Claims
- 1. A manifold catalytic converter comprising:a ceramic substrate having a catalytic coating thereon; said ceramic substrate having a front face, rear face and an outer surface connecting said faces; a single piece integral casting comprising a manifold, first converter end, shoulder, lip, and shell; said first converter end immediately adjacent said manifold, said first converter end being defined in part by a wall that expands from a first end connected to the manifold toward a second end, said wall having an inside surface in fluid communication with said manifold and said ceramic substrate; said shoulder being formed at the second end, said shoulder being constructed and arranged to engage the front face of the ceramic substrate; said lip extending from the shoulder and surrounding a portion of the outer surface of the ceramic substrate immediately adjacent both the front face and the portion of the outer surface of the ceramic substrate; said shell extending from the lip to house said substrate, said shell being spaced a distance from the outer surface of the ceramic substrate; a resilient mat positioned between the shell and the ceramic substrate; and wherein the shoulder and lip are positioned to prevent high pressure and high vibration exhaust flows from impinging on the resilient mat and prevent the mat from eroding; and a second converter end secured to the shell.
- 2. A manifold catalytic converter as set forth in claim 1 wherein said second converter end comprises a pair of spaced apart walls for receiving a portion of said shell therebetween.
- 3. A manifold catalytic converter comprising:a ceramic substrate having a catalytic coating thereon; said ceramic substrate having a front face, rear face and an outer surface connecting said faces; a single piece integral casting comprising a manifold, first converter end, shoulder, lip and shell; said first converter end being immediately adjacent said manifold, said first converter end being defined in part by a wall that expands from a first end connected to the manifold toward a second end, said wall having an inside surface in fluid communication with said manifold and said ceramic substrate; said shoulder being formed at the second end, said shoulder being constructed and arranged to engage the front face of the ceramic substrate; said lip extending from the shoulder and surrounding a portion of the outer surface of the ceramic substrate immediately adjacent both the front face and the portion of the outer surface of the ceramic substrate; said shell extending from the lip to house said substrate, said shell being spaced a distance from the outer surface of the ceramic substrate; and a resilient mat positioned between the shell and the ceramic substrate.
- 4. A manifold catalytic converter as set forth in claim 3 further comprising a second converter end comprises a pair of spaced apart walls for receiving a portion of said shell therebetween.
- 5. A manifold catalytic converter as set forth in claim 3 wherein the said first end of the wall is narrower than said second end.
- 6. A manifold catalytic converter comprising:a ceramic substrate having a catalytic coating thereon; said ceramic substrate having a front face, rear face and an outer surface connecting said faces; a single piece integral casting comprising a manifold, first converter end, shoulder and lip; said first converter end immediately adjacent said manifold, said first converter end being defined in part by a wall that expands from a first end connected to the manifold toward a second end, said wall having an inside surface in fluid communication with said manifold and the ceramic substrate; said shoulder being formed at the second end, said shoulder being constructed and arranged to engage the front face of the ceramic substrate; and said lip extending from the shoulder and surrounding a portion of the outer surface of the ceramic substrate immediately adjacent both the front face and the portion of the outer surface of the ceramic substrate.
- 7. A manifold catalytic converter comprising:a ceramic substrate having a catalytic coating thereon; said ceramic substrate having a front face, rear face and an outer surface connecting said faces; a single piece integral casting comprising a manifold, first converter connecting section, shoulder, lip, and shell; said first converter connecting section immediately adjacent said manifold, said first converter connecting section being defined in part by a wall that expands from a first end connected to the manifold toward a second end, said wall having an inside surface in fluid communication with said manifold and said ceramic substrate; said shoulder being formed on the inside surface of the wall, said shoulder being constructed and arranged to engage the front face of the ceramic substrate; said lip extending from the shoulder and surrounding a portion of the outer surface of the ceramic substrate immediately adjacent both the front face and the portion of the outer surface of the ceramic substrate; said shell extending from the lip to house said substrate, said shell being spaced a distance from the outer surface of the ceramic substrate; a resilient mat positioned between the shell and the ceramic substrate; and wherein the shoulder and lip are positioned to prevent high pressure and high vibration exhaust flows from impinging on the resilient mat and prevent the mat from eroding; and a second connecting section secured to the shell.
- 8. A manifold catalytic converter as set forth in claim 7 wherein said second connecting section comprises a pair of spaced apart walls for receiving a portion of said shell therebetween.
- 9. A manifold catalytic converter comprising:a ceramic substrate having a catalytic coating thereon; said ceramic substrate having a front face, rear face and an outer surface connecting said faces; a single piece integral casting comprising a manifold, first converter end, shoulder, lip, and shell; said first converter end immediately adjacent said manifold, said first converter end being defined in part by a wall that expands from a first end connected to the manifold toward a second end, said wall having an inside surface in fluid communication with said manifold and said ceramic substrate; said shoulder being formed inside the wall, said shoulder being constructed and arranged to engage the front face of the ceramic substrate; said lip extending from the shoulder and surrounding a portion of the outer surface of the ceramic substrate immediately adjacent both the front face and the portion of the outer surface of the ceramic substrate; said shell extending from the lip to house said substrate, said shell being spaced a distance from the outer surface of the ceramic substrate; a resilient mat positioned between the shell and the ceramic substrate; and wherein the shoulder and lip are positioned to prevent high pressure and high vibration exhaust flows from impinging on the resilient mat and prevent the mat from eroding; and a second converter end secured to the shell.
- 10. A manifold catalytic converter as set forth in claim 9 wherein said second converter end comprises a pair of spaced apart walls for receiving a portion of said shell therebetween.
Parent Case Info
This is a continuation of application Ser. No. 08/515,724 filed on Aug. 16, 1995, now abandoned.
US Referenced Citations (9)
Foreign Referenced Citations (4)
Number |
Date |
Country |
U-9210836 |
Oct 1992 |
DE |
A-117602 |
Sep 1984 |
EP |
A-256416 |
Feb 1988 |
EP |
A-2422028 |
Nov 1979 |
FR |
Non-Patent Literature Citations (3)
Entry |
Patent Abstracts of Japan vol. 7, No. 68 (M-201), Mar. 19, 1983 & JP-A-57 210117 (Toyota Jidosha), Dec. 23, 1982. |
Patent Abstracts of Japan vol. 7, No. 126 (M-219), May 31, 1983 & JP-A-58 044211 (Yamaha Hatsudoki) Mar. 15, 1983. |
European Search Report corres to EP 96 20 1897 dated Nov. 27, 1996 & Annex. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
08/515724 |
Aug 1995 |
US |
Child |
08/697478 |
|
US |