Claims
- 1. An extrusion die for extruding a honeycomb body, the die incorporating a feedhole portion bounded by an inlet face and a discharge slot portion bounded by an outlet face, the feedhole portion comprising multiple feedholes open at the inlet face and the discharge slot portion comprising multiple discharge slots communicating with the feedholes and open at the outlet face, wherein:
- the discharge slots criss-cross on the outlet face to form an array of adjoining triangles, each triangle being bounded by three intersecting slot segments, and
- wherein each triangle communicates directly with two feedholes, a shared feedhole which communicates with two of the slot segments at the intersection thereof and a single feedhole which communicates with the third slot segment at a location substantially centrally of the length thereof.
- 2. An extrusion die formed of a die body incorporating a feed hole portion bounded by an inlet face and a discharge slot portion bounded by an outlet face,
- the discharge slot portion comprising a criss-cross array of discharge slots open to the outlet face, the slots extending into the die body toward the inlet face and intersecting with each other to form a plurality of triangular pins, each pin with vertices at slot intersections and sides on slot segments, such that a cell of triangular cross-section may be formed in extrudable material discharged from the intersecting slot segments circumscribing each pin,
- the feed hole portion comprising a plurality of feed holes extending into the die body toward the outlet face for supplying extrudable material thereto, each feed hole being open to the inlet face and communicating with one or more discharge slots in the discharge slot portion,
- the feed holes comprising intersection feedholes communicating with slot intersections and slot feedholes communicating with slot segments between the slot intersections,
- the slot feedholes being arrayed alternately with the intersection feedholes such that, for each triangular pin, the slots on two of the sides communicate directly with a shared intersection feedhole and no slot feedholes, and the slot on the third side communicates directly with a slot feedhole and no intersection feedholes.
- 3. An extrusion die in accordance with claim 2 which is fabricated of a metal.
- 4. An extrusion die in accordance with claim 3 which is formed of a metal selected from the group consisting of carbon steel and steel alloys.
- 5. An extrusion die in accordance with claim 4 which is of one-piece construction.
- 6. An extrusion die in accordance with claim 5 which incorporates a wear coating selected from the group consisting of nickel, metal carbide, metal nitride and metal carbo-nitride.
- 7. A method for manufacturing a honeycomb body of triangular cell cross-section by discharging extrudable material through an array of criss-crossing intersecting discharge slots in an outlet face of a honeycomb extrusion die, the intersecting slots forming slot segments between intersections which connect to form connected triangles and which are operative to extrude a unitary honeycomb body incorporating multiple connected triangular cells having intersecting cell walls extruded by the slot segments, wherein:
- for each triangular cell, extrudable material for two cell walls is supplied predominantly through a shared feedhole communicating with the common end of two of the slot segments extruding the two walls, and extrudable material for the third wall is supplied predominantly through a single feedhole communicating centrally with the slot segment extruding the third wall.
- 8. A method in accordance with claim 7 wherein the extrudable material comprises a powdered metal or a powder of a ceramic material.
- 9. A method in accordance with claim 8 wherein the extrudable material is a ceramic batch material comprising at least one powdered ceramic material and a vehicle for the powdered ceramic material.
Government Interests
The Government of the United States of America has rights in this invention pursuant to contract No. DEN3-336 awarded by the Department of Energy.
US Referenced Citations (7)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0294106 |
Jul 1982 |
EPX |
50-29922 |
Mar 1981 |
JPX |
50-151849 |
Feb 1990 |
JPX |