Claims
- 1. A catalytic converter for an internal combustion engine exhaust system, comprising:
a. a single-piece, seamless metallic housing; b. a tubulated gas inlet port in said housing through which exhaust gas is introduced; c. a tubulated gas outlet port in said housing through which the exhaust gas is discharged; d. a tubulated intermediate section of said housing having an inlet end and an outlet end; e. an inlet transition section connecting said inlet port and said inlet end of said intermediate section; f. an outlet transition section connecting said outlet end of said intermediate section and said outlet port; and g. a catalytic element contained within said intermediate section and through which said exhaust gas passes when flowing between said gas inlet port and said gas outlet port; the interior surfaces of said inlet and outlet transition sections and said gas inlet and outlet ports being smooth and substantially ridge-free.
- 2. A catalytic converter as recited by claim 1, wherein said catalytic element comprises:
a. a ceramic substrate having a plurality of passages extending therethrough; and b. a catalytically active material present on a substantial portion of the surface of each of said passages.
- 3. A catalytic converter as recited by claim 2, further comprising an intumescent mat encircling said ceramic substrate and sealing the external surface of said ceramic substrate to the inner surface of said intermediate section.
- 4. A catalytic converter as recited by claim 1, wherein each of said catalytic element and said intermediate section has a length, and said length of said catalytic element is at least about 80% of the length of said intermediate section.
- 5. A catalytic converter as recited by claim 1, wherein said intermediate section is substantially cylindrical and has diameter, each of said inlet and outlet transition sections has a length, and said length of each of said inlet and outlet transition sections ranges from about 30% to 100% of said diameter of said intermediate section.
- 6. A catalytic converter as recited by claim 1, wherein said metallic housing is composed of a stainless steel alloy.
- 7. A catalytic converter as recited by claim 1, wherein said inlet and outlet transition sections and said gas inlet and outlet ports have been formed by swaging.
- 8. A catalytic converter as recited by claim 6, wherein said swaging is carried out using a plurality of swaging steps.
- 9. A catalytic converter as recited by claim 1, wherein said outside surface of said catalytic converter is smooth.
- 10. An internal combustion engine system having an exhaust system comprising a catalytic converter, said catalytic converter comprising:
a. a single-piece, seamless metallic housing; b. a tubulated gas inlet port in said housing through which exhaust gas is introduced; c. a tubulated gas outlet port in said housing through which the exhaust gas is discharged; d. a tubulated intermediate section of said housing having an inlet end and an outlet end; e. an inlet transition section connecting said inlet port and said inlet end of said intermediate section; f. an outlet transition section connecting said outlet end of said intermediate section and said outlet port; and g. a catalytic element contained within said intermediate section and through which said exhaust gas passes when flowing between said gas inlet port and said gas outlet port; the interior surfaces of said inlet and outlet transition sections and said gas inlet and outlet ports being smooth and substantially ridge-free.
- 11. A catalytic converter for an internal combustion engine exhaust system, comprising:
a. a single-piece, seamless metallic housing; b. a tubulated gas inlet port in said housing through which exhaust gas is introduced; c. a tubulated gas outlet port in said housing through which the exhaust gas is discharged; d. a tubulated intermediate section of said housing connecting said gas inlet port and said gas outlet port; e. an inlet transition section connecting said inlet port and said inlet end of said intermediate section; f. an outlet transition section connecting said outlet end of said intermediate section and said outlet port; and g. a catalytic element contained within said intermediate section and through which said exhaust gas passes when flowing between said gas inlet port and said gas outlet port; the interior surfaces of said inlet and outlet transition sections and said gas inlet and outlet ports being smooth and substantially ridge-free; said catalytic converter having been produced by a process comprising:
i. providing a seamless metallic tube having a first end and a second end; ii. inserting said catalytic element in said tube; gripping said tube; iii. swaging said first end to form said gas inlet port and said inlet transition section; and iv. swaging said second end to form said gas outlet port and said outlet transition section.
- 12. A method of producing a catalytic converter for an internal combustion engine exhaust system, said catalytic converter comprising:
a. a single-piece, seamless metallic housing; b. a tubulated gas inlet port in said housing through which exhaust gas is introduced; c. a tubulated gas outlet port in said through which the exhaust gas is discharged; d. a tubulated intermediate section of said housing connecting said gas inlet port and said gas outlet port; e. an inlet transition section connecting said inlet port and said inlet end of said intermediate section; f. an outlet transition section connecting said outlet end of said intermediate section and said outlet port; and g. a catalytic element contained within said intermediate section and through which said exhaust gas passes when flowing between said gas inlet port and said gas outlet port; and the interior surfaces of said inlet and outlet transition sections and said gas inlet and outlet ports being smooth and substantially free from ridges thereon; and said method comprises:
i. providing a seamless metallic tube preform having a first end and a second end, said perform being adapted to be formed into said housing; ii. inserting said catalytic element in said tube preform; iii. gripping said tube preform; iv. swaging said first end to form said gas inlet port and said inlet transition section; and v. swaging said second end to form said gas outlet port and said outlet transition section.
- 13. A method as recited by claim 12, wherein each of said swagings of said first and second ends of said tube perform is carried out in a plurality of graduated swaging steps.
- 14. A method as recited by claim 12, wherein said catalytic element comprises:
a. a ceramic substrate having a plurality of passages extending therethrough; and b. a catalytically active material present on a substantial portion of the surface of each of said passages; and c. an intumescent mat adapted to encircle said ceramic substrate and to seal the external surface of said ceramic substrate to the inner surface of said intermediate section; and said method further comprises the step of
encircling said ceramic substrate with said intumescent mat to form said catalytic element prior to its insertion into said tube preform.
- 15. A method as recited by claim 12, wherein:
a. said tube preform is provided from a supply tube; b. said swaging of said first end is carried out after said catalytic element is inserted in said tube preform; c. said supply tube is cut to remove a portion thereof having a preselected length after said first end is swaged, thereby defining said perform, and said the catalytic element being present in said preform; and d. said swaging of said second end is carried out after said cutting of said supply tube to form said perform.
Parent Case Info
[0001] This application claims the benefit of provisional application No. 60/367,419, filed Mar. 26, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60367419 |
Mar 2002 |
US |