Insulated double-walled exhaust system component and method of making the same
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F16L-009/14
F01N-003/02
출원번호
US-0303447
(2007-05-23)
등록번호
US-8522828
(2013-09-03)
국제출원번호
PCT/US2007/069543
(2007-05-23)
§371/§102 date
20081204
(20081204)
국제공개번호
WO2007/146568
(2007-12-21)
발명자
/ 주소
Merry, Richard P.
출원인 / 주소
3M Innovative Properties Company
대리인 / 주소
Wright, Bradford B.
인용정보
피인용 횟수 :
1인용 특허 :
24
초록
A double-walled exhaust system component having glass bubbles disposed between inner and outer pipes and method of making the same. The glass bubbles have a size distribution wherein, on a bulk volume basis, at least 90 percent of the glass bubbles have a size of less than 150 micrometers.
대표청구항▼
1. An insulated double-walled exhaust system component comprising an inner pipe, an outer pipe surrounding the inner pipe, first and second annular seals connecting the inner and outer pipes and together with the inner and outer pipes defining an enclosed cavity, and glass bubbles substantially fill
1. An insulated double-walled exhaust system component comprising an inner pipe, an outer pipe surrounding the inner pipe, first and second annular seals connecting the inner and outer pipes and together with the inner and outer pipes defining an enclosed cavity, and glass bubbles substantially filling the enclosed cavity, the glass bubbles having a size distribution wherein, on a bulk volume basis, at least 90 percent of the glass bubbles have a size of less than 90 micrometers. 2. An insulated double-walled exhaust system component according to claim 1, wherein the inner pipe comprises, steel, or a steel alloy. 3. An insulated double-walled exhaust system component according to claim 1, wherein the first and second annular seals comprise metal flanges. 4. An insulated double-walled exhaust system component according to claim 1, wherein the glass bubbles are tightly packed. 5. An insulated double-walled exhaust system component according to claim 1, wherein, on a bulk volume basis, greater than 50 percent of the glass bubbles have a size of greater than 50 micrometers. 6. An insulated double-walled exhaust system component according to claim 1, wherein the glass bubbles have a true density in a range of from 0.1 to 0.15 grams per milliliter. 7. An insulated double-walled exhaust system component according to claim 1, wherein the insulated double-walled exhaust system component is selected from the group consisting of an exhaust pipe, at least a portion of a catalytic converter assembly, and a tail pipe. 8. An insulated double-walled exhaust system component according to claim 1, wherein the insulated double-walled exhaust system component is selected from the group consisting of an insulated double-walled exhaust pipe, an insulated double-walled end cone of a catalytic converter assembly, an insulated double-walled spacer ring of a catalytic converter assembly, an insulated double-walled muffler, and an insulated double-walled tail pipe. 9. An insulated double-walled exhaust system component according to claim 1, connected to a diesel engine such that exhaust gas from the diesel engine is directed through the inner pipe. 10. An insulated double-walled exhaust system component according to claim 9, wherein the exhaust system component is disposed upstream of a catalytic converter. 11. An insulated double-walled exhaust system component according to claim 9, wherein the component comprises an insulated double-walled exhaust pipe. 12. An insulated double-walled exhaust system component according to claim 9, wherein the component comprises an end cone or spacer ring of a catalytic converter assembly. 13. An insulated double-walled exhaust system component according to claim 9, wherein the component comprises an insulated double-walled tail pipe. 14. A method of making an insulated double-walled exhaust system component, the method comprising: providing an inner pipe;at least partially confining the inner pipe within an outer pipe;connecting the inner and outer pipes to form a fillable cavity having at least one opening;substantially filling the fillable cavity with glass bubbles having a size distribution wherein, on a bulk volume basis, at least 90 percent of the glass bubbles have a size of less than 90 micrometers; andsealing said at least one opening and enclosing the glass bubbles. 15. A method of making an insulated double-walled exhaust system component according to claim 14, wherein the inner pipe and outer pipe are connected by at least one seal, and wherein the inner pipe, outer pipe, said at least one seal, and the opening form the fillable cavity. 16. A method of making an insulated double-walled exhaust system component according to claim 15, wherein said at least one seal comprises a metal flange. 17. A method of making an insulated double-walled exhaust system component according to claim 14, wherein the inner pipe comprises stainless steel, steel, or a steel alloy. 18. A method of making an insulated double-walled exhaust system component according to claim 14, wherein, on a bulk volume basis, greater than 50 percent of the glass bubbles have a size of greater than 50 micrometers. 19. A method of making an insulated double-walled exhaust system component according to claim 14, wherein the glass bubbles have a true density in a range of from 0.1 to 0.15 grams per milliliter. 20. A method of making an insulated double-walled exhaust system component according to claim 14, wherein the insulated double-walled exhaust system component is selected from the group consisting of an insulated double-walled exhaust pipe, an insulated double-walled end cone of a catalytic converter assembly, an insulated double-walled spacer ring of a catalytic converter assembly, an insulated double-walled muffler, and an insulated double-walled tail pipe.
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