalytic converter 1C according to the third embodiment, since the water interception wall 20 is provided on the upstream side of the catalyst support 2, the condensed water CW1, CW2 is hard to reach the holding mat 4. Thereby, absorption of the condensed water CW1, CW2 to the holding mat 4 is suppressed. And, it is possible to decrease a quantity of water in the holding mat 4. Accordingly, it is possible to further suppress decreasing of the insulation resistance of the holding mat 4. Furthermore, since the space 21 is provided between the water interception wall 20 and the catalyst support 2, it is possible to prevent the water of the water interception wall 20 from contacting to the catalyst support 2, the holding mat 4, and the insulation layer 5. Thereby, it is possible to prevent the catalyst support 2 and the case 3 from connecting electrically to each other by the water of the water interception wall 20.
In the third embodiment, the water absorption layer 10 may not be provided between the catalyst support 2 and the holding mat 4. Furthermore, the water interception wall 20 may be made of a material not having a water-absorbing property such as metal.
The present invention is not limited to the above-described embodiments, and may be executed in various modes. For example, a catalytic converter which is applied to the present invention is not limited to a catalytic converter having a catalyst support made of silicon carbide. The present invention may be applied to various kinds of catalytic converters having a catalyst support made of a material which produces heat when electric current is applied such as a metallic catalyst support. Furthermore, a catalytic converter which the present invention is applied to is not limited to a catalytic converter for purifying exhaust gas of an internal combustion engine. The present invention may be applied to various kinds of catalytic converters that gas flows in a case and the gas is treated by a catalyst supported on a catalyst support.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2010/056248 | 4/6/2010 | WO | 00 | 10/1/2012 |
Publishing Document | Publishing Date | Country | Kind |
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WO2011/125177 | 10/13/2011 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5070694 | Whittenberger | Dec 1991 | A |
20090060800 | Fernandes, Jr. | Mar 2009 | A1 |
20110023430 | Kumar et al. | Feb 2011 | A1 |
Number | Date | Country |
---|---|---|
101821488 | Sep 2010 | CN |
02-027107 | Jan 1990 | JP |
03-245851 | Nov 1991 | JP |
04-171214 | Jun 1992 | JP |
5-96423 | Dec 1993 | JP |
2001-098928 | Apr 2001 | JP |
2002-349245 | Dec 2002 | JP |
2004-183501 | Jul 2004 | JP |
2008-267157 | Nov 2008 | JP |
2009-189921 | Aug 2009 | JP |
2010-209699 | Sep 2010 | JP |
2010-242724 | Oct 2010 | JP |
2010-270653 | Dec 2010 | JP |
2011-241751 | Dec 2011 | JP |
2012-072665 | Apr 2012 | JP |
2012-107567 | Jun 2012 | JP |
Entry |
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International Search Report mailed May 18, 2010 of PCT/JP2010/056248. |
Number | Date | Country | |
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20130025267 A1 | Jan 2013 | US |