IP Library Granted Patent US 6,908,028
Granted Patent B2
US 6,908,028 · App. 10/149,522 · Granted Jun 21, 2005

Method of manufacturing honeycomb body

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Quick Facts
Patent No.
US 6,908,028
App. No.
10/149,522
Granted
Jun 21, 2005
Kind
B2
Abstract

The present invention provides a method of manufacturing a honeycomb body ( 1 ) formed by winding a flat metal foil ( 3 ) and a corrugated metal foil ( 4 ) in layers and brazing them, capable of reducing the equipment cost of honeycomb body manufacturing facilities and conforming to the countermeasure against an engine misfire problem of the honeycomb body, without causing insufficient or excessive application of adhesive which is seen in the cases of adhesive application methods using rolls; and relates to a method of manufacturing a honeycomb body characterized by: applying an adhesive to the portions to be brazed of the flat or corrugated foil corresponding to a bonding portion ( 17 ) which is located at one or both ends of the honeycomb body and/or a bonding portion ( 18 ) inside the honeycomb body over a cross section which is located away from one or both ends thereof in the axial direction; then, winding the flat and corrugated foils in layers to form a honeycomb body; then, making the portion of one or both end faces of the honeycomb body corresponding to the bonding portion ( 16 ) over the full axial length of the honeycomb body outer layers contact the surface of a liquid binder and having the binder sucked up along contact lines ( 5 ) of the flat and corrugated foils; and, then, feeding a brazing filler metal in powder to the honeycomb body so as to have it deposited at the portions where the adhesive and binder have been deposited.

Claims (22)

1. A method of manufacturing a honeycomb body formed by winding a flat metal foil and a corrugated metal foil in layers and brazing them at the bonding portion over the full axial length of the honeycomb body outer layers, at a bonding portion which is located at one or both ends of the honeycomb body, and/or at a bonding portion inside the honeycomb body over a cross section which is located away from one or both ends thereof in the axial direction, characterized by:

(a) prior to winding the flat and corrugated foils in layers to form the honeycomb body, applying an adhesive to the portions to be brazed of the flat or corrugated foil corresponding to the bonding portion which is located at one or both ends of the honeycomb body and/or the bonding portion inside the honeycomb body over a cross section which is located away from one or both ends thereof in the axial direction;

(b) then, winding the flat and corrugated foils in layers to form the honeycomb body;

(c) then, after winding the flat and corrugated foils in layers to form the honeycomb body, depositing a liquid adhesive at the portion of the honeycomb body corresponding to the bonding portion over the full axial length of the honeycomb body outer layers by making the portion of one or both end faces of the honeycomb body corresponding to the bonding portion over the full axial length of the honeycomb body outer layers contact the surface of the liquid adhesive and having the adhesive sucked up along contact lines of the flat and corrugated foils; and

(d) then, feeding a brazing filler metal in powder to the honeycomb body so as to have it deposited at the portions where the adhesives have been applied or deposited.

2. A method of manufacturing a honeycomb body according to claim 1 , characterized in that the bonding portion over the full axial length of the honeycomb body outer layers covers ⅓ or less of the radius of the honeycomb body from its outermost layer toward the center thereof.

3. A method of manufacturing a honeycomb body according to claim 1 , characterized in that the portions of the flat foil or the corrugated foil to which the adhesive is applied are the portions corresponding to the wave tops of the corrugated foil.

4. A method of manufacturing a honeycomb body according to claim 1 , characterized by applying the adhesive to the portions of the flat foil or the corrugated foil by making rolls covered with the adhesive on the surfaces contact the flat or corrugated foil.

5. A method of manufacturing a honeycomb body according to claim 1 , characterized by depositing the liquid adhesive at the portion of the honeycomb body corresponding to the bonding portion over the full axial length of the honeycomb body outer layers by making a porous body impregnated with the liquid adhesive contact the portion of one or both end faces of the honeycomb body corresponding to the bonding portion over the full axial length of the honeycomb body outer layers and, thus, having the adhesive sucked up along the contact lines of the flat and corrugated foils.

6. A method of manufacturing a honeycomb body according to claim 5 , characterized in that the porous body has an annular shape.

7. A method of manufacturing a honeycomb body according to claim 4 , characterized in that the viscosity of the liquid adhesive to be sucked up to the honeycomb body is lower than that of the adhesive to be applied by the rolls.

8. A method of manufacturing a honeycomb body formed by winding a flat metal foil and a corrugated metal foil in layers and brazing them at the bonding portion over the full axial length of the honeycomb body outer layers, at a bonding portion which is located at one or both ends of the honeycomb body, and/or at a bonding portion inside the honeycomb body over a cross section which is located away from one or both ends thereof in the axial direction, characterized by:

(a) prior to winding the flat and corrugated foils in layers to form the honeycomb body, applying an adhesive to the portions to be brazed of the flat or corrugated foil corresponding to the bonding portion inside the honeycomb body over a cross section which is located away from one or both ends thereof in the axial direction and to the portion excluding the portion which is located at the gas inlet end of the honeycomb body from the bonding portion over the full axial length of the honeycomb body outer layers;

(b) then, winding the flat foil and the corrugated foil in layers to form the honeycomb body;

(c) then, after winding the flat and corrugated foils in layers to form the honeycomb body, depositing a liquid adhesive at the portion which is located at the gas inlet end out of the bonding portion over the full axial length of the honeycomb body outer layers and the bonding portion which is located at one or both ends of the honeycomb body, by making the gas inlet end face of the honeycomb body adhere to the surface of the liquid adhesive and having the adhesive sucked up along contact lines of the flat and corrugated foils; and

(d) then, feeding a brazing filler metal in powder to the honeycomb body so as to have it deposited at the portions where the adhesives have been applied or deposited.

9. A method of manufacturing a honeycomb body according to claim 8 , characterized in that the bonding portion over the full axial length of the honeycomb body outer layers covers ⅓ or less of the radius of the honeycomb body from its outermost layer toward the center.

10. A method of manufacturing a honeycomb body according to claim 8 , characterized in that the portions of the flat foil or the corrugated foil to which the adhesive is applied are the portions corresponding to the wave tops of the corrugated foil.

11. A method of manufacturing a honeycomb body according to claim 8 , characterized by applying the adhesive to the portions of the flat foil or the corrugated foil by making rolls covered with the adhesive on the surface contact the flat or corrugated foil.

12. A method of manufacturing a honeycomb body according to claim 11 , characterized in that the viscosity of the liquid adhesive to be sucked up to the honeycomb body is lower than that of the adhesive to be applied by the rolls.

13. A method of manufacturing a honeycomb body according to claim 1 , characterized in that the flat foil has corrugation and the wave height of the corrugation is smaller than the wave height of the corrugated foil.

14. A method of manufacturing a honeycomb body according to claim 8 , characterized in that the flat foil has corrugation and the wave height of the corrugation is smaller than the wave height of the corrugated foil.

Assignments (3)
MERGER AND CHANGE OF NAME Recorded Mar 18, 2020
From: NIPPON STEEL & SUMIKIN MATERIALS CO., LTD.; NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
To: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
Reel/Frame 052188/0275 →
CHANGE OF NAME AND ADDRESS Recorded Aug 23, 2018
From: NIPPON STEEL CORPORATION
To: NIPPON STEEL & SUMITOMO METAL CORPORATION
Reel/Frame 046918/0854 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2018
From: NIPPON STEEL & SUMITOMO METAL CORPORATION
To: NIPPON STEEL & SUMIKIN MATERIALS CO., LTD.
Reel/Frame 046682/0754 →